mirror of https://github.com/AxioDL/amuse.git
364 lines
10 KiB
C++
364 lines
10 KiB
C++
#include "amuse/BooBackend.hpp"
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#include "amuse/Voice.hpp"
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#include "amuse/Submix.hpp"
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#include "amuse/Engine.hpp"
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namespace amuse
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{
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void BooBackendVoice::VoiceCallback::preSupplyAudio(boo::IAudioVoice&,
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double dt)
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{
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m_parent.m_clientVox.preSupplyAudio(dt);
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}
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size_t BooBackendVoice::VoiceCallback::supplyAudio(boo::IAudioVoice&,
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size_t frames, int16_t* data)
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{
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return m_parent.m_clientVox.supplyAudio(frames, data);
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}
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BooBackendVoice::BooBackendVoice(boo::IAudioVoiceEngine& engine, Voice& clientVox,
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double sampleRate, bool dynamicPitch)
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: m_clientVox(clientVox), m_cb(*this),
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m_booVoice(engine.allocateNewMonoVoice(sampleRate, &m_cb, dynamicPitch))
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{}
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BooBackendVoice::BooBackendVoice(boo::IAudioSubmix& submix, Voice& clientVox,
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double sampleRate, bool dynamicPitch)
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: m_clientVox(clientVox), m_cb(*this),
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m_booVoice(submix.allocateNewMonoVoice(sampleRate, &m_cb, dynamicPitch))
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{}
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void BooBackendVoice::resetSampleRate(double sampleRate)
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{
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m_booVoice->resetSampleRate(sampleRate);
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}
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void BooBackendVoice::setMatrixCoefficients(const float coefs[8], bool slew)
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{
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m_booVoice->setMonoMatrixCoefficients(coefs, slew);
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}
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void BooBackendVoice::setSubmixMatrixCoefficients(const float coefs[8], bool slew)
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{
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m_booVoice->setMonoSubmixMatrixCoefficients(coefs, slew);
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}
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void BooBackendVoice::setPitchRatio(double ratio, bool slew)
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{
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m_booVoice->setPitchRatio(ratio, slew);
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}
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void BooBackendVoice::start()
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{
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m_booVoice->start();
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}
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void BooBackendVoice::stop()
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{
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m_booVoice->stop();
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}
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bool BooBackendSubmix::SubmixCallback::canApplyEffect() const
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{
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return m_parent.m_clientSmx.canApplyEffect();
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}
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void BooBackendSubmix::SubmixCallback::applyEffect(int16_t* audio, size_t frameCount,
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const boo::ChannelMap& chanMap, double) const
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{
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return m_parent.m_clientSmx.applyEffect(audio, frameCount, reinterpret_cast<const ChannelMap&>(chanMap));
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}
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void BooBackendSubmix::SubmixCallback::applyEffect(int32_t* audio, size_t frameCount,
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const boo::ChannelMap& chanMap, double) const
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{
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return m_parent.m_clientSmx.applyEffect(audio, frameCount, reinterpret_cast<const ChannelMap&>(chanMap));
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}
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void BooBackendSubmix::SubmixCallback::applyEffect(float* audio, size_t frameCount,
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const boo::ChannelMap& chanMap, double) const
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{
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return m_parent.m_clientSmx.applyEffect(audio, frameCount, reinterpret_cast<const ChannelMap&>(chanMap));
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}
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void BooBackendSubmix::SubmixCallback::resetOutputSampleRate(double sampleRate)
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{
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m_parent.m_clientSmx.resetOutputSampleRate(sampleRate);
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}
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BooBackendSubmix::BooBackendSubmix(boo::IAudioVoiceEngine& engine, Submix& clientSmx)
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: m_clientSmx(clientSmx), m_cb(*this), m_booSubmix(engine.allocateNewSubmix(&m_cb))
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{}
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BooBackendSubmix::BooBackendSubmix(boo::IAudioSubmix& parent, Submix& clientSmx)
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: m_clientSmx(clientSmx), m_cb(*this), m_booSubmix(parent.allocateNewSubmix(&m_cb))
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{}
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void BooBackendSubmix::setChannelGains(const float gains[8])
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{
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m_booSubmix->setChannelGains(gains);
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}
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std::unique_ptr<IBackendVoice>
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BooBackendSubmix::allocateVoice(Voice& clientVox, double sampleRate, bool dynamicPitch)
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{
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return std::make_unique<BooBackendVoice>(*m_booSubmix, clientVox, sampleRate, dynamicPitch);
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}
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double BooBackendSubmix::getSampleRate() const
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{
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return m_booSubmix->getSampleRate();
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}
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SubmixFormat BooBackendSubmix::getSampleFormat() const
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{
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return SubmixFormat(m_booSubmix->getSampleFormat());
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}
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std::string BooBackendMIDIReader::description()
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{
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return m_midiIn->description();
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}
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BooBackendMIDIReader::~BooBackendMIDIReader() {}
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BooBackendMIDIReader::BooBackendMIDIReader(Engine& engine, const char* name, bool useLock)
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: m_engine(engine), m_decoder(*this), m_useLock(useLock)
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{
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BooBackendVoiceAllocator& voxAlloc = static_cast<BooBackendVoiceAllocator&>(engine.getBackend());
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if (!name)
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{
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auto devices = voxAlloc.m_booEngine.enumerateMIDIDevices();
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for (const auto& dev : devices)
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{
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m_midiIn = voxAlloc.m_booEngine.newRealMIDIIn(dev.first.c_str(),
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std::bind(&BooBackendMIDIReader::_MIDIReceive, this,
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std::placeholders::_1, std::placeholders::_2));
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if (m_midiIn)
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return;
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}
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m_midiIn = voxAlloc.m_booEngine.newVirtualMIDIIn(std::bind(&BooBackendMIDIReader::_MIDIReceive, this,
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std::placeholders::_1, std::placeholders::_2));
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}
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else
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m_midiIn = voxAlloc.m_booEngine.newRealMIDIIn(name,
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std::bind(&BooBackendMIDIReader::_MIDIReceive, this,
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std::placeholders::_1, std::placeholders::_2));
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}
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void BooBackendMIDIReader::_MIDIReceive(std::vector<uint8_t>&& bytes, double time)
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{
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std::unique_lock<std::mutex> lk(m_midiMutex, std::defer_lock_t{});
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if (m_useLock) lk.lock();
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m_queue.emplace_back(time, std::move(bytes));
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#if 0
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openlog("LogIt", (LOG_CONS|LOG_PERROR|LOG_PID), LOG_DAEMON);
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syslog(LOG_EMERG, "MIDI receive %f\n", time);
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closelog();
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#endif
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}
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void BooBackendMIDIReader::pumpReader(double dt)
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{
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dt += 0.001; /* Add 1ms to ensure consumer keeps up with producer */
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std::unique_lock<std::mutex> lk(m_midiMutex, std::defer_lock_t{});
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if (m_useLock) lk.lock();
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if (m_queue.empty())
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return;
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/* Determine range of buffer updates within this period */
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auto periodEnd = m_queue.cbegin();
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double startPt = m_queue.front().first;
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for (; periodEnd != m_queue.cend() ; ++periodEnd)
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{
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double delta = periodEnd->first - startPt;
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if (delta > dt)
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break;
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}
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if (m_queue.cbegin() == periodEnd)
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return;
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/* Dispatch buffers */
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for (auto it = m_queue.begin() ; it != periodEnd ;)
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{
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#if 0
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char str[64];
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sprintf(str, "MIDI %zu %f ", it->second.size(), it->first);
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for (uint8_t byte : it->second)
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sprintf(str + strlen(str), "%02X ", byte);
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openlog("LogIt", (LOG_CONS|LOG_PERROR|LOG_PID), LOG_DAEMON);
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syslog(LOG_EMERG, "%s\n", str);
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closelog();
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#endif
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m_decoder.receiveBytes(it->second.cbegin(), it->second.cend());
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it = m_queue.erase(it);
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}
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}
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void BooBackendMIDIReader::noteOff(uint8_t chan, uint8_t key, uint8_t velocity)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->keyOff(chan, key, velocity);
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#if 0
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openlog("LogIt", (LOG_CONS|LOG_PERROR|LOG_PID), LOG_DAEMON);
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syslog(LOG_EMERG, "NoteOff %d", key);
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closelog();
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#endif
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}
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void BooBackendMIDIReader::noteOn(uint8_t chan, uint8_t key, uint8_t velocity)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->keyOn(chan, key, velocity);
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#if 0
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openlog("LogIt", (LOG_CONS|LOG_PERROR|LOG_PID), LOG_DAEMON);
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syslog(LOG_EMERG, "NoteOn %d", key);
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closelog();
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#endif
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}
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void BooBackendMIDIReader::notePressure(uint8_t /*chan*/, uint8_t /*key*/, uint8_t /*pressure*/)
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{
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}
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void BooBackendMIDIReader::controlChange(uint8_t chan, uint8_t control, uint8_t value)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->setCtrlValue(chan, control, value);
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}
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void BooBackendMIDIReader::programChange(uint8_t chan, uint8_t program)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->setChanProgram(chan, program);
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}
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void BooBackendMIDIReader::channelPressure(uint8_t /*chan*/, uint8_t /*pressure*/)
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{
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}
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void BooBackendMIDIReader::pitchBend(uint8_t chan, int16_t pitch)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->setPitchWheel(chan, (pitch - 0x2000) / float(0x2000));
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}
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void BooBackendMIDIReader::allSoundOff(uint8_t chan)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->allOff(chan, true);
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}
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void BooBackendMIDIReader::resetAllControllers(uint8_t /*chan*/)
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{
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}
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void BooBackendMIDIReader::localControl(uint8_t /*chan*/, bool /*on*/)
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{
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}
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void BooBackendMIDIReader::allNotesOff(uint8_t chan)
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{
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for (std::shared_ptr<Sequencer>& seq : m_engine.getActiveSequencers())
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seq->allOff(chan, false);
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}
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void BooBackendMIDIReader::omniMode(uint8_t /*chan*/, bool /*on*/)
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{
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}
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void BooBackendMIDIReader::polyMode(uint8_t /*chan*/, bool /*on*/)
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{
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}
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void BooBackendMIDIReader::sysex(const void* /*data*/, size_t /*len*/)
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{
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}
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void BooBackendMIDIReader::timeCodeQuarterFrame(uint8_t /*message*/, uint8_t /*value*/)
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{
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}
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void BooBackendMIDIReader::songPositionPointer(uint16_t /*pointer*/)
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{
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}
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void BooBackendMIDIReader::songSelect(uint8_t /*song*/)
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{
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}
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void BooBackendMIDIReader::tuneRequest()
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{
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}
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void BooBackendMIDIReader::startSeq()
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{
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}
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void BooBackendMIDIReader::continueSeq()
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{
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}
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void BooBackendMIDIReader::stopSeq()
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{
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}
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void BooBackendMIDIReader::reset()
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{
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}
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BooBackendVoiceAllocator::BooBackendVoiceAllocator(boo::IAudioVoiceEngine& booEngine)
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: m_booEngine(booEngine)
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{}
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std::unique_ptr<IBackendVoice>
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BooBackendVoiceAllocator::allocateVoice(Voice& clientVox, double sampleRate, bool dynamicPitch)
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{
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return std::make_unique<BooBackendVoice>(m_booEngine, clientVox, sampleRate, dynamicPitch);
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}
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std::unique_ptr<IBackendSubmix> BooBackendVoiceAllocator::allocateSubmix(Submix& clientSmx)
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{
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return std::make_unique<BooBackendSubmix>(m_booEngine, clientSmx);
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}
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std::vector<std::pair<std::string, std::string>> BooBackendVoiceAllocator::enumerateMIDIDevices()
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{
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return m_booEngine.enumerateMIDIDevices();
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}
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std::unique_ptr<IMIDIReader> BooBackendVoiceAllocator::allocateMIDIReader(Engine& engine, const char* name)
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{
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std::unique_ptr<IMIDIReader> ret = std::make_unique<BooBackendMIDIReader>(engine, name, m_booEngine.useMIDILock());
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if (!static_cast<BooBackendMIDIReader&>(*ret).m_midiIn)
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return {};
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return ret;
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}
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void BooBackendVoiceAllocator::register5MsCallback(std::function<void(double)>&& callback)
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{
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m_booEngine.register5MsCallback(std::move(callback));
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}
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AudioChannelSet BooBackendVoiceAllocator::getAvailableSet()
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{
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return AudioChannelSet(m_booEngine.getAvailableSet());
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}
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void BooBackendVoiceAllocator::pumpAndMixVoices()
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{
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m_booEngine.pumpAndMixVoices();
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}
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}
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