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0029 #ifndef MOLECULAR_EVENT_ACTION_HH
0030 #define MOLECULAR_EVENT_ACTION_HH
0031
0032 #include "G4ThreeVector.hh"
0033 #include "G4UserEventAction.hh"
0034 #include "globals.hh"
0035
0036 #include <map>
0037 #include <vector>
0038
0039 class AnalysisManager;
0040
0041 class DNAHit;
0042
0043 class ChromosomeHit;
0044
0045 class DNAGeometry;
0046
0047
0048
0049 class EventAction : public G4UserEventAction
0050 {
0051 public:
0052 explicit EventAction(AnalysisManager*);
0053
0054 ~EventAction() override = default;
0055
0056 void BeginOfEventAction(const G4Event*) override;
0057
0058 void EndOfEventAction(const G4Event*) override;
0059
0060 void AddDNAHit(const DNAHit* hit) { fDNAHits.push_back(hit); };
0061
0062 void AddChromosomeEdep(const G4String&, const G4double&, const G4bool&);
0063
0064 void AddCellEdep(const G4double&);
0065
0066 void AddTrackLengthCell(const G4double&);
0067
0068 void AddTrackLengthChro(const G4double&);
0069
0070 void SetPrimStopPos(const G4ThreeVector& pos) { fprimstoppos = pos; };
0071
0072 void Initialize();
0073
0074 private:
0075 G4bool fInitialized = false;
0076 AnalysisManager* fAnalysisManager;
0077 DNAGeometry* fDNAGeometry = nullptr;
0078 std::map<uint32_t, ChromosomeHit*> fChromoHitMap;
0079 std::vector<const DNAHit*> fDNAHits;
0080 G4double fEdepCell = 0;
0081 G4double fTraLenCell = 0;
0082 G4double fTraLenChro = 0;
0083 G4ThreeVector fprimstoppos = G4ThreeVector(0., 0., 0.);
0084 };
0085
0086
0087 #endif