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ChannelAnalyzerNG: decouple demod and GUI

This commit is contained in:
f4exb 2017-09-29 18:36:33 +02:00
parent 54bd4b38f0
commit 4d07272503
4 changed files with 864 additions and 736 deletions

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@ -16,17 +16,23 @@
#include "chanalyzerng.h" #include "chanalyzerng.h"
#include <dsp/downchannelizer.h>
#include <QTime> #include <QTime>
#include <QDebug> #include <QDebug>
#include <stdio.h> #include <stdio.h>
#include "device/devicesourceapi.h"
#include "audio/audiooutput.h" #include "audio/audiooutput.h"
#include "dsp/threadedbasebandsamplesink.h"
#include "dsp/downchannelizer.h"
MESSAGE_CLASS_DEFINITION(ChannelAnalyzerNG::MsgConfigureChannelAnalyzer, Message) MESSAGE_CLASS_DEFINITION(ChannelAnalyzerNG::MsgConfigureChannelAnalyzer, Message)
MESSAGE_CLASS_DEFINITION(ChannelAnalyzerNG::MsgConfigureChannelizer, Message)
MESSAGE_CLASS_DEFINITION(ChannelAnalyzerNG::MsgReportChannelSampleRateChanged, Message)
ChannelAnalyzerNG::ChannelAnalyzerNG(BasebandSampleSink* sampleSink) : ChannelAnalyzerNG::ChannelAnalyzerNG(DeviceSourceAPI *deviceAPI) :
m_sampleSink(sampleSink), m_deviceAPI(deviceAPI),
m_sampleSink(0),
m_settingsMutex(QMutex::Recursive) m_settingsMutex(QMutex::Recursive)
{ {
m_undersampleCount = 0; m_undersampleCount = 0;
@ -38,6 +44,12 @@ ChannelAnalyzerNG::ChannelAnalyzerNG(BasebandSampleSink* sampleSink) :
m_interpolatorDistanceRemain = 0.0f; m_interpolatorDistanceRemain = 0.0f;
SSBFilter = new fftfilt(m_config.m_LowCutoff / m_config.m_inputSampleRate, m_config.m_Bandwidth / m_config.m_inputSampleRate, ssbFftLen); SSBFilter = new fftfilt(m_config.m_LowCutoff / m_config.m_inputSampleRate, m_config.m_Bandwidth / m_config.m_inputSampleRate, ssbFftLen);
DSBFilter = new fftfilt(m_config.m_Bandwidth / m_config.m_inputSampleRate, 2*ssbFftLen); DSBFilter = new fftfilt(m_config.m_Bandwidth / m_config.m_inputSampleRate, 2*ssbFftLen);
m_channelizer = new DownChannelizer(this);
m_threadedChannelizer = new ThreadedBasebandSampleSink(m_channelizer, this);
connect(m_channelizer, SIGNAL(inputSampleRateChanged()), this, SLOT(channelizerInputSampleRateChanged()));
m_deviceAPI->addThreadedSink(m_threadedChannelizer);
apply(true); apply(true);
} }
@ -45,6 +57,9 @@ ChannelAnalyzerNG::~ChannelAnalyzerNG()
{ {
if (SSBFilter) delete SSBFilter; if (SSBFilter) delete SSBFilter;
if (DSBFilter) delete DSBFilter; if (DSBFilter) delete DSBFilter;
m_deviceAPI->removeThreadedSink(m_threadedChannelizer);
delete m_threadedChannelizer;
delete m_channelizer;
} }
void ChannelAnalyzerNG::configure(MessageQueue* messageQueue, void ChannelAnalyzerNG::configure(MessageQueue* messageQueue,
@ -102,6 +117,12 @@ void ChannelAnalyzerNG::stop()
{ {
} }
void ChannelAnalyzerNG::channelizerInputSampleRateChanged()
{
MsgReportChannelSampleRateChanged *msg = MsgReportChannelSampleRateChanged::create();
getMessageQueueToGUI()->push(msg);
}
bool ChannelAnalyzerNG::handleMessage(const Message& cmd) bool ChannelAnalyzerNG::handleMessage(const Message& cmd)
{ {
qDebug() << "ChannelAnalyzerNG::handleMessage: " << cmd.getIdentifier(); qDebug() << "ChannelAnalyzerNG::handleMessage: " << cmd.getIdentifier();
@ -120,6 +141,14 @@ bool ChannelAnalyzerNG::handleMessage(const Message& cmd)
apply(); apply();
return true; return true;
} }
else if (MsgConfigureChannelizer::match(cmd))
{
MsgConfigureChannelizer& cfg = (MsgConfigureChannelizer&) cmd;
m_channelizer->configure(m_channelizer->getInputMessageQueue(),
cfg.getSampleRate(),
cfg.getCenterFrequency());
return true;
}
else if (MsgConfigureChannelAnalyzer::match(cmd)) else if (MsgConfigureChannelAnalyzer::match(cmd))
{ {
MsgConfigureChannelAnalyzer& cfg = (MsgConfigureChannelAnalyzer&) cmd; MsgConfigureChannelAnalyzer& cfg = (MsgConfigureChannelAnalyzer&) cmd;
@ -153,6 +182,8 @@ bool ChannelAnalyzerNG::handleMessage(const Message& cmd)
} }
} }
void ChannelAnalyzerNG::apply(bool force) void ChannelAnalyzerNG::apply(bool force)
{ {
if ((m_running.m_frequency != m_config.m_frequency) || if ((m_running.m_frequency != m_config.m_frequency) ||

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@ -29,28 +29,12 @@
#define ssbFftLen 1024 #define ssbFftLen 1024
class DeviceSourceAPI;
class ThreadedBasebandSampleSink;
class DownChannelizer;
class ChannelAnalyzerNG : public BasebandSampleSink { class ChannelAnalyzerNG : public BasebandSampleSink {
public: public:
ChannelAnalyzerNG(BasebandSampleSink* m_sampleSink);
virtual ~ChannelAnalyzerNG();
void configure(MessageQueue* messageQueue,
int channelSampleRate,
Real Bandwidth,
Real LowCutoff,
int spanLog2,
bool ssb);
int getInputSampleRate() const { return m_running.m_inputSampleRate; }
int getChannelSampleRate() const { return m_running.m_channelSampleRate; }
double getMagSq() const { return m_magsq; }
virtual void feed(const SampleVector::const_iterator& begin, const SampleVector::const_iterator& end, bool positiveOnly);
virtual void start();
virtual void stop();
virtual bool handleMessage(const Message& cmd);
private:
class MsgConfigureChannelAnalyzer : public Message { class MsgConfigureChannelAnalyzer : public Message {
MESSAGE_CLASS_DECLARATION MESSAGE_CLASS_DECLARATION
@ -68,7 +52,12 @@ private:
int spanLog2, int spanLog2,
bool ssb) bool ssb)
{ {
return new MsgConfigureChannelAnalyzer(channelSampleRate, Bandwidth, LowCutoff, spanLog2, ssb); return new MsgConfigureChannelAnalyzer(
channelSampleRate,
Bandwidth,
LowCutoff,
spanLog2,
ssb);
} }
private: private:
@ -93,6 +82,72 @@ private:
{ } { }
}; };
class MsgConfigureChannelizer : public Message {
MESSAGE_CLASS_DECLARATION
public:
int getSampleRate() const { return m_sampleRate; }
int getCenterFrequency() const { return m_centerFrequency; }
static MsgConfigureChannelizer* create(int sampleRate, int centerFrequency)
{
return new MsgConfigureChannelizer(sampleRate, centerFrequency);
}
private:
int m_sampleRate;
int m_centerFrequency;
MsgConfigureChannelizer(int sampleRate, int centerFrequency) :
Message(),
m_sampleRate(sampleRate),
m_centerFrequency(centerFrequency)
{ }
};
class MsgReportChannelSampleRateChanged : public Message {
MESSAGE_CLASS_DECLARATION
public:
static MsgReportChannelSampleRateChanged* create()
{
return new MsgReportChannelSampleRateChanged();
}
private:
MsgReportChannelSampleRateChanged() :
Message()
{ }
};
ChannelAnalyzerNG(DeviceSourceAPI *deviceAPI);
virtual ~ChannelAnalyzerNG();
void setSampleSink(BasebandSampleSink* sampleSink) { m_sampleSink = sampleSink; }
void configure(MessageQueue* messageQueue,
int channelSampleRate,
Real Bandwidth,
Real LowCutoff,
int spanLog2,
bool ssb);
DownChannelizer *getChannelizer() { return m_channelizer; }
int getInputSampleRate() const { return m_running.m_inputSampleRate; }
int getChannelSampleRate() const { return m_running.m_channelSampleRate; }
double getMagSq() const { return m_magsq; }
virtual void feed(const SampleVector::const_iterator& begin, const SampleVector::const_iterator& end, bool positiveOnly);
virtual void start();
virtual void stop();
virtual bool handleMessage(const Message& cmd);
private slots:
void channelizerInputSampleRateChanged();
private:
struct Config struct Config
{ {
int m_frequency; int m_frequency;
@ -117,6 +172,10 @@ private:
Config m_config; Config m_config;
Config m_running; Config m_running;
DeviceSourceAPI *m_deviceAPI;
ThreadedBasebandSampleSink* m_threadedChannelizer;
DownChannelizer* m_channelizer;
int m_undersampleCount; int m_undersampleCount;
fftfilt::cmplx m_sum; fftfilt::cmplx m_sum;
bool m_usb; bool m_usb;

View File

@ -159,9 +159,31 @@ bool ChannelAnalyzerNGGUI::deserialize(const QByteArray& data)
bool ChannelAnalyzerNGGUI::handleMessage(const Message& message __attribute__((unused))) bool ChannelAnalyzerNGGUI::handleMessage(const Message& message __attribute__((unused)))
{ {
if (ChannelAnalyzerNG::MsgReportChannelSampleRateChanged::match(message))
{
setNewFinalRate(m_spanLog2);
applySettings();
return true;
}
return false; return false;
} }
void ChannelAnalyzerNGGUI::handleInputMessages()
{
Message* message;
while ((message = getInputMessageQueue()->pop()) != 0)
{
qDebug("ChannelAnalyzerGUI::handleInputMessages: message: %s", message->getIdentifier());
if (handleMessage(*message))
{
delete message;
}
}
}
void ChannelAnalyzerNGGUI::viewChanged() void ChannelAnalyzerNGGUI::viewChanged()
{ {
applySettings(); applySettings();
@ -174,12 +196,12 @@ void ChannelAnalyzerNGGUI::tick()
ui->channelPower->setText(tr("%1 dB").arg(m_channelPowerDbAvg.average(), 0, 'f', 1)); ui->channelPower->setText(tr("%1 dB").arg(m_channelPowerDbAvg.average(), 0, 'f', 1));
} }
void ChannelAnalyzerNGGUI::channelizerInputSampleRateChanged() //void ChannelAnalyzerNGGUI::channelizerInputSampleRateChanged()
{ //{
//ui->channelSampleRate->setValueRange(7, 2000U, m_channelAnalyzer->getInputSampleRate()); // //ui->channelSampleRate->setValueRange(7, 2000U, m_channelAnalyzer->getInputSampleRate());
setNewFinalRate(m_spanLog2); // setNewFinalRate(m_spanLog2);
applySettings(); // applySettings();
} //}
void ChannelAnalyzerNGGUI::on_channelSampleRate_changed(quint64 value) void ChannelAnalyzerNGGUI::on_channelSampleRate_changed(quint64 value)
{ {
@ -204,7 +226,7 @@ int ChannelAnalyzerNGGUI::getRequestedChannelSampleRate()
if (ui->useRationalDownsampler->isChecked()) { if (ui->useRationalDownsampler->isChecked()) {
return ui->channelSampleRate->getValueNew(); return ui->channelSampleRate->getValueNew();
} else { } else {
return m_channelizer->getInputSampleRate(); return m_channelAnalyzer->getChannelizer()->getInputSampleRate();
} }
} }
@ -348,11 +370,13 @@ ChannelAnalyzerNGGUI::ChannelAnalyzerNGGUI(PluginAPI* pluginAPI, DeviceSourceAPI
m_spectrumVis = new SpectrumVis(ui->glSpectrum); m_spectrumVis = new SpectrumVis(ui->glSpectrum);
m_scopeVis = new ScopeVisNG(ui->glScope); m_scopeVis = new ScopeVisNG(ui->glScope);
m_spectrumScopeComboVis = new SpectrumScopeNGComboVis(m_spectrumVis, m_scopeVis); m_spectrumScopeComboVis = new SpectrumScopeNGComboVis(m_spectrumVis, m_scopeVis);
m_channelAnalyzer = new ChannelAnalyzerNG(m_spectrumScopeComboVis); m_channelAnalyzer = new ChannelAnalyzerNG(m_deviceAPI);
m_channelizer = new DownChannelizer(m_channelAnalyzer); m_channelAnalyzer->setSampleSink(m_spectrumScopeComboVis);
m_threadedChannelizer = new ThreadedBasebandSampleSink(m_channelizer, this); m_channelAnalyzer->setMessageQueueToGUI(getInputMessageQueue());
connect(m_channelizer, SIGNAL(inputSampleRateChanged()), this, SLOT(channelizerInputSampleRateChanged())); // m_channelizer = new DownChannelizer(m_channelAnalyzer);
m_deviceAPI->addThreadedSink(m_threadedChannelizer); // m_threadedChannelizer = new ThreadedBasebandSampleSink(m_channelizer, this);
// connect(m_channelizer, SIGNAL(inputSampleRateChanged()), this, SLOT(channelizerInputSampleRateChanged()));
// m_deviceAPI->addThreadedSink(m_threadedChannelizer);
ui->deltaFrequencyLabel->setText(QString("%1f").arg(QChar(0x94, 0x03))); ui->deltaFrequencyLabel->setText(QString("%1f").arg(QChar(0x94, 0x03)));
ui->deltaFrequency->setColorMapper(ColorMapper(ColorMapper::GrayGold)); ui->deltaFrequency->setColorMapper(ColorMapper(ColorMapper::GrayGold));
@ -389,6 +413,8 @@ ChannelAnalyzerNGGUI::ChannelAnalyzerNGGUI(PluginAPI* pluginAPI, DeviceSourceAPI
ui->spectrumGUI->setBuddies(m_spectrumVis->getInputMessageQueue(), m_spectrumVis, ui->glSpectrum); ui->spectrumGUI->setBuddies(m_spectrumVis->getInputMessageQueue(), m_spectrumVis, ui->glSpectrum);
ui->scopeGUI->setBuddies(m_scopeVis->getInputMessageQueue(), m_scopeVis, ui->glScope); ui->scopeGUI->setBuddies(m_scopeVis->getInputMessageQueue(), m_scopeVis, ui->glScope);
connect(getInputMessageQueue(), SIGNAL(messageEnqueued()), this, SLOT(handleInputMessages()));
applySettings(); applySettings();
setNewFinalRate(m_spanLog2); setNewFinalRate(m_spanLog2);
} }
@ -396,9 +422,9 @@ ChannelAnalyzerNGGUI::ChannelAnalyzerNGGUI(PluginAPI* pluginAPI, DeviceSourceAPI
ChannelAnalyzerNGGUI::~ChannelAnalyzerNGGUI() ChannelAnalyzerNGGUI::~ChannelAnalyzerNGGUI()
{ {
m_deviceAPI->removeChannelInstance(this); m_deviceAPI->removeChannelInstance(this);
m_deviceAPI->removeThreadedSink(m_threadedChannelizer); // m_deviceAPI->removeThreadedSink(m_threadedChannelizer);
delete m_threadedChannelizer; // delete m_threadedChannelizer;
delete m_channelizer; // delete m_channelizer;
delete m_channelAnalyzer; delete m_channelAnalyzer;
delete m_spectrumVis; delete m_spectrumVis;
delete m_scopeVis; delete m_scopeVis;
@ -514,14 +540,25 @@ void ChannelAnalyzerNGGUI::applySettings()
setTitleColor(m_channelMarker.getColor()); setTitleColor(m_channelMarker.getColor());
ui->deltaFrequency->setValue(m_channelMarker.getCenterFrequency()); ui->deltaFrequency->setValue(m_channelMarker.getCenterFrequency());
m_channelizer->configure(m_channelizer->getInputMessageQueue(), int sampleRate = getRequestedChannelSampleRate();
//m_channelizer->getInputSampleRate(),
getRequestedChannelSampleRate(), ChannelAnalyzerNG::MsgConfigureChannelizer *msgChannelizer = ChannelAnalyzerNG::MsgConfigureChannelizer::create(sampleRate, m_channelMarker.getCenterFrequency());
m_channelAnalyzer->getInputMessageQueue()->push(msgChannelizer);
ChannelAnalyzerNG::MsgConfigureChannelizer *msg =
ChannelAnalyzerNG::MsgConfigureChannelizer::create(
sampleRate,
m_channelMarker.getCenterFrequency()); m_channelMarker.getCenterFrequency());
m_channelAnalyzer->getInputMessageQueue()->push(msg);
// m_channelizer->configure(m_channelizer->getInputMessageQueue(),
// //m_channelizer->getInputSampleRate(),
// getRequestedChannelSampleRate(),
// m_channelMarker.getCenterFrequency());
m_channelAnalyzer->configure(m_channelAnalyzer->getInputMessageQueue(), m_channelAnalyzer->configure(m_channelAnalyzer->getInputMessageQueue(),
//m_channelizer->getInputSampleRate(), // TODO: specify required channel sample rate //m_channelizer->getInputSampleRate(), // TODO: specify required channel sample rate
getRequestedChannelSampleRate(), // TODO: specify required channel sample rate sampleRate, // TODO: specify required channel sample rate
ui->BW->value() * 100.0, ui->BW->value() * 100.0,
ui->lowCut->value() * 100.0, ui->lowCut->value() * 100.0,
m_spanLog2, m_spanLog2,

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@ -59,7 +59,7 @@ public:
private slots: private slots:
void viewChanged(); void viewChanged();
void channelizerInputSampleRateChanged(); // void channelizerInputSampleRateChanged();
void on_deltaFrequency_changed(qint64 value); void on_deltaFrequency_changed(qint64 value);
void on_channelSampleRate_changed(quint64 value); void on_channelSampleRate_changed(quint64 value);
void on_useRationalDownsampler_toggled(bool checked); void on_useRationalDownsampler_toggled(bool checked);
@ -69,6 +69,7 @@ private slots:
void on_ssb_toggled(bool checked); void on_ssb_toggled(bool checked);
void onWidgetRolled(QWidget* widget, bool rollDown); void onWidgetRolled(QWidget* widget, bool rollDown);
void onMenuDoubleClicked(); void onMenuDoubleClicked();
void handleInputMessages();
void tick(); void tick();
private: private:
@ -82,8 +83,8 @@ private:
int m_spanLog2; int m_spanLog2;
MovingAverage<double> m_channelPowerDbAvg; MovingAverage<double> m_channelPowerDbAvg;
ThreadedBasebandSampleSink* m_threadedChannelizer; // ThreadedBasebandSampleSink* m_threadedChannelizer;
DownChannelizer* m_channelizer; // DownChannelizer* m_channelizer;
ChannelAnalyzerNG* m_channelAnalyzer; ChannelAnalyzerNG* m_channelAnalyzer;
SpectrumScopeNGComboVis* m_spectrumScopeComboVis; SpectrumScopeNGComboVis* m_spectrumScopeComboVis;
SpectrumVis* m_spectrumVis; SpectrumVis* m_spectrumVis;