/////////////////////////////////////////////////////////////////////////////////// // Copyright (C) 2017 Edouard Griffiths, F4EXB // // // // This program is free software; you can redistribute it and/or modify // // it under the terms of the GNU General Public License as published by // // the Free Software Foundation as version 3 of the License, or // // // // This program is distributed in the hope that it will be useful, // // but WITHOUT ANY WARRANTY; without even the implied warranty of // // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the // // GNU General Public License V3 for more details. // // // // You should have received a copy of the GNU General Public License // // along with this program. If not, see . // /////////////////////////////////////////////////////////////////////////////////// #include #include #include #include "SWGDeviceSettings.h" #include "SWGDeviceState.h" #include "SWGDeviceReport.h" #include "SWGSDRdaemonSinkReport.h" #include "util/simpleserializer.h" #include "dsp/dspcommands.h" #include "dsp/dspengine.h" #include "dsp/filerecord.h" #include "device/devicesinkapi.h" #include "sdrdaemonsinkoutput.h" #include "sdrdaemonsinkthread.h" MESSAGE_CLASS_DEFINITION(SDRdaemonSinkOutput::MsgConfigureSDRdaemonSink, Message) MESSAGE_CLASS_DEFINITION(SDRdaemonSinkOutput::MsgConfigureSDRdaemonSinkWork, Message) MESSAGE_CLASS_DEFINITION(SDRdaemonSinkOutput::MsgStartStop, Message) MESSAGE_CLASS_DEFINITION(SDRdaemonSinkOutput::MsgConfigureSDRdaemonSinkChunkCorrection, Message) SDRdaemonSinkOutput::SDRdaemonSinkOutput(DeviceSinkAPI *deviceAPI) : m_deviceAPI(deviceAPI), m_settings(), m_sdrDaemonSinkThread(0), m_deviceDescription("SDRdaemonSink"), m_startingTimeStamp(0), m_masterTimer(deviceAPI->getMasterTimer()) { } SDRdaemonSinkOutput::~SDRdaemonSinkOutput() { stop(); } void SDRdaemonSinkOutput::destroy() { delete this; } bool SDRdaemonSinkOutput::start() { QMutexLocker mutexLocker(&m_mutex); qDebug() << "SDRdaemonSinkOutput::start"; m_sdrDaemonSinkThread = new SDRdaemonSinkThread(&m_sampleSourceFifo); m_sdrDaemonSinkThread->setDataAddress(m_settings.m_dataAddress, m_settings.m_dataPort); m_sdrDaemonSinkThread->setCenterFrequency(m_settings.m_centerFrequency); m_sdrDaemonSinkThread->setSamplerate(m_settings.m_sampleRate); m_sdrDaemonSinkThread->setNbBlocksFEC(m_settings.m_nbFECBlocks); m_sdrDaemonSinkThread->connectTimer(m_masterTimer); m_sdrDaemonSinkThread->startWork(); double delay = ((127*127*m_settings.m_txDelay) / m_settings.m_sampleRate)/(128 + m_settings.m_nbFECBlocks); m_sdrDaemonSinkThread->setTxDelay((int) (delay*1e6)); mutexLocker.unlock(); //applySettings(m_generalSettings, m_settings, true); qDebug("SDRdaemonSinkOutput::start: started"); return true; } void SDRdaemonSinkOutput::init() { applySettings(m_settings, true); } void SDRdaemonSinkOutput::stop() { qDebug() << "SDRdaemonSinkOutput::stop"; QMutexLocker mutexLocker(&m_mutex); if(m_sdrDaemonSinkThread != 0) { m_sdrDaemonSinkThread->stopWork(); delete m_sdrDaemonSinkThread; m_sdrDaemonSinkThread = 0; } } QByteArray SDRdaemonSinkOutput::serialize() const { return m_settings.serialize(); } bool SDRdaemonSinkOutput::deserialize(const QByteArray& data) { bool success = true; if (!m_settings.deserialize(data)) { m_settings.resetToDefaults(); success = false; } MsgConfigureSDRdaemonSink* message = MsgConfigureSDRdaemonSink::create(m_settings, true); m_inputMessageQueue.push(message); if (m_guiMessageQueue) { MsgConfigureSDRdaemonSink* messageToGUI = MsgConfigureSDRdaemonSink::create(m_settings, true); m_guiMessageQueue->push(messageToGUI); } return success; } const QString& SDRdaemonSinkOutput::getDeviceDescription() const { return m_deviceDescription; } int SDRdaemonSinkOutput::getSampleRate() const { return m_settings.m_sampleRate; } quint64 SDRdaemonSinkOutput::getCenterFrequency() const { return m_settings.m_centerFrequency; } void SDRdaemonSinkOutput::setCenterFrequency(qint64 centerFrequency) { SDRdaemonSinkSettings settings = m_settings; settings.m_centerFrequency = centerFrequency; MsgConfigureSDRdaemonSink* message = MsgConfigureSDRdaemonSink::create(settings, false); m_inputMessageQueue.push(message); if (m_guiMessageQueue) { MsgConfigureSDRdaemonSink* messageToGUI = MsgConfigureSDRdaemonSink::create(settings, false); m_guiMessageQueue->push(messageToGUI); } } std::time_t SDRdaemonSinkOutput::getStartingTimeStamp() const { return m_startingTimeStamp; } bool SDRdaemonSinkOutput::handleMessage(const Message& message) { if (MsgConfigureSDRdaemonSink::match(message)) { qDebug() << "SDRdaemonSinkOutput::handleMessage:" << message.getIdentifier(); MsgConfigureSDRdaemonSink& conf = (MsgConfigureSDRdaemonSink&) message; applySettings(conf.getSettings(), conf.getForce()); return true; } else if (MsgConfigureSDRdaemonSinkWork::match(message)) { MsgConfigureSDRdaemonSinkWork& conf = (MsgConfigureSDRdaemonSinkWork&) message; bool working = conf.isWorking(); if (m_sdrDaemonSinkThread != 0) { if (working) { m_sdrDaemonSinkThread->startWork(); } else { m_sdrDaemonSinkThread->stopWork(); } } return true; } else if (MsgStartStop::match(message)) { MsgStartStop& cmd = (MsgStartStop&) message; qDebug() << "SDRdaemonSinkOutput::handleMessage: MsgStartStop: " << (cmd.getStartStop() ? "start" : "stop"); if (cmd.getStartStop()) { if (m_deviceAPI->initGeneration()) { m_deviceAPI->startGeneration(); } } else { m_deviceAPI->stopGeneration(); } return true; } else if (MsgConfigureSDRdaemonSinkChunkCorrection::match(message)) { MsgConfigureSDRdaemonSinkChunkCorrection& conf = (MsgConfigureSDRdaemonSinkChunkCorrection&) message; if (m_sdrDaemonSinkThread != 0) { m_sdrDaemonSinkThread->setChunkCorrection(conf.getChunkCorrection()); } return true; } else { return false; } } void SDRdaemonSinkOutput::applySettings(const SDRdaemonSinkSettings& settings, bool force) { QMutexLocker mutexLocker(&m_mutex); bool forwardChange = false; bool changeTxDelay = false; if (force || (m_settings.m_dataAddress != settings.m_dataAddress) || (m_settings.m_dataPort != settings.m_dataPort)) { if (m_sdrDaemonSinkThread != 0) { m_sdrDaemonSinkThread->setDataAddress(settings.m_dataAddress, settings.m_dataPort); } } if (force || (m_settings.m_centerFrequency != settings.m_centerFrequency)) { if (m_sdrDaemonSinkThread != 0) { m_sdrDaemonSinkThread->setCenterFrequency(settings.m_centerFrequency); } forwardChange = true; } if (force || (m_settings.m_sampleRate != settings.m_sampleRate)) { if (m_sdrDaemonSinkThread != 0) { m_sdrDaemonSinkThread->setSamplerate(settings.m_sampleRate); } forwardChange = true; changeTxDelay = true; } if (force || (m_settings.m_nbFECBlocks != settings.m_nbFECBlocks)) { if (m_sdrDaemonSinkThread != 0) { m_sdrDaemonSinkThread->setNbBlocksFEC(settings.m_nbFECBlocks); } changeTxDelay = true; } if (force || (m_settings.m_txDelay != settings.m_txDelay)) { changeTxDelay = true; } if (changeTxDelay) { double delay = ((127*127*settings.m_txDelay) / settings.m_sampleRate)/(128 + settings.m_nbFECBlocks); qDebug("SDRdaemonSinkOutput::applySettings: Tx delay: %f us", delay*1e6); if (m_sdrDaemonSinkThread != 0) { // delay is calculated as a fraction of the nominal UDP block process time // frame size: 127 * 127 samples // divided by sample rate gives the frame process time // divided by the number of actual blocks including FEC blocks gives the block (i.e. UDP block) process time m_sdrDaemonSinkThread->setTxDelay((int) (delay*1e6)); } } mutexLocker.unlock(); qDebug() << "SDRdaemonSinkOutput::applySettings:" << " m_centerFrequency: " << settings.m_centerFrequency << " m_sampleRate: " << settings.m_sampleRate << " m_txDelay: " << settings.m_txDelay << " m_nbFECBlocks: " << settings.m_nbFECBlocks << " m_apiAddress: " << settings.m_apiAddress << " m_apiPort: " << settings.m_apiPort << " m_dataAddress: " << settings.m_dataAddress << " m_dataPort: " << settings.m_dataPort; if (forwardChange) { DSPSignalNotification *notif = new DSPSignalNotification(settings.m_sampleRate, settings.m_centerFrequency); m_deviceAPI->getDeviceEngineInputMessageQueue()->push(notif); } m_settings = settings; } int SDRdaemonSinkOutput::webapiRunGet( SWGSDRangel::SWGDeviceState& response, QString& errorMessage __attribute__((unused))) { m_deviceAPI->getDeviceEngineStateStr(*response.getState()); return 200; } int SDRdaemonSinkOutput::webapiRun( bool run, SWGSDRangel::SWGDeviceState& response, QString& errorMessage __attribute__((unused))) { m_deviceAPI->getDeviceEngineStateStr(*response.getState()); MsgStartStop *message = MsgStartStop::create(run); m_inputMessageQueue.push(message); if (m_guiMessageQueue) { MsgStartStop *messagetoGui = MsgStartStop::create(run); m_guiMessageQueue->push(messagetoGui); } return 200; } int SDRdaemonSinkOutput::webapiSettingsGet( SWGSDRangel::SWGDeviceSettings& response, QString& errorMessage __attribute__((unused))) { response.setSdrDaemonSinkSettings(new SWGSDRangel::SWGSDRdaemonSinkSettings()); response.getSdrDaemonSinkSettings()->init(); webapiFormatDeviceSettings(response, m_settings); return 200; } int SDRdaemonSinkOutput::webapiSettingsPutPatch( bool force, const QStringList& deviceSettingsKeys, SWGSDRangel::SWGDeviceSettings& response, // query + response QString& errorMessage __attribute__((unused))) { SDRdaemonSinkSettings settings = m_settings; if (deviceSettingsKeys.contains("centerFrequency")) { settings.m_centerFrequency = response.getSdrDaemonSinkSettings()->getCenterFrequency(); } if (deviceSettingsKeys.contains("sampleRate")) { settings.m_sampleRate = response.getSdrDaemonSinkSettings()->getSampleRate(); } if (deviceSettingsKeys.contains("txDelay")) { settings.m_txDelay = response.getSdrDaemonSinkSettings()->getTxDelay(); } if (deviceSettingsKeys.contains("nbFECBlocks")) { settings.m_nbFECBlocks = response.getSdrDaemonSinkSettings()->getNbFecBlocks(); } if (deviceSettingsKeys.contains("apiAddress")) { settings.m_apiAddress = *response.getSdrDaemonSinkSettings()->getApiAddress(); } if (deviceSettingsKeys.contains("apiPort")) { settings.m_apiPort = response.getSdrDaemonSinkSettings()->getApiPort(); } if (deviceSettingsKeys.contains("dataAddress")) { settings.m_dataAddress = *response.getSdrDaemonSinkSettings()->getDataAddress(); } if (deviceSettingsKeys.contains("dataPort")) { settings.m_dataPort = response.getSdrDaemonSinkSettings()->getDataPort(); } if (deviceSettingsKeys.contains("serverType")) { int serverType = response.getSdrDaemonSinkSettings()->getServerType(); settings.m_serverType = serverType < 0 ? SDRdaemonSinkSettings::ServerAngel : serverType > 1 ? SDRdaemonSinkSettings::ServerAngel : (SDRdaemonSinkSettings::ServerType) serverType; } if (deviceSettingsKeys.contains("deviceIndex")) { settings.m_deviceIndex = response.getSdrDaemonSinkSettings()->getDeviceIndex(); } if (deviceSettingsKeys.contains("channelIndex")) { settings.m_channelIndex = response.getSdrDaemonSinkSettings()->getChannelIndex(); } MsgConfigureSDRdaemonSink *msg = MsgConfigureSDRdaemonSink::create(settings, force); m_inputMessageQueue.push(msg); if (m_guiMessageQueue) // forward to GUI if any { MsgConfigureSDRdaemonSink *msgToGUI = MsgConfigureSDRdaemonSink::create(settings, force); m_guiMessageQueue->push(msgToGUI); } webapiFormatDeviceSettings(response, settings); return 200; } int SDRdaemonSinkOutput::webapiReportGet( SWGSDRangel::SWGDeviceReport& response, QString& errorMessage __attribute__((unused))) { response.setSdrDaemonSinkReport(new SWGSDRangel::SWGSDRdaemonSinkReport()); response.getSdrDaemonSinkReport()->init(); webapiFormatDeviceReport(response); return 200; } void SDRdaemonSinkOutput::webapiFormatDeviceSettings(SWGSDRangel::SWGDeviceSettings& response, const SDRdaemonSinkSettings& settings) { response.getSdrDaemonSinkSettings()->setCenterFrequency(settings.m_centerFrequency); response.getSdrDaemonSinkSettings()->setSampleRate(settings.m_sampleRate); response.getSdrDaemonSinkSettings()->setTxDelay(settings.m_txDelay); response.getSdrDaemonSinkSettings()->setNbFecBlocks(settings.m_nbFECBlocks); response.getSdrDaemonSinkSettings()->setApiAddress(new QString(settings.m_apiAddress)); response.getSdrDaemonSinkSettings()->setApiPort(settings.m_apiPort); response.getSdrDaemonSinkSettings()->setDataAddress(new QString(settings.m_dataAddress)); response.getSdrDaemonSinkSettings()->setDataPort(settings.m_dataPort); response.getSdrDaemonSinkSettings()->setServerType((int) settings.m_serverType); response.getSdrDaemonSinkSettings()->setDeviceIndex(settings.m_deviceIndex); response.getSdrDaemonSinkSettings()->setChannelIndex(settings.m_channelIndex); } void SDRdaemonSinkOutput::webapiFormatDeviceReport(SWGSDRangel::SWGDeviceReport& response) { response.getSdrDaemonSinkReport()->setBufferRwBalance(m_sampleSourceFifo.getRWBalance()); response.getSdrDaemonSinkReport()->setSampleCount(m_sdrDaemonSinkThread ? (int) m_sdrDaemonSinkThread->getSamplesCount() : 0); }