source: trunk/examples/extended/runAndEvent/RE01/include/RE01TrackInformation.hh @ 1318

Last change on this file since 1318 was 1230, checked in by garnier, 15 years ago

update to geant4.9.3

File size: 5.1 KB
Line 
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26//
27// $Id: RE01TrackInformation.hh,v 1.2 2006/06/29 17:43:19 gunter Exp $
28// GEANT4 tag $Name: geant4-09-03-cand-01 $
29//
30
31#ifndef RE01TrackInformation_h
32#define RE01TrackInformation_h 1
33
34#include "globals.hh"
35#include "G4ThreeVector.hh"
36#include "G4ParticleDefinition.hh"
37#include "G4Track.hh"
38#include "G4Allocator.hh"
39#include "G4VUserTrackInformation.hh"
40
41class RE01TrackInformation : public G4VUserTrackInformation
42{
43  public:
44    RE01TrackInformation();
45    RE01TrackInformation(const G4Track* aTrack);
46    RE01TrackInformation(const RE01TrackInformation* aTrackInfo);
47    virtual ~RE01TrackInformation();
48   
49    inline void *operator new(size_t);
50    inline void operator delete(void *aTrackInfo);
51    inline int operator ==(const RE01TrackInformation& right) const
52    {return (this==&right);}
53
54    RE01TrackInformation& operator =(const RE01TrackInformation& right);
55
56    void SetSourceTrackInformation(const G4Track* aTrack);
57    void Print() const;
58
59  private:
60    // Information of the primary track at the primary vertex
61    G4int                 originalTrackID;  // Track ID of primary particle
62    G4ParticleDefinition* particleDefinition;
63    G4ThreeVector         originalPosition;
64    G4ThreeVector         originalMomentum;
65    G4double              originalEnergy;
66    G4double              originalTime;
67
68    G4int                 trackingStatus;
69    // trackingStatus = 1 : primary or secondary track which has not yet reached to calorimeter
70    //                = 0 : track which or ancester of which has reached to calorimeter
71
72    //                = 2 : track or its ancester had once reached to calorimeter and
73    //                      then escaped from it
74    // Information of the track which reached to the calorimeter boundary at the boundary surface
75    // This information is valid only for trackingStatus = 0 or 2
76    G4int                 sourceTrackID;
77    G4ParticleDefinition* sourceDefinition;
78    G4ThreeVector         sourcePosition;
79    G4ThreeVector         sourceMomentum;
80    G4double              sourceEnergy;
81    G4double              sourceTime;
82
83  public:
84    inline G4int GetOriginalTrackID() const {return originalTrackID;}
85    inline G4ParticleDefinition* GetOriginalParticle() const {return particleDefinition;}
86    inline G4ThreeVector GetOriginalPosition() const {return originalPosition;}
87    inline G4ThreeVector GetOriginalMomentum() const {return originalMomentum;}
88    inline G4double GetOriginalEnergy() const {return originalEnergy;}
89    inline G4double GetOriginalTime() const {return originalTime;}
90
91    inline G4int GetTrackingStatus() const {return trackingStatus;}
92    inline void SetTrackingStatus(G4int i) {trackingStatus = i;}
93
94    inline G4int GetSourceTrackID() const {return sourceTrackID;}
95    inline G4ParticleDefinition* GetSourceParticle() const {return sourceDefinition;}
96    inline G4ThreeVector GetSourcePosition() const {return sourcePosition;}
97    inline G4ThreeVector GetSourceMomentum() const {return sourceMomentum;}
98    inline G4double GetSourceEnergy() const {return sourceEnergy;}
99    inline G4double GetSourceTime() const {return sourceTime;}
100};
101
102extern G4Allocator<RE01TrackInformation> aTrackInformationAllocator;
103
104inline void* RE01TrackInformation::operator new(size_t)
105{ void* aTrackInfo;
106  aTrackInfo = (void*)aTrackInformationAllocator.MallocSingle();
107  return aTrackInfo;
108}
109
110inline void RE01TrackInformation::operator delete(void *aTrackInfo)
111{ aTrackInformationAllocator.FreeSingle((RE01TrackInformation*)aTrackInfo);}
112
113#endif
114
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