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#include <TClonesArray.h> |
#include <TClonesArray.h> |
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#include <TArrayI.h> |
#include <TArrayI.h> |
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// |
// |
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|
#include <math.h> |
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|
// |
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#include <CaloStruct.h> |
#include <CaloStruct.h> |
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// |
// |
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|
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*/ |
*/ |
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CaloTrkVar(const CaloTrkVar &trkvar); ///< copy values from trkvar to this |
CaloTrkVar(const CaloTrkVar &trkvar); ///< copy values from trkvar to this |
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// |
// |
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void Clear(); ///< clear variables |
void Clear(Option_t *t=""); ///< clear variables |
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CaloTrkVar* GetCaloTrkVar(){return this;}; ///< returns pointer to this object |
CaloTrkVar* GetCaloTrkVar(){return this;}; ///< returns pointer to this object |
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// |
// |
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ClassDef(CaloTrkVar,2); |
ClassDef(CaloTrkVar,2); |
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// common variables (not related to tracks) |
// common variables (not related to tracks) |
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// |
// |
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Int_t nstrip; ///< total number of strip hit |
Int_t nstrip; ///< total number of strip hit |
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Int_t nsatstrip; ///< total number of strip hit with saturated signal |
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Int_t nx22; ///< number of strip hit in the last silicon plane of the calorimeter (x view number 22) |
Int_t nx22; ///< number of strip hit in the last silicon plane of the calorimeter (x view number 22) |
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Int_t planemax[2]; ///< plane of maximum energy release (x and y) |
Int_t planemax[2]; ///< plane of maximum energy release (x and y) |
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Int_t selfdelay[4][7]; ///< Delay of the selftrigger planes + coincidence for every section |
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Float_t qtot; ///< total energy detected (MIP) |
Float_t qtot; ///< total energy detected (MIP) |
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Float_t qx22; ///< energy detected in the last silicon plane of the calorimeter (x view number 22) |
Float_t qx22; ///< energy detected in the last silicon plane of the calorimeter (x view number 22) |
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Float_t qmax; ///< the maximum energy detected in a strip |
Float_t qmax; ///< the maximum energy detected in a strip |
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void GetElectronEnergy(Float_t &energy, Float_t &sigma); ///< returns energy and sigma using qtot and assuming the particle being an electron |
void GetElectronEnergy(Float_t &energy, Float_t &sigma); ///< returns energy and sigma using qtot and assuming the particle being an electron |
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// |
// |
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CaloTrkVar *GetCaloTrkVar(Int_t notrack); ///< returns a pointer to the CaloTrkVar class containing track related variables for track number notrack |
CaloTrkVar *GetCaloTrkVar(Int_t notrack); ///< returns a pointer to the CaloTrkVar class containing track related variables for track number notrack |
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CaloTrkVar* GetCaloStoredTrack(Int_t seqno); ///< returns pointer to the track set related to the seqno number |
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// |
// |
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TClonesArray *GetTrackArray(){return CaloTrk;}; ///< returns a pointer to the track related variables array |
TClonesArray *GetTrackArray(){return CaloTrk;}; ///< returns a pointer to the track related variables array |
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CaloLevel2* GetCaloLevel2(){return this;}; ///< returns pointer to this object |
CaloLevel2* GetCaloLevel2(){return this;}; ///< returns pointer to this object |
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// |
// |
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void GetLevel2Struct(cCaloLevel2 *l2) const; |
void GetLevel2Struct(cCaloLevel2 *l2) const; |
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// |
// |
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void Clear(); |
void Clear(Option_t *t=""); |
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void Delete(); //ELENA |
void Delete(Option_t *t=""); //ELENA |
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void Set(); //ELENA |
void Set(); //ELENA |
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Bool_t IsGood(Bool_t strict = false); // method to check if the event is good or not |
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// |
// |
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// constructor |
// constructor |
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// |
// |
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CaloLevel2(); ///< Constructor. |
CaloLevel2(); ///< Constructor. |
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~CaloLevel2(){Delete();}; //ELENA |
~CaloLevel2(){Delete();}; //ELENA |
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// |
// |
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friend class CaloProcessing; |
friend class CaloLevel0; |
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// |
// |
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ClassDef(CaloLevel2,4); |
ClassDef(CaloLevel2,5); |
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}; |
}; |
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#endif |
#endif |