URANOS/mainwindow.h

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C
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2022-05-22 20:49:01 +02:00
#ifndef MAINWINDOW_H
#define MAINWINDOW_H
#include <QMainWindow>
#include <QMouseEvent>
#include "qcustomplot.h"
#include "Toolkit.h"
#include "TRandom3.h"
#include <string>
#include <vector>
#include "time.h"
#include "TLegend.h"
#include "dialogshowpic.h"
#include "visualizationenlarge.h"
//extern QVector<double> x(101), y(101);
namespace Ui {
class MainWindow;
}
class MainWindow : public QMainWindow
{
Q_OBJECT
QMessageBox* msgBox;
public:
explicit MainWindow(QWidget *parent = 0);
~MainWindow();
void setupImport();
void setupGraph(int index);
void setupRunSpectraGraph(QCustomPlot *customPlot);
void setupRunBirdsEyeViewGraph(QCustomPlot *customPlot);
void setupRunHorizSliceXGraph(QCustomPlot *customPlot);
void setupRunNpassDetGraph(QCustomPlot *customPlot);
void setupRunDepOfIntGraph(QCustomPlot *customPlot);
void setupRunNpassDetLyrGraph(QCustomPlot *customPlot);
void setupRunRelIntVsEGraph(QCustomPlot *customPlot);
void setupRunOrginOfNGraph(QCustomPlot *customPlot);
void setupRangeFunction(QCustomPlot *customPlot);
void setupLiveTHs();
void setupTable(QTableView* table);
void redrawEnlargedView();
void redrawNeutronMap(double difftime);
void buttonClickFunction();
void activateThermal();
void disabledGUIRun(string pathtoConfigFile);
void activateSkyEvaporation();
void activateThermalSkyEvaporation();
void activateDetectorBatchRun();
void activateBatchRun();
void activateParameterBatchRun(int parMin, int parMax);
void beSilent();
void setGeometry();
void setStatus(int numberLabel, string msg);
void setupGeometry();
void exportToSave();
//static TMatrixF readMatrixPNG(TString folder, TString filename);
static TMatrixF getTMatrix(int i);
//bool cosmicNSimulator(MainWindow* uiM);
void redrawTopView();
void redrawSideView();
void formatPlotToColor(QCustomPlot *customPlot);
void replotFootprint();
void formatForVectorGraphics();
void checkInputPics();
TSpline3* getSplinedDetectorEnergyModelFromFile(TString dname);
bool loadParamData(string fileFolder);
bool isFinished() const { return isFinishedVar; }
private slots:
void on_pushButton_clicked();
void on_pushButton_2_clicked();
void on_spinBox_2_valueChanged(int arg1);
void on_pushButton_Simulate_clicked();
void on_pushButton_stop_clicked();
void on_checkBoxR_stateChanged(int arg1);
void on_checkBoxD_stateChanged(int arg1);
void on_sliderSoilMoisture_sliderMoved(int position);
void on_sliderAirHum_sliderMoved(int position);
void on_lineEditNeutrinsTotal_textChanged(const QString &arg1);
void on_sliderAtm1_sliderMoved(int position);
void on_sliderRigidity_sliderMoved(int position);
void on_lineEditSquareDim_textChanged(const QString &arg1);
void on_lineEditRefresh_textChanged(const QString &arg1);
//void on_pushButtonClear_clicked();
void on_pushButton_Clear_clicked();
void on_pushButton_Pause_clicked();
void on_lineEditDetRad_textChanged(const QString &arg1);
void on_lineEditDetX_textChanged(const QString &arg1);
void on_lineEditDety_textChanged(const QString &arg1);
void on_beamRound_clicked();
void on_beamSquare_clicked();
void on_radioRiver_clicked();
void on_radioCoast_clicked();
void on_radioIsland_clicked();
void on_radioLake_clicked();
void on_lineEditBeamRad_textChanged(const QString &arg1);
void on_radioRiver_toggled(bool checked);
void on_radioButton_clicked();
void on_lineEditTHLhigh_textChanged(const QString &arg1);
void on_lineEditTHLlow_textChanged(const QString &arg1);
void on_checkBoxRS_clicked();
void on_lineEdit_River_textChanged(const QString &arg1);
void on_lineEdit_River_2_textChanged(const QString &arg1);
void on_lineEdit_Island_textChanged(const QString &arg1);
void on_lineEdit_Lake_selectionChanged();
void on_lineEdit_Lake_textChanged(const QString &arg1);
void on_checkBoxFileOutput_clicked();
//void on_radioButton_2_clicked();
void on_radioButton_map_clicked();
void on_radioButton_mapInter_clicked();
void on_radioButton_mapFast_clicked();
void on_radioButton_mapAlbedo_clicked();
void on_lineEdit_InputSpectrumFolder_editingFinished();
void on_lineEdit_CrosssectionFolder_editingFinished();
void on_lineEdit_OutputFolder_editingFinished();
void on_pushButton_about_clicked();
void on_checkBoxTransparent_clicked();
void on_checkBoxBasicSpectrum_clicked();
void on_pushButton_AddLayer_clicked();
void setIntType1();
void setIntType2();
void setIntType3();
bool eventFilter(QObject *target, QEvent *event);
void setFocus(const QModelIndex &idx);
QPushButton* typebutton(QModelIndex idx);
void on_pushButton_RemoveLayer_clicked();
void on_pushButton_ReadGeometry_clicked();
void on_pushButton_SaveGeometry_clicked();
void on_spinBox_StartingLayer_valueChanged(const QString &arg1);
void on_spinBox_StartingLayer_valueChanged(int arg1);
void on_spinBox_DetectorLayer_valueChanged(int arg1);
void on_spinBox_GroundLayer_valueChanged(int arg1);
void on_pushButton_LoadGeometry_clicked();
void on_lineEdit_WorkFolder_editingFinished();
void on_pushButton_6_clicked();
void on_radioButton_fission_clicked();
void on_radioButton_fusion_clicked();
void on_checkBox_useImage_clicked();
void on_pushButton_Show_clicked();
void on_horizontalSliderColor_sliderMoved(int position);
void on_horizontalSliderColorZero_sliderMoved(int position);
void on_radioButton_NeutronNight_clicked();
void on_radioButton_NeutronCold_clicked();
void on_radioButton_NeutronPolar_clicked();
void on_radioButton_NeutronRainbow_clicked();
void on_horizontalSliderFPMoist_sliderMoved(int position);
void on_horizontalSliderFPHum_sliderMoved(int position);
void on_checkBoxFPLog_clicked();
void on_horizontalSliderFPHum_2_sliderMoved(int position);
void on_pushButton_ActivateFP_clicked();
void on_lineEditScotoma_editingFinished();
void on_checkBoxGradient2_clicked();
void on_checkBoxSelectedData_clicked();
void on_checkBoxFastData_clicked();
void on_checkBoxIntermediateData_clicked();
void on_checkBoxEpithermalData_clicked();
//void on_lineEdit_Porosity_textChanged(const QString &arg1);
void on_sliderSoilPorosity_sliderMoved(int position);
void on_checkBoxFileOutputPDF_2_clicked(bool checked);
void on_checkBoxCreateFolder_clicked(bool checked);
void on_radioButton_AmBe_clicked();
void on_lineEdit_xPos_textChanged(const QString &arg1);
void on_lineEdit_yPos_textChanged(const QString &arg1);
void on_lineEdit_zPos_textChanged(const QString &arg1);
void on_lineEdit_zPos_2_textChanged(const QString &arg1);
void on_checkBoxThermal_toggled(bool checked);
void on_radioButton_mapTrack_clicked();
void on_lineEditManualColorZero_textChanged(const QString &arg1);
void on_lineEditManualColor_textChanged(const QString &arg1);
void on_radioButton_mapTrackInter_clicked();
void on_radioButton_mapTrackFast_clicked();
void on_radioButton_mapTrackAlbedo_clicked();
void on_checkBoxNoTrack_toggled(bool checked);
void on_radioButton_mapThermal_clicked();
void on_radioButton_mapTrackThermal_clicked();
void on_checkBoxThermalData_clicked();
void on_checkBoxSaveEvery_toggled(bool checked);
void on_radioButton_NoSource_clicked();
void on_lineEdit_xSize_textChanged(const QString &arg1);
void on_lineEdit_ySize_textChanged(const QString &arg1);
void on_radioButton_ThermalSource_clicked();
void on_radioButton_MonoenergeticSource_clicked();
void on_lineEdit_SourceEnergy_textChanged(const QString &arg1);
void on_lineEditScotoma_2_textChanged(const QString &arg1);
void on_checkBox_clicked();
void on_checkBox_NoMultipleScattering_toggled(bool checked);
void on_checkBoxManual_toggled(bool checked);
void on_checkBox_TrackAllLayers_toggled(bool checked);
void on_checkBoxLogarithmic_toggled(bool checked);
void on_radioButton_NeutronGrayScale_clicked();
void on_radioButton_NeutronHot_clicked();
void on_radioButton_NeutronThermal_clicked();
void on_radioButton_ModeratedCf_clicked();
void on_radioButton_Cylinder_toggled(bool checked);
void on_radioButton_Sphere_toggled(bool checked);
void on_radioButton_detectorLayerEnergyBand_toggled(bool checked);
void on_radioButton_detectorLayerRealistic_toggled(bool checked);
void on_radioButton_detectorEnergyBand_toggled(bool checked);
void on_radioButton_detectorRealistic_toggled(bool checked);
void on_checkBox_VolumeSource_toggled(bool checked);
void on_checkBox_HEModel_toggled(bool checked);
void on_checkBox_activateThermal_toggled(bool checked);
void on_horizontalSliderDetector_sliderMoved(int position);
void on_horizontalSliderDetectorColor_sliderMoved(int position);
void exportSettings(string str);
bool importSettings();
void on_pushButton_Enlarge_clicked();
void on_lineEditAntiScotoma_editingFinished();
void on_checkBoxSaveEvery_2_clicked(bool checked);
void on_lineEditClearEveryXNeutrons_editingFinished();
void on_lineEditClearEveryXNeutrons_textChanged(const QString &arg1);
void on_lineEdit_AutoUpdate_textChanged(const QString &arg1);
void on_checkBoxAutoRefreshRate_toggled(bool checked);
void on_checkBoxClearEveryDisplayRefresh_toggled(bool checked);
void on_checkBoxClearEveryDisplayRefresh_clicked(bool checked);
void on_checkBoxWarnMAterial_toggled(bool checked);
void on_radioButton_mapTrackEnergy_clicked();
void on_checkBoxTrackingData_clicked(bool checked);
void on_checkBoxHighResTrackingData_clicked(bool checked);
void on_radioButton_ySheet_clicked();
void on_radioButton_xSheet_clicked();
void on_lineEditDetLength_textChanged(const QString &arg1);
void on_lineEdit_zSize_textChanged(const QString &arg1);
void on_radioButton_TopToBottom_toggled(bool checked);
void on_radioButton_BottomToTop_toggled(bool checked);
void on_radioButton_LeftToRight_toggled(bool checked);
void on_radioButton_RightToLeft_toggled(bool checked);
void on_radioButton_Omni_toggled(bool checked);
void on_checkBox_DomainCutoff_toggled(bool checked);
void on_lineEditDomainFactor_textChanged(const QString &arg1);
void on_checkBox_DomainCutoffMeters_toggled(bool checked);
void on_lineEditDomainMeters_textChanged(const QString &arg1);
void on_checkBoxFileOutput2_toggled(bool checked);
void on_checkBoxExportAllTracks_toggled(bool checked);
void on_checkBox_ReflectiveBoundaries_toggled(bool checked);
void on_checkBox_PeriodicBoundaries_toggled(bool checked);
void on_lineEdit_DetectorFile_editingFinished();
void on_lineEdit_DetectorFile_textChanged(const QString &arg1);
void on_checkBoxFileOutput_toggled(bool checked);
void on_checkBoxFileOutput3_toggled(bool checked);
void on_pushButton_SaveConfig_clicked();
private:
Ui::MainWindow *ui;
Ui::DialogShowPic *dialogshowpic;
bool isFinishedVar;
//Ui::VisualizationEnlarge *visualizationEnlarge;
};
bool cosmicNSimulator(MainWindow *ui);
double rangeFunctionCombined(double* x, double *par);
void delay( int millisecondsToWait );
void deleteStatsTH(TH1 *allTHs);
void logYaxis(TH2* h);
void logXaxis(TH2* h);
void logaxis(TH1* h);
void rebinX(TH1* h) ;
double getWWProb(double density, double atWeight, double cs, double lambda);
double getLfromE(double energy);
double getEfromL(double lambda);
void printTF1(TF1* function, TString outputFolder, TString filename);
bool checkDetectorHit(double x, double y, double z, double deltaZ, double phi, double theta);
double getEvaporationEnergy(double theta, TRandom * r);
double getFissionEnergy(TRandom * r);
vector<float> getThermalPDF(const double nEnergy, const float massElm, const float temperature, TRandom * r);
double getThermalEnergy(TF1 *spectrumFunc, TRandom * r);
double getDistanceToPoint(double stVx, double stVy, double stVz, double theta, double phi, double px, double py, double pz);
Double_t legendrian(double* x, Double_t* par);
Double_t legendrian10fold(double* x, Double_t* par);
string legendrian10folded(Float_t* par);
static int ArraySize(double array[]);
//double legendrianNfold(double* x, Double_t* par);
TMatrixF readSigmaEnergy(TString folder, TString filename);
void modifyCSmatrix(TMatrixF* sigmaMatrix, float factorLowE, float factorHighE);
float endfNumberConv(string str);
vector<TMatrixF> readAngularTabulatedCoefficients(TString folder, TString filename, const int coefficients);
TMatrixF readAngularCoefficients(TString folder, TString filename);
float getIndexHorizontalPosition(const TMatrixF& matrix, int line, double value, bool doLogSearch);
float getIndexPosition(const TMatrixF& matrix, double value, bool doLogSearch);
double calcMeanCS(const TMatrixF& matrix, double energy);
double getHighEnergyCosTheta(const TMatrixF& angleMatrix, const TMatrixF& cumulatedProbMatrix, double energy, double prob);
double getAngleFromCumulativeFunction(const TF1* spectrumFunc, float min, float max, TRandom* r);
TF1* calcMeanAngularDistribution(const TMatrixF& matrix, double energy);
void turnInputMatrix(TMatrixF& inputMatrix);
int changeInputMatrixValue(int value);
void generateNormalizedSpectrum(TH1F* precalculatedSpectrum, int entries, TString file1);
void dataDelete(QVector<double>* vec);
#endif // MAINWINDOW_H