2020-06-10 18:52:07 +02:00
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#include <signal_path.h>
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2020-06-15 15:53:45 +02:00
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SignalPath::SignalPath() {
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}
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2020-06-22 16:45:57 +02:00
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void SignalPath::init(uint64_t sampleRate, int fftRate, int fftSize, dsp::stream<dsp::complex_t>* input, dsp::complex_t* fftBuffer, void fftHandler(dsp::complex_t*)) {
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2020-06-10 18:52:07 +02:00
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this->sampleRate = sampleRate;
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this->fftRate = fftRate;
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this->fftSize = fftSize;
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2020-06-15 15:53:45 +02:00
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// for (int i = 0; i < iftaps.size(); i++) {
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// printf("%f\n", iftaps[i]);
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// }
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_demod = DEMOD_FM;
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dcBiasRemover.init(input, 32000);
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dcBiasRemover.bypass = true;
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split.init(&dcBiasRemover.output, 32000);
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fftBlockDec.init(&split.output_a, (sampleRate / fftRate) - fftSize, fftSize);
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fftHandlerSink.init(&fftBlockDec.output, fftBuffer, fftSize, fftHandler);
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2020-06-22 16:45:57 +02:00
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mainVFO.init(&split.output_b, sampleRate, 200000, 200000, 0, 32000);
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2020-06-15 15:53:45 +02:00
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demod.init(mainVFO.output, 100000, 200000, 800);
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2020-06-22 16:45:57 +02:00
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amDemod.init(mainVFO.output, 50);
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2020-07-19 15:59:44 +02:00
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ssbDemod.init(mainVFO.output, 6000, 3000, 22);
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2020-06-15 15:53:45 +02:00
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2020-07-19 15:59:44 +02:00
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audioResamp.init(&demod.output, 200000, 48000, 800);
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audio.init(&audioResamp.output, 16);
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}
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void SignalPath::setSampleRate(float sampleRate) {
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dcBiasRemover.stop();
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split.stop();
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fftBlockDec.stop();
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fftHandlerSink.stop();
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demod.stop();
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amDemod.stop();
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audioResamp.stop();
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int inputBlockSize = sampleRate / 200.0f;
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dcBiasRemover.setBlockSize(inputBlockSize);
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split.setBlockSize(inputBlockSize);
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fftBlockDec.setSkip((sampleRate / fftRate) - fftSize);
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mainVFO.setInputSampleRate(sampleRate, inputBlockSize);
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2020-06-22 16:45:57 +02:00
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2020-07-19 15:59:44 +02:00
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// // Reset the modulator and audio systems
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setDemodulator(_demod);
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fftHandlerSink.start();
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fftBlockDec.start();
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split.start();
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dcBiasRemover.start();
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2020-06-15 15:53:45 +02:00
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}
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void SignalPath::setVFOFrequency(long frequency) {
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mainVFO.setOffset(frequency);
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}
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void SignalPath::setVolume(float volume) {
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audio.setVolume(volume);
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}
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void SignalPath::setDemodulator(int demId) {
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if (demId < 0 || demId >= _DEMOD_COUNT) {
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return;
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}
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audioResamp.stop();
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// Stop current demodulator
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2020-07-11 21:15:10 +02:00
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if (_demod == DEMOD_FM) {
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printf("Stopping FM demodulator\n");
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demod.stop();
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}
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2020-07-19 15:59:44 +02:00
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else if (_demod == DEMOD_NFM) {
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printf("Stopping NFM demodulator\n");
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demod.stop();
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}
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2020-07-11 21:15:10 +02:00
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else if (_demod == DEMOD_AM) {
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printf("Stopping AM demodulator\n");
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amDemod.stop();
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}
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2020-07-19 15:59:44 +02:00
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else if (_demod == DEMOD_USB) {
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printf("Stopping USB demodulator\n");
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ssbDemod.stop();
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}
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else if (_demod == DEMOD_LSB) {
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printf("Stopping LSB demodulator\n");
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ssbDemod.stop();
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}
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2020-07-11 21:15:10 +02:00
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_demod = demId;
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// Set input of the audio resampler
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if (demId == DEMOD_FM) {
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printf("Starting FM demodulator\n");
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mainVFO.setOutputSampleRate(200000, 200000);
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2020-07-19 15:59:44 +02:00
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demod.setBlockSize(mainVFO.getOutputBlockSize());
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demod.setSampleRate(200000);
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demod.setDeviation(100000);
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audioResamp.setInput(&demod.output);
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audioResamp.setInputSampleRate(200000, mainVFO.getOutputBlockSize());
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demod.start();
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}
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if (demId == DEMOD_NFM) {
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printf("Starting NFM demodulator\n");
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mainVFO.setOutputSampleRate(12500, 12500);
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demod.setBlockSize(mainVFO.getOutputBlockSize());
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demod.setSampleRate(12500);
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demod.setDeviation(6250);
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2020-07-11 21:15:10 +02:00
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audioResamp.setInput(&demod.output);
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2020-07-19 15:59:44 +02:00
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audioResamp.setInputSampleRate(12500, mainVFO.getOutputBlockSize());
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2020-07-11 21:15:10 +02:00
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demod.start();
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}
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else if (demId == DEMOD_AM) {
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printf("Starting AM demodulator\n");
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mainVFO.setOutputSampleRate(12500, 12500);
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2020-07-19 15:59:44 +02:00
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amDemod.setBlockSize(mainVFO.getOutputBlockSize());
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2020-07-11 21:15:10 +02:00
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audioResamp.setInput(&amDemod.output);
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2020-07-19 15:59:44 +02:00
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audioResamp.setInputSampleRate(12500, mainVFO.getOutputBlockSize());
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2020-07-11 21:15:10 +02:00
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amDemod.start();
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}
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2020-07-19 15:59:44 +02:00
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else if (demId == DEMOD_USB) {
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printf("Starting USB demodulator\n");
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mainVFO.setOutputSampleRate(6000, 3000);
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ssbDemod.setBlockSize(mainVFO.getOutputBlockSize());
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ssbDemod.setMode(dsp::SSBDemod::MODE_USB);
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audioResamp.setInput(&ssbDemod.output);
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audioResamp.setInputSampleRate(6000, mainVFO.getOutputBlockSize());
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ssbDemod.start();
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}
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else if (demId == DEMOD_LSB) {
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printf("Starting LSB demodulator\n");
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mainVFO.setOutputSampleRate(6000, 3000);
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ssbDemod.setBlockSize(mainVFO.getOutputBlockSize());
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ssbDemod.setMode(dsp::SSBDemod::MODE_LSB);
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audioResamp.setInput(&ssbDemod.output);
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audioResamp.setInputSampleRate(6000, mainVFO.getOutputBlockSize());
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ssbDemod.start();
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}
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2020-06-15 15:53:45 +02:00
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audioResamp.start();
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2020-06-10 18:52:07 +02:00
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}
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void SignalPath::start() {
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dcBiasRemover.start();
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2020-06-15 15:53:45 +02:00
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split.start();
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2020-06-10 18:52:07 +02:00
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fftBlockDec.start();
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2020-06-15 15:53:45 +02:00
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fftHandlerSink.start();
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mainVFO.start();
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demod.start();
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2020-06-22 16:45:57 +02:00
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//ns.start();
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2020-06-15 15:53:45 +02:00
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audioResamp.start();
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audio.start();
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2020-06-10 18:52:07 +02:00
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}
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