early-access version 1561
This commit is contained in:
parent
db63269e15
commit
0f685141d2
@ -1,7 +1,7 @@
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yuzu emulator early access
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yuzu emulator early access
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=============
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=============
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This is the source code for early-access 1560.
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This is the source code for early-access 1561.
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## Legal Notice
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## Legal Notice
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@ -83,11 +83,15 @@ public:
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return true;
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return true;
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}
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}
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T PopWait() {
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void Wait() {
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if (Empty()) {
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if (Empty()) {
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std::unique_lock lock{cv_mutex};
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std::unique_lock lock{cv_mutex};
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cv.wait(lock, [this]() { return !Empty(); });
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cv.wait(lock, [this]() { return !Empty(); });
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}
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}
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}
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T PopWait() {
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Wait();
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T t;
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T t;
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Pop(t);
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Pop(t);
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return t;
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return t;
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@ -156,6 +160,10 @@ public:
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return spsc_queue.Pop(t);
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return spsc_queue.Pop(t);
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}
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}
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void Wait() {
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spsc_queue.Wait();
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}
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T PopWait() {
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T PopWait() {
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return spsc_queue.PopWait();
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return spsc_queue.PopWait();
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}
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}
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@ -296,7 +296,7 @@ struct System::Impl {
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exit_lock = false;
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exit_lock = false;
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if (gpu_core) {
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if (gpu_core) {
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gpu_core->WaitIdle();
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gpu_core->ShutDown();
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}
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}
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services.reset();
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services.reset();
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@ -297,6 +297,10 @@ HwOpus::HwOpus(Core::System& system_) : ServiceFramework{system_, "hwopus"} {
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{1, &HwOpus::GetWorkBufferSize, "GetWorkBufferSize"},
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{1, &HwOpus::GetWorkBufferSize, "GetWorkBufferSize"},
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{2, nullptr, "OpenOpusDecoderForMultiStream"},
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{2, nullptr, "OpenOpusDecoderForMultiStream"},
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{3, nullptr, "GetWorkBufferSizeForMultiStream"},
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{3, nullptr, "GetWorkBufferSizeForMultiStream"},
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{4, nullptr, "OpenHardwareOpusDecoderEx"},
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{5, nullptr, "GetWorkBufferSizeEx"},
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{6, nullptr, "OpenHardwareOpusDecoderForMultiStreamEx"},
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{7, nullptr, "GetWorkBufferSizeForMultiStreamEx"},
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};
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};
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RegisterHandlers(functions);
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RegisterHandlers(functions);
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}
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}
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@ -517,8 +517,8 @@ void GPU::TriggerCpuInterrupt(const u32 syncpoint_id, const u32 value) const {
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interrupt_manager.GPUInterruptSyncpt(syncpoint_id, value);
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interrupt_manager.GPUInterruptSyncpt(syncpoint_id, value);
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}
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}
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void GPU::WaitIdle() const {
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void GPU::ShutDown() {
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gpu_thread.WaitIdle();
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gpu_thread.ShutDown();
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}
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}
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void GPU::OnCommandListEnd() {
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void GPU::OnCommandListEnd() {
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@ -219,8 +219,8 @@ public:
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return *shader_notify;
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return *shader_notify;
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}
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}
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// Waits for the GPU to finish working
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// Stops the GPU execution and waits for the GPU to finish working
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void WaitIdle() const;
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void ShutDown();
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/// Allows the CPU/NvFlinger to wait on the GPU before presenting a frame.
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/// Allows the CPU/NvFlinger to wait on the GPU before presenting a frame.
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void WaitFence(u32 syncpoint_id, u32 value);
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void WaitFence(u32 syncpoint_id, u32 value);
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@ -29,8 +29,7 @@ static void RunThread(Core::System& system, VideoCore::RendererBase& renderer,
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system.RegisterHostThread();
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system.RegisterHostThread();
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// Wait for first GPU command before acquiring the window context
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// Wait for first GPU command before acquiring the window context
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while (state.queue.Empty())
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state.queue.Wait();
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;
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// If emulation was stopped during disk shader loading, abort before trying to acquire context
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// If emulation was stopped during disk shader loading, abort before trying to acquire context
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if (!state.is_running) {
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if (!state.is_running) {
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@ -57,11 +56,17 @@ static void RunThread(Core::System& system, VideoCore::RendererBase& renderer,
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} else if (const auto* invalidate = std::get_if<InvalidateRegionCommand>(&next.data)) {
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} else if (const auto* invalidate = std::get_if<InvalidateRegionCommand>(&next.data)) {
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rasterizer->OnCPUWrite(invalidate->addr, invalidate->size);
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rasterizer->OnCPUWrite(invalidate->addr, invalidate->size);
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} else if (std::holds_alternative<EndProcessingCommand>(next.data)) {
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} else if (std::holds_alternative<EndProcessingCommand>(next.data)) {
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return;
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ASSERT(state.is_running == false);
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} else {
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} else {
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UNREACHABLE();
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UNREACHABLE();
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}
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}
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state.signaled_fence.store(next.fence);
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state.signaled_fence.store(next.fence);
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if (next.block) {
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// We have to lock the write_lock to ensure that the condition_variable wait not get a
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// race between the check and the lock itself.
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std::lock_guard<std::mutex> lk(state.write_lock);
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state.cv.notify_all();
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}
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}
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}
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}
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}
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@ -69,13 +74,7 @@ ThreadManager::ThreadManager(Core::System& system_, bool is_async_)
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: system{system_}, is_async{is_async_} {}
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: system{system_}, is_async{is_async_} {}
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ThreadManager::~ThreadManager() {
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ThreadManager::~ThreadManager() {
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if (!thread.joinable()) {
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ShutDown();
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return;
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}
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// Notify GPU thread that a shutdown is pending
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PushCommand(EndProcessingCommand());
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thread.join();
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}
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}
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void ThreadManager::StartThread(VideoCore::RendererBase& renderer,
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void ThreadManager::StartThread(VideoCore::RendererBase& renderer,
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@ -112,9 +111,8 @@ void ThreadManager::FlushRegion(VAddr addr, u64 size) {
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case Settings::GPUAccuracy::Extreme: {
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case Settings::GPUAccuracy::Extreme: {
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auto& gpu = system.GPU();
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auto& gpu = system.GPU();
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u64 fence = gpu.RequestFlush(addr, size);
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u64 fence = gpu.RequestFlush(addr, size);
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PushCommand(GPUTickCommand());
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PushCommand(GPUTickCommand(), true);
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while (fence > gpu.CurrentFlushRequestFence()) {
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ASSERT(fence <= gpu.CurrentFlushRequestFence());
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}
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break;
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break;
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}
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}
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default:
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default:
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@ -131,23 +129,45 @@ void ThreadManager::FlushAndInvalidateRegion(VAddr addr, u64 size) {
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rasterizer->OnCPUWrite(addr, size);
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rasterizer->OnCPUWrite(addr, size);
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}
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}
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void ThreadManager::WaitIdle() const {
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void ThreadManager::ShutDown() {
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while (state.last_fence > state.signaled_fence.load(std::memory_order_relaxed) &&
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if (!state.is_running) {
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system.IsPoweredOn()) {
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return;
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}
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}
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{
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std::lock_guard<std::mutex> lk(state.write_lock);
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state.is_running = false;
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state.cv.notify_all();
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}
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if (!thread.joinable()) {
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return;
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}
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// Notify GPU thread that a shutdown is pending
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PushCommand(EndProcessingCommand());
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thread.join();
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}
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}
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void ThreadManager::OnCommandListEnd() {
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void ThreadManager::OnCommandListEnd() {
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PushCommand(OnCommandListEndCommand());
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PushCommand(OnCommandListEndCommand());
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}
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}
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u64 ThreadManager::PushCommand(CommandData&& command_data) {
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u64 ThreadManager::PushCommand(CommandData&& command_data, bool block) {
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const u64 fence{++state.last_fence};
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state.queue.Push(CommandDataContainer(std::move(command_data), fence));
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if (!is_async) {
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if (!is_async) {
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// In synchronous GPU mode, block the caller until the command has executed
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// In synchronous GPU mode, block the caller until the command has executed
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WaitIdle();
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block = true;
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}
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std::unique_lock<std::mutex> lk(state.write_lock);
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const u64 fence{++state.last_fence};
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state.queue.Push(CommandDataContainer(std::move(command_data), fence, block));
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if (block) {
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state.cv.wait(lk, [this, fence]() {
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return fence <= state.signaled_fence.load(std::memory_order_relaxed) ||
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!state.is_running;
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});
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}
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}
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return fence;
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return fence;
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@ -90,21 +90,24 @@ using CommandData =
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struct CommandDataContainer {
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struct CommandDataContainer {
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CommandDataContainer() = default;
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CommandDataContainer() = default;
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explicit CommandDataContainer(CommandData&& data_, u64 next_fence_)
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explicit CommandDataContainer(CommandData&& data_, u64 next_fence_, bool block_)
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: data{std::move(data_)}, fence{next_fence_} {}
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: data{std::move(data_)}, fence{next_fence_}, block(block_) {}
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CommandData data;
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CommandData data;
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u64 fence{};
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u64 fence{};
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bool block{};
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};
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};
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/// Struct used to synchronize the GPU thread
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/// Struct used to synchronize the GPU thread
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struct SynchState final {
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struct SynchState final {
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std::atomic_bool is_running{true};
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std::atomic_bool is_running{true};
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using CommandQueue = Common::MPSCQueue<CommandDataContainer>;
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using CommandQueue = Common::SPSCQueue<CommandDataContainer>;
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std::mutex write_lock;
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CommandQueue queue;
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CommandQueue queue;
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u64 last_fence{};
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u64 last_fence{};
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std::atomic<u64> signaled_fence{};
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std::atomic<u64> signaled_fence{};
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std::condition_variable cv;
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};
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};
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/// Class used to manage the GPU thread
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/// Class used to manage the GPU thread
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@ -132,14 +135,14 @@ public:
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/// Notify rasterizer that any caches of the specified region should be flushed and invalidated
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/// Notify rasterizer that any caches of the specified region should be flushed and invalidated
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void FlushAndInvalidateRegion(VAddr addr, u64 size);
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void FlushAndInvalidateRegion(VAddr addr, u64 size);
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// Wait until the gpu thread is idle.
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// Stops the GPU execution and waits for the GPU to finish working
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void WaitIdle() const;
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void ShutDown();
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void OnCommandListEnd();
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void OnCommandListEnd();
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private:
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private:
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/// Pushes a command to be executed by the GPU thread
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/// Pushes a command to be executed by the GPU thread
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u64 PushCommand(CommandData&& command_data);
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u64 PushCommand(CommandData&& command_data, bool block = false);
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Core::System& system;
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Core::System& system;
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const bool is_async;
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const bool is_async;
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