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1#ifndef ALITPCTRACK_H
2#define ALITPCTRACK_H
3/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5/* $Id$ */
6
7//-------------------------------------------------------
8// TPC Track Class
9//
10// Origin: Iouri Belikov, CERN, Jouri.Belikov@cern.ch
11//
12// December 18, 2000
13// Internal view of the TPC track parametrisation as well as the order of
14// track parameters are subject for possible changes !
15// Use GetExternalParameters() and GetExternalCovariance() to access TPC
16// track information regardless of its internal representation.
17// This formation is now fixed in the following way:
18// external param0: local Y-coordinate of a track (cm)
19// external param1: local Z-coordinate of a track (cm)
20// external param2: local sine of the track momentum azimuth angle
21// external param3: tangent of the track momentum dip angle
22// external param4: 1/pt (1/(GeV/c))
23//
24#include <AliKalmanTrack.h>
25#include <TMath.h>
26
27#include "AliTPCreco.h"
28#include "AliExternalTrackParam.h"
29class AliESDtrack;
30
31//_____________________________________________________________________________
32class AliTPCtrack : public AliKalmanTrack {
33public:
34 AliTPCtrack();
35 AliTPCtrack(UInt_t index, const Double_t xx[5],
36 const Double_t cc[15], Double_t xr, Double_t alpha);
37 AliTPCtrack(const AliESDtrack& t);
38 AliTPCtrack(const AliTPCtrack& t);
39 virtual ~AliTPCtrack() {}
40 Int_t PropagateToVertex(Double_t x0=36.66,Double_t rho=1.2e-3);
41 Int_t Rotate(Double_t angle);
42 void SetdEdx(Double_t dedx) {fdEdx=dedx;}
43
44 Double_t GetYat(Double_t x) const ;
45 Double_t GetX() const {return fX;}
46 Double_t GetAlpha() const {return fAlpha;}
47 Double_t GetdEdx() const {return fdEdx;}
48 Double_t GetPIDsignal() const {return GetdEdx();}
49
50 Double_t GetY() const {return fP0;}
51 Double_t GetZ() const {return fP1;}
52 Double_t GetSnp() const {return fX*fP4 - fP2;}
53 Double_t Get1Pt() const {
54 return (TMath::Sign(1e-9,fP4) + fP4)*GetLocalConvConst();
55 }
56 Double_t GetTgl() const {return fP3;}
57
58 Double_t GetSigmaY2() const {return fC00;}
59 Double_t GetSigmaZ2() const {return fC11;}
60
61// Some methods useful for users. Implementation is not
62// optimized for speed but for minimal maintanance effort
63 Double_t Phi() const;
64 Double_t Theta() const {return TMath::Pi()/2.-TMath::ATan(GetTgl());}
65 Double_t Px() const {return TMath::Cos(Phi())/TMath::Abs(Get1Pt());}
66 Double_t Py() const {return TMath::Sin(Phi())/TMath::Abs(Get1Pt());}
67 Double_t Pz() const {return GetTgl()/TMath::Abs(Get1Pt());}
68 Double_t Pt() const {return 1./TMath::Abs(Get1Pt());}
69 Double_t P() const {return TMath::Sqrt(Pt()*Pt()+Pz()*Pz());}
70
71 Int_t Compare(const TObject *o) const;
72
73 void GetExternalParameters(Double_t& xr, Double_t x[5]) const ;
74 void GetExternalCovariance(Double_t cov[15]) const ;
75
76 // [SR, 01.04.2003]
77 Int_t GetNumber() const {return fNumber;}
78 void SetNumber(Int_t n) {fNumber = n;}
79 //
80
81 Int_t GetClusterIndex(Int_t i) const {return fIndex[i];}
82
83//******** To be removed next release !!! **************
84 Double_t GetEta() const {return fP2;}
85 Double_t GetC() const {return fP4;}
86 void GetCovariance(Double_t cc[15]) const {
87 cc[0 ]=fC00;
88 cc[1 ]=fC10; cc[2 ]=fC11;
89 cc[3 ]=fC20; cc[4 ]=fC21; cc[5 ]=fC22;
90 cc[6 ]=fC40; cc[7 ]=fC41; cc[8 ]=fC42; cc[9 ]=fC44;
91 cc[10]=fC30; cc[11]=fC31; cc[12]=fC32; cc[13]=fC43; cc[14]=fC33;
92 }
93//******************************************************
94
95 virtual Double_t GetPredictedChi2(const AliCluster *cluster) const;
96 Int_t PropagateTo(Double_t xr,Double_t x0=28.94,Double_t rho=0.9e-3);
97 Int_t Update(const AliCluster* c, Double_t chi2, UInt_t i);
98 void ResetCovariance();
99 void ResetClusters() {SetNumberOfClusters(0); SetChi2(0.);}
100 void UpdatePoints();//update points
101 Float_t* GetPoints() {return fPoints;}
102 //
103 // TClonesArray * fHelixIn; //array of helixes
104 //TClonesArray * fHelixOut; //array of helixes
105 //
106 Float_t Density(Int_t row0, Int_t row1); //calculate cluster density
107 Float_t Density2(Int_t row0, Int_t row1); //calculate cluster density
108 Double_t GetZat0() const;
109 Double_t GetD(Double_t x=0, Double_t y=0) const;
110 AliExternalTrackParam & GetReference(){ return fReference;}
111 void UpdateReference(){ new (&fReference) AliExternalTrackParam(*this);}
112 Int_t GetKinkIndex(Int_t i) const{ return fKinkIndexes[i];}
113 Int_t* GetKinkIndexes() { return fKinkIndexes;}
114 Int_t GetV0Index(Int_t i) const{ return fV0Indexes[i];}
115 Int_t* GetV0Indexes() { return fV0Indexes;}
116protected:
117 void GetXYZ(Float_t r[3]) const;
118
119 Double_t fX; // X-coordinate of this track (reference plane)
120 Double_t fAlpha; // Rotation angle the local (TPC sector)
121 // coordinate system and the global ALICE one.
122
123 Double_t fdEdx; // dE/dx
124
125 Double_t fP0; // Y-coordinate of a track
126 Double_t fP1; // Z-coordinate of a track
127 Double_t fP2; // C*x0
128 Double_t fP3; // tangent of the track momentum dip angle
129 Double_t fP4; // track curvature
130
131 Double_t fC00; // covariance
132 Double_t fC10, fC11; // matrix
133 Double_t fC20, fC21, fC22; // of the
134 Double_t fC30, fC31, fC32, fC33; // track
135 Double_t fC40, fC41, fC42, fC43, fC44; // parameters
136
137 Int_t fIndex[kMaxRow]; // indices of associated clusters
138 Float_t fPoints[4]; //first, max dens row end points of the track and max density
139 //[SR, 01.04.2003]
140 Int_t fNumber; // magic number used for number of clusters
141 // MI addition
142 Float_t fSdEdx; // sigma of dedx
143 //
144 Int_t fNFoundable; //number of foundable clusters - dead zone taken to the account
145 Bool_t fBConstrain; // indicate seeding with vertex constrain
146 Int_t fLastPoint; // last cluster position
147 Int_t fFirstPoint; // first cluster position
148 Int_t fRemoval; // removal factor
149 Int_t fTrackType; // track type - 0 - normal - 1 - kink - 2 -V0 3- double found
150 Int_t fLab2; // index of corresponding track (kink, V0, double)
151 Int_t fNShared; // number of shared points
152 AliExternalTrackParam fReference; // track parameters at the middle of the chamber
153 Float_t fKinkPoint[12]; //radius, of kink, dfi and dtheta
154 Int_t fKinkIndexes[3]; // kink indexes - minus = mother + daughter
155 Int_t fV0Indexes[3]; // kink indexes - minus = mother + daughter
156
157 ClassDef(AliTPCtrack,2) // Time Projection Chamber reconstructed tracks
158};
159
160inline
161void AliTPCtrack::GetExternalParameters(Double_t& xr, Double_t x[5]) const {
162 // This function return external TPC track representation
163 xr=fX;
164 x[0]=GetY(); x[1]=GetZ(); x[2]=GetSnp(); x[3]=GetTgl(); x[4]=Get1Pt();
165}
166
167inline void AliTPCtrack::GetXYZ(Float_t r[3]) const {
168 //---------------------------------------------------------------------
169 // Returns the position of the track in the global coord. system
170 //---------------------------------------------------------------------
171 Double_t cs=TMath::Cos(fAlpha), sn=TMath::Sin(fAlpha);
172 r[0]=fX*cs - fP0*sn; r[1]=fX*sn + fP0*cs; r[2]=fP1;
173}
174
175
176#endif
177