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mirror of https://github.com/f4exb/sdrangel.git synced 2024-11-13 20:01:46 -05:00
sdrangel/plugins/channel/ssb/ssbdemodgui.cpp

327 lines
7.9 KiB
C++

#include <QDockWidget>
#include <QMainWindow>
#include "ssbdemodgui.h"
#include "ui_ssbdemodgui.h"
#include "ssbdemodgui.h"
#include "ui_ssbdemodgui.h"
#include "dsp/threadedsamplesink.h"
#include "dsp/channelizer.h"
#include "ssbdemod.h"
#include "dsp/spectrumvis.h"
#include "gui/glspectrum.h"
#include "plugin/pluginapi.h"
#include "util/simpleserializer.h"
#include "gui/basicchannelsettingswidget.h"
#include <iostream>
SSBDemodGUI* SSBDemodGUI::create(PluginAPI* pluginAPI)
{
SSBDemodGUI* gui = new SSBDemodGUI(pluginAPI);
return gui;
}
void SSBDemodGUI::destroy()
{
delete this;
}
void SSBDemodGUI::setName(const QString& name)
{
setObjectName(name);
}
QString SSBDemodGUI::getName() const
{
return objectName();
}
void SSBDemodGUI::resetToDefaults()
{
ui->BW->setValue(30);
ui->volume->setValue(40);
ui->deltaFrequency->setValue(0);
ui->spanLog2->setValue(3);
applySettings();
}
QByteArray SSBDemodGUI::serialize() const
{
SimpleSerializer s(1);
s.writeS32(1, m_channelMarker->getCenterFrequency());
s.writeS32(2, ui->BW->value());
s.writeS32(6, ui->lowCut->value());
s.writeS32(3, ui->volume->value());
s.writeBlob(4, ui->spectrumGUI->serialize());
s.writeU32(5, m_channelMarker->getColor().rgb());
s.writeS32(6, ui->spanLog2->value());
return s.final();
}
bool SSBDemodGUI::deserialize(const QByteArray& data)
{
SimpleDeserializer d(data);
if(!d.isValid()) {
resetToDefaults();
return false;
}
if(d.getVersion() == 1) {
QByteArray bytetmp;
quint32 u32tmp;
qint32 tmp;
d.readS32(1, &tmp, 0);
m_channelMarker->setCenterFrequency(tmp);
d.readS32(2, &tmp, 30);
ui->BW->setValue(tmp);
d.readS32(6, &tmp, 3);
ui->lowCut->setValue(tmp);
d.readS32(3, &tmp, 20);
ui->volume->setValue(tmp);
d.readBlob(4, &bytetmp);
ui->spectrumGUI->deserialize(bytetmp);
if(d.readU32(5, &u32tmp))
m_channelMarker->setColor(u32tmp);
d.readS32(6, &tmp, 20);
ui->spanLog2->setValue(tmp);
setNewRate(tmp);
applySettings();
return true;
} else {
resetToDefaults();
return false;
}
}
bool SSBDemodGUI::handleMessage(Message* message)
{
return false;
}
void SSBDemodGUI::viewChanged()
{
applySettings();
}
void SSBDemodGUI::on_deltaMinus_clicked(bool minus)
{
int deltaFrequency = m_channelMarker->getCenterFrequency();
bool minusDelta = (deltaFrequency < 0);
if (minus ^ minusDelta) // sign change
{
m_channelMarker->setCenterFrequency(-deltaFrequency);
}
}
void SSBDemodGUI::on_deltaFrequency_changed(quint64 value)
{
if (ui->deltaMinus->isChecked()) {
m_channelMarker->setCenterFrequency(-value);
} else {
m_channelMarker->setCenterFrequency(value);
}
}
void SSBDemodGUI::on_BW_valueChanged(int value)
{
QString s = QString::number(value/10.0, 'f', 1);
ui->BWText->setText(tr("%1k").arg(s));
m_channelMarker->setBandwidth(value * 100 * 2);
if (value < 0) {
m_channelMarker->setSidebands(ChannelMarker::lsb);
} else {
m_channelMarker->setSidebands(ChannelMarker::usb);
}
on_lowCut_valueChanged(m_channelMarker->getLowCutoff()/100);
}
int SSBDemodGUI::getEffectiveLowCutoff(int lowCutoff)
{
int ssbBW = m_channelMarker->getBandwidth() / 2;
int effectiveLowCutoff = lowCutoff;
const int guard = 100;
if (ssbBW < 0) {
if (effectiveLowCutoff < ssbBW + guard) {
effectiveLowCutoff = ssbBW + guard;
}
if (effectiveLowCutoff > 0) {
effectiveLowCutoff = 0;
}
} else {
if (effectiveLowCutoff > ssbBW - guard) {
effectiveLowCutoff = ssbBW - guard;
}
if (effectiveLowCutoff < 0) {
effectiveLowCutoff = 0;
}
}
return effectiveLowCutoff;
}
void SSBDemodGUI::on_lowCut_valueChanged(int value)
{
int lowCutoff = getEffectiveLowCutoff(value * 100);
m_channelMarker->setLowCutoff(lowCutoff);
QString s = QString::number(lowCutoff/1000.0, 'f', 1);
ui->lowCutText->setText(tr("%1k").arg(s));
ui->lowCut->setValue(lowCutoff/100);
applySettings();
}
void SSBDemodGUI::on_volume_valueChanged(int value)
{
ui->volumeText->setText(QString("%1").arg(value / 10.0, 0, 'f', 1));
applySettings();
}
void SSBDemodGUI::on_spanLog2_valueChanged(int value)
{
if (setNewRate(value)) {
applySettings();
}
}
void SSBDemodGUI::onWidgetRolled(QWidget* widget, bool rollDown)
{
/*
if((widget == ui->spectrumContainer) && (m_ssbDemod != NULL))
m_ssbDemod->setSpectrum(m_threadedSampleSink->getMessageQueue(), rollDown);
*/
}
void SSBDemodGUI::onMenuDoubleClicked()
{
if(!m_basicSettingsShown) {
m_basicSettingsShown = true;
BasicChannelSettingsWidget* bcsw = new BasicChannelSettingsWidget(m_channelMarker, this);
bcsw->show();
}
}
SSBDemodGUI::SSBDemodGUI(PluginAPI* pluginAPI, QWidget* parent) :
RollupWidget(parent),
ui(new Ui::SSBDemodGUI),
m_pluginAPI(pluginAPI),
m_basicSettingsShown(false),
m_rate(6000),
m_spanLog2(3)
{
ui->setupUi(this);
setAttribute(Qt::WA_DeleteOnClose, true);
connect(this, SIGNAL(widgetRolled(QWidget*,bool)), this, SLOT(onWidgetRolled(QWidget*,bool)));
connect(this, SIGNAL(menuDoubleClickEvent()), this, SLOT(onMenuDoubleClicked()));
m_audioFifo = new AudioFifo(4, 48000 / 4);
m_spectrumVis = new SpectrumVis(ui->glSpectrum);
m_ssbDemod = new SSBDemod(m_audioFifo, m_spectrumVis);
m_channelizer = new Channelizer(m_ssbDemod);
m_threadedSampleSink = new ThreadedSampleSink(m_channelizer);
m_pluginAPI->addAudioSource(m_audioFifo);
m_pluginAPI->addSampleSink(m_threadedSampleSink);
ui->glSpectrum->setCenterFrequency(m_rate/2);
ui->glSpectrum->setSampleRate(m_rate);
ui->glSpectrum->setDisplayWaterfall(true);
ui->glSpectrum->setDisplayMaxHold(true);
ui->glSpectrum->setSsbSpectrum(true);
m_channelMarker = new ChannelMarker(this);
m_channelMarker->setColor(Qt::green);
m_channelMarker->setBandwidth(m_rate);
m_channelMarker->setSidebands(ChannelMarker::usb);
m_channelMarker->setCenterFrequency(0);
m_channelMarker->setVisible(true);
connect(m_channelMarker, SIGNAL(changed()), this, SLOT(viewChanged()));
m_pluginAPI->addChannelMarker(m_channelMarker);
ui->spectrumGUI->setBuddies(m_threadedSampleSink->getMessageQueue(), m_spectrumVis, ui->glSpectrum);
applySettings();
}
SSBDemodGUI::~SSBDemodGUI()
{
m_pluginAPI->removeChannelInstance(this);
m_pluginAPI->removeAudioSource(m_audioFifo);
m_pluginAPI->removeSampleSink(m_threadedSampleSink);
delete m_threadedSampleSink;
delete m_channelizer;
delete m_ssbDemod;
delete m_spectrumVis;
delete m_audioFifo;
delete m_channelMarker;
delete ui;
}
bool SSBDemodGUI::setNewRate(int spanLog2)
{
if ((spanLog2 < 1) || (spanLog2 > 5)) {
return false;
}
m_spanLog2 = spanLog2;
m_rate = 48000 / (1<<spanLog2);
if (ui->BW->value() < -m_rate/100) {
ui->BW->setValue(-m_rate/100);
m_channelMarker->setBandwidth(-m_rate*2);
} else if (ui->BW->value() > m_rate/100) {
ui->BW->setValue(m_rate/100);
m_channelMarker->setBandwidth(m_rate*2);
}
if (ui->lowCut->value() < -m_rate/100) {
ui->lowCut->setValue(-m_rate/100);
m_channelMarker->setLowCutoff(-m_rate);
} else if (ui->lowCut->value() > m_rate/100) {
ui->lowCut->setValue(m_rate/100);
m_channelMarker->setLowCutoff(m_rate);
}
ui->BW->setMinimum(-m_rate/100);
ui->lowCut->setMinimum(-m_rate/100);
ui->BW->setMaximum(m_rate/100);
ui->lowCut->setMaximum(m_rate/100);
QString s = QString::number(m_rate/1000.0, 'f', 1);
ui->spanText->setText(tr("%1k").arg(s));
ui->glSpectrum->setCenterFrequency(m_rate/2);
ui->glSpectrum->setSampleRate(m_rate);
return true;
}
void SSBDemodGUI::applySettings()
{
setTitleColor(m_channelMarker->getColor());
ui->deltaFrequency->setValue(abs(m_channelMarker->getCenterFrequency()));
ui->deltaMinus->setChecked(m_channelMarker->getCenterFrequency() < 0);
m_channelizer->configure(m_threadedSampleSink->getMessageQueue(),
48000,
m_channelMarker->getCenterFrequency());
m_ssbDemod->configure(m_threadedSampleSink->getMessageQueue(),
ui->BW->value() * 100.0,
ui->lowCut->value() * 100.0,
ui->volume->value() / 10.0,
m_spanLog2);
}
void SSBDemodGUI::leaveEvent(QEvent*)
{
m_channelMarker->setHighlighted(false);
}
void SSBDemodGUI::enterEvent(QEvent*)
{
m_channelMarker->setHighlighted(true);
}