mirror of https://github.com/AxioDL/boo.git
PulseAudio buffering fix
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parent
19014e0ba7
commit
fdf37c95e0
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@ -352,9 +352,7 @@ struct ALSAAudioVoiceEngine : LinuxMidi
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m_mixInfo.m_channelMap.m_channelCount = 2;
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m_mixInfo.m_channelMap.m_channels[0] = AudioChannel::FrontLeft;
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m_mixInfo.m_channelMap.m_channels[1] = AudioChannel::FrontRight;
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if (m_finalFlt.size() < m_5msFrames * 2)
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m_finalFlt.resize(m_5msFrames * 2);
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_pumpAndMixVoices(m_5msFrames, m_finalFlt.data());
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_pumpAndMixVoices(m_5msFrames, (float*)nullptr);
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return;
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}
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@ -14,7 +14,9 @@ BaseAudioVoiceEngine::~BaseAudioVoiceEngine()
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template <typename T>
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void BaseAudioVoiceEngine::_pumpAndMixVoices(size_t frames, T* dataOut)
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{
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memset(dataOut, 0, sizeof(T) * frames * m_mixInfo.m_channelMap.m_channelCount);
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if (dataOut)
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memset(dataOut, 0, sizeof(T) * frames * m_mixInfo.m_channelMap.m_channelCount);
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if (m_ltRtProcessing)
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{
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size_t sampleCount = m_5msFrames * 5;
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@ -64,6 +66,10 @@ void BaseAudioVoiceEngine::_pumpAndMixVoices(size_t frames, T* dataOut)
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for (auto it = m_linearizedSubmixes.rbegin() ; it != m_linearizedSubmixes.rend() ; ++it)
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(*it)->_pumpAndMix<T>(thisFrames);
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remFrames -= thisFrames;
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if (!dataOut)
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continue;
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if (m_ltRtProcessing)
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{
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m_ltRtProcessing->Process(_getLtRtIn<T>().data(), dataOut, int(thisFrames));
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@ -74,7 +80,6 @@ void BaseAudioVoiceEngine::_pumpAndMixVoices(size_t frames, T* dataOut)
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for (size_t i=0 ; i<sampleCount ; ++i)
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dataOut[i] *= m_totalVol;
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remFrames -= thisFrames;
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dataOut += sampleCount;
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}
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@ -91,7 +91,6 @@ struct PulseAudioVoiceEngine : LinuxMidi
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}
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pa_operation* op;
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size_t periodSz;
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if (pa_context_connect(m_ctx, nullptr, PA_CONTEXT_NOFLAGS, nullptr))
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{
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@ -117,12 +116,11 @@ struct PulseAudioVoiceEngine : LinuxMidi
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}
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m_5msFrames = m_sampleSpec.rate * 5 / 1000;
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periodSz = m_5msFrames * 4;
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m_mixInfo.m_sampleRate = m_sampleSpec.rate;
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m_mixInfo.m_sampleFormat = SOXR_FLOAT32;
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m_mixInfo.m_bitsPerSample = 32;
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m_mixInfo.m_periodFrames = periodSz;
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m_mixInfo.m_periodFrames = m_5msFrames;
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if (!(m_stream = pa_stream_new(m_ctx, "master", &m_sampleSpec, &m_chanMap)))
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{
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Log.report(logvisor::Error, "Unable to pa_stream_new(): %s", pa_strerror(pa_context_errno(m_ctx)));
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@ -130,8 +128,8 @@ struct PulseAudioVoiceEngine : LinuxMidi
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}
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pa_buffer_attr bufAttr;
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bufAttr.minreq = uint32_t(periodSz * m_sampleSpec.channels * sizeof(float));
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bufAttr.maxlength = bufAttr.minreq * 6;
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bufAttr.minreq = uint32_t(m_5msFrames * m_sampleSpec.channels * sizeof(float));
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bufAttr.maxlength = bufAttr.minreq * 12;
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bufAttr.tlength = bufAttr.maxlength;
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bufAttr.prebuf = UINT32_MAX;
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bufAttr.fragsize = UINT32_MAX;
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@ -286,8 +284,6 @@ struct PulseAudioVoiceEngine : LinuxMidi
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userdata->_parseAudioChannelSet(&i->channel_map);
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}
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std::vector<float> m_finalFlt;
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void pumpAndMixVoices()
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{
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if (!m_stream)
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@ -302,9 +298,7 @@ struct PulseAudioVoiceEngine : LinuxMidi
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m_mixInfo.m_channelMap.m_channelCount = 2;
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m_mixInfo.m_channelMap.m_channels[0] = AudioChannel::FrontLeft;
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m_mixInfo.m_channelMap.m_channels[1] = AudioChannel::FrontRight;
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if (m_finalFlt.size() < m_5msFrames * 2)
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m_finalFlt.resize(m_5msFrames * 2);
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_pumpAndMixVoices(m_5msFrames, m_finalFlt.data());
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_pumpAndMixVoices(m_5msFrames, (float*)nullptr);
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return;
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}
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@ -334,8 +328,7 @@ struct PulseAudioVoiceEngine : LinuxMidi
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writablePeriods = nbytes / periodSz;
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size_t periodSamples = m_mixInfo.m_periodFrames * m_mixInfo.m_channelMap.m_channelCount;
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for (int p=0 ; p<writablePeriods ; ++p)
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_pumpAndMixVoices(m_mixInfo.m_periodFrames, reinterpret_cast<float*>(data) + p * periodSamples);
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_pumpAndMixVoices(m_mixInfo.m_periodFrames * writablePeriods, reinterpret_cast<float*>(data));
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if (pa_stream_write(m_stream, data, nbytes, nullptr, 0, PA_SEEK_RELATIVE))
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Log.report(logvisor::Error, "Unable to pa_stream_write()");
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2
logvisor
2
logvisor
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@ -1 +1 @@
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Subproject commit 073cf1473bde254516f7637fcb787478aab47d6c
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Subproject commit 2352699c6598866548b81c3886337b4a8bb91472
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