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Tests: Add tests for fibers and refactor/fix Fiber class
This commit is contained in:
parent
bc266a9d98
commit
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@ -3,18 +3,21 @@
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// Refer to the license.txt file included.
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// Refer to the license.txt file included.
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#include "common/fiber.h"
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#include "common/fiber.h"
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#ifdef _MSC_VER
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#include <windows.h>
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#else
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#include <boost/context/detail/fcontext.hpp>
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#endif
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namespace Common {
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namespace Common {
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#ifdef _MSC_VER
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#ifdef _MSC_VER
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#include <windows.h>
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struct Fiber::FiberImpl {
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struct Fiber::FiberImpl {
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LPVOID handle = nullptr;
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LPVOID handle = nullptr;
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};
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};
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void Fiber::_start([[maybe_unused]] void* parameter) {
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void Fiber::start() {
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guard.lock();
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if (previous_fiber) {
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if (previous_fiber) {
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previous_fiber->guard.unlock();
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previous_fiber->guard.unlock();
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previous_fiber = nullptr;
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previous_fiber = nullptr;
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@ -22,10 +25,10 @@ void Fiber::_start([[maybe_unused]] void* parameter) {
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entry_point(start_parameter);
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entry_point(start_parameter);
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}
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}
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static void __stdcall FiberStartFunc(LPVOID lpFiberParameter)
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void __stdcall Fiber::FiberStartFunc(void* fiber_parameter)
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{
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{
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auto fiber = static_cast<Fiber *>(lpFiberParameter);
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auto fiber = static_cast<Fiber *>(fiber_parameter);
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fiber->_start(nullptr);
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fiber->start();
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}
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}
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Fiber::Fiber(std::function<void(void*)>&& entry_point_func, void* start_parameter)
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Fiber::Fiber(std::function<void(void*)>&& entry_point_func, void* start_parameter)
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@ -74,30 +77,26 @@ std::shared_ptr<Fiber> Fiber::ThreadToFiber() {
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#else
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#else
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#include <boost/context/detail/fcontext.hpp>
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constexpr std::size_t default_stack_size = 1024 * 1024 * 4; // 4MB
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constexpr std::size_t default_stack_size = 1024 * 1024 * 4; // 4MB
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struct Fiber::FiberImpl {
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struct alignas(64) Fiber::FiberImpl {
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boost::context::detail::fcontext_t context;
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std::array<u8, default_stack_size> stack;
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std::array<u8, default_stack_size> stack;
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boost::context::detail::fcontext_t context;
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};
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};
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void Fiber::_start(void* parameter) {
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void Fiber::start(boost::context::detail::transfer_t& transfer) {
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guard.lock();
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boost::context::detail::transfer_t* transfer = static_cast<boost::context::detail::transfer_t*>(parameter);
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if (previous_fiber) {
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if (previous_fiber) {
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previous_fiber->impl->context = transfer->fctx;
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previous_fiber->impl->context = transfer.fctx;
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previous_fiber->guard.unlock();
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previous_fiber->guard.unlock();
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previous_fiber = nullptr;
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previous_fiber = nullptr;
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}
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}
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entry_point(start_parameter);
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entry_point(start_parameter);
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}
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}
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static void FiberStartFunc(boost::context::detail::transfer_t transfer)
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void Fiber::FiberStartFunc(boost::context::detail::transfer_t transfer)
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{
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{
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auto fiber = static_cast<Fiber *>(transfer.data);
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auto fiber = static_cast<Fiber *>(transfer.data);
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fiber->_start(&transfer);
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fiber->start(transfer);
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}
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}
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Fiber::Fiber(std::function<void(void*)>&& entry_point_func, void* start_parameter)
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Fiber::Fiber(std::function<void(void*)>&& entry_point_func, void* start_parameter)
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@ -139,6 +138,7 @@ void Fiber::YieldTo(std::shared_ptr<Fiber> from, std::shared_ptr<Fiber> to) {
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std::shared_ptr<Fiber> Fiber::ThreadToFiber() {
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std::shared_ptr<Fiber> Fiber::ThreadToFiber() {
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std::shared_ptr<Fiber> fiber = std::shared_ptr<Fiber>{new Fiber()};
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std::shared_ptr<Fiber> fiber = std::shared_ptr<Fiber>{new Fiber()};
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fiber->guard.lock();
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fiber->is_thread_fiber = true;
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fiber->is_thread_fiber = true;
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return fiber;
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return fiber;
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}
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}
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@ -10,6 +10,12 @@
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#include "common/common_types.h"
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#include "common/common_types.h"
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#include "common/spin_lock.h"
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#include "common/spin_lock.h"
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#ifndef _MSC_VER
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namespace boost::context::detail {
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struct transfer_t;
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}
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#endif
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namespace Common {
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namespace Common {
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class Fiber {
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class Fiber {
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@ -31,9 +37,6 @@ public:
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/// Only call from main thread's fiber
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/// Only call from main thread's fiber
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void Exit();
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void Exit();
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/// Used internally but required to be public, Shall not be used
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void _start(void* parameter);
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/// Changes the start parameter of the fiber. Has no effect if the fiber already started
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/// Changes the start parameter of the fiber. Has no effect if the fiber already started
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void SetStartParameter(void* new_parameter) {
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void SetStartParameter(void* new_parameter) {
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start_parameter = new_parameter;
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start_parameter = new_parameter;
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@ -42,6 +45,16 @@ public:
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private:
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private:
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Fiber();
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Fiber();
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#ifdef _MSC_VER
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void start();
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static void FiberStartFunc(void* fiber_parameter);
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#else
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void start(boost::context::detail::transfer_t& transfer);
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static void FiberStartFunc(boost::context::detail::transfer_t transfer);
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#endif
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struct FiberImpl;
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struct FiberImpl;
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SpinLock guard;
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SpinLock guard;
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@ -1,6 +1,7 @@
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add_executable(tests
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add_executable(tests
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common/bit_field.cpp
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common/bit_field.cpp
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common/bit_utils.cpp
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common/bit_utils.cpp
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common/fibers.cpp
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common/multi_level_queue.cpp
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common/multi_level_queue.cpp
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common/param_package.cpp
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common/param_package.cpp
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common/ring_buffer.cpp
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common/ring_buffer.cpp
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214
src/tests/common/fibers.cpp
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214
src/tests/common/fibers.cpp
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@ -0,0 +1,214 @@
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// Copyright 2020 yuzu Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <atomic>
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#include <cstdlib>
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#include <functional>
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#include <memory>
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#include <thread>
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#include <unordered_map>
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#include <vector>
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#include <catch2/catch.hpp>
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#include <math.h>
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#include "common/common_types.h"
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#include "common/fiber.h"
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#include "common/spin_lock.h"
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namespace Common {
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class TestControl1 {
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public:
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TestControl1() = default;
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void DoWork();
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void ExecuteThread(u32 id);
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std::unordered_map<std::thread::id, u32> ids;
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std::vector<std::shared_ptr<Common::Fiber>> thread_fibers;
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std::vector<std::shared_ptr<Common::Fiber>> work_fibers;
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std::vector<u32> items;
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std::vector<u32> results;
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};
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static void WorkControl1(void* control) {
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TestControl1* test_control = static_cast<TestControl1*>(control);
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test_control->DoWork();
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}
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void TestControl1::DoWork() {
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std::thread::id this_id = std::this_thread::get_id();
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u32 id = ids[this_id];
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u32 value = items[id];
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for (u32 i = 0; i < id; i++) {
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value++;
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}
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results[id] = value;
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Fiber::YieldTo(work_fibers[id], thread_fibers[id]);
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}
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void TestControl1::ExecuteThread(u32 id) {
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std::thread::id this_id = std::this_thread::get_id();
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ids[this_id] = id;
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auto thread_fiber = Fiber::ThreadToFiber();
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thread_fibers[id] = thread_fiber;
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work_fibers[id] = std::make_shared<Fiber>(std::function<void(void*)>{WorkControl1}, this);
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items[id] = rand() % 256;
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Fiber::YieldTo(thread_fibers[id], work_fibers[id]);
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thread_fibers[id]->Exit();
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}
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static void ThreadStart1(u32 id, TestControl1& test_control) {
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test_control.ExecuteThread(id);
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}
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TEST_CASE("Fibers::Setup", "[common]") {
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constexpr u32 num_threads = 7;
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TestControl1 test_control{};
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test_control.thread_fibers.resize(num_threads, nullptr);
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test_control.work_fibers.resize(num_threads, nullptr);
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test_control.items.resize(num_threads, 0);
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test_control.results.resize(num_threads, 0);
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std::vector<std::thread> threads;
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for (u32 i = 0; i < num_threads; i++) {
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threads.emplace_back(ThreadStart1, i, std::ref(test_control));
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}
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for (u32 i = 0; i < num_threads; i++) {
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threads[i].join();
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}
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for (u32 i = 0; i < num_threads; i++) {
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REQUIRE(test_control.items[i] + i == test_control.results[i]);
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}
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}
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class TestControl2 {
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public:
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TestControl2() = default;
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void DoWork1() {
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trap2 = false;
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while (trap.load());
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for (u32 i = 0; i < 12000; i++) {
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value1 += i;
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}
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Fiber::YieldTo(fiber1, fiber3);
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std::thread::id this_id = std::this_thread::get_id();
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u32 id = ids[this_id];
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assert1 = id == 1;
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value2 += 5000;
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Fiber::YieldTo(fiber1, thread_fibers[id]);
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}
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void DoWork2() {
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while (trap2.load());
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value2 = 2000;
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trap = false;
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Fiber::YieldTo(fiber2, fiber1);
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assert3 = false;
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}
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void DoWork3() {
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std::thread::id this_id = std::this_thread::get_id();
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u32 id = ids[this_id];
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assert2 = id == 0;
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value1 += 1000;
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Fiber::YieldTo(fiber3, thread_fibers[id]);
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}
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void ExecuteThread(u32 id);
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void CallFiber1() {
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std::thread::id this_id = std::this_thread::get_id();
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u32 id = ids[this_id];
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Fiber::YieldTo(thread_fibers[id], fiber1);
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}
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void CallFiber2() {
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std::thread::id this_id = std::this_thread::get_id();
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u32 id = ids[this_id];
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Fiber::YieldTo(thread_fibers[id], fiber2);
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}
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void Exit();
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bool assert1{};
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bool assert2{};
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bool assert3{true};
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u32 value1{};
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u32 value2{};
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std::atomic<bool> trap{true};
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std::atomic<bool> trap2{true};
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std::unordered_map<std::thread::id, u32> ids;
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std::vector<std::shared_ptr<Common::Fiber>> thread_fibers;
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std::shared_ptr<Common::Fiber> fiber1;
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std::shared_ptr<Common::Fiber> fiber2;
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std::shared_ptr<Common::Fiber> fiber3;
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};
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static void WorkControl2_1(void* control) {
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TestControl2* test_control = static_cast<TestControl2*>(control);
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test_control->DoWork1();
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}
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static void WorkControl2_2(void* control) {
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TestControl2* test_control = static_cast<TestControl2*>(control);
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test_control->DoWork2();
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}
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static void WorkControl2_3(void* control) {
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TestControl2* test_control = static_cast<TestControl2*>(control);
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test_control->DoWork3();
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}
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void TestControl2::ExecuteThread(u32 id) {
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std::thread::id this_id = std::this_thread::get_id();
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ids[this_id] = id;
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auto thread_fiber = Fiber::ThreadToFiber();
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thread_fibers[id] = thread_fiber;
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}
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void TestControl2::Exit() {
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std::thread::id this_id = std::this_thread::get_id();
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u32 id = ids[this_id];
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thread_fibers[id]->Exit();
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}
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static void ThreadStart2_1(u32 id, TestControl2& test_control) {
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test_control.ExecuteThread(id);
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test_control.CallFiber1();
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test_control.Exit();
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}
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static void ThreadStart2_2(u32 id, TestControl2& test_control) {
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test_control.ExecuteThread(id);
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test_control.CallFiber2();
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test_control.Exit();
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}
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TEST_CASE("Fibers::InterExchange", "[common]") {
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TestControl2 test_control{};
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test_control.thread_fibers.resize(2, nullptr);
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test_control.fiber1 = std::make_shared<Fiber>(std::function<void(void*)>{WorkControl2_1}, &test_control);
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test_control.fiber2 = std::make_shared<Fiber>(std::function<void(void*)>{WorkControl2_2}, &test_control);
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test_control.fiber3 = std::make_shared<Fiber>(std::function<void(void*)>{WorkControl2_3}, &test_control);
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std::thread thread1(ThreadStart2_1, 0, std::ref(test_control));
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std::thread thread2(ThreadStart2_2, 1, std::ref(test_control));
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thread1.join();
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thread2.join();
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REQUIRE(test_control.assert1);
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REQUIRE(test_control.assert2);
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REQUIRE(test_control.assert3);
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REQUIRE(test_control.value2 == 7000);
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u32 cal_value = 0;
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for (u32 i = 0; i < 12000; i++) {
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cal_value += i;
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}
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cal_value += 1000;
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REQUIRE(test_control.value1 == cal_value);
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}
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} // namespace Common
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