273 lines
8.3 KiB
C++
273 lines
8.3 KiB
C++
//
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// MIT License
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// Copyright (c) 2020 Jonathan R. Madsen
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to deal
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// in the Software without restriction, including without limitation the rights
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// to use, copy, modify, merge, publish, distribute, sublicense, and
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// copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software. THE SOFTWARE IS PROVIDED
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// "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT
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// LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
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// PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
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// HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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// ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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// WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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//
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//
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// ---------------------------------------------------------------
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// Tasking class header file
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//
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// Class Description:
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//
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// This file defines the task types for TaskManager and ThreadPool
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//
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// ---------------------------------------------------------------
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// Author: Jonathan Madsen (Feb 13th 2018)
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// ---------------------------------------------------------------
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#pragma once
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#include "PTL/Globals.hh"
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#include "PTL/VTask.hh"
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#include <cstdint>
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#include <future>
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#include <tuple>
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#include <utility>
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namespace PTL
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{
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//======================================================================================//
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/// \brief The task class is supplied to thread_pool.
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template <typename RetT>
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class TaskFuture : public VTask
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{
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public:
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using promise_type = std::promise<RetT>;
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using future_type = std::future<RetT>;
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using result_type = RetT;
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public:
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// pass a free function pointer
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template <typename... Args>
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TaskFuture(Args&&... args)
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: VTask{ std::forward<Args>(args)... }
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{}
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~TaskFuture() override = default;
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TaskFuture(const TaskFuture&) = delete;
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TaskFuture& operator=(const TaskFuture&) = delete;
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TaskFuture(TaskFuture&&) noexcept = default;
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TaskFuture& operator=(TaskFuture&&) noexcept = default;
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public:
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// execution operator
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virtual future_type get_future() = 0;
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virtual void wait() = 0;
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virtual RetT get() = 0;
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};
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//======================================================================================//
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/// \brief The task class is supplied to thread_pool.
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template <typename RetT, typename... Args>
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class PackagedTask : public TaskFuture<RetT>
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{
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public:
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using this_type = PackagedTask<RetT, Args...>;
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using promise_type = std::promise<RetT>;
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using future_type = std::future<RetT>;
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using packaged_task_type = std::packaged_task<RetT(Args...)>;
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using result_type = RetT;
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using tuple_type = std::tuple<Args...>;
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public:
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// pass a free function pointer
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template <typename FuncT>
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PackagedTask(FuncT func, Args... args)
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: TaskFuture<RetT>{ true, 0 }
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, m_ptask{ std::move(func) }
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, m_args{ args... }
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{}
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template <typename FuncT>
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PackagedTask(bool _is_native, intmax_t _depth, FuncT func, Args... args)
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: TaskFuture<RetT>{ _is_native, _depth }
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, m_ptask{ std::move(func) }
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, m_args{ args... }
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{}
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~PackagedTask() override = default;
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PackagedTask(const PackagedTask&) = delete;
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PackagedTask& operator=(const PackagedTask&) = delete;
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PackagedTask(PackagedTask&&) noexcept = default;
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PackagedTask& operator=(PackagedTask&&) noexcept = default;
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public:
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// execution operator
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void operator()() final { mpl::apply(std::move(m_ptask), std::move(m_args)); }
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future_type get_future() final { return m_ptask.get_future(); }
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void wait() final { return m_ptask.get_future().wait(); }
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RetT get() final { return m_ptask.get_future().get(); }
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private:
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packaged_task_type m_ptask;
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tuple_type m_args;
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};
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//======================================================================================//
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/// \brief The task class is supplied to thread_pool.
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template <typename RetT, typename... Args>
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class Task : public TaskFuture<RetT>
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{
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public:
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using this_type = Task<RetT, Args...>;
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using promise_type = std::promise<RetT>;
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using future_type = std::future<RetT>;
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using packaged_task_type = std::packaged_task<RetT(Args...)>;
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using result_type = RetT;
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using tuple_type = std::tuple<Args...>;
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public:
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template <typename FuncT>
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Task(FuncT func, Args... args)
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: TaskFuture<RetT>{}
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, m_ptask{ std::move(func) }
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, m_args{ args... }
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{}
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template <typename FuncT>
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Task(bool _is_native, intmax_t _depth, FuncT func, Args... args)
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: TaskFuture<RetT>{ _is_native, _depth }
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, m_ptask{ std::move(func) }
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, m_args{ args... }
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{}
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~Task() override = default;
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Task(const Task&) = delete;
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Task& operator=(const Task&) = delete;
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Task(Task&&) noexcept = default;
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Task& operator=(Task&&) noexcept = default;
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public:
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// execution operator
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void operator()() final
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{
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if(m_ptask.valid())
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mpl::apply(std::move(m_ptask), std::move(m_args));
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}
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future_type get_future() final { return m_ptask.get_future(); }
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void wait() final { return m_ptask.get_future().wait(); }
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RetT get() final { return m_ptask.get_future().get(); }
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private:
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packaged_task_type m_ptask{};
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tuple_type m_args{};
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};
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//======================================================================================//
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/// \brief The task class is supplied to thread_pool.
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template <typename RetT>
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class Task<RetT, void> : public TaskFuture<RetT>
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{
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public:
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using this_type = Task<RetT>;
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using promise_type = std::promise<RetT>;
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using future_type = std::future<RetT>;
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using packaged_task_type = std::packaged_task<RetT()>;
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using result_type = RetT;
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public:
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template <typename FuncT>
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Task(FuncT func)
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: TaskFuture<RetT>()
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, m_ptask{ std::move(func) }
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{}
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template <typename FuncT>
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Task(bool _is_native, intmax_t _depth, FuncT func)
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: TaskFuture<RetT>{ _is_native, _depth }
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, m_ptask{ std::move(func) }
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{}
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virtual ~Task() = default;
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Task(const Task&) = delete;
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Task& operator=(const Task&) = delete;
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Task(Task&&) noexcept = default;
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Task& operator=(Task&&) noexcept = default;
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public:
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// execution operator
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virtual void operator()() final { m_ptask(); }
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virtual future_type get_future() final { return m_ptask.get_future(); }
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virtual void wait() final { return m_ptask.get_future().wait(); }
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virtual RetT get() final { return m_ptask.get_future().get(); }
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private:
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packaged_task_type m_ptask{};
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};
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//======================================================================================//
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/// \brief The task class is supplied to thread_pool.
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template <>
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class Task<void, void> : public TaskFuture<void>
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{
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public:
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using RetT = void;
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using this_type = Task<void, void>;
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using promise_type = std::promise<RetT>;
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using future_type = std::future<RetT>;
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using packaged_task_type = std::packaged_task<RetT()>;
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using result_type = RetT;
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public:
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template <typename FuncT>
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explicit Task(FuncT func)
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: TaskFuture<RetT>{}
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, m_ptask{ std::move(func) }
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{}
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template <typename FuncT>
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Task(bool _is_native, intmax_t _depth, FuncT func)
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: TaskFuture<RetT>{ _is_native, _depth }
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, m_ptask{ std::move(func) }
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{}
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~Task() override = default;
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Task(const Task&) = delete;
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Task& operator=(const Task&) = delete;
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Task(Task&&) = default;
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Task& operator=(Task&&) = default;
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public:
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// execution operator
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void operator()() final { m_ptask(); }
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future_type get_future() final { return m_ptask.get_future(); }
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void wait() final { return m_ptask.get_future().wait(); }
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RetT get() final { return m_ptask.get_future().get(); }
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private:
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packaged_task_type m_ptask{};
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};
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//======================================================================================//
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} // namespace PTL
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