2013-03-03 22:24:41 +01:00
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// AnalysisParamsWidget class implementation
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//
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// The ATS analysis parameters widget
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//
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// QATSH Copyright 2009 Jean-Philippe MEURET <jpmeuret@free.fr>
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2013-04-20 18:33:09 +02:00
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#include <QPushButton>
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#include <QDoubleValidator>
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2013-03-03 22:24:41 +01:00
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#include "AnalysisParamsWidget.h"
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#include "ui_AnalysisParamsWidget.h"
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#include "StandardAnalysis.h"
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AnalysisParamsWidget::AnalysisParamsWidget(QWidget *parent)
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: QWidget(parent), _pui(new Ui::AnalysisParamsWidget)
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{
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_pui->setupUi(this);
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// Initialize analysis array and dialog controlms for each analysis type
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for (int eAnaType = eStandard; eAnaType < eTypeNumber; eAnaType++)
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{
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_pAnalyses[eAnaType] = 0;
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restoreDefaults((EAnalysisType)eAnaType);
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}
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// Connect analysis type combo-box to the stacked widget switcher
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connect(_pui->qcbAnalysisType, SIGNAL(currentIndexChanged(int)),
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this, SLOT(onAnalysisTypeChanged(int)));
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}
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AnalysisParamsWidget::~AnalysisParamsWidget()
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{
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delete _pui;
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for (int eAnaType = eStandard; eAnaType < eTypeNumber; eAnaType++)
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if (_pAnalyses[eAnaType])
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delete _pAnalyses[eAnaType];
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}
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void AnalysisParamsWidget::changeEvent(QEvent *pqEvent)
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{
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QWidget::changeEvent(pqEvent);
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switch (pqEvent->type()) {
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case QEvent::LanguageChange:
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_pui->retranslateUi(this);
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break;
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default:
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break;
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}
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}
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void AnalysisParamsWidget::onAnalysisTypeChanged(int eAnaType)
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{
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_pui->qswAnalyses->setCurrentIndex(eAnaType);
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}
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void AnalysisParamsWidget::onRestoreDefaults()
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{
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const EAnalysisType eAnaType = (EAnalysisType)_pui->qswAnalyses->currentIndex();
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restoreDefaults(eAnaType);
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}
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//====================================================================================
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void AnalysisParamsWidget::restoreDefaults(AnalysisParamsWidget::EAnalysisType eAnaType)
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{
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switch(eAnaType)
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{
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case eStandard:
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{
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StandardAnalysis ana; // A standard analysis with default parameters.
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_pui->qsbStdStartTime->setValue(ana.startTime());
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_pui->qsbStdStartTime->setValue(ana.startTime());
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_pui->qsbStdDuration->setValue(ana.duration());
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_pui->qsbStdMinFreq->setValue(ana.minFreq());
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_pui->qsbStdMaxFreq->setValue(ana.maxFreq());
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_pui->qsbStdMaxFreqDeviation->setValue(ana.maxFreqDeviation());
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_pui->qsbStdAmpThreshold->setValue(ana.ampThreshold());
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_pui->qcbStdFFTWinType->setCurrentIndex(ana.FFTWinType());
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_pui->qsbStdFFTWinMinFreqCycles->setValue(ana.FFTWinMinFreqCycles());
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_pui->qsbStdFFTWinOverlap->setValue(ana.FFTWinOverlap());
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_pui->qsbStdTrackWinLen->setValue(ana.trackWinLen());
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_pui->qsbStdMinTrackLen->setValue(ana.minTrackLen());
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_pui->qsbStdMinTrackAvgSMR->setValue(ana.minTrackAverageSMR());
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_pui->qsbStdMaxFixedGapsLen->setValue(ana.maxFixedGapsLen());
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_pui->qsbStdMinFixedGapsSMR->setValue(ana.minFixedGapsSMR());
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_pui->qsbStdLastPeakWeight->setValue(ana.lastPeakWeight());
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_pui->qsbStdSMRFreqWeight->setValue(ana.SMRFreqWeight());
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//_pui->qcbStdTargetSoundType->setCurrentIndex((int)ana.targetSoundType);
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break;
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}
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// N/A.
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case eTypeNumber:
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break;
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}
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}
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void AnalysisParamsWidget::reset(const IATSAnalysis* pAnaParams)
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{
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if (pAnaParams->isOfType(StandardAnalysis::typeName()))
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{
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const StandardAnalysis* pAna = static_cast<const StandardAnalysis*>(pAnaParams);
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_pui->qsbStdStartTime->setValue(pAna->startTime());
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_pui->qsbStdStartTime->setValue(pAna->startTime());
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_pui->qsbStdDuration->setValue(pAna->duration());
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_pui->qsbStdMinFreq->setValue(pAna->minFreq());
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_pui->qsbStdMaxFreq->setValue(pAna->maxFreq());
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_pui->qsbStdMaxFreqDeviation->setValue(pAna->maxFreqDeviation());
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_pui->qsbStdAmpThreshold->setValue(pAna->ampThreshold());
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_pui->qcbStdFFTWinType->setCurrentIndex(pAna->FFTWinType());
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_pui->qsbStdFFTWinMinFreqCycles->setValue(pAna->FFTWinMinFreqCycles());
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_pui->qsbStdFFTWinOverlap->setValue(pAna->FFTWinOverlap());
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_pui->qsbStdTrackWinLen->setValue(pAna->trackWinLen());
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_pui->qsbStdMinTrackLen->setValue(pAna->minTrackLen());
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_pui->qsbStdMinTrackAvgSMR->setValue(pAna->minTrackAverageSMR());
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_pui->qsbStdMaxFixedGapsLen->setValue(pAna->maxFixedGapsLen());
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_pui->qsbStdMinFixedGapsSMR->setValue(pAna->minFixedGapsSMR());
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_pui->qsbStdLastPeakWeight->setValue(pAna->lastPeakWeight());
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_pui->qsbStdSMRFreqWeight->setValue(pAna->SMRFreqWeight());
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//_pui->qcbStdTargetSoundType->setCurrentIndex((int)pAna->targetSoundType);
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}
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}
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void AnalysisParamsWidget::setupAnalysisParams()
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{
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const EAnalysisType eAnaType = (EAnalysisType)_pui->qswAnalyses->currentIndex();
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switch(eAnaType)
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{
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case eStandard:
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{
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if (!_pAnalyses[eAnaType])
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_pAnalyses[eAnaType] = new StandardAnalysis();
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StandardAnalysis* pAna = static_cast<StandardAnalysis*>(_pAnalyses[eAnaType]);
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pAna->setStartTime(_pui->qsbStdStartTime->value());
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pAna->setDuration(_pui->qsbStdDuration->value());
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pAna->setMinFreq(_pui->qsbStdMinFreq->value());
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pAna->setMaxFreq(_pui->qsbStdMaxFreq->value());
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pAna->setMaxFreqDeviation(_pui->qsbStdMaxFreqDeviation->value());
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pAna->setAmpThreshold(_pui->qsbStdAmpThreshold->value());
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pAna->setFFTWinType(_pui->qcbStdFFTWinType->currentIndex());
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pAna->setFFTWinMinFreqCycles(_pui->qsbStdFFTWinMinFreqCycles->value());
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pAna->setFFTWinOverlap(_pui->qsbStdFFTWinOverlap->value());
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pAna->setTrackWinLen(_pui->qsbStdTrackWinLen->value());
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pAna->setMinTrackLen(_pui->qsbStdMinTrackLen->value());
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pAna->setMinTrackAverageSMR(_pui->qsbStdMinTrackAvgSMR->value());
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pAna->setMaxFixedGapsLen(_pui->qsbStdMaxFixedGapsLen->value());
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pAna->setMinFixedGapsSMR(_pui->qsbStdMinFixedGapsSMR->value());
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pAna->setLastPeakWeight(_pui->qsbStdLastPeakWeight->value());
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pAna->setSMRFreqWeight(_pui->qsbStdSMRFreqWeight->value());
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// pAna->setTargetSoundType
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// ((ATSSound::ESoundTypeId)_pui->qcbStdTargetSoundType->currentIndex());
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break;
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}
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// N/A.
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case eTypeNumber:
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break;
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}
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}
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IATSAnalysis* AnalysisParamsWidget::analysisParams()
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{
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const EAnalysisType eAnaType = (EAnalysisType)_pui->qswAnalyses->currentIndex();
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return _pAnalyses[eAnaType];
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}
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