mirror of
https://github.com/saitohirga/WSJT-X.git
synced 2024-11-26 06:08:42 -05:00
f7ff64bd6e
The wide graph class handles 60m band behaviour of the minimum decoded JT9 DF internally without leaking implementation details. On 60m the lowest JT9 DF is always zero and the spin box to set it is disabled. This reflects that 60m only has narrow channels and JT9 signals should share the same dial frequency as JT65 signals. git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@7668 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
517 lines
15 KiB
C++
517 lines
15 KiB
C++
#include "widegraph.h"
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#include <algorithm>
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#include <QApplication>
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#include <QSettings>
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#include "ui_widegraph.h"
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#include "commons.h"
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#include "Configuration.hpp"
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#include "MessageBox.hpp"
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#include "moc_widegraph.cpp"
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#include "SettingsGroup.hpp"
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namespace
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{
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auto user_defined = QObject::tr ("User Defined");
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float swide[MAX_SCREENSIZE];
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}
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WideGraph::WideGraph(QSettings * settings, QWidget *parent) :
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QDialog(parent),
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ui(new Ui::WideGraph),
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m_settings (settings),
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m_palettes_path {":/Palettes"},
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m_ntr0 {0},
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m_lockTxFreq {false},
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m_bHaveTransmitted {false},
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m_n {0}
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{
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ui->setupUi(this);
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setWindowTitle (QApplication::applicationName () + " - " + tr ("Wide Graph"));
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setWindowFlags (Qt::WindowCloseButtonHint | Qt::WindowMinimizeButtonHint);
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setMaximumWidth (MAX_SCREENSIZE);
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setMaximumHeight (880);
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ui->widePlot->setCursor(Qt::CrossCursor);
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ui->widePlot->setMaximumHeight(800);
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ui->widePlot->setCurrent(false);
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connect(ui->widePlot, SIGNAL(freezeDecode1(int)),this,
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SLOT(wideFreezeDecode(int)));
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connect(ui->widePlot, SIGNAL(setFreq1(int,int)),this,
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SLOT(setFreq2(int,int)));
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{
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//Restore user's settings
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SettingsGroup g {m_settings, "WideGraph"};
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restoreGeometry (m_settings->value ("geometry", saveGeometry ()).toByteArray ());
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ui->widePlot->setPlotZero(m_settings->value("PlotZero", 0).toInt());
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ui->widePlot->setPlotGain(m_settings->value("PlotGain", 0).toInt());
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ui->widePlot->setPlot2dGain(m_settings->value("Plot2dGain", 0).toInt());
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ui->widePlot->setPlot2dZero(m_settings->value("Plot2dZero", 0).toInt());
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ui->zeroSlider->setValue(ui->widePlot->plotZero());
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ui->gainSlider->setValue(ui->widePlot->plotGain());
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ui->gain2dSlider->setValue(ui->widePlot->plot2dGain());
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ui->zero2dSlider->setValue(ui->widePlot->plot2dZero());
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int n = m_settings->value("BinsPerPixel",2).toInt();
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m_bFlatten=m_settings->value("Flatten",true).toBool();
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m_bRef=m_settings->value("UseRef",false).toBool();
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ui->cbFlatten->setChecked(m_bFlatten);
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ui->widePlot->setFlatten(m_bFlatten,m_bRef);
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ui->cbRef->setChecked(m_bRef);
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ui->widePlot->setBreadth(m_settings->value("PlotWidth",1000).toInt());
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ui->bppSpinBox->setValue(n);
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m_nsmo=m_settings->value("SmoothYellow",1).toInt();
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ui->smoSpinBox->setValue(m_nsmo);
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m_Percent2DScreen=m_settings->value("Percent2D",30).toInt();
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ui->sbPercent2dPlot->setValue(m_Percent2DScreen);
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m_waterfallAvg = m_settings->value("WaterfallAvg",5).toInt();
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ui->waterfallAvgSpinBox->setValue(m_waterfallAvg);
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ui->widePlot->setWaterfallAvg(m_waterfallAvg);
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ui->widePlot->setCurrent(m_settings->value("Current",false).toBool());
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ui->widePlot->setCumulative(m_settings->value("Cumulative",true).toBool());
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ui->widePlot->setLinearAvg(m_settings->value("LinearAvg",false).toBool());
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ui->widePlot->setReference(m_settings->value("Reference",false).toBool());
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if(ui->widePlot->current()) ui->spec2dComboBox->setCurrentIndex(0);
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if(ui->widePlot->cumulative()) ui->spec2dComboBox->setCurrentIndex(1);
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if(ui->widePlot->linearAvg()) ui->spec2dComboBox->setCurrentIndex(2);
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if(ui->widePlot->Reference()) ui->spec2dComboBox->setCurrentIndex(3);
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int nbpp=m_settings->value("BinsPerPixel",2).toInt();
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ui->widePlot->setBinsPerPixel(nbpp);
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ui->widePlot->setStartFreq(m_settings->value("StartFreq",0).toInt());
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ui->fStartSpinBox->setValue(ui->widePlot->startFreq());
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m_waterfallPalette=m_settings->value("WaterfallPalette","Default").toString();
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m_userPalette = WFPalette {m_settings->value("UserPalette").value<WFPalette::Colours> ()};
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int m_fMin = m_settings->value ("Fmin", 2500).toInt ();
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ui->fSplitSpinBox->setValue (m_fMin);
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setRxRange ();
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ui->controls_widget->setVisible(!m_settings->value("HideControls", false).toBool ());
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}
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saveSettings (); // update config with defaults
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int index=0;
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for (QString const& file:
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m_palettes_path.entryList(QDir::NoDotAndDotDot |
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QDir::System | QDir::Hidden |
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QDir::AllDirs | QDir::Files,
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QDir::DirsFirst)) {
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QString t=file.mid(0,file.length()-4);
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ui->paletteComboBox->addItem(t);
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if(t==m_waterfallPalette) ui->paletteComboBox->setCurrentIndex(index);
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index++;
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}
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ui->paletteComboBox->addItem (user_defined);
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if (user_defined == m_waterfallPalette) ui->paletteComboBox->setCurrentIndex(index);
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readPalette ();
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}
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WideGraph::~WideGraph ()
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{
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}
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void WideGraph::closeEvent (QCloseEvent * e)
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{
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saveSettings ();
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QDialog::closeEvent (e);
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}
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void WideGraph::saveSettings() //saveSettings
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{
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SettingsGroup g {m_settings, "WideGraph"};
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m_settings->setValue ("geometry", saveGeometry ());
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m_settings->setValue ("PlotZero", ui->widePlot->plotZero());
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m_settings->setValue ("PlotGain", ui->widePlot->plotGain());
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m_settings->setValue ("Plot2dGain", ui->widePlot->plot2dGain());
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m_settings->setValue ("Plot2dZero", ui->widePlot->plot2dZero());
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m_settings->setValue ("PlotWidth", ui->widePlot->plotWidth ());
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m_settings->setValue ("BinsPerPixel", ui->bppSpinBox->value ());
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m_settings->setValue ("SmoothYellow", ui->smoSpinBox->value ());
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m_settings->setValue ("Percent2D",m_Percent2DScreen);
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m_settings->setValue ("WaterfallAvg", ui->waterfallAvgSpinBox->value ());
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m_settings->setValue ("Current", ui->widePlot->current());
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m_settings->setValue ("Cumulative", ui->widePlot->cumulative());
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m_settings->setValue ("LinearAvg", ui->widePlot->linearAvg());
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m_settings->setValue ("Reference", ui->widePlot->Reference());
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m_settings->setValue ("BinsPerPixel", ui->widePlot->binsPerPixel ());
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m_settings->setValue ("StartFreq", ui->widePlot->startFreq ());
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m_settings->setValue ("WaterfallPalette", m_waterfallPalette);
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m_settings->setValue ("UserPalette", QVariant::fromValue (m_userPalette.colours ()));
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m_settings->setValue("Flatten",m_bFlatten);
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m_settings->setValue("UseRef",m_bRef);
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m_settings->setValue("HideControls",!ui->controls_widget->isVisible());
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}
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void WideGraph::drawRed(int ia, int ib)
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{
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ui->widePlot->drawRed(ia,ib,swide);
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}
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void WideGraph::dataSink2(float s[], float df3, int ihsym, int ndiskdata) //dataSink2
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{
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static float splot[NSMAX];
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int nbpp = ui->widePlot->binsPerPixel();
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//Average spectra over specified number, m_waterfallAvg
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if (m_n==0) {
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for (int i=0; i<NSMAX; i++)
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splot[i]=s[i];
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} else {
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for (int i=0; i<NSMAX; i++)
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splot[i] += s[i];
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}
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m_n++;
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if (m_n>=m_waterfallAvg) {
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for (int i=0; i<NSMAX; i++)
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splot[i] /= m_n; //Normalize the average
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m_n=0;
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int i=int(ui->widePlot->startFreq()/df3 + 0.5);
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int jz=5000.0/(nbpp*df3);
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if(jz>MAX_SCREENSIZE) jz=MAX_SCREENSIZE;
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for (int j=0; j<jz; j++) {
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float ss=0;
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for (int k=0; k<nbpp; k++) {
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if(splot[i]>ss) ss=splot[i];
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i++;
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}
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swide[j]=nbpp*ss;
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}
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// Time according to this computer
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qint64 ms = QDateTime::currentMSecsSinceEpoch() % 86400000;
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int ntr = (ms/1000) % m_TRperiod;
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if((ndiskdata && ihsym <= m_waterfallAvg) || (!ndiskdata && ntr<m_ntr0)) {
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float flagValue=1.0e30;
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if(m_bHaveTransmitted) flagValue=2.0e30;
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for (int i=0; i<2048; i++) {
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swide[i] = flagValue;
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}
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m_bHaveTransmitted=false;
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}
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m_ntr0=ntr;
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ui->widePlot->draw(swide,true,false);
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}
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}
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void WideGraph::on_bppSpinBox_valueChanged(int n) //bpp
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{
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ui->widePlot->setBinsPerPixel(n);
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}
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void WideGraph::on_waterfallAvgSpinBox_valueChanged(int n) //Navg
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{
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m_waterfallAvg = n;
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ui->widePlot->setWaterfallAvg(n);
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}
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void WideGraph::keyPressEvent(QKeyEvent *e) //F11, F12
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{
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switch(e->key())
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{
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int n;
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case Qt::Key_F11:
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n=11;
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if(e->modifiers() & Qt::ControlModifier) n+=100;
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emit f11f12(n);
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break;
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case Qt::Key_F12:
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n=12;
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if(e->modifiers() & Qt::ControlModifier) n+=100;
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emit f11f12(n);
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break;
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case Qt::Key_M:
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if(e->modifiers() & Qt::ControlModifier) {
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ui->controls_widget->setVisible(!ui->controls_widget->isVisible());
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}
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break;
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default:
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QDialog::keyPressEvent (e);
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}
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}
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void WideGraph::setRxFreq(int n) //setRxFreq
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{
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ui->widePlot->setRxFreq(n);
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ui->widePlot->draw(swide,false,false);
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if(m_lockTxFreq) setTxFreq(n);
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}
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int WideGraph::rxFreq() //rxFreq
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{
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return ui->widePlot->rxFreq();
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}
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int WideGraph::nStartFreq() //nStartFreq
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{
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return ui->widePlot->startFreq();
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}
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void WideGraph::wideFreezeDecode(int n) //wideFreezeDecode
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{
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emit freezeDecode2(n);
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}
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void WideGraph::setRxRange ()
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{
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ui->widePlot->setRxRange (Fmin ());
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ui->widePlot->DrawOverlay();
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ui->widePlot->update();
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}
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int WideGraph::Fmin() //Fmin
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{
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return "60m" == m_rxBand ? 0 : m_fMin;
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}
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int WideGraph::Fmax() //Fmax
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{
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return std::max (5000, ui->widePlot->Fmax());
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}
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int WideGraph::fSpan()
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{
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return ui->widePlot->fSpan ();
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}
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void WideGraph::setPeriod(int ntrperiod, int nsps) //SetPeriod
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{
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m_TRperiod=ntrperiod;
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m_nsps=nsps;
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ui->widePlot->setNsps(ntrperiod, nsps);
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}
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void WideGraph::setTxFreq(int n) //setTxFreq
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{
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emit setXIT2(n);
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ui->widePlot->setTxFreq(n);
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}
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void WideGraph::setMode(QString mode) //setMode
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{
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m_mode=mode;
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ui->fSplitSpinBox->setEnabled(m_mode=="JT9+JT65");
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ui->widePlot->setMode(mode);
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ui->widePlot->DrawOverlay();
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ui->widePlot->update();
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}
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void WideGraph::setSubMode(int n) //setSubMode
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{
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m_nSubMode=n;
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ui->widePlot->setSubMode(n);
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ui->widePlot->DrawOverlay();
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ui->widePlot->update();
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}
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void WideGraph::setModeTx(QString modeTx) //setModeTx
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{
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m_modeTx=modeTx;
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ui->widePlot->setModeTx(modeTx);
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ui->widePlot->DrawOverlay();
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ui->widePlot->update();
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}
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//Current-Cumulative-Yellow
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void WideGraph::on_spec2dComboBox_currentIndexChanged(const QString &arg1)
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{
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ui->widePlot->setCurrent(false);
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ui->widePlot->setCumulative(false);
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ui->widePlot->setLinearAvg(false);
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ui->widePlot->setReference(false);
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ui->smoSpinBox->setEnabled(false);
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if(arg1=="Current") ui->widePlot->setCurrent(true);
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if(arg1=="Cumulative") ui->widePlot->setCumulative(true);
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if(arg1=="Linear Avg") {
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ui->widePlot->setLinearAvg(true);
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ui->smoSpinBox->setEnabled(true);
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}
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if(arg1=="Reference") {
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ui->widePlot->setReference(true);
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}
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if(ui->widePlot->m_bScaleOK) ui->widePlot->draw(swide,false,false);
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}
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void WideGraph::on_fSplitSpinBox_valueChanged(int n) //fSplit
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{
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if (m_rxBand != "60m") m_fMin=n;
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setRxRange ();
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}
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void WideGraph::setLockTxFreq(bool b) //LockTxFreq
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{
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m_lockTxFreq=b;
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ui->widePlot->setLockTxFreq(b);
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}
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void WideGraph::setFreq2(int rxFreq, int txFreq) //setFreq2
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{
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emit setFreq3(rxFreq,txFreq);
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}
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void WideGraph::setDialFreq(double d) //setDialFreq
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{
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ui->widePlot->setDialFreq(d);
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}
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void WideGraph::setRxBand (QString const& band)
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{
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m_rxBand = band;
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if ("60m" == m_rxBand)
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{
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ui->fSplitSpinBox->setEnabled (false);
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ui->fSplitSpinBox->setValue (0);
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}
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else
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{
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ui->fSplitSpinBox->setValue (m_fMin);
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ui->fSplitSpinBox->setEnabled (true);
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}
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ui->widePlot->setRxBand(band);
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setRxRange ();
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}
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void WideGraph::on_fStartSpinBox_valueChanged(int n) //fStart
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{
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ui->widePlot->setStartFreq(n);
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}
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void WideGraph::readPalette () //readPalette
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{
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try
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{
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if (user_defined == m_waterfallPalette)
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{
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ui->widePlot->setColours (WFPalette {m_userPalette}.interpolate ());
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}
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else
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{
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ui->widePlot->setColours (WFPalette {m_palettes_path.absoluteFilePath (m_waterfallPalette + ".pal")}.interpolate());
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}
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}
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catch (std::exception const& e)
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{
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MessageBox::warning_message (this, tr ("Read Palette"), e.what ());
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}
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}
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void WideGraph::on_paletteComboBox_activated (QString const& palette) //palette selector
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{
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m_waterfallPalette = palette;
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readPalette();
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}
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void WideGraph::on_cbFlatten_toggled(bool b) //Flatten On/Off
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{
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m_bFlatten=b;
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if(m_bRef and m_bFlatten) {
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m_bRef=false;
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ui->cbRef->setChecked(false);
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}
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ui->widePlot->setFlatten(m_bFlatten,m_bRef);
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}
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void WideGraph::on_cbRef_toggled(bool b)
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{
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m_bRef=b;
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if(m_bRef and m_bFlatten) {
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m_bFlatten=false;
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ui->cbFlatten->setChecked(false);
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}
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ui->widePlot->setFlatten(m_bFlatten,m_bRef);
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}
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void WideGraph::on_adjust_palette_push_button_clicked (bool) //Adjust Palette
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{
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try
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{
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if (m_userPalette.design ())
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{
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m_waterfallPalette = user_defined;
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ui->paletteComboBox->setCurrentText (m_waterfallPalette);
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readPalette ();
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}
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}
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catch (std::exception const& e)
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{
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MessageBox::warning_message (this, tr ("Read Palette"), e.what ());
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}
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}
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bool WideGraph::flatten() //Flatten
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{
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return m_bFlatten;
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}
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bool WideGraph::useRef() //Flatten
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{
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return m_bRef;
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}
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void WideGraph::on_gainSlider_valueChanged(int value) //Gain
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{
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ui->widePlot->setPlotGain(value);
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}
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void WideGraph::on_zeroSlider_valueChanged(int value) //Zero
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{
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ui->widePlot->setPlotZero(value);
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}
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void WideGraph::on_gain2dSlider_valueChanged(int value) //Gain2
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{
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ui->widePlot->setPlot2dGain(value);
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if(ui->widePlot->m_bScaleOK) {
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ui->widePlot->draw(swide,false,false);
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if(m_mode=="QRA64") ui->widePlot->draw(swide,false,true);
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}
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}
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void WideGraph::on_zero2dSlider_valueChanged(int value) //Zero2
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{
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ui->widePlot->setPlot2dZero(value);
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if(ui->widePlot->m_bScaleOK) {
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ui->widePlot->draw(swide,false,false);
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if(m_mode=="QRA64") ui->widePlot->draw(swide,false,true);
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}
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}
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void WideGraph::setTol(int n) //setTol
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{
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ui->widePlot->setTol(n);
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ui->widePlot->DrawOverlay();
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ui->widePlot->update();
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}
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void WideGraph::on_smoSpinBox_valueChanged(int n)
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{
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m_nsmo=n;
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}
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int WideGraph::smoothYellow()
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{
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return m_nsmo;
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}
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void WideGraph::setWSPRtransmitted()
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{
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m_bHaveTransmitted=true;
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}
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void WideGraph::setVHF(bool bVHF)
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{
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ui->widePlot->setVHF(bVHF);
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}
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void WideGraph::on_sbPercent2dPlot_valueChanged(int n)
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{
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m_Percent2DScreen=n;
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ui->widePlot->SetPercent2DScreen(n);
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}
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void WideGraph::setRedFile(QString fRed)
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{
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ui->widePlot->setRedFile(fRed);
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}
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