[DEV] work on the stream of AEC
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3f6d736454
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58da3cf125
@ -19,7 +19,7 @@ static std11::mutex g_mutex;
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static std::vector<std11::weak_ptr<river::Manager> > g_listOfAllManager;
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std11::shared_ptr<river::Manager> river::Manager::create(const std::string& _applicationUniqueId) {
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std11::unique_lock<std11:mutex> lock(g_mutex);
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std11::unique_lock<std11::mutex> lock(g_mutex);
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for (size_t iii=0; iii<g_listOfAllManager.size() ; ++iii) {
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std11::shared_ptr<river::Manager> tmp = g_listOfAllManager[iii].lock();
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if (tmp == nullptr) {
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@ -30,7 +30,7 @@ std11::shared_ptr<river::Interface> river::io::NodeAEC::createInput(float _freq,
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}
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std::string streamName = tmppp->getStringValue("map-on", "error");
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m_nbChunk = m_config->getNumberValue("nb-chunk", 1024);
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// check if it is an Output:
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std::string type = tmppp->getStringValue("io", "error");
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if ( type != "input"
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@ -197,8 +197,8 @@ void river::io::NodeAEC::onDataReceivedFeedBack(const void* _data,
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}
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void river::io::NodeAEC::process() {
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if ( m_bufferMicrophone.getSize() <= 256
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|| m_bufferFeedBack.getSize() <= 256) {
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if ( m_bufferMicrophone.getSize() <= m_nbChunk
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|| m_bufferFeedBack.getSize() <= m_nbChunk) {
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return;
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}
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std11::chrono::system_clock::time_point MicTime = m_bufferMicrophone.getReadTimeStamp();
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@ -227,10 +227,8 @@ void river::io::NodeAEC::process() {
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}
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}
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// check if enought time after synchronisation ...
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if (m_bufferMicrophone.getSize() <= 256) {
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return;
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}
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if (m_bufferFeedBack.getSize() <= 256) {
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if ( m_bufferMicrophone.getSize() <= m_nbChunk
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|| m_bufferFeedBack.getSize() <= m_nbChunk) {
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return;
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}
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@ -243,22 +241,20 @@ void river::io::NodeAEC::process() {
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}
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std::vector<uint8_t> dataMic;
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std::vector<uint8_t> dataFB;
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dataMic.resize(256*sizeof(int16_t)*2, 0);
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dataFB.resize(256*sizeof(int16_t), 0);
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dataMic.resize(m_nbChunk*sizeof(int16_t)*2, 0);
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dataFB.resize(m_nbChunk*sizeof(int16_t), 0);
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while (true) {
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MicTime = m_bufferMicrophone.getReadTimeStamp();
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fbTime = m_bufferFeedBack.getReadTimeStamp();
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RIVER_INFO(" process 256 samples ... micTime=" << MicTime << " fbTime=" << fbTime << " delta = " << (MicTime-fbTime).count());
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m_bufferMicrophone.read(&dataMic[0], 256);
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m_bufferFeedBack.read(&dataFB[0], 256);
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RIVER_SAVE_FILE_MACRO(int16_t, "REC_Microphone_sync.raw", &dataMic[0], 256*2);
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RIVER_SAVE_FILE_MACRO(int16_t, "REC_FeedBack_sync.raw", &dataFB[0], 256);
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m_bufferMicrophone.read(&dataMic[0], m_nbChunk);
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m_bufferFeedBack.read(&dataFB[0], m_nbChunk);
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RIVER_SAVE_FILE_MACRO(int16_t, "REC_Microphone_sync.raw", &dataMic[0], m_nbChunk*2);
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RIVER_SAVE_FILE_MACRO(int16_t, "REC_FeedBack_sync.raw", &dataFB[0], m_nbChunk);
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// if threaded : send event / otherwise, process ...
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//processAEC(&dataMic[0], &dataFB[0], 256, _time);
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if (m_bufferMicrophone.getSize() <= 256) {
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return;
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}
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if (m_bufferFeedBack.getSize() <= 256) {
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processAEC(&dataMic[0], &dataFB[0], m_nbChunk, MicTime);
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if ( m_bufferMicrophone.getSize() <= m_nbChunk
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|| m_bufferFeedBack.getSize() <= m_nbChunk) {
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return;
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}
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}
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@ -274,27 +270,15 @@ void river::io::NodeAEC::generateDot(etk::FSNode& _node) {
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_node << " subgraph clusterNode_" << m_uid << " {\n";
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_node << " color=blue;\n";
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_node << " label=\"[" << m_uid << "] IO::Node : " << m_name << "\";\n";
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_node << " node [shape=box];\n";
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// TODO : Create a structure ...
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_node << " NODE_" << m_uid << "_HW_AEC [ label=\"AEC\" ];\n";
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_node << " subgraph clusterNode_" << m_uid << "_process {\n";
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_node << " label=\"Drain::Process\";\n";
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_node << " node [shape=ellipse];\n";
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_node << " node_ALGO_" << m_uid << "_in [ label=\"format=" << etk::to_string(m_process.getInputConfig().getFormat())
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<< "\\n freq=" << m_process.getInputConfig().getFrequency()
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<< "\\n channelMap=" << etk::to_string(m_process.getInputConfig().getMap()) << "\" ];\n";
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_node << " node_ALGO_" << m_uid << "_out [ label=\"format=" << etk::to_string(m_process.getOutputConfig().getFormat())
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<< "\\n freq=" << m_process.getOutputConfig().getFrequency()
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<< "\\n channelMap=" << etk::to_string(m_process.getOutputConfig().getMap()) << "\" ];\n";
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_node << " }\n";
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_node << " NODE_" << m_uid << "_HW_AEC [ label=\"AEC\\n channelMap=" << etk::to_string(getInterfaceFormat().getMap()) << "\" ];\n";
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std::string nameIn;
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std::string nameOut;
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m_process.generateDot(_node, 3, m_uid, nameIn, nameOut, false);
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_node << " node [shape=square];\n";
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_node << " NODE_" << m_uid << "_demuxer [ label=\"DEMUXER\\n format=" << etk::to_string(m_process.getOutputConfig().getFormat()) << "\" ];\n";
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// Link all nodes :
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_node << " NODE_" << m_uid << "_HW_AEC -> node_ALGO_" << m_uid << "_in;\n";
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_node << " node_ALGO_" << m_uid << "_in -> node_ALGO_" << m_uid << "_out;\n";
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_node << " node_ALGO_" << m_uid << "_out -> NODE_" << m_uid << "_demuxer;\n";
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_node << " NODE_" << m_uid << "_HW_AEC -> " << nameIn << ";\n";
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_node << " " << nameOut << " -> NODE_" << m_uid << "_demuxer;\n";
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_node << " }\n";
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if (m_interfaceMicrophone != nullptr) {
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_node << " " << m_interfaceMicrophone->getDotNodeName() << " -> NODE_" << m_uid << "_HW_AEC;\n";
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@ -302,15 +286,29 @@ void river::io::NodeAEC::generateDot(etk::FSNode& _node) {
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if (m_interfaceFeedBack != nullptr) {
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_node << " " << m_interfaceFeedBack->getDotNodeName() << " -> NODE_" << m_uid << "_HW_AEC;\n";
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}
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_node << " \n";
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for (size_t iii=0; iii<m_list.size(); ++iii) {
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if (m_list[iii] != nullptr) {
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if (m_list[iii]->getMode() == modeInterface_input) {
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m_list[iii]->generateDot(_node, "NODE_" + etk::to_string(m_uid) + "_demuxer");
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} else if (m_list[iii]->getMode() == modeInterface_output) {
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m_list[iii]->generateDot(_node, "NODE_" + etk::to_string(m_uid) + "_muxer");
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} else if (m_list[iii]->getMode() == modeInterface_feedback) {
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m_list[iii]->generateDot(_node, "NODE_" + etk::to_string(m_uid) + "_demuxer");
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for (size_t iii=0; iii< m_listAvaillable.size(); ++iii) {
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if (m_listAvaillable[iii].expired() == true) {
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continue;
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}
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std11::shared_ptr<river::Interface> element = m_listAvaillable[iii].lock();
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if (element == nullptr) {
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continue;
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}
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bool isLink = false;
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for (size_t jjj=0; jjj<m_list.size(); ++jjj) {
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if (element == m_list[jjj]) {
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isLink = true;
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}
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}
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if (element != nullptr) {
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if (element->getMode() == modeInterface_input) {
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element->generateDot(_node, "NODE_" + etk::to_string(m_uid) + "_demuxer", isLink);
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} else if (element->getMode() == modeInterface_output) {
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element->generateDot(_node, "NODE_" + etk::to_string(m_uid) + "_muxer", isLink);
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} else if (element->getMode() == modeInterface_feedback) {
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element->generateDot(_node, "NODE_" + etk::to_string(m_uid) + "_demuxer", isLink);
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} else {
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}
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@ -89,6 +89,8 @@ namespace river {
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void processAEC(void* _dataMic, void* _dataFB, uint32_t _nbChunk, const std11::chrono::system_clock::time_point& _time);
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public:
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virtual void generateDot(etk::FSNode& _node);
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private:
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int32_t m_nbChunk;
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};
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}
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}
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@ -190,13 +190,15 @@ river::io::NodeAirTAudio::NodeAirTAudio(const std::string& _name, const std11::s
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airtaudio::StreamParameters params;
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params.deviceId = deviceId;
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params.deviceName = streamName;
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// TODO : Remove limit of 2 channels ...
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params.nChannels = hardwareFormat.getMap().size();
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if (m_isInput == true) {
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m_info.inputChannels = 2;
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params.nChannels = 2;
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if (m_info.inputChannels < params.nChannels) {
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RIVER_CRITICAL("Can not open hardware device with more channel (" << params.nChannels << ") that is autorized by hardware (" << m_info.inputChannels << ").");
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}
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} else {
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m_info.outputChannels = 2;
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params.nChannels = 2;
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if (m_info.outputChannels < params.nChannels) {
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RIVER_CRITICAL("Can not open hardware device with more channel (" << params.nChannels << ") that is autorized by hardware (" << m_info.inputChannels << ").");
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}
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}
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airtaudio::StreamOptions option;
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etk::from_string(option.mode, tmpObject->getStringValue("timestamp-mode", "soft"));
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203
test/testAEC.h
203
test/testAEC.h
@ -12,6 +12,209 @@
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namespace river_test_aec {
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class Linker {
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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_interfaceOut;
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std11::shared_ptr<river::Interface> m_interfaceIn;
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drain::CircularBuffer m_buffer;
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public:
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Linker(std11::shared_ptr<river::Manager> _manager, const std::string& _input, const std::string& _output) :
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m_manager(_manager) {
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//Set stereo output:
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std::vector<audio::channel> channelMap;
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if (false) { //"speaker" == _output) {
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channelMap.push_back(audio::channel_frontCenter);
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} else {
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channelMap.push_back(audio::channel_frontLeft);
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channelMap.push_back(audio::channel_frontRight);
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}
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m_buffer.setCapacity(std11::chrono::milliseconds(2000), sizeof(int16_t)*channelMap.size(), 48000);
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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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_output);
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if(m_interfaceOut == nullptr) {
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APPL_ERROR("nullptr interface");
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return;
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}
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// set callback mode ...
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m_interfaceOut->setOutputCallback(std11::bind(&Linker::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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if ("speaker" == _output) {
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m_interfaceOut->setParameter("volume", "FLOW", "0dB");
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}
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m_interfaceIn = m_manager->createInput(48000,
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channelMap,
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audio::format_int16,
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_input);
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if(m_interfaceIn == nullptr) {
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APPL_ERROR("nullptr interface");
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return;
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}
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// set callback mode ...
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m_interfaceIn->setInputCallback(std11::bind(&Linker::onDataReceived,
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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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}
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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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if (_format != audio::format_int16) {
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APPL_ERROR("call wrong type ... (need int16_t)");
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}
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m_buffer.read(_data, _nbChunk);
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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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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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if (_format != audio::format_int16) {
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APPL_ERROR("call wrong type ... (need int16_t)");
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}
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m_buffer.write(_data, _nbChunk);
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}
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void start() {
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if(m_interfaceIn == nullptr) {
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APPL_ERROR("nullptr interface");
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return;
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}
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if(m_interfaceOut == nullptr) {
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APPL_ERROR("nullptr interface");
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return;
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}
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m_interfaceOut->start();
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m_interfaceIn->start();
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}
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void stop() {
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if(m_interfaceIn == nullptr) {
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APPL_ERROR("nullptr interface");
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return;
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}
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if(m_interfaceOut == nullptr) {
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APPL_ERROR("nullptr interface");
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return;
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}
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m_manager->generateDotAll("activeProcess.dot");
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m_interfaceOut->stop();
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m_interfaceIn->stop();
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}
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};
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static const std::string configurationRiver =
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"{\n"
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" speaker:{\n"
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" io:'output',\n"
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" map-on:{\n"
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" interface:'auto',\n"
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" name:'hw:0,0',\n"
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" timestamp-mode:'trigered',\n"
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" },\n"
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" frequency:0,\n"
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" channel-map:['front-left', 'front-right'],\n"
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" type:'auto',\n"
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" nb-chunk:1024,\n"
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" },\n"
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" microphone:{\n"
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" io:'input',\n"
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" map-on:{\n"
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" interface:'auto',\n"
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" name:'hw:0,0',\n"
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" timestamp-mode:'trigered',\n"
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" },\n"
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" frequency:0,\n"
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" channel-map:['front-left', 'front-right'],\n"
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" type:'auto',\n"
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" nb-chunk:1024\n"
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" },\n"
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" speaker-test:{\n"
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" io:'output',\n"
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" map-on:{\n"
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" interface:'alsa',\n"
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" name:'hw:2,0',\n"
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" timestamp-mode:'trigered',\n"
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" },\n"
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//" group:'groupSynchro',\n"
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" frequency:0,\n"
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" channel-map:['front-left', 'front-right'],\n"
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" type:'auto',\n"
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" nb-chunk:1024\n"
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" },\n"
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" microphone-test:{\n"
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" io:'input',\n"
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" map-on:{\n"
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" interface:'alsa',\n"
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" name:'hw:2,0',\n"
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" timestamp-mode:'trigered',\n"
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" },\n"
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//" group:'groupSynchro',\n"
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" frequency:0,\n"
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" channel-map:['front-center'],\n"
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" type:'auto',\n"
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" nb-chunk:1024\n"
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" },\n"
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" # virtual Nodes :\n"
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" microphone-clean:{\n"
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" io:'aec',\n"
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" map-on-microphone:{\n"
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" io:'input',\n"
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" map-on:'microphone-test'\n"
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" },\n"
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" map-on-feedback:{\n"
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" io:'feedback',\n"
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" map-on:'speaker-test',\n"
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" },\n"
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" frequency:48000,\n"
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" channel-map:[\n"
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" 'front-left', 'front-right'\n"
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//" 'front-center'\n"
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" ],\n"
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" nb-chunk:1024,\n"
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" type:'int16',\n"
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" algo:'river-remover',\n"
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" algo-mode:'cutter',\n"
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" feedback-delay:10000,\n"
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" mux-demux-type:'int16'\n"
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" }\n"
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"}\n";
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TEST(TestUser, testAECManually) {
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river::initString(configurationRiver);
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std11::shared_ptr<river::Manager> manager;
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manager = river::Manager::create("testApplication");
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std11::shared_ptr<Linker> processLink1 = std11::make_shared<Linker>(manager, "microphone-clean", "speaker");
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std11::shared_ptr<Linker> processLink2 = std11::make_shared<Linker>(manager, "microphone", "speaker-test");
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processLink1->start();
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processLink2->start();
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sleep(30);
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processLink1->stop();
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processLink2->stop();
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processLink1.reset();
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processLink2.reset();
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manager.reset();
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river::unInit();
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}
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};
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#undef __class__
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@ -82,7 +82,7 @@ namespace river_test_playback_callback {
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" io:'output',\n"
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" map-on:{\n"
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" interface:'auto',\n"
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" name:'default',\n"
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" name:'hw:2,0',\n"
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" },\n"
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" frequency:0,\n"
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" channel-map:['front-left', 'front-right'],\n"
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