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@ -26,9 +26,13 @@ void CpuManager::ThreadStart(CpuManager& cpu_manager, std::size_t core) { |
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void CpuManager::Initialize() { |
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running_mode = true; |
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for (std::size_t core = 0; core < Core::Hardware::NUM_CPU_CORES; core++) { |
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core_data[core].host_thread = |
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std::make_unique<std::thread>(ThreadStart, std::ref(*this), core); |
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if (is_multicore) { |
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for (std::size_t core = 0; core < Core::Hardware::NUM_CPU_CORES; core++) { |
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core_data[core].host_thread = |
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std::make_unique<std::thread>(ThreadStart, std::ref(*this), core); |
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} |
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} else { |
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core_data[0].host_thread = std::make_unique<std::thread>(ThreadStart, std::ref(*this), 0); |
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} |
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} |
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@ -41,52 +45,72 @@ void CpuManager::Shutdown() { |
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} |
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} |
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std::function<void(void*)> CpuManager::GetGuestThreadStartFunc() { |
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return std::function<void(void*)>(GuestThreadFunction); |
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} |
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std::function<void(void*)> CpuManager::GetIdleThreadStartFunc() { |
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return std::function<void(void*)>(IdleThreadFunction); |
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} |
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std::function<void(void*)> CpuManager::GetSuspendThreadStartFunc() { |
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return std::function<void(void*)>(SuspendThreadFunction); |
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} |
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void CpuManager::GuestThreadFunction(void* cpu_manager_) { |
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CpuManager* cpu_manager = static_cast<CpuManager*>(cpu_manager_); |
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cpu_manager->RunGuestThread(); |
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if (cpu_manager->is_multicore) { |
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cpu_manager->MultiCoreRunGuestThread(); |
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} else { |
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cpu_manager->SingleCoreRunGuestThread(); |
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} |
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} |
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void CpuManager::GuestRewindFunction(void* cpu_manager_) { |
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CpuManager* cpu_manager = static_cast<CpuManager*>(cpu_manager_); |
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cpu_manager->RunGuestLoop(); |
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if (cpu_manager->is_multicore) { |
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cpu_manager->MultiCoreRunGuestLoop(); |
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} else { |
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cpu_manager->SingleCoreRunGuestLoop(); |
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} |
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} |
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void CpuManager::IdleThreadFunction(void* cpu_manager_) { |
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CpuManager* cpu_manager = static_cast<CpuManager*>(cpu_manager_); |
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cpu_manager->RunIdleThread(); |
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if (cpu_manager->is_multicore) { |
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cpu_manager->MultiCoreRunIdleThread(); |
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} else { |
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cpu_manager->SingleCoreRunIdleThread(); |
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} |
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} |
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void CpuManager::SuspendThreadFunction(void* cpu_manager_) { |
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CpuManager* cpu_manager = static_cast<CpuManager*>(cpu_manager_); |
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cpu_manager->RunSuspendThread(); |
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} |
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std::function<void(void*)> CpuManager::GetGuestThreadStartFunc() { |
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return std::function<void(void*)>(GuestThreadFunction); |
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} |
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std::function<void(void*)> CpuManager::GetIdleThreadStartFunc() { |
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return std::function<void(void*)>(IdleThreadFunction); |
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} |
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std::function<void(void*)> CpuManager::GetSuspendThreadStartFunc() { |
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return std::function<void(void*)>(SuspendThreadFunction); |
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if (cpu_manager->is_multicore) { |
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cpu_manager->MultiCoreRunSuspendThread(); |
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} else { |
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cpu_manager->SingleCoreRunSuspendThread(); |
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} |
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} |
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void* CpuManager::GetStartFuncParamater() { |
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return static_cast<void*>(this); |
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} |
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void CpuManager::RunGuestThread() { |
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///////////////////////////////////////////////////////////////////////////////
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/// MultiCore ///
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///////////////////////////////////////////////////////////////////////////////
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void CpuManager::MultiCoreRunGuestThread() { |
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auto& kernel = system.Kernel(); |
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{ |
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auto& sched = kernel.CurrentScheduler(); |
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sched.OnThreadStart(); |
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} |
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RunGuestLoop(); |
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MultiCoreRunGuestLoop(); |
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} |
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void CpuManager::RunGuestLoop() { |
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void CpuManager::MultiCoreRunGuestLoop() { |
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auto& kernel = system.Kernel(); |
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auto* thread = kernel.CurrentScheduler().GetCurrentThread(); |
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auto host_context = thread->GetHostContext(); |
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@ -103,7 +127,7 @@ void CpuManager::RunGuestLoop() { |
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} |
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} |
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void CpuManager::RunIdleThread() { |
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void CpuManager::MultiCoreRunIdleThread() { |
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auto& kernel = system.Kernel(); |
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while (true) { |
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auto& physical_core = kernel.CurrentPhysicalCore(); |
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@ -113,7 +137,7 @@ void CpuManager::RunIdleThread() { |
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} |
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} |
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void CpuManager::RunSuspendThread() { |
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void CpuManager::MultiCoreRunSuspendThread() { |
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auto& kernel = system.Kernel(); |
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{ |
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auto& sched = kernel.CurrentScheduler(); |
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@ -130,7 +154,7 @@ void CpuManager::RunSuspendThread() { |
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} |
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} |
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void CpuManager::Pause(bool paused) { |
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void CpuManager::MultiCorePause(bool paused) { |
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if (!paused) { |
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bool all_not_barrier = false; |
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while (!all_not_barrier) { |
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@ -171,10 +195,120 @@ void CpuManager::Pause(bool paused) { |
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paused_state = paused; |
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} |
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///////////////////////////////////////////////////////////////////////////////
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/// SingleCore ///
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///////////////////////////////////////////////////////////////////////////////
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void CpuManager::SingleCoreRunGuestThread() { |
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auto& kernel = system.Kernel(); |
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{ |
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auto& sched = kernel.CurrentScheduler(); |
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sched.OnThreadStart(); |
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} |
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SingleCoreRunGuestLoop(); |
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} |
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void CpuManager::SingleCoreRunGuestLoop() { |
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auto& kernel = system.Kernel(); |
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auto* thread = kernel.CurrentScheduler().GetCurrentThread(); |
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auto host_context = thread->GetHostContext(); |
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host_context->SetRewindPoint(std::function<void(void*)>(GuestRewindFunction), this); |
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host_context.reset(); |
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while (true) { |
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auto& physical_core = kernel.CurrentPhysicalCore(); |
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while (!physical_core.IsInterrupted()) { |
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physical_core.Run(); |
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preemption_count++; |
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if (preemption_count % max_cycle_runs == 0) { |
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break; |
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} |
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} |
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physical_core.ClearExclusive(); |
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PreemptSingleCore(); |
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auto& scheduler = physical_core.Scheduler(); |
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scheduler.TryDoContextSwitch(); |
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} |
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} |
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void CpuManager::SingleCoreRunIdleThread() { |
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auto& kernel = system.Kernel(); |
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while (true) { |
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auto& physical_core = kernel.CurrentPhysicalCore(); |
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PreemptSingleCore(); |
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auto& scheduler = physical_core.Scheduler(); |
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scheduler.TryDoContextSwitch(); |
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} |
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} |
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void CpuManager::SingleCoreRunSuspendThread() { |
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auto& kernel = system.Kernel(); |
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{ |
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auto& sched = kernel.CurrentScheduler(); |
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sched.OnThreadStart(); |
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} |
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while (true) { |
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auto core = kernel.GetCurrentHostThreadID(); |
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auto& scheduler = kernel.CurrentScheduler(); |
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Kernel::Thread* current_thread = scheduler.GetCurrentThread(); |
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Common::Fiber::YieldTo(current_thread->GetHostContext(), core_data[0].host_context); |
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ASSERT(scheduler.ContextSwitchPending()); |
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ASSERT(core == kernel.GetCurrentHostThreadID()); |
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scheduler.TryDoContextSwitch(); |
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} |
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} |
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void CpuManager::PreemptSingleCore() { |
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preemption_count = 0; |
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std::size_t old_core = current_core; |
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current_core = (current_core + 1) % Core::Hardware::NUM_CPU_CORES; |
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auto& scheduler = system.Kernel().Scheduler(old_core); |
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Kernel::Thread* current_thread = system.Kernel().Scheduler(old_core).GetCurrentThread(); |
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Kernel::Thread* next_thread = system.Kernel().Scheduler(current_core).GetCurrentThread(); |
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Common::Fiber::YieldTo(current_thread->GetHostContext(), next_thread->GetHostContext()); |
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} |
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void CpuManager::SingleCorePause(bool paused) { |
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if (!paused) { |
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bool all_not_barrier = false; |
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while (!all_not_barrier) { |
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all_not_barrier = !core_data[0].is_running.load() && core_data[0].initialized.load(); |
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} |
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core_data[0].enter_barrier->Set(); |
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if (paused_state.load()) { |
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bool all_barrier = false; |
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while (!all_barrier) { |
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all_barrier = core_data[0].is_paused.load() && core_data[0].initialized.load(); |
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} |
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core_data[0].exit_barrier->Set(); |
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} |
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} else { |
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/// Wait until all cores are paused.
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bool all_barrier = false; |
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while (!all_barrier) { |
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all_barrier = core_data[0].is_paused.load() && core_data[0].initialized.load(); |
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} |
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/// Don't release the barrier
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} |
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paused_state = paused; |
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} |
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void CpuManager::Pause(bool paused) { |
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if (is_multicore) { |
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MultiCorePause(paused); |
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} else { |
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SingleCorePause(paused); |
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} |
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} |
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void CpuManager::RunThread(std::size_t core) { |
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/// Initialization
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system.RegisterCoreThread(core); |
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std::string name = "yuzu:CoreHostThread_" + std::to_string(core); |
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std::string name; |
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if (is_multicore) { |
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name = "yuzu:CoreCPUThread_" + std::to_string(core); |
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} else { |
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name = "yuzu:CPUThread"; |
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} |
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MicroProfileOnThreadCreate(name.c_str()); |
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Common::SetCurrentThreadName(name.c_str()); |
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auto& data = core_data[core]; |
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