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AudioStream: Add option to wait until a full buffer is queued
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9316ce532b
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@ -27,6 +27,7 @@ bool AudioStream::Reconfigure(u32 input_sample_rate /* = DefaultInputSampleRate
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m_output_sample_rate = output_sample_rate;
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m_output_sample_rate = output_sample_rate;
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m_channels = channels;
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m_channels = channels;
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m_buffer_size = buffer_size;
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m_buffer_size = buffer_size;
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m_buffer_filling.store(m_wait_for_buffer_fill);
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m_output_paused = true;
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m_output_paused = true;
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if (!SetBufferSize(buffer_size))
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if (!SetBufferSize(buffer_size))
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@ -55,6 +56,14 @@ void AudioStream::SetInputSampleRate(u32 sample_rate)
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InternalSetInputSampleRate(sample_rate);
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InternalSetInputSampleRate(sample_rate);
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}
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}
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void AudioStream::SetWaitForBufferFill(bool enabled)
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{
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std::unique_lock<std::mutex> buffer_lock(m_buffer_mutex);
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m_wait_for_buffer_fill = enabled;
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if (enabled && m_buffer.IsEmpty())
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m_buffer_filling.store(true);
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}
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void AudioStream::InternalSetInputSampleRate(u32 sample_rate)
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void AudioStream::InternalSetInputSampleRate(u32 sample_rate)
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{
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{
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if (m_input_sample_rate == sample_rate)
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if (m_input_sample_rate == sample_rate)
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@ -123,6 +132,11 @@ void AudioStream::WriteFrames(const SampleType* frames, u32 num_frames)
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void AudioStream::EndWrite(u32 num_frames)
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void AudioStream::EndWrite(u32 num_frames)
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{
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{
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m_buffer.AdvanceTail(num_frames * m_channels);
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m_buffer.AdvanceTail(num_frames * m_channels);
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if (m_buffer_filling.load())
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{
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if ((m_buffer.GetSize() / m_channels) >= m_buffer_size)
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m_buffer_filling.store(false);
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}
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m_buffer_mutex.unlock();
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m_buffer_mutex.unlock();
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FramesAvailable();
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FramesAvailable();
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}
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}
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@ -165,8 +179,9 @@ void AudioStream::ReadFrames(SampleType* samples, u32 num_frames, bool apply_vol
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{
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{
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const u32 total_samples = num_frames * m_channels;
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const u32 total_samples = num_frames * m_channels;
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u32 samples_copied = 0;
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u32 samples_copied = 0;
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std::unique_lock<std::mutex> buffer_lock(m_buffer_mutex);
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if (!m_buffer_filling.load())
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{
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{
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std::unique_lock<std::mutex> buffer_lock(m_buffer_mutex);
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if (m_input_sample_rate == m_output_sample_rate)
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if (m_input_sample_rate == m_output_sample_rate)
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{
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{
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samples_copied = std::min(m_buffer.GetSize(), total_samples);
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samples_copied = std::min(m_buffer.GetSize(), total_samples);
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@ -187,6 +202,10 @@ void AudioStream::ReadFrames(SampleType* samples, u32 num_frames, bool apply_vol
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m_resampled_buffer.PopRange(samples, samples_copied);
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m_resampled_buffer.PopRange(samples, samples_copied);
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}
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}
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}
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}
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else
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{
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ReleaseBufferLock(std::move(buffer_lock));
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}
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if (samples_copied < total_samples)
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if (samples_copied < total_samples)
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{
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{
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@ -214,16 +233,18 @@ void AudioStream::ReadFrames(SampleType* samples, u32 num_frames, bool apply_vol
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resample_subpos %= 65536u;
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resample_subpos %= 65536u;
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}
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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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Log_VerbosePrintf("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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m_underflow_flag.store(true);
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}
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}
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else
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else
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{
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{
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// read nothing, so zero-fill
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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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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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Log_VerbosePrintf("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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m_underflow_flag.store(true);
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}
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}
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m_buffer_filling.store(m_wait_for_buffer_fill);
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}
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}
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if (apply_volume && m_output_volume != FullVolume)
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if (apply_volume && m_output_volume != FullVolume)
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@ -267,6 +288,7 @@ void AudioStream::EmptyBuffers()
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std::unique_lock<std::mutex> resampler_lock(m_resampler_mutex);
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std::unique_lock<std::mutex> resampler_lock(m_resampler_mutex);
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m_buffer.Clear();
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m_buffer.Clear();
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m_underflow_flag.store(false);
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m_underflow_flag.store(false);
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m_buffer_filling.store(m_wait_for_buffer_fill);
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ResetResampler();
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ResetResampler();
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}
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}
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@ -37,6 +37,7 @@ public:
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void SetSync(bool enable) { m_sync = enable; }
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void SetSync(bool enable) { m_sync = enable; }
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void SetInputSampleRate(u32 sample_rate);
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void SetInputSampleRate(u32 sample_rate);
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void SetWaitForBufferFill(bool enabled);
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virtual void SetOutputVolume(u32 volume);
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virtual void SetOutputVolume(u32 volume);
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@ -109,10 +110,12 @@ private:
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std::vector<SampleType> m_resample_buffer;
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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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std::atomic_bool m_underflow_flag{false};
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std::atomic_bool m_buffer_filling{false};
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u32 m_max_samples = 0;
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u32 m_max_samples = 0;
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bool m_output_paused = true;
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bool m_output_paused = true;
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bool m_sync = true;
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bool m_sync = true;
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bool m_wait_for_buffer_fill = false;
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// Resampling
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// Resampling
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double m_resampler_ratio = 1.0;
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double m_resampler_ratio = 1.0;
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