1018 lines
34 KiB
C++
1018 lines
34 KiB
C++
#include "vna.h"
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#include <QGridLayout>
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#include <QVBoxLayout>
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#include <QHBoxLayout>
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#include <QPushButton>
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#include <math.h>
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#include <QToolBar>
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#include <QMenu>
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#include <QToolButton>
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#include <QActionGroup>
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#include "valueinput.h"
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#include <QSpinBox>
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#include <QCheckBox>
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#include <QComboBox>
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#include <QSettings>
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#include <algorithm>
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#include "Menu/menu.h"
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#include "Menu/menuaction.h"
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#include "Menu/menuvalue.h"
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#include "Menu/menubool.h"
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#include <QMessageBox>
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#include <QFileDialog>
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#include <QFile>
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#include <iostream>
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#include <fstream>
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#include <QDateTime>
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#include "unit.h"
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#include "CustomWidgets/toggleswitch.h"
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#include "Device/manualcontroldialog.h"
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#include "Traces/tracemodel.h"
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#include "Traces/tracewidget.h"
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#include "Traces/tracesmithchart.h"
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#include "Traces/tracebodeplot.h"
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#include "Traces/traceimportdialog.h"
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#include "CustomWidgets/tilewidget.h"
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#include <QDockWidget>
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#include "Traces/markerwidget.h"
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#include "Tools/impedancematchdialog.h"
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#include "Calibration/calibrationtracedialog.h"
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#include "ui_main.h"
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#include "Device/firmwareupdatedialog.h"
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#include "preferences.h"
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#include "signalgenerator.h"
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#include <QDesktopWidget>
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#include <QApplication>
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using namespace std;
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constexpr Protocol::SweepSettings VNA::defaultSweep;
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VNA::VNA(QWidget *parent)
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: QMainWindow(parent)
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, deviceActionGroup(new QActionGroup(this))
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, ui(new Ui::MainWindow)
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{
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QCoreApplication::setOrganizationName("VNA");
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QCoreApplication::setApplicationName("Application");
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pref.load();
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averages = 1;
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calValid = false;
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calMeasuring = false;
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device = nullptr;
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calDialog.reset();
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ui->setupUi(this);
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// ui->statusbar->insertPermanentWidget(0, &lDeviceStatus);
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// ui->statusbar->insertPermanentWidget(1, new QPushButton("Test"));
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ui->statusbar->addWidget(&lConnectionStatus);
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auto div1 = new QFrame;
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div1->setFrameShape(QFrame::VLine);
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ui->statusbar->addWidget(div1);
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ui->statusbar->addWidget(&lDeviceInfo);
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ui->statusbar->addWidget(new QLabel, 1);
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//ui->statusbar->setStyleSheet("QStatusBar::item { border: 1px solid black; };");
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// Create default traces
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auto tS11 = new Trace("S11", Qt::yellow);
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tS11->fromLivedata(Trace::LivedataType::Overwrite, Trace::LiveParameter::S11);
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traceModel.addTrace(tS11);
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auto tS12 = new Trace("S12", Qt::blue);
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tS12->fromLivedata(Trace::LivedataType::Overwrite, Trace::LiveParameter::S12);
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traceModel.addTrace(tS12);
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auto tS21 = new Trace("S21", Qt::green);
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tS21->fromLivedata(Trace::LivedataType::Overwrite, Trace::LiveParameter::S21);
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traceModel.addTrace(tS21);
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auto tS22 = new Trace("S22", Qt::red);
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tS22->fromLivedata(Trace::LivedataType::Overwrite, Trace::LiveParameter::S22);
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traceModel.addTrace(tS22);
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auto tracesmith1 = new TraceSmithChart(traceModel);
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tracesmith1->enableTrace(tS11, true);
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auto tracesmith2 = new TraceSmithChart(traceModel);
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tracesmith2->enableTrace(tS22, true);
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auto tracebode1 = new TraceBodePlot(traceModel);
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tracebode1->enableTrace(tS12, true);
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auto tracebode2 = new TraceBodePlot(traceModel);
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tracebode2->enableTrace(tS21, true);
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auto tiles = new TileWidget(traceModel);
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tiles->splitVertically();
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tiles->Child1()->splitHorizontally();
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tiles->Child2()->splitHorizontally();
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tiles->Child1()->Child1()->setPlot(tracesmith1);
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tiles->Child1()->Child2()->setPlot(tracebode1);
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tiles->Child2()->Child1()->setPlot(tracebode2);
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tiles->Child2()->Child2()->setPlot(tracesmith2);
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// Create GUI modes
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central = new QStackedWidget;
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setCentralWidget(central);
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modeVNA = new GUIMode(this, "Vector Network Analyzer", tiles);
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auto signalGenWidget = new Signalgenerator;
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modeSGen = new GUIMode(this, "Signal Generator", signalGenWidget);
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modeSGen->addHiddenElement(ui->menuTools->menuAction());
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modeSGen->addHiddenElement(ui->menuCalibration->menuAction());
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CreateToolbars();
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// UI connections
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connect(ui->actionUpdate_Device_List, &QAction::triggered, this, &VNA::UpdateDeviceList);
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connect(ui->actionDisconnect, &QAction::triggered, this, &VNA::DisconnectDevice);
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connect(ui->actionQuit, &QAction::triggered, this, &VNA::close);
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connect(ui->actionManual_Control, &QAction::triggered, this, &VNA::StartManualControl);
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connect(ui->actionImpedance_Matching, &QAction::triggered, this, &VNA::StartImpedanceMatching);
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connect(ui->actionEdit_Calibration_Kit, &QAction::triggered, [=](){
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cal.getCalibrationKit().edit();
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});
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connect(ui->actionImport_error_terms_as_traces, &QAction::triggered, [=](){
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auto import = new TraceImportDialog(traceModel, cal.getErrorTermTraces());
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import->show();
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});
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connect(ui->actionTracedata, &QAction::triggered, [=](){
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auto dialog = new CalibrationTraceDialog(&cal);
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connect(dialog, &CalibrationTraceDialog::triggerMeasurement, this, &VNA::StartCalibrationMeasurement);
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connect(dialog, &CalibrationTraceDialog::applyCalibration, this, &VNA::ApplyCalibration);
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connect(this, &VNA::CalibrationMeasurementComplete, dialog, &CalibrationTraceDialog::measurementComplete);
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dialog->show();
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});
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connect(ui->actionAssignDefaultCal, &QAction::triggered, [=](){
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if(device) {
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auto key = "DefaultCalibration"+device->serial();
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QSettings settings;
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auto filename = QFileDialog::getOpenFileName(nullptr, "Load calibration data", settings.value(key).toString(), "Calibration files (*.cal)", nullptr, QFileDialog::DontUseNativeDialog);
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if(!filename.isEmpty()) {
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settings.setValue(key, filename);
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ui->actionRemoveDefaultCal->setEnabled(true);
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}
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}
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});
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connect(ui->actionRemoveDefaultCal, &QAction::triggered, [=](){
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QSettings settings;
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settings.remove("DefaultCalibration"+device->serial());
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ui->actionRemoveDefaultCal->setEnabled(false);
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});
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connect(ui->actionFirmware_Update, &QAction::triggered, [=](){
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if(device) {
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auto fw_update = new FirmwareUpdateDialog(device);
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fw_update->exec();
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}
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});
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connect(ui->actionPreferences, &QAction::triggered, [=](){
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pref.edit();
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});
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setWindowTitle("VNA");
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markerModel = new TraceMarkerModel(traceModel);
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// Create status panel
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auto statusLayout = new QVBoxLayout();
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statusLayout->setSpacing(0);
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QFont statusFont( "Arial", 8);
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{
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auto l = new QLabel("Start Frequency:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lStart.setAlignment(Qt::AlignRight);
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lStart.setFont(statusFont);
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statusLayout->addWidget(&lStart);
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l = new QLabel("Center Frequency:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lCenter.setAlignment(Qt::AlignRight);
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lCenter.setFont(statusFont);
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statusLayout->addWidget(&lCenter);
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l = new QLabel("Stop Frequency:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lStop.setAlignment(Qt::AlignRight);
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lStop.setFont(statusFont);
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statusLayout->addWidget(&lStop);
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l = new QLabel("Span:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lSpan.setAlignment(Qt::AlignRight);
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lSpan.setFont(statusFont);
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statusLayout->addWidget(&lSpan);
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statusLayout->addStretch();
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l = new QLabel("Points:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lPoints.setAlignment(Qt::AlignRight);
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lPoints.setFont(statusFont);
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statusLayout->addWidget(&lPoints);
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l = new QLabel("IF Bandwidth:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lBandwidth.setAlignment(Qt::AlignRight);
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lBandwidth.setFont(statusFont);
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statusLayout->addWidget(&lBandwidth);
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l = new QLabel("Averages:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lAverages.setAlignment(Qt::AlignRight);
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lAverages.setFont(statusFont);
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statusLayout->addWidget(&lAverages);
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statusLayout->addStretch();
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l = new QLabel("Calibration:");
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l->setAlignment(Qt::AlignLeft);
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l->setFont(statusFont);
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statusLayout->addWidget(l);
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lCalibration.setAlignment(Qt::AlignRight);
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lCalibration.setFont(statusFont);
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statusLayout->addWidget(&lCalibration);
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}
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statusLayout->addStretch();
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setCorner(Qt::TopLeftCorner, Qt::LeftDockWidgetArea);
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setCorner(Qt::BottomLeftCorner, Qt::LeftDockWidgetArea);
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setCorner(Qt::TopRightCorner, Qt::RightDockWidgetArea);
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setCorner(Qt::BottomRightCorner, Qt::RightDockWidgetArea);
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auto statusWidget = new QWidget;
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statusWidget->setLayout(statusLayout);
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// statusWidget->setFixedWidth(150);
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auto statusDock = new QDockWidget("Status");
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statusDock->setWidget(statusWidget);
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addDockWidget(Qt::LeftDockWidgetArea, statusDock);
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auto tracesDock = new QDockWidget("Traces");
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tracesDock->setWidget(new TraceWidget(traceModel));
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addDockWidget(Qt::LeftDockWidgetArea, tracesDock);
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auto markerWidget = new MarkerWidget(*markerModel);
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auto markerDock = new QDockWidget("Marker");
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markerDock->setWidget(markerWidget);
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addDockWidget(Qt::BottomDockWidgetArea, markerDock);
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auto logDock = new QDockWidget("Device Log");
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logDock->setWidget(&deviceLog);
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addDockWidget(Qt::BottomDockWidgetArea, logDock);
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modeSGen->addHiddenElement(markerDock);
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modeSGen->addHiddenElement(tracesDock);
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modeSGen->addHiddenElement(statusDock);
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// status and menu dock hidden by default
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statusDock->close();
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{
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QSettings settings;
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restoreGeometry(settings.value("geometry").toByteArray());
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}
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// Set ObjectName for toolbars and docks
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for(auto d : findChildren<QDockWidget*>()) {
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d->setObjectName(d->windowTitle());
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}
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for(auto t : findChildren<QToolBar*>()) {
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t->setObjectName(t->windowTitle());
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}
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// Set default mode
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modeVNA->activate();
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qRegisterMetaType<Protocol::Datapoint>("Datapoint");
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// Set initial sweep settings
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if(pref.Startup.RememberSweepSettings) {
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LoadSweepSettings();
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} else {
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settings.f_start = pref.Startup.DefaultSweep.start;
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settings.f_stop = pref.Startup.DefaultSweep.stop;
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ConstrainAndUpdateFrequencies();
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SetSourceLevel(pref.Startup.DefaultSweep.excitation);
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SetIFBandwidth(pref.Startup.DefaultSweep.bandwidth);
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SetPoints(pref.Startup.DefaultSweep.points);
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}
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// List available devices
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if(UpdateDeviceList() && pref.Startup.ConnectToFirstDevice) {
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// at least one device available
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ConnectToDevice();
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}
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}
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void VNA::closeEvent(QCloseEvent *event)
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{
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QSettings settings;
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settings.setValue("geometry", saveGeometry());
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// deactivate currently used mode (stores mode state in settings)
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GUIMode::getActiveMode()->deactivate();
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StoreSweepSettings();
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pref.store();
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QMainWindow::closeEvent(event);
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}
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void VNA::NewDatapoint(Protocol::Datapoint d)
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{
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if(calMeasuring) {
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if(!calWaitFirst || d.pointNum == 0) {
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calWaitFirst = false;
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cal.addMeasurement(calMeasurement, d);
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if(d.pointNum == settings.points - 1) {
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calMeasuring = false;
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emit CalibrationMeasurementComplete(calMeasurement);
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}
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calDialog.setValue(d.pointNum + 1);
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}
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}
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if(calValid) {
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cal.correctMeasurement(d);
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}
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d = average.process(d);
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traceModel.addVNAData(d);
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emit dataChanged();
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if(d.pointNum == settings.points - 1) {
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UpdateStatusPanel();
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}
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}
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void VNA::UpdateStatusPanel()
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{
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lStart.setText(Unit::ToString(settings.f_start, "Hz", " kMG", 4));
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lCenter.setText(Unit::ToString((settings.f_start + settings.f_stop)/2, "Hz", " kMG", 4));
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lStop.setText(Unit::ToString(settings.f_stop, "Hz", " kMG", 4));
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lSpan.setText(Unit::ToString(settings.f_stop - settings.f_start, "Hz", " kMG", 4));
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lPoints.setText(QString::number(settings.points));
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lBandwidth.setText(Unit::ToString(settings.if_bandwidth, "Hz", " k", 2));
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lAverages.setText(QString::number(average.getLevel()) + "/" + QString::number(averages));
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if(calValid) {
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switch(cal.getInterpolation(settings)) {
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case Calibration::InterpolationType::Extrapolate:
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lCalibration.setText("Enabled/Extrapolating");
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break;
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case Calibration::InterpolationType::Interpolate:
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lCalibration.setText("Enabled/Interpolating");
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break;
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case Calibration::InterpolationType::Exact:
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case Calibration::InterpolationType::Unchanged:
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lCalibration.setText("Enabled");
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break;
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default:
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lCalibration.setText("Unknown");
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break;
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}
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} else {
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lCalibration.setText("Off");
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}
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}
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void VNA::SettingsChanged()
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{
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if(device) {
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device->Configure(settings);
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}
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average.reset();
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traceModel.clearVNAData();
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UpdateStatusPanel();
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TracePlot::UpdateSpan(settings.f_start, settings.f_stop);
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}
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void VNA::ConnectToDevice(QString serial)
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{
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if(device) {
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DisconnectDevice();
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}
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try {
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qDebug() << "Attempting to connect to device...";
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device = new Device(serial);
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lConnectionStatus.setText("Connected to " + device->serial());
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qInfo() << "Connected to " << device->serial();
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lDeviceInfo.setText(device->getLastDeviceInfoString());
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device->Configure(settings);
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connect(device, &Device::DatapointReceived, this, &VNA::NewDatapoint);
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connect(device, &Device::LogLineReceived, &deviceLog, &DeviceLog::addLine);
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connect(device, &Device::ConnectionLost, this, &VNA::DeviceConnectionLost);
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connect(device, &Device::DeviceInfoUpdated, [this]() {
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lDeviceInfo.setText(device->getLastDeviceInfoString());
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});
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ui->actionDisconnect->setEnabled(true);
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ui->actionManual_Control->setEnabled(true);
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ui->menuDefault_Calibration->setEnabled(true);
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ui->actionFirmware_Update->setEnabled(true);
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// Check if default calibration exists and attempt to load it
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QSettings settings;
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auto key = "DefaultCalibration"+device->serial();
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if (settings.contains(key)) {
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auto filename = settings.value(key).toString();
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qDebug() << "Attempting to load default calibration file \"" << filename << "\"";
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if(QFile::exists(filename)) {
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cal.openFromFile(filename);
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ApplyCalibration(cal.getType());
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}
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ui->actionRemoveDefaultCal->setEnabled(true);
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} else {
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qDebug() << "No default calibration file set for this device";
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ui->actionRemoveDefaultCal->setEnabled(false);
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}
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} catch (const runtime_error e) {
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DisconnectDevice();
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UpdateDeviceList();
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}
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}
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void VNA::DisconnectDevice()
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{
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if(device) {
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delete device;
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device = nullptr;
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}
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ui->actionDisconnect->setEnabled(false);
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ui->actionManual_Control->setEnabled(false);
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ui->menuDefault_Calibration->setEnabled(false);
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ui->actionFirmware_Update->setEnabled(false);
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if(deviceActionGroup->checkedAction()) {
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deviceActionGroup->checkedAction()->setChecked(false);
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}
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lConnectionStatus.setText("No device connected");
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lDeviceInfo.setText("No device information available yet");
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}
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void VNA::DeviceConnectionLost()
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{
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DisconnectDevice();
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QMessageBox::warning(this, "Disconnected", "The USB connection to the device has been lost");
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UpdateDeviceList();
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}
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void VNA::CreateToolbars()
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{
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// Sweep toolbar
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auto tb_sweep = new QToolBar("Sweep", this);
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auto eStart = new SIUnitEdit("Hz", " kMG", 6);
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eStart->setFixedWidth(100);
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eStart->setToolTip("Start frequency");
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connect(eStart, &SIUnitEdit::valueChanged, this, &VNA::SetStartFreq);
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connect(this, &VNA::startFreqChanged, eStart, &SIUnitEdit::setValueQuiet);
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tb_sweep->addWidget(new QLabel("Start:"));
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tb_sweep->addWidget(eStart);
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auto eCenter = new SIUnitEdit("Hz", " kMG", 6);
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eCenter->setFixedWidth(100);
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eCenter->setToolTip("Center frequency");
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connect(eCenter, &SIUnitEdit::valueChanged, this, &VNA::SetCenterFreq);
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connect(this, &VNA::centerFreqChanged, eCenter, &SIUnitEdit::setValueQuiet);
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tb_sweep->addWidget(new QLabel("Center:"));
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tb_sweep->addWidget(eCenter);
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auto eStop = new SIUnitEdit("Hz", " kMG", 6);
|
|
eStop->setFixedWidth(100);
|
|
eStop->setToolTip("Stop frequency");
|
|
connect(eStop, &SIUnitEdit::valueChanged, this, &VNA::SetStopFreq);
|
|
connect(this, &VNA::stopFreqChanged, eStop, &SIUnitEdit::setValueQuiet);
|
|
tb_sweep->addWidget(new QLabel("Stop:"));
|
|
tb_sweep->addWidget(eStop);
|
|
|
|
auto eSpan = new SIUnitEdit("Hz", " kMG", 6);
|
|
eSpan->setFixedWidth(100);
|
|
eSpan->setToolTip("Span");
|
|
connect(eSpan, &SIUnitEdit::valueChanged, this, &VNA::SetSpan);
|
|
connect(this, &VNA::spanChanged, eSpan, &SIUnitEdit::setValueQuiet);
|
|
tb_sweep->addWidget(new QLabel("Span:"));
|
|
tb_sweep->addWidget(eSpan);
|
|
|
|
auto bFull = new QPushButton(QIcon::fromTheme("zoom-fit-best"), "");
|
|
bFull->setToolTip("Full span");
|
|
connect(bFull, &QPushButton::clicked, this, &VNA::SetFullSpan);
|
|
tb_sweep->addWidget(bFull);
|
|
|
|
auto bZoomIn = new QPushButton(QIcon::fromTheme("zoom-in"), "");
|
|
bZoomIn->setToolTip("Zoom in");
|
|
connect(bZoomIn, &QPushButton::clicked, this, &VNA::SpanZoomIn);
|
|
tb_sweep->addWidget(bZoomIn);
|
|
|
|
auto bZoomOut = new QPushButton(QIcon::fromTheme("zoom-out"), "");
|
|
bZoomOut->setToolTip("Zoom out");
|
|
connect(bZoomOut, &QPushButton::clicked, this, &VNA::SpanZoomOut);
|
|
tb_sweep->addWidget(bZoomOut);
|
|
|
|
addToolBar(tb_sweep);
|
|
modeSGen->addHiddenElement(tb_sweep);
|
|
|
|
// Acquisition toolbar
|
|
auto tb_acq = new QToolBar("Acquisition", this);
|
|
auto dbm = new QDoubleSpinBox();
|
|
dbm->setValue(settings.cdbm_excitation * 100);
|
|
dbm->setFixedWidth(95);
|
|
dbm->setRange(-42.0, -10.0);
|
|
dbm->setSingleStep(0.25);
|
|
dbm->setSuffix("dbm");
|
|
dbm->setToolTip("Stimulus level");
|
|
connect(dbm, qOverload<double>(&QDoubleSpinBox::valueChanged), this, &VNA::SetSourceLevel);
|
|
connect(this, &VNA::sourceLevelChanged, dbm, &QDoubleSpinBox::setValue);
|
|
tb_acq->addWidget(new QLabel("Level:"));
|
|
tb_acq->addWidget(dbm);
|
|
|
|
auto points = new QSpinBox();
|
|
points->setFixedWidth(55);
|
|
points->setRange(1, 4501);
|
|
points->setValue(settings.points);
|
|
points->setSingleStep(100);
|
|
points->setToolTip("Points/sweep");
|
|
connect(points, qOverload<int>(&QSpinBox::valueChanged), this, &VNA::SetPoints);
|
|
connect(this, &VNA::pointsChanged, points, &QSpinBox::setValue);
|
|
tb_acq->addWidget(new QLabel("Points:"));
|
|
tb_acq->addWidget(points);
|
|
|
|
auto eBandwidth = new SIUnitEdit("Hz", " k", 3);
|
|
eBandwidth->setValueQuiet(settings.if_bandwidth);
|
|
eBandwidth->setFixedWidth(70);
|
|
eBandwidth->setToolTip("IF bandwidth");
|
|
connect(eBandwidth, &SIUnitEdit::valueChanged, this, &VNA::SetIFBandwidth);
|
|
connect(this, &VNA::IFBandwidthChanged, eBandwidth, &SIUnitEdit::setValueQuiet);
|
|
tb_acq->addWidget(new QLabel("IF BW:"));
|
|
tb_acq->addWidget(eBandwidth);
|
|
|
|
addToolBar(tb_acq);
|
|
modeSGen->addHiddenElement(tb_acq);
|
|
|
|
// Reference toolbar
|
|
auto tb_reference = new QToolBar("Reference", this);
|
|
tb_reference->addWidget(new QLabel("Ref:"));
|
|
toolbars.referenceType = new QComboBox();
|
|
toolbars.referenceType->addItem("Int");
|
|
toolbars.referenceType->addItem("Ext");
|
|
auto refInAuto = new QCheckBox("Auto");
|
|
refInAuto->setChecked(true);
|
|
toolbars.referenceType->setEnabled(false);
|
|
connect(refInAuto, &QCheckBox::clicked, [this](bool checked) {
|
|
// TODO change device settings
|
|
toolbars.referenceType->setEnabled(!checked);
|
|
});
|
|
tb_reference->addWidget(toolbars.referenceType);
|
|
tb_reference->addWidget(refInAuto);
|
|
tb_reference->addSeparator();
|
|
tb_reference->addWidget(new QLabel("Ref out:"));
|
|
auto refOutEnabled = new QCheckBox();
|
|
auto refOutFreq = new QComboBox();
|
|
refOutFreq->addItem("10 MHz");
|
|
refOutFreq->addItem("100 MHz");
|
|
tb_reference->addWidget(refOutEnabled);
|
|
tb_reference->addWidget(refOutFreq);
|
|
|
|
addToolBar(tb_reference);
|
|
|
|
// Calibration toolbar (and populate calibration menu)
|
|
auto tb_cal = new QToolBar("Calibration");
|
|
tb_cal->addWidget(new QLabel("Calibration:"));
|
|
auto cbEnableCal = new QCheckBox;
|
|
tb_cal->addWidget(cbEnableCal);
|
|
auto cbType = new QComboBox();
|
|
auto calMenuGroup = new QActionGroup(this);
|
|
calMenuGroup->addAction(ui->actionCalDisabled);
|
|
for(auto type : Calibration::Types()) {
|
|
cbType->addItem(Calibration::TypeToString(type), (int) type);
|
|
auto menuAction = new QAction(Calibration::TypeToString(type));
|
|
calMenuGroup->addAction(menuAction);
|
|
connect(menuAction, &QAction::triggered, [=](){
|
|
ApplyCalibration(type);
|
|
});
|
|
connect(this, &VNA::CalibrationApplied, [=](Calibration::Type applied){
|
|
if(type == applied) {
|
|
menuAction->setChecked(true);
|
|
}
|
|
});
|
|
menuAction->setCheckable(true);
|
|
ui->menuCalibration->insertAction(ui->actionCalDisabled, menuAction);
|
|
}
|
|
|
|
auto calToolbarLambda = [=]() {
|
|
if(cbEnableCal->isChecked()) {
|
|
// Get requested calibration type from combobox
|
|
ApplyCalibration((Calibration::Type) cbType->itemData(cbType->currentIndex()).toInt());
|
|
} else {
|
|
DisableCalibration();
|
|
}
|
|
};
|
|
|
|
// Calibration connections
|
|
connect(cbEnableCal, &QCheckBox::stateChanged, calToolbarLambda);
|
|
connect(cbType, qOverload<int>(&QComboBox::currentIndexChanged), calToolbarLambda);
|
|
connect(this, &VNA::CalibrationDisabled, [=](){
|
|
cbType->blockSignals(true);
|
|
cbEnableCal->blockSignals(true);
|
|
ui->actionCalDisabled->setChecked(true);
|
|
cbEnableCal->setCheckState(Qt::CheckState::Unchecked);
|
|
cbType->blockSignals(false);
|
|
cbEnableCal->blockSignals(false);
|
|
});
|
|
connect(ui->actionCalDisabled, &QAction::triggered, this, &VNA::DisableCalibration);
|
|
connect(this, &VNA::CalibrationApplied, [=](Calibration::Type applied){
|
|
cbType->blockSignals(true);
|
|
cbEnableCal->blockSignals(true);
|
|
for(int i=0;i<cbType->count();i++) {
|
|
if(cbType->itemData(i).toInt() == (int) applied) {
|
|
cbType->setCurrentIndex(i);
|
|
break;
|
|
}
|
|
}
|
|
cbEnableCal->setCheckState(Qt::CheckState::Checked);
|
|
cbType->blockSignals(false);
|
|
cbEnableCal->blockSignals(false);
|
|
});
|
|
|
|
tb_cal->addWidget(cbType);
|
|
|
|
addToolBar(tb_cal);
|
|
modeSGen->addHiddenElement(tb_cal);
|
|
}
|
|
|
|
int VNA::UpdateDeviceList()
|
|
{
|
|
ui->menuConnect_to->clear();
|
|
auto devices = Device::GetDevices();
|
|
if(devices.size()) {
|
|
for(auto d : devices) {
|
|
auto connectAction = ui->menuConnect_to->addAction(d);
|
|
deviceActionGroup->addAction(connectAction);
|
|
connectAction->setCheckable(true);
|
|
if(device && d == device->serial()) {
|
|
connectAction->setChecked(true);
|
|
}
|
|
connect(connectAction, &QAction::triggered, [this, connectAction, d]() {
|
|
ConnectToDevice(d);
|
|
if(device) {
|
|
// connectAction might have been unchecked if it was a reconnect to the already connected device
|
|
connectAction->setChecked(true);
|
|
}
|
|
});
|
|
}
|
|
ui->menuConnect_to->setEnabled(true);
|
|
} else {
|
|
// no devices available, disable connection option
|
|
ui->menuConnect_to->setEnabled(false);
|
|
}
|
|
return devices.size();
|
|
}
|
|
|
|
void VNA::StartManualControl()
|
|
{
|
|
auto control = new ManualControlDialog(*device, this);
|
|
connect(control, &QDialog::finished, [this](){
|
|
SettingsChanged();
|
|
});
|
|
control->show();
|
|
}
|
|
|
|
void VNA::StartImpedanceMatching()
|
|
{
|
|
auto dialog = new ImpedanceMatchDialog(*markerModel);
|
|
dialog->show();
|
|
}
|
|
|
|
void VNA::SetStartFreq(double freq)
|
|
{
|
|
settings.f_start = freq;
|
|
if(settings.f_stop < freq) {
|
|
settings.f_stop = freq;
|
|
}
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SetStopFreq(double freq)
|
|
{
|
|
settings.f_stop = freq;
|
|
if(settings.f_start > freq) {
|
|
settings.f_start = freq;
|
|
}
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SetCenterFreq(double freq)
|
|
{
|
|
auto old_span = settings.f_stop - settings.f_start;
|
|
if (freq > old_span / 2) {
|
|
settings.f_start = freq - old_span / 2;
|
|
settings.f_stop = freq + old_span / 2;
|
|
} else {
|
|
settings.f_start = 0;
|
|
settings.f_stop = 2 * freq;
|
|
}
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SetSpan(double span)
|
|
{
|
|
auto old_center = (settings.f_start + settings.f_stop) / 2;
|
|
if(old_center > span / 2) {
|
|
settings.f_start = old_center - span / 2;
|
|
} else {
|
|
settings.f_start = 0;
|
|
}
|
|
settings.f_stop = old_center + span / 2;
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SetFullSpan()
|
|
{
|
|
settings.f_start = 0;
|
|
settings.f_stop = maxFreq;
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SpanZoomIn()
|
|
{
|
|
auto center = (settings.f_start + settings.f_stop) / 2;
|
|
auto old_span = settings.f_stop - settings.f_start;
|
|
settings.f_start = center - old_span / 4;
|
|
settings.f_stop = center + old_span / 4;
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SpanZoomOut()
|
|
{
|
|
auto center = (settings.f_start + settings.f_stop) / 2;
|
|
auto old_span = settings.f_stop - settings.f_start;
|
|
if(center > old_span) {
|
|
settings.f_start = center - old_span;
|
|
} else {
|
|
settings.f_start = 0;
|
|
}
|
|
settings.f_stop = center + old_span;
|
|
ConstrainAndUpdateFrequencies();
|
|
}
|
|
|
|
void VNA::SetSourceLevel(double level)
|
|
{
|
|
// TODO remove hardcoded limits
|
|
if(level > -10.0) {
|
|
level = -10.0;
|
|
} else if(level < -42.0) {
|
|
level = -42.0;
|
|
}
|
|
emit sourceLevelChanged(level);
|
|
settings.cdbm_excitation = level * 100;
|
|
SettingsChanged();
|
|
}
|
|
|
|
void VNA::SetPoints(unsigned int points)
|
|
{
|
|
// TODO remove hardcoded limits
|
|
if (points < 1) {
|
|
points = 1;
|
|
} else if(points > 4501) {
|
|
points = 4501;
|
|
}
|
|
emit pointsChanged(points);
|
|
settings.points = points;
|
|
SettingsChanged();
|
|
}
|
|
|
|
void VNA::SetIFBandwidth(double bandwidth)
|
|
{
|
|
settings.if_bandwidth = bandwidth;
|
|
emit IFBandwidthChanged(bandwidth);
|
|
SettingsChanged();
|
|
}
|
|
|
|
void VNA::SetAveraging(unsigned int averages)
|
|
{
|
|
this->averages = averages;
|
|
average.setAverages(averages);
|
|
emit averagingChanged(averages);
|
|
SettingsChanged();
|
|
}
|
|
|
|
void VNA::DisableCalibration(bool force)
|
|
{
|
|
if(calValid || force) {
|
|
calValid = false;
|
|
ui->actionImport_error_terms_as_traces->setEnabled(false);
|
|
emit CalibrationDisabled();
|
|
average.reset();
|
|
}
|
|
}
|
|
|
|
void VNA::ApplyCalibration(Calibration::Type type)
|
|
{
|
|
if(cal.calculationPossible(type)) {
|
|
try {
|
|
cal.constructErrorTerms(type);
|
|
calValid = true;
|
|
average.reset();
|
|
ui->actionImport_error_terms_as_traces->setEnabled(true);
|
|
emit CalibrationApplied(type);
|
|
} catch (runtime_error e) {
|
|
QMessageBox::critical(this, "Calibration failure", e.what());
|
|
DisableCalibration(true);
|
|
}
|
|
} else {
|
|
// Not all required traces available
|
|
// TODO start tracedata dialog with required traces
|
|
QMessageBox::information(this, "Missing calibration traces", "Not all calibration traces for this type of calibration have been measured. The calibration can be enabled after the missing traces have been acquired.");
|
|
DisableCalibration(true);
|
|
auto traceDialog = new CalibrationTraceDialog(&cal, type);
|
|
connect(traceDialog, &CalibrationTraceDialog::triggerMeasurement, this, &VNA::StartCalibrationMeasurement);
|
|
connect(traceDialog, &CalibrationTraceDialog::applyCalibration, this, &VNA::ApplyCalibration);
|
|
connect(this, &VNA::CalibrationMeasurementComplete, traceDialog, &CalibrationTraceDialog::measurementComplete);
|
|
traceDialog->show();
|
|
}
|
|
}
|
|
|
|
void VNA::StartCalibrationMeasurement(Calibration::Measurement m)
|
|
{
|
|
// Trigger sweep to start from beginning
|
|
SettingsChanged();
|
|
calMeasurement = m;
|
|
// Delete any already captured data of this measurement
|
|
cal.clearMeasurement(m);
|
|
calWaitFirst = true;
|
|
calMeasuring = true;
|
|
QString text = "Measuring \"";
|
|
text.append(Calibration::MeasurementToString(m));
|
|
text.append("\" parameters.");
|
|
calDialog.setRange(0, settings.points);
|
|
calDialog.setLabelText(text);
|
|
calDialog.setCancelButtonText("Abort");
|
|
calDialog.setWindowTitle("Taking calibration measurement...");
|
|
calDialog.setValue(0);
|
|
calDialog.setWindowModality(Qt::ApplicationModal);
|
|
// always show the dialog
|
|
calDialog.setMinimumDuration(0);
|
|
connect(&calDialog, &QProgressDialog::canceled, [=]() {
|
|
// the user aborted the calibration measurement
|
|
calMeasuring = false;
|
|
cal.clearMeasurement(calMeasurement);
|
|
});
|
|
}
|
|
|
|
void VNA::ConstrainAndUpdateFrequencies()
|
|
{
|
|
if(settings.f_stop > maxFreq) {
|
|
settings.f_stop = maxFreq;
|
|
}
|
|
if(settings.f_start > settings.f_stop) {
|
|
settings.f_start = settings.f_stop;
|
|
}
|
|
emit startFreqChanged(settings.f_start);
|
|
emit stopFreqChanged(settings.f_stop);
|
|
emit spanChanged(settings.f_stop - settings.f_start);
|
|
emit centerFreqChanged((settings.f_stop + settings.f_start)/2);
|
|
SettingsChanged();
|
|
}
|
|
|
|
void VNA::LoadSweepSettings()
|
|
{
|
|
QSettings s;
|
|
settings.f_start = s.value("SweepStart", pref.Startup.DefaultSweep.start).toULongLong();
|
|
settings.f_stop = s.value("SweepStop", pref.Startup.DefaultSweep.stop).toULongLong();
|
|
ConstrainAndUpdateFrequencies();
|
|
SetIFBandwidth(s.value("SweepBandwidth", pref.Startup.DefaultSweep.bandwidth).toUInt());
|
|
SetPoints(s.value("SweepPoints", pref.Startup.DefaultSweep.points).toInt());
|
|
SetSourceLevel(s.value("SweepLevel", pref.Startup.DefaultSweep.excitation).toDouble());
|
|
}
|
|
|
|
void VNA::StoreSweepSettings()
|
|
{
|
|
QSettings s;
|
|
s.setValue("SweepStart", static_cast<unsigned long long>(settings.f_start));
|
|
s.setValue("SweepStop", static_cast<unsigned long long>(settings.f_stop));
|
|
s.setValue("SweepBandwidth", settings.if_bandwidth);
|
|
s.setValue("SweepPoints", settings.points);
|
|
s.setValue("SweepLevel", (double) settings.cdbm_excitation / 100.0);
|
|
}
|
|
|
|
VNA::GUIMode* VNA::GUIMode::activeMode = nullptr;
|
|
QWidget* VNA::GUIMode::cornerWidget = nullptr;
|
|
QButtonGroup* VNA::GUIMode::modeButtonGroup = nullptr;
|
|
|
|
VNA::GUIMode::GUIMode(VNA *vna, QString name, QWidget *centralWidget)
|
|
: vna(vna),
|
|
name(name),
|
|
central(centralWidget)
|
|
{
|
|
vna->central->addWidget(central);
|
|
// Create mode switch button
|
|
auto modeSwitch = new QPushButton(name);
|
|
modeSwitch->setCheckable(true);
|
|
modeSwitch->setMaximumHeight(vna->ui->menubar->height());
|
|
if(!cornerWidget) {
|
|
// this is the first created mode, initialize corner widget and set this mode as active
|
|
modeSwitch->setChecked(true);
|
|
cornerWidget = new QWidget;
|
|
cornerWidget->setLayout(new QHBoxLayout);
|
|
cornerWidget->layout()->setSpacing(0);
|
|
cornerWidget->layout()->setMargin(0);
|
|
cornerWidget->layout()->setContentsMargins(0,0,0,0);
|
|
vna->menuBar()->setCornerWidget(cornerWidget);
|
|
modeButtonGroup = new QButtonGroup;
|
|
vna->ui->menubar->setMaximumHeight(vna->ui->menubar->height());
|
|
}
|
|
cornerWidget->layout()->addWidget(modeSwitch);
|
|
modeButtonGroup->addButton(modeSwitch);
|
|
|
|
connect(modeSwitch, &QPushButton::clicked, [=](){
|
|
activate();
|
|
});
|
|
}
|
|
|
|
void VNA::GUIMode::activate()
|
|
{
|
|
if(activeMode == this) {
|
|
// already active;
|
|
return;
|
|
} else if(activeMode) {
|
|
activeMode->deactivate();
|
|
}
|
|
QSettings settings;
|
|
// hide menu actions that are not applicable to this mode
|
|
for(auto a : hiddenActions) {
|
|
a->setVisible(false);
|
|
}
|
|
|
|
vna->central->setCurrentWidget(central);
|
|
|
|
// restore dock and toolbar positions
|
|
// vna->restoreGeometry(settings.value("geometry_"+name).toByteArray());
|
|
vna->restoreState(settings.value("windowState_"+name).toByteArray());
|
|
|
|
// restore visibility of toolbars and docks
|
|
vna->ui->menuDocks->clear();
|
|
for(auto d : vna->findChildren<QDockWidget*>()) {
|
|
if(hiddenDocks.count(d)) {
|
|
// this dock is not applicable for the current state, hide and don't add menu entry
|
|
d->hide();
|
|
continue;
|
|
}
|
|
vna->ui->menuDocks->addAction(d->toggleViewAction());
|
|
bool hidden = settings.value("dock_"+name+"_"+d->windowTitle(), d->isHidden()).toBool();
|
|
if(hidden) {
|
|
d->hide();
|
|
} else {
|
|
d->show();
|
|
}
|
|
}
|
|
vna->ui->menuToolbars->clear();
|
|
for(auto t : vna->findChildren<QToolBar*>()) {
|
|
if(hiddenToolbars.count(t)) {
|
|
// this toolbar is not applicable for the current state, hide and don't add menu entry
|
|
t->hide();
|
|
continue;
|
|
}
|
|
vna->ui->menuToolbars->addAction(t->toggleViewAction());
|
|
bool hidden = settings.value("toolbar_"+name+"_"+t->windowTitle(), t->isHidden()).toBool();
|
|
if(hidden) {
|
|
t->hide();
|
|
} else {
|
|
t->show();
|
|
}
|
|
}
|
|
|
|
activeMode = this;
|
|
}
|
|
|
|
void VNA::GUIMode::deactivate()
|
|
{
|
|
QSettings settings;
|
|
// save dock/toolbar visibility
|
|
for(auto d : vna->findChildren<QDockWidget*>()) {
|
|
settings.setValue("dock_"+name+"_"+d->windowTitle(), d->isHidden());
|
|
}
|
|
for(auto t : vna->findChildren<QToolBar*>()) {
|
|
settings.setValue("toolbar_"+name+"_"+t->windowTitle(), t->isHidden());
|
|
}
|
|
// settings.setValue("geometry_"+name, vna->saveGeometry());
|
|
settings.setValue("windowState_"+name, vna->saveState());
|
|
|
|
// restore hidden items
|
|
for(auto a : hiddenActions) {
|
|
a->setVisible(true);
|
|
}
|
|
|
|
activeMode = nullptr;
|
|
}
|
|
|
|
VNA::GUIMode *VNA::GUIMode::getActiveMode()
|
|
{
|
|
return activeMode;
|
|
}
|
|
|
|
QString VNA::GUIMode::getName() const
|
|
{
|
|
return name;
|
|
}
|