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geant4/examples/extended/electromagnetic/TestEm3/include/RunAction.hh
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2016-06-10 11:51:14 +02:00

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//
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/// \file electromagnetic/TestEm3/include/RunAction.hh
/// \brief Definition of the RunAction class
//
// $Id: RunAction.hh 66241 2012-12-13 18:34:42Z gunter $
//
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#ifndef RunAction_h
#define RunAction_h 1
#include "DetectorConstruction.hh"
#include "G4UserRunAction.hh"
#include "G4ThreeVector.hh"
#include "globals.hh"
#include <vector>
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class PrimaryGeneratorAction;
class RunActionMessenger;
class HistoManager;
class G4Track;
class G4Run;
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class RunAction : public G4UserRunAction
{
public:
RunAction(DetectorConstruction*, PrimaryGeneratorAction*);
~RunAction();
virtual void BeginOfRunAction(const G4Run*);
virtual void EndOfRunAction(const G4Run*);
void FillPerEvent(G4int,G4double,G4double);
void SumEnergyFlow(G4int plane, G4double Eflow)
{fEnergyFlow[plane] += Eflow;};
void SumLateralEleak(G4int cell, G4double Eflow)
{fLateralEleak[cell] += Eflow;};
void AddChargedStep() { fChargedStep += 1.0; }
void AddNeutralStep() { fNeutralStep += 1.0; }
void PrintDedxTables();
void AddSecondaryTrack(const G4Track*);
// Acceptance parameters
void SetEdepAndRMS(G4int, G4double, G4double, G4double);
G4double GetAverageEdep(G4int i) const {return fEdeptrue[i];};
G4double GetRMSEdep(G4int i) const {return fRmstrue[i];};
G4double GetLimitEdep(G4int i) const {return fLimittrue[i];};
void SetApplyLimit(G4bool val) {fApplyLimit = val;};
private:
DetectorConstruction* fDetector;
PrimaryGeneratorAction* fPrimary;
RunActionMessenger* fRunMessenger;
HistoManager* fHistoManager;
G4double fSumEAbs [MaxAbsor], fSum2EAbs [MaxAbsor];
G4double fSumLAbs [MaxAbsor], fSum2LAbs [MaxAbsor];
std::vector<G4double> fEnergyFlow;
std::vector<G4double> fLateralEleak;
std::vector<G4double> fEnergyDeposit[MaxAbsor];
G4double fEdeptrue [MaxAbsor];
G4double fRmstrue [MaxAbsor];
G4double fLimittrue[MaxAbsor];
G4double fChargedStep;
G4double fNeutralStep;
G4int fN_gamma;
G4int fN_elec;
G4int fN_pos;
G4bool fApplyLimit;
};
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#endif