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d9950a5a 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16/* $Id$ */
17
203967fc 18#include "AliLog.h"
eb38ed55 19#include "AliESDtrack.h"
41880fac 20#include "AliTracker.h"
eb38ed55 21
d9950a5a 22#include "AliTRDtrackV1.h"
23#include "AliTRDcluster.h"
24#include "AliTRDcalibDB.h"
3afdab72 25#include "AliTRDReconstructor.h"
d9950a5a 26#include "AliTRDrecoParam.h"
27
d9950a5a 28ClassImp(AliTRDtrackV1)
29
0906e73e 30///////////////////////////////////////////////////////////////////////////////
31// //
32// Represents a reconstructed TRD track //
33// Local TRD Kalman track //
34// //
35// Authors: //
36// Alex Bercuci <A.Bercuci@gsi.de> //
37// Markus Fasel <M.Fasel@gsi.de> //
38// //
39///////////////////////////////////////////////////////////////////////////////
d9950a5a 40
41//_______________________________________________________________
3b57a3f7 42AliTRDtrackV1::AliTRDtrackV1() : AliKalmanTrack()
eb2b4f91 43 ,fStatus(0)
352cef8f 44 ,fESDid(0)
3b57a3f7 45 ,fDE(0.)
4d6aee34 46 ,fkReconstructor(NULL)
47 ,fBackupTrack(NULL)
48 ,fTrackLow(NULL)
49 ,fTrackHigh(NULL)
0906e73e 50{
d9950a5a 51 //
52 // Default constructor
53 //
6e49cfdb 54 //printf("AliTRDtrackV1::AliTRDtrackV1()\n");
e44586fb 55
3b57a3f7 56 for(int i =0; i<3; i++) fBudget[i] = 0.;
57
58 Float_t pid = 1./AliPID::kSPECIES;
59 for(int is =0; is<AliPID::kSPECIES; is++) fPID[is] = pid;
60
61 for(int ip=0; ip<kNplane; ip++){
17896e82 62 fTrackletIndex[ip] = -1;
4d6aee34 63 fTracklet[ip] = NULL;
3b57a3f7 64 }
d9950a5a 65}
66
67//_______________________________________________________________
3b57a3f7 68AliTRDtrackV1::AliTRDtrackV1(const AliTRDtrackV1 &ref) : AliKalmanTrack(ref)
eb2b4f91 69 ,fStatus(ref.fStatus)
352cef8f 70 ,fESDid(ref.fESDid)
3b57a3f7 71 ,fDE(ref.fDE)
4d6aee34 72 ,fkReconstructor(ref.fkReconstructor)
73 ,fBackupTrack(NULL)
74 ,fTrackLow(NULL)
75 ,fTrackHigh(NULL)
d9950a5a 76{
77 //
3b57a3f7 78 // Copy constructor
d9950a5a 79 //
80
6e49cfdb 81 //printf("AliTRDtrackV1::AliTRDtrackV1(const AliTRDtrackV1 &)\n");
29b87567 82 SetBit(kOwner, kFALSE);
3b57a3f7 83 for(int ip=0; ip<kNplane; ip++){
84 fTrackletIndex[ip] = ref.fTrackletIndex[ip];
85 fTracklet[ip] = ref.fTracklet[ip];
86 }
e3cf3d02 87 if(ref.fTrackLow) fTrackLow = new AliExternalTrackParam(*ref.fTrackLow);
88 if(ref.fTrackHigh) fTrackHigh = new AliExternalTrackParam(*ref.fTrackHigh);
89
3b57a3f7 90 for (Int_t i = 0; i < 3;i++) fBudget[i] = ref.fBudget[i];
91
92 for(Int_t is = 0; is<AliPID::kSPECIES; is++) fPID[is] = ref.fPID[is];
93
94 AliKalmanTrack::SetNumberOfClusters(ref.GetNumberOfClusters());
d9950a5a 95}
96
97//_______________________________________________________________
3b57a3f7 98AliTRDtrackV1::AliTRDtrackV1(const AliESDtrack &t) : AliKalmanTrack()
eb2b4f91 99 ,fStatus(0)
352cef8f 100 ,fESDid(0)
3b57a3f7 101 ,fDE(0.)
4d6aee34 102 ,fkReconstructor(NULL)
103 ,fBackupTrack(NULL)
104 ,fTrackLow(NULL)
105 ,fTrackHigh(NULL)
d9950a5a 106{
107 //
3b57a3f7 108 // Constructor from AliESDtrack
d9950a5a 109 //
110
352cef8f 111 SetESDid(t.GetID());
3b57a3f7 112 SetLabel(t.GetLabel());
113 SetChi2(0.0);
0b433f72 114
115 SetMass(t.GetMass()/*0.000510*/);
3b57a3f7 116 AliKalmanTrack::SetNumberOfClusters(t.GetTRDncls());
17896e82 117 Int_t ti[]={-1, -1, -1, -1, -1, -1}; t.GetTRDtracklets(&ti[0]);
3b57a3f7 118 for(int ip=0; ip<kNplane; ip++){
17896e82 119 fTrackletIndex[ip] = ti[ip];
4d6aee34 120 fTracklet[ip] = NULL;
3b57a3f7 121 }
122 for(int i =0; i<3; i++) fBudget[i] = 0.;
123
124 Float_t pid = 1./AliPID::kSPECIES;
125 for(int is =0; is<AliPID::kSPECIES; is++) fPID[is] = pid;
126
127 const AliExternalTrackParam *par = &t;
128 if (t.GetStatus() & AliESDtrack::kTRDbackup) {
129 par = t.GetOuterParam();
130 if (!par) {
131 AliError("No backup info!");
132 par = &t;
133 }
134 }
135 Set(par->GetX()
136 ,par->GetAlpha()
137 ,par->GetParameter()
138 ,par->GetCovariance());
139
140 if(t.GetStatus() & AliESDtrack::kTIME) {
141 StartTimeIntegral();
142 Double_t times[10];
143 t.GetIntegratedTimes(times);
144 SetIntegratedTimes(times);
145 SetIntegratedLength(t.GetIntegratedLength());
146 }
d9950a5a 147}
148
d9950a5a 149//_______________________________________________________________
e17f4785 150AliTRDtrackV1::AliTRDtrackV1(AliTRDseedV1 * const trklts, const Double_t p[5], const Double_t cov[15]
3b57a3f7 151 , Double_t x, Double_t alpha) : AliKalmanTrack()
eb2b4f91 152 ,fStatus(0)
352cef8f 153 ,fESDid(0)
3b57a3f7 154 ,fDE(0.)
4d6aee34 155 ,fkReconstructor(NULL)
156 ,fBackupTrack(NULL)
157 ,fTrackLow(NULL)
158 ,fTrackHigh(NULL)
d9950a5a 159{
0906e73e 160 //
161 // The stand alone tracking constructor
162 // TEMPORARY !!!!!!!!!!!
163 // to check :
164 // 1. covariance matrix
165 // 2. dQdl calculation
166 //
d9950a5a 167
68f9b6bd 168 Double_t b(GetBz());
169 Double_t cnv = (TMath::Abs(b) < 1.e-5) ? 1.e5 : 1./GetBz()/kB2C;
170
d9950a5a 171 Double_t pp[5] = { p[0]
68f9b6bd 172 , p[1]
173 , p[2]
174 , p[3]
175 , p[4]*cnv };
176
d9950a5a 177 Double_t c22 = x*x*cov[14] - 2*x*cov[12] + cov[ 5];
178 Double_t c32 = x*cov[13] - cov[ 8];
179 Double_t c20 = x*cov[10] - cov[ 3];
180 Double_t c21 = x*cov[11] - cov[ 4];
181 Double_t c42 = x*cov[14] - cov[12];
68f9b6bd 182
d9950a5a 183 Double_t cc[15] = { cov[ 0]
184 , cov[ 1], cov[ 2]
185 , c20, c21, c22
186 , cov[ 6], cov[ 7], c32, cov[ 9]
187 , cov[10]*cnv, cov[11]*cnv, c42*cnv, cov[13]*cnv, cov[14]*cnv*cnv };
68f9b6bd 188
ae3fbe1f 189 Double_t mostProbablePt=AliExternalTrackParam::GetMostProbablePt();
190 Double_t p0=TMath::Sign(1/mostProbablePt,pp[4]);
191 Double_t w0=cc[14]/(cc[14] + p0*p0), w1=p0*p0/(cc[14] + p0*p0);
68f9b6bd 192 AliDebug(3, Form("Pt mixing : w0[%4.2f] pt0[%5.3f] w1[%4.2f] pt[%5.3f]", w0, 1./p0, w1, 1./pp[4]));
193
ae3fbe1f 194 pp[4] = w0*p0 + w1*pp[4];
195 cc[10]*=w1; cc[11]*=w1; cc[12]*=w1; cc[13]*=w1; cc[14]*=w1;
68f9b6bd 196 Set(x,alpha,pp,cc);
0217fcd0 197 AliDebug(2, Form("Init @ x[%6.2f] pt[%5.3f]", x, 1./pp[4]));
41702fec 198 Int_t ncls = 0;
68f9b6bd 199 for(int iplane=0; iplane<kNplane; iplane++){
17896e82 200 fTrackletIndex[iplane] = -1;
68f9b6bd 201 if(!trklts[iplane].IsOK()) fTracklet[iplane] = NULL;
41702fec 202 else{
e17f4785 203 fTracklet[iplane] = &trklts[iplane];
41702fec 204 ncls += fTracklet[iplane]->GetN();
205 }
68f9b6bd 206 }
41702fec 207 AliKalmanTrack::SetNumberOfClusters(ncls);
208 for(int i =0; i<3; i++) fBudget[i] = 0.;
209
210 Float_t pid = 1./AliPID::kSPECIES;
211 for(int is =0; is<AliPID::kSPECIES; is++) fPID[is] = pid;
d9950a5a 212}
213
bb56afff 214//_______________________________________________________________
3b57a3f7 215AliTRDtrackV1::~AliTRDtrackV1()
bb56afff 216{
e44586fb 217 //AliInfo("");
6e49cfdb 218 //printf("I-AliTRDtrackV1::~AliTRDtrackV1() : Owner[%s]\n", TestBit(kOwner)?"YES":"NO");
76b60503 219
4d6aee34 220 if(fBackupTrack) delete fBackupTrack; fBackupTrack = NULL;
e3cf3d02 221
4d6aee34 222 if(fTrackLow) delete fTrackLow; fTrackLow = NULL;
223 if(fTrackHigh) delete fTrackHigh; fTrackHigh = NULL;
bb56afff 224
76b60503 225 for(Int_t ip=0; ip<kNplane; ip++){
226 if(TestBit(kOwner) && fTracklet[ip]) delete fTracklet[ip];
4d6aee34 227 fTracklet[ip] = NULL;
17896e82 228 fTrackletIndex[ip] = -1;
3b57a3f7 229 }
230}
231
e08a5492 232//_______________________________________________________________
233AliTRDtrackV1 &AliTRDtrackV1::operator=(const AliTRDtrackV1 &t)
234{
235 //
236 // Assignment operator
237 //
238
239 if (this != &t) {
240 ((AliTRDtrackV1 &) t).Copy(*this);
241 }
242
243 return *this;
244
245}
246
247//_____________________________________________________________________________
248void AliTRDtrackV1::Copy(TObject &t) const
249{
250 //
251 // Copy function
252 //
253
254 ((AliTRDtrackV1 &) t).fStatus = fStatus;
255 ((AliTRDtrackV1 &) t).fESDid = fESDid;
256 ((AliTRDtrackV1 &) t).fDE = fDE;
257 ((AliTRDtrackV1 &) t).fkReconstructor = fkReconstructor;
258 ((AliTRDtrackV1 &) t).fBackupTrack = 0x0;
259 ((AliTRDtrackV1 &) t).fTrackLow = 0x0;
260 ((AliTRDtrackV1 &) t).fTrackHigh = 0x0;
261
262 for(Int_t ip = 0; ip < kNplane; ip++) {
263 ((AliTRDtrackV1 &) t).fTrackletIndex[ip] = fTrackletIndex[ip];
264 ((AliTRDtrackV1 &) t).fTracklet[ip] = fTracklet[ip];
265 }
266 if (fTrackLow) {
267 ((AliTRDtrackV1 &) t).fTrackLow = new AliExternalTrackParam(*fTrackLow);
268 }
269 if (fTrackHigh){
270 ((AliTRDtrackV1 &) t).fTrackHigh = new AliExternalTrackParam(*fTrackHigh);
271 }
272
273 for (Int_t i = 0; i < 3; i++) {
274 ((AliTRDtrackV1 &) t).fBudget[i] = fBudget[i];
275 }
276 for (Int_t is = 0; is < AliPID::kSPECIES; is++) {
277 ((AliTRDtrackV1 &) t).fPID[is] = fPID[is];
278 }
279
280}
281
3b57a3f7 282//_______________________________________________________________
283Bool_t AliTRDtrackV1::CookLabel(Float_t wrong)
284{
285 // set MC label for this track
bb2db46c 286 if(!GetNumberOfClusters()) return kFALSE;
287
bb56afff 288 Int_t s[kMAXCLUSTERSPERTRACK][2];
289 for (Int_t i = 0; i < kMAXCLUSTERSPERTRACK; i++) {
290 s[i][0] = -1;
291 s[i][1] = 0;
292 }
3b57a3f7 293
bb56afff 294 Bool_t labelAdded;
3b57a3f7 295 Int_t label;
4d6aee34 296 AliTRDcluster *c = NULL;
3b57a3f7 297 for (Int_t ip = 0; ip < kNplane; ip++) {
68f9b6bd 298 if(fTrackletIndex[ip]<0 || !fTracklet[ip]) continue;
8d2bec9e 299 for (Int_t ic = 0; ic < AliTRDseedV1::kNclusters; ic++) {
3b57a3f7 300 if(!(c = fTracklet[ip]->GetClusters(ic))) continue;
301 for (Int_t k = 0; k < 3; k++) {
302 label = c->GetLabel(k);
303 labelAdded = kFALSE;
304 Int_t j = 0;
305 if (label >= 0) {
306 while ((!labelAdded) && (j < kMAXCLUSTERSPERTRACK)) {
307 if ((s[j][0] == label) ||
308 (s[j][1] == 0)) {
309 s[j][0] = label;
310 s[j][1]++;
311 labelAdded = kTRUE;
312 }
313 j++;
314 }
315 }
316 }
317 }
318 }
319
bb56afff 320 Int_t max = 0;
321 label = -123456789;
322 for (Int_t i = 0; i < kMAXCLUSTERSPERTRACK; i++) {
323 if (s[i][1] <= max) continue;
3b57a3f7 324 max = s[i][1];
325 label = s[i][0];
bb56afff 326 }
bb56afff 327 if ((1. - Float_t(max)/GetNumberOfClusters()) > wrong) label = -label;
3b57a3f7 328
bb56afff 329 SetLabel(label);
3b57a3f7 330
331 return kTRUE;
bb56afff 332}
333
d9950a5a 334//_______________________________________________________________
335Bool_t AliTRDtrackV1::CookPID()
336{
2a3191bb 337//
338// Cook the PID information for the track by delegating the omonim function of the tracklets.
339// Computes the number of tracklets used. The tracklet information are considered independent.
340// For the moment no global track measurement of PID is performed as for example to estimate
341// bremsstrahlung probability based on global chi2 of the track.
342//
343// The status bit AliESDtrack::kTRDpid is set during the call of AliTRDtrackV1::UpdateESDtrack().The PID performance of the
344//TRD for tracks with 6 tacklets is displayed below.
345//Begin_Html
346//<img src="TRD/trackPID.gif">
347//End_Html
348//
3b57a3f7 349
2a3191bb 350 /*Reset the a priori probabilities*/
3b57a3f7 351 Double_t pid = 1. / AliPID::kSPECIES;
eb2b4f91 352 for(int ispec=0; ispec<AliPID::kSPECIES; ispec++) fPID[ispec] = pid;
353
354 UChar_t fPIDquality = SetNumberOfTrackletsPID(kTRUE);
355 // no tracklet found for PID calculations
356 if(!fPIDquality) return kFALSE;
357
2a3191bb 358 // slot for PID calculation @ track level for bremsstrahlung TODO
eb2b4f91 359
360 // normalize probabilities
361 Double_t probTotal = 0.0;
362 for (Int_t is = 0; is < AliPID::kSPECIES; is++) probTotal += fPID[is];
363
364
365 if (probTotal <= 0.0) {
366 AliWarning("The total probability over all species <= 0. This may be caused by some error in the reference data.");
367 return kFALSE;
3b57a3f7 368 }
3b57a3f7 369
eb2b4f91 370 for (Int_t iSpecies = 0; iSpecies < AliPID::kSPECIES; iSpecies++) fPID[iSpecies] /= probTotal;
371
372 return kTRUE;
373}
374
375//___________________________________________________________
376UChar_t AliTRDtrackV1::GetNumberOfTrackletsPID() const
377{
378// Retrieve number of tracklets used for PID calculation.
379
e20bef2b 380 UChar_t nPID = 0;
4d6aee34 381 Float_t *prob = NULL;
3b57a3f7 382 for(int ip=0; ip<kNplane; ip++){
68f9b6bd 383 if(fTrackletIndex[ip]<0 || !fTracklet[ip]) continue;
3b57a3f7 384 if(!fTracklet[ip]->IsOK()) continue;
e20bef2b 385 if(!(prob = fTracklet[ip]->GetProbability(kFALSE))) continue;
68f9b6bd 386
3b57a3f7 387 Int_t nspec = 0; // quality check of tracklet dEdx
388 for(int ispec=0; ispec<AliPID::kSPECIES; ispec++){
389 if(prob[ispec] < 0.) continue;
3b57a3f7 390 nspec++;
391 }
392 if(!nspec) continue;
393
e20bef2b 394 fTracklet[ip]->SetPID();
395 nPID++;
0906e73e 396 }
e20bef2b 397 return nPID;
eb2b4f91 398}
399
400//___________________________________________________________
401UChar_t AliTRDtrackV1::SetNumberOfTrackletsPID(Bool_t recalc)
402{
403// Retrieve number of tracklets used for PID calculation. // Recalculated PID at tracklet level by quering the PID DB.
404
68f9b6bd 405 UChar_t fPIDquality(0);
0906e73e 406
eb2b4f91 407 // steer PID calculation @ tracklet level
68f9b6bd 408 Float_t *prob(NULL);
eb2b4f91 409 for(int ip=0; ip<kNplane; ip++){
68f9b6bd 410 if(fTrackletIndex[ip]<0 || !fTracklet[ip]) continue;
eb2b4f91 411 if(!fTracklet[ip]->IsOK()) continue;
412 if(!(prob = fTracklet[ip]->GetProbability(recalc))) return 0;
68f9b6bd 413
eb2b4f91 414 Int_t nspec = 0; // quality check of tracklet dEdx
415 for(int ispec=0; ispec<AliPID::kSPECIES; ispec++){
416 if(prob[ispec] < 0.) continue;
417 fPID[ispec] *= prob[ispec];
418 nspec++;
419 }
420 if(!nspec) continue;
421
422 fPIDquality++;
d9950a5a 423 }
eb2b4f91 424 return fPIDquality;
d9950a5a 425}
426
0349cc67 427//_______________________________________________________________
428AliTRDcluster* AliTRDtrackV1::GetCluster(Int_t id)
429{
4d6aee34 430 // Get the cluster at a certain position in the track
0349cc67 431 Int_t n = 0;
432 for(Int_t ip=0; ip<kNplane; ip++){
433 if(!fTracklet[ip]) continue;
434 if(n+fTracklet[ip]->GetN() <= id){
435 n+=fTracklet[ip]->GetN();
436 continue;
437 }
4d6aee34 438 AliTRDcluster *c = NULL;
8d2bec9e 439 for(Int_t ic=AliTRDseedV1::kNclusters; ic--;){
0349cc67 440 if(!(c = fTracklet[ip]->GetClusters(ic))) continue;
441
442 if(n<id){n++; continue;}
443 return c;
444 }
445 }
4d6aee34 446 return NULL;
0349cc67 447}
448
3b57a3f7 449//_______________________________________________________________
450Int_t AliTRDtrackV1::GetClusterIndex(Int_t id) const
451{
4d6aee34 452 // Get the cluster index at a certain position in the track
3b57a3f7 453 Int_t n = 0;
454 for(Int_t ip=0; ip<kNplane; ip++){
455 if(!fTracklet[ip]) continue;
76b60503 456 if(n+fTracklet[ip]->GetN() <= id){
3b57a3f7 457 n+=fTracklet[ip]->GetN();
458 continue;
459 }
4d6aee34 460 AliTRDcluster *c = NULL;
8d2bec9e 461 for(Int_t ic=AliTRDseedV1::kNclusters; ic--;){
76b60503 462 if(!(c = fTracklet[ip]->GetClusters(ic))) continue;
463
464 if(n<id){n++; continue;}
3b57a3f7 465 return fTracklet[ip]->GetIndexes(ic);
466 }
467 }
468 return -1;
0906e73e 469}
d9950a5a 470
471//_______________________________________________________________
b72f4eaf 472Double_t AliTRDtrackV1::GetPredictedChi2(const AliTRDseedV1 *trklt, Double_t *cov) const
d9950a5a 473{
ed15ef4f 474// Compute chi2 between tracklet and track. The value is calculated at the radial position of the track
475// equal to the reference radial position of the tracklet (see AliTRDseedV1)
476//
477// The chi2 estimator is computed according to the following formula
478// BEGIN_LATEX
479// #chi^{2}=(X_{trklt}-X_{track})(C_{trklt}+C_{track})^{-1}(X_{trklt}-X_{track})^{T}
480// END_LATEX
481// where X=(y z), the position of the track/tracklet in the yz plane
482//
483
b72f4eaf 484 Double_t p[2] = { trklt->GetY(), trklt->GetZ()};
485 trklt->GetCovAt(trklt->GetX(), cov);
ed15ef4f 486 return AliExternalTrackParam::GetPredictedChi2(p, cov);
3b57a3f7 487}
d9950a5a 488
eb2b4f91 489//_______________________________________________________________
490Int_t AliTRDtrackV1::GetSector() const
491{
492 return Int_t(GetAlpha()/AliTRDgeometry::GetAlpha() + (GetAlpha()>0. ? 0 : AliTRDgeometry::kNsector));
493}
494
203967fc 495//_______________________________________________________________
496Bool_t AliTRDtrackV1::IsEqual(const TObject *o) const
497{
4d6aee34 498 // Checks whether two tracks are equal
203967fc 499 if (!o) return kFALSE;
500 const AliTRDtrackV1 *inTrack = dynamic_cast<const AliTRDtrackV1*>(o);
501 if (!inTrack) return kFALSE;
502
eb2b4f91 503 //if ( fPIDquality != inTrack->GetPIDquality() ) return kFALSE;
203967fc 504
505 for(Int_t i = 0; i < AliPID::kSPECIES; i++){
506 if ( fPID[i] != inTrack->GetPID(i) ) return kFALSE;
507 }
508
509 for (Int_t i = 0; i < 3; i++){
510 if ( fBudget[i] != inTrack->GetBudget(i) ) return kFALSE;
511 }
512 if ( fDE != inTrack->GetEdep() ) return kFALSE;
513 if ( fFakeRatio != inTrack->GetFakeRatio() ) return kFALSE;
514 if ( fChi2 != inTrack->GetChi2() ) return kFALSE;
515 if ( fMass != inTrack->GetMass() ) return kFALSE;
516 if ( fLab != inTrack->GetLabel() ) return kFALSE;
517 if ( fN != inTrack->GetNumberOfClusters() ) return kFALSE;
518 if ( AliKalmanTrack::GetIntegratedLength() != inTrack->GetIntegratedLength() ) return kFALSE;
519
520 if ( GetX() != inTrack->GetX() ) return kFALSE;
521 if ( GetAlpha() != inTrack->GetAlpha() ) return kFALSE;
522 const Double_t *inP = inTrack->GetParameter();
523 const Double_t *curP = GetParameter();
524 for (Int_t i = 0; i < 5; i++){
525 if ( curP[i] != inP[i]) return kFALSE;
526 }
527 const Double_t *inC = inTrack->GetCovariance();
528 const Double_t *curC = GetCovariance();
529 for (Int_t i = 0; i < 15; i++){
530 if ( curC[i] != inC[i]) return kFALSE;
531 }
532
533 for (Int_t iTracklet = 0; iTracklet < kNplane; iTracklet++){
534 AliTRDseedV1 *curTracklet = fTracklet[iTracklet];
535 AliTRDseedV1 *inTracklet = inTrack->GetTracklet(iTracklet);
536 if (curTracklet && inTracklet){
537 if (! curTracklet->IsEqual(inTracklet) ) {
538 curTracklet->Print();
539 inTracklet->Print();
540 return kFALSE;
541 }
542 } else {
543 // if one tracklet exists, and corresponding
544 // in other track doesn't - return kFALSE
545 if(inTracklet || curTracklet) return kFALSE;
546 }
547 }
548
549 return kTRUE;
550}
551
22a4ab0c 552//_______________________________________________________________
553Bool_t AliTRDtrackV1::IsElectron() const
554{
4d6aee34 555 if(GetPID(0) > fkReconstructor->GetRecoParam()->GetPIDThreshold(GetP())) return kTRUE;
22a4ab0c 556 return kFALSE;
557}
558
3b57a3f7 559
560//_____________________________________________________________________________
b453ef55 561Int_t AliTRDtrackV1::MakeBackupTrack()
3b57a3f7 562{
b453ef55 563//
564// Creates a backup track
565// TO DO update quality check of the track.
566//
567
568 Float_t occupancy(0.); Int_t n(0), ncls(0);
569 for(Int_t il(AliTRDgeometry::kNlayer); il--;){
570 if(!fTracklet[il]) continue;
571 n++;
572 occupancy+=fTracklet[il]->GetOccupancyTB();
573 ncls += fTracklet[il]->GetN();
574 }
575 if(!n) return -1;
576 occupancy/=n;
577
578 //Float_t ratio1 = Float_t(t.GetNumberOfClusters()+1) / Float_t(t.GetNExpected()+1);
579
580 Int_t failedCutId(0);
581 if(GetChi2()/n > 5.0) failedCutId=1;
582 if(occupancy < 0.7) failedCutId=2;
583 //if(ratio1 > 0.6) &&
584 //if(ratio0+ratio1 > 1.5) &&
585 if(GetNCross() != 0) failedCutId=3;
586 if(TMath::Abs(GetSnp()) > 0.85) failedCutId=4;
587 if(ncls < 20) failedCutId=5;
588
589 if(failedCutId){
590 AliDebug(2, Form("\n"
591 "chi2/tracklet < 5.0 [%c] %5.2f\n"
592 "occupancy > 0.7 [%c] %4.2f\n"
593 "NCross == 0 [%c] %d\n"
594 "Abs(snp) < 0.85 [%c] %4.2f\n"
595 "NClusters > 20 [%c] %d"
596 ,(GetChi2()/n<5.0)?'y':'n', GetChi2()/n
597 ,(occupancy>0.7)?'y':'n', occupancy
598 ,(GetNCross()==0)?'y':'n', GetNCross()
599 ,(TMath::Abs(GetSnp())<0.85)?'y':'n', TMath::Abs(GetSnp())
600 ,(ncls>20)?'y':'n', ncls
601 ));
602 return failedCutId;
603 }
3b57a3f7 604
605 if(fBackupTrack) {
606 fBackupTrack->~AliTRDtrackV1();
607 new(fBackupTrack) AliTRDtrackV1((AliTRDtrackV1&)(*this));
b453ef55 608 return 0;
3b57a3f7 609 }
610 fBackupTrack = new AliTRDtrackV1((AliTRDtrackV1&)(*this));
b453ef55 611 return 0;
d9950a5a 612}
613
3b57a3f7 614//_____________________________________________________________________________
f8a9723f 615Int_t AliTRDtrackV1::GetProlongation(Double_t xk, Double_t &y, Double_t &z) const
3b57a3f7 616{
617 //
618 // Find a prolongation at given x
530fb4e2 619 // Return -1 if it does not exist
3b57a3f7 620 //
621
622 Double_t bz = GetBz();
530fb4e2 623 if (!AliExternalTrackParam::GetYAt(xk,bz,y)) return -1;
624 if (!AliExternalTrackParam::GetZAt(xk,bz,z)) return -1;
3b57a3f7 625
626 return 1;
627
628}
629
630//_____________________________________________________________________________
631Bool_t AliTRDtrackV1::PropagateTo(Double_t xk, Double_t xx0, Double_t xrho)
0906e73e 632{
633 //
3b57a3f7 634 // Propagates this track to a reference plane defined by "xk" [cm]
635 // correcting for the mean crossed material.
0906e73e 636 //
3b57a3f7 637 // "xx0" - thickness/rad.length [units of the radiation length]
638 // "xrho" - thickness*density [g/cm^2]
639 //
0906e73e 640
dc5e390a 641 if (xk == GetX()) return kTRUE;
642
307aac71 643 Double_t xyz0[3] = {GetX(), GetY(), GetZ()}, // track position BEFORE propagation
dc5e390a 644 b[3]; // magnetic field
307aac71 645 GetBxByBz(b);
dc5e390a 646 if(!AliExternalTrackParam::PropagateToBxByBz(xk,b)) return kFALSE;
647
307aac71 648 // local track position AFTER propagation
649 Double_t xyz1[3] = {GetX(), GetY(), GetZ()};
dc5e390a 650 if(xyz0[0] < xk) {
3b57a3f7 651 xrho = -xrho;
652 if (IsStartedTimeIntegral()) {
dc5e390a 653 Double_t l2 = TMath::Sqrt((xyz1[0]-xyz0[0])*(xyz1[0]-xyz0[0])
654 + (xyz1[1]-xyz0[1])*(xyz1[1]-xyz0[1])
655 + (xyz1[2]-xyz0[2])*(xyz1[2]-xyz0[2]));
6790f7d7 656 Double_t crv = AliExternalTrackParam::GetC(b[2]);
3b57a3f7 657 if (TMath::Abs(l2*crv) > 0.0001) {
658 // Make correction for curvature if neccesary
dc5e390a 659 l2 = 0.5 * TMath::Sqrt((xyz1[0]-xyz0[0])*(xyz1[0]-xyz0[0])
660 + (xyz1[1]-xyz0[1])*(xyz1[1]-xyz0[1]));
3b57a3f7 661 l2 = 2.0 * TMath::ASin(l2 * crv) / crv;
dc5e390a 662 l2 = TMath::Sqrt(l2*l2 + (xyz1[2]-xyz0[2])*(xyz1[2]-xyz0[2]));
3b57a3f7 663 }
664 AddTimeStep(l2);
665 }
666 }
667
fd40f855 668 if (!AliExternalTrackParam::CorrectForMeanMaterial(xx0, xrho, GetMass())) return kFALSE;
669
3b57a3f7 670
671 {
672
673 // Energy losses
674 Double_t p2 = (1.0 + GetTgl()*GetTgl()) / (GetSigned1Pt()*GetSigned1Pt());
675 Double_t beta2 = p2 / (p2 + GetMass()*GetMass());
676 if ((beta2 < 1.0e-10) ||
677 ((5940.0 * beta2/(1.0 - beta2 + 1.0e-10) - beta2) < 0.0)) {
678 return kFALSE;
679 }
680
681 Double_t dE = 0.153e-3 / beta2
682 * (TMath::Log(5940.0 * beta2/(1.0 - beta2 + 1.0e-10)) - beta2)
683 * xrho;
684 fBudget[0] += xrho;
685
686 /*
687 // Suspicious part - think about it ?
688 Double_t kinE = TMath::Sqrt(p2);
689 if (dE > 0.8*kinE) dE = 0.8 * kinE; //
690 if (dE < 0) dE = 0.0; // Not valid region for Bethe bloch
691 */
692
693 fDE += dE;
694
695 /*
696 // Suspicious ! I.B.
697 Double_t sigmade = 0.07 * TMath::Sqrt(TMath::Abs(dE)); // Energy loss fluctuation
698 Double_t sigmac2 = sigmade*sigmade*fC*fC*(p2+GetMass()*GetMass())/(p2*p2);
699 fCcc += sigmac2;
700 fCee += fX*fX * sigmac2;
701 */
702
703 }
704
705 return kTRUE;
0906e73e 706}
3b57a3f7 707
87a7fa94 708//_____________________________________________________________________________
3b57a3f7 709Int_t AliTRDtrackV1::PropagateToR(Double_t r,Double_t step)
87a7fa94 710{
711 //
3b57a3f7 712 // Propagate track to the radial position
713 // Rotation always connected to the last track position
87a7fa94 714 //
715
3b57a3f7 716 Double_t xyz0[3];
717 Double_t xyz1[3];
718 Double_t y;
719 Double_t z;
720
721 Double_t radius = TMath::Sqrt(GetX()*GetX() + GetY()*GetY());
722 // Direction +-
723 Double_t dir = (radius > r) ? -1.0 : 1.0;
724
725 for (Double_t x = radius+dir*step; dir*x < dir*r; x += dir*step) {
726
727 GetXYZ(xyz0);
728 Double_t alpha = TMath::ATan2(xyz0[1],xyz0[0]);
729 Rotate(alpha,kTRUE);
730 GetXYZ(xyz0);
e20bef2b 731 if(GetProlongation(x,y,z)<0) return -1;
3b57a3f7 732 xyz1[0] = x * TMath::Cos(alpha) + y * TMath::Sin(alpha);
733 xyz1[1] = x * TMath::Sin(alpha) - y * TMath::Cos(alpha);
734 xyz1[2] = z;
735 Double_t param[7];
83dea92e 736 if(AliTracker::MeanMaterialBudget(xyz0,xyz1,param)<=0.) return -1;
3b57a3f7 737 if (param[1] <= 0) {
738 param[1] = 100000000;
739 }
740 PropagateTo(x,param[1],param[0]*param[4]);
741
742 }
743
744 GetXYZ(xyz0);
745 Double_t alpha = TMath::ATan2(xyz0[1],xyz0[0]);
746 Rotate(alpha,kTRUE);
747 GetXYZ(xyz0);
530fb4e2 748 if(GetProlongation(r,y,z)<0) return -1;
3b57a3f7 749 xyz1[0] = r * TMath::Cos(alpha) + y * TMath::Sin(alpha);
750 xyz1[1] = r * TMath::Sin(alpha) - y * TMath::Cos(alpha);
751 xyz1[2] = z;
752 Double_t param[7];
83dea92e 753 if(AliTracker::MeanMaterialBudget(xyz0,xyz1,param) <= 0.) return -1;
3b57a3f7 754
755 if (param[1] <= 0) {
756 param[1] = 100000000;
87a7fa94 757 }
3b57a3f7 758 PropagateTo(r,param[1],param[0]*param[4]);
759
760 return 0;
761
87a7fa94 762}
763
203967fc 764//_____________________________________________________________________________
765void AliTRDtrackV1::Print(Option_t *o) const
766{
4d6aee34 767 // Print track status
eb2b4f91 768 AliInfo(Form("PID [%4.1f %4.1f %4.1f %4.1f %4.1f]", 1.E2*fPID[0], 1.E2*fPID[1], 1.E2*fPID[2], 1.E2*fPID[3], 1.E2*fPID[4]));
203967fc 769 AliInfo(Form("Material[%5.2f %5.2f %5.2f]", fBudget[0], fBudget[1], fBudget[2]));
770
771 AliInfo(Form("x[%7.2f] t[%7.4f] alpha[%f] mass[%f]", GetX(), GetIntegratedLength(), GetAlpha(), fMass));
eb2b4f91 772 AliInfo(Form("Ntr[%1d] NtrPID[%1d] Ncl[%3d] lab[%3d]", GetNumberOfTracklets(), GetNumberOfTrackletsPID(), fN, fLab));
203967fc 773
203967fc 774 printf("|X| = (");
775 const Double_t *curP = GetParameter();
776 for (Int_t i = 0; i < 5; i++) printf("%7.2f ", curP[i]);
777 printf(")\n");
778
779 printf("|V| = \n");
780 const Double_t *curC = GetCovariance();
781 for (Int_t i = 0, j=4, k=0; i<15; i++, k++){
782 printf("%7.2f ", curC[i]);
783 if(k==j){
784 printf("\n");
785 k=-1; j--;
786 }
787 }
0217fcd0 788 if(strcmp(o, "a")!=0) return;
203967fc 789
790 for(Int_t ip=0; ip<kNplane; ip++){
791 if(!fTracklet[ip]) continue;
792 fTracklet[ip]->Print(o);
793 }
794}
795
796
3b57a3f7 797//_____________________________________________________________________________
798Bool_t AliTRDtrackV1::Rotate(Double_t alpha, Bool_t absolute)
799{
800 //
801 // Rotates track parameters in R*phi plane
802 // if absolute rotation alpha is in global system
803 // otherwise alpha rotation is relative to the current rotation angle
804 //
805
806 if (absolute) alpha -= GetAlpha();
807 //else fNRotate++;
808
809 return AliExternalTrackParam::Rotate(GetAlpha()+alpha);
810}
87a7fa94 811
eb38ed55 812//___________________________________________________________
813void AliTRDtrackV1::SetNumberOfClusters()
814{
815// Calculate the number of clusters attached to this track
816
3b57a3f7 817 Int_t ncls = 0;
818 for(int ip=0; ip<kNplane; ip++){
68f9b6bd 819 if(fTracklet[ip] && fTrackletIndex[ip] >= 0) ncls += fTracklet[ip]->GetN();
3b57a3f7 820 }
821 AliKalmanTrack::SetNumberOfClusters(ncls);
eb38ed55 822}
823
824
0906e73e 825//_______________________________________________________________
3b57a3f7 826void AliTRDtrackV1::SetOwner()
0906e73e 827{
828 //
829 // Toggle ownership of tracklets
830 //
831
e44586fb 832 if(TestBit(kOwner)) return;
3b57a3f7 833 for (Int_t ip = 0; ip < kNplane; ip++) {
68f9b6bd 834 if(fTrackletIndex[ip]<0 || !fTracklet[ip]) continue;
3b57a3f7 835 fTracklet[ip] = new AliTRDseedV1(*fTracklet[ip]);
836 fTracklet[ip]->SetOwner();
837 }
e44586fb 838 SetBit(kOwner);
0906e73e 839}
840
d9950a5a 841//_______________________________________________________________
4d6aee34 842void AliTRDtrackV1::SetTracklet(AliTRDseedV1 *const trklt, Int_t index)
d9950a5a 843{
844 //
0906e73e 845 // Set the tracklets
d9950a5a 846 //
3b57a3f7 847 Int_t plane = trklt->GetPlane();
76b60503 848
3b57a3f7 849 fTracklet[plane] = trklt;
850 fTrackletIndex[plane] = index;
d9950a5a 851}
852
e3cf3d02 853//_______________________________________________________________
a310e49b 854void AliTRDtrackV1::SetTrackIn()
e3cf3d02 855{
fc6d4c2d 856// Save location of birth for the TRD track
857// If the pointer is not valid allocate memory
858//
e3cf3d02 859 const AliExternalTrackParam *op = dynamic_cast<const AliExternalTrackParam*>(this);
fc6d4c2d 860
861 if(fTrackLow){
862 fTrackLow->~AliExternalTrackParam();
863 new(fTrackLow) AliExternalTrackParam(*op);
864 } else fTrackLow = new AliExternalTrackParam(*op);
e3cf3d02 865}
866
867//_______________________________________________________________
a310e49b 868void AliTRDtrackV1::SetTrackOut(const AliExternalTrackParam *op)
e3cf3d02 869{
fc6d4c2d 870// Save location of death for the TRD track
871// If the pointer is not valid allocate memory
872//
e3cf3d02 873 if(!op) op = dynamic_cast<const AliExternalTrackParam*>(this);
fc6d4c2d 874 if(fTrackHigh){
875 fTrackHigh->~AliExternalTrackParam();
876 new(fTrackHigh) AliExternalTrackParam(*op);
877 } else fTrackHigh = new AliExternalTrackParam(*op);
e3cf3d02 878}
879
181d2c97 880//_______________________________________________________________
881void AliTRDtrackV1::UnsetTracklet(Int_t plane)
882{
883 if(plane<0 && plane >= kNplane) return;
17896e82 884 fTrackletIndex[plane] = -1;
4d6aee34 885 fTracklet[plane] = NULL;
181d2c97 886}
887
888
d9950a5a 889//_______________________________________________________________
ef867f55 890void AliTRDtrackV1::UpdateChi2(Float_t chi2)
d9950a5a 891{
ef867f55 892// Update chi2/track with one tracklet contribution
b72f4eaf 893 SetChi2(GetChi2() + chi2);
d9950a5a 894}
895
896//_______________________________________________________________
0906e73e 897void AliTRDtrackV1::UpdateESDtrack(AliESDtrack *track)
d9950a5a 898{
899 //
6984f7c1 900 // Update the TRD PID information in the ESD track
d9950a5a 901 //
6984f7c1 902
a2fbb6ec 903 Int_t nslices = fkReconstructor->GetRecoParam()->IsEightSlices() ? (Int_t)AliTRDpidUtil::kNNslices : (Int_t)AliTRDpidUtil::kLQslices;
e20bef2b 904 // number of tracklets used for PID calculation
905 UChar_t nPID = GetNumberOfTrackletsPID();
906 // number of tracklets attached to the track
907 UChar_t nTrk = GetNumberOfTracklets();
908 // pack the two numbers together and store them in the ESD
909 track->SetTRDntracklets(nPID | (nTrk<<3));
910 // allocate space to store raw PID signals dEdx & momentum
b48e9cbb 911 track->SetNumberOfTRDslices((nslices+2)*AliTRDgeometry::kNlayer);
e20bef2b 912 // store raw signals
7b23a4e1 913 Float_t p, sp; Double_t spd;
6984f7c1 914 for (Int_t ip = 0; ip < kNplane; ip++) {
68f9b6bd 915 if(fTrackletIndex[ip]<0 || !fTracklet[ip]) continue;
e20bef2b 916 if(!fTracklet[ip]->HasPID()) continue;
4d6aee34 917 const Float_t *dedx = fTracklet[ip]->GetdEdx();
215f7116 918 for (Int_t js = 0; js < nslices; js++, dedx++) track->SetTRDslice(*dedx, ip, js);
7b23a4e1 919 p = fTracklet[ip]->GetMomentum(&sp); spd = sp;
920 track->SetTRDmomentum(p, ip, &spd);
6984f7c1 921 }
e20bef2b 922 // store PID probabilities
923 track->SetTRDpid(fPID);
d9950a5a 924}