[DEV] nearly ended muxer
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@ -122,6 +122,7 @@
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resampling-type:"speexdsp",
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resampling-option:"quality=10",
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},
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input-2-remap:["rear-left", "rear-right"],
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#classical format configuration:
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frequency:48000,
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channel-map:[
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@ -70,6 +70,7 @@ river::io::NodeMuxer::NodeMuxer(const std::string& _name, const std11::shared_pt
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resampling-type:"speexdsp",
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resampling-option:"quality=10",
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},
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input-2-remap:["rear-left", "rear-right"], # remap the IO inputs ...
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# AEC algo definition
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algo:"river-remover",
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algo-mode:"cutter",
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@ -84,7 +85,21 @@ river::io::NodeMuxer::NodeMuxer(const std::string& _name, const std11::shared_pt
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RIVER_ERROR("Can not opne virtual device ... map-on-input-1 in " << _name);
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return;
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}
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m_mapInput1 = m_interfaceInput1->getInterfaceFormat().getMap();
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std11::shared_ptr<const ejson::Array> listChannelMap = m_config->getArray("input-1-remap");
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if ( listChannelMap == nullptr
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|| listChannelMap->size() == 0) {
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m_mapInput1 = m_interfaceInput1->getInterfaceFormat().getMap();
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} else {
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m_mapInput1.clear();
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for (size_t iii=0; iii<listChannelMap->size(); ++iii) {
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std::string value = listChannelMap->getStringValue(iii);
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m_mapInput1.push_back(audio::getChannelFromString(value));
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}
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if (m_mapInput1.size() != m_interfaceInput1->getInterfaceFormat().getMap().size()) {
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RIVER_ERROR("Request remap of the Input 1 the 2 size is wrong ... request=");
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m_mapInput1 = m_interfaceInput1->getInterfaceFormat().getMap();
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}
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}
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RIVER_INFO("Create IN 2 : ");
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m_interfaceInput2 = createInput(hardwareFormat.getFrequency(),
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@ -96,7 +111,21 @@ river::io::NodeMuxer::NodeMuxer(const std::string& _name, const std11::shared_pt
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RIVER_ERROR("Can not opne virtual device ... map-on-input-2 in " << _name);
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return;
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}
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m_mapInput2 = m_interfaceInput1->getInterfaceFormat().getMap();
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listChannelMap = m_config->getArray("input-2-remap");
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if ( listChannelMap == nullptr
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|| listChannelMap->size() == 0) {
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m_mapInput2 = m_interfaceInput2->getInterfaceFormat().getMap();
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} else {
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m_mapInput2.clear();
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for (size_t iii=0; iii<listChannelMap->size(); ++iii) {
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std::string value = listChannelMap->getStringValue(iii);
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m_mapInput2.push_back(audio::getChannelFromString(value));
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}
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if (m_mapInput2.size() != m_interfaceInput2->getInterfaceFormat().getMap().size()) {
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RIVER_ERROR("Request remap of the Input 2 the 2 size is wrong ... request=");
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m_mapInput2 = m_interfaceInput2->getInterfaceFormat().getMap();
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}
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}
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// set callback mode ...
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m_interfaceInput1->setInputCallback(std11::bind(&river::io::NodeMuxer::onDataReceivedFeedBack,
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@ -245,10 +274,11 @@ void river::io::NodeMuxer::process() {
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std::vector<uint8_t> dataIn2;
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dataIn1.resize(256*sizeof(int16_t)*m_mapInput1.size(), 0);
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dataIn2.resize(256*sizeof(int16_t)*m_mapInput2.size(), 0);
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m_data.resize(256*sizeof(int16_t)*getInterfaceFormat().getMap().size(), 0);
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while (true) {
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in1Time = m_bufferInput1.getReadTimeStamp();
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in2Time = m_bufferInput2.getReadTimeStamp();
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RIVER_INFO(" process 256 samples ... in1Time=" << in1Time << " in2Time=" << in2Time << " delta = " << (in1Time-in2Time).count());
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//RIVER_INFO(" process 256 samples ... in1Time=" << in1Time << " in2Time=" << in2Time << " delta = " << (in1Time-in2Time).count());
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m_bufferInput1.read(&dataIn1[0], 256);
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m_bufferInput2.read(&dataIn2[0], 256);
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RIVER_SAVE_FILE_MACRO(int16_t, "REC_INPUT1.raw", &dataIn1[0], 256 * m_mapInput1.size());
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@ -263,9 +293,139 @@ void river::io::NodeMuxer::process() {
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}
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void river::io::NodeMuxer::reorder(void* _output, uint32_t _nbChunk, void* _input, const std::vector<audio::channel>& _mapInput) {
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// real process: (only depend of data size):
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switch (getInterfaceFormat().getFormat()) {
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case audio::format_int8:
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{
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DRAIN_VERBOSE("convert " << _mapInput << " ==> " << getInterfaceFormat().getMap());
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int8_t* in = static_cast<int8_t*>(_input);
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int8_t* out = static_cast<int8_t*>(_output);
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for (size_t kkk=0; kkk<getInterfaceFormat().getMap().size(); ++kkk) {
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int32_t convertId = -1;
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if ( _mapInput.size() == 1
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&& _mapInput[0] == audio::channel_frontCenter) {
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convertId = 0;
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} else {
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for (size_t jjj=0; jjj<_mapInput.size(); ++jjj) {
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if (getInterfaceFormat().getMap()[kkk] == _mapInput[jjj]) {
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convertId = jjj;
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break;
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}
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}
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}
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DRAIN_VERBOSE(" " << convertId << " ==> " << kkk);
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if (convertId != -1) {
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for (size_t iii=0; iii<_nbChunk; ++iii) {
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out[iii*getInterfaceFormat().getMap().size()+kkk] = in[iii*_mapInput.size()+convertId];
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}
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}
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}
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}
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break;
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default:
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case audio::format_int16:
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if (getInterfaceFormat().getMap().size() == 1) {
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DRAIN_VERBOSE("convert " << _mapInput << " ==> " << getInterfaceFormat().getMap());
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int16_t* in = static_cast<int16_t*>(_input);
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int16_t* out = static_cast<int16_t*>(_output);
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for (size_t iii=0; iii<_nbChunk; ++iii) {
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int32_t val = 0;
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for (size_t jjj=0; jjj<_mapInput.size(); ++jjj) {
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val += in[iii*_mapInput.size()+jjj];
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}
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out[iii] = val/_mapInput.size();
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}
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} else {
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DRAIN_VERBOSE("convert " << _mapInput << " ==> " << getInterfaceFormat().getMap());
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int16_t* in = static_cast<int16_t*>(_input);
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int16_t* out = static_cast<int16_t*>(_output);
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for (size_t kkk=0; kkk<getInterfaceFormat().getMap().size(); ++kkk) {
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int32_t convertId = -1;
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if ( _mapInput.size() == 1
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&& _mapInput[0] == audio::channel_frontCenter) {
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convertId = 0;
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} else {
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for (size_t jjj=0; jjj<_mapInput.size(); ++jjj) {
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if (getInterfaceFormat().getMap()[kkk] == _mapInput[jjj]) {
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convertId = jjj;
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break;
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}
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}
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}
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DRAIN_VERBOSE(" " << convertId << " ==> " << kkk);
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if (convertId != -1) {
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for (size_t iii=0; iii<_nbChunk; ++iii) {
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out[iii*getInterfaceFormat().getMap().size()+kkk] = in[iii*_mapInput.size()+convertId];
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}
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}
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}
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}
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break;
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case audio::format_int16_on_int32:
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case audio::format_int24:
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case audio::format_int32:
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case audio::format_float:
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{
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DRAIN_VERBOSE("convert (2) " << _mapInput << " ==> " << getInterfaceFormat().getMap());
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uint32_t* in = static_cast<uint32_t*>(_input);
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uint32_t* out = static_cast<uint32_t*>(_output);
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for (size_t kkk=0; kkk<getInterfaceFormat().getMap().size(); ++kkk) {
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int32_t convertId = -1;
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if ( _mapInput.size() == 1
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&& _mapInput[0] == audio::channel_frontCenter) {
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convertId = 0;
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} else {
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for (size_t jjj=0; jjj<_mapInput.size(); ++jjj) {
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if (getInterfaceFormat().getMap()[kkk] == _mapInput[jjj]) {
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convertId = jjj;
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break;
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}
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}
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}
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if (convertId != -1) {
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for (size_t iii=0; iii<_nbChunk; ++iii) {
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out[iii*getInterfaceFormat().getMap().size()+kkk] = in[iii*_mapInput.size()+convertId];
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}
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}
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}
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}
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break;
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case audio::format_double:
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{
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DRAIN_VERBOSE("convert (2) " << _mapInput << " ==> " << getInterfaceFormat().getMap());
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uint64_t* in = static_cast<uint64_t*>(_input);
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uint64_t* out = static_cast<uint64_t*>(_output);
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for (size_t kkk=0; kkk<getInterfaceFormat().getMap().size(); ++kkk) {
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int32_t convertId = -1;
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if ( _mapInput.size() == 1
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&& _mapInput[0] == audio::channel_frontCenter) {
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convertId = 0;
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} else {
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for (size_t jjj=0; jjj<_mapInput.size(); ++jjj) {
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if (getInterfaceFormat().getMap()[kkk] == _mapInput[jjj]) {
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convertId = jjj;
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break;
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}
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}
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}
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if (convertId != -1) {
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for (size_t iii=0; iii<_nbChunk; ++iii) {
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out[iii*getInterfaceFormat().getMap().size()+kkk] = in[iii*_mapInput.size()+convertId];
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}
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}
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}
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}
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break;
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}
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}
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void river::io::NodeMuxer::processMuxer(void* _dataIn1, void* _dataIn2, uint32_t _nbChunk, const std11::chrono::system_clock::time_point& _time) {
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RIVER_INFO("must Mux data : " << m_mapInput1 << " + " << m_mapInput2 << " ==> " << getInterfaceFormat().getMap());
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//newInput(_dataIn1, _nbChunk, _time);
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//RIVER_INFO("must Mux data : " << m_mapInput1 << " + " << m_mapInput2 << " ==> " << getInterfaceFormat().getMap());
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memset(&m_data[0], 0, m_data.size());
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reorder(&m_data[0], _nbChunk, _dataIn1, m_mapInput1);
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reorder(&m_data[0], _nbChunk, _dataIn2, m_mapInput2);
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newInput(&m_data[0], _nbChunk, _time);
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}
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@ -58,6 +58,8 @@ namespace river {
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std::vector<uint8_t> m_data;
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public:
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virtual void generateDot(etk::FSNode& _node);
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private:
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void reorder(void* _output, uint32_t _nbChunk, void* _input, const std::vector<audio::channel>& _mapInput);
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};
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}
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}
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@ -17,9 +17,32 @@ namespace river_test_muxer {
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private:
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std11::shared_ptr<river::Manager> m_manager;
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std11::shared_ptr<river::Interface> m_interfaceIn;
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std11::shared_ptr<river::Interface> m_interfaceOut;
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double m_phase;
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public:
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TestClass(std11::shared_ptr<river::Manager> _manager) :
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m_manager(_manager) {
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m_manager(_manager),
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m_phase(0) {
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std::vector<audio::channel> channelMap;
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channelMap.push_back(audio::channel_frontLeft);
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channelMap.push_back(audio::channel_frontRight);
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m_interfaceOut = m_manager->createOutput(48000,
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channelMap,
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audio::format_int16,
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"speaker",
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"MuxerTestOut");
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// set callback mode ...
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m_interfaceOut->setOutputCallback(std11::bind(&TestClass::onDataNeeded,
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this,
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std11::placeholders::_1,
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std11::placeholders::_2,
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std11::placeholders::_3,
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std11::placeholders::_4,
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std11::placeholders::_5,
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std11::placeholders::_6));
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m_interfaceOut->addVolumeGroup("FLOW");
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m_interfaceOut->setParameter("volume", "FLOW", "-6dB");
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//Set stereo output:
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m_interfaceIn = m_manager->createInput(48000,
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std::vector<audio::channel>(),
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@ -37,6 +60,25 @@ namespace river_test_muxer {
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std11::placeholders::_6));
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m_manager->generateDotAll("activeProcess.dot");
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}
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void onDataNeeded(void* _data,
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const std11::chrono::system_clock::time_point& _time,
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size_t _nbChunk,
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enum audio::format _format,
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uint32_t _frequency,
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const std::vector<audio::channel>& _map) {
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int16_t* data = static_cast<int16_t*>(_data);
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double baseCycle = 2.0*M_PI/(double)48000 * 440;
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for (int32_t iii=0; iii<_nbChunk; iii++) {
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for (int32_t jjj=0; jjj<_map.size(); jjj++) {
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data[_map.size()*iii+jjj] = sin(m_phase) * 30000;
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}
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m_phase += baseCycle;
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if (m_phase >= 2*M_PI) {
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m_phase -= 2*M_PI;
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}
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}
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}
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void onDataReceived(const void* _data,
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const std11::chrono::system_clock::time_point& _time,
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size_t _nbChunk,
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@ -47,11 +89,14 @@ namespace river_test_muxer {
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APPL_ERROR("call wrong type ... (need int16_t)");
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}
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RIVER_SAVE_FILE_MACRO(int16_t, "REC_MicrophoneMuxed.raw", _data, _nbChunk*_map.size());
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APPL_ERROR("Receive data ... " << _nbChunk << " map=" << _map);
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}
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void run() {
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m_interfaceOut->start();
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m_interfaceIn->start();
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usleep(10000000);
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m_interfaceIn->stop();
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m_interfaceOut->stop();
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}
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};
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