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BFM demod: working stereo decode. Mono/Stereo controls not implemented
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@ -73,7 +73,7 @@ void BFMDemod::configure(MessageQueue* messageQueue, Real rfBandwidth, Real afBa
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void BFMDemod::feed(const SampleVector::const_iterator& begin, const SampleVector::const_iterator& end, bool firstOfBurst)
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void BFMDemod::feed(const SampleVector::const_iterator& begin, const SampleVector::const_iterator& end, bool firstOfBurst)
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{
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{
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Complex ci;
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Complex ci, cs;
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fftfilt::cmplx *rf;
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fftfilt::cmplx *rf;
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int rf_out;
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int rf_out;
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Real msq, demod;
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Real msq, demod;
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@ -124,14 +124,24 @@ void BFMDemod::feed(const SampleVector::const_iterator& begin, const SampleVecto
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m_pilotPLL.process(demod, pilotSample);
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m_pilotPLL.process(demod, pilotSample);
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m_sampleBuffer.push_back(Sample(demod * (1<<15), 0.0));
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m_sampleBuffer.push_back(Sample(demod * (1<<15), 0.0));
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//m_sampleBuffer.push_back(Sample(pilotSample * (1<<15), 0.0)); // debug pilot
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//m_sampleBuffer.push_back(Sample(pilotSample * (1<<15), 0.0)); // debug pilot
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Complex s(demod*2.0*pilotSample, 0);
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quint16 sampleStereo;
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if (m_interpolatorStereo.interpolate(&m_interpolatorStereoDistanceRemain, s, &cs))
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{
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sampleStereo = (qint16)(cs.real() * 3000 * m_running.m_volume);
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}
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Complex e(demod, 0);
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Complex e(demod, 0);
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if(m_interpolator.interpolate(&m_interpolatorDistanceRemain, e, &ci))
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if(m_interpolator.interpolate(&m_interpolatorDistanceRemain, e, &ci))
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{
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{
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quint16 sample = (qint16)(ci.real() * 3000 * m_running.m_volume);
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quint16 sample = (qint16)(ci.real() * 3000 * m_running.m_volume);
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//m_sampleBuffer.push_back(Sample(sample, sample));
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//m_sampleBuffer.push_back(Sample(sample, sample));
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m_audioBuffer[m_audioBufferFill].l = sample;
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m_audioBuffer[m_audioBufferFill].l = sample + sampleStereo;
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m_audioBuffer[m_audioBufferFill].r = sample;
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m_audioBuffer[m_audioBufferFill].r = sample - sampleStereo;
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++m_audioBufferFill;
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++m_audioBufferFill;
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if(m_audioBufferFill >= m_audioBuffer.size())
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if(m_audioBufferFill >= m_audioBuffer.size())
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@ -255,6 +265,9 @@ void BFMDemod::apply()
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m_interpolator.create(16, m_config.m_inputSampleRate, m_config.m_afBandwidth);
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m_interpolator.create(16, m_config.m_inputSampleRate, m_config.m_afBandwidth);
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m_interpolatorDistanceRemain = (Real) m_config.m_inputSampleRate / m_config.m_audioSampleRate;
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m_interpolatorDistanceRemain = (Real) m_config.m_inputSampleRate / m_config.m_audioSampleRate;
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m_interpolatorDistance = (Real) m_config.m_inputSampleRate / (Real) m_config.m_audioSampleRate;
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m_interpolatorDistance = (Real) m_config.m_inputSampleRate / (Real) m_config.m_audioSampleRate;
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m_interpolatorStereo.create(16, m_config.m_inputSampleRate, m_config.m_afBandwidth);
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m_interpolatorStereoDistanceRemain = (Real) m_config.m_inputSampleRate / m_config.m_audioSampleRate;
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m_interpolatorStereoDistance = (Real) m_config.m_inputSampleRate / (Real) m_config.m_audioSampleRate;
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m_settingsMutex.unlock();
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m_settingsMutex.unlock();
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}
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}
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@ -117,6 +117,9 @@ private:
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Interpolator m_interpolator; //!< Interpolator between fixed demod bandwidth and audio bandwidth (rational)
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Interpolator m_interpolator; //!< Interpolator between fixed demod bandwidth and audio bandwidth (rational)
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Real m_interpolatorDistance;
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Real m_interpolatorDistance;
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Real m_interpolatorDistanceRemain;
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Real m_interpolatorDistanceRemain;
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Interpolator m_interpolatorStereo; //!< Twin Interpolator for stereo subcarrier
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Real m_interpolatorStereoDistance;
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Real m_interpolatorStereoDistanceRemain;
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Lowpass<Real> m_lowpass;
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Lowpass<Real> m_lowpass;
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fftfilt* m_rfFilter;
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fftfilt* m_rfFilter;
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