Geant4 Cross Reference |
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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // 26 ////////////////////////////////////////////// 26 /////////////////////////////////////////////////////////////////////////////// 27 // File: CCalHit.h 27 // File: CCalHit.h 28 // Description: Hit class for Calorimeters (Ec 28 // Description: Hit class for Calorimeters (Ecal, Hcal, ...) 29 // 29 // 30 // One Hit object should be created 30 // One Hit object should be created 31 // -for each new particle entering the calorim 31 // -for each new particle entering the calorimeter 32 // -for each detector unit (= cristal or fiber 32 // -for each detector unit (= cristal or fiber or scintillator layer) 33 // -for each nanosecond of the shower developm 33 // -for each nanosecond of the shower development 34 // 34 // 35 // This implies that all hit objects created f 35 // This implies that all hit objects created for a given shower 36 // have the same value for 36 // have the same value for 37 // - Entry (= local coordinates of the entranc 37 // - Entry (= local coordinates of the entrance point of the particle 38 // in the unit where the shower sta 38 // in the unit where the shower starts) 39 // - the TrackID (= Identification number of t 39 // - the TrackID (= Identification number of the incident particle) 40 // - the IncidentEnergy (= energy of that part 40 // - the IncidentEnergy (= energy of that particle) 41 // 41 // 42 ////////////////////////////////////////////// 42 /////////////////////////////////////////////////////////////////////////////// 43 43 44 #ifndef CCalHit_h 44 #ifndef CCalHit_h 45 #define CCalHit_h 1 45 #define CCalHit_h 1 46 46 47 #include <iostream> 47 #include <iostream> 48 #include <CLHEP/Vector/ThreeVector.h> << 48 #include "CLHEP/Vector/ThreeVector.h" 49 #include "globals.hh" 49 #include "globals.hh" 50 50 51 51 52 class CCalHit { 52 class CCalHit { 53 53 54 friend std::ostream& operator<< (std::ostrea 54 friend std::ostream& operator<< (std::ostream&, const CCalHit&); 55 55 56 public: 56 public: 57 57 58 CCalHit(); 58 CCalHit(); 59 ~CCalHit(); 59 ~CCalHit(); 60 CCalHit(const CCalHit &right); 60 CCalHit(const CCalHit &right); 61 const CCalHit& operator=(const CCalHit &righ 61 const CCalHit& operator=(const CCalHit &right); 62 G4bool operator==(const CCalHit &){return fa << 62 G4bool operator==(const CCalHit &){return 0;} 63 63 64 void print(); 64 void print(); 65 65 66 public: 66 public: 67 67 68 CLHEP::Hep3Vector getEntry() const; 68 CLHEP::Hep3Vector getEntry() const; 69 void setEntry(CLHEP::Hep3Vector xyz) 69 void setEntry(CLHEP::Hep3Vector xyz); 70 70 71 G4double getIncidentEnergy() const; << 71 double getIncidentEnergy() const; 72 void setIncidentEnergy (G4double e); << 72 void setIncidentEnergy (double e); 73 73 74 G4int getTrackID() const; << 74 int getTrackID() const; 75 void setTrackID (G4int i); << 75 void setTrackID (int i); 76 76 77 unsigned int getUnitID() const; 77 unsigned int getUnitID() const; 78 void setUnitID (unsigned int i); 78 void setUnitID (unsigned int i); 79 79 80 G4double getTimeSlice() const; << 80 double getTimeSlice() const; 81 void setTimeSlice(G4double d); << 81 void setTimeSlice(double d); 82 G4int getTimeSliceID() const; << 82 int getTimeSliceID() const; 83 83 84 G4double getEnergyDeposit() const; << 84 double getEnergyDeposit() const; 85 void setEnergyDeposit(const G4double << 85 void setEnergyDeposit(const double e); 86 void addEnergyDeposit(const CCalHit& 86 void addEnergyDeposit(const CCalHit& aHit); 87 void addEnergyDeposit(const G4double << 87 void addEnergyDeposit(const double e); 88 88 89 private: 89 private: 90 90 91 CLHEP::Hep3Vector entry; // Entry p << 91 CLHEP::Hep3Vector entry; // Entry point 92 G4double theIncidentEnergy; // Energy << 92 double theIncidentEnergy; // Energy of the primary particle 93 G4int theTrackID; // Identif << 93 int theTrackID; // Identification number of the primary particle 94 unsigned int theUnitID; // Calorim << 94 unsigned int theUnitID; // Calorimeter Unit Number 95 G4double theTimeSlice; // Time Sl << 95 double theTimeSlice; // Time Slice Identification 96 G4double theEnergyDeposit; // Cumulat << 96 double theEnergyDeposit; // Cumulated Energy deposit 97 97 98 }; 98 }; 99 99 100 #endif 100 #endif 101 101