]> git.uio.no Git - u/mrichter/AliRoot.git/blame - STEER/AliESDtrack.h
fix codding violation in AliTRDseedV1 class
[u/mrichter/AliRoot.git] / STEER / AliESDtrack.h
CommitLineData
ae982df3 1#ifndef ALIESDTRACK_H
2#define ALIESDTRACK_H
3/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
ac3faee4 6/* $Id$ */
7
ae982df3 8//-------------------------------------------------------------------------
9// Class AliESDtrack
15614b8b 10// This is the class to deal with during the physics analysis of data
ae982df3 11//
12// Origin: Iouri Belikov, CERN, Jouri.Belikov@cern.ch
13//-------------------------------------------------------------------------
23904d16 14/*****************************************************************************
15 * Use GetExternalParameters() and GetExternalCovariance() to access the *
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 azimuthal angle *
21 * external param3: tangent of the track momentum dip angle *
22 * external param4: 1/pt (1/(GeV/c)) *
31923a9f 23 * *
24 * The Get*Label() getters return the label of the associated MC particle. *
25 * The absolute value of this label is the index of the particle within the *
26 * MC stack. If the label is negative, this track was assigned a certain *
27 * number of clusters that did not in fact belong to this track. *
23904d16 28 *****************************************************************************/
ac3faee4 29
a866ac60 30#include <TBits.h>
c9ec41e8 31#include "AliExternalTrackParam.h"
4f6e22bd 32#include "AliVTrack.h"
304864ab 33#include "AliPID.h"
15e85efa 34#include "AliESDfriendTrack.h"
35
49edfa08 36class TParticle;
49d13e89 37class AliESDVertex;
95621324 38class AliESDEvent;
ae982df3 39class AliKalmanTrack;
98937d93 40class AliTrackPointArray;
0c19adf7 41class TPolyMarker3D;
ae982df3 42
c9ec41e8 43class AliESDtrack : public AliExternalTrackParam {
ae982df3 44public:
6984f7c1 45 enum {
46 kITSin=0x0001,kITSout=0x0002,kITSrefit=0x0004,kITSpid=0x0008,
47 kTPCin=0x0010,kTPCout=0x0020,kTPCrefit=0x0040,kTPCpid=0x0080,
48 kTRDin=0x0100,kTRDout=0x0200,kTRDrefit=0x0400,kTRDpid=0x0800,
49 kTOFin=0x1000,kTOFout=0x2000,kTOFrefit=0x4000,kTOFpid=0x8000,
d61ca12d 50 kHMPIDout=0x10000,kHMPIDpid=0x20000,
6984f7c1 51 kEMCALmatch=0x40000,
f1cedef3 52 kPHOSmatch=0x200000,
53 kTRDbackup =0x80000,
6984f7c1 54 kTRDStop=0x20000000,
55 kESDpid=0x40000000,
b5b2b4db 56 kTIME=0x80000000,
110317eb 57 kGlobalMerge=0x08000000,
1f9831ab 58 kITSpureSA=0x10000000,
4ace6760 59 kMultInV0=0x2000000, //BIT(25): assumed to be belong to V0 in multiplicity estimates
60 kMultSec=0x4000000 //BIT(26): assumed to be secondary (due to the DCA) in multiplicity estimates
6984f7c1 61 };
62 enum {
63 kTRDnPlanes = 6,
64 kEMCALNoMatch = -4096
65 };
ae982df3 66 AliESDtrack();
c4d11b15 67 AliESDtrack(const AliESDtrack& track);
4f6e22bd 68 AliESDtrack(const AliVTrack* track);
49edfa08 69 AliESDtrack(TParticle * part);
51ad6848 70 virtual ~AliESDtrack();
732a24fe 71 virtual void Copy(TObject &obj) const;
15e85efa 72 const AliESDfriendTrack *GetFriendTrack() const {return fFriendTrack;}
d75007f6 73 void SetFriendTrack(const AliESDfriendTrack *t) {
74 delete fFriendTrack; fFriendTrack=new AliESDfriendTrack(*t);
75 }
80799a5f 76 void ReleaseESDfriendTrack() { delete fFriendTrack; fFriendTrack=0; }
00dce61a 77 void AddCalibObject(TObject * object); // add calib object to the list
78 TObject * GetCalibObject(Int_t index); // return calib objct at given position
9559cbc4 79 void MakeMiniESDtrack();
51ad6848 80 void SetID(Int_t id) { fID =id;}
e1e6896f 81 Int_t GetID() const { return fID;}
6dc21f57 82 void SetVertexID(Char_t id) { fVertexID=id;}
83 Char_t GetVertexID() const { return fVertexID;}
ae982df3 84 void SetStatus(ULong_t flags) {fFlags|=flags;}
85 void ResetStatus(ULong_t flags) {fFlags&=~flags;}
15614b8b 86 Bool_t UpdateTrackParams(const AliKalmanTrack *t, ULong_t flags);
ae982df3 87 void SetIntegratedLength(Double_t l) {fTrackLength=l;}
88 void SetIntegratedTimes(const Double_t *times);
8c6a71ab 89 void SetESDpid(const Double_t *p);
90 void GetESDpid(Double_t *p) const;
67be2d29 91 virtual const Double_t *PID() const { return fR; }
4f6e22bd 92
15e85efa 93 Bool_t IsOn(Int_t mask) const {return (fFlags&mask)>0;}
ae982df3 94 ULong_t GetStatus() const {return fFlags;}
95 Int_t GetLabel() const {return fLabel;}
a33a2f3d 96 void SetLabel(Int_t label) {fLabel = label;}
c9ec41e8 97
ae982df3 98 void GetExternalParameters(Double_t &x, Double_t p[5]) const;
99 void GetExternalCovariance(Double_t cov[15]) const;
23904d16 100
ae982df3 101 Double_t GetIntegratedLength() const {return fTrackLength;}
102 void GetIntegratedTimes(Double_t *times) const;
4a78b8c5 103 Double_t GetMass() const;
6b5b49c9 104 Double_t M() const;
aad8d435 105 Double_t E() const;
106 Double_t Y() const;
c0b978f0 107
c9ec41e8 108 Bool_t GetConstrainedPxPyPz(Double_t *p) const {
109 if (!fCp) return kFALSE;
110 return fCp->GetPxPyPz(p);
111 }
112 Bool_t GetConstrainedXYZ(Double_t *r) const {
113 if (!fCp) return kFALSE;
114 return fCp->GetXYZ(r);
115 }
6c4ef2ed 116 const AliExternalTrackParam *GetConstrainedParam() const {return fCp;}
c0b978f0 117 Bool_t GetConstrainedExternalParameters
118 (Double_t &alpha, Double_t &x, Double_t p[5]) const;
119 Bool_t GetConstrainedExternalCovariance(Double_t cov[15]) const;
c9ec41e8 120 Double_t GetConstrainedChi2() const {return fCchi2;}
4aeb9470 121 //
b9ca886f 122
b5b2b4db 123 // global track chi2
124 void SetGlobalChi2(Double_t chi2) {fGlobalChi2 = chi2;}
125 Double_t GetGlobalChi2() const {return fGlobalChi2;}
67c3dcbe 126
c9ec41e8 127 Bool_t GetInnerPxPyPz(Double_t *p) const {
128 if (!fIp) return kFALSE;
129 return fIp->GetPxPyPz(p);
130 }
1d303a24 131 const AliExternalTrackParam * GetInnerParam() const { return fIp;}
4aeb9470 132 const AliExternalTrackParam * GetTPCInnerParam() const {return fTPCInner;}
f12d42ce 133 Bool_t FillTPCOnlyTrack(AliESDtrack &track);
c9ec41e8 134 Bool_t GetInnerXYZ(Double_t *r) const {
135 if (!fIp) return kFALSE;
136 return fIp->GetXYZ(r);
137 }
c0b978f0 138 Bool_t GetInnerExternalParameters
139 (Double_t &alpha, Double_t &x, Double_t p[5]) const;
140 Bool_t GetInnerExternalCovariance(Double_t cov[15]) const;
98937d93 141
d61ca12d 142 void SetOuterParam(const AliExternalTrackParam *p, ULong_t flags);
143
c38d443f 144 void SetOuterHmpParam(const AliExternalTrackParam *p, ULong_t flags);
145
1d303a24 146 const AliExternalTrackParam * GetOuterParam() const { return fOp;}
c38d443f 147
148 const AliExternalTrackParam * GetOuterHmpParam() const { return fHMPIDp;}
149
c0b978f0 150 Bool_t GetOuterPxPyPz(Double_t *p) const {
151 if (!fOp) return kFALSE;
152 return fOp->GetPxPyPz(p);
153 }
c38d443f 154 Bool_t GetOuterHmpPxPyPz(Double_t *p) const {
155 if (!fHMPIDp) return kFALSE;
156 return fHMPIDp->GetPxPyPz(p);
157 }
158
c0b978f0 159 Bool_t GetOuterXYZ(Double_t *r) const {
160 if (!fOp) return kFALSE;
161 return fOp->GetXYZ(r);
c9ec41e8 162 }
c38d443f 163 Bool_t GetOuterHmpXYZ(Double_t *r) const {
164 if (!fHMPIDp) return kFALSE;
165 return fHMPIDp->GetXYZ(r);
166 }
167
c0b978f0 168 Bool_t GetOuterExternalParameters
169 (Double_t &alpha, Double_t &x, Double_t p[5]) const;
170 Bool_t GetOuterExternalCovariance(Double_t cov[15]) const;
171
c38d443f 172 Bool_t GetOuterHmpExternalParameters
173 (Double_t &alpha, Double_t &x, Double_t p[5]) const;
174 Bool_t GetOuterHmpExternalCovariance(Double_t cov[15]) const;
c9ec41e8 175
c38d443f 176
98937d93 177 Int_t GetNcls(Int_t idet) const;
ef7253ac 178 Int_t GetClusters(Int_t idet, Int_t *idx) const;
98937d93 179
15e85efa 180 void SetITSpid(const Double_t *p);
181 void GetITSpid(Double_t *p) const;
1d4882da 182
562dd0b4 183 Double_t GetITSsignal() const {return fITSsignal;}
1d4882da 184 void SetITSdEdxSamples(const Double_t s[4]);
185 void GetITSdEdxSamples(Double_t *s) const;
186
562dd0b4 187 Double_t GetITSchi2() const {return fITSchi2;}
188 Char_t GetITSclusters(Int_t *idx) const;
62665e7f 189 UChar_t GetITSClusterMap() const {return fITSClusterMap;}
89f1b176 190 void SetITSModuleIndex(Int_t ilayer,Int_t idx) {fITSModule[ilayer]=idx;}
191 Int_t GetITSModuleIndex(Int_t ilayer) const {return fITSModule[ilayer];}
192 Bool_t GetITSModuleIndexInfo(Int_t ilayer,Int_t &idet,Int_t &status,
193 Float_t &xloc,Float_t &zloc) const;
15e85efa 194 Int_t GetITSLabel() const {return fITSLabel;}
15e85efa 195 void SetITStrack(AliKalmanTrack * track){
196 fFriendTrack->SetITStrack(track);
197 }
198 AliKalmanTrack *GetITStrack(){
199 return fFriendTrack->GetITStrack();
200 }
6807ec41 201 Bool_t HasPointOnITSLayer(Int_t i) const {return TESTBIT(fITSClusterMap,i);}
15e85efa 202
203 void SetTPCpid(const Double_t *p);
204 void GetTPCpid(Double_t *p) const;
205 void SetTPCPoints(Float_t points[4]){
206 for (Int_t i=0;i<4;i++) fTPCPoints[i]=points[i];
207 }
208 void SetTPCPointsF(UChar_t findable){fTPCnclsF = findable;}
949840f6 209 void SetTPCPointsFIter1(UChar_t findable){fTPCnclsFIter1 = findable;}
562dd0b4 210 UShort_t GetTPCNcls() const { return fTPCncls;}
211 UShort_t GetTPCNclsF() const { return fTPCnclsF;}
949840f6 212 UShort_t GetTPCNclsIter1() const { return fTPCnclsIter1;}
213 UShort_t GetTPCNclsFIter1() const { return fTPCnclsFIter1;}
214 UShort_t GetTPCnclsS(Int_t i0=0,Int_t i1=159) const;
562dd0b4 215 Double_t GetTPCPoints(Int_t i) const {return fTPCPoints[i];}
15e85efa 216 void SetKinkIndexes(Int_t points[3]) {
217 for (Int_t i=0;i<3;i++) fKinkIndexes[i] = points[i];
218 }
219 void SetV0Indexes(Int_t points[3]) {
220 for (Int_t i=0;i<3;i++) fV0Indexes[i] = points[i];
221 }
222 void SetTPCsignal(Float_t signal, Float_t sigma, UChar_t npoints){
223 fTPCsignal = signal; fTPCsignalS = sigma; fTPCsignalN = npoints;
224 }
562dd0b4 225 Double_t GetTPCsignal() const {return fTPCsignal;}
226 Double_t GetTPCsignalSigma() const {return fTPCsignalS;}
0eba927a 227 UShort_t GetTPCsignalN() const {return fTPCsignalN;}
562dd0b4 228 Double_t GetTPCchi2() const {return fTPCchi2;}
949840f6 229 Double_t GetTPCchi2Iter1() const {return fTPCchi2Iter1;}
562dd0b4 230 UShort_t GetTPCclusters(Int_t *idx) const;
231 Double_t GetTPCdensity(Int_t row0, Int_t row1) const;
15e85efa 232 Int_t GetTPCLabel() const {return fTPCLabel;}
233 Int_t GetKinkIndex(Int_t i) const { return fKinkIndexes[i];}
234 Int_t GetV0Index(Int_t i) const { return fV0Indexes[i];}
3a83c716 235 const TBits& GetTPCClusterMap() const {return fTPCClusterMap;}
eb7f6854 236 const TBits& GetTPCSharedMap() const {return fTPCSharedMap;}
237 void SetTPCClusterMap(const TBits amap) {fTPCClusterMap = amap;}
238 void SetTPCSharedMap(const TBits amap) {fTPCSharedMap = amap;}
6984f7c1 239
15e85efa 240 void SetTRDpid(const Double_t *p);
c5be26b7 241
242// A.Bercuci
ed15ef4f 243 void SetTRDntracklets(UChar_t q){fTRDntracklets = q;}
778a6a17 244 UChar_t GetTRDntracklets() const {return (fTRDntracklets>>3)&7;}
245 UChar_t GetTRDntrackletsPID() const {return fTRDntracklets&7;}
246 // TEMPORARY alias asked by the HFE group to allow
247 // reading of the v4-16-Release data with TRUNK related software (A.Bercuci@Apr 30th 09)
248 UChar_t GetTRDpidQuality() const {return GetTRDntrackletsPID();}
c5be26b7 249// end A.Bercuci
6984f7c1 250
251 void SetNumberOfTRDslices(Int_t n);
fae4c212 252 Int_t GetNumberOfTRDslices() const;
6984f7c1 253 void SetTRDslice(Double_t q, Int_t plane, Int_t slice);
fae4c212 254 void SetTRDmomentum(Double_t p, Int_t plane, Double_t *sp=0x0);
6984f7c1 255 Double_t GetTRDslice(Int_t plane, Int_t slice=-1) const;
fae4c212 256 Double_t GetTRDmomentum(Int_t plane, Double_t *sp=0x0) const;
c5be26b7 257
6984f7c1 258 void SetTRDQuality(Float_t quality){fTRDQuality=quality;}
562dd0b4 259 Double_t GetTRDQuality()const {return fTRDQuality;}
15e85efa 260 void SetTRDBudget(Float_t budget){fTRDBudget=budget;}
562dd0b4 261 Double_t GetTRDBudget()const {return fTRDBudget;}
6984f7c1 262
15e85efa 263 void SetTRDTimBin(Int_t timbin, Int_t i) {fTRDTimBin[i]=timbin;}
264 void GetTRDpid(Double_t *p) const;
562dd0b4 265 Double_t GetTRDsignal() const {return fTRDsignal;}
6984f7c1 266
562dd0b4 267 Char_t GetTRDTimBin(Int_t i) const {return fTRDTimBin[i];}
268 Double_t GetTRDchi2() const {return fTRDchi2;}
269 UChar_t GetTRDclusters(Int_t *idx) const;
7911b1b1 270 UChar_t GetTRDncls() const {return fTRDncls;}
271 UChar_t GetTRDncls0() const {return fTRDncls0;}
5bc3e158 272 UChar_t GetTRDtracklets(Int_t *idx) const;
79e94bf8 273 void SetTRDpid(Int_t iSpecies, Float_t p);
562dd0b4 274 Double_t GetTRDpid(Int_t iSpecies) const;
15e85efa 275 Int_t GetTRDLabel() const {return fTRDLabel;}
c9ec41e8 276
15e85efa 277 void SetTRDtrack(AliKalmanTrack * track){
278 fFriendTrack->SetTRDtrack(track);
279 }
280 AliKalmanTrack *GetTRDtrack(){
281 return fFriendTrack->GetTRDtrack();
282 }
c9ec41e8 283
15e85efa 284 void SetTOFsignal(Double_t tof) {fTOFsignal=tof;}
562dd0b4 285 Double_t GetTOFsignal() const {return fTOFsignal;}
15e85efa 286 void SetTOFsignalToT(Double_t ToT) {fTOFsignalToT=ToT;}
562dd0b4 287 Double_t GetTOFsignalToT() const {return fTOFsignalToT;}
d321691a 288 void SetTOFsignalRaw(Double_t tof) {fTOFsignalRaw=tof;}
562dd0b4 289 Double_t GetTOFsignalRaw() const {return fTOFsignalRaw;}
d321691a 290 void SetTOFsignalDz(Double_t dz) {fTOFsignalDz=dz;}
562dd0b4 291 Double_t GetTOFsignalDz() const {return fTOFsignalDz;}
a5d9ff0f 292 void SetTOFsignalDx(Double_t dx) {fTOFsignalDx=dx;}
293 Double_t GetTOFsignalDx() const {return fTOFsignalDx;}
d86081b1 294 void SetTOFDeltaBC(Short_t deltaBC) {fTOFdeltaBC=deltaBC;};
295 Short_t GetTOFDeltaBC() const {return fTOFdeltaBC;}
296 void SetTOFL0L1(Short_t l0l1) {fTOFl0l1=l0l1;};
297 Short_t GetTOFL0L1() const {return fTOFl0l1;}
562dd0b4 298 Double_t GetTOFchi2() const {return fTOFchi2;}
c630aafd 299 void SetTOFpid(const Double_t *p);
51ad6848 300 void SetTOFLabel(const Int_t *p);
c630aafd 301 void GetTOFpid(Double_t *p) const;
51ad6848 302 void GetTOFLabel(Int_t *p) const;
303 void GetTOFInfo(Float_t *info) const;
304 void SetTOFInfo(Float_t *info);
85324138 305 Int_t GetTOFCalChannel() const {return fTOFCalChannel;}
15e85efa 306 Int_t GetTOFcluster() const {return fTOFindex;}
307 void SetTOFcluster(Int_t index) {fTOFindex=index;}
308 void SetTOFCalChannel(Int_t index) {fTOFCalChannel=index;}
b67517ef 309
f4b3bbb7 310// HMPID methodes +++++++++++++++++++++++++++++++++ (kir)
311 void SetHMPIDsignal(Double_t theta) {fHMPIDsignal=theta;}
562dd0b4 312 Double_t GetHMPIDsignal() const {return fHMPIDsignal;}
f4b3bbb7 313 void SetHMPIDpid(const Double_t *p);
314 void GetHMPIDpid(Double_t *p) const;
315 void SetHMPIDchi2(Double_t chi2) {fHMPIDchi2=chi2;}
562dd0b4 316 Double_t GetHMPIDchi2() const {return fHMPIDchi2;}
f4b3bbb7 317 void SetHMPIDcluIdx(Int_t ch,Int_t idx) {fHMPIDcluIdx=ch*1000000+idx;}
318 Int_t GetHMPIDcluIdx() const {return fHMPIDcluIdx;}
319 void SetHMPIDtrk(Float_t x, Float_t y, Float_t th, Float_t ph) {
320 fHMPIDtrkX=x; fHMPIDtrkY=y; fHMPIDtrkTheta=th; fHMPIDtrkPhi=ph;
15e85efa 321 }
f4b3bbb7 322 void GetHMPIDtrk(Float_t &x, Float_t &y, Float_t &th, Float_t &ph) const {
323 x=fHMPIDtrkX; y=fHMPIDtrkY; th=fHMPIDtrkTheta; ph=fHMPIDtrkPhi;
15e85efa 324 }
f4b3bbb7 325 void SetHMPIDmip(Float_t x, Float_t y, Int_t q, Int_t nph=0) {
c7e57bfb 326 fHMPIDmipX=x; fHMPIDmipY=y; fHMPIDqn=1000000*nph+q;
15e85efa 327 }
f4b3bbb7 328 void GetHMPIDmip(Float_t &x,Float_t &y,Int_t &q,Int_t &nph) const {
c7e57bfb 329 x=fHMPIDmipX; y=fHMPIDmipY; q=fHMPIDqn%1000000; nph=fHMPIDqn/1000000;
15e85efa 330 }
f4b3bbb7 331 Bool_t IsHMPID() const {return fFlags&kHMPIDpid;}
110317eb 332 Bool_t IsPureITSStandalone() const {return fFlags&kITSpureSA;}
4ace6760 333 Bool_t IsMultPrimary() const {return !(fFlags&kMultSec);}
334 Bool_t IsMultSecondary() const {return (fFlags&kMultSec);}
b67517ef 335
f1cedef3 336 Int_t GetEMCALcluster() {return fCaloIndex;}
337 void SetEMCALcluster(Int_t index) {fCaloIndex=index;}
2e1dcd14 338 Bool_t IsEMCAL() const {return fFlags&kEMCALmatch;}
ac2f7574 339
f1cedef3 340 Int_t GetPHOScluster() {return fCaloIndex;}
341 void SetPHOScluster(Int_t index) {fCaloIndex=index;}
342 Bool_t IsPHOS() const {return fFlags&kPHOSmatch;}
343 Double_t GetPHOSdx()const{return fCaloDx ;}
344 Double_t GetPHOSdz()const{return fCaloDz ;}
345 void SetPHOSdxdz(Double_t dx, Double_t dz){fCaloDx=dx,fCaloDz=dz;}
346
347
cf0f66c2 348 void SetTrackPointArray(AliTrackPointArray *points) {
349 fFriendTrack->SetTrackPointArray(points);
350 }
351 const AliTrackPointArray *GetTrackPointArray() const {
352 return fFriendTrack->GetTrackPointArray();
353 }
436dfe39 354 Bool_t RelateToVertexTPC(const AliESDVertex *vtx, Double_t b, Double_t maxd,
355 AliExternalTrackParam *cParam=0);
266a0f9b 356 Bool_t
357 RelateToVertexTPCBxByBz(const AliESDVertex *vtx, Double_t b[3],Double_t maxd,
358 AliExternalTrackParam *cParam=0);
d7ddf1e9 359 void GetImpactParametersTPC(Float_t &xy,Float_t &z) const {xy=fdTPC; z=fzTPC;}
360 void GetImpactParametersTPC(Float_t p[2], Float_t cov[3]) const {
361 p[0]=fdTPC; p[1]=fzTPC; cov[0]=fCddTPC; cov[1]=fCdzTPC; cov[2]=fCzzTPC;
362 }
436dfe39 363 Double_t GetConstrainedChi2TPC() const {return fCchi2TPC;}
364
365 Bool_t RelateToVertex(const AliESDVertex *vtx, Double_t b, Double_t maxd,
366 AliExternalTrackParam *cParam=0);
266a0f9b 367 Bool_t
368 RelateToVertexBxByBz(const AliESDVertex *vtx, Double_t b[3], Double_t maxd,
369 AliExternalTrackParam *cParam=0);
49d13e89 370 void GetImpactParameters(Float_t &xy,Float_t &z) const {xy=fD; z=fZ;}
371 void GetImpactParameters(Float_t p[2], Float_t cov[3]) const {
372 p[0]=fD; p[1]=fZ; cov[0]=fCdd; cov[1]=fCdz; cov[2]=fCzz;
373 }
95621324 374 virtual void Print(Option_t * opt) const ;
375 AliESDEvent* GetESDEvent() const {return fESDEvent;}
376 void SetESDEvent(AliESDEvent* evt) {fESDEvent = evt;}
0c19adf7 377 //
378 // visualization (M. Ivanov)
379 //
380 void FillPolymarker(TPolyMarker3D *pol, Float_t magf, Float_t minR, Float_t maxR, Float_t stepR);
ac2f7574 381
ae982df3 382protected:
90e48c0c 383
562dd0b4 384 AliExternalTrackParam *fCp; // Track parameters constrained to the primary vertex
a2f61bd7 385 AliExternalTrackParam *fIp; // Track parameters estimated at the inner wall of TPC
386 AliExternalTrackParam *fTPCInner; // Track parameters estimated at the inner wall of TPC using the TPC stand-alone
387 AliExternalTrackParam *fOp; // Track parameters estimated at the point of maximal radial coordinate reached during the tracking
c38d443f 388 AliExternalTrackParam *fHMPIDp; // Track parameters at HMPID
562dd0b4 389 AliESDfriendTrack *fFriendTrack; //! All the complementary information
90e48c0c 390
562dd0b4 391 TBits fTPCClusterMap; // Map of clusters, one bit per padrow; 1 if has a cluster on given padrow
392 TBits fTPCSharedMap; // Map of clusters, one bit per padrow; 1 if has a shared cluster on given padrow
ae982df3 393
ae982df3 394
e1e6896f 395
562dd0b4 396 ULong_t fFlags; // Reconstruction status flags
397 Int_t fID; // Unique ID of the track
398 Int_t fLabel; // Track label
89f1b176 399 Int_t fITSLabel; // label according ITS
400 Int_t fITSModule[12]; // modules crossed by the track in the ITS
562dd0b4 401 Int_t fTPCLabel; // label according TPC
402 Int_t fTRDLabel; // label according TRD
403 Int_t fTOFLabel[3]; // TOF label
404 Int_t fTOFCalChannel; // Channel Index of the TOF Signal
405 Int_t fTOFindex; // index of the assigned TOF cluster
c7e57bfb 406 Int_t fHMPIDqn; // 1000000*number of photon clusters + QDC
562dd0b4 407 Int_t fHMPIDcluIdx; // 1000000*chamber id + cluster idx of the assigned MIP cluster
f1cedef3 408 Int_t fCaloIndex; // index of associated EMCAL/PHOS cluster (AliESDCaloCluster)
67c3dcbe 409
23904d16 410
562dd0b4 411 Int_t fKinkIndexes[3]; // array of indexes of posible kink candidates
412 Int_t fV0Indexes[3]; // array of indexes of posible kink candidates
e1e6896f 413
7368c5cc 414 Double32_t fR[AliPID::kSPECIES]; //[0.,0.,8] combined "detector response probability"
415 Double32_t fITSr[AliPID::kSPECIES]; //[0.,0.,8] "detector response probabilities" (for the PID)
416 Double32_t fTPCr[AliPID::kSPECIES]; //[0.,0.,8] "detector response probabilities" (for the PID)
417 Double32_t fTRDr[AliPID::kSPECIES]; //[0.,0.,8] "detector response probabilities" (for the PID)
418 Double32_t fTOFr[AliPID::kSPECIES]; //[0.,0.,8] "detector response probabilities" (for the PID)
419 Double32_t fHMPIDr[AliPID::kSPECIES];//[0.,0.,8] "detector response probabilities" (for the PID)
562dd0b4 420
421 Double32_t fHMPIDtrkTheta;//[-2*pi,2*pi,16] theta of the track extrapolated to the HMPID, LORS
422 // how much of this is needed?
423 Double32_t fHMPIDtrkPhi; //[-2*pi,2*pi,16] phi of the track extrapolated to the HMPID, LORS
424 Double32_t fHMPIDsignal; // HMPID PID signal (Theta ckov, rad)
425
426 Double32_t fTrackTime[AliPID::kSPECIES]; // TOFs estimated by the tracking
427 Double32_t fTrackLength; // Track length
436dfe39 428
d7ddf1e9 429 Double32_t fdTPC; // TPC-only impact parameter in XY plane
430 Double32_t fzTPC; // TPC-only impact parameter in Z
431 Double32_t fCddTPC,fCdzTPC,fCzzTPC; // Covariance matrix of the TPC-only impact parameters
436dfe39 432 Double32_t fCchi2TPC; // [0.,0.,8] TPC-only chi2 at the primary vertex
433
562dd0b4 434 Double32_t fD; // Impact parameter in XY plane
435 Double32_t fZ; // Impact parameter in Z
436 Double32_t fCdd,fCdz,fCzz; // Covariance matrix of the impact parameters
7368c5cc 437 Double32_t fCchi2; // [0.,0.,8] chi2 at the primary vertex
436dfe39 438
7368c5cc 439 Double32_t fITSchi2; // [0.,0.,8] chi2 in the ITS
440 Double32_t fTPCchi2; // [0.,0.,8] chi2 in the TPC
949840f6 441 Double32_t fTPCchi2Iter1; // [0.,0.,8] chi2 in the TPC
7368c5cc 442 Double32_t fTRDchi2; // [0.,0.,8] chi2 in the TRD
443 Double32_t fTOFchi2; // [0.,0.,8] chi2 in the TOF
444 Double32_t fHMPIDchi2; // [0.,0.,8] chi2 in the HMPID
ae982df3 445
b5b2b4db 446 Double32_t fGlobalChi2; // [0.,0.,8] chi2 of the global track
15e85efa 447
7368c5cc 448 Double32_t fITSsignal; // [0.,0.,10] detector's PID signal
1d4882da 449 Double32_t fITSdEdxSamples[4]; // [0.,0.,10] ITS dE/dx samples
450
7368c5cc 451 Double32_t fTPCsignal; // [0.,0.,10] detector's PID signal
452 Double32_t fTPCsignalS; // [0.,0.,10] RMS of dEdx measurement
453 Double32_t fTPCPoints[4]; // [0.,0.,10] TPC points -first, max. dens, last and max density
562dd0b4 454
455 Double32_t fTRDsignal; // detector's PID signal
562dd0b4 456 Double32_t fTRDQuality; // trd quality factor for TOF
457 Double32_t fTRDBudget; // trd material budget
458
459 Double32_t fTOFsignal; // detector's PID signal
460 Double32_t fTOFsignalToT; // detector's ToT signal
461 Double32_t fTOFsignalRaw; // detector's uncorrected time signal
462 Double32_t fTOFsignalDz; // local z of track's impact on the TOF pad
a5d9ff0f 463 Double32_t fTOFsignalDx; // local x of track's impact on the TOF pad
562dd0b4 464 Double32_t fTOFInfo[10]; //! TOF informations
d86081b1 465 Short_t fTOFdeltaBC; // detector's Delta Bunch Crossing correction
466 Short_t fTOFl0l1; // detector's L0L1 latency correction
562dd0b4 467
f1cedef3 468 Double32_t fCaloDx ; // [0.,0.,8] distance to calorimeter cluster in calo plain (phi direction)
469 Double32_t fCaloDz ; // [0.,0.,8] distance to calorimeter cluster in calo plain (z direction)
470
562dd0b4 471 Double32_t fHMPIDtrkX; // x of the track impact, LORS
472 Double32_t fHMPIDtrkY; // y of the track impact, LORS
473 Double32_t fHMPIDmipX; // x of the MIP in LORS
474 Double32_t fHMPIDmipY; // y of the MIP in LORS
475
476
562dd0b4 477 UShort_t fTPCncls; // number of clusters assigned in the TPC
e1d4c1b5 478 UShort_t fTPCnclsF; // number of findable clusters in the TPC
15e85efa 479 UShort_t fTPCsignalN; // number of points used for dEdx
949840f6 480 UShort_t fTPCnclsIter1; // number of clusters assigned in the TPC - iteration 1
481 UShort_t fTPCnclsFIter1; // number of findable clusters in the TPC - iteration 1
562dd0b4 482
483 Char_t fITSncls; // number of clusters assigned in the ITS
89f1b176 484 UChar_t fITSClusterMap; // map of clusters, one bit per a layer
c5be26b7 485 UChar_t fTRDncls; // number of clusters assigned in the TRD
486 UChar_t fTRDncls0; // number of clusters assigned in the TRD before first material cross
ed15ef4f 487 UChar_t fTRDntracklets; // number of TRD tracklets used for tracking/PID
6984f7c1 488
a462baa3 489 Int_t fTRDnSlices; // number of slices used for PID in the TRD
6984f7c1 490 Double32_t *fTRDslices; //[fTRDnSlices]
491
492 Char_t fTRDTimBin[kTRDnPlanes]; // Time bin of Max cluster from all six planes
6dc21f57 493 Char_t fVertexID; // ID of the primary vertex this track belongs to
95621324 494 AliESDEvent* fESDEvent; //!Pointer back to event to which the track belongs
495
e1e6896f 496 private:
497
732a24fe 498 AliESDtrack & operator=(const AliESDtrack & );
d86081b1 499 ClassDef(AliESDtrack,57) //ESDtrack
ae982df3 500};
501
fae4c212 502
503
ae982df3 504#endif
505