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96kHz USB Filter FFT.
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30dab49869
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@ -37,7 +37,7 @@ USBDemod::USBDemod(AudioFifo* audioFifo, SampleSink* sampleSink) :
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m_audioBufferFill = 0;
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m_audioBufferFill = 0;
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m_undersampleCount = 0;
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m_undersampleCount = 0;
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USBFilter = new fftfilt(0.01, m_Bandwidth / 48000.0, usbFftLen);
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USBFilter = new fftfilt(0.01, m_Bandwidth / 96000.0, usbFftLen);
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// if (!USBFilter) segfault;
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// if (!USBFilter) segfault;
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}
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}
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@ -63,14 +63,12 @@ void USBDemod::feed(SampleVector::const_iterator begin, SampleVector::const_iter
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for(SampleVector::const_iterator it = begin; it < end; ++it) {
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for(SampleVector::const_iterator it = begin; it < end; ++it) {
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a = it->real();
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a = it->real();
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b = it->imag();
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b = it->imag();
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it++; // TODO: Assumes 96kHz; Expect breakage.
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// TODO: Assumes 96kHz; Expect breakage.
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a += it->real();
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b += it->imag();
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c = Complex(a / 65536.0, b / 65536.0);
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c = Complex(a / 65536.0, b / 65536.0);
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n_out = USBFilter->run(c, &sideband, true);
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n_out = USBFilter->run(c, &sideband, true);
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for (int i = 0; i < n_out; i++) {
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for (int i = 0; i < n_out; i+=2) {
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Real demod = (sideband[i].real() + sideband[i].imag()) * 0.7 * 32768.0;
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Real demod = (sideband[i].real() + sideband[i].imag()) * 32768.0;
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// Downsample by 4x for audio display
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// Downsample by 4x for audio display
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if (!(m_undersampleCount++ & 3))
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if (!(m_undersampleCount++ & 3))
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@ -113,7 +111,7 @@ bool USBDemod::handleMessage(Message* cmd)
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} else if(MsgConfigureUSBDemod::match(cmd)) {
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} else if(MsgConfigureUSBDemod::match(cmd)) {
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MsgConfigureUSBDemod* cfg = (MsgConfigureUSBDemod*)cmd;
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MsgConfigureUSBDemod* cfg = (MsgConfigureUSBDemod*)cmd;
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m_Bandwidth = cfg->getBandwidth();
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m_Bandwidth = cfg->getBandwidth();
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USBFilter->create_filter(0.3 / 48.0, m_Bandwidth / 48000.0);
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USBFilter->create_filter(0.3 / 96.0, m_Bandwidth / 96000.0);
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m_volume = cfg->getVolume();
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m_volume = cfg->getVolume();
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m_volume *= m_volume * 0.1;
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m_volume *= m_volume * 0.1;
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cmd->completed();
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cmd->completed();
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