core: core_timing: Re-initialize if single/multicore state changes.
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11f85ea713
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638fa6170a
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@ -155,6 +155,24 @@ struct System::Impl {
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// Create default implementations of applets if one is not provided.
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// Create default implementations of applets if one is not provided.
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applet_manager.SetDefaultAppletsIfMissing();
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applet_manager.SetDefaultAppletsIfMissing();
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is_async_gpu = Settings::values.use_asynchronous_gpu_emulation.GetValue();
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kernel.SetMulticore(is_multicore);
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cpu_manager.SetMulticore(is_multicore);
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cpu_manager.SetAsyncGpu(is_async_gpu);
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}
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void ReinitializeIfNecessary(System& system) {
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if (is_multicore == Settings::values.use_multi_core.GetValue()) {
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return;
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}
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LOG_DEBUG(Kernel, "Re-initializing");
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is_multicore = Settings::values.use_multi_core.GetValue();
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Initialize(system);
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}
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}
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SystemResultStatus Run() {
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SystemResultStatus Run() {
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@ -205,11 +223,8 @@ struct System::Impl {
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SystemResultStatus SetupForMainProcess(System& system, Frontend::EmuWindow& emu_window) {
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SystemResultStatus SetupForMainProcess(System& system, Frontend::EmuWindow& emu_window) {
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LOG_DEBUG(Core, "initialized OK");
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LOG_DEBUG(Core, "initialized OK");
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is_async_gpu = Settings::values.use_asynchronous_gpu_emulation.GetValue();
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// Setting changes may require a full system reinitialization (e.g., disabling multicore).
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ReinitializeIfNecessary(system);
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kernel.SetMulticore(is_multicore);
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cpu_manager.SetMulticore(is_multicore);
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cpu_manager.SetAsyncGpu(is_async_gpu);
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kernel.Initialize();
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kernel.Initialize();
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cpu_manager.Initialize();
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cpu_manager.Initialize();
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@ -41,15 +41,7 @@ CoreTiming::CoreTiming()
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: clock{Common::CreateBestMatchingClock(Hardware::BASE_CLOCK_RATE, Hardware::CNTFREQ)} {}
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: clock{Common::CreateBestMatchingClock(Hardware::BASE_CLOCK_RATE, Hardware::CNTFREQ)} {}
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CoreTiming::~CoreTiming() {
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CoreTiming::~CoreTiming() {
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paused = true;
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Reset();
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shutting_down = true;
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pause_event.Set();
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event.Set();
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if (timer_thread) {
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timer_thread->join();
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}
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timer_thread.reset();
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has_started = false;
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}
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}
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void CoreTiming::ThreadEntry(CoreTiming& instance) {
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void CoreTiming::ThreadEntry(CoreTiming& instance) {
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@ -63,6 +55,7 @@ void CoreTiming::ThreadEntry(CoreTiming& instance) {
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}
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}
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void CoreTiming::Initialize(std::function<void()>&& on_thread_init_) {
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void CoreTiming::Initialize(std::function<void()>&& on_thread_init_) {
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Reset();
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on_thread_init = std::move(on_thread_init_);
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on_thread_init = std::move(on_thread_init_);
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event_fifo_id = 0;
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event_fifo_id = 0;
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shutting_down = false;
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shutting_down = false;
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@ -304,6 +297,18 @@ void CoreTiming::ThreadLoop() {
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}
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}
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}
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}
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void CoreTiming::Reset() {
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paused = true;
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shutting_down = true;
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pause_event.Set();
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event.Set();
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if (timer_thread) {
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timer_thread->join();
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}
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timer_thread.reset();
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has_started = false;
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}
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std::chrono::nanoseconds CoreTiming::GetGlobalTimeNs() const {
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std::chrono::nanoseconds CoreTiming::GetGlobalTimeNs() const {
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if (is_multicore) {
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if (is_multicore) {
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return clock->GetTimeNS();
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return clock->GetTimeNS();
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@ -134,6 +134,8 @@ private:
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static void ThreadEntry(CoreTiming& instance);
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static void ThreadEntry(CoreTiming& instance);
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void ThreadLoop();
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void ThreadLoop();
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void Reset();
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std::unique_ptr<Common::WallClock> clock;
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std::unique_ptr<Common::WallClock> clock;
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s64 global_timer = 0;
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s64 global_timer = 0;
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