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https://github.com/RetroDECK/Duckstation.git
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System: Reset throttler when audio buffers underflow
Should hopefully reduce the chances of the audio source ending up out of phase from the emulation when vsync is disabled.
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@ -170,12 +170,14 @@ void AudioStream::ReadFrames(SampleType* samples, u32 num_frames, bool apply_vol
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}
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Log_DevPrintf("Audio buffer underflow, resampled %u frames to %u", samples_copied / m_channels, num_frames);
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m_underflow_flag.store(true);
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}
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else
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{
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// read nothing, so zero-fill
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std::memset(samples, 0, sizeof(SampleType) * total_samples);
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Log_DevPrintf("Audio buffer underflow with no samples, added %u frames silence", num_frames);
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m_underflow_flag.store(true);
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}
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}
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@ -218,4 +220,5 @@ void AudioStream::EmptyBuffers()
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{
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std::unique_lock<std::mutex> lock(m_buffer_mutex);
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m_buffer.Clear();
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m_underflow_flag.store(false);
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}
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@ -1,6 +1,7 @@
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#pragma once
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#include "fifo_queue.h"
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#include "types.h"
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#include <atomic>
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#include <condition_variable>
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#include <memory>
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#include <mutex>
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@ -45,6 +46,12 @@ public:
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void WriteFrames(const SampleType* frames, u32 num_frames);
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void EndWrite(u32 num_frames);
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bool DidUnderflow()
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{
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bool expected = true;
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return m_underflow_flag.compare_exchange_strong(expected, false);
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}
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static std::unique_ptr<AudioStream> CreateNullAudioStream();
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// Latency computation - returns values in seconds
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@ -84,6 +91,7 @@ private:
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mutable std::mutex m_buffer_mutex;
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std::condition_variable m_buffer_draining_cv;
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std::vector<SampleType> m_resample_buffer;
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std::atomic_bool m_underflow_flag{false};
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u32 m_max_samples = 0;
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bool m_output_paused = true;
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@ -1216,8 +1216,22 @@ void UpdateThrottlePeriod()
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static_cast<s32>(1000000000.0 / static_cast<double>(s_throttle_frequency) / static_cast<double>(s_target_speed));
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}
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void ResetThrottler()
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{
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s_last_throttle_time = 0;
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s_throttle_timer.Reset();
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}
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void Throttle()
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{
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// Reset the throttler on audio buffer overflow, so we don't end up out of phase.
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if (g_host_interface->GetAudioStream()->DidUnderflow())
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{
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Log_DevPrintf("Audio buffer underflowed, resetting throttler");
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ResetThrottler();
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return;
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}
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// Allow variance of up to 40ms either way.
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constexpr s64 MAX_VARIANCE_TIME = INT64_C(40000000);
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@ -1239,8 +1253,7 @@ void Throttle()
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s_speed_lost_time_timestamp.Reset();
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}
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#endif
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s_last_throttle_time = 0;
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s_throttle_timer.Reset();
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ResetThrottler();
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}
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else if (sleep_time >= MINIMUM_SLEEP_TIME)
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{
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@ -1294,8 +1307,7 @@ void ResetPerformanceCounters()
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s_average_frame_time_accumulator = 0.0f;
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s_worst_frame_time_accumulator = 0.0f;
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s_fps_timer.Reset();
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s_throttle_timer.Reset();
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s_last_throttle_time = 0;
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ResetThrottler();
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}
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bool LoadEXE(const char* filename)
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@ -154,6 +154,7 @@ void SetThrottleFrequency(float frequency);
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/// Updates the throttle period, call when target emulation speed changes.
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void UpdateThrottlePeriod();
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void ResetThrottler();
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/// Throttles the system, i.e. sleeps until it's time to execute the next frame.
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void Throttle();
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