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81e97e0d 1#ifndef ALITPCSEED_H
2#define ALITPCSEED_H
3/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
6
7/* $Id$ */
8
9//-------------------------------------------------------
10// TPC seed
11// Class needed for TPC parallel tracking
12//
13// Origin:
14//-------------------------------------------------------
15
16#include <TError.h>
19b00333 17#include <TBits.h>
81e97e0d 18
19#include "AliTPCtrack.h"
20#include "AliComplexCluster.h"
21#include "AliPID.h"
22
23class TFile;
24class AliTPCParam;
25class AliTPCseed;
26class AliTPCclusterMI;
27class AliTPCTrackerPoint;
7cd8ac3f 28class AliESD;
29class AliTPCCalPad;
81e97e0d 30class TClonesArray;
31
32class AliTPCseed : public AliTPCtrack {
81e97e0d 33 public:
34 AliTPCseed();
35 virtual ~AliTPCseed();
36 AliTPCseed(const AliTPCtrack &t);
2928bdf0 37 AliTPCseed(const AliTPCseed &s, Bool_t clusterOwner = kFALSE);
81e97e0d 38 //AliTPCseed(const AliTPCseed &t, Double_t a);
6c94f330 39 AliTPCseed(Double_t xr, Double_t alpha, const Double_t xx[5],
179c6296 40 const Double_t cc[15], Int_t i);
41 AliTPCseed &operator = (const AliTPCseed & param);
87e92a27 42 static Int_t RefitTrack(AliTPCseed* seed, AliExternalTrackParam * in, AliExternalTrackParam * out);
43 Bool_t RefitTrack(AliTPCseed* seed, Bool_t out);
81e97e0d 44 Int_t Compare(const TObject *o) const;
45 void Reset(Bool_t all = kTRUE);
46 Int_t GetProlongation(Double_t xr, Double_t &y, Double_t & z) const;
af32720d 47 virtual Double_t GetPredictedChi2(const AliCluster *cluster2) const;
6c94f330 48 virtual Bool_t Update(const AliCluster* c2, Double_t chi2, Int_t i);
81e97e0d 49 AliTPCTrackerPoint * GetTrackPoint(Int_t i);
c6c5e49f 50 AliTPCclusterMI * GetClusterFast(Int_t irow){ return fClusterPointer[irow];}
b9671574 51 void SetClusterPointer(Int_t irow, AliTPCclusterMI* cl) {fClusterPointer[irow]=cl;}
81e97e0d 52 Double_t GetDensityFirst(Int_t n);
6c94f330 53 Double_t GetSigma2C() const {
54 Double_t cnv=GetBz()*kB2C;
55 return GetSigma1Pt2()*cnv*cnv;
56 }
81e97e0d 57 void GetClusterStatistic(Int_t first, Int_t last, Int_t &found, Int_t &foundable, Int_t &shared, Bool_t plus2);
58
59 void Modify(Double_t factor);
60 void SetClusterIndex2(Int_t row, Int_t index) {
61 fIndex[row] = index;
62 }
63 Int_t GetClusterIndex2(Int_t row) const {
64 return fIndex[row];
65 }
66 Int_t GetClusterSector(Int_t row) const {
67 Int_t pica = -1;
68 if (fIndex[row]>=0) pica = ((fIndex[row]&0xff000000)>>24);
69 return pica;
70 }
71
6c94f330 72 Double_t GetYat(Double_t x) const;
73
81e97e0d 74 void SetErrorY2(Float_t sy2){fErrorY2=sy2;}
75 void SetErrorZ2(Float_t sz2){fErrorZ2=sz2;}
105b1b81 76 Float_t CookdEdx(Double_t low=0.05, Double_t up=0.70, Int_t i1=0, Int_t i2=159, Bool_t onlyused = kFALSE);
eb02f63a 77 Float_t CookShape(Int_t type);
81e97e0d 78 void CookPID();
79 Double_t Bethe(Double_t bg); // return bethe-bloch
0a65832b 80 Double_t BetheMass(Double_t mass=0.1057); // return bethe-bloch
81e97e0d 81 // void CookdEdx2(Double_t low=0.05, Double_t up=0.70);
82 Bool_t IsActive() const { return !(fRemoval);}
83 void Desactivate(Int_t reason){ fRemoval = reason;}
b9671574 84 AliTPCclusterMI* GetClusterPointer(Int_t i) const {return fClusterPointer[i];}
85 Int_t GetSector() const {return fSector;}
86 Float_t GetCurrentSigmaY2() const {return fCurrentSigmaY2;}
87 Float_t GetCurrentSigmaZ2() const {return fCurrentSigmaZ2;}
88 Int_t GetRelativeSector() const {return fRelativeSector;}
89 Char_t GetCircular() const {return fCircular;}
90
91 void SetCurrentSigmaY2(Float_t s) {fCurrentSigmaY2=s;}
92 void SetCurrentSigmaZ2(Float_t s) {fCurrentSigmaZ2=s;}
93 void SetRelativeSector(Int_t r) {fRelativeSector=r;}
94 void SetCircular(Char_t c) {fCircular=c;}
95 void SetIsSeeding(Bool_t s) {fIsSeeding=s;}
96 void SetSeedType(Int_t s) {fSeedType=s;}
97 void SetSeed1(Int_t s) {fSeed1=s;}
98 void SetSeed2(Int_t s) {fSeed2=s;}
99 void SetESD(AliESDtrack* esd) {fEsd=esd;}
100 void SetBSigned(Bool_t s) {fBSigned=s;}
101 void SetSort(Int_t s) {fSort=s;}
102 void SetOverlapLabel(Int_t i, Int_t l) {fOverlapLabels[i]=l;}
103 void SetCurrentCluster(AliTPCclusterMI* cl) {fCurrentCluster=cl;}
104 void SetNoCluster(Int_t n) {fNoCluster=n;}
105 void SetRow(Int_t n) {fRow=n;}
106 void SetSector(Int_t n) {fSector=n;}
107 void SetCurrentClusterIndex1(Int_t n) {fCurrentClusterIndex1=n;}
108 void SetInDead(Bool_t s) {fInDead=s;}
b9671574 109
110 Double_t TPCrPID(Int_t i) const {return fTPCr[i];}
111 Double_t* TPCrPIDs() {return fTPCr;}
112 Bool_t GetIsSeeding() const {return fIsSeeding;}
113 Int_t GetSeedType() const {return fSeedType;}
114 Int_t GetSeed1() const {return fSeed1;}
115 Int_t GetSeed2() const {return fSeed2;}
116 AliESDtrack* GetESD() {return fEsd;}
117 Float_t GetSDEDX(Int_t i) const {return fSDEDX[i];}
118 Int_t GetNCDEDX(Int_t i) const {return fNCDEDX[i];}
119 Bool_t GetBSigned() const {return fBSigned;}
120 Int_t GetSort() const {return fSort;}
121 Int_t GetOverlapLabel(Int_t i) const {return fOverlapLabels[i];}
122 AliTPCclusterMI* GetCurrentCluster() const {return fCurrentCluster;}
123 Int_t GetNoCluster() const {return fNoCluster;}
124 Int_t GetRow() const {return fRow;}
125 Int_t GetCurrentClusterIndex1() const {return fCurrentClusterIndex1;}
126 Bool_t GetInDead() const {return fInDead;}
127 Float_t GetErrorY2() const {return fErrorY2;}
128 Float_t GetErrorZ2() const {return fErrorZ2;}
e0e13b88 129 Float_t GetCMeanSigmaY2p30() const {return fCMeanSigmaY2p30;}
130 Float_t GetCMeanSigmaZ2p30() const {return fCMeanSigmaZ2p30;}
c07cb486 131 Float_t GetCMeanSigmaY2p30R() const {return fCMeanSigmaY2p30R;}
132 Float_t GetCMeanSigmaZ2p30R() const {return fCMeanSigmaZ2p30R;}
81e97e0d 133 //
134 //
19b00333 135 void SetClusterMapBit(int ibit, Bool_t state);
136 Bool_t GetClusterMapBit(int ibit);
137 void SetSharedMapBit(int ibit, Bool_t state);
138 Bool_t GetSharedMapBit(int ibit);
139 const TBits& GetClusterMap() const { return fClusterMap; };
140 const TBits& GetSharedMap() const { return fSharedMap; };
141
2fc9608f 142 Float_t CookdEdxNorm(Double_t low=0.05, Double_t up=0.70, Int_t type=0, Int_t i1=0, Int_t i2=159, AliTPCCalPad * gainMap = 0, Bool_t posNorm=kFALSE, Bool_t padNorm=kFALSE);
3247d397 143 static void GetError(AliTPCclusterMI* cluster, AliExternalTrackParam * param,
144 Double_t& erry, Double_t &errz);
145 static void GetShape(AliTPCclusterMI* cluster, AliExternalTrackParam * param,
146 Double_t& rmsy, Double_t &rmsz);
0a65832b 147
81e97e0d 148 private:
149 // AliTPCseed & operator = (const AliTPCseed &)
150 // {::Fatal("= operator","Not Implemented\n");return *this;}
151 AliESDtrack * fEsd; //!
105b1b81 152 AliTPCclusterMI* fClusterPointer[160]; // array of cluster pointers -
2928bdf0 153 Bool_t fClusterOwner; // indicates the track is owner of cluster
81e97e0d 154 //---CURRENT VALUES
6d493ea0 155 Int_t fRow; // current row number
156 Int_t fSector; // current sector number
157 Int_t fRelativeSector; // index of current relative sector
81e97e0d 158 Float_t fCurrentSigmaY2; //!expected current cluster sigma Y
159 Float_t fCurrentSigmaZ2; //!expected current cluster sigma Z
e0e13b88 160 Float_t fCMeanSigmaY2p30; //! current mean sigma Y2 - mean30%
161 Float_t fCMeanSigmaZ2p30; //! current mean sigma Z2 - mean30%
c07cb486 162 Float_t fCMeanSigmaY2p30R; //! current relative mean sigma Y2 - mean30%
163 Float_t fCMeanSigmaZ2p30R; //! current relative mean sigma Z2 - mean30%
81e97e0d 164 Float_t fErrorY2; //!sigma of current cluster
165 Float_t fErrorZ2; //!sigma of current cluster
166 AliTPCclusterMI * fCurrentCluster; //!pointer to the current cluster for prolongation
167 Int_t fCurrentClusterIndex1; //! index of the current cluster
168 Bool_t fInDead; //! indicate if the track is in dead zone
169 Bool_t fIsSeeding; //!indicates if it is proces of seeading
170 Int_t fNoCluster; //!indicates number of rows without clusters
171 Int_t fSort; //!indicate criteria for sorting
172 Bool_t fBSigned; //indicates that clusters of this trackes are signed to be used
173 //
174 //
175 Float_t fDEDX[4]; // dedx according padrows
176 Float_t fSDEDX[4]; // sdedx according padrows
177 Int_t fNCDEDX[4]; // number of clusters for dedx measurment
178 Double_t fTPCr[AliPID::kSPECIES]; // rough PID according TPC
179 //
180 Int_t fSeedType; //seeding type
181 Int_t fSeed1; //first row for seeding
182 Int_t fSeed2; //last row for seeding
183 Int_t fOverlapLabels[12]; //track labels and the length of the overlap
184 Float_t fMAngular; // mean angular factor
185 Char_t fCircular; // indicates curlin track
105b1b81 186 AliTPCTrackerPoint fTrackPoints[160]; //track points - array track points
19b00333 187 TBits fClusterMap; // bit is 1 if track has a hit on padrow
188 TBits fSharedMap; // bit is 1 if track shares a hit on padrow
677af755 189 ClassDef(AliTPCseed,3)
81e97e0d 190};
191
192
193
194
195
196#endif
197
198