void SDRPostThread::updateActiveDemodulators() { // In range? std::vector<DemodulatorInstance *>::iterator demod_i; nRunDemods = 0; long long centerFreq = wxGetApp().getFrequency(); for (demod_i = demodulators.begin(); demod_i != demodulators.end(); demod_i++) { DemodulatorInstance *demod = *demod_i; DemodulatorThreadInputQueue *demodQueue = demod->getIQInputDataPipe(); // not in range? if (demod->isDeltaLock()) { if (demod->getFrequency() != centerFreq + demod->getDeltaLockOfs()) { demod->setFrequency(centerFreq + demod->getDeltaLockOfs()); demod->updateLabel(demod->getFrequency()); demod->setFollow(false); demod->setTracking(false); } } if (abs(frequency - demod->getFrequency()) > (sampleRate / 2)) { // deactivate if active if (demod->isActive() && !demod->isFollow() && !demod->isTracking()) { demod->setActive(false); DemodulatorThreadIQData *dummyDataOut = new DemodulatorThreadIQData; dummyDataOut->frequency = frequency; dummyDataOut->sampleRate = sampleRate; demodQueue->push(dummyDataOut); } // follow if follow mode if (demod->isFollow() && centerFreq != demod->getFrequency()) { wxGetApp().setFrequency(demod->getFrequency()); demod->setFollow(false); } } else if (!demod->isActive()) { // in range, activate if not activated demod->setActive(true); if (wxGetApp().getDemodMgr().getLastActiveDemodulator() == NULL) { wxGetApp().getDemodMgr().setActiveDemodulator(demod); } } if (!demod->isActive()) { continue; } // Add to the current run if (nRunDemods == runDemods.size()) { runDemods.push_back(demod); demodChannel.push_back(-1); } else { runDemods[nRunDemods] = demod; demodChannel[nRunDemods] = -1; } nRunDemods++; } }
void SDRPostThread::run() { #ifdef __APPLE__ pthread_t tID = pthread_self(); // ID of this thread int priority = sched_get_priority_max( SCHED_FIFO) - 1; sched_param prio = {priority}; // scheduling priority of thread pthread_setschedparam(tID, SCHED_FIFO, &prio); #endif dcFilter = iirfilt_crcf_create_dc_blocker(0.0005); std::cout << "SDR post-processing thread started.." << std::endl; iqDataInQueue = (SDRThreadIQDataQueue*)getInputQueue("IQDataInput"); iqDataOutQueue = (DemodulatorThreadInputQueue*)getOutputQueue("IQDataOutput"); iqVisualQueue = (DemodulatorThreadInputQueue*)getOutputQueue("IQVisualDataOutput"); ReBuffer<DemodulatorThreadIQData> buffers; std::vector<liquid_float_complex> fpData; std::vector<liquid_float_complex> dataOut; iqDataInQueue->set_max_num_items(0); while (!terminated) { SDRThreadIQData *data_in; iqDataInQueue->pop(data_in); // std::lock_guard < std::mutex > lock(data_in->m_mutex); if (data_in && data_in->data.size()) { int dataSize = data_in->data.size()/2; if (dataSize > fpData.capacity()) { fpData.reserve(dataSize); dataOut.reserve(dataSize); } if (dataSize != fpData.size()) { fpData.resize(dataSize); dataOut.resize(dataSize); } if (swapIQ) { for (int i = 0; i < dataSize; i++) { fpData[i] = _lut_swap[*((uint16_t*)&data_in->data[2*i])]; } } else { for (int i = 0; i < dataSize; i++) { fpData[i] = _lut[*((uint16_t*)&data_in->data[2*i])]; } } iirfilt_crcf_execute_block(dcFilter, &fpData[0], dataSize, &dataOut[0]); if (iqVisualQueue != NULL && !iqVisualQueue->full()) { DemodulatorThreadIQData *visualDataOut = visualDataBuffers.getBuffer(); visualDataOut->setRefCount(1); int num_vis_samples = dataOut.size(); // if (visualDataOut->data.size() < num_vis_samples) { // if (visualDataOut->data.capacity() < num_vis_samples) { // visualDataOut->data.reserve(num_vis_samples); // } // visualDataOut->data.resize(num_vis_samples); // } // visualDataOut->frequency = data_in->frequency; visualDataOut->sampleRate = data_in->sampleRate; visualDataOut->data.assign(dataOut.begin(), dataOut.begin() + num_vis_samples); iqVisualQueue->push(visualDataOut); } busy_demod.lock(); int activeDemods = 0; bool pushedData = false; if (demodulators.size() || iqDataOutQueue != NULL) { std::vector<DemodulatorInstance *>::iterator demod_i; for (demod_i = demodulators.begin(); demod_i != demodulators.end(); demod_i++) { DemodulatorInstance *demod = *demod_i; if (demod->getFrequency() != data_in->frequency && abs(data_in->frequency - demod->getFrequency()) > (wxGetApp().getSampleRate() / 2)) { continue; } activeDemods++; } if (iqDataOutQueue != NULL) { activeDemods++; } DemodulatorThreadIQData *demodDataOut = buffers.getBuffer(); // std::lock_guard < std::mutex > lock(demodDataOut->m_mutex); demodDataOut->frequency = data_in->frequency; demodDataOut->sampleRate = data_in->sampleRate; demodDataOut->setRefCount(activeDemods); demodDataOut->data.assign(dataOut.begin(), dataOut.end()); for (demod_i = demodulators.begin(); demod_i != demodulators.end(); demod_i++) { DemodulatorInstance *demod = *demod_i; DemodulatorThreadInputQueue *demodQueue = demod->getIQInputDataPipe(); if (abs(data_in->frequency - demod->getFrequency()) > (wxGetApp().getSampleRate() / 2)) { if (demod->isActive() && !demod->isFollow() && !demod->isTracking()) { demod->setActive(false); DemodulatorThreadIQData *dummyDataOut = new DemodulatorThreadIQData; dummyDataOut->frequency = data_in->frequency; dummyDataOut->sampleRate = data_in->sampleRate; demodQueue->push(dummyDataOut); } if (demod->isFollow() && wxGetApp().getFrequency() != demod->getFrequency()) { wxGetApp().setFrequency(demod->getFrequency()); } } else if (!demod->isActive()) { demod->setActive(true); if (wxGetApp().getDemodMgr().getLastActiveDemodulator() == NULL) { wxGetApp().getDemodMgr().setActiveDemodulator(demod); } } if (!demod->isActive()) { continue; } if (demod->isFollow()) { demod->setFollow(false); } demodQueue->push(demodDataOut); pushedData = true; } if (iqDataOutQueue != NULL) { if (!iqDataOutQueue->full()) { iqDataOutQueue->push(demodDataOut); pushedData = true; } else { demodDataOut->decRefCount(); } } if (!pushedData && iqDataOutQueue == NULL) { demodDataOut->setRefCount(0); } } busy_demod.unlock(); } data_in->decRefCount(); } // buffers.purge(); if (iqVisualQueue && !iqVisualQueue->empty()) { DemodulatorThreadIQData *visualDataDummy; iqVisualQueue->pop(visualDataDummy); } // visualDataBuffers.purge(); std::cout << "SDR post-processing thread done." << std::endl; }
bool AppFrame::loadSession(std::string fileName) { DataTree l; if (!l.LoadFromFileXML(fileName)) { return false; } wxGetApp().getDemodMgr().terminateAll(); try { DataNode *header = l.rootNode()->getNext("header"); std::string version(*header->getNext("version")); long long center_freq = *header->getNext("center_freq"); std::cout << "Loading " << version << " session file" << std::endl; std::cout << "\tCenter Frequency: " << center_freq << std::endl; wxGetApp().setFrequency(center_freq); DataNode *demodulators = l.rootNode()->getNext("demodulators"); while (demodulators->hasAnother("demodulator")) { DataNode *demod = demodulators->getNext("demodulator"); if (!demod->hasAnother("bandwidth") || !demod->hasAnother("frequency")) { continue; } long bandwidth = *demod->getNext("bandwidth"); long long freq = *demod->getNext("frequency"); int type = demod->hasAnother("type") ? *demod->getNext("type") : DEMOD_TYPE_FM; float squelch_level = demod->hasAnother("squelch_level") ? (float) *demod->getNext("squelch_level") : 0; int squelch_enabled = demod->hasAnother("squelch_enabled") ? (int) *demod->getNext("squelch_enabled") : 0; int stereo = demod->hasAnother("stereo") ? (int) *demod->getNext("stereo") : 0; std::string output_device = demod->hasAnother("output_device") ? string(*(demod->getNext("output_device"))) : ""; float gain = demod->hasAnother("gain") ? (float) *demod->getNext("gain") : 1.0; DemodulatorInstance *newDemod = wxGetApp().getDemodMgr().newThread(); newDemod->setDemodulatorType(type); newDemod->setBandwidth(bandwidth); newDemod->setFrequency(freq); newDemod->setGain(gain); newDemod->updateLabel(freq); if (squelch_enabled) { newDemod->setSquelchEnabled(true); newDemod->setSquelchLevel(squelch_level); } if (stereo) { newDemod->setStereo(true); } bool found_device = false; std::map<int, RtAudio::DeviceInfo>::iterator i; for (i = outputDevices.begin(); i != outputDevices.end(); i++) { if (i->second.name == output_device) { newDemod->setOutputDevice(i->first); found_device = true; } } if (!found_device) { std::cout << "\tWarning: named output device '" << output_device << "' was not found. Using default output."; } newDemod->run(); newDemod->setActive(false); wxGetApp().bindDemodulator(newDemod); std::cout << "\tAdded demodulator at frequency " << freq << " type " << type << std::endl; std::cout << "\t\tBandwidth: " << bandwidth << std::endl; std::cout << "\t\tSquelch Level: " << squelch_level << std::endl; std::cout << "\t\tSquelch Enabled: " << (squelch_enabled ? "true" : "false") << std::endl; std::cout << "\t\tStereo: " << (stereo ? "true" : "false") << std::endl; std::cout << "\t\tOutput Device: " << output_device << std::endl; } } catch (DataInvalidChildException &e) { std::cout << e.what() << std::endl; return false; } catch (DataTypeMismatchException &e) { std::cout << e.what() << std::endl; return false; } currentSessionFile = fileName; std::string filePart = fileName.substr(fileName.find_last_of(filePathSeparator) + 1); GetStatusBar()->SetStatusText(wxString::Format(wxT("Loaded session file: %s"), currentSessionFile.c_str())); SetTitle(wxString::Format(wxT("%s: %s"), CUBICSDR_TITLE, filePart.c_str())); return true; }