mirror of
https://github.com/saitohirga/WSJT-X.git
synced 2024-11-23 12:48:40 -05:00
Basic functionality of Echo spectrum is in place.
git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@5557 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
This commit is contained in:
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477d45a72c
commit
be5eb31884
@ -262,6 +262,7 @@ set (wsjt_FSRCS
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lib/astro.f90
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lib/astrosub.f90
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lib/astro0.f90
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lib/avecho.f90
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lib/avg4.f90
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lib/azdist.f90
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lib/baddata.f90
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@ -44,6 +44,13 @@ extern "C" {
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extern struct {
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float syellow[NSMAX];
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} jt9w_;
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extern struct {
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int nclearave;
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int nsum;
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float blue[2000];
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float red[2000];
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} echocom_;
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}
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#endif // COMMONS_H
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@ -1,4 +1,4 @@
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//#include "commons.h"
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#include "commons.h"
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#include <QSettings>
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#include "echoplot.h"
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#include "echograph.h"
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@ -27,6 +27,7 @@ EchoGraph::EchoGraph(QSettings * settings, QWidget *parent) :
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ui->zeroSlider->setValue(ui->echoPlot->getPlotZero());
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ui->gainSlider->setValue(ui->echoPlot->getPlotGain());
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ui->smoothSpinBox->setValue(m_settings->value("Smooth",0).toInt());
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ui->binsPerPixelSpinBox->setValue(m_settings->value("EchoBPP",0).toInt());
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ui->echoPlot->m_blue=m_settings->value("BlueCurve",false).toBool();
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ui->cbBlue->setChecked(ui->echoPlot->m_blue);
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m_settings->endGroup();
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@ -52,6 +53,7 @@ void EchoGraph::saveSettings()
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m_settings->setValue("PlotZero",ui->echoPlot->m_plotZero);
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m_settings->setValue("PlotGain",ui->echoPlot->m_plotGain);
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m_settings->setValue("Smooth",ui->echoPlot->m_smooth);
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m_settings->setValue("EchoBPP",ui->echoPlot->m_binsPerPixel);
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m_settings->setValue("BlueCurve",ui->echoPlot->m_blue);
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m_settings->endGroup();
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}
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@ -84,3 +86,10 @@ void EchoGraph::on_zeroSlider_valueChanged(int value)
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ui->echoPlot->setPlotZero(value);
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ui->echoPlot->draw();
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}
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void EchoGraph::on_binsPerPixelSpinBox_valueChanged(int n)
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{
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ui->echoPlot->m_binsPerPixel=n;
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ui->echoPlot->DrawOverlay();
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ui->echoPlot->draw();
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}
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@ -27,6 +27,7 @@ private slots:
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void on_cbBlue_toggled(bool checked);
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void on_gainSlider_valueChanged(int value);
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void on_zeroSlider_valueChanged(int value);
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void on_binsPerPixelSpinBox_valueChanged(int n);
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private:
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QSettings * m_settings;
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35
echograph.ui
35
echograph.ui
@ -89,6 +89,25 @@
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</property>
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</spacer>
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</item>
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<item>
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<widget class="QSpinBox" name="binsPerPixelSpinBox">
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<property name="minimumSize">
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<size>
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<width>60</width>
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<height>0</height>
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</size>
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</property>
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<property name="prefix">
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<string>Bins/Pixel </string>
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</property>
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<property name="minimum">
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<number>1</number>
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</property>
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<property name="maximum">
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<number>10</number>
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</property>
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</widget>
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</item>
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<item>
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<widget class="QLabel" name="label_4">
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<property name="text">
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@ -161,15 +180,17 @@
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</property>
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</spacer>
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</item>
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<item>
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<widget class="QLabel" name="label_2">
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<property name="text">
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<string>Smooth</string>
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</property>
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</widget>
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</item>
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<item>
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<widget class="QSpinBox" name="smoothSpinBox">
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<property name="minimumSize">
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<size>
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<width>60</width>
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<height>0</height>
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</size>
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</property>
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<property name="prefix">
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<string>Smooth </string>
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</property>
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<property name="maximum">
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<number>20</number>
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</property>
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16
echoplot.cpp
16
echoplot.cpp
@ -1,5 +1,5 @@
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#include "echoplot.h"
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//#include "commons.h"
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#include "commons.h"
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#include <math.h>
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#include <QDebug>
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#include "moc_echoplot.cpp"
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@ -18,7 +18,7 @@ EPlotter::EPlotter(QWidget *parent) : //EPlotter Constructor
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setAttribute(Qt::WA_NoSystemBackground, true);
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m_StartFreq = -200;
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m_fftBinWidth=48000.0/131072.0;
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m_fftBinWidth=12000.0/32768.0;
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m_fSpan=1000.0;
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m_hdivs = HORZ_DIVS;
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m_Running = false;
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@ -81,7 +81,7 @@ void EPlotter::paintEvent(QPaintEvent *) // paintEvent()
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m_paintEventBusy=false;
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}
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void EPlotter::draw() //draw()
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void EPlotter::draw() //draw()
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{
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int i,j,y;
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float blue[2000],red[2000];
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@ -91,16 +91,16 @@ void EPlotter::draw() //draw()
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QPainter painter2D(&m_2DPixmap);
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QRect tmp(0,0,m_w,m_h2);
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painter2D.fillRect(tmp,Qt::black);
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/*
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if(datcom_.nclearave==0) {
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if(echocom_.nclearave==0) {
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QPoint LineBuf[MAX_SCREENSIZE];
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QPen penBlue(QColor(0,255,255),1);
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QPen penRed(Qt::red,1);
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j=0;
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int i0=1000 + int(m_StartFreq/m_fftBinWidth);
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for(i=0; i<2000; i++) {
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blue[i]=datcom_.blue[i];
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red[i]=datcom_.red[i];
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blue[i]=echocom_.blue[i];
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red[i]=echocom_.red[i];
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}
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if(m_smooth>0) {
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for(i=0; i<m_smooth; i++) {
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@ -132,7 +132,7 @@ void EPlotter::draw() //draw()
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}
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painter2D.drawPolyline(LineBuf,j);
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}
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*/
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update(); //trigger a new paintEvent
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}
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@ -31,9 +31,10 @@ public:
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qint32 m_plotZero;
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qint32 m_plotGain;
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qint32 m_smooth;
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qint32 m_binsPerPixel;
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bool m_blue;
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void draw(); //Update the waterfall
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void draw(); //Update the Echo plot
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void SetRunningState(bool running);
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void setPlotZero(int plotZero);
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int getPlotZero();
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119
lib/avecho.f90
Normal file
119
lib/avecho.f90
Normal file
@ -0,0 +1,119 @@
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subroutine avecho(id2,ndop,nfrit,nqual,f1,rms0,sigdb,snr,dfreq,width)
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integer TXLENGTH
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parameter (TXLENGTH=27648) !27*1024
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parameter (NFFT=32768,NH=NFFT/2)
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integer*2 id2(34560) !Buffer for Rx data
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real sa(2000) !Avg spectrum relative to initial Doppler echo freq
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real sb(2000) !Avg spectrum with Dither and changing Doppler removed
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integer nsum !Number of integrations
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real dop0 !Doppler shift for initial integration (Hz)
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real doppler !Doppler shift for current integration (Hz)
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real s(8192)
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real x(NFFT)
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integer ipkv(1)
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complex c(0:NH)
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equivalence (x,c),(ipk,ipkv)
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common/echocom/nclearave,nsum,blue(2000),red(2000)
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save dop0,sa,sb
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dop=ndop
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doppler=dop
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sq=0.
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do i=1,TXLENGTH
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x(i)=id2(i)
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sq=sq + x(i)*x(i)
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enddo
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rms0=sqrt(sq/TXLENGTH)
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if(nclearave.ne.0) nsum=0
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nclearave=0
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if(nsum.eq.0) then
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dop0=doppler !Remember the initial Doppler
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sa=0. !Clear the average arrays
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sb=0.
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endif
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x(TXLENGTH+1:)=0.
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x=x/TXLENGTH
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call four2a(x,NFFT,1,-1,0)
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df=12000.0/NFFT
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do i=1,8192 !Get spectrum 0 - 3 kHz
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s(i)=real(c(i))**2 + aimag(c(i))**2
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enddo
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fnominal=1500.0 !Nominal audio frequency w/o doppler or dither
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ia=nint((fnominal+dop0-nfrit)/df)
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ib=nint((f1+doppler-nfrit)/df)
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if(ia.lt.600 .or. ib.lt.600) go to 900
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if(ia.gt.7590 .or. ib.gt.7590) go to 900
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nsum=nsum+1
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do i=1,2000
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sa(i)=sa(i) + s(ia+i-1000) !Center at initial doppler freq
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sb(i)=sb(i) + s(ib+i-1000) !Center at expected echo freq
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enddo
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call pctile(sb,200,50,r0)
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call pctile(sb(1800),200,50,r1)
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sum=0.
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sq=0.
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do i=1,2000
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y=r0 + (r1-r0)*(i-100.0)/1800.0
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blue(i)=sa(i)/y
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red(i)=sb(i)/y
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if(i.le.500 .or. i.ge.1501) then
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sum=sum+red(i)
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sq=sq + (red(i)-1.0)**2
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endif
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enddo
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ave=sum/1000.0
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rms=sqrt(sq/1000.0)
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redmax=maxval(red)
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ipkv=maxloc(red)
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fac=10.0/max(redmax,10.0)
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dfreq=(ipk-1000)*df
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snr=(redmax-ave)/rms
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sigdb=-99.0
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if(ave.gt.0.0) sigdb=10.0*log10(redmax/ave - 1.0) - 35.7
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nqual=0
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if(nsum.ge.2 .and. nsum.lt.4) nqual=(snr-4)/5
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if(nsum.ge.4 .and. nsum.lt.8) nqual=(snr-3)/4
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if(nsum.ge.8 .and. nsum.lt.12) nqual=(snr-3)/3
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if(nsum.ge.12) nqual=(snr-2.5)/2.5
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if(nqual.lt.0) nqual=0
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if(nqual.gt.10) nqual=10
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! Scale for plotting
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blue=fac*blue
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red=fac*red
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sum=0.
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do i=ipk,ipk+300
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if(red(i).lt.1.0) exit
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sum=sum+(red(i)-1.0)
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enddo
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do i=ipk-1,ipk-300,-1
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if(red(i).lt.1.0) exit
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sum=sum+(red(i)-1.0)
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enddo
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bins=sum/(red(ipk)-1.0)
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width=df*bins
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nsmo=max(0.0,0.25*bins)
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do i=1,nsmo
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call smo121(red,2000)
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call smo121(blue,2000)
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enddo
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900 continue
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write(*,3001) ia,ib,nclearave,nsum,width,snr,nqual
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3001 format('avecho:',4i6,2f7.1,i5)
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return
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end subroutine avecho
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@ -437,6 +437,10 @@ MainWindow::MainWindow(bool multiple, QSettings * settings, QSharedMemory *shdme
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m_bHaveTransmitted=false;
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m_bEchoTxOK=false;
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m_bTransmittedEcho=false;
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m_nDop=0;
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m_nDop00=0;
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m_nDopr=0;
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m_nclearave=1;
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signalMeter = new SignalMeter(ui->meterFrame);
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signalMeter->resize(50, 160);
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@ -820,8 +824,20 @@ void MainWindow::dataSink(qint64 frames)
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if(ihsym == m_hsymStop) {
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if(m_mode=="Echo") {
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qDebug() << "call plotSpec()" << m_s6;
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float snr=0;
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int nfrit=0;
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int nqual=0;
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float f1=1500.0;
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float rms=0.0;
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float sigdb=0.0;
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float dfreq=0.0;
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float width=0.0;
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echocom_.nclearave=m_nclearave;
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avecho_(&jt9com_.d2[0],&m_nDop00,&nfrit,&nqual,&f1,&rms,&sigdb,
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&snr,&dfreq,&width);
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qDebug() << "A" << echocom_.nclearave << echocom_.nsum << rms << sigdb;
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if(m_echoGraph->isVisible()) m_echoGraph->plotSpec();
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m_nclearave=0;
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return;
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}
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if( m_dialFreqRxWSPR==0) m_dialFreqRxWSPR=m_dialFreq;
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@ -2145,9 +2161,8 @@ void MainWindow::guiUpdate()
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QDateTime t = QDateTime::currentDateTimeUtc();
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if(m_astroWidget) {
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m_freqMoon=m_dialFreq + 1000*m_astroWidget->m_kHz + m_astroWidget->m_Hz;
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int ndop,ndop00;
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m_astroWidget->astroUpdate(t, m_config.my_grid (), m_hisGrid,m_freqMoon,
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&ndop, &ndop00, m_transmitting,
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&m_nDop, &m_nDop00, m_transmitting,
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m_config.data_dir().absoluteFilePath("JPLEPH"));
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//Apply Doppler corrections only for 50 MHz and above
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@ -2155,23 +2170,28 @@ void MainWindow::guiUpdate()
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if(m_astroWidget->m_bDopplerTracking) {
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int ndopr=0; // No Doppler Correction
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if(m_DopplerMethod==1) {
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// All Doppler correction done here; DX station stays at nominal dial frequency.
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ndopr=m_astroWidget->m_stepHz*qRound(double(ndop)/double(m_astroWidget->m_stepHz));
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// All Doppler correction done here; DX station stays at nominal dial frequency.
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m_nDopr=m_astroWidget->m_stepHz*qRound(double(m_nDop)/double(
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m_astroWidget->m_stepHz));
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}
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if(m_DopplerMethod==2) {
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// Doppler correction to constant frequency on Moon
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ndopr=m_astroWidget->m_stepHz*qRound(double(ndop00/2.0)/double(m_astroWidget->m_stepHz));
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m_nDopr=m_astroWidget->m_stepHz*qRound(double(m_nDop00/2.0)/double(
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m_astroWidget->m_stepHz));
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}
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if(m_transmitting) {
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m_dialFreqTx=m_freqNominal + 1000*m_astroWidget->m_kHz + m_astroWidget->m_Hz - ndopr;
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ui->labDialFreq->setText (Radio::pretty_frequency_MHz_string (m_dialFreqTx));
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m_dialFreqTx=m_freqNominal + 1000*m_astroWidget->m_kHz +
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m_astroWidget->m_Hz - m_nDopr;
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ui->labDialFreq->setText (Radio::pretty_frequency_MHz_string (
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m_dialFreqTx));
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Q_EMIT m_config.transceiver_tx_frequency (m_dialFreqTx);
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} else {
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m_dialFreq=m_freqNominal + 1000*m_astroWidget->m_kHz + m_astroWidget->m_Hz + ndopr;
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ui->labDialFreq->setText (Radio::pretty_frequency_MHz_string (m_dialFreq));
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m_dialFreq=m_freqNominal + 1000*m_astroWidget->m_kHz +
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m_astroWidget->m_Hz + m_nDopr;
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ui->labDialFreq->setText (Radio::pretty_frequency_MHz_string (
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m_dialFreq));
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Q_EMIT m_config.transceiver_frequency(m_dialFreq);
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}
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}
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@ -2216,7 +2236,6 @@ void MainWindow::guiUpdate()
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if(!m_monitoring and !m_diskData) {
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signalMeter->setValue(0);
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}
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m_sec0=nsec;
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}
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@ -333,6 +333,9 @@ private:
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qint32 m_dBm;
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qint32 m_pctx;
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qint32 m_nseq;
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qint32 m_nDop; //Doppler shift of EME DX station
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qint32 m_nDop00; //EME self-Doppler
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qint32 m_nDopr; //Applied Doppler, rounded to nearest 1, 10 or 100 Hz
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bool m_btxok; //True if OK to transmit
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bool m_diskData;
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@ -555,6 +558,10 @@ extern "C" {
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void wspr_downsample_(short int d2[], int* k);
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void savec2_(char* fname, int* m_TRseconds, double* m_dialFreq, int len1);
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void avecho_( short id2[], int* dop, int* nfrit, int* nqual, float* f1,
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float* rms, float* sigdb, float* snr, float* dfreq,
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float* width);
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}
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#endif // MAINWINDOW_H
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