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Channel Analyzer NG: put bandwidth and lowcutoff filter limits in config structure
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f67bfb4121
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@ -29,8 +29,6 @@ ChannelAnalyzerNG::ChannelAnalyzerNG(BasebandSampleSink* sampleSink) :
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m_sampleSink(sampleSink),
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m_settingsMutex(QMutex::Recursive)
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{
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m_Bandwidth = 5000;
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m_LowCutoff = 300;
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m_spanLog2 = 3;
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m_undersampleCount = 0;
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m_sum = 0;
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@ -39,8 +37,9 @@ ChannelAnalyzerNG::ChannelAnalyzerNG(BasebandSampleSink* sampleSink) :
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m_magsq = 0;
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m_interpolatorDistance = 1.0f;
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m_interpolatorDistanceRemain = 0.0f;
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SSBFilter = new fftfilt(m_LowCutoff / m_running.m_inputSampleRate, m_Bandwidth / m_running.m_inputSampleRate, ssbFftLen);
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DSBFilter = new fftfilt(m_Bandwidth / m_running.m_inputSampleRate, 2*ssbFftLen);
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SSBFilter = new fftfilt(m_config.m_LowCutoff / m_config.m_inputSampleRate, m_config.m_Bandwidth / m_config.m_inputSampleRate, ssbFftLen);
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DSBFilter = new fftfilt(m_config.m_Bandwidth / m_config.m_inputSampleRate, 2*ssbFftLen);
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apply(true);
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}
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ChannelAnalyzerNG::~ChannelAnalyzerNG()
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@ -154,43 +153,25 @@ bool ChannelAnalyzerNG::handleMessage(const Message& cmd)
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{
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MsgConfigureChannelAnalyzer& cfg = (MsgConfigureChannelAnalyzer&) cmd;
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bandwidth = cfg.getBandwidth();
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lowCutoff = cfg.getLoCutoff();
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m_config.m_channelSampleRate = cfg.getChannelSampleRate();
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m_config.m_Bandwidth = cfg.getBandwidth();
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m_config.m_LowCutoff = cfg.getLoCutoff();
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if (bandwidth < 0)
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{
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bandwidth = -bandwidth;
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lowCutoff = -lowCutoff;
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m_usb = false;
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}
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else
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{
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m_usb = true;
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}
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qDebug() << "ChannelAnalyzerNG::handleMessage: MsgConfigureChannelAnalyzer:"
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<< " m_channelSampleRate: " << m_config.m_channelSampleRate
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<< " m_Bandwidth: " << m_config.m_Bandwidth
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<< " m_LowCutoff: " << m_config.m_LowCutoff
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<< " m_spanLog2: " << m_spanLog2
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<< " m_ssb: " << m_ssb;
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if (bandwidth < 100.0f)
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{
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bandwidth = 100.0f;
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lowCutoff = 0;
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}
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apply();
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m_settingsMutex.lock();
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//m_settingsMutex.lock();
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m_Bandwidth = bandwidth;
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m_LowCutoff = lowCutoff;
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apply();
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m_spanLog2 = cfg.getSpanLog2();
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m_spanLog2 = cfg.getSpanLog2();
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m_ssb = cfg.getSSB();
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m_settingsMutex.unlock();
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qDebug() << "ChannelAnalyzerNG::handleMessage: MsgConfigureChannelAnalyzer:"
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<< " m_Bandwidth: " << m_Bandwidth
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<< " m_LowCutoff: " << m_LowCutoff
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<< " m_spanLog2: " << m_spanLog2
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<< " m_ssb: " << m_ssb;
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//m_settingsMutex.unlock();
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return true;
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}
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@ -228,13 +209,41 @@ void ChannelAnalyzerNG::apply(bool force)
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}
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if ((m_running.m_channelSampleRate != m_config.m_channelSampleRate) ||
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(m_running.m_Bandwidth != m_config.m_Bandwidth) ||
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(m_running.m_LowCutoff != m_config.m_LowCutoff) ||
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force)
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{
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SSBFilter->create_filter(m_LowCutoff / m_config.m_channelSampleRate, m_Bandwidth / m_config.m_channelSampleRate);
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DSBFilter->create_dsb_filter(m_Bandwidth / m_config.m_channelSampleRate);
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float bandwidth = m_config.m_Bandwidth;
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float lowCutoff = m_config.m_LowCutoff;
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if (bandwidth < 0)
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{
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bandwidth = -bandwidth;
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lowCutoff = -lowCutoff;
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m_usb = false;
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}
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else
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{
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m_usb = true;
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}
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if (bandwidth < 100.0f)
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{
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bandwidth = 100.0f;
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lowCutoff = 0;
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}
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m_settingsMutex.lock();
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SSBFilter->create_filter(lowCutoff / m_config.m_channelSampleRate, bandwidth / m_config.m_channelSampleRate);
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DSBFilter->create_dsb_filter(bandwidth / m_config.m_channelSampleRate);
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m_settingsMutex.unlock();
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}
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m_running.m_frequency = m_config.m_frequency;
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m_running.m_channelSampleRate = m_config.m_channelSampleRate;
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m_running.m_inputSampleRate = m_config.m_inputSampleRate;
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m_running.m_Bandwidth = m_config.m_Bandwidth;
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m_running.m_LowCutoff = m_config.m_LowCutoff;
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}
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@ -54,6 +54,7 @@ private:
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MESSAGE_CLASS_DECLARATION
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public:
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int getChannelSampleRate() const { return m_channelSampleRate; }
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Real getBandwidth() const { return m_Bandwidth; }
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Real getLoCutoff() const { return m_LowCutoff; }
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int getSpanLog2() const { return m_spanLog2; }
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@ -96,19 +97,21 @@ private:
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int m_frequency;
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int m_inputSampleRate;
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int m_channelSampleRate;
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Real m_Bandwidth;
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Real m_LowCutoff;
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Config() :
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m_frequency(0),
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m_inputSampleRate(96000),
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m_channelSampleRate(96000)
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m_channelSampleRate(96000),
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m_Bandwidth(5000),
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m_LowCutoff(300)
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{}
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};
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Config m_config;
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Config m_running;
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Real m_Bandwidth;
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Real m_LowCutoff;
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int m_spanLog2;
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int m_undersampleCount;
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fftfilt::cmplx m_sum;
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