HITDAQ/hit2023v2/dialogtiscan.cpp~RF5aa2696.TMP
2024-02-01 18:45:41 +01:00

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#include "dialogtiscan.h"
#include "ui_dialogtiscan.h"
#define RUNNING 1
#define STOPPED 0
#define STOP_ISSUED -1
DialogTiScan::DialogTiScan(QWidget *parent) :
QDialog(parent),
ui(new Ui::DialogTiScan)
{
ui->setupUi(this);
runState = STOPPED;
}
DialogTiScan::~DialogTiScan()
{
delete ui;
}
void DialogTiScan::showEvent(QShowEvent * event)
{
if (!event->spontaneous())
{
if (!theKeithley->isOpen)
ui->checkUseLED->setEnabled(false);
}
QDialog::showEvent(event);
}
//************** Processing ***************
void DialogTiScan::run()
{
runState = RUNNING;
qInfo("Starting integration time scan...");
//Prepare measurement
ui->plotResultsMean->clearGraphs();
ui->plotResultsStd->clearGraphs();
results.clear();
int nr_devices = theHW->devices.length();
int use_led = ui->checkUseLED->isChecked();
double ledv = ui->doubleSpinLEDV->value();
int decimation = ui->spinPLotDecimation->value();
int nacqs = ui->spinAcquisitions->value();
int tstart = ui->spintStart->value();
int tend = ui->spinTEnd->value();
int tinc = ui->spinTIncrement->value();
int tcurrent = tstart;
//Plot data
QVector<double> xdata;
QList<QVector<double>> ymeandata;
QList<QVector<double>> ystddata;
for (int ch = 0; ch < (nr_devices*128); ch+= decimation)
{
ymeandata.append(xdata); //just add empty vectors to the list
ystddata.append(xdata); //just add empty vectors to the list
}
//The number of plotted lines is smaller than number of channels - see decimation
for (int plotnr = 0; plotnr < nr_devices*128; plotnr++)
{
ui->plotResultsMean->addGraph();
ui->plotResultsStd->addGraph();
}
double xmin = 1e+10;
double xmax = -1e+10;
double ymeanmin = 1e+10;
double ymeanmax = -1e+10;
double ystdmin = 1e+10;
double ystdmax = -1e+10;
if (use_led)
{
theKeithley->setVoltage(ledv);
theKeithley->on(1);
}
theHW->run();
//Measure!
while ((runState != STOP_ISSUED) && (tcurrent <= tend))
{
//Set LED voltage
qInfo(qPrintable(QString("Integration time: %1 ").arg(tcurrent)));
//set up integration time for all devices
theHW->stop();
for (int dev_nr = 0; dev_nr < theHW->devices.length(); dev_nr++)
{
DeviceConfig dc = theHW->devices[dev_nr]->deviceConfig;
dc.tint = tcurrent;
theHW->devices[dev_nr]->configure(dc);
}
theHW->run();
TiScanResult result;
//Collect sensor data
histoReady = 0;
connect(&(theHW->eventBuilder), EventBuilder::sigHistoCompleted, this, DialogTiScan::onHistogramCompleted);
theHW->eventBuilder.startTakingHistos(nacqs);
while (!histoReady)
{
QCoreApplication::processEvents();
QThread::msleep(10);
}
disconnect(&(theHW->eventBuilder), EventBuilder::sigHistoCompleted, this, DialogTiScan::onHistogramCompleted);
QVector<Histogram> histos = theHW->eventBuilder.getHistos();
result.mean.fill(0, nr_devices*128);
result.std.fill(0, nr_devices*128);
for (int i = 0; i < result.mean.length(); i++)
{
histos[i].MS(&(result.mean[i]), &(result.std[i]));
//result.mean[i] = histos[i].mean();
//result.std[i] = histos[i].stdev();
}
//Add information on integration time
result.tint = tcurrent;
results.append(result);
//Plot data...
xdata.append(result.tint);
if (result.tint > xmax)
xmax = result.tint;
if (result.tint < xmin)
xmin = result.tint;
for (int ch = 0, i = 0; ch < (nr_devices*128); ch+= decimation, i++)
{
ymeandata[i].append(result.mean[ch]);
if (result.mean[ch] > ymeanmax)
ymeanmax = result.mean[ch];
if (result.mean[ch] < ymeanmin)
ymeanmin = result.mean[ch];
ystddata[i].append(result.std[ch]);
if (result.std[ch] > ystdmax)
ystdmax = result.std[ch];
if (result.std[ch] < ystdmin)
ystdmin = result.std[ch];
}
ui->plotResultsMean->xAxis->setRange(xmin, xmax);
ui->plotResultsMean->yAxis->setRange(ymeanmin, ymeanmax);
ui->plotResultsStd->xAxis->setRange(xmin, xmax);
ui->plotResultsStd->yAxis->setRange(ystdmin, ystdmax);
for (int ch = 0, i = 0; ch < (nr_devices*128); ch+= decimation, i++)
{
ui->plotResultsMean->graph(i)->setData(xdata, ymeandata[i]);
ui->plotResultsStd->graph(i)->setData(xdata, ystddata[i]);
}
ui->plotResultsMean->replot();
ui->plotResultsStd->replot();
//Roll over
tcurrent += tinc;
QCoreApplication::processEvents();
}
if (use_led)
theKeithley->on(0);
theHW->stop();
qInfo("Integration time scan finished!");
runState = STOPPED;
}
//************** Slots ****************
void DialogTiScan::onHistogramCompleted()
{
histoReady = 1;
}
void DialogTiScan::on_pushRun_pressed()
{
if (runState)
{
runState = STOP_ISSUED;
}
else
{
ui->pushRun->setText("Stop");
ui->pushSave->setEnabled(false);
run();
ui->pushRun->setText("Run");
ui->pushSave->setEnabled(true);
}
}
void DialogTiScan::on_pushSave_pressed()
{
QString filename = QFileDialog::getSaveFileName(this, "Select file for saving data", "", tr("Comma separated files (*.csv)"));
QString delimiter = QString(",");
if (filename.length() == 0)
return;
QFile file(filename);
if (!file.open(QIODevice::WriteOnly | QIODevice::Text))
return;
QTextStream out(&file);
out << qSetFieldWidth(14) << qSetRealNumberPrecision(8);
for (int row = 0; row < results.length(); row++)
{
out << results[row].tint;
for (int col = 0; (col < results[row].mean.length()) && (col < results[row].std.length()); col++)
out << delimiter << results[row].mean[col] << delimiter << results[row].std[col];
out << QString("\n");
}
file.close();
}