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BFM demod: implemented mono/stereo control from GUI
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83423e13e0
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@ -65,9 +65,9 @@ BFMDemod::~BFMDemod()
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DSPEngine::instance()->removeAudioSink(&m_audioFifo);
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}
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void BFMDemod::configure(MessageQueue* messageQueue, Real rfBandwidth, Real afBandwidth, Real volume, Real squelch)
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void BFMDemod::configure(MessageQueue* messageQueue, Real rfBandwidth, Real afBandwidth, Real volume, Real squelch, bool audioStereo)
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{
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Message* cmd = MsgConfigureBFMDemod::create(rfBandwidth, afBandwidth, volume, squelch);
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Message* cmd = MsgConfigureBFMDemod::create(rfBandwidth, afBandwidth, volume, squelch, audioStereo);
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messageQueue->push(cmd);
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}
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@ -119,29 +119,42 @@ void BFMDemod::feed(const SampleVector::const_iterator& begin, const SampleVecto
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m_m2Sample = m_m1Sample;
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m_m1Sample = rf[i];
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// TODO: conditional to stereo mode selected
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m_sampleBuffer.push_back(Sample(demod * (1<<15), 0.0));
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quint16 sampleStereo;
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// Process stereo if stereo mode is selected
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if (m_running.m_audioStereo)
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{
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Real 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(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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}
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Complex e(demod, 0);
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if (m_interpolator.interpolate(&m_interpolatorDistanceRemain, e, &ci))
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{
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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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if (m_running.m_audioStereo)
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{
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m_audioBuffer[m_audioBufferFill].l = sample + sampleStereo;
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m_audioBuffer[m_audioBufferFill].r = sample - sampleStereo;
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}
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else
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{
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m_audioBuffer[m_audioBufferFill].l = sample;
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m_audioBuffer[m_audioBufferFill].r = sample;
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}
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++m_audioBufferFill;
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if(m_audioBufferFill >= m_audioBuffer.size())
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@ -220,13 +233,15 @@ bool BFMDemod::handleMessage(const Message& cmd)
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m_config.m_afBandwidth = cfg.getAFBandwidth();
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m_config.m_volume = cfg.getVolume();
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m_config.m_squelch = cfg.getSquelch();
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m_config.m_audioStereo = cfg.getAudioStereo();
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apply();
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qDebug() << "BFMDemod::handleMessage: MsgConfigureBFMDemod: m_rfBandwidth: " << m_config.m_rfBandwidth
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<< " m_afBandwidth: " << m_config.m_afBandwidth
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<< " m_volume: " << m_config.m_volume
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<< " m_squelch: " << m_config.m_squelch;
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<< " m_squelch: " << m_config.m_squelch
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<< " m_audioStereo: " << m_config.m_audioStereo;
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return true;
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}
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@ -245,7 +260,8 @@ bool BFMDemod::handleMessage(const Message& cmd)
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void BFMDemod::apply()
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{
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if (m_config.m_inputSampleRate != m_running.m_inputSampleRate)
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if ((m_config.m_inputSampleRate != m_running.m_inputSampleRate)
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|| (m_config.m_audioStereo && (m_config.m_audioStereo != m_running.m_audioStereo)))
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{
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m_pilotPLL.configure(19000.0/m_config.m_inputSampleRate, 50.0/m_config.m_inputSampleRate, 0.01);
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}
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@ -309,5 +325,6 @@ void BFMDemod::apply()
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m_running.m_squelch = m_config.m_squelch;
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m_running.m_volume = m_config.m_volume;
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m_running.m_audioSampleRate = m_config.m_audioSampleRate;
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m_running.m_audioStereo = m_config.m_audioStereo;
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}
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@ -37,7 +37,7 @@ public:
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BFMDemod(SampleSink* sampleSink);
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virtual ~BFMDemod();
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void configure(MessageQueue* messageQueue, Real rfBandwidth, Real afBandwidth, Real volume, Real squelch);
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void configure(MessageQueue* messageQueue, Real rfBandwidth, Real afBandwidth, Real volume, Real squelch, bool audioStereo);
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int getSampleRate() const { return m_config.m_inputSampleRate; }
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virtual void feed(const SampleVector::const_iterator& begin, const SampleVector::const_iterator& end, bool po);
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@ -58,10 +58,11 @@ private:
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Real getAFBandwidth() const { return m_afBandwidth; }
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Real getVolume() const { return m_volume; }
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Real getSquelch() const { return m_squelch; }
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bool getAudioStereo() const { return m_audioStereo; }
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static MsgConfigureBFMDemod* create(Real rfBandwidth, Real afBandwidth, Real volume, Real squelch)
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static MsgConfigureBFMDemod* create(Real rfBandwidth, Real afBandwidth, Real volume, Real squelch, bool audioStereo)
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{
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return new MsgConfigureBFMDemod(rfBandwidth, afBandwidth, volume, squelch);
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return new MsgConfigureBFMDemod(rfBandwidth, afBandwidth, volume, squelch, audioStereo);
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}
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private:
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@ -69,13 +70,15 @@ private:
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Real m_afBandwidth;
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Real m_volume;
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Real m_squelch;
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bool m_audioStereo;
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MsgConfigureBFMDemod(Real rfBandwidth, Real afBandwidth, Real volume, Real squelch) :
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MsgConfigureBFMDemod(Real rfBandwidth, Real afBandwidth, Real volume, Real squelch, bool audioStereo) :
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Message(),
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m_rfBandwidth(rfBandwidth),
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m_afBandwidth(afBandwidth),
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m_volume(volume),
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m_squelch(squelch)
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m_squelch(squelch),
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m_audioStereo(audioStereo)
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{ }
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};
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@ -98,6 +101,7 @@ private:
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Real m_squelch;
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Real m_volume;
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quint32 m_audioSampleRate;
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bool m_audioStereo;
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Config() :
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m_inputSampleRate(-1),
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@ -106,7 +110,8 @@ private:
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m_afBandwidth(-1),
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m_squelch(0),
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m_volume(0),
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m_audioSampleRate(0)
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m_audioSampleRate(0),
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m_audioStereo(false)
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{ }
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};
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@ -222,6 +222,8 @@ void BFMDemodGUI::on_audioStereo_toggled(bool stereo)
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{
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ui->audioStereo->setStyleSheet("QToolButton { background:rgb(79,79,79); }");
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}
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applySettings();
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}
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void BFMDemodGUI::onWidgetRolled(QWidget* widget, bool rollDown)
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@ -318,7 +320,8 @@ void BFMDemodGUI::applySettings()
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m_rfBW[ui->rfBW->value()],
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ui->afBW->value() * 1000.0,
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ui->volume->value() / 10.0,
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ui->squelch->value());
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ui->squelch->value(),
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ui->audioStereo->isChecked());
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}
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}
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