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fcf95fc7 1#ifndef ALIITSCALIBRATIONSDD_H
2#define ALIITSCALIBRATIONSDD_H
3
4/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
5 * See cxx source for full Copyright notice */
6
7
8#include "AliITSCalibration.h"
9#include "AliITSresponseSDD.h"
f45f6658 10#include "TArrayI.h"
fcf95fc7 11
028a3709 12class AliITSMapSDD;
fcf95fc7 13class AliITSresponseSDD;
14///////////////////////////////////////////////////////
15// Response for SDD //
16///////////////////////////////////////////////////////
17
18class AliITSCalibrationSDD : public AliITSCalibration {
19 public:
20 //
21 // Configuration methods
22 //
23 AliITSCalibrationSDD();
24 AliITSCalibrationSDD(const char *dataType);
028a3709 25 virtual ~AliITSCalibrationSDD();
f45f6658 26 virtual void SetNoiseParam(Double_t /*n*/, Double_t /*b*/){
27 NotImplemented("SetNoiseParam");}
fcf95fc7 28
f45f6658 29 virtual void GetNoiseParam(Double_t &/*n*/, Double_t &/*b*/) const {
30 NotImplemented("GetNoiseParam");}
31
4bfbde86 32 virtual Float_t GetBaseline(Int_t anode) const {return fBaseline[anode];}
f45f6658 33 virtual void SetBaseline(Int_t anode,Double_t bas) {fBaseline[anode]=bas;}
4bfbde86 34 virtual Float_t GetNoise(Int_t anode) const {return fNoise[anode];}
f45f6658 35 virtual void SetNoise(Int_t anode, Double_t noise) {fNoise[anode]=noise;}
fcf95fc7 36
37 virtual void SetThresholds(Double_t mv, Double_t /* b */){
38 // Min value used in 2D - could be used as a threshold setting
39 fMinVal = mv;}
40 virtual void Thresholds(Double_t & mv, Double_t & /* b */) const
41 {mv = fMinVal;}
f45f6658 42 virtual void GiveCompressParam(Int_t *x,Int_t ian) const;
fcf95fc7 43
f45f6658 44 void SetNoiseAfterElectronics(Int_t anode,Double_t n=2.38){
fcf95fc7 45 // Noise after electronics (ADC units)
46 // 2.36 for ALICE from beam test measurements 2001
f45f6658 47 fNoiseAfterEl[anode]=n;}
4bfbde86 48 Float_t GetNoiseAfterElectronics(Int_t anode) const {
fcf95fc7 49 // Noise after electronics (ADC units)
f45f6658 50 return fNoiseAfterEl[anode];}
51 //void SetDeadChannels(Int_t nchips=0, Int_t nchannels=0);
52 void SetDeadChannels(Int_t ndead=0){fDeadChannels=ndead; fBadChannels.Set(ndead);}
fcf95fc7 53 Int_t GetDeadChips() const { return fDeadChips; }
54 Int_t GetDeadChannels() const { return fDeadChannels; }
4bfbde86 55 Float_t Gain(Int_t wing,Int_t chip,Int_t ch)const
fcf95fc7 56 {return fGain[wing][chip][ch]; }
f45f6658 57 virtual void SetGain(Double_t g,Int_t wing,Int_t chip, Int_t ch)
58 {fGain[wing][chip][ch]=g;}
59
fcf95fc7 60 void PrintGains() const;
61 void Print();
62 virtual void Print(ostream *os) const {AliITSCalibrationSDD::Print(os);}
63 virtual void Print(Option_t *option="") const {AliITSCalibrationSDD::Print(option);}
64 // not implemented virtual methods (devlared in the mother class
65 virtual void SetDetParam(Double_t *)
66 {NotImplemented("SetDetParam");}
67 virtual void GetDetParam(Double_t *) const
68 {NotImplemented("GetDetParam");}
69 virtual void SetNDetParam(Int_t /* n */)
70 {NotImplemented("SetNDetParam");}
71 virtual Int_t NDetParam() const
72 {NotImplemented("NDetParam"); return 0;}
73 virtual void SetSigmaSpread(Double_t, Double_t)
74 {NotImplemented("SetSigmaSpread");}
75 virtual void SigmaSpread(Double_t & /* p1 */,Double_t & /* p2 */) const
76 {NotImplemented("SigmaSpread");}
77
78 void SetDead() { fIsDead = kTRUE; };
79 Bool_t IsDead() const { return fIsDead; };
80 Int_t Wings()const{return fgkWings;}//Total number of SDD wings
81 Int_t Chips() const{return fgkChips;} // Number of chips/module
82 Int_t Channels() const{ return fgkChannels;}//Number of channels/chip
f45f6658 83
84 virtual void SetBadChannel(Int_t i,Int_t anode);
85 Int_t GetBadChannel(Int_t i) const {return fBadChannels[i];}
86 Bool_t IsBadChannel(Int_t anode);
fcf95fc7 87
028a3709 88 Float_t GetMapACell(Int_t i,Int_t j) const {
89 if(i<256) return fMapAW0->GetCellContent(i,j);
90 else return fMapAW1->GetCellContent(i,j);
91 }
92 virtual void SetMapA(Int_t wing,AliITSMapSDD* mapA) {
93 if(wing==0) fMapAW0=mapA;
94 else fMapAW1=mapA;
95 }
96 Float_t GetMapTCell(Int_t i,Int_t j) const {
97 if(i<256) return fMapTW0->GetCellContent(i,j);
98 else return fMapTW1->GetCellContent(i,j);
99 }
100 virtual void SetMapT(Int_t wing,AliITSMapSDD* mapT) {
101 if(wing==0) fMapTW0=mapT;
102 else fMapTW1=mapT;
103 }
03ecfe88 104 static Int_t GetMapTimeNBin() {return fgkMapTimeNBin;}
5bfe44ce 105
fcf95fc7 106 virtual void SetElectronics(Int_t p1=1) {((AliITSresponseSDD*)fResponse)->SetElectronics(p1);}
107 virtual Int_t GetElectronics() const {return ((AliITSresponseSDD*)fResponse)->Electronics();}
108 virtual void SetMaxAdc(Double_t p1) {((AliITSresponseSDD*)fResponse)->SetMaxAdc(p1);}
4bfbde86 109 virtual Float_t GetMaxAdc() const {return ((AliITSresponseSDD*)fResponse)->MaxAdc();}
fcf95fc7 110 virtual void SetChargeLoss(Double_t p1) {((AliITSresponseSDD*)fResponse)->SetChargeLoss(p1);}
4bfbde86 111 virtual Float_t GetChargeLoss() const {return ((AliITSresponseSDD*)fResponse)->ChargeLoss();}
fcf95fc7 112 virtual void SetDynamicRange(Double_t p1) {((AliITSresponseSDD*)fResponse)->SetDynamicRange(p1);}
4bfbde86 113 virtual Float_t GetDynamicRange() const {return ((AliITSresponseSDD*)fResponse)->DynamicRange();}
fcf95fc7 114 virtual void SetDriftSpeed(Double_t p1) {((AliITSresponseSDD*)fResponse)->SetDriftSpeed(p1);}
4bfbde86 115 virtual Float_t GetDriftSpeed() const {return ((AliITSresponseSDD*)fResponse)->DriftSpeed();}
fcf95fc7 116 virtual void SetParamOptions(const char *opt1,const char *opt2) {((AliITSresponseSDD*)fResponse)->SetParamOptions(opt1,opt2);}
117 virtual void GetParamOptions(char *opt1,char *opt2) const {((AliITSresponseSDD*)fResponse)->ParamOptions(opt1,opt2);}
118 virtual Bool_t Do10to8() const {return ((AliITSresponseSDD*)fResponse)->Do10to8();}
119 virtual void SetZeroSupp (const char *opt) {((AliITSresponseSDD*)fResponse)->SetZeroSupp(opt);}
120 virtual const char *GetZeroSuppOption() const {return ((AliITSresponseSDD*)fResponse)->ZeroSuppOption();}
121 virtual void SetNSigmaIntegration(Double_t p1) {((AliITSresponseSDD*)fResponse)->SetNSigmaIntegration(p1);}
4bfbde86 122 virtual Float_t GetNSigmaIntegration() const {return ((AliITSresponseSDD*)fResponse)->NSigmaIntegration();}
fcf95fc7 123 virtual void SetNLookUp(Int_t p1) {((AliITSresponseSDD*)fResponse)->SetNLookUp(p1);}
124 virtual Int_t GetGausNLookUp() const {return ((AliITSresponseSDD*)fResponse)->GausNLookUp();}
4bfbde86 125 virtual Float_t GetGausLookUp(Int_t i) const {return ((AliITSresponseSDD*)fResponse)->GausLookUp(i);}
fcf95fc7 126 virtual Int_t Convert8to10(Int_t signal) const {return ((AliITSresponseSDD*)fResponse)->Convert8to10(signal);}
127 virtual void SetJitterError(Double_t jitter=20) {((AliITSresponseSDD*)fResponse)->SetJitterError(jitter);}
4bfbde86 128 virtual Float_t GetJitterError() const {return ((AliITSresponseSDD*)fResponse)->JitterError();}
404c1c29 129 virtual Float_t GetDriftPath(Float_t time,Float_t /*anodecoord*/) const {return time*GetDriftSpeed();}
130 virtual Float_t GetThresholdAnode(Int_t anode,Int_t nsigma=3) const {
9e4d7193 131 return nsigma*fNoiseAfterEl[anode];}
404c1c29 132
fcf95fc7 133 virtual void SetDo10to8(Bool_t bitcomp=kTRUE) {((AliITSresponseSDD*)fResponse)->SetDo10to8(bitcomp);}
134 protected:
5bfe44ce 135
136
fcf95fc7 137 // these statis const should be move to AliITSsegmentationSDD
138 static const Int_t fgkWings = 2; // Number of wings per module
139 static const Int_t fgkChips = 4; // Number of chips/module
140 static const Int_t fgkChannels = 64; // Number of channels/chip
4bfbde86 141 static const Float_t fgkTemperatureDefault; // default for fT (Kelvin)
142 static const Float_t fgkNoiseDefault; // default for fNoise
143 static const Float_t fgkBaselineDefault; // default for fBaseline
144 static const Float_t fgkMinValDefault; // default for fMinVal
145 static const Float_t fgkGainDefault; //default for gain
5bfe44ce 146 static const Int_t fgkMapTimeNBin = 72; //map granularity along drift direction
fcf95fc7 147 Int_t fDeadChips; // Number of dead chips
148 Int_t fDeadChannels; // Number of dead channels
4bfbde86 149 Float_t fGain[fgkWings][fgkChips][fgkChannels];//Array for channel gains
150 Float_t fNoise[fgkWings*fgkChips*fgkChannels]; // Noise array
151 Float_t fBaseline[fgkWings*fgkChips*fgkChannels]; // Baseline array
152 Float_t fNoiseAfterEl[fgkWings*fgkChips*fgkChannels]; // Noise after electronics
153 Float_t fMinVal; // Min value used in 2D zero-suppression algo
fcf95fc7 154
f45f6658 155 Bool_t fIsDead; // module is dead or alive ?
156 TArrayI fBadChannels; //Array with bad anodes number (0-512)
028a3709 157 //Float_t fMapA[fgkChips*fgkChannels][fgkMapTimeNBin]; //array with deviations on anode coordinate
158 //Float_t fMapT[fgkChips*fgkChannels][fgkMapTimeNBin]; //array with deviations on time coordinate
159 AliITSMapSDD* fMapAW0; //! map of residuals on anode coord. wing 0
160 AliITSMapSDD* fMapAW1; //! map of residuals on anode coord. wing 1
161 AliITSMapSDD* fMapTW0; //! map of residuals on time coord. wing 0
162 AliITSMapSDD* fMapTW1; //! map of residuals on time coord. wing 1
163
5bfe44ce 164
fcf95fc7 165 private:
166 AliITSCalibrationSDD(const AliITSCalibrationSDD &ob); // copy constructor
167 AliITSCalibrationSDD& operator=(const AliITSCalibrationSDD & /* source */); // ass. op.
168
169
028a3709 170 ClassDef(AliITSCalibrationSDD,6) // SDD response
fcf95fc7 171
172 };
173#endif