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https://github.com/citra-emu/citra.git
synced 2024-11-22 16:40:05 +00:00
audiocore/{hle, lle}: remove dependence on static core timing
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fa8c530e10
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975ee15635
@ -40,7 +40,7 @@ using Service::DSP::DSP_DSP;
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namespace AudioCore {
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DspHle::DspHle() : DspHle(Core::System::GetInstance().Memory()) {}
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DspHle::DspHle() : DspHle(Core::System::GetInstance().Memory(), Core::System::GetInstance().CoreTiming()) {}
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template <class Archive>
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void DspHle::serialize(Archive& ar, const unsigned int) {
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@ -58,7 +58,7 @@ static constexpr u64 audio_frame_ticks = samples_per_frame * 4096 * 2ull; ///< U
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struct DspHle::Impl final {
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public:
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explicit Impl(DspHle& parent, Memory::MemorySystem& memory);
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explicit Impl(DspHle& parent, Memory::MemorySystem& memory, Core::Timing& timing);
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~Impl();
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DspState GetDspState() const;
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@ -100,6 +100,7 @@ private:
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HLE::Mixers mixers{};
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DspHle& parent;
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Core::Timing& core_timing;
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Core::TimingEventType* tick_event{};
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std::unique_ptr<HLE::DecoderBase> decoder{};
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@ -118,7 +119,8 @@ private:
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friend class boost::serialization::access;
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};
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DspHle::Impl::Impl(DspHle& parent_, Memory::MemorySystem& memory) : parent(parent_) {
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DspHle::Impl::Impl(DspHle& parent_, Memory::MemorySystem& memory, Core::Timing& timing)
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: parent(parent_), core_timing(timing) {
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dsp_memory.raw_memory.fill(0);
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for (auto& source : sources) {
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@ -152,17 +154,15 @@ DspHle::Impl::Impl(DspHle& parent_, Memory::MemorySystem& memory) : parent(paren
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decoder = std::make_unique<HLE::NullDecoder>();
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}
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Core::Timing& timing = Core::System::GetInstance().CoreTiming();
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tick_event =
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timing.RegisterEvent("AudioCore::DspHle::tick_event", [this](u64, s64 cycles_late) {
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core_timing.RegisterEvent("AudioCore::DspHle::tick_event", [this](u64, s64 cycles_late) {
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this->AudioTickCallback(cycles_late);
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});
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timing.ScheduleEvent(audio_frame_ticks, tick_event);
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core_timing.ScheduleEvent(audio_frame_ticks, tick_event);
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}
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DspHle::Impl::~Impl() {
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Core::Timing& timing = Core::System::GetInstance().CoreTiming();
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timing.UnscheduleEvent(tick_event, 0);
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core_timing.UnscheduleEvent(tick_event, 0);
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}
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DspState DspHle::Impl::GetDspState() const {
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@ -457,11 +457,11 @@ void DspHle::Impl::AudioTickCallback(s64 cycles_late) {
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}
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// Reschedule recurrent event
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Core::Timing& timing = Core::System::GetInstance().CoreTiming();
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timing.ScheduleEvent(audio_frame_ticks - cycles_late, tick_event);
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core_timing.ScheduleEvent(audio_frame_ticks - cycles_late, tick_event);
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}
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DspHle::DspHle(Memory::MemorySystem& memory) : impl(std::make_unique<Impl>(*this, memory)) {}
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DspHle::DspHle(Memory::MemorySystem& memory, Core::Timing& timing)
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: impl(std::make_unique<Impl>(*this, memory, timing)) {}
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DspHle::~DspHle() = default;
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u16 DspHle::RecvData(u32 register_number) {
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@ -22,7 +22,7 @@ namespace AudioCore {
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class DspHle final : public DspInterface {
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public:
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explicit DspHle(Memory::MemorySystem& memory);
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explicit DspHle(Memory::MemorySystem& memory, Core::Timing& timing);
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~DspHle();
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u16 RecvData(u32 register_number) override;
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@ -122,8 +122,8 @@ static u8 PipeIndexToSlotIndex(u8 pipe_index, PipeDirection direction) {
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}
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struct DspLle::Impl final {
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Impl(bool multithread) : multithread(multithread) {
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teakra_slice_event = Core::System::GetInstance().CoreTiming().RegisterEvent(
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Impl(Core::Timing& timing, bool multithread) : core_timing(timing), multithread(multithread) {
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teakra_slice_event = core_timing.RegisterEvent(
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"DSP slice", [this](u64, int late) { TeakraSliceEvent(static_cast<u64>(late)); });
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}
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@ -137,6 +137,7 @@ struct DspLle::Impl final {
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bool semaphore_signaled = false;
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bool data_signaled = false;
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Core::Timing& core_timing;
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Core::TimingEventType* teakra_slice_event;
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std::atomic<bool> loaded = false;
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@ -185,7 +186,7 @@ struct DspLle::Impl final {
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next = 0;
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else
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next -= late;
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Core::System::GetInstance().CoreTiming().ScheduleEvent(next, teakra_slice_event, 0);
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core_timing.ScheduleEvent(next, teakra_slice_event, 0);
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}
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u8* GetDspDataPointer(u32 baddr) {
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@ -326,7 +327,7 @@ struct DspLle::Impl final {
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// TODO: load special segment
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Core::System::GetInstance().CoreTiming().ScheduleEvent(TeakraSlice, teakra_slice_event, 0);
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core_timing.ScheduleEvent(TeakraSlice, teakra_slice_event, 0);
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if (multithread) {
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teakra_thread = std::thread(&Impl::TeakraThread, this);
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@ -371,7 +372,7 @@ struct DspLle::Impl final {
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teakra.RecvData(2); // discard the value
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Core::System::GetInstance().CoreTiming().UnscheduleEvent(teakra_slice_event, 0);
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core_timing.UnscheduleEvent(teakra_slice_event, 0);
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StopTeakraThread();
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}
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};
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@ -475,8 +476,8 @@ void DspLle::UnloadComponent() {
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impl->UnloadComponent();
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}
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DspLle::DspLle(Memory::MemorySystem& memory, bool multithread)
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: impl(std::make_unique<Impl>(multithread)) {
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DspLle::DspLle(Memory::MemorySystem& memory,Core::Timing& timing, bool multithread)
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: impl(std::make_unique<Impl>(timing, multithread)) {
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Teakra::AHBMCallback ahbm;
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ahbm.read8 = [&memory](u32 address) -> u8 {
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return *memory.GetFCRAMPointer(address - Memory::FCRAM_PADDR);
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@ -6,11 +6,15 @@
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#include "audio_core/dsp_interface.h"
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namespace Core {
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class Timing;
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}
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namespace AudioCore {
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class DspLle final : public DspInterface {
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public:
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explicit DspLle(Memory::MemorySystem& memory, bool multithread);
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explicit DspLle(Memory::MemorySystem& memory, Core::Timing& timing, bool multithread);
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~DspLle() override;
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u16 RecvData(u32 register_number) override;
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@ -400,10 +400,10 @@ System::ResultStatus System::Init(Frontend::EmuWindow& emu_window,
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const auto audio_emulation = Settings::values.audio_emulation.GetValue();
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if (audio_emulation == Settings::AudioEmulation::HLE) {
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dsp_core = std::make_unique<AudioCore::DspHle>(*memory);
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dsp_core = std::make_unique<AudioCore::DspHle>(*memory, *timing);
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} else {
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const bool multithread = audio_emulation == Settings::AudioEmulation::LLEMultithreaded;
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dsp_core = std::make_unique<AudioCore::DspLle>(*memory, multithread);
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dsp_core = std::make_unique<AudioCore::DspLle>(*memory, *timing, multithread);
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}
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memory->SetDSP(*dsp_core);
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