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geant4/examples/extended/electromagnetic/TestEm8/include/Run.hh
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2023-06-30 09:09:57 +02:00

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/// \file electromagnetic/TestEm8/include/Run.hh
/// \brief Definition of the Run class
//
//
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#ifndef Run_h
#define Run_h 1
#include "G4Run.hh"
#include "G4DataVector.hh"
#include "G4StatDouble.hh"
#include "G4AnalysisManager.hh"
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class G4Step;
class G4ElectronIonPair;
class TestParameters;
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class Run : public G4Run {
public:
Run();
~Run() override = default;
void Merge(const G4Run *) override;
void BeginOfRun();
void EndOfRun();
void BeginOfEvent();
void EndOfEvent();
void AddEnergy(G4double edep, const G4Step *);
Run &operator = (const Run &right) = delete;
Run(const Run &) = delete;
inline void SetVerbose(G4int value);
inline G4int GetVerbose() const;
inline G4double GetTotStepGas() const;
inline G4double GetTotCluster() const;
inline G4double GetMeanCluster() const;
inline const G4StatDouble *GetStat() const;
private:
G4int fVerbose = 1;
G4int fNbins = 0;
G4double fStepGas = 0.0;
G4double fMaxEnergy = 0.0;
G4double fCluster = 0.0;
G4double fTotStepGas = 0.0;
G4double fTotCluster = 0.0;
G4double fMeanCluster = 0.0;
G4double fFactorALICE;
G4double fWidthALICE;
G4double fEvt = 0.0;
G4double fTotEdep = 0.0;
G4double fOverflow = 0.0;
G4StatDouble fEdep = 325;
G4DataVector fEgas;
G4ElectronIonPair *fElIonPair;
TestParameters *fParam;
};
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inline void Run::SetVerbose(G4int value) { fVerbose = value; }
inline G4int Run::GetVerbose() const { return fVerbose; }
inline G4double Run::GetTotStepGas() const { return fTotStepGas; }
inline G4double Run::GetTotCluster() const { return fTotCluster; }
inline G4double Run::GetMeanCluster() const { return fMeanCluster; }
inline const G4StatDouble *Run::GetStat() const { return &fEdep; }
#endif