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d5ebf00e | 1 | // -*- mode: C++ -*- |
2 | #ifndef ALIESDZDC_H | |
3 | #define ALIESDZDC_H | |
4 | ||
5 | /* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. * | |
6 | * See cxx source for full Copyright notice */ | |
7 | ||
8 | //------------------------------------------------------------------------- | |
9 | // Implementation of Class AliESDZDC | |
d1d3e36b | 10 | // This is a class that summarizes the ZDC data for the ESD |
d5ebf00e | 11 | // Origin: Christian Klein-Boesing, CERN, Christian.Klein-Boesing@cern.ch |
54c6a92c | 12 | // *** 15/10/2009 Scaler added to AliESDZDC class *** |
13 | // *** Scaler format: 32 floats from VME scaler *** | |
d5ebf00e | 14 | //------------------------------------------------------------------------- |
15 | ||
16 | #include <TObject.h> | |
d5ebf00e | 17 | |
18 | class AliESDZDC: public TObject { | |
19 | public: | |
20 | AliESDZDC(); | |
21 | AliESDZDC(const AliESDZDC& zdc); | |
22 | AliESDZDC& operator=(const AliESDZDC& zdc); | |
732a24fe | 23 | virtual void Copy(TObject &obj) const; |
d5ebf00e | 24 | |
f6006c7d | 25 | UInt_t GetESDQuality() const {return fESDQuality;} |
a7b0ef8a | 26 | Double_t GetZDCN1Energy() const {return fZDCN1Energy;} |
27 | Double_t GetZDCP1Energy() const {return fZDCP1Energy;} | |
28 | Double_t GetZDCN2Energy() const {return fZDCN2Energy;} | |
29 | Double_t GetZDCP2Energy() const {return fZDCP2Energy;} | |
d1d3e36b | 30 | Double_t GetZDCEMEnergy(Int_t i) const |
89291556 | 31 | {if(i==0){return fZDCEMEnergy;} else if(i==1){return fZDCEMEnergy1;} |
32 | return 0;} | |
a85132e7 | 33 | Short_t GetZDCParticipants() const {return fZDCParticipants;} |
5f0ec064 | 34 | Short_t GetZDCPartSideA() const {return fZDCPartSideA;} |
35 | Short_t GetZDCPartSideC() const {return fZDCPartSideC;} | |
36 | Double_t GetImpactParameter() const {return fImpactParameter;} | |
37 | Double_t GetImpactParamSideA() const {return fImpactParamSideA;} | |
38 | Double_t GetImpactParamSideC() const {return fImpactParamSideC;} | |
7b4458a2 | 39 | const Double_t * GetZN1TowerEnergy() const {return fZN1TowerEnergy;} |
40 | const Double_t * GetZN2TowerEnergy() const {return fZN2TowerEnergy;} | |
a85132e7 | 41 | const Double_t * GetZP1TowerEnergy() const {return fZP1TowerEnergy;} |
42 | const Double_t * GetZP2TowerEnergy() const {return fZP2TowerEnergy;} | |
43 | const Double_t * GetZN1TowerEnergyLR() const {return fZN1TowerEnergyLR;} | |
44 | const Double_t * GetZN2TowerEnergyLR() const {return fZN2TowerEnergyLR;} | |
45 | const Double_t * GetZP1TowerEnergyLR() const {return fZP1TowerEnergyLR;} | |
46 | const Double_t * GetZP2TowerEnergyLR() const {return fZP2TowerEnergyLR;} | |
d1d3e36b | 47 | // |
789b8a8d | 48 | Bool_t GetZNCentroidInPbPb(Float_t beamEne, Double_t centrZNC[2], Double_t centrZNA[2]); |
49 | Bool_t GetZNCentroidInpp(Double_t centrZNC[2], Double_t centrZNA[2]); | |
89291556 | 50 | // |
51 | void SetZDC(Double_t n1Energy, Double_t p1Energy, | |
5f0ec064 | 52 | Double_t emEnergy0, Double_t emEnergy1, |
53 | Double_t n2Energy, Double_t p2Energy, | |
54 | Short_t participants, Short_t nPartA, Short_t nPartC, | |
55 | Double_t b, Double_t bA, Double_t bC, UInt_t recoFlag) | |
89291556 | 56 | {fZDCN1Energy=n1Energy; fZDCP1Energy=p1Energy; |
5f0ec064 | 57 | fZDCEMEnergy=emEnergy0; fZDCEMEnergy1=emEnergy1; |
58 | fZDCN2Energy=n2Energy; fZDCP2Energy=p2Energy; | |
59 | fZDCParticipants=participants; fZDCPartSideA=nPartA; fZDCPartSideC=nPartC; | |
60 | fImpactParameter=b; fImpactParamSideA=bA, fImpactParamSideC=bC, | |
61 | fESDQuality=recoFlag;} | |
d1d3e36b | 62 | // |
b19cc8d0 | 63 | void SetZN1TowerEnergy(const Float_t tow1[5]) |
d1d3e36b | 64 | {for(Int_t i=0; i<5; i++) fZN1TowerEnergy[i] = tow1[i];} |
b19cc8d0 | 65 | void SetZN2TowerEnergy(const Float_t tow2[5]) |
d1d3e36b | 66 | {for(Int_t i=0; i<5; i++) fZN2TowerEnergy[i] = tow2[i];} |
b19cc8d0 | 67 | void SetZP1TowerEnergy(const Float_t tow1[5]) |
d1d3e36b | 68 | {for(Int_t i=0; i<5; i++) fZP1TowerEnergy[i] = tow1[i];} |
b19cc8d0 | 69 | void SetZP2TowerEnergy(const Float_t tow2[5]) |
d1d3e36b | 70 | {for(Int_t i=0; i<5; i++) fZP2TowerEnergy[i] = tow2[i];} |
b19cc8d0 | 71 | void SetZN1TowerEnergyLR(const Float_t tow1[5]) |
d1d3e36b | 72 | {for(Int_t i=0; i<5; i++) fZN1TowerEnergyLR[i] = tow1[i];} |
b19cc8d0 | 73 | void SetZN2TowerEnergyLR(const Float_t tow2[5]) |
d1d3e36b | 74 | {for(Int_t i=0; i<5; i++) fZN2TowerEnergyLR[i] = tow2[i];} |
b19cc8d0 | 75 | void SetZP1TowerEnergyLR(const Float_t tow1[5]) |
d1d3e36b | 76 | {for(Int_t i=0; i<5; i++) fZP1TowerEnergyLR[i] = tow1[i];} |
b19cc8d0 | 77 | void SetZP2TowerEnergyLR(const Float_t tow2[5]) |
d1d3e36b | 78 | {for(Int_t i=0; i<5; i++) fZP2TowerEnergyLR[i] = tow2[i];} |
b19cc8d0 | 79 | void SetZNACentroid(const Float_t centrCoord[2]) |
89291556 | 80 | {for(Int_t i=0; i<2; i++) fZNACentrCoord[i] = centrCoord[i];} |
b19cc8d0 | 81 | void SetZNCCentroid(const Float_t centrCoord[2]) |
89291556 | 82 | {for(Int_t i=0; i<2; i++) fZNCCentrCoord[i] = centrCoord[i];} |
d5ebf00e | 83 | |
54c6a92c | 84 | UInt_t GetZDCScaler(Int_t i) const {return fVMEScaler[i];} |
85 | const UInt_t* GetZDCScaler() const {return fVMEScaler;} | |
86 | ||
b19cc8d0 | 87 | void SetZDCScaler(const UInt_t count[32]) |
54c6a92c | 88 | {for(Int_t k=0; k<32; k++) fVMEScaler[k] = count[k];} |
89 | ||
d5ebf00e | 90 | void Reset(); |
91 | void Print(const Option_t *opt=0) const; | |
92 | ||
93 | private: | |
94 | ||
d1d3e36b | 95 | Double32_t fZDCN1Energy; // reconstructed energy in the neutron ZDC |
96 | Double32_t fZDCP1Energy; // reconstructed energy in the proton ZDC | |
97 | Double32_t fZDCN2Energy; // reconstructed energy in the neutron ZDC | |
98 | Double32_t fZDCP2Energy; // reconstructed energy in the proton ZDC | |
99 | Double32_t fZDCEMEnergy; // signal in the electromagnetic ZDCs | |
100 | Double32_t fZDCEMEnergy1; // second EM signal,cannot change fZDCEMEnergy to array (not backward compatible) | |
a85132e7 | 101 | Double32_t fZN1TowerEnergy[5];// reco E in 5 ZN1 sectors - high gain chain |
102 | Double32_t fZN2TowerEnergy[5];// reco E in 5 ZN2 sectors - high gain chain | |
103 | Double32_t fZP1TowerEnergy[5];// reco E in 5 ZP1 sectors - high gain chain | |
104 | Double32_t fZP2TowerEnergy[5];// reco E in 5 ZP2 sectors - high gain chain | |
105 | Double32_t fZN1TowerEnergyLR[5];// reco E in 5 ZN1 sectors - low gain chain | |
106 | Double32_t fZN2TowerEnergyLR[5];// reco E in 5 ZN2 sectors - low gain chain | |
107 | Double32_t fZP1TowerEnergyLR[5];// reco E in 5 ZP1 sectors - low gain chain | |
108 | Double32_t fZP2TowerEnergyLR[5];// reco E in 5 ZP2 sectors - low gain chain | |
5f0ec064 | 109 | Short_t fZDCParticipants; // number of participants estimated by the ZDC (ONLY in A-A) |
110 | Short_t fZDCPartSideA; // number of participants estimated by the ZDC (ONLY in A-A) | |
111 | Short_t fZDCPartSideC; // number of participants estimated by the ZDC (ONLY in A-A) | |
112 | Double32_t fImpactParameter; // impact parameter estimated by the ZDC (ONLY in A-A) | |
113 | Double32_t fImpactParamSideA; // impact parameter estimated by the ZDC (ONLY in A-A) | |
114 | Double32_t fImpactParamSideC; // impact parameter estimated by the ZDC (ONLY in A-A) | |
115 | Double32_t fZNACentrCoord[2]; // Coordinates of the centroid over ZNC | |
116 | Double32_t fZNCCentrCoord[2]; // Coordinates of the centroid over ZNA | |
117 | UInt_t fESDQuality; // flags from reconstruction | |
89291556 | 118 | // |
54c6a92c | 119 | UInt_t fVMEScaler[32]; // counts from VME scaler |
120 | ||
b19cc8d0 | 121 | ClassDef(AliESDZDC,12) |
d5ebf00e | 122 | }; |
123 | ||
124 | #endif | |
7b4458a2 | 125 |