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https://github.com/cjcliffe/CubicSDR.git
synced 2024-11-25 21:28:38 -05:00
Several crash/bug fixes, uninitialized vars
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f7821400a1
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@ -65,8 +65,7 @@ void DemodulatorThread::run() {
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iqAutoGain = agc_crcf_create();
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agc_crcf_set_bandwidth(iqAutoGain, 0.1);
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AudioThreadInput *ati_vis = new AudioThreadInput;
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ati_vis->data.reserve(DEMOD_VIS_SIZE);
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ReBuffer<AudioThreadInput> audioVisBuffers;
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std::cout << "Demodulator thread started.." << std::endl;
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@ -358,8 +357,8 @@ void DemodulatorThread::run() {
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}
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if (ati && audioVisOutputQueue != NULL && audioVisOutputQueue->empty()) {
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ati_vis->busy_update.lock();
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AudioThreadInput *ati_vis = audioVisBuffers.getBuffer();
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ati_vis->setRefCount(1);
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ati_vis->sampleRate = inp->sampleRate;
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ati_vis->inputRate = inp->sampleRate;
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@ -404,7 +403,6 @@ void DemodulatorThread::run() {
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// std::cout << "Signal: " << agc_crcf_get_signal_level(agc) << " -- " << agc_crcf_get_rssi(agc) << "dB " << std::endl;
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}
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ati_vis->busy_update.unlock();
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audioVisOutputQueue->push(ati_vis);
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}
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@ -495,7 +493,7 @@ void DemodulatorThread::run() {
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AudioThreadInput *dummy_vis;
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audioVisOutputQueue->pop(dummy_vis);
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}
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delete ati_vis;
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audioVisBuffers.purge();
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DemodulatorThreadCommand tCmd(DemodulatorThreadCommand::DEMOD_THREAD_CMD_DEMOD_TERMINATED);
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tCmd.context = this;
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@ -6,6 +6,8 @@ ScopeVisualProcessor::ScopeVisualProcessor(): fftInData(NULL), fftwOutput(NULL),
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scopeEnabled.store(true);
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spectrumEnabled.store(true);
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fft_average_rate = 0.65;
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fft_ceil_ma = fft_ceil_maa = 0;
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fft_floor_ma = fft_floor_maa = 0;
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}
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ScopeVisualProcessor::~ScopeVisualProcessor() {
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@ -67,8 +69,6 @@ void ScopeVisualProcessor::process() {
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return;
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}
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audioInputData->busy_update.lock();
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ScopeRenderData *renderData = NULL;
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if (scopeEnabled) {
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@ -117,7 +117,6 @@ void ScopeVisualProcessor::process() {
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}
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if (spectrumEnabled) {
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renderData = outputBuffers.getBuffer();
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iMax = audioInputData->data.size();
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if (audioInputData->channels==1) {
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@ -157,8 +156,8 @@ void ScopeVisualProcessor::process() {
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}
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for (i = 0; i < (fftSize/2); i++) {
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fft_result_maa[i] += (fft_result_ma[i] - fft_result_maa[i]) * fft_average_rate;
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fft_result_ma[i] += (fft_result[i] - fft_result_ma[i]) * fft_average_rate;
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fft_result_maa[i] += (fft_result_ma[i] - fft_result_maa[i]) * fft_average_rate;
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if (fft_result_maa[i] > fft_ceil) {
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fft_ceil = fft_result_maa[i];
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@ -168,6 +167,11 @@ void ScopeVisualProcessor::process() {
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}
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}
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if (fft_floor == fft_ceil) {
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audioInputData->decRefCount();
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return;
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}
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fft_ceil_ma = fft_ceil_ma + (fft_ceil - fft_ceil_ma) * 0.05;
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fft_ceil_maa = fft_ceil_maa + (fft_ceil_ma - fft_ceil_maa) * 0.05;
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@ -180,6 +184,8 @@ void ScopeVisualProcessor::process() {
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outSize = (int)floor((float)outSize * ((float)audioInputData->sampleRate/(float)audioInputData->inputRate));
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}
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renderData = outputBuffers.getBuffer();
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if (renderData->waveform_points.size() != outSize*2) {
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renderData->waveform_points.resize(outSize*2);
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}
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@ -199,6 +205,6 @@ void ScopeVisualProcessor::process() {
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distribute(renderData);
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}
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audioInputData->busy_update.unlock();
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audioInputData->decRefCount();
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}
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}
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@ -306,8 +306,8 @@ void SDRPostThread::run() {
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iirfilt_crcf_execute_block(dcFilter, &dcBuf[0], chanDataSize, &demodDataOut->data[0]);
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} else {
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for (int j = 0; j < chanDataSize; j++) {
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idx += numChannels;
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demodDataOut->data[j] = dataOut[idx];
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idx += numChannels;
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}
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}
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