source: trunk/examples/extended/radioactivedecay/exrdm/include/exrdmAnalysisManager.hh @ 1279

Last change on this file since 1279 was 1230, checked in by garnier, 15 years ago

update to geant4.9.3

File size: 4.6 KB
Line 
1//
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25//
26#ifndef exrdmAnalysisManager_h
27#define exrdmAnalysisManager_h 1
28
29//---------------------------------------------------------------------------
30//
31// ClassName:   exrdmAnalysisManager
32//
33// Description: Singleton class to hold analysis parameters and build histograms.
34//              User cannot access to the constructor.
35//              The pointer of the only existing object can be got via
36//              exrdmAnalysisManager::GetInstance() static method.
37//              The first invokation of this static method makes
38//              the singleton object.
39//
40//----------------------------------------------------------------------------
41//
42
43//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
44
45#include "globals.hh"
46#include "exrdmEnergyDeposition.hh"
47#include <vector>
48
49//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
50
51class exrdmHisto;
52
53class exrdmAnalysisManager
54{
55
56public:
57  // With description
58
59  static exrdmAnalysisManager* getInstance();
60  static void dispose();
61
62private:
63
64  exrdmAnalysisManager();
65  ~exrdmAnalysisManager();
66
67public: // Without description
68
69  void bookHisto();
70
71  void BeginOfRun();
72  void EndOfRun();
73
74  void BeginOfEvent();
75  void EndOfEvent();
76
77  void AddParticle(G4double, G4double, G4double, G4double);
78  void AddIsotope(G4double, G4double, G4double);
79  void AddEnergy(G4double, G4double, G4double);
80
81  void SetVerbose(G4int val) {verbose = val;};
82  G4int GetVerbose() const {return verbose;};
83
84  void SetFirstEventToDebug(G4int val) {nEvt1 = val;};
85  G4int FirstEventToDebug() const {return nEvt1;};
86  void SetLastEventToDebug(G4int val) {nEvt2 = val;};
87  G4int LastEventToDebug() const {return nEvt2;};
88
89  void SetMaxEnergyforHisto(G4double val) {histEMax = val;};
90  G4double  GetMaxEnergyforHisto() const {return histEMax;};
91  void SetMinEnergyforHisto(G4double val) {histEMin = val;};
92  G4double  GetMinEnergyforHisto() const {return histEMin;};
93  void SetNumBinforHisto(G4int val) {histNBin = val;};
94  G4int  GeNumBinforHisto() const {return histNBin;};
95
96  void SetThresholdEnergyforTarget(G4double val) {targetThresE = val;};
97  G4double GetThresholdEnergyforTarget () const {return targetThresE;};
98  void SetThresholdEnergyforDetector(G4double val) {detectorThresE = val;};
99  G4double GetThresholdEnergyforDetector () const {return detectorThresE;};
100  void SetPulseWidth(G4double val) {pulseWidth = val;};
101  G4double GetPulseWidth () const {return pulseWidth;};
102
103private:
104
105  // MEMBERS
106  static exrdmAnalysisManager* fManager;
107
108  G4int verbose;
109  G4int nEvt1;
110  G4int nEvt2; 
111
112  G4double histEMax;
113  G4double histEMin;
114  G4int histNBin;
115  /*
116  G4bool histTarget;
117  G4bool histDetector;
118  G4bool histCoin;
119  G4bool histAntiCD;
120  G4bool histAntiCT;
121  G4bool histEmission;
122  G4bool ntupleEmission;
123  G4bool ntupleIsotope;
124  */
125  G4double targetThresE;
126  G4double detectorThresE;
127  G4double pulseWidth;
128
129  // energy depositions for an event
130  std::vector <exrdmEnergyDeposition> Edepo;
131  //
132  exrdmHisto*  histo;
133 
134};
135
136#endif
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