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Moved old AliMagFCheb to AliMagF, small fixes/optimizations in field classes
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e43c066c 1/**************************************************************************
9a5326b1 2 * Copyright(c) 2007-2009, ALICE Experiment at CERN, All rights reserved. *
e43c066c 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 **************************************************************************/
fddf8459 15/* $Id$ */
bf6adc12 16
e43c066c 17//-------------------------------------------------------------------------
18// Implementation of the ITS tracker class
00a7cc50 19// It reads AliITSRecPoint clusters and creates AliITStrackMI tracks
e43c066c 20// and fills with them the ESD
15dd636f 21// Origin: Marian Ivanov, CERN, Marian.Ivanov@cern.ch
23197852 22// Current support and development:
23// Andrea Dainese, andrea.dainese@lnl.infn.it
afd25725 24// dE/dx analysis by: Boris Batyunya, JINR, Boris.Batiounia@cern.ch
25// Params moved to AliITSRecoParam by: Andrea Dainese, INFN
26// Material budget from TGeo by: Ludovic Gaudichet & Andrea Dainese, INFN
e43c066c 27//-------------------------------------------------------------------------
bf6adc12 28
29#include <TMatrixD.h>
e43c066c 30#include <TTree.h>
bf6adc12 31#include <TTreeStream.h>
afd25725 32#include <TDatabasePDG.h>
9a5326b1 33#include <TString.h>
e50912db 34#include <TRandom.h>
bf6adc12 35
23197852 36
4187a601 37#include "AliLog.h"
af885e0f 38#include "AliESDEvent.h"
aad72f45 39#include "AliESDtrack.h"
9a5326b1 40#include "AliESDVertex.h"
6c94f330 41#include "AliV0.h"
bf6adc12 42#include "AliHelix.h"
00a7cc50 43#include "AliITSRecPoint.h"
e341247d 44#include "AliITSgeomTGeo.h"
44347160 45#include "AliITSReconstructor.h"
df29e9a4 46#include "AliTrackPointArray.h"
47#include "AliAlignObj.h"
572f41f9 48#include "AliITSClusterParam.h"
ae00569a 49#include "AliCDBManager.h"
50#include "AliCDBEntry.h"
23197852 51#include "AliITSsegmentation.h"
52#include "AliITSCalibration.h"
ae00569a 53#include "AliITSCalibrationSPD.h"
54#include "AliITSCalibrationSDD.h"
55#include "AliITSCalibrationSSD.h"
7167ae53 56#include "AliITSPlaneEff.h"
57#include "AliITSPlaneEffSPD.h"
58#include "AliITSPlaneEffSDD.h"
59#include "AliITSPlaneEffSSD.h"
ae00569a 60#include "AliITStrackerMI.h"
e43c066c 61
62ClassImp(AliITStrackerMI)
e43c066c 63
e50912db 64AliITStrackerMI::AliITSlayer AliITStrackerMI::fgLayers[AliITSgeomTGeo::kNLayers]; // ITS layers
44347160 65
8221b41b 66AliITStrackerMI::AliITStrackerMI():AliTracker(),
67fI(0),
68fBestTrack(),
69fTrackToFollow(),
70fTrackHypothesys(),
71fBestHypothesys(),
72fOriginal(),
73fCurrentEsdTrack(),
74fPass(0),
75fAfterV0(kFALSE),
76fLastLayerToTrackTo(0),
afd25725 77fCoefficients(0),
8221b41b 78fEsd(0),
e50912db 79fTrackingPhase("Default"),
6518a6c5 80fUseTGeo(3),
e50912db 81fNtracks(0),
82fxOverX0Pipe(-1.),
83fxTimesRhoPipe(-1.),
84fxOverX0PipeTrks(0),
85fxTimesRhoPipeTrks(0),
86fxOverX0ShieldTrks(0),
87fxTimesRhoShieldTrks(0),
88fxOverX0LayerTrks(0),
89fxTimesRhoLayerTrks(0),
4a66240a 90fDebugStreamer(0),
23197852 91fITSChannelStatus(0),
92fDetTypeRec(0),
ae00569a 93fPlaneEff(0) {
8221b41b 94 //Default constructor
e50912db 95 Int_t i;
96 for(i=0;i<4;i++) fSPDdetzcentre[i]=0.;
97 for(i=0;i<2;i++) {fxOverX0Shield[i]=-1.;fxTimesRhoShield[i]=-1.;}
98 for(i=0;i<6;i++) {fxOverX0Layer[i]=-1.;fxTimesRhoLayer[i]=-1.;}
8221b41b 99}
44347160 100//------------------------------------------------------------------------
1f3e997f 101AliITStrackerMI::AliITStrackerMI(const Char_t *geom) : AliTracker(),
e50912db 102fI(AliITSgeomTGeo::GetNLayers()),
8221b41b 103fBestTrack(),
104fTrackToFollow(),
105fTrackHypothesys(),
106fBestHypothesys(),
107fOriginal(),
108fCurrentEsdTrack(),
109fPass(0),
110fAfterV0(kFALSE),
e50912db 111fLastLayerToTrackTo(AliITSRecoParam::GetLastLayerToTrackTo()),
afd25725 112fCoefficients(0),
8221b41b 113fEsd(0),
e50912db 114fTrackingPhase("Default"),
6518a6c5 115fUseTGeo(3),
e50912db 116fNtracks(0),
117fxOverX0Pipe(-1.),
118fxTimesRhoPipe(-1.),
119fxOverX0PipeTrks(0),
120fxTimesRhoPipeTrks(0),
121fxOverX0ShieldTrks(0),
122fxTimesRhoShieldTrks(0),
123fxOverX0LayerTrks(0),
124fxTimesRhoLayerTrks(0),
4a66240a 125fDebugStreamer(0),
23197852 126fITSChannelStatus(0),
127fDetTypeRec(0),
ae00569a 128fPlaneEff(0) {
e43c066c 129 //--------------------------------------------------------------------
130 //This is the AliITStrackerMI constructor
131 //--------------------------------------------------------------------
e341247d 132 if (geom) {
133 AliWarning("\"geom\" is actually a dummy argument !");
134 }
135
afd25725 136 fCoefficients = 0;
628e7bb0 137 fAfterV0 = kFALSE;
e341247d 138
e50912db 139 for (Int_t i=1; i<AliITSgeomTGeo::GetNLayers()+1; i++) {
e341247d 140 Int_t nlad=AliITSgeomTGeo::GetNLadders(i);
141 Int_t ndet=AliITSgeomTGeo::GetNDetectors(i);
142
143 Double_t xyz[3], &x=xyz[0], &y=xyz[1], &z=xyz[2];
144 AliITSgeomTGeo::GetOrigTranslation(i,1,1,xyz);
e43c066c 145 Double_t poff=TMath::ATan2(y,x);
146 Double_t zoff=z;
e341247d 147 Double_t r=TMath::Sqrt(x*x + y*y);
e43c066c 148
e341247d 149 AliITSgeomTGeo::GetOrigTranslation(i,1,2,xyz);
e43c066c 150 r += TMath::Sqrt(x*x + y*y);
e341247d 151 AliITSgeomTGeo::GetOrigTranslation(i,2,1,xyz);
e43c066c 152 r += TMath::Sqrt(x*x + y*y);
e341247d 153 AliITSgeomTGeo::GetOrigTranslation(i,2,2,xyz);
e43c066c 154 r += TMath::Sqrt(x*x + y*y);
155 r*=0.25;
156
157 new (fgLayers+i-1) AliITSlayer(r,poff,zoff,nlad,ndet);
158
159 for (Int_t j=1; j<nlad+1; j++) {
160 for (Int_t k=1; k<ndet+1; k++) { //Fill this layer with detectors
e341247d 161 TGeoHMatrix m; AliITSgeomTGeo::GetOrigMatrix(i,j,k,m);
1f3e997f 162 const TGeoHMatrix *tm=AliITSgeomTGeo::GetTracking2LocalMatrix(i,j,k);
163 m.Multiply(tm);
a5d0fae6 164 Double_t txyz[3]={0.};
165 xyz[0]=0.;xyz[1]=0.;xyz[2]=0.;
1f3e997f 166 m.LocalToMaster(txyz,xyz);
a5d0fae6 167 r=TMath::Sqrt(xyz[0]*xyz[0] + xyz[1]*xyz[1]);
1f3e997f 168 Double_t phi=TMath::ATan2(xyz[1],xyz[0]);
e341247d 169
170 if (phi<0) phi+=TMath::TwoPi();
171 else if (phi>=TMath::TwoPi()) phi-=TMath::TwoPi();
172
e43c066c 173 AliITSdetector &det=fgLayers[i-1].GetDetector((j-1)*ndet + k-1);
174 new(&det) AliITSdetector(r,phi);
1c97ce2f 175 // compute the real radius (with misalignment)
176 TGeoHMatrix mmisal(*(AliITSgeomTGeo::GetMatrix(i,j,k)));
177 mmisal.Multiply(tm);
178 xyz[0]=0.;xyz[1]=0.;xyz[2]=0.;
179 mmisal.LocalToMaster(txyz,xyz);
180 Double_t rmisal=TMath::Sqrt(xyz[0]*xyz[0] + xyz[1]*xyz[1]);
181 det.SetRmisal(rmisal);
182
23197852 183 } // end loop on detectors
184 } // end loop on ladders
185 } // end loop on layers
e43c066c 186
e43c066c 187
e50912db 188 fI=AliITSgeomTGeo::GetNLayers();
e43c066c 189
190 fPass=0;
191 fConstraint[0]=1; fConstraint[1]=0;
192
afd25725 193 Double_t xyzVtx[]={AliITSReconstructor::GetRecoParam()->GetXVdef(),
194 AliITSReconstructor::GetRecoParam()->GetYVdef(),
195 AliITSReconstructor::GetRecoParam()->GetZVdef()};
196 Double_t ersVtx[]={AliITSReconstructor::GetRecoParam()->GetSigmaXVdef(),
197 AliITSReconstructor::GetRecoParam()->GetSigmaYVdef(),
198 AliITSReconstructor::GetRecoParam()->GetSigmaZVdef()};
199 SetVertex(xyzVtx,ersVtx);
e43c066c 200
e50912db 201 for (Int_t i=0; i<AliITSgeomTGeo::GetNLayers(); i++) fLayersNotToSkip[i]=AliITSRecoParam::GetLayersNotToSkip(i);
202 fLastLayerToTrackTo=AliITSRecoParam::GetLastLayerToTrackTo();
628e7bb0 203 for (Int_t i=0;i<100000;i++){
204 fBestTrackIndex[i]=0;
205 }
afd25725 206
207 // store positions of centre of SPD modules (in z)
208 Double_t tr[3];
209 AliITSgeomTGeo::GetTranslation(1,1,1,tr);
210 fSPDdetzcentre[0] = tr[2];
211 AliITSgeomTGeo::GetTranslation(1,1,2,tr);
212 fSPDdetzcentre[1] = tr[2];
213 AliITSgeomTGeo::GetTranslation(1,1,3,tr);
214 fSPDdetzcentre[2] = tr[2];
215 AliITSgeomTGeo::GetTranslation(1,1,4,tr);
216 fSPDdetzcentre[3] = tr[2];
217
afd25725 218 fUseTGeo = AliITSReconstructor::GetRecoParam()->GetUseTGeoInTracker();
6518a6c5 219 if(AliITSReconstructor::GetRecoParam()->GetExtendedEtaAcceptance() && fUseTGeo!=1 && fUseTGeo!=3) {
220 AliWarning("fUseTGeo changed to 3 because fExtendedEtaAcceptance is kTRUE");
221 fUseTGeo = 3;
222 }
e50912db 223
224 for(Int_t i=0;i<2;i++) {fxOverX0Shield[i]=-1.;fxTimesRhoShield[i]=-1.;}
225 for(Int_t i=0;i<6;i++) {fxOverX0Layer[i]=-1.;fxTimesRhoLayer[i]=-1.;}
226
81e97e0d 227 fDebugStreamer = new TTreeSRedirector("ITSdebug.root");
228
7167ae53 229 // only for plane efficiency evaluation
230 if (AliITSReconstructor::GetRecoParam()->GetComputePlaneEff()) {
0ed58a47 231 Int_t iplane=AliITSReconstructor::GetRecoParam()->GetIPlanePlaneEff();
232 if(AliITSReconstructor::GetRecoParam()->GetLayersToSkip(iplane))
233 AliWarning(Form("Evaluation of Plane Eff for layer %d will be attempted without removing it from tracker",iplane));
234 if (iplane<2) fPlaneEff = new AliITSPlaneEffSPD();
235 else if (iplane<4) fPlaneEff = new AliITSPlaneEffSDD();
236 else fPlaneEff = new AliITSPlaneEffSSD();
275a301c 237 if(AliITSReconstructor::GetRecoParam()->GetReadPlaneEffFromOCDB())
0ed58a47 238 if(!fPlaneEff->ReadFromCDB()) {AliWarning("AliITStrackerMI reading of AliITSPlaneEff from OCDB failed") ;}
239 if(AliITSReconstructor::GetRecoParam()->GetHistoPlaneEff()) fPlaneEff->SetCreateHistos(kTRUE);
7167ae53 240 }
628e7bb0 241}
44347160 242//------------------------------------------------------------------------
8221b41b 243AliITStrackerMI::AliITStrackerMI(const AliITStrackerMI &tracker):AliTracker(tracker),
244fI(tracker.fI),
245fBestTrack(tracker.fBestTrack),
246fTrackToFollow(tracker.fTrackToFollow),
247fTrackHypothesys(tracker.fTrackHypothesys),
248fBestHypothesys(tracker.fBestHypothesys),
249fOriginal(tracker.fOriginal),
250fCurrentEsdTrack(tracker.fCurrentEsdTrack),
251fPass(tracker.fPass),
252fAfterV0(tracker.fAfterV0),
253fLastLayerToTrackTo(tracker.fLastLayerToTrackTo),
afd25725 254fCoefficients(tracker.fCoefficients),
8221b41b 255fEsd(tracker.fEsd),
e50912db 256fTrackingPhase(tracker.fTrackingPhase),
afd25725 257fUseTGeo(tracker.fUseTGeo),
e50912db 258fNtracks(tracker.fNtracks),
259fxOverX0Pipe(tracker.fxOverX0Pipe),
260fxTimesRhoPipe(tracker.fxTimesRhoPipe),
261fxOverX0PipeTrks(0),
262fxTimesRhoPipeTrks(0),
263fxOverX0ShieldTrks(0),
264fxTimesRhoShieldTrks(0),
265fxOverX0LayerTrks(0),
266fxTimesRhoLayerTrks(0),
4a66240a 267fDebugStreamer(tracker.fDebugStreamer),
23197852 268fITSChannelStatus(tracker.fITSChannelStatus),
269fDetTypeRec(tracker.fDetTypeRec),
ae00569a 270fPlaneEff(tracker.fPlaneEff) {
8221b41b 271 //Copy constructor
e50912db 272 Int_t i;
273 for(i=0;i<4;i++) {
274 fSPDdetzcentre[i]=tracker.fSPDdetzcentre[i];
275 }
276 for(i=0;i<6;i++) {
277 fxOverX0Layer[i]=tracker.fxOverX0Layer[i];
278 fxTimesRhoLayer[i]=tracker.fxTimesRhoLayer[i];
279 }
280 for(i=0;i<2;i++) {
281 fxOverX0Shield[i]=tracker.fxOverX0Shield[i];
282 fxTimesRhoShield[i]=tracker.fxTimesRhoShield[i];
283 }
8221b41b 284}
44347160 285//------------------------------------------------------------------------
8221b41b 286AliITStrackerMI & AliITStrackerMI::operator=(const AliITStrackerMI &tracker){
287 //Assignment operator
288 this->~AliITStrackerMI();
289 new(this) AliITStrackerMI(tracker);
290 return *this;
291}
44347160 292//------------------------------------------------------------------------
628e7bb0 293AliITStrackerMI::~AliITStrackerMI()
294{
295 //
296 //destructor
297 //
e50912db 298 if (fCoefficients) delete [] fCoefficients;
299 DeleteTrksMaterialLUT();
81e97e0d 300 if (fDebugStreamer) {
301 //fDebugStreamer->Close();
302 delete fDebugStreamer;
303 }
23197852 304 if(fITSChannelStatus) delete fITSChannelStatus;
305 if(fPlaneEff) delete fPlaneEff;
e43c066c 306}
44347160 307//------------------------------------------------------------------------
e43c066c 308void AliITStrackerMI::SetLayersNotToSkip(Int_t *l) {
309 //--------------------------------------------------------------------
310 //This function set masks of the layers which must be not skipped
311 //--------------------------------------------------------------------
e50912db 312 for (Int_t i=0; i<AliITSgeomTGeo::GetNLayers(); i++) fLayersNotToSkip[i]=l[i];
e43c066c 313}
44347160 314//------------------------------------------------------------------------
23197852 315void AliITStrackerMI::ReadBadFromDetTypeRec() {
316 //--------------------------------------------------------------------
317 //This function read ITS bad detectors, chips, channels from AliITSDetTypeRec
318 //i.e. from OCDB
319 //--------------------------------------------------------------------
320
321 if(!AliITSReconstructor::GetRecoParam()->GetUseBadZonesFromOCDB()) return;
322
4187a601 323 Info("ReadBadFromDetTypeRec","Reading info about bad ITS detectors and channels");
23197852 324
325 if(!fDetTypeRec) Error("ReadBadFromDetTypeRec","AliITSDetTypeRec nof found!\n");
326
327 // ITS channels map
328 if(fITSChannelStatus) delete fITSChannelStatus;
4187a601 329 fITSChannelStatus = new AliITSChannelStatus(fDetTypeRec);
23197852 330
331 // ITS detectors and chips
332 Int_t i=0,j=0,k=0,ndet=0;
333 for (i=1; i<AliITSgeomTGeo::GetNLayers()+1; i++) {
4187a601 334 Int_t nBadDetsPerLayer=0;
23197852 335 ndet=AliITSgeomTGeo::GetNDetectors(i);
336 for (j=1; j<AliITSgeomTGeo::GetNLadders(i)+1; j++) {
337 for (k=1; k<ndet+1; k++) {
338 AliITSdetector &det=fgLayers[i-1].GetDetector((j-1)*ndet + k-1);
339 det.ReadBadDetectorAndChips(i-1,(j-1)*ndet + k-1,fDetTypeRec);
4187a601 340 if(det.IsBad()) {nBadDetsPerLayer++;}
23197852 341 } // end loop on detectors
342 } // end loop on ladders
4187a601 343 Info("ReadBadFromDetTypeRec",Form("Layer %d: %d bad out of %d",i-1,nBadDetsPerLayer,ndet*AliITSgeomTGeo::GetNLadders(i)));
23197852 344 } // end loop on layers
345
346 return;
347}
348//------------------------------------------------------------------------
e43c066c 349Int_t AliITStrackerMI::LoadClusters(TTree *cTree) {
350 //--------------------------------------------------------------------
351 //This function loads ITS clusters
352 //--------------------------------------------------------------------
00a7cc50 353 TBranch *branch=cTree->GetBranch("ITSRecPoints");
e43c066c 354 if (!branch) {
355 Error("LoadClusters"," can't get the branch !\n");
356 return 1;
357 }
358
23197852 359 static TClonesArray dummy("AliITSRecPoint",10000), *clusters=&dummy;
e43c066c 360 branch->SetAddress(&clusters);
361
23197852 362 Int_t i=0,j=0,ndet=0;
e43c066c 363 Int_t detector=0;
23197852 364 for (i=0; i<AliITSgeomTGeo::GetNLayers(); i++) {
365 ndet=fgLayers[i].GetNdetectors();
e43c066c 366 Int_t jmax = j + fgLayers[i].GetNladders()*ndet;
367 for (; j<jmax; j++) {
368 if (!cTree->GetEvent(j)) continue;
369 Int_t ncl=clusters->GetEntriesFast();
370 SignDeltas(clusters,GetZ());
1f3e997f 371
e43c066c 372 while (ncl--) {
00a7cc50 373 AliITSRecPoint *c=(AliITSRecPoint*)clusters->UncheckedAt(ncl);
75fb37cc 374 detector=c->GetDetectorIndex();
a504d56f 375
75fb37cc 376 if (!c->Misalign()) AliWarning("Can't misalign this cluster !");
a504d56f 377
00a7cc50 378 fgLayers[i].InsertCluster(new AliITSRecPoint(*c));
e43c066c 379 }
380 clusters->Delete();
afd25725 381 // add dead zone "virtual" cluster in SPD, if there is a cluster within
382 // zwindow cm from the dead zone
383 if (i<2 && AliITSReconstructor::GetRecoParam()->GetAddVirtualClustersInDeadZone()) {
e50912db 384 for (Float_t xdead = 0; xdead < AliITSRecoParam::GetSPDdetxlength(); xdead += (i+1.)*AliITSReconstructor::GetRecoParam()->GetXPassDeadZoneHits()) {
afd25725 385 Int_t lab[4] = {0,0,0,detector};
386 Int_t info[3] = {0,0,i};
6518a6c5 387 Float_t q = 0.; // this identifies virtual clusters
afd25725 388 Float_t hit[5] = {xdead,
389 0.,
390 AliITSReconstructor::GetRecoParam()->GetSigmaXDeadZoneHit2(),
391 AliITSReconstructor::GetRecoParam()->GetSigmaZDeadZoneHit2(),
392 q};
393 Bool_t local = kTRUE;
394 Double_t zwindow = AliITSReconstructor::GetRecoParam()->GetZWindowDeadZone();
e50912db 395 hit[1] = fSPDdetzcentre[0]+0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 396 if (TMath::Abs(fgLayers[i].GetDetector(detector).GetZmax()-hit[1])<zwindow)
397 fgLayers[i].InsertCluster(new AliITSRecPoint(lab,hit,info,local));
e50912db 398 hit[1] = fSPDdetzcentre[1]-0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 399 if (TMath::Abs(fgLayers[i].GetDetector(detector).GetZmax()-hit[1])<zwindow)
400 fgLayers[i].InsertCluster(new AliITSRecPoint(lab,hit,info,local));
e50912db 401 hit[1] = fSPDdetzcentre[1]+0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 402 if (TMath::Abs(fgLayers[i].GetDetector(detector).GetZmax()-hit[1])<zwindow)
403 fgLayers[i].InsertCluster(new AliITSRecPoint(lab,hit,info,local));
e50912db 404 hit[1] = fSPDdetzcentre[2]-0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 405 if (TMath::Abs(fgLayers[i].GetDetector(detector).GetZmax()-hit[1])<zwindow)
406 fgLayers[i].InsertCluster(new AliITSRecPoint(lab,hit,info,local));
e50912db 407 hit[1] = fSPDdetzcentre[2]+0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 408 if (TMath::Abs(fgLayers[i].GetDetector(detector).GetZmax()-hit[1])<zwindow)
409 fgLayers[i].InsertCluster(new AliITSRecPoint(lab,hit,info,local));
e50912db 410 hit[1] = fSPDdetzcentre[3]-0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 411 if (TMath::Abs(fgLayers[i].GetDetector(detector).GetZmax()-hit[1])<zwindow)
412 fgLayers[i].InsertCluster(new AliITSRecPoint(lab,hit,info,local));
e43c066c 413 }
6518a6c5 414 } // "virtual" clusters in SPD
e43c066c 415
416 }
417 //
418 fgLayers[i].ResetRoad(); //road defined by the cluster density
419 fgLayers[i].SortClusters();
420 }
421
23197852 422 dummy.Clear();
423
e43c066c 424 return 0;
425}
44347160 426//------------------------------------------------------------------------
e43c066c 427void AliITStrackerMI::UnloadClusters() {
428 //--------------------------------------------------------------------
429 //This function unloads ITS clusters
430 //--------------------------------------------------------------------
e50912db 431 for (Int_t i=0; i<AliITSgeomTGeo::GetNLayers(); i++) fgLayers[i].ResetClusters();
e43c066c 432}
44347160 433//------------------------------------------------------------------------
23197852 434void AliITStrackerMI::FillClusterArray(TObjArray* array) const {
435 //--------------------------------------------------------------------
436 // Publishes all pointers to clusters known to the tracker into the
437 // passed object array.
438 // The ownership is not transfered - the caller is not expected to delete
439 // the clusters.
440 //--------------------------------------------------------------------
441
442 for(Int_t i=0; i<AliITSgeomTGeo::GetNLayers(); i++) {
443 for(Int_t icl=0; icl<fgLayers[i].GetNumberOfClusters(); icl++) {
444 AliCluster *cl = (AliCluster*)fgLayers[i].GetCluster(icl);
445 array->AddLast(cl);
446 }
447 }
448
449 return;
450}
451//------------------------------------------------------------------------
afd25725 452static Int_t CorrectForTPCtoITSDeadZoneMaterial(AliITStrackMI *t) {
e43c066c 453 //--------------------------------------------------------------------
454 // Correction for the material between the TPC and the ITS
e43c066c 455 //--------------------------------------------------------------------
e50912db 456 if (t->GetX() > AliITSRecoParam::Getriw()) { // inward direction
457 if (!t->PropagateToTGeo(AliITSRecoParam::Getriw(),1)) return 0;// TPC inner wall
458 if (!t->PropagateToTGeo(AliITSRecoParam::Getrcd(),1)) return 0;// TPC central drum
459 if (!t->PropagateToTGeo(AliITSRecoParam::Getrs(),1)) return 0;// ITS screen
460 } else if (t->GetX() < AliITSRecoParam::Getrs()) { // outward direction
461 if (!t->PropagateToTGeo(AliITSRecoParam::Getrs(),1)) return 0;// ITS screen
462 if (!t->PropagateToTGeo(AliITSRecoParam::Getrcd(),1)) return 0;// TPC central drum
463 if (!t->PropagateToTGeo(AliITSRecoParam::Getriw()+0.001,1)) return 0;// TPC inner wall
e43c066c 464 } else {
afd25725 465 Error("CorrectForTPCtoITSDeadZoneMaterial","Track is already in the dead zone !");
e50912db 466 return 0;
e43c066c 467 }
468
e50912db 469 return 1;
e43c066c 470}
44347160 471//------------------------------------------------------------------------
af885e0f 472Int_t AliITStrackerMI::Clusters2Tracks(AliESDEvent *event) {
e43c066c 473 //--------------------------------------------------------------------
474 // This functions reconstructs ITS tracks
475 // The clusters must be already loaded !
476 //--------------------------------------------------------------------
fddf8459 477
478
e50912db 479 fTrackingPhase="Clusters2Tracks";
480
e43c066c 481 TObjArray itsTracks(15000);
628e7bb0 482 fOriginal.Clear();
81e97e0d 483 fEsd = event; // store pointer to the esd
afd25725 484
9a5326b1 485 // temporary (for cosmics)
486 if(event->GetVertex()) {
487 TString title = event->GetVertex()->GetTitle();
488 if(title.Contains("cosmics")) {
489 Double_t xyz[3]={GetX(),GetY(),GetZ()};
490 Double_t exyz[3]={0.1,0.1,0.1};
491 SetVertex(xyz,exyz);
492 }
493 }
494 // temporary
afd25725 495
e43c066c 496 {/* Read ESD tracks */
afd25725 497 Double_t pimass = TDatabasePDG::Instance()->GetParticle(211)->Mass();
e43c066c 498 Int_t nentr=event->GetNumberOfTracks();
499 Info("Clusters2Tracks", "Number of ESD tracks: %d\n", nentr);
500 while (nentr--) {
501 AliESDtrack *esd=event->GetTrack(nentr);
4187a601 502 // ---- for debugging:
503 //if(TMath::Abs(esd->GetX()-83.65)<0.1) { FILE *f=fopen("tpc.dat","a"); fprintf(f,"%f %f %f %f %f %f\n",(Float_t)event->GetEventNumberInFile(),(Float_t)TMath::Abs(esd->GetLabel()),(Float_t)esd->GetX(),(Float_t)esd->GetY(),(Float_t)esd->GetZ(),(Float_t)esd->Pt()); fclose(f); }
e43c066c 504
505 if ((esd->GetStatus()&AliESDtrack::kTPCin)==0) continue;
506 if (esd->GetStatus()&AliESDtrack::kTPCout) continue;
507 if (esd->GetStatus()&AliESDtrack::kITSin) continue;
51ad6848 508 if (esd->GetKinkIndex(0)>0) continue; //kink daughter
15dd636f 509 AliITStrackMI *t=0;
e43c066c 510 try {
15dd636f 511 t=new AliITStrackMI(*esd);
e43c066c 512 } catch (const Char_t *msg) {
628e7bb0 513 //Warning("Clusters2Tracks",msg);
e43c066c 514 delete t;
515 continue;
516 }
b9671574 517 t->GetDZ(GetX(),GetY(),GetZ(),t->GetDP()); //I.B.
518 Double_t vdist = TMath::Sqrt(t->GetD(0)*t->GetD(0)+t->GetD(1)*t->GetD(1));
6518a6c5 519
520
afd25725 521 // look at the ESD mass hypothesys !
522 if (t->GetMass()<0.9*pimass) t->SetMass(pimass);
e43c066c 523 // write expected q
b9671574 524 t->SetExpQ(TMath::Max(0.8*t->GetESDtrack()->GetTPCsignal(),30.));
e43c066c 525
afd25725 526 if (esd->GetV0Index(0)>0 && t->GetD(0)<AliITSReconstructor::GetRecoParam()->GetMaxDforV0dghtrForProlongation()){
81e97e0d 527 //track - can be V0 according to TPC
afd25725 528 } else {
529 if (TMath::Abs(t->GetD(0))>AliITSReconstructor::GetRecoParam()->GetMaxDForProlongation()) {
81e97e0d 530 delete t;
531 continue;
e50912db 532 }
afd25725 533 if (TMath::Abs(vdist)>AliITSReconstructor::GetRecoParam()->GetMaxDZForProlongation()) {
81e97e0d 534 delete t;
535 continue;
536 }
6c23ffed 537 if (t->Pt()<AliITSReconstructor::GetRecoParam()->GetMinPtForProlongation()) {
81e97e0d 538 delete t;
539 continue;
540 }
e50912db 541 if (!CorrectForTPCtoITSDeadZoneMaterial(t)) {
81e97e0d 542 delete t;
543 continue;
544 }
e43c066c 545 }
b9671574 546 t->SetReconstructed(kFALSE);
e43c066c 547 itsTracks.AddLast(t);
628e7bb0 548 fOriginal.AddLast(t);
e43c066c 549 }
550 } /* End Read ESD tracks */
551
552 itsTracks.Sort();
628e7bb0 553 fOriginal.Sort();
e43c066c 554 Int_t nentr=itsTracks.GetEntriesFast();
555 fTrackHypothesys.Expand(nentr);
81e97e0d 556 fBestHypothesys.Expand(nentr);
afd25725 557 MakeCoefficients(nentr);
513ab112 558 if(fUseTGeo==3 || fUseTGeo==4) MakeTrksMaterialLUT(event->GetNumberOfTracks());
e43c066c 559 Int_t ntrk=0;
afd25725 560 // THE TWO TRACKING PASSES
e43c066c 561 for (fPass=0; fPass<2; fPass++) {
562 Int_t &constraint=fConstraint[fPass]; if (constraint<0) continue;
e50912db 563 for (fCurrentEsdTrack=0; fCurrentEsdTrack<nentr; fCurrentEsdTrack++) {
e50912db 564 AliITStrackMI *t=(AliITStrackMI*)itsTracks.UncheckedAt(fCurrentEsdTrack);
e43c066c 565 if (t==0) continue; //this track has been already tracked
1c97ce2f 566 //cout<<"========== "<<fPass<<" "<<fCurrentEsdTrack<<" =========\n";
b9671574 567 if (t->GetReconstructed()&&(t->GetNUsed()<1.5)) continue; //this track was already "succesfully" reconstructed
791f9a2a 568 Float_t dz[2]; t->GetDZ(GetX(),GetY(),GetZ(),dz); //I.B.
afd25725 569 if (fConstraint[fPass]) {
570 if (TMath::Abs(dz[0])>AliITSReconstructor::GetRecoParam()->GetMaxDZToUseConstraint() ||
571 TMath::Abs(dz[1])>AliITSReconstructor::GetRecoParam()->GetMaxDZToUseConstraint()) continue;
572 }
e43c066c 573
574 Int_t tpcLabel=t->GetLabel(); //save the TPC track label
4187a601 575 AliDebug(2,Form("LABEL %d pass %d",tpcLabel,fPass));
e43c066c 576 fI = 6;
577 ResetTrackToFollow(*t);
578 ResetBestTrack();
6518a6c5 579
e50912db 580 FollowProlongationTree(t,fCurrentEsdTrack,fConstraint[fPass]);
1c97ce2f 581
e43c066c 582
583 SortTrackHypothesys(fCurrentEsdTrack,20,0); //MI change
584 //
ae00569a 585 AliITStrackMI *besttrack = GetBestHypothesys(fCurrentEsdTrack,t,15);
e43c066c 586 if (!besttrack) continue;
587 besttrack->SetLabel(tpcLabel);
588 // besttrack->CookdEdx();
589 CookdEdx(besttrack);
b9671574 590 besttrack->SetFakeRatio(1.);
e43c066c 591 CookLabel(besttrack,0.); //For comparison only
e43c066c 592 UpdateESDtrack(besttrack,AliESDtrack::kITSin);
628e7bb0 593
628e7bb0 594 if (fConstraint[fPass]&&(!besttrack->IsGoldPrimary())) continue; //to be tracked also without vertex constrain
595
b9671574 596 t->SetReconstructed(kTRUE);
1c97ce2f 597 ntrk++;
4187a601 598 AliDebug(2,Form("TRACK! (label %d) ncls %d",besttrack->GetLabel(),besttrack->GetNumberOfClusters()));
e43c066c 599 }
600 GetBestHypothesysMIP(itsTracks);
afd25725 601 } // end loop on the two tracking passes
e43c066c 602
afd25725 603 if(event->GetNumberOfV0s()>0) UpdateTPCV0(event);
604 if(AliITSReconstructor::GetRecoParam()->GetFindV0s()) FindV02(event);
628e7bb0 605 fAfterV0 = kTRUE;
628e7bb0 606 //
e43c066c 607 itsTracks.Delete();
608 //
609 Int_t entries = fTrackHypothesys.GetEntriesFast();
e50912db 610 for (Int_t ientry=0; ientry<entries; ientry++) {
e43c066c 611 TObjArray * array =(TObjArray*)fTrackHypothesys.UncheckedAt(ientry);
612 if (array) array->Delete();
613 delete fTrackHypothesys.RemoveAt(ientry);
614 }
615
616 fTrackHypothesys.Delete();
81e97e0d 617 fBestHypothesys.Delete();
628e7bb0 618 fOriginal.Clear();
afd25725 619 delete [] fCoefficients;
620 fCoefficients=0;
e50912db 621 DeleteTrksMaterialLUT();
622
e43c066c 623 Info("Clusters2Tracks","Number of prolonged tracks: %d\n",ntrk);
e50912db 624
625 fTrackingPhase="Default";
628e7bb0 626
e43c066c 627 return 0;
628}
44347160 629//------------------------------------------------------------------------
af885e0f 630Int_t AliITStrackerMI::PropagateBack(AliESDEvent *event) {
e43c066c 631 //--------------------------------------------------------------------
632 // This functions propagates reconstructed ITS tracks back
633 // The clusters must be loaded !
634 //--------------------------------------------------------------------
e50912db 635 fTrackingPhase="PropagateBack";
e43c066c 636 Int_t nentr=event->GetNumberOfTracks();
637 Info("PropagateBack", "Number of ESD tracks: %d\n", nentr);
638
639 Int_t ntrk=0;
640 for (Int_t i=0; i<nentr; i++) {
641 AliESDtrack *esd=event->GetTrack(i);
642
643 if ((esd->GetStatus()&AliESDtrack::kITSin)==0) continue;
644 if (esd->GetStatus()&AliESDtrack::kITSout) continue;
645
15dd636f 646 AliITStrackMI *t=0;
e43c066c 647 try {
15dd636f 648 t=new AliITStrackMI(*esd);
e43c066c 649 } catch (const Char_t *msg) {
628e7bb0 650 //Warning("PropagateBack",msg);
e43c066c 651 delete t;
652 continue;
653 }
b9671574 654 t->SetExpQ(TMath::Max(0.8*t->GetESDtrack()->GetTPCsignal(),30.));
e43c066c 655
656 ResetTrackToFollow(*t);
657
9a5326b1 658 // propagate to vertex [SR, GSI 17.02.2003]
e43c066c 659 // Start Time measurement [SR, GSI 17.02.2003], corrected by I.Belikov
e50912db 660 if (CorrectForPipeMaterial(&fTrackToFollow,"inward")) {
661 if (fTrackToFollow.PropagateToVertex(event->GetVertex()))
662 fTrackToFollow.StartTimeIntegral();
663 // from vertex to outside pipe
664 CorrectForPipeMaterial(&fTrackToFollow,"outward");
e43c066c 665 }
666
6c94f330 667 fTrackToFollow.ResetCovariance(10.); fTrackToFollow.ResetClusters();
e50912db 668 if (RefitAt(AliITSRecoParam::GetrInsideITSscreen(),&fTrackToFollow,t)) {
669 if (!CorrectForTPCtoITSDeadZoneMaterial(&fTrackToFollow)) {
e43c066c 670 delete t;
671 continue;
672 }
673 fTrackToFollow.SetLabel(t->GetLabel());
674 //fTrackToFollow.CookdEdx();
675 CookLabel(&fTrackToFollow,0.); //For comparison only
676 fTrackToFollow.UpdateESDtrack(AliESDtrack::kITSout);
677 //UseClusters(&fTrackToFollow);
678 ntrk++;
679 }
680 delete t;
681 }
682
683 Info("PropagateBack","Number of back propagated ITS tracks: %d\n",ntrk);
684
e50912db 685 fTrackingPhase="Default";
686
e43c066c 687 return 0;
688}
44347160 689//------------------------------------------------------------------------
af885e0f 690Int_t AliITStrackerMI::RefitInward(AliESDEvent *event) {
e43c066c 691 //--------------------------------------------------------------------
692 // This functions refits ITS tracks using the
693 // "inward propagated" TPC tracks
694 // The clusters must be loaded !
695 //--------------------------------------------------------------------
e50912db 696 fTrackingPhase="RefitInward";
afd25725 697 if(AliITSReconstructor::GetRecoParam()->GetFindV0s()) RefitV02(event);
e43c066c 698 Int_t nentr=event->GetNumberOfTracks();
699 Info("RefitInward", "Number of ESD tracks: %d\n", nentr);
700
701 Int_t ntrk=0;
702 for (Int_t i=0; i<nentr; i++) {
703 AliESDtrack *esd=event->GetTrack(i);
704
705 if ((esd->GetStatus()&AliESDtrack::kITSout) == 0) continue;
706 if (esd->GetStatus()&AliESDtrack::kITSrefit) continue;
707 if (esd->GetStatus()&AliESDtrack::kTPCout)
708 if ((esd->GetStatus()&AliESDtrack::kTPCrefit)==0) continue;
709
15dd636f 710 AliITStrackMI *t=0;
e43c066c 711 try {
15dd636f 712 t=new AliITStrackMI(*esd);
e43c066c 713 } catch (const Char_t *msg) {
628e7bb0 714 //Warning("RefitInward",msg);
e43c066c 715 delete t;
716 continue;
717 }
b9671574 718 t->SetExpQ(TMath::Max(0.8*t->GetESDtrack()->GetTPCsignal(),30.));
e50912db 719 if (!CorrectForTPCtoITSDeadZoneMaterial(t)) {
e43c066c 720 delete t;
721 continue;
722 }
723
724 ResetTrackToFollow(*t);
725 fTrackToFollow.ResetClusters();
726
727 if ((esd->GetStatus()&AliESDtrack::kTPCin)==0)
6c94f330 728 fTrackToFollow.ResetCovariance(10.);
e43c066c 729
730 //Refitting...
7167ae53 731 Bool_t pe=AliITSReconstructor::GetRecoParam()->GetComputePlaneEff();
4187a601 732 AliDebug(2,Form("Refit LABEL %d %d",t->GetLabel(),t->GetNumberOfClusters()));
7167ae53 733 if (RefitAt(AliITSRecoParam::GetrInsideSPD1(),&fTrackToFollow,t,kTRUE,pe)) {
4187a601 734 AliDebug(2," refit OK");
e43c066c 735 fTrackToFollow.SetLabel(t->GetLabel());
736 // fTrackToFollow.CookdEdx();
737 CookdEdx(&fTrackToFollow);
738
739 CookLabel(&fTrackToFollow,0.0); //For comparison only
740
9a5326b1 741 //The beam pipe
e50912db 742 if (CorrectForPipeMaterial(&fTrackToFollow,"inward")) {
ae00569a 743 fTrackToFollow.UpdateESDtrack(AliESDtrack::kITSrefit);
9a5326b1 744 AliESDtrack *esdTrack =fTrackToFollow.GetESDtrack();
ae00569a 745 //printf(" %d\n",esdTrack->GetITSModuleIndex(0));
746 //esdTrack->UpdateTrackParams(&fTrackToFollow,AliESDtrack::kITSrefit); //original line
9a5326b1 747 Float_t r[3]={0.,0.,0.};
748 Double_t maxD=3.;
749 esdTrack->RelateToVertex(event->GetVertex(),GetBz(r),maxD);
750 ntrk++;
e43c066c 751 }
752 }
753 delete t;
754 }
755
756 Info("RefitInward","Number of refitted tracks: %d\n",ntrk);
757
e50912db 758 fTrackingPhase="Default";
759
e43c066c 760 return 0;
761}
44347160 762//------------------------------------------------------------------------
e43c066c 763AliCluster *AliITStrackerMI::GetCluster(Int_t index) const {
764 //--------------------------------------------------------------------
765 // Return pointer to a given cluster
766 //--------------------------------------------------------------------
767 Int_t l=(index & 0xf0000000) >> 28;
768 Int_t c=(index & 0x0fffffff) >> 00;
769 return fgLayers[l].GetCluster(c);
770}
9a5326b1 771//------------------------------------------------------------------------
df29e9a4 772Bool_t AliITStrackerMI::GetTrackPoint(Int_t index, AliTrackPoint& p) const {
9a5326b1 773 //--------------------------------------------------------------------
df29e9a4 774 // Get track space point with index i
9a5326b1 775 //--------------------------------------------------------------------
60066577 776
78b03929 777 Int_t l=(index & 0xf0000000) >> 28;
778 Int_t c=(index & 0x0fffffff) >> 00;
00a7cc50 779 AliITSRecPoint *cl = fgLayers[l].GetCluster(c);
df29e9a4 780 Int_t idet = cl->GetDetectorIndex();
4e65ff9e 781
60066577 782 Float_t xyz[3];
783 Float_t cov[6];
784 cl->GetGlobalXYZ(xyz);
785 cl->GetGlobalCov(cov);
786 p.SetXYZ(xyz, cov);
be77c8c9 787 p.SetCharge(cl->GetQ());
ebbcf1ea 788 p.SetDriftTime(cl->GetDriftTime());
ae079791 789 AliGeomManager::ELayerID iLayer = AliGeomManager::kInvalidLayer;
df29e9a4 790 switch (l) {
791 case 0:
ae079791 792 iLayer = AliGeomManager::kSPD1;
df29e9a4 793 break;
794 case 1:
ae079791 795 iLayer = AliGeomManager::kSPD2;
df29e9a4 796 break;
797 case 2:
ae079791 798 iLayer = AliGeomManager::kSDD1;
df29e9a4 799 break;
800 case 3:
ae079791 801 iLayer = AliGeomManager::kSDD2;
9a5326b1 802 break;
803 case 4:
804 iLayer = AliGeomManager::kSSD1;
805 break;
806 case 5:
807 iLayer = AliGeomManager::kSSD2;
808 break;
809 default:
810 AliWarning(Form("Wrong layer index in ITS (%d) !",l));
811 break;
812 };
813 UShort_t volid = AliGeomManager::LayerToVolUID(iLayer,idet);
814 p.SetVolumeID((UShort_t)volid);
815 return kTRUE;
816}
817//------------------------------------------------------------------------
818Bool_t AliITStrackerMI::GetTrackPointTrackingError(Int_t index,
819 AliTrackPoint& p, const AliESDtrack *t) {
820 //--------------------------------------------------------------------
821 // Get track space point with index i
822 // (assign error estimated during the tracking)
823 //--------------------------------------------------------------------
824
825 Int_t l=(index & 0xf0000000) >> 28;
826 Int_t c=(index & 0x0fffffff) >> 00;
827 const AliITSRecPoint *cl = fgLayers[l].GetCluster(c);
828 Int_t idet = cl->GetDetectorIndex();
4187a601 829
9a5326b1 830 const AliITSdetector &det=fgLayers[l].GetDetector(idet);
831
832 // tgphi and tglambda of the track in tracking frame with alpha=det.GetPhi
833 Float_t detxy[2];
834 detxy[0] = det.GetR()*TMath::Cos(det.GetPhi());
835 detxy[1] = det.GetR()*TMath::Sin(det.GetPhi());
836 Double_t alpha = t->GetAlpha();
837 Double_t xdetintrackframe = detxy[0]*TMath::Cos(alpha)+detxy[1]*TMath::Sin(alpha);
9be1d1c7 838 Float_t phi = TMath::ASin(t->GetSnpAt(xdetintrackframe,GetBz()));
9a5326b1 839 phi += alpha-det.GetPhi();
840 Float_t tgphi = TMath::Tan(phi);
841
842 Float_t tgl = t->GetTgl(); // tgl about const along track
843 Float_t expQ = TMath::Max(0.8*t->GetTPCsignal(),30.);
844
845 Float_t errlocalx,errlocalz;
8c139cf3 846 Bool_t addMisalErr=kFALSE;
847 AliITSClusterParam::GetError(l,cl,tgl,tgphi,expQ,errlocalx,errlocalz,addMisalErr);
9a5326b1 848
849 Float_t xyz[3];
850 Float_t cov[6];
851 cl->GetGlobalXYZ(xyz);
852 // cl->GetGlobalCov(cov);
853 Float_t pos[3] = {0.,0.,0.};
854 AliCluster tmpcl((UShort_t)cl->GetVolumeId(),pos[0],pos[1],pos[2],errlocalx*errlocalx,errlocalz*errlocalz,0);
855 tmpcl.GetGlobalCov(cov);
856
857 p.SetXYZ(xyz, cov);
be77c8c9 858 p.SetCharge(cl->GetQ());
ebbcf1ea 859 p.SetDriftTime(cl->GetDriftTime());
9a5326b1 860
861 AliGeomManager::ELayerID iLayer = AliGeomManager::kInvalidLayer;
862 switch (l) {
863 case 0:
864 iLayer = AliGeomManager::kSPD1;
865 break;
866 case 1:
867 iLayer = AliGeomManager::kSPD2;
868 break;
869 case 2:
870 iLayer = AliGeomManager::kSDD1;
871 break;
872 case 3:
873 iLayer = AliGeomManager::kSDD2;
df29e9a4 874 break;
875 case 4:
ae079791 876 iLayer = AliGeomManager::kSSD1;
df29e9a4 877 break;
878 case 5:
ae079791 879 iLayer = AliGeomManager::kSSD2;
df29e9a4 880 break;
881 default:
882 AliWarning(Form("Wrong layer index in ITS (%d) !",l));
883 break;
884 };
ae079791 885 UShort_t volid = AliGeomManager::LayerToVolUID(iLayer,idet);
4187a601 886
df29e9a4 887 p.SetVolumeID((UShort_t)volid);
888 return kTRUE;
889}
44347160 890//------------------------------------------------------------------------
81e97e0d 891void AliITStrackerMI::FollowProlongationTree(AliITStrackMI * otrack, Int_t esdindex, Bool_t constrain)
e43c066c 892{
893 //--------------------------------------------------------------------
894 // Follow prolongation tree
895 //--------------------------------------------------------------------
81e97e0d 896 //
afd25725 897 Double_t xyzVtx[]={GetX(),GetY(),GetZ()};
898 Double_t ersVtx[]={GetSigmaX(),GetSigmaY(),GetSigmaZ()};
899
2755f080 900
b9671574 901 AliESDtrack * esd = otrack->GetESDtrack();
afd25725 902 if (esd->GetV0Index(0)>0) {
81e97e0d 903 // TEMPORARY SOLLUTION: map V0 indexes to point to proper track
afd25725 904 // mapping of ESD track is different as ITS track in Containers
81e97e0d 905 // Need something more stable
44347160 906 // Indexes are set back again to the ESD track indexes in UpdateTPCV0
81e97e0d 907 for (Int_t i=0;i<3;i++){
908 Int_t index = esd->GetV0Index(i);
909 if (index==0) break;
d6a49f20 910 AliESDv0 * vertex = fEsd->GetV0(index);
81e97e0d 911 if (vertex->GetStatus()<0) continue; // rejected V0
912 //
afd25725 913 if (esd->GetSign()>0) {
914 vertex->SetIndex(0,esdindex);
915 } else {
916 vertex->SetIndex(1,esdindex);
917 }
81e97e0d 918 }
919 }
920 TObjArray *bestarray = (TObjArray*)fBestHypothesys.At(esdindex);
921 if (!bestarray){
922 bestarray = new TObjArray(5);
923 fBestHypothesys.AddAt(bestarray,esdindex);
924 }
e43c066c 925
81e97e0d 926 //
e43c066c 927 //setup tree of the prolongations
928 //
15dd636f 929 static AliITStrackMI tracks[7][100];
930 AliITStrackMI *currenttrack;
931 static AliITStrackMI currenttrack1;
932 static AliITStrackMI currenttrack2;
933 static AliITStrackMI backuptrack;
e43c066c 934 Int_t ntracks[7];
935 Int_t nindexes[7][100];
936 Float_t normalizedchi2[100];
937 for (Int_t ilayer=0;ilayer<6;ilayer++) ntracks[ilayer]=0;
b9671574 938 otrack->SetNSkipped(0);
15dd636f 939 new (&(tracks[6][0])) AliITStrackMI(*otrack);
e43c066c 940 ntracks[6]=1;
81e97e0d 941 for (Int_t i=0;i<7;i++) nindexes[i][0]=0;
ae00569a 942 Int_t modstatus = 1; // found
943 Float_t xloc,zloc;
e43c066c 944 //
945 //
946 // follow prolongations
e50912db 947 for (Int_t ilayer=5; ilayer>=0; ilayer--) {
4187a601 948 AliDebug(2,Form("FollowProlongationTree: layer %d",ilayer));
2755f080 949 fI = ilayer;
e43c066c 950 //
2755f080 951 AliITSlayer &layer=fgLayers[ilayer];
952 Double_t r = layer.GetR();
e43c066c 953 ntracks[ilayer]=0;
954 //
955 //
2755f080 956 Int_t nskipped=0;
e43c066c 957 Float_t nused =0;
e50912db 958 for (Int_t itrack =0; itrack<ntracks[ilayer+1]; itrack++) {
e43c066c 959 //set current track
960 if (ntracks[ilayer]>=100) break;
b9671574 961 if (tracks[ilayer+1][nindexes[ilayer+1][itrack]].GetNSkipped()>0) nskipped++;
962 if (tracks[ilayer+1][nindexes[ilayer+1][itrack]].GetNUsed()>2.) nused++;
e43c066c 963 if (ntracks[ilayer]>15+ilayer){
b9671574 964 if (itrack>1&&tracks[ilayer+1][nindexes[ilayer+1][itrack]].GetNSkipped()>0 && nskipped>4+ilayer) continue;
965 if (itrack>1&&tracks[ilayer+1][nindexes[ilayer+1][itrack]].GetNUsed()>2. && nused>3) continue;
e43c066c 966 }
967
15dd636f 968 new(&currenttrack1) AliITStrackMI(tracks[ilayer+1][nindexes[ilayer+1][itrack]]);
44347160 969
afd25725 970 // material between SSD and SDD, SDD and SPD
e50912db 971 if (ilayer==3)
972 if(!CorrectForShieldMaterial(&currenttrack1,"SDD","inward")) continue;
973 if (ilayer==1)
974 if(!CorrectForShieldMaterial(&currenttrack1,"SPD","inward")) continue;
8602c008 975
2755f080 976 // detector number
8602c008 977 Double_t phi,z;
978 if (!currenttrack1.GetPhiZat(r,phi,z)) continue;
e43c066c 979 Int_t idet=layer.FindDetectorIndex(phi,z);
e50912db 980
981 Double_t trackGlobXYZ1[3];
d1181f10 982 if (!currenttrack1.GetXYZ(trackGlobXYZ1)) continue;
e50912db 983
2755f080 984 // Get the budget to the primary vertex for the current track being prolonged
985 Double_t budgetToPrimVertex = GetEffectiveThickness();
986
987 // check if we allow a prolongation without point
6518a6c5 988 Int_t skip = CheckSkipLayer(&currenttrack1,ilayer,idet);
2755f080 989 if (skip) {
990 AliITStrackMI* vtrack = new (&tracks[ilayer][ntracks[ilayer]]) AliITStrackMI(currenttrack1);
6518a6c5 991 // propagate to the layer radius
d1181f10 992 Double_t xToGo; if (!vtrack->GetLocalXat(r,xToGo)) continue;
9be1d1c7 993 if(!vtrack->Propagate(xToGo)) continue;
2755f080 994 // apply correction for material of the current layer
995 CorrectForLayerMaterial(vtrack,ilayer,trackGlobXYZ1,"inward");
996 vtrack->SetNDeadZone(vtrack->GetNDeadZone()+1);
997 vtrack->SetClIndex(ilayer,0);
ae00569a 998 modstatus = (skip==1 ? 3 : 4); // skipped : out in z
d1181f10 999 if(LocalModuleCoord(ilayer,idet,vtrack,xloc,zloc)) { // local module coords
1000 vtrack->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
1001 }
2755f080 1002 if(constrain) vtrack->Improve(budgetToPrimVertex,xyzVtx,ersVtx);
1003 ntracks[ilayer]++;
6518a6c5 1004 continue;
2755f080 1005 }
1006
1007 // track outside layer acceptance in z
1008 if (idet<0) continue;
1009
1010 //propagate to the intersection with the detector plane
1011 const AliITSdetector &det=layer.GetDetector(idet);
1012 new(&currenttrack2) AliITStrackMI(currenttrack1);
44347160 1013 if (!currenttrack1.Propagate(det.GetPhi(),det.GetR())) continue;
d1181f10 1014 if (!currenttrack2.Propagate(det.GetPhi(),det.GetR())) continue;
e43c066c 1015 currenttrack1.SetDetectorIndex(idet);
1016 currenttrack2.SetDetectorIndex(idet);
d1181f10 1017 if(!LocalModuleCoord(ilayer,idet,&currenttrack1,xloc,zloc)) continue; // local module coords
6518a6c5 1018
afd25725 1019 //***************
1c97ce2f 1020 // DEFINITION OF SEARCH ROAD AND CLUSTERS SELECTION
e43c066c 1021 //
2755f080 1022 // road in global (rphi,z) [i.e. in tracking ref. system]
1c97ce2f 1023 Double_t zmin,zmax,ymin,ymax;
1024 if (!ComputeRoad(&currenttrack1,ilayer,idet,zmin,zmax,ymin,ymax)) continue;
2755f080 1025
afd25725 1026 // select clusters in road
e43c066c 1027 layer.SelectClusters(zmin,zmax,ymin,ymax);
afd25725 1028 //********************
44347160 1029
afd25725 1030 // Define criteria for track-cluster association
44347160 1031 Double_t msz = currenttrack1.GetSigmaZ2() +
1032 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
1033 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
1034 AliITSReconstructor::GetRecoParam()->GetSigmaZ2(ilayer);
1035 Double_t msy = currenttrack1.GetSigmaY2() +
1036 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
1037 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
1038 AliITSReconstructor::GetRecoParam()->GetSigmaY2(ilayer);
1039 if (constrain) {
1040 msz *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadZC();
1041 msy *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadYC();
1042 } else {
1043 msz *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadZNonC();
1044 msy *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadYNonC();
1045 }
1046 msz = 1./msz; // 1/RoadZ^2
1047 msy = 1./msy; // 1/RoadY^2
1c97ce2f 1048
e43c066c 1049 //
e43c066c 1050 //
afd25725 1051 // LOOP OVER ALL POSSIBLE TRACK PROLONGATIONS ON THIS LAYER
e43c066c 1052 //
afd25725 1053 const AliITSRecPoint *cl=0;
1054 Int_t clidx=-1;
1055 Double_t chi2trkcl=AliITSReconstructor::GetRecoParam()->GetMaxChi2(); // init with big value
6518a6c5 1056 Bool_t deadzoneSPD=kFALSE;
e43c066c 1057 currenttrack = &currenttrack1;
6518a6c5 1058
ae00569a 1059 // check if the road contains a dead zone
23197852 1060 Bool_t noClusters = kFALSE;
1061 if (!layer.GetNextCluster(clidx,kTRUE)) noClusters=kTRUE;
4187a601 1062 if (noClusters) AliDebug(2,"no clusters in road");
1c97ce2f 1063 Double_t dz=0.5*(zmax-zmin);
1064 Double_t dy=0.5*(ymax-ymin);
1065 Int_t dead = CheckDeadZone(&currenttrack1,ilayer,idet,dz,dy,noClusters);
4187a601 1066 if(dead) AliDebug(2,Form("DEAD (%d)\n",dead));
ae00569a 1067 // create a prolongation without clusters (check also if there are no clusters in the road)
1068 if (dead ||
23197852 1069 (noClusters &&
ae00569a 1070 AliITSReconstructor::GetRecoParam()->GetAllowProlongationWithEmptyRoad())) {
6518a6c5 1071 AliITStrackMI * updatetrack = new (&tracks[ilayer][ntracks[ilayer]]) AliITStrackMI(*currenttrack);
1072 updatetrack->SetClIndex(ilayer,0);
ae00569a 1073 if (dead==0) {
1074 modstatus = 5; // no cls in road
1075 } else if (dead==1) {
1076 modstatus = 7; // holes in z in SPD
23197852 1077 } else if (dead==2 || dead==3) {
ae00569a 1078 modstatus = 2; // dead from OCDB
1079 }
1080 updatetrack->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
6518a6c5 1081 // apply correction for material of the current layer
1082 CorrectForLayerMaterial(updatetrack,ilayer,trackGlobXYZ1,"inward");
1083 if (constrain) { // apply vertex constrain
1084 updatetrack->SetConstrain(constrain);
1085 Bool_t isPrim = kTRUE;
1086 if (ilayer<4) { // check that it's close to the vertex
1087 updatetrack->GetDZ(GetX(),GetY(),GetZ(),updatetrack->GetDP()); //I.B.
1088 if (TMath::Abs(updatetrack->GetD(0)/(1.+ilayer)) > // y
1089 AliITSReconstructor::GetRecoParam()->GetMaxDZforPrimTrk() ||
1090 TMath::Abs(updatetrack->GetD(1)/(1.+ilayer)) > // z
1091 AliITSReconstructor::GetRecoParam()->GetMaxDZforPrimTrk()) isPrim=kFALSE;
1092 }
1093 if (isPrim) updatetrack->Improve(budgetToPrimVertex,xyzVtx,ersVtx);
1094 }
ae00569a 1095 if (dead) {
1096 updatetrack->SetNDeadZone(updatetrack->GetNDeadZone()+1);
1097 if (dead==1) { // dead zone at z=0,+-7cm in SPD
1098 updatetrack->SetDeadZoneProbability(GetSPDDeadZoneProbability(updatetrack->GetZ(),TMath::Sqrt(updatetrack->GetSigmaZ2())));
1099 deadzoneSPD=kTRUE;
1100 }
6518a6c5 1101 }
1102 ntracks[ilayer]++;
1103 }
1104
ae00569a 1105 clidx=-1;
6518a6c5 1106 // loop over clusters in the road
afd25725 1107 while ((cl=layer.GetNextCluster(clidx))!=0) {
e43c066c 1108 if (ntracks[ilayer]>95) break; //space for skipped clusters
afd25725 1109 Bool_t changedet =kFALSE;
6518a6c5 1110 if (cl->GetQ()==0 && deadzoneSPD==kTRUE) continue;
a5d0fae6 1111 Int_t idetc=cl->GetDetectorIndex();
afd25725 1112
a5d0fae6 1113 if (currenttrack->GetDetectorIndex()==idetc) { // track already on the cluster's detector
1c97ce2f 1114 // take into account misalignment (bring track to real detector plane)
1115 Double_t xTrOrig = currenttrack->GetX();
9be1d1c7 1116 if (!currenttrack->Propagate(xTrOrig+cl->GetX())) continue;
afd25725 1117 // a first cut on track-cluster distance
1118 if ( (currenttrack->GetZ()-cl->GetZ())*(currenttrack->GetZ()-cl->GetZ())*msz +
1119 (currenttrack->GetY()-cl->GetY())*(currenttrack->GetY()-cl->GetY())*msy > 1. )
1c97ce2f 1120 { // cluster not associated to track
4187a601 1121 AliDebug(2,"not associated");
1c97ce2f 1122 continue;
1123 }
1124 // bring track back to ideal detector plane
9be1d1c7 1125 if (!currenttrack->Propagate(xTrOrig)) continue;
afd25725 1126 } else { // have to move track to cluster's detector
a5d0fae6 1127 const AliITSdetector &detc=layer.GetDetector(idetc);
afd25725 1128 // a first cut on track-cluster distance
a5d0fae6 1129 Double_t y;
1c97ce2f 1130 if (!currenttrack2.GetProlongationFast(detc.GetPhi(),detc.GetR()+cl->GetX(),y,z)) continue;
afd25725 1131 if ( (z-cl->GetZ())*(z-cl->GetZ())*msz +
1132 (y-cl->GetY())*(y-cl->GetY())*msy > 1. )
44347160 1133 continue; // cluster not associated to track
e43c066c 1134 //
15dd636f 1135 new (&backuptrack) AliITStrackMI(currenttrack2);
afd25725 1136 changedet = kTRUE;
e43c066c 1137 currenttrack =&currenttrack2;
a5d0fae6 1138 if (!currenttrack->Propagate(detc.GetPhi(),detc.GetR())) {
15dd636f 1139 new (currenttrack) AliITStrackMI(backuptrack);
afd25725 1140 changedet = kFALSE;
e43c066c 1141 continue;
1142 }
a5d0fae6 1143 currenttrack->SetDetectorIndex(idetc);
e50912db 1144 // Get again the budget to the primary vertex
1145 // for the current track being prolonged, if had to change detector
1146 //budgetToPrimVertex = GetEffectiveThickness();// not needed at the moment because anyway we take a mean material for this correction
e43c066c 1147 }
1148
afd25725 1149 // calculate track-clusters chi2
1150 chi2trkcl = GetPredictedChi2MI(currenttrack,cl,ilayer);
1151 // chi2 cut
4187a601 1152 AliDebug(2,Form("chi2 %f max %f",chi2trkcl,AliITSReconstructor::GetRecoParam()->GetMaxChi2s(ilayer)));
afd25725 1153 if (chi2trkcl < AliITSReconstructor::GetRecoParam()->GetMaxChi2s(ilayer)) {
6518a6c5 1154 if (cl->GetQ()==0) deadzoneSPD=kTRUE; // only 1 prolongation with virtual cluster
e43c066c 1155 if (ntracks[ilayer]>=100) continue;
15dd636f 1156 AliITStrackMI * updatetrack = new (&tracks[ilayer][ntracks[ilayer]]) AliITStrackMI(*currenttrack);
b9671574 1157 updatetrack->SetClIndex(ilayer,0);
afd25725 1158 if (changedet) new (&currenttrack2) AliITStrackMI(backuptrack);
ae00569a 1159
6518a6c5 1160 if (cl->GetQ()!=0) { // real cluster
1c97ce2f 1161 if (!UpdateMI(updatetrack,cl,chi2trkcl,(ilayer<<28)+clidx)) {
4187a601 1162 AliDebug(2,"update failed");
1c97ce2f 1163 continue;
1164 }
afd25725 1165 updatetrack->SetSampledEdx(cl->GetQ(),updatetrack->GetNumberOfClusters()-1); //b.b.
ae00569a 1166 modstatus = 1; // found
6518a6c5 1167 } else { // virtual cluster in dead zone
b9671574 1168 updatetrack->SetNDeadZone(updatetrack->GetNDeadZone()+1);
6518a6c5 1169 updatetrack->SetDeadZoneProbability(GetSPDDeadZoneProbability(updatetrack->GetZ(),TMath::Sqrt(updatetrack->GetSigmaZ2())));
ae00569a 1170 modstatus = 7; // holes in z in SPD
1171 }
1172
1173 if (changedet) {
1174 Float_t xlocnewdet,zlocnewdet;
d1181f10 1175 if(LocalModuleCoord(ilayer,idet,updatetrack,xlocnewdet,zlocnewdet)) { // local module coords
1176 updatetrack->SetModuleIndexInfo(ilayer,idet,modstatus,xlocnewdet,zlocnewdet);
1177 }
ae00569a 1178 } else {
1179 updatetrack->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
e43c066c 1180 }
afd25725 1181 if (cl->IsUsed()) updatetrack->IncrementNUsed();
1182
1183 // apply correction for material of the current layer
e50912db 1184 CorrectForLayerMaterial(updatetrack,ilayer,trackGlobXYZ1,"inward");
1185
afd25725 1186 if (constrain) { // apply vertex constrain
b9671574 1187 updatetrack->SetConstrain(constrain);
e43c066c 1188 Bool_t isPrim = kTRUE;
afd25725 1189 if (ilayer<4) { // check that it's close to the vertex
b9671574 1190 updatetrack->GetDZ(GetX(),GetY(),GetZ(),updatetrack->GetDP()); //I.B.
afd25725 1191 if (TMath::Abs(updatetrack->GetD(0)/(1.+ilayer)) > // y
1192 AliITSReconstructor::GetRecoParam()->GetMaxDZforPrimTrk() ||
1193 TMath::Abs(updatetrack->GetD(1)/(1.+ilayer)) > // z
1194 AliITSReconstructor::GetRecoParam()->GetMaxDZforPrimTrk()) isPrim=kFALSE;
e43c066c 1195 }
afd25725 1196 if (isPrim) updatetrack->Improve(budgetToPrimVertex,xyzVtx,ersVtx);
e43c066c 1197 } //apply vertex constrain
1198 ntracks[ilayer]++;
afd25725 1199 } // create new hypothesis
4187a601 1200 else {
1201 AliDebug(2,"chi2 too large");
1202 }
1203
2755f080 1204 } // loop over possible prolongations
1205
1206 // allow one prolongation without clusters
6518a6c5 1207 if (constrain && itrack<=1 && currenttrack1.GetNSkipped()==0 && deadzoneSPD==kFALSE && ntracks[ilayer]<100) {
15dd636f 1208 AliITStrackMI* vtrack = new (&tracks[ilayer][ntracks[ilayer]]) AliITStrackMI(currenttrack1);
2755f080 1209 // apply correction for material of the current layer
1210 CorrectForLayerMaterial(vtrack,ilayer,trackGlobXYZ1,"inward");
b9671574 1211 vtrack->SetClIndex(ilayer,0);
ae00569a 1212 modstatus = 3; // skipped
1213 vtrack->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
afd25725 1214 vtrack->Improve(budgetToPrimVertex,xyzVtx,ersVtx);
b9671574 1215 vtrack->IncrementNSkipped();
e43c066c 1216 ntracks[ilayer]++;
1217 }
628e7bb0 1218
2755f080 1219 // allow one prolongation without clusters for tracks with |tgl|>1.1
1220 if (constrain && itrack==0 && TMath::Abs(currenttrack1.GetTgl())>1.1) { //big theta - for low flux
628e7bb0 1221 AliITStrackMI* vtrack = new (&tracks[ilayer][ntracks[ilayer]]) AliITStrackMI(currenttrack1);
2755f080 1222 // apply correction for material of the current layer
1223 CorrectForLayerMaterial(vtrack,ilayer,trackGlobXYZ1,"inward");
b9671574 1224 vtrack->SetClIndex(ilayer,0);
ae00569a 1225 modstatus = 3; // skipped
1226 vtrack->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
afd25725 1227 vtrack->Improve(budgetToPrimVertex,xyzVtx,ersVtx);
b9671574 1228 vtrack->SetNDeadZone(vtrack->GetNDeadZone()+1);
628e7bb0 1229 ntracks[ilayer]++;
1230 }
1231
e43c066c 1232
e50912db 1233 } // loop over tracks in layer ilayer+1
afd25725 1234
1235 //loop over track candidates for the current layer
e43c066c 1236 //
1237 //
1238 Int_t accepted=0;
1239
afd25725 1240 Int_t golden=0;
e43c066c 1241 for (Int_t itrack=0;itrack<ntracks[ilayer];itrack++){
1242 normalizedchi2[itrack] = NormalizedChi2(&tracks[ilayer][itrack],ilayer);
afd25725 1243 if (normalizedchi2[itrack] <
1244 AliITSReconstructor::GetRecoParam()->GetMaxNormChi2ForGolden(ilayer)) golden++;
44347160 1245 if (ilayer>4) {
1246 accepted++;
1247 } else {
1248 if (constrain) { // constrain
afd25725 1249 if (normalizedchi2[itrack]<AliITSReconstructor::GetRecoParam()->GetMaxNormChi2C(ilayer)+1)
1250 accepted++;
44347160 1251 } else { // !constrain
afd25725 1252 if (normalizedchi2[itrack]<AliITSReconstructor::GetRecoParam()->GetMaxNormChi2NonC(ilayer)+1)
1253 accepted++;
44347160 1254 }
e43c066c 1255 }
1256 }
afd25725 1257 // sort tracks by increasing normalized chi2
1258 TMath::Sort(ntracks[ilayer],normalizedchi2,nindexes[ilayer],kFALSE);
e43c066c 1259 ntracks[ilayer] = TMath::Min(accepted,7+2*ilayer);
afd25725 1260 if (ntracks[ilayer]<golden+2+ilayer) ntracks[ilayer]=TMath::Min(golden+2+ilayer,accepted);
e43c066c 1261 if (ntracks[ilayer]>90) ntracks[ilayer]=90;
afd25725 1262 } // end loop over layers
1263
afd25725 1264
1265 //
1266 // Now select tracks to be kept
1267 //
44347160 1268 Int_t max = constrain ? 20 : 5;
e43c066c 1269
afd25725 1270 // tracks that reach layer 0 (SPD inner)
44347160 1271 for (Int_t i=0; i<TMath::Min(max,ntracks[0]); i++) {
15dd636f 1272 AliITStrackMI & track= tracks[0][nindexes[0][i]];
628e7bb0 1273 if (track.GetNumberOfClusters()<2) continue;
afd25725 1274 if (!constrain && track.GetNormChi2(0) >
6518a6c5 1275 AliITSReconstructor::GetRecoParam()->GetMaxNormChi2NonCForHypothesis()) {
1276 continue;
1277 }
15dd636f 1278 AddTrackHypothesys(new AliITStrackMI(track), esdindex);
e43c066c 1279 }
afd25725 1280
1281 // tracks that reach layer 1 (SPD outer)
628e7bb0 1282 for (Int_t i=0;i<TMath::Min(2,ntracks[1]);i++) {
15dd636f 1283 AliITStrackMI & track= tracks[1][nindexes[1][i]];
e43c066c 1284 if (track.GetNumberOfClusters()<4) continue;
afd25725 1285 if (!constrain && track.GetNormChi2(1) >
1286 AliITSReconstructor::GetRecoParam()->GetMaxNormChi2NonCForHypothesis()) continue;
b9671574 1287 if (constrain) track.IncrementNSkipped();
81e97e0d 1288 if (!constrain) {
b9671574 1289 track.SetD(0,track.GetD(GetX(),GetY()));
afd25725 1290 track.SetNSkipped(track.GetNSkipped()+4./(4.+8.*TMath::Abs(track.GetD(0))));
b9671574 1291 if (track.GetNumberOfClusters()+track.GetNDeadZone()+track.GetNSkipped()>6) {
1292 track.SetNSkipped(6-track.GetNumberOfClusters()+track.GetNDeadZone());
e43c066c 1293 }
1294 }
15dd636f 1295 AddTrackHypothesys(new AliITStrackMI(track), esdindex);
e43c066c 1296 }
afd25725 1297
6518a6c5 1298 // tracks that reach layer 2 (SDD inner), only during non-constrained pass
81e97e0d 1299 if (!constrain){
628e7bb0 1300 for (Int_t i=0;i<TMath::Min(2,ntracks[2]);i++) {
15dd636f 1301 AliITStrackMI & track= tracks[2][nindexes[2][i]];
628e7bb0 1302 if (track.GetNumberOfClusters()<3) continue;
afd25725 1303 if (!constrain && track.GetNormChi2(2) >
1304 AliITSReconstructor::GetRecoParam()->GetMaxNormChi2NonCForHypothesis()) continue;
b9671574 1305 if (constrain) track.SetNSkipped(track.GetNSkipped()+2);
81e97e0d 1306 if (!constrain){
b9671574 1307 track.SetD(0,track.GetD(GetX(),GetY()));
afd25725 1308 track.SetNSkipped(track.GetNSkipped()+7./(7.+8.*TMath::Abs(track.GetD(0))));
b9671574 1309 if (track.GetNumberOfClusters()+track.GetNDeadZone()+track.GetNSkipped()>6) {
1310 track.SetNSkipped(6-track.GetNumberOfClusters()+track.GetNDeadZone());
e43c066c 1311 }
1312 }
15dd636f 1313 AddTrackHypothesys(new AliITStrackMI(track), esdindex);
e43c066c 1314 }
1315 }
81e97e0d 1316
afd25725 1317 if (!constrain) {
81e97e0d 1318 //
afd25725 1319 // register best track of each layer - important for V0 finder
81e97e0d 1320 //
1321 for (Int_t ilayer=0;ilayer<5;ilayer++){
1322 if (ntracks[ilayer]==0) continue;
1323 AliITStrackMI & track= tracks[ilayer][nindexes[ilayer][0]];
1324 if (track.GetNumberOfClusters()<1) continue;
1325 CookLabel(&track,0);
1326 bestarray->AddAt(new AliITStrackMI(track),ilayer);
1327 }
1328 }
1329 //
1330 // update TPC V0 information
1331 //
b9671574 1332 if (otrack->GetESDtrack()->GetV0Index(0)>0){
81e97e0d 1333 Float_t fprimvertex[3]={GetX(),GetY(),GetZ()};
1334 for (Int_t i=0;i<3;i++){
b9671574 1335 Int_t index = otrack->GetESDtrack()->GetV0Index(i);
81e97e0d 1336 if (index==0) break;
44347160 1337 AliV0 *vertex = (AliV0*)fEsd->GetV0(index);
81e97e0d 1338 if (vertex->GetStatus()<0) continue; // rejected V0
1339 //
6c94f330 1340 if (otrack->GetSign()>0) {
81e97e0d 1341 vertex->SetIndex(0,esdindex);
1342 }
1343 else{
1344 vertex->SetIndex(1,esdindex);
1345 }
1346 //find nearest layer with track info
b75d63a7 1347 Double_t xrp[3]; vertex->GetXYZ(xrp[0],xrp[1],xrp[2]); //I.B.
1348 Int_t nearestold = GetNearestLayer(xrp); //I.B.
81e97e0d 1349 Int_t nearest = nearestold;
1350 for (Int_t ilayer =nearest;ilayer<8;ilayer++){
1351 if (ntracks[nearest]==0){
1352 nearest = ilayer;
1353 }
1354 }
1355 //
1356 AliITStrackMI & track= tracks[nearest][nindexes[nearest][0]];
1357 if (nearestold<5&&nearest<5){
b9671574 1358 Bool_t accept = track.GetNormChi2(nearest)<10;
81e97e0d 1359 if (accept){
6c94f330 1360 if (track.GetSign()>0) {
b75d63a7 1361 vertex->SetParamP(track);
81e97e0d 1362 vertex->Update(fprimvertex);
44347160 1363 //vertex->SetIndex(0,track.fESDtrack->GetID());
81e97e0d 1364 if (track.GetNumberOfClusters()>2) AddTrackHypothesys(new AliITStrackMI(track), esdindex);
1365 }else{
b75d63a7 1366 vertex->SetParamN(track);
81e97e0d 1367 vertex->Update(fprimvertex);
1368 //vertex->SetIndex(1,track.fESDtrack->GetID());
1369 if (track.GetNumberOfClusters()>2) AddTrackHypothesys(new AliITStrackMI(track), esdindex);
1370 }
1371 vertex->SetStatus(vertex->GetStatus()+1);
1372 }else{
44347160 1373 //vertex->SetStatus(-2); // reject V0 - not enough clusters
81e97e0d 1374 }
1375 }
81e97e0d 1376 }
afd25725 1377 }
1378
e43c066c 1379}
44347160 1380//------------------------------------------------------------------------
e43c066c 1381AliITStrackerMI::AliITSlayer & AliITStrackerMI::GetLayer(Int_t layer) const
1382{
1383 //--------------------------------------------------------------------
1384 //
1385 //
1386 return fgLayers[layer];
1387}
44347160 1388//------------------------------------------------------------------------
8221b41b 1389AliITStrackerMI::AliITSlayer::AliITSlayer():
1390fR(0),
1391fPhiOffset(0),
1392fNladders(0),
1393fZOffset(0),
1394fNdetectors(0),
1395fDetectors(0),
1396fN(0),
1397fDy5(0),
1398fDy10(0),
1399fDy20(0),
1400fClustersCs(0),
1401fClusterIndexCs(0),
1402fYcs(0),
1403fZcs(0),
1404fNcs(0),
1405fCurrentSlice(-1),
1406fZmax(0),
1407fYmin(0),
1408fYmax(0),
1409fI(0),
1410fImax(0),
1411fSkip(0),
1412fAccepted(0),
1413fRoad(0){
e43c066c 1414 //--------------------------------------------------------------------
1415 //default AliITSlayer constructor
1416 //--------------------------------------------------------------------
e50912db 1417 for (Int_t i=0; i<AliITSRecoParam::GetMaxClusterPerLayer(); i++) {
e43c066c 1418 fClusterWeight[i]=0;
1419 fClusterTracks[0][i]=-1;
1420 fClusterTracks[1][i]=-1;
1421 fClusterTracks[2][i]=-1;
1422 fClusterTracks[3][i]=-1;
1423 }
1424}
44347160 1425//------------------------------------------------------------------------
e43c066c 1426AliITStrackerMI::AliITSlayer::
8221b41b 1427AliITSlayer(Double_t r,Double_t p,Double_t z,Int_t nl,Int_t nd):
1428fR(r),
1429fPhiOffset(p),
1430fNladders(nl),
1431fZOffset(z),
1432fNdetectors(nd),
1433fDetectors(0),
1434fN(0),
1435fDy5(0),
1436fDy10(0),
1437fDy20(0),
1438fClustersCs(0),
1439fClusterIndexCs(0),
1440fYcs(0),
1441fZcs(0),
1442fNcs(0),
1443fCurrentSlice(-1),
1444fZmax(0),
1445fYmin(0),
1446fYmax(0),
1447fI(0),
1448fImax(0),
1449fSkip(0),
1450fAccepted(0),
1451fRoad(0) {
e43c066c 1452 //--------------------------------------------------------------------
1453 //main AliITSlayer constructor
1454 //--------------------------------------------------------------------
e43c066c 1455 fDetectors=new AliITSdetector[fNladders*fNdetectors];
afd25725 1456 fRoad=2*fR*TMath::Sqrt(TMath::Pi()/1.);//assuming that there's only one cluster
e43c066c 1457}
44347160 1458//------------------------------------------------------------------------
8221b41b 1459AliITStrackerMI::AliITSlayer::AliITSlayer(const AliITSlayer& layer):
1460fR(layer.fR),
1461fPhiOffset(layer.fPhiOffset),
1462fNladders(layer.fNladders),
1463fZOffset(layer.fZOffset),
1464fNdetectors(layer.fNdetectors),
1465fDetectors(layer.fDetectors),
1466fN(layer.fN),
1467fDy5(layer.fDy5),
1468fDy10(layer.fDy10),
1469fDy20(layer.fDy20),
1470fClustersCs(layer.fClustersCs),
1471fClusterIndexCs(layer.fClusterIndexCs),
1472fYcs(layer.fYcs),
1473fZcs(layer.fZcs),
1474fNcs(layer.fNcs),
1475fCurrentSlice(layer.fCurrentSlice),
1476fZmax(layer.fZmax),
1477fYmin(layer.fYmin),
1478fYmax(layer.fYmax),
1479fI(layer.fI),
1480fImax(layer.fImax),
1481fSkip(layer.fSkip),
1482fAccepted(layer.fAccepted),
1483fRoad(layer.fRoad){
1484 //Copy constructor
1485}
44347160 1486//------------------------------------------------------------------------
e43c066c 1487AliITStrackerMI::AliITSlayer::~AliITSlayer() {
1488 //--------------------------------------------------------------------
1489 // AliITSlayer destructor
1490 //--------------------------------------------------------------------
23197852 1491 delete [] fDetectors;
e43c066c 1492 for (Int_t i=0; i<fN; i++) delete fClusters[i];
e50912db 1493 for (Int_t i=0; i<AliITSRecoParam::GetMaxClusterPerLayer(); i++) {
e43c066c 1494 fClusterWeight[i]=0;
1495 fClusterTracks[0][i]=-1;
1496 fClusterTracks[1][i]=-1;
1497 fClusterTracks[2][i]=-1;
1498 fClusterTracks[3][i]=-1;
1499 }
1500}
44347160 1501//------------------------------------------------------------------------
e43c066c 1502void AliITStrackerMI::AliITSlayer::ResetClusters() {
1503 //--------------------------------------------------------------------
1504 // This function removes loaded clusters
1505 //--------------------------------------------------------------------
1506 for (Int_t i=0; i<fN; i++) delete fClusters[i];
e50912db 1507 for (Int_t i=0; i<AliITSRecoParam::GetMaxClusterPerLayer(); i++){
e43c066c 1508 fClusterWeight[i]=0;
1509 fClusterTracks[0][i]=-1;
1510 fClusterTracks[1][i]=-1;
1511 fClusterTracks[2][i]=-1;
1512 fClusterTracks[3][i]=-1;
1513 }
1514
1515 fN=0;
1516 fI=0;
1517}
44347160 1518//------------------------------------------------------------------------
e43c066c 1519void AliITStrackerMI::AliITSlayer::ResetWeights() {
1520 //--------------------------------------------------------------------
1521 // This function reset weights of the clusters
1522 //--------------------------------------------------------------------
e50912db 1523 for (Int_t i=0; i<AliITSRecoParam::GetMaxClusterPerLayer(); i++) {
e43c066c 1524 fClusterWeight[i]=0;
1525 fClusterTracks[0][i]=-1;
1526 fClusterTracks[1][i]=-1;
1527 fClusterTracks[2][i]=-1;
1528 fClusterTracks[3][i]=-1;
1529 }
1530 for (Int_t i=0; i<fN;i++) {
00a7cc50 1531 AliITSRecPoint * cl = (AliITSRecPoint*)GetCluster(i);
e43c066c 1532 if (cl&&cl->IsUsed()) cl->Use();
1533 }
1534
1535}
44347160 1536//------------------------------------------------------------------------
e43c066c 1537void AliITStrackerMI::AliITSlayer::ResetRoad() {
1538 //--------------------------------------------------------------------
1539 // This function calculates the road defined by the cluster density
1540 //--------------------------------------------------------------------
1541 Int_t n=0;
1542 for (Int_t i=0; i<fN; i++) {
1543 if (TMath::Abs(fClusters[i]->GetZ())<fR) n++;
1544 }
afd25725 1545 if (n>1) fRoad=2*fR*TMath::Sqrt(TMath::Pi()/n);
e43c066c 1546}
44347160 1547//------------------------------------------------------------------------
afd25725 1548Int_t AliITStrackerMI::AliITSlayer::InsertCluster(AliITSRecPoint *cl) {
e43c066c 1549 //--------------------------------------------------------------------
1550 //This function adds a cluster to this layer
1551 //--------------------------------------------------------------------
e50912db 1552 if (fN==AliITSRecoParam::GetMaxClusterPerLayer()) {
e43c066c 1553 ::Error("InsertCluster","Too many clusters !\n");
1554 return 1;
1555 }
1556 fCurrentSlice=-1;
afd25725 1557 fClusters[fN]=cl;
1d4090b7 1558 fN++;
afd25725 1559 AliITSdetector &det=GetDetector(cl->GetDetectorIndex());
1560 if (cl->GetY()<det.GetYmin()) det.SetYmin(cl->GetY());
1561 if (cl->GetY()>det.GetYmax()) det.SetYmax(cl->GetY());
1562 if (cl->GetZ()<det.GetZmin()) det.SetZmin(cl->GetZ());
1563 if (cl->GetZ()>det.GetZmax()) det.SetZmax(cl->GetZ());
e43c066c 1564
1565 return 0;
1566}
44347160 1567//------------------------------------------------------------------------
e43c066c 1568void AliITStrackerMI::AliITSlayer::SortClusters()
1569{
1570 //
1571 //sort clusters
1572 //
00a7cc50 1573 AliITSRecPoint **clusters = new AliITSRecPoint*[fN];
1d4090b7 1574 Float_t *z = new Float_t[fN];
1575 Int_t * index = new Int_t[fN];
1576 //
1577 for (Int_t i=0;i<fN;i++){
1578 z[i] = fClusters[i]->GetZ();
1579 }
1580 TMath::Sort(fN,z,index,kFALSE);
1581 for (Int_t i=0;i<fN;i++){
1582 clusters[i] = fClusters[index[i]];
1583 }
1584 //
1585 for (Int_t i=0;i<fN;i++){
1586 fClusters[i] = clusters[i];
1587 fZ[i] = fClusters[i]->GetZ();
1588 AliITSdetector &det=GetDetector(fClusters[i]->GetDetectorIndex());
1589 Double_t y=fR*det.GetPhi() + fClusters[i]->GetY();
1590 if (y>2.*fR*TMath::Pi()) y -= 2.*fR*TMath::Pi();
1591 fY[i] = y;
1592 }
1593 delete[] index;
1594 delete[] z;
1595 delete[] clusters;
1596 //
1597
e43c066c 1598 fYB[0]=10000000;
1599 fYB[1]=-10000000;
1600 for (Int_t i=0;i<fN;i++){
1601 if (fY[i]<fYB[0]) fYB[0]=fY[i];
1602 if (fY[i]>fYB[1]) fYB[1]=fY[i];
1603 fClusterIndex[i] = i;
1604 }
1605 //
1606 // fill slices
1607 fDy5 = (fYB[1]-fYB[0])/5.;
1608 fDy10 = (fYB[1]-fYB[0])/10.;
1609 fDy20 = (fYB[1]-fYB[0])/20.;
1610 for (Int_t i=0;i<6;i++) fN5[i] =0;
1611 for (Int_t i=0;i<11;i++) fN10[i]=0;
1612 for (Int_t i=0;i<21;i++) fN20[i]=0;
1613 //
1614 for (Int_t i=0;i<6;i++) {fBy5[i][0] = fYB[0]+(i-0.75)*fDy5; fBy5[i][1] = fYB[0]+(i+0.75)*fDy5;}
1615 for (Int_t i=0;i<11;i++) {fBy10[i][0] = fYB[0]+(i-0.75)*fDy10; fBy10[i][1] = fYB[0]+(i+0.75)*fDy10;}
1616 for (Int_t i=0;i<21;i++) {fBy20[i][0] = fYB[0]+(i-0.75)*fDy20; fBy20[i][1] = fYB[0]+(i+0.75)*fDy20;}
1617 //
1618 //
1d4090b7 1619 for (Int_t i=0;i<fN;i++)
1620 for (Int_t irot=-1;irot<=1;irot++){
1621 Float_t curY = fY[i]+irot*TMath::TwoPi()*fR;
1622 // slice 5
1623 for (Int_t slice=0; slice<6;slice++){
e50912db 1624 if (fBy5[slice][0]<curY && curY<fBy5[slice][1]&&fN5[slice]<AliITSRecoParam::GetMaxClusterPerLayer5()){
1d4090b7 1625 fClusters5[slice][fN5[slice]] = fClusters[i];
1626 fY5[slice][fN5[slice]] = curY;
1627 fZ5[slice][fN5[slice]] = fZ[i];
1628 fClusterIndex5[slice][fN5[slice]]=i;
1629 fN5[slice]++;
1630 }
e43c066c 1631 }
1d4090b7 1632 // slice 10
1633 for (Int_t slice=0; slice<11;slice++){
e50912db 1634 if (fBy10[slice][0]<curY && curY<fBy10[slice][1]&&fN10[slice]<AliITSRecoParam::GetMaxClusterPerLayer10()){
1d4090b7 1635 fClusters10[slice][fN10[slice]] = fClusters[i];
1636 fY10[slice][fN10[slice]] = curY;
1637 fZ10[slice][fN10[slice]] = fZ[i];
1638 fClusterIndex10[slice][fN10[slice]]=i;
1639 fN10[slice]++;
1640 }
e43c066c 1641 }
1d4090b7 1642 // slice 20
1643 for (Int_t slice=0; slice<21;slice++){
e50912db 1644 if (fBy20[slice][0]<curY && curY<fBy20[slice][1]&&fN20[slice]<AliITSRecoParam::GetMaxClusterPerLayer20()){
1d4090b7 1645 fClusters20[slice][fN20[slice]] = fClusters[i];
1646 fY20[slice][fN20[slice]] = curY;
1647 fZ20[slice][fN20[slice]] = fZ[i];
1648 fClusterIndex20[slice][fN20[slice]]=i;
1649 fN20[slice]++;
1650 }
1651 }
e43c066c 1652 }
1d4090b7 1653
1654 //
1655 // consistency check
1656 //
1657 for (Int_t i=0;i<fN-1;i++){
1658 if (fZ[i]>fZ[i+1]){
ae00569a 1659 printf("Bug\n");
e43c066c 1660 }
1661 }
1d4090b7 1662 //
1663 for (Int_t slice=0;slice<21;slice++)
1664 for (Int_t i=0;i<fN20[slice]-1;i++){
1665 if (fZ20[slice][i]>fZ20[slice][i+1]){
ae00569a 1666 printf("Bug\n");
1d4090b7 1667 }
1668 }
1669
1670
e43c066c 1671}
44347160 1672//------------------------------------------------------------------------
e43c066c 1673Int_t AliITStrackerMI::AliITSlayer::FindClusterIndex(Float_t z) const {
1674 //--------------------------------------------------------------------
1675 // This function returns the index of the nearest cluster
1676 //--------------------------------------------------------------------
1677 Int_t ncl=0;
1678 const Float_t *zcl;
1679 if (fCurrentSlice<0) {
1680 ncl = fN;
1681 zcl = fZ;
1682 }
1683 else{
1684 ncl = fNcs;
1685 zcl = fZcs;;
1686 }
1687
1688 if (ncl==0) return 0;
1689 Int_t b=0, e=ncl-1, m=(b+e)/2;
1690 for (; b<e; m=(b+e)/2) {
1691 // if (z > fClusters[m]->GetZ()) b=m+1;
1692 if (z > zcl[m]) b=m+1;
1693 else e=m;
1694 }
1695 return m;
1696}
44347160 1697//------------------------------------------------------------------------
1c97ce2f 1698Bool_t AliITStrackerMI::ComputeRoad(AliITStrackMI* track,Int_t ilayer,Int_t idet,Double_t &zmin,Double_t &zmax,Double_t &ymin,Double_t &ymax) const {
1699 //--------------------------------------------------------------------
1700 // This function computes the rectangular road for this track
1701 //--------------------------------------------------------------------
1702
1703
1704 AliITSdetector &det = fgLayers[ilayer].GetDetector(idet);
1705 // take into account the misalignment: propagate track to misaligned detector plane
1706 if (!track->Propagate(det.GetPhi(),det.GetRmisal())) return kFALSE;
1707
1708 Double_t dz=AliITSReconstructor::GetRecoParam()->GetNSigmaRoadZ()*
1709 TMath::Sqrt(track->GetSigmaZ2() +
1710 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
1711 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
1712 AliITSReconstructor::GetRecoParam()->GetSigmaZ2(ilayer));
1713 Double_t dy=AliITSReconstructor::GetRecoParam()->GetNSigmaRoadY()*
1714 TMath::Sqrt(track->GetSigmaY2() +
1715 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
1716 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
1717 AliITSReconstructor::GetRecoParam()->GetSigmaY2(ilayer));
1718
1719 // track at boundary between detectors, enlarge road
1720 Double_t boundaryWidth=AliITSRecoParam::GetBoundaryWidth();
1721 if ( (track->GetY()-dy < det.GetYmin()+boundaryWidth) ||
1722 (track->GetY()+dy > det.GetYmax()-boundaryWidth) ||
1723 (track->GetZ()-dz < det.GetZmin()+boundaryWidth) ||
1724 (track->GetZ()+dz > det.GetZmax()-boundaryWidth) ) {
1725 Float_t tgl = TMath::Abs(track->GetTgl());
1726 if (tgl > 1.) tgl=1.;
1727 Double_t deltaXNeighbDets=AliITSRecoParam::GetDeltaXNeighbDets();
1728 dz = TMath::Sqrt(dz*dz+deltaXNeighbDets*deltaXNeighbDets*tgl*tgl);
1729 Float_t snp = TMath::Abs(track->GetSnp());
1730 if (snp > AliITSReconstructor::GetRecoParam()->GetMaxSnp()) return kFALSE;
1731 dy = TMath::Sqrt(dy*dy+deltaXNeighbDets*deltaXNeighbDets*snp*snp);
1732 } // boundary
1733
1734 // add to the road a term (up to 2-3 mm) to deal with misalignments
1735 dy = TMath::Sqrt(dy*dy + AliITSReconstructor::GetRecoParam()->GetRoadMisal()*AliITSReconstructor::GetRecoParam()->GetRoadMisal());
1736 dz = TMath::Sqrt(dz*dz + AliITSReconstructor::GetRecoParam()->GetRoadMisal()*AliITSReconstructor::GetRecoParam()->GetRoadMisal());
1737
1738 Double_t r = fgLayers[ilayer].GetR();
1739 zmin = track->GetZ() - dz;
1740 zmax = track->GetZ() + dz;
1741 ymin = track->GetY() + r*det.GetPhi() - dy;
1742 ymax = track->GetY() + r*det.GetPhi() + dy;
1743
1744 // bring track back to idead detector plane
1745 if (!track->Propagate(det.GetPhi(),det.GetR())) return kFALSE;
1746
1747 return kTRUE;
1748}
1749//------------------------------------------------------------------------
e43c066c 1750void AliITStrackerMI::AliITSlayer::
1751SelectClusters(Double_t zmin,Double_t zmax,Double_t ymin, Double_t ymax) {
1752 //--------------------------------------------------------------------
1753 // This function sets the "window"
1754 //--------------------------------------------------------------------
1755
628e7bb0 1756 Double_t circle=2*TMath::Pi()*fR;
e43c066c 1757 fYmin = ymin; fYmax =ymax;
1758 Float_t ymiddle = (fYmin+fYmax)*0.5;
ae00569a 1759 if (ymiddle<fYB[0]) {
1760 fYmin+=circle; fYmax+=circle; ymiddle+=circle;
1761 } else if (ymiddle>fYB[1]) {
1762 fYmin-=circle; fYmax-=circle; ymiddle-=circle;
e43c066c 1763 }
ae00569a 1764
e43c066c 1765 //
1766 fCurrentSlice =-1;
1767 // defualt take all
1768 fClustersCs = fClusters;
1769 fClusterIndexCs = fClusterIndex;
1770 fYcs = fY;
1771 fZcs = fZ;
1772 fNcs = fN;
628e7bb0 1773 //
e43c066c 1774 //is in 20 slice?
1775 if (fCurrentSlice<0&&TMath::Abs(fYmax-fYmin)<1.49*fDy20){
1776 Int_t slice = int(0.5+(ymiddle-fYB[0])/fDy20);
1777 if (slice<0) slice=0;
1778 if (slice>20) slice=20;
1779 Bool_t isOK = (fYmin>fBy20[slice][0]&&fYmax<fBy20[slice][1]);
1780 if (isOK) {
1781 fCurrentSlice=slice;
1782 fClustersCs = fClusters20[fCurrentSlice];
1783 fClusterIndexCs = fClusterIndex20[fCurrentSlice];
1784 fYcs = fY20[fCurrentSlice];
1785 fZcs = fZ20[fCurrentSlice];
1786 fNcs = fN20[fCurrentSlice];
1787 }
1788 }
1789 //
1790 //is in 10 slice?
1791 if (fCurrentSlice<0&&TMath::Abs(fYmax-fYmin)<1.49*fDy10){
1792 Int_t slice = int(0.5+(ymiddle-fYB[0])/fDy10);
1793 if (slice<0) slice=0;
1794 if (slice>10) slice=10;
1795 Bool_t isOK = (fYmin>fBy10[slice][0]&&fYmax<fBy10[slice][1]);
1796 if (isOK) {
1797 fCurrentSlice=slice;
1798 fClustersCs = fClusters10[fCurrentSlice];
1799 fClusterIndexCs = fClusterIndex10[fCurrentSlice];
1800 fYcs = fY10[fCurrentSlice];
1801 fZcs = fZ10[fCurrentSlice];
1802 fNcs = fN10[fCurrentSlice];
1803 }
1804 }
1805 //
1806 //is in 5 slice?
1807 if (fCurrentSlice<0&&TMath::Abs(fYmax-fYmin)<1.49*fDy5){
1808 Int_t slice = int(0.5+(ymiddle-fYB[0])/fDy5);
1809 if (slice<0) slice=0;
1810 if (slice>5) slice=5;
1811 Bool_t isOK = (fYmin>fBy5[slice][0]&&fYmax<fBy5[slice][1]);
ae00569a 1812 if (isOK) {
e43c066c 1813 fCurrentSlice=slice;
1814 fClustersCs = fClusters5[fCurrentSlice];
1815 fClusterIndexCs = fClusterIndex5[fCurrentSlice];
1816 fYcs = fY5[fCurrentSlice];
1817 fZcs = fZ5[fCurrentSlice];
1818 fNcs = fN5[fCurrentSlice];
1819 }
1820 }
628e7bb0 1821 //
e43c066c 1822 fI=FindClusterIndex(zmin); fZmax=zmax;
1823 fImax = TMath::Min(FindClusterIndex(zmax)+1,fNcs);
1824 fSkip = 0;
1825 fAccepted =0;
6518a6c5 1826
1827 return;
e43c066c 1828}
44347160 1829//------------------------------------------------------------------------
628e7bb0 1830Int_t AliITStrackerMI::AliITSlayer::
1831FindDetectorIndex(Double_t phi, Double_t z) const {
1832 //--------------------------------------------------------------------
1833 //This function finds the detector crossed by the track
1834 //--------------------------------------------------------------------
31fb8575 1835 Double_t dphi;
1836 if (fZOffset<0) // old geometry
1837 dphi = -(phi-fPhiOffset);
1838 else // new geometry
1839 dphi = phi-fPhiOffset;
1840
6518a6c5 1841
628e7bb0 1842 if (dphi < 0) dphi += 2*TMath::Pi();
1843 else if (dphi >= 2*TMath::Pi()) dphi -= 2*TMath::Pi();
1844 Int_t np=Int_t(dphi*fNladders*0.5/TMath::Pi()+0.5);
1845 if (np>=fNladders) np-=fNladders;
1846 if (np<0) np+=fNladders;
1847
6518a6c5 1848
628e7bb0 1849 Double_t dz=fZOffset-z;
6518a6c5 1850 Double_t nnz = dz*(fNdetectors-1)*0.5/fZOffset+0.5;
1851 Int_t nz = (nnz<0 ? -1 : (Int_t)nnz);
628e7bb0 1852 if (nz>=fNdetectors) return -1;
1853 if (nz<0) return -1;
1854
23197852 1855 // ad hoc correction for 3rd ladder of SDD inner layer,
1856 // which is reversed (rotated by pi around local y)
1857 // this correction is OK only from AliITSv11Hybrid onwards
1858 if (GetR()>12. && GetR()<20.) { // SDD inner
1859 if(np==2) { // 3rd ladder
1860 nz = (fNdetectors-1) - nz;
1861 }
1862 }
1863 //printf("ndet %d phi %f z %f np %d nz %d\n",fNdetectors,phi,z,np,nz);
1864
1865
628e7bb0 1866 return np*fNdetectors + nz;
1867}
44347160 1868//------------------------------------------------------------------------
ae00569a 1869const AliITSRecPoint *AliITStrackerMI::AliITSlayer::GetNextCluster(Int_t &ci,Bool_t test)
1870{
e43c066c 1871 //--------------------------------------------------------------------
1872 // This function returns clusters within the "window"
1873 //--------------------------------------------------------------------
1874
ae00569a 1875 if (fCurrentSlice<0) {
e43c066c 1876 Double_t rpi2 = 2.*fR*TMath::Pi();
1877 for (Int_t i=fI; i<fImax; i++) {
1878 Double_t y = fY[i];
1879 if (fYmax<y) y -= rpi2;
1d4090b7 1880 if (fYmin>y) y += rpi2;
e43c066c 1881 if (y<fYmin) continue;
1882 if (y>fYmax) continue;
1883 if (fClusters[i]->GetQ()==0&&fSkip==2) continue;
1884 ci=i;
ae00569a 1885 if (!test) fI=i+1;
e43c066c 1886 return fClusters[i];
1887 }
ae00569a 1888 } else {
e43c066c 1889 for (Int_t i=fI; i<fImax; i++) {
1890 if (fYcs[i]<fYmin) continue;
1891 if (fYcs[i]>fYmax) continue;
1892 if (fClustersCs[i]->GetQ()==0&&fSkip==2) continue;
1893 ci=fClusterIndexCs[i];
ae00569a 1894 if (!test) fI=i+1;
e43c066c 1895 return fClustersCs[i];
1896 }
1897 }
1898 return 0;
1899}
44347160 1900//------------------------------------------------------------------------
e43c066c 1901Double_t AliITStrackerMI::AliITSlayer::GetThickness(Double_t y,Double_t z,Double_t &x0)
1902const {
1903 //--------------------------------------------------------------------
afd25725 1904 // This function returns the layer thickness at this point (units X0)
e43c066c 1905 //--------------------------------------------------------------------
1906 Double_t d=0.0085;
e50912db 1907 x0=AliITSRecoParam::GetX0Air();
e43c066c 1908 if (43<fR&&fR<45) { //SSD2
1909 Double_t dd=0.0034;
1910 d=dd;
1911 if (TMath::Abs(y-0.00)>3.40) d+=dd;
1912 if (TMath::Abs(y-1.90)<0.45) {d+=(0.013-0.0034);}
1913 if (TMath::Abs(y+1.90)<0.45) {d+=(0.013-0.0034);}
1914 for (Int_t i=0; i<12; i++) {
1915 if (TMath::Abs(z-3.9*(i+0.5))<0.15) {
1916 if (TMath::Abs(y-0.00)>3.40) d+=dd;
1917 d+=0.0034;
1918 break;
1919 }
1920 if (TMath::Abs(z+3.9*(i+0.5))<0.15) {
1921 if (TMath::Abs(y-0.00)>3.40) d+=dd;
1922 d+=0.0034;
1923 break;
1924 }
1925 if (TMath::Abs(z-3.4-3.9*i)<0.50) {d+=(0.016-0.0034); break;}
1926 if (TMath::Abs(z+0.5+3.9*i)<0.50) {d+=(0.016-0.0034); break;}
1927 }
1928 } else
1929 if (37<fR&&fR<41) { //SSD1
1930 Double_t dd=0.0034;
1931 d=dd;
1932 if (TMath::Abs(y-0.00)>3.40) d+=dd;
1933 if (TMath::Abs(y-1.90)<0.45) {d+=(0.013-0.0034);}
1934 if (TMath::Abs(y+1.90)<0.45) {d+=(0.013-0.0034);}
1935 for (Int_t i=0; i<11; i++) {
1936 if (TMath::Abs(z-3.9*i)<0.15) {
1937 if (TMath::Abs(y-0.00)>3.40) d+=dd;
1938 d+=dd;
1939 break;
1940 }
1941 if (TMath::Abs(z+3.9*i)<0.15) {
1942 if (TMath::Abs(y-0.00)>3.40) d+=dd;
1943 d+=dd;
1944 break;
1945 }
1946 if (TMath::Abs(z-1.85-3.9*i)<0.50) {d+=(0.016-0.0034); break;}
1947 if (TMath::Abs(z+2.05+3.9*i)<0.50) {d+=(0.016-0.0034); break;}
1948 }
1949 } else
1950 if (13<fR&&fR<26) { //SDD
1951 Double_t dd=0.0033;
1952 d=dd;
1953 if (TMath::Abs(y-0.00)>3.30) d+=dd;
1954
1955 if (TMath::Abs(y-1.80)<0.55) {
1956 d+=0.016;
1957 for (Int_t j=0; j<20; j++) {
1958 if (TMath::Abs(z+0.7+1.47*j)<0.12) {d+=0.08; x0=9.; break;}
1959 if (TMath::Abs(z-0.7-1.47*j)<0.12) {d+=0.08; x0=9.; break;}
1960 }
1961 }
1962 if (TMath::Abs(y+1.80)<0.55) {
1963 d+=0.016;
1964 for (Int_t j=0; j<20; j++) {
1965 if (TMath::Abs(z-0.7-1.47*j)<0.12) {d+=0.08; x0=9.; break;}
1966 if (TMath::Abs(z+0.7+1.47*j)<0.12) {d+=0.08; x0=9.; break;}
1967 }
1968 }
1969
1970 for (Int_t i=0; i<4; i++) {
1971 if (TMath::Abs(z-7.3*i)<0.60) {
1972 d+=dd;
1973 if (TMath::Abs(y-0.00)>3.30) d+=dd;
1974 break;
1975 }
1976 if (TMath::Abs(z+7.3*i)<0.60) {
1977 d+=dd;
1978 if (TMath::Abs(y-0.00)>3.30) d+=dd;
1979 break;
1980 }
1981 }
1982 } else
1983 if (6<fR&&fR<8) { //SPD2
1984 Double_t dd=0.0063; x0=21.5;
1985 d=dd;
1986 if (TMath::Abs(y-3.08)>0.5) d+=dd;
afd25725 1987 if (TMath::Abs(y-3.03)<0.10) d+=0.014;
e43c066c 1988 } else
1989 if (3<fR&&fR<5) { //SPD1
1990 Double_t dd=0.0063; x0=21.5;
1991 d=dd;
1992 if (TMath::Abs(y+0.21)>0.6) d+=dd;
afd25725 1993 if (TMath::Abs(y+0.10)<0.10) d+=0.014;
e43c066c 1994 }
1995
1996 return d;
1997}
44347160 1998//------------------------------------------------------------------------
23197852 1999AliITStrackerMI::AliITSdetector::AliITSdetector(const AliITSdetector& det):
2000fR(det.fR),
1c97ce2f 2001fRmisal(det.fRmisal),
23197852 2002fPhi(det.fPhi),
2003fSinPhi(det.fSinPhi),
2004fCosPhi(det.fCosPhi),
2005fYmin(det.fYmin),
2006fYmax(det.fYmax),
2007fZmin(det.fZmin),
2008fZmax(det.fZmax),
2009fIsBad(det.fIsBad),
2010fNChips(det.fNChips),
2011fChipIsBad(det.fChipIsBad)
2012{
2013 //Copy constructor
2014}
2015//------------------------------------------------------------------------
2016void AliITStrackerMI::AliITSdetector::ReadBadDetectorAndChips(Int_t ilayer,Int_t idet,
2017 AliITSDetTypeRec *detTypeRec)
2018{
2019 //--------------------------------------------------------------------
2020 // Read bad detectors and chips from calibration objects in AliITSDetTypeRec
2021 //--------------------------------------------------------------------
2022
2023 // In AliITSDetTypeRec, detector numbers go from 0 to 2197
2024 // while in the tracker they start from 0 for each layer
2025 for(Int_t il=0; il<ilayer; il++)
2026 idet += AliITSgeomTGeo::GetNLadders(il+1)*AliITSgeomTGeo::GetNDetectors(il+1);
2027
2028 Int_t detType;
2029 if (ilayer==0 || ilayer==1) { // ---------- SPD
2030 detType = 0;
2031 } else if (ilayer==2 || ilayer==3) { // ---------- SDD
2032 detType = 1;
2033 } else if (ilayer==4 || ilayer==5) { // ---------- SSD
2034 detType = 2;
2035 } else {
2036 printf("AliITStrackerMI::AliITSdetector::InitBadFromOCDB: Wrong layer number %d\n",ilayer);
2037 return;
2038 }
2039
2040 // Get calibration from AliITSDetTypeRec
2041 AliITSCalibration *calib = (AliITSCalibration*)detTypeRec->GetCalibrationModel(idet);
d1181f10 2042 calib->SetModuleIndex(idet);
23197852 2043 AliITSCalibration *calibSPDdead = 0;
2044 if(detType==0) calibSPDdead = (AliITSCalibration*)detTypeRec->GetSPDDeadModel(idet); // TEMPORARY
2045 if (calib->IsBad() ||
2046 (detType==0 && calibSPDdead->IsBad())) // TEMPORARY
2047 {
2048 SetBad();
359ac74d 2049 // printf("lay %d bad %d\n",ilayer,idet);
23197852 2050 }
2051
2052 // Get segmentation from AliITSDetTypeRec
2053 AliITSsegmentation *segm = (AliITSsegmentation*)detTypeRec->GetSegmentationModel(detType);
2054
2055 // Read info about bad chips
2056 fNChips = segm->GetMaximumChipIndex()+1;
2057 //printf("ilayer %d detType %d idet %d fNChips %d %d GetNumberOfChips %d\n",ilayer,detType,idet,fNChips,segm->GetMaximumChipIndex(),segm->GetNumberOfChips());
2058 if(fChipIsBad) { delete [] fChipIsBad; fChipIsBad=NULL; }
2059 fChipIsBad = new Bool_t[fNChips];
2060 for (Int_t iCh=0;iCh<fNChips;iCh++) {
2061 fChipIsBad[iCh] = calib->IsChipBad(iCh);
2062 if (detType==0 && calibSPDdead->IsChipBad(iCh)) fChipIsBad[iCh] = kTRUE; // TEMPORARY
4187a601 2063 //if(fChipIsBad[iCh]) {printf("lay %d det %d bad chip %d\n",ilayer,idet,iCh);}
23197852 2064 }
2065
2066 return;
2067}
2068//------------------------------------------------------------------------
e50912db 2069Double_t AliITStrackerMI::GetEffectiveThickness()
e43c066c 2070{
2071 //--------------------------------------------------------------------
afd25725 2072 // Returns the thickness between the current layer and the vertex (units X0)
e43c066c 2073 //--------------------------------------------------------------------
e43c066c 2074
e50912db 2075 if(fUseTGeo!=0) {
2076 if(fxOverX0Layer[0]<0) BuildMaterialLUT("Layers");
2077 if(fxOverX0Shield[0]<0) BuildMaterialLUT("Shields");
2078 if(fxOverX0Pipe<0) BuildMaterialLUT("Pipe");
2079 }
2080
afd25725 2081 // beam pipe
e50912db 2082 Double_t dPipe = (fUseTGeo==0 ? AliITSRecoParam::GetdPipe() : fxOverX0Pipe);
2083 Double_t d=dPipe*AliITSRecoParam::GetrPipe()*AliITSRecoParam::GetrPipe();
afd25725 2084
2085 // layers
2086 Double_t x0=0;
e43c066c 2087 Double_t xn=fgLayers[fI].GetR();
2088 for (Int_t i=0; i<fI; i++) {
2089 Double_t xi=fgLayers[i].GetR();
e50912db 2090 Double_t dLayer = (fUseTGeo==0 ? fgLayers[i].GetThickness(0,0,x0) : fxOverX0Layer[i]);
2091 d+=dLayer*xi*xi;
e43c066c 2092 }
2093
afd25725 2094 // shields
e43c066c 2095 if (fI>1) {
e50912db 2096 Double_t dshieldSPD = (fUseTGeo==0 ? AliITSRecoParam::Getdshield(0) : fxOverX0Shield[0]);
2097 d+=dshieldSPD*AliITSRecoParam::GetrInsideShield(0)*AliITSRecoParam::GetrInsideShield(0);
e43c066c 2098 }
e43c066c 2099 if (fI>3) {
e50912db 2100 Double_t dshieldSDD = (fUseTGeo==0 ? AliITSRecoParam::Getdshield(1) : fxOverX0Shield[1]);
2101 d+=dshieldSDD*AliITSRecoParam::GetrInsideShield(1)*AliITSRecoParam::GetrInsideShield(1);
e43c066c 2102 }
e43c066c 2103 return d/(xn*xn);
2104}
44347160 2105//------------------------------------------------------------------------
e43c066c 2106Int_t AliITStrackerMI::AliITSlayer::InRoad() const {
ae00569a 2107 //-------------------------------------------------------------------
e43c066c 2108 // This function returns number of clusters within the "window"
2109 //--------------------------------------------------------------------
2110 Int_t ncl=0;
2111 for (Int_t i=fI; i<fN; i++) {
00a7cc50 2112 const AliITSRecPoint *c=fClusters[i];
e43c066c 2113 if (c->GetZ() > fZmax) break;
2114 if (c->IsUsed()) continue;
2115 const AliITSdetector &det=GetDetector(c->GetDetectorIndex());
2116 Double_t y=fR*det.GetPhi() + c->GetY();
2117
2118 if (y>2.*fR*TMath::Pi()) y -= 2*fR*TMath::Pi();
2119 if (y>1.*fR*TMath::Pi() && fYmax<y) y -= 2*fR*TMath::Pi();
2120
2121 if (y<fYmin) continue;
2122 if (y>fYmax) continue;
2123 ncl++;
2124 }
2125 return ncl;
2126}
44347160 2127//------------------------------------------------------------------------
ae00569a 2128Bool_t AliITStrackerMI::RefitAt(Double_t xx,AliITStrackMI *track,
7167ae53 2129 const AliITStrackMI *clusters,Bool_t extra, Bool_t planeeff)
ae00569a 2130{
e43c066c 2131 //--------------------------------------------------------------------
ae00569a 2132 // This function refits the track "track" at the position "x" using
2133 // the clusters from "clusters"
ef7253ac 2134 // If "extra"==kTRUE,
ae00569a 2135 // the clusters from overlapped modules get attached to "track"
7167ae53 2136 // If "planeff"==kTRUE,
2137 // special approach for plane efficiency evaluation is applyed
e43c066c 2138 //--------------------------------------------------------------------
6518a6c5 2139
e50912db 2140 Int_t index[AliITSgeomTGeo::kNLayers];
e43c066c 2141 Int_t k;
e50912db 2142 for (k=0; k<AliITSgeomTGeo::GetNLayers(); k++) index[k]=-1;
ae00569a 2143 Int_t nc=clusters->GetNumberOfClusters();
e43c066c 2144 for (k=0; k<nc; k++) {
ae00569a 2145 Int_t idx=clusters->GetClusterIndex(k);
2146 Int_t ilayer=(idx&0xf0000000)>>28;
2147 index[ilayer]=idx;
e43c066c 2148 }
67c1e979 2149
7167ae53 2150 return RefitAt(xx,track,index,extra,planeeff); // call the method below
67c1e979 2151}
44347160 2152//------------------------------------------------------------------------
ae00569a 2153Bool_t AliITStrackerMI::RefitAt(Double_t xx,AliITStrackMI *track,
7167ae53 2154 const Int_t *clusters,Bool_t extra, Bool_t planeeff)
ae00569a 2155{
67c1e979 2156 //--------------------------------------------------------------------
ae00569a 2157 // This function refits the track "track" at the position "x" using
67c1e979 2158 // the clusters from array
ae00569a 2159 // If "extra"==kTRUE,
2160 // the clusters from overlapped modules get attached to "track"
7167ae53 2161 // If "planeff"==kTRUE,
2162 // special approach for plane efficiency evaluation is applyed
67c1e979 2163 //--------------------------------------------------------------------
e50912db 2164 Int_t index[AliITSgeomTGeo::kNLayers];
67c1e979 2165 Int_t k;
e50912db 2166 for (k=0; k<AliITSgeomTGeo::GetNLayers(); k++) index[k]=-1;
67c1e979 2167 //
e50912db 2168 for (k=0; k<AliITSgeomTGeo::GetNLayers(); k++) {
ae00569a 2169 index[k]=clusters[k];
67c1e979 2170 }
2171
afd25725 2172 // special for cosmics: check which the innermost layer crossed
2173 // by the track
2174 Int_t innermostlayer=5;
ae00569a 2175 Double_t drphi = TMath::Abs(track->GetD(0.,0.));
2176 for(innermostlayer=0; innermostlayer<AliITSgeomTGeo::GetNLayers(); innermostlayer++) {
2177 if(drphi < fgLayers[innermostlayer].GetR()) break;
2178 }
2179 //printf(" drphi %f innermost %d\n",drphi,innermostlayer);
afd25725 2180
ae00569a 2181 Int_t modstatus=1; // found
2182 Float_t xloc,zloc;
67c1e979 2183 Int_t from, to, step;
ae00569a 2184 if (xx > track->GetX()) {
e50912db 2185 from=innermostlayer; to=AliITSgeomTGeo::GetNLayers();
67c1e979 2186 step=+1;
2187 } else {
e50912db 2188 from=AliITSgeomTGeo::GetNLayers()-1; to=innermostlayer-1;
67c1e979 2189 step=-1;
2190 }
ae00569a 2191 TString dir = (step>0 ? "outward" : "inward");
67c1e979 2192
ae00569a 2193 for (Int_t ilayer = from; ilayer != to; ilayer += step) {
6518a6c5 2194 AliITSlayer &layer=fgLayers[ilayer];
67c1e979 2195 Double_t r=layer.GetR();
afd25725 2196 if (step<0 && xx>r) break;
2197
2198 // material between SSD and SDD, SDD and SPD
6518a6c5 2199 Double_t hI=ilayer-0.5*step;
e50912db 2200 if (TMath::Abs(hI-3.5)<0.01) // SDDouter
ae00569a 2201 if(!CorrectForShieldMaterial(track,"SDD",dir)) return kFALSE;
e50912db 2202 if (TMath::Abs(hI-1.5)<0.01) // SPDouter
ae00569a 2203 if(!CorrectForShieldMaterial(track,"SPD",dir)) return kFALSE;
67c1e979 2204
2205 // remember old position [SR, GSI 18.02.2003]
2206 Double_t oldX=0., oldY=0., oldZ=0.;
ae00569a 2207 if (track->IsStartedTimeIntegral() && step==1) {
d1181f10 2208 if (!track->GetGlobalXYZat(track->GetX(),oldX,oldY,oldZ)) return kFALSE;
67c1e979 2209 }
2210 //
ae00569a 2211
afd25725 2212 Double_t oldGlobXYZ[3];
d1181f10 2213 if (!track->GetXYZ(oldGlobXYZ)) return kFALSE;
9be1d1c7 2214 //TMath::Sqrt(track->GetSigmaY2());
afd25725 2215
8602c008 2216 Double_t phi,z;
ae00569a 2217 if (!track->GetPhiZat(r,phi,z)) return kFALSE;
67c1e979 2218
67c1e979 2219 Int_t idet=layer.FindDetectorIndex(phi,z);
6518a6c5 2220
2221 // check if we allow a prolongation without point for large-eta tracks
ae00569a 2222 Int_t skip = CheckSkipLayer(track,ilayer,idet);
6518a6c5 2223 if (skip==2) {
2224 // propagate to the layer radius
d1181f10 2225 Double_t xToGo; if (!track->GetLocalXat(r,xToGo)) return kFALSE;
9be1d1c7 2226 if (!track->Propagate(xToGo)) return kFALSE;
6518a6c5 2227 // apply correction for material of the current layer
ae00569a 2228 CorrectForLayerMaterial(track,ilayer,oldGlobXYZ,dir);
2229 modstatus = 4; // out in z
d1181f10 2230 if(LocalModuleCoord(ilayer,idet,track,xloc,zloc)) { // local module coords
2231 track->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
2232 }
6518a6c5 2233 // track time update [SR, GSI 17.02.2003]
ae00569a 2234 if (track->IsStartedTimeIntegral() && step==1) {
6518a6c5 2235 Double_t newX, newY, newZ;
d1181f10 2236 if (!track->GetGlobalXYZat(track->GetX(),newX,newY,newZ)) return kFALSE;
6518a6c5 2237 Double_t dL2 = (oldX-newX)*(oldX-newX) + (oldY-newY)*(oldY-newY) +
2238 (oldZ-newZ)*(oldZ-newZ);
ae00569a 2239 track->AddTimeStep(TMath::Sqrt(dL2));
6518a6c5 2240 }
2241 continue;
2242 }
2243
e50912db 2244 if (idet<0) return kFALSE;
ae00569a 2245
67c1e979 2246 const AliITSdetector &det=layer.GetDetector(idet);
1c97ce2f 2247 if (!track->Propagate(det.GetPhi(),det.GetR())) return kFALSE;
23197852 2248
ae00569a 2249 track->SetDetectorIndex(idet);
d1181f10 2250 if(!LocalModuleCoord(ilayer,idet,track,xloc,zloc)) return kFALSE; // local module coords
67c1e979 2251
23197852 2252 Double_t dz,zmin,zmax,dy,ymin,ymax;
ae00569a 2253
2254 const AliITSRecPoint *clAcc=0;
44347160 2255 Double_t maxchi2=1000.*AliITSReconstructor::GetRecoParam()->GetMaxChi2();
67c1e979 2256
6518a6c5 2257 Int_t idx=index[ilayer];
ae00569a 2258 if (idx>=0) { // cluster in this layer
2259 modstatus = 6; // no refit
2260 const AliITSRecPoint *cl=(AliITSRecPoint *)GetCluster(idx);
2261 if (cl) {
2262 if (idet != cl->GetDetectorIndex()) {
2263 idet=cl->GetDetectorIndex();
a5d0fae6 2264 const AliITSdetector &detc=layer.GetDetector(idet);
2265 if (!track->Propagate(detc.GetPhi(),detc.GetR())) return kFALSE;
ae00569a 2266 track->SetDetectorIndex(idet);
d1181f10 2267 if(!LocalModuleCoord(ilayer,idet,track,xloc,zloc)) return kFALSE; // local module coords
ae00569a 2268 }
ae00569a 2269 Int_t cllayer = (idx & 0xf0000000) >> 28;;
2270 Double_t chi2=GetPredictedChi2MI(track,cl,cllayer);
2271 if (chi2<maxchi2) {
2272 clAcc=cl;
2273 maxchi2=chi2;
2274 modstatus = 1; // found
2275 } else {
7167ae53 2276 return kFALSE; //
ae00569a 2277 }
2278 }
2279 } else { // no cluster in this layer
2280 if (skip==1) {
2281 modstatus = 3; // skipped
0ed58a47 2282 // Plane Eff determination:
2283 if (planeeff && ilayer==AliITSReconstructor::GetRecoParam()->GetIPlanePlaneEff()) {
2284 if (IsOKForPlaneEff(track,clusters,ilayer)) // only adequate track for plane eff. evaluation
2285 UseTrackForPlaneEff(track,ilayer);
7167ae53 2286 }
ae00569a 2287 } else {
2288 modstatus = 5; // no cls in road
2289 // check dead
1c97ce2f 2290 if (!ComputeRoad(track,ilayer,idet,zmin,zmax,ymin,ymax)) return kFALSE;
2291 dz = 0.5*(zmax-zmin);
2292 dy = 0.5*(ymax-ymin);
2293 Int_t dead = CheckDeadZone(track,ilayer,idet,dz,dy,kTRUE);
ae00569a 2294 if (dead==1) modstatus = 7; // holes in z in SPD
23197852 2295 if (dead==2 || dead==3) modstatus = 2; // dead from OCDB
ae00569a 2296 }
e43c066c 2297 }
ae00569a 2298
2299 if (clAcc) {
2300 if (!UpdateMI(track,clAcc,maxchi2,idx)) return kFALSE;
2301 track->SetSampledEdx(clAcc->GetQ(),track->GetNumberOfClusters()-1);
e43c066c 2302 }
ae00569a 2303 track->SetModuleIndexInfo(ilayer,idet,modstatus,xloc,zloc);
2304
2305
2306 if (extra) { // search for extra clusters in overlapped modules
2307 AliITStrackV2 tmp(*track);
1c97ce2f 2308 if (!ComputeRoad(track,ilayer,idet,zmin,zmax,ymin,ymax)) return kFALSE;
2309 layer.SelectClusters(zmin,zmax,ymin,ymax);
ae00569a 2310
2311 const AliITSRecPoint *clExtra=0; Int_t ci=-1,cci=-1;
2312 Int_t idetExtra=-1;
a5d0fae6 2313 maxchi2=1000.*AliITSReconstructor::GetRecoParam()->GetMaxChi2();
2314 Double_t tolerance=0.1;
ae00569a 2315 while ((clExtra=layer.GetNextCluster(ci))!=0) {
2316 // only clusters in another module! (overlaps)
2317 idetExtra = clExtra->GetDetectorIndex();
2318 if (idet == idetExtra) continue;
2319
a5d0fae6 2320 const AliITSdetector &detx=layer.GetDetector(idetExtra);
ae00569a 2321
1c97ce2f 2322 if (!tmp.Propagate(detx.GetPhi(),detx.GetR()+clExtra->GetX())) continue;
ae00569a 2323 if (TMath::Abs(tmp.GetZ() - clExtra->GetZ()) > tolerance) continue;
2324 if (TMath::Abs(tmp.GetY() - clExtra->GetY()) > tolerance) continue;
1c97ce2f 2325 if (!tmp.Propagate(detx.GetPhi(),detx.GetR())) continue;
ae00569a 2326
2327 Double_t chi2=tmp.GetPredictedChi2(clExtra);
2328 if (chi2<maxchi2) { maxchi2=chi2; cci=ci; }
2329 }
2330 if (cci>=0) {
2331 track->SetExtraCluster(ilayer,(ilayer<<28)+cci);
2332 track->SetExtraModule(ilayer,idetExtra);
2333 }
2334 } // end search for extra clusters in overlapped modules
1c97ce2f 2335
afd25725 2336 // Correct for material of the current layer
ae00569a 2337 if(!CorrectForLayerMaterial(track,ilayer,oldGlobXYZ,dir)) return kFALSE;
e43c066c 2338
2339 // track time update [SR, GSI 17.02.2003]
ae00569a 2340 if (track->IsStartedTimeIntegral() && step==1) {
e43c066c 2341 Double_t newX, newY, newZ;
d1181f10 2342 if (!track->GetGlobalXYZat(track->GetX(),newX,newY,newZ)) return kFALSE;
e43c066c 2343 Double_t dL2 = (oldX-newX)*(oldX-newX) + (oldY-newY)*(oldY-newY) +
2344 (oldZ-newZ)*(oldZ-newZ);
ae00569a 2345 track->AddTimeStep(TMath::Sqrt(dL2));
e43c066c 2346 }
2347 //
2348
ae00569a 2349 } // end loop on layers
2350
db355ee7 2351 if (!track->PropagateTo(xx,0.,0.)) return kFALSE;
e43c066c 2352
e43c066c 2353 return kTRUE;
2354}
44347160 2355//------------------------------------------------------------------------
15dd636f 2356Double_t AliITStrackerMI::GetNormalizedChi2(AliITStrackMI * track, Int_t mode)
e43c066c 2357{
2358 //
2359 // calculate normalized chi2
2360 // return NormalizedChi2(track,0);
2361 Float_t chi2 = 0;
2362 Float_t sum=0;
2363 Float_t *erry = GetErrY(fCurrentEsdTrack), *errz = GetErrZ(fCurrentEsdTrack);
2364 // track->fdEdxMismatch=0;
2365 Float_t dedxmismatch =0;
2366 Float_t *ny = GetNy(fCurrentEsdTrack), *nz = GetNz(fCurrentEsdTrack);
2367 if (mode<100){
2368 for (Int_t i = 0;i<6;i++){
b9671574 2369 if (track->GetClIndex(i)>0){
e43c066c 2370 Float_t cerry, cerrz;
2371 if (ny[i]>0) {cerry = erry[i]; cerrz=errz[i];}
2372 else
b9671574 2373 { cerry= track->GetSigmaY(i); cerrz = track->GetSigmaZ(i);}
e43c066c 2374 cerry*=cerry;
2375 cerrz*=cerrz;
b9671574 2376 Float_t cchi2 = (track->GetDy(i)*track->GetDy(i)/cerry)+(track->GetDz(i)*track->GetDz(i)/cerrz);
572f41f9 2377 if (i>1 && AliITSReconstructor::GetRecoParam()->GetUseAmplitudeInfo(i)) {
b9671574 2378 Float_t ratio = track->GetNormQ(i)/track->GetExpQ();
e43c066c 2379 if (ratio<0.5) {
2380 cchi2+=(0.5-ratio)*10.;
2381 //track->fdEdxMismatch+=(0.5-ratio)*10.;
2382 dedxmismatch+=(0.5-ratio)*10.;
2383 }
2384 }
2385 if (i<2 ||i>3){
b9671574 2386 AliITSRecPoint * cl = (AliITSRecPoint*)GetCluster( track->GetClIndex(i));
e43c066c 2387 Double_t delta = cl->GetNy()+cl->GetNz()-ny[i]-nz[i];
2388 if (delta>1) chi2 +=0.5*TMath::Min(delta/2,2.);
2389 if (i<2) chi2+=2*cl->GetDeltaProbability();
2390 }
2391 chi2+=cchi2;
2392 sum++;
2393 }
2394 }
b9671574 2395 if (TMath::Abs(track->GetdEdxMismatch()-dedxmismatch)>0.0001){
2396 track->SetdEdxMismatch(dedxmismatch);
e43c066c 2397 }
2398 }
2399 else{
2400 for (Int_t i = 0;i<4;i++){
b9671574 2401 if (track->GetClIndex(i)>0){
e43c066c 2402 Float_t cerry, cerrz;
2403 if (ny[i]>0) {cerry = erry[i]; cerrz=errz[i];}
b9671574 2404 else { cerry= track->GetSigmaY(i); cerrz = track->GetSigmaZ(i);}
e43c066c 2405 cerry*=cerry;
2406 cerrz*=cerrz;
b9671574 2407 chi2+= (track->GetDy(i)*track->GetDy(i)/cerry);
2408 chi2+= (track->GetDz(i)*track->GetDz(i)/cerrz);
e43c066c 2409 sum++;
2410 }
2411 }
2412 for (Int_t i = 4;i<6;i++){
b9671574 2413 if (track->GetClIndex(i)>0){
e43c066c 2414 Float_t cerry, cerrz;
2415 if (ny[i]>0) {cerry = erry[i]; cerrz=errz[i];}
b9671574 2416 else { cerry= track->GetSigmaY(i); cerrz = track->GetSigmaZ(i);}
e43c066c 2417 cerry*=cerry;
2418 cerrz*=cerrz;
2419 Float_t cerryb, cerrzb;
2420 if (ny[i+6]>0) {cerryb = erry[i+6]; cerrzb=errz[i+6];}
b9671574 2421 else { cerryb= track->GetSigmaY(i+6); cerrzb = track->GetSigmaZ(i+6);}
e43c066c 2422 cerryb*=cerryb;
2423 cerrzb*=cerrzb;
b9671574 2424 chi2+= TMath::Min((track->GetDy(i+6)*track->GetDy(i+6)/cerryb),track->GetDy(i)*track->GetDy(i)/cerry);
2425 chi2+= TMath::Min((track->GetDz(i+6)*track->GetDz(i+6)/cerrzb),track->GetDz(i)*track->GetDz(i)/cerrz);
e43c066c 2426 sum++;
2427 }
2428 }
2429 }
b9671574 2430 if (track->GetESDtrack()->GetTPCsignal()>85){
2431 Float_t ratio = track->GetdEdx()/track->GetESDtrack()->GetTPCsignal();
e43c066c 2432 if (ratio<0.5) {
2433 chi2+=(0.5-ratio)*5.;
2434 }
2435 if (ratio>2){
2436 chi2+=(ratio-2.0)*3;
2437 }
2438 }
2439 //
b9671574 2440 Double_t match = TMath::Sqrt(track->GetChi22());
2441 if (track->GetConstrain()) match/=track->GetNumberOfClusters();
2755f080 2442 if (!track->GetConstrain()) {
2443 if (track->GetNumberOfClusters()>2) {
2444 match/=track->GetNumberOfClusters()-2.;
2445 } else {
2446 match=0;
2447 }
2448 }
e43c066c 2449 if (match<0) match=0;
b9671574 2450 Float_t deadzonefactor = (track->GetNDeadZone()>0) ? 3*(1.1-track->GetDeadZoneProbability()):0.;
2451 Double_t normchi2 = 2*track->GetNSkipped()+match+deadzonefactor+(1+(2*track->GetNSkipped()+deadzonefactor)/track->GetNumberOfClusters())*
2452 (chi2)/TMath::Max(double(sum-track->GetNSkipped()),
2453 1./(1.+track->GetNSkipped()));
e43c066c 2454
2455 return normchi2;
2456}
44347160 2457//------------------------------------------------------------------------
15dd636f 2458Double_t AliITStrackerMI::GetMatchingChi2(AliITStrackMI * track1, AliITStrackMI * track2)
e43c066c 2459{
2460 //
2461 // return matching chi2 between two tracks
d1181f10 2462 Double_t largeChi2=1000.;
2463
15dd636f 2464 AliITStrackMI track3(*track2);
d1181f10 2465 if (!track3.Propagate(track1->GetAlpha(),track1->GetX())) return largeChi2;
e43c066c 2466 TMatrixD vec(5,1);
6c94f330 2467 vec(0,0)=track1->GetY() - track3.GetY();
2468 vec(1,0)=track1->GetZ() - track3.GetZ();
2469 vec(2,0)=track1->GetSnp() - track3.GetSnp();
2470 vec(3,0)=track1->GetTgl() - track3.GetTgl();
6c23ffed 2471 vec(4,0)=track1->GetSigned1Pt() - track3.GetSigned1Pt();
e43c066c 2472 //
2473 TMatrixD cov(5,5);
6c94f330 2474 cov(0,0) = track1->GetSigmaY2()+track3.GetSigmaY2();
2475 cov(1,1) = track1->GetSigmaZ2()+track3.GetSigmaZ2();
2476 cov(2,2) = track1->GetSigmaSnp2()+track3.GetSigmaSnp2();
2477 cov(3,3) = track1->GetSigmaTgl2()+track3.GetSigmaTgl2();
2478 cov(4,4) = track1->GetSigma1Pt2()+track3.GetSigma1Pt2();
e43c066c 2479
6c94f330 2480 cov(0,1)=cov(1,0) = track1->GetSigmaZY()+track3.GetSigmaZY();
2481 cov(0,2)=cov(2,0) = track1->GetSigmaSnpY()+track3.GetSigmaSnpY();
2482 cov(0,3)=cov(3,0) = track1->GetSigmaTglY()+track3.GetSigmaTglY();
2483 cov(0,4)=cov(4,0) = track1->GetSigma1PtY()+track3.GetSigma1PtY();
e43c066c 2484 //
6c94f330 2485 cov(1,2)=cov(2,1) = track1->GetSigmaSnpZ()+track3.GetSigmaSnpZ();
2486 cov(1,3)=cov(3,1) = track1->GetSigmaTglZ()+track3.GetSigmaTglZ();
2487 cov(1,4)=cov(4,1) = track1->GetSigma1PtZ()+track3.GetSigma1PtZ();
e43c066c 2488 //
6c94f330 2489 cov(2,3)=cov(3,2) = track1->GetSigmaTglSnp()+track3.GetSigmaTglSnp();
2490 cov(2,4)=cov(4,2) = track1->GetSigma1PtSnp()+track3.GetSigma1PtSnp();
e43c066c 2491 //
6c94f330 2492 cov(3,4)=cov(4,3) = track1->GetSigma1PtTgl()+track3.GetSigma1PtTgl();
e43c066c 2493
2494 cov.Invert();
2495 TMatrixD vec2(cov,TMatrixD::kMult,vec);
2496 TMatrixD chi2(vec2,TMatrixD::kTransposeMult,vec);
2497 return chi2(0,0);
2498}
44347160 2499//------------------------------------------------------------------------
6518a6c5 2500Double_t AliITStrackerMI::GetSPDDeadZoneProbability(Double_t zpos, Double_t zerr)
e43c066c 2501{
2502 //
afd25725 2503 // return probability that given point (characterized by z position and error)
2504 // is in SPD dead zone
e43c066c 2505 //
afd25725 2506 Double_t probability = 0.;
e43c066c 2507 Double_t absz = TMath::Abs(zpos);
afd25725 2508 Double_t nearestz = (absz<2.) ? 0.5*(fSPDdetzcentre[1]+fSPDdetzcentre[2]) :
2509 0.5*(fSPDdetzcentre[2]+fSPDdetzcentre[3]);
2510 if (TMath::Abs(absz-nearestz)>0.25+3.*zerr) return probability;
2511 Double_t zmin, zmax;
2512 if (zpos<-6.) { // dead zone at z = -7
e50912db 2513 zmin = fSPDdetzcentre[0] + 0.5*AliITSRecoParam::GetSPDdetzlength();
2514 zmax = fSPDdetzcentre[1] - 0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 2515 } else if (zpos>6.) { // dead zone at z = +7
e50912db 2516 zmin = fSPDdetzcentre[2] + 0.5*AliITSRecoParam::GetSPDdetzlength();
2517 zmax = fSPDdetzcentre[3] - 0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 2518 } else if (absz<2.) { // dead zone at z = 0
e50912db 2519 zmin = fSPDdetzcentre[1] + 0.5*AliITSRecoParam::GetSPDdetzlength();
2520 zmax = fSPDdetzcentre[2] - 0.5*AliITSRecoParam::GetSPDdetzlength();
afd25725 2521 } else {
2522 zmin = 0.;
2523 zmax = 0.;
e43c066c 2524 }
afd25725 2525 // probability that the true z is in the range [zmin,zmax] (i.e. inside
2526 // dead zone)
2527 probability = 0.5*( TMath::Erf((zpos-zmin)/zerr/TMath::Sqrt(2.)) -
2528 TMath::Erf((zpos-zmax)/zerr/TMath::Sqrt(2.)) );
e43c066c 2529 return probability;
2530}
44347160 2531//------------------------------------------------------------------------
15dd636f 2532Double_t AliITStrackerMI::GetTruncatedChi2(AliITStrackMI * track, Float_t fac)
e43c066c 2533{
2534 //
2535 // calculate normalized chi2
2536 Float_t chi2[6];
2537 Float_t *erry = GetErrY(fCurrentEsdTrack), *errz = GetErrZ(fCurrentEsdTrack);
2538 Float_t ncl = 0;
2539 for (Int_t i = 0;i<6;i++){
b9671574 2540 if (TMath::Abs(track->GetDy(i))>0){
2541 chi2[i]= (track->GetDy(i)/erry[i])*(track->GetDy(i)/erry[i]);
2542 chi2[i]+= (track->GetDz(i)/errz[i])*(track->GetDz(i)/errz[i]);
e43c066c 2543 ncl++;
2544 }
2545 else{chi2[i]=10000;}
2546 }
2547 Int_t index[6];
2548 TMath::Sort(6,chi2,index,kFALSE);
2549 Float_t max = float(ncl)*fac-1.;
2550 Float_t sumchi=0, sumweight=0;
2551 for (Int_t i=0;i<max+1;i++){
2552 Float_t weight = (i<max)?1.:(max+1.-i);
2553 sumchi+=weight*chi2[index[i]];
2554 sumweight+=weight;
2555 }
2556 Double_t normchi2 = sumchi/sumweight;
2557 return normchi2;
2558}
44347160 2559//------------------------------------------------------------------------
15dd636f 2560Double_t AliITStrackerMI::GetInterpolatedChi2(AliITStrackMI * forwardtrack, AliITStrackMI * backtrack)
e43c066c 2561{
2562 //
2563 // calculate normalized chi2
2564 // if (forwardtrack->fNUsed>0.3*float(forwardtrack->GetNumberOfClusters())) return 10000;
2565 Int_t npoints = 0;
2566 Double_t res =0;
2567 for (Int_t i=0;i<6;i++){
b9671574 2568 if ( (backtrack->GetSigmaY(i)<0.000000001) || (forwardtrack->GetSigmaY(i)<0.000000001)) continue;
2569 Double_t sy1 = forwardtrack->GetSigmaY(i);
2570 Double_t sz1 = forwardtrack->GetSigmaZ(i);
2571 Double_t sy2 = backtrack->GetSigmaY(i);
2572 Double_t sz2 = backtrack->GetSigmaZ(i);
e43c066c 2573 if (i<2){ sy2=1000.;sz2=1000;}
2574 //
b9671574 2575 Double_t dy0 = (forwardtrack->GetDy(i)/(sy1*sy1) +backtrack->GetDy(i)/(sy2*sy2))/(1./(sy1*sy1)+1./(sy2*sy2));
2576 Double_t dz0 = (forwardtrack->GetDz(i)/(sz1*sz1) +backtrack->GetDz(i)/(sz2*sz2))/(1./(sz1*sz1)+1./(sz2*sz2));
e43c066c 2577 //
2578 Double_t nz0 = dz0*TMath::Sqrt((1./(sz1*sz1)+1./(sz2*sz2)));
2579 Double_t ny0 = dy0*TMath::Sqrt((1./(sy1*sy1)+1./(sy2*sy2)));
2580 //
2581 res+= nz0*nz0+ny0*ny0;
2582 npoints++;
2583 }
2584 if (npoints>1) return
6c23ffed 2585 TMath::Max(0.3*forwardtrack->OneOverPt()-0.5,0.)+
e43c066c 2586 //2*forwardtrack->fNUsed+
b9671574 2587 res/TMath::Max(double(npoints-forwardtrack->GetNSkipped()),
2588 1./(1.+forwardtrack->GetNSkipped()));
e43c066c 2589 return 1000;
2590}
44347160 2591//------------------------------------------------------------------------
e43c066c 2592Float_t *AliITStrackerMI::GetWeight(Int_t index) {
2593 //--------------------------------------------------------------------
2594 // Return pointer to a given cluster
2595 //--------------------------------------------------------------------
2596 Int_t l=(index & 0xf0000000) >> 28;
2597 Int_t c=(index & 0x0fffffff) >> 00;
2598 return fgLayers[l].GetWeight(c);
2599}
44347160 2600//------------------------------------------------------------------------
15dd636f 2601void AliITStrackerMI::RegisterClusterTracks(AliITStrackMI* track,Int_t id)
e43c066c 2602{
2603 //---------------------------------------------
2604 // register track to the list
628e7bb0 2605 //
b9671574 2606 if (track->GetESDtrack()->GetKinkIndex(0)!=0) return; //don't register kink tracks
628e7bb0 2607 //
2608 //
e43c066c 2609 for (Int_t icluster=0;icluster<track->GetNumberOfClusters();icluster++){
2610 Int_t index = track->GetClusterIndex(icluster);
2611 Int_t l=(index & 0xf0000000) >> 28;
2612 Int_t c=(index & 0x0fffffff) >> 00;
b9671574 2613 if (c>fgLayers[l].GetNumberOfClusters()) continue;
e43c066c 2614 for (Int_t itrack=0;itrack<4;itrack++){
b9671574 2615 if (fgLayers[l].GetClusterTracks(itrack,c)<0){
2616 fgLayers[l].SetClusterTracks(itrack,c,id);
e43c066c 2617 break;
2618 }
2619 }
2620 }
2621}
44347160 2622//------------------------------------------------------------------------
15dd636f 2623void AliITStrackerMI::UnRegisterClusterTracks(AliITStrackMI* track, Int_t id)
e43c066c 2624{
2625 //---------------------------------------------
2626 // unregister track from the list
2627 for (Int_t icluster=0;icluster<track->GetNumberOfClusters();icluster++){
2628 Int_t index = track->GetClusterIndex(icluster);
2629 Int_t l=(index & 0xf0000000) >> 28;
2630 Int_t c=(index & 0x0fffffff) >> 00;
b9671574 2631 if (c>fgLayers[l].GetNumberOfClusters()) continue;
e43c066c 2632 for (Int_t itrack=0;itrack<4;itrack++){
b9671574 2633 if (fgLayers[l].GetClusterTracks(itrack,c)==id){
2634 fgLayers[l].SetClusterTracks(itrack,c,-1);
e43c066c 2635 }
2636 }
2637 }
2638}
44347160 2639//------------------------------------------------------------------------
00a7cc50 2640Float_t AliITStrackerMI::GetNumberOfSharedClusters(AliITStrackMI* track,Int_t id, Int_t list[6], AliITSRecPoint *clist[6])
e43c066c 2641{
2642 //-------------------------------------------------------------
2643 //get number of shared clusters
2644 //-------------------------------------------------------------
2645 Float_t shared=0;
2646 for (Int_t i=0;i<6;i++) { list[i]=-1, clist[i]=0;}
2647 // mean number of clusters
2648 Float_t *ny = GetNy(id), *nz = GetNz(id);
2649
2650
2651 for (Int_t icluster=0;icluster<track->GetNumberOfClusters();icluster++){
2652 Int_t index = track->GetClusterIndex(icluster);
2653 Int_t l=(index & 0xf0000000) >> 28;
2654 Int_t c=(index & 0x0fffffff) >> 00;
b9671574 2655 if (c>fgLayers[l].GetNumberOfClusters()) continue;
e43c066c 2656 if (ny[l]==0){
2657 printf("problem\n");
2658 }
00a7cc50 2659 AliITSRecPoint *cl = (AliITSRecPoint*)GetCluster(index);
e43c066c 2660 Float_t weight=1;
2661 //
2662 Float_t deltan = 0;
2663 if (l>3&&cl->GetNy()+cl->GetNz()>6) continue;
572f41f9 2664 if (l>2&&AliITSReconstructor::GetRecoParam()->GetUseAmplitudeInfo(l))
2665 if (track->GetNormQ(l)/track->GetExpQ()>3.5) continue;
e43c066c 2666 if (l<2 || l>3){
2667 deltan = (cl->GetNy()+cl->GetNz()-ny[l]-nz[l]);
2668 }
2669 else{
2670 deltan = (cl->GetNz()-nz[l]);
2671 }
2672 if (deltan>2.0) continue; // extended - highly probable shared cluster
2673 weight = 2./TMath::Max(3.+deltan,2.);
2674 //
2675 for (Int_t itrack=0;itrack<4;itrack++){
b9671574 2676 if (fgLayers[l].GetClusterTracks(itrack,c)>=0 && fgLayers[l].GetClusterTracks(itrack,c)!=id){
e43c066c 2677 list[l]=index;
00a7cc50 2678 clist[l] = (AliITSRecPoint*)GetCluster(index);
e43c066c 2679 shared+=weight;
2680 break;
2681 }
2682 }
2683 }
b9671574 2684 track->SetNUsed(shared);
e43c066c 2685 return shared;
2686}
44347160 2687//------------------------------------------------------------------------
15dd636f 2688Int_t AliITStrackerMI::GetOverlapTrack(AliITStrackMI *track, Int_t trackID, Int_t &shared, Int_t clusterlist[6],Int_t overlist[6])
e43c066c 2689{
2690 //
2691 // find first shared track
2692 //
2693 // mean number of clusters
2694 Float_t *ny = GetNy(trackID), *nz = GetNz(trackID);
2695 //
2696 for (Int_t i=0;i<6;i++) overlist[i]=-1;
2697 Int_t sharedtrack=100000;
2698 Int_t tracks[24],trackindex=0;
2699 for (Int_t i=0;i<24;i++) {tracks[i]=-1;}
2700 //
2701 for (Int_t icluster=0;icluster<6;icluster++){
2702 if (clusterlist[icluster]<0) continue;
2703 Int_t index = clusterlist[icluster];
2704 Int_t l=(index & 0xf0000000) >> 28;
2705 Int_t c=(index & 0x0fffffff) >> 00;
2706 if (ny[l]==0){
2707 printf("problem\n");
2708 }
b9671574 2709 if (c>fgLayers[l].GetNumberOfClusters()) continue;
e43c066c 2710 //if (l>3) continue;
00a7cc50 2711 AliITSRecPoint *cl = (AliITSRecPoint*)GetCluster(index);
e43c066c 2712 //
2713 Float_t deltan = 0;
2714 if (l>3&&cl->GetNy()+cl->GetNz()>6) continue;
572f41f9 2715 if (l>2&&AliITSReconstructor::GetRecoParam()->GetUseAmplitudeInfo(l))
2716 if (track->GetNormQ(l)/track->GetExpQ()>3.5) continue;
e43c066c 2717 if (l<2 || l>3){
2718 deltan = (cl->GetNy()+cl->GetNz()-ny[l]-nz[l]);
2719 }
2720 else{
2721 deltan = (cl->GetNz()-nz[l]);
2722 }
2723 if (deltan>2.0) continue; // extended - highly probable shared cluster
2724 //
2725 for (Int_t itrack=3;itrack>=0;itrack--){
b9671574 2726 if (fgLayers[l].GetClusterTracks(itrack,c)<0) continue;
2727 if (fgLayers[l].GetClusterTracks(itrack,c)!=trackID){
2728 tracks[trackindex] = fgLayers[l].GetClusterTracks(itrack,c);
e43c066c 2729 trackindex++;
2730 }
2731 }
2732 }
2733 if (trackindex==0) return -1;
2734 if (trackindex==1){
2735 sharedtrack = tracks[0];
2736 }else{
2737 if (trackindex==2) sharedtrack =TMath::Min(tracks[0],tracks[1]);
2738 else{
2739 //
a5d0fae6 2740 Int_t tracks2[24], cluster[24];
2741 for (Int_t i=0;i<trackindex;i++){ tracks2[i]=-1; cluster[i]=0;}
e43c066c 2742 Int_t index =0;
2743 //
2744 for (Int_t i=0;i<trackindex;i++){
2745 if (tracks[i]<0) continue;
a5d0fae6 2746 tracks2[index] = tracks[i];
e43c066c 2747 cluster[index]++;
2748 for (Int_t j=i+1;j<trackindex;j++){
2749 if (tracks[j]<0) continue;
2750 if (tracks[j]==tracks[i]){
2751 cluster[index]++;
2752 tracks[j]=-1;
2753 }
2754 }
2755 index++;
2756 }
2757 Int_t max=0;
2758 for (Int_t i=0;i<index;i++){
2759 if (cluster[index]>max) {
a5d0fae6 2760 sharedtrack=tracks2[index];
e43c066c 2761 max=cluster[index];
2762 }
2763 }
2764 }
2765 }
2766
2767 if (sharedtrack>=100000) return -1;
2768 //
2769 // make list of overlaps
2770 shared =0;
2771 for (Int_t icluster=0;icluster<6;icluster++){
2772 if (clusterlist[icluster]<0) continue;
2773 Int_t index = clusterlist[icluster];
2774 Int_t l=(index & 0xf0000000) >> 28;
2775 Int_t c=(index & 0x0fffffff) >> 00;
b9671574 2776 if (c>fgLayers[l].GetNumberOfClusters()) continue;
00a7cc50 2777 AliITSRecPoint *cl = (AliITSRecPoint*)GetCluster(index);
e43c066c 2778 if (l==0 || l==1){
2779 if (cl->GetNy()>2) continue;
2780 if (cl->GetNz()>2) continue;
2781 }
2782 if (l==4 || l==5){
2783 if (cl->GetNy()>3) continue;
2784 if (cl->GetNz()>3) continue;
2785 }
2786 //
2787 for (Int_t itrack=3;itrack>=0;itrack--){
b9671574 2788 if (fgLayers[l].GetClusterTracks(itrack,c)<0) continue;
2789 if (fgLayers[l].GetClusterTracks(itrack,c)==sharedtrack){
e43c066c 2790 overlist[l]=index;
2791 shared++;
2792 }
2793 }
2794 }
2795 return sharedtrack;
2796}
44347160 2797//------------------------------------------------------------------------
15dd636f 2798AliITStrackMI * AliITStrackerMI::GetBest2Tracks(Int_t trackID1, Int_t trackID2, Float_t th0, Float_t th1){
e43c066c 2799 //
2800 // try to find track hypothesys without conflicts
2801 // with minimal chi2;
2802 TClonesArray *arr1 = (TClonesArray*)fTrackHypothesys.At(trackID1);
2803 Int_t entries1 = arr1->GetEntriesFast();
2804 TClonesArray *arr2 = (TClonesArray*)fTrackHypothesys.At(trackID2);
15dd636f 2805 if (!arr2) return (AliITStrackMI*) arr1->UncheckedAt(0);
e43c066c 2806 Int_t entries2 = arr2->GetEntriesFast();
15dd636f 2807 if (entries2<=0) return (AliITStrackMI*) arr1->UncheckedAt(0);
e43c066c 2808 //
15dd636f 2809 AliITStrackMI * track10=(AliITStrackMI*) arr1->UncheckedAt(0);
2810 AliITStrackMI * track20=(AliITStrackMI*) arr2->UncheckedAt(0);
6c23ffed 2811 if (track10->Pt()>0.5+track20->Pt()) return track10;
e43c066c 2812
2813 for (Int_t itrack=0;itrack<entries1;itrack++){
15dd636f 2814 AliITStrackMI * track=(AliITStrackMI*) arr1->UncheckedAt(itrack);
e43c066c 2815 UnRegisterClusterTracks(track,trackID1);
2816 }
2817 //
2818 for (Int_t itrack=0;itrack<entries2;itrack++){
15dd636f 2819 AliITStrackMI * track=(AliITStrackMI*) arr2->UncheckedAt(itrack);
e43c066c 2820 UnRegisterClusterTracks(track,trackID2);
2821 }
2822 Int_t index1=0;
2823 Int_t index2=0;
2824 Float_t maxconflicts=6;
2825 Double_t maxchi2 =1000.;
2826 //
2827 // get weight of hypothesys - using best hypothesy
2828 Double_t w1,w2;
2829
2830 Int_t list1[6],list2[6];
00a7cc50 2831 AliITSRecPoint *clist1[6], *clist2[6] ;
e43c066c 2832 RegisterClusterTracks(track10,trackID1);
2833 RegisterClusterTracks(track20,trackID2);
2834 Float_t conflict1 = GetNumberOfSharedClusters(track10,trackID1,list1,clist1);
2835 Float_t conflict2 = GetNumberOfSharedClusters(track20,trackID2,list2,clist2);
2836 UnRegisterClusterTracks(track10,trackID1);
2837 UnRegisterClusterTracks(track20,trackID2);
2838 //
2839 // normalized chi2
2840 Float_t chi21 =0,chi22=0,ncl1=0,ncl2=0;
2841 Float_t nerry[6],nerrz[6];
2842 Float_t *erry1=GetErrY(trackID1),*errz1 = GetErrZ(trackID1);
2843 Float_t *erry2=GetErrY(trackID2),*errz2 = GetErrZ(trackID2);
2844 for (Int_t i=0;i<6;i++){
2845 if ( (erry1[i]>0) && (erry2[i]>0)) {
2846 nerry[i] = TMath::Min(erry1[i],erry2[i]);
2847 nerrz[i] = TMath::Min(errz1[i],errz2[i]);
2848 }else{
2849 nerry[i] = TMath::Max(erry1[i],erry2[i]);
2850 nerrz[i] = TMath::Max(errz1[i],errz2[i]);
2851 }
b9671574 2852 if (TMath::Abs(track10->GetDy(i))>0.000000000000001){
2853 chi21 += track10->GetDy(i)*track10->GetDy(i)/(nerry[i]*nerry[i]);
2854 chi21 += track10->GetDz(i)*track10->GetDz(i)/(nerrz[i]*nerrz[i]);
e43c066c 2855 ncl1++;
2856 }
b9671574 2857 if (TMath::Abs(track20->GetDy(i))>0.000000000000001){
2858 chi22 += track20->GetDy(i)*track20->GetDy(i)/(nerry[i]*nerry[i]);
2859 chi22 += track20->GetDz(i)*track20->GetDz(i)/(nerrz[i]*nerrz[i]);
e43c066c 2860 ncl2++;
2861 }
2862 }
2863 chi21/=ncl1;
2864 chi22/=ncl2;
2865 //
2866 //
b9671574 2867 Float_t d1 = TMath::Sqrt(track10->GetD(0)*track10->GetD(0)+track10->GetD(1)*track10->GetD(1))+0.1;
2868 Float_t d2 = TMath::Sqrt(track20->GetD(0)*track20->GetD(0)+track20->GetD(1)*track20->GetD(1))+0.1;
e43c066c 2869 Float_t s1 = TMath::Sqrt(track10->GetSigmaY2()*track10->GetSigmaZ2());
2870 Float_t s2 = TMath::Sqrt(track20->GetSigmaY2()*track20->GetSigmaZ2());
2871 //
2872 w1 = (d2/(d1+d2)+ 2*s2/(s1+s2)+
2873 +s2/(s1+s2)*0.5*(chi22+2.)/(chi21+chi22+4.)
6c23ffed 2874 +1.*track10->Pt()/(track10->Pt()+track20->Pt())
e43c066c 2875 );
2876 w2 = (d1/(d1+d2)+ 2*s1/(s1+s2)+
2877 s1/(s1+s2)*0.5*(chi21+2.)/(chi21+chi22+4.)
6c23ffed 2878 +1.*track20->Pt()/(track10->Pt()+track20->Pt())
e43c066c 2879 );
2880
2881 Double_t sumw = w1+w2;
2882 w1/=sumw;
2883 w2/=sumw;
2884 if (w1<w2*0.5) {
2885 w1 = (d2+0.5)/(d1+d2+1.);
2886 w2 = (d1+0.5)/(d1+d2+1.);
2887 }
2888 // Float_t maxmax = w1*track10->fChi2MIP[0]+w2*track20->fChi2MIP[0]+w1*conflict1+w2*conflict2+1.;
2889 //Float_t maxconflicts0 = w1*conflict1+w2*conflict2;
2890 //
2891 // get pair of "best" hypothesys
2892 //
2893 Float_t * ny1 = GetNy(trackID1), * nz1 = GetNz(trackID1);
2894 Float_t * ny2 = GetNy(trackID2), * nz2 = GetNz(trackID2);
2895
2896 for (Int_t itrack1=0;itrack1<entries1;itrack1++){
15dd636f 2897 AliITStrackMI * track1=(AliITStrackMI*) arr1->UncheckedAt(itrack1);
e43c066c 2898 //if (track1->fFakeRatio>0) continue;
2899 RegisterClusterTracks(track1,trackID1);
2900 for (Int_t itrack2=0;itrack2<entries2;itrack2++){
15dd636f 2901 AliITStrackMI * track2=(AliITStrackMI*) arr2->UncheckedAt(itrack2);
e43c066c 2902
2903 // Float_t current = w1*track1->fChi2MIP[0]+w2*track2->fChi2MIP[0];
2904 //if (track2->fFakeRatio>0) continue;
2905 Float_t nskipped=0;
2906 RegisterClusterTracks(track2,trackID2);
e43c066c 2907 Float_t cconflict1 = GetNumberOfSharedClusters(track1,trackID1,list1,clist1);
2908 Float_t cconflict2 = GetNumberOfSharedClusters(track2,trackID2,list2,clist2);
2909 UnRegisterClusterTracks(track2,trackID2);
2910 //
b9671574 2911 if (track1->GetConstrain()) nskipped+=w1*track1->GetNSkipped();
2912 if (track2->GetConstrain()) nskipped+=w2*track2->GetNSkipped();
e43c066c 2913 if (nskipped>0.5) continue;
2914 //
2915 //if ( w1*conflict1+w2*conflict2>maxconflicts0) continue;
2916 if (conflict1+1<cconflict1) continue;
2917 if (conflict2+1<cconflict2) continue;
2918 Float_t conflict=0;
2919 Float_t sumchi2=0;
2920 Float_t sum=0;
2921 for (Int_t i=0;i<6;i++){
2922 //
2923 Float_t c1 =0.; // conflict coeficients
2924 Float_t c2 =0.;
2925 if (clist1[i]&&clist2[i]){
2926 Float_t deltan = 0;
2927 if (i<2 || i>3){
2928 deltan = (clist1[i]->GetNy()+clist1[i]->GetNz()-TMath::Max(ny1[i],ny2[i])-TMath::Max(nz1[i],nz2[i]));
2929 }
2930 else{
2931 deltan = (clist1[i]->GetNz()-TMath::Max(nz1[i],nz2[i]));
2932 }
2933 c1 = 2./TMath::Max(3.+deltan,2.);
2934 c2 = 2./TMath::Max(3.+deltan,2.);
2935 }
2936 else{
2937 if (clist1[i]){
2938 Float_t deltan = 0;
2939 if (i<2 || i>3){
2940 deltan = (clist1[i]->GetNy()+clist1[i]->GetNz()-ny1[i]-nz1[i]);
2941 }
2942 else{
2943 deltan = (clist1[i]->GetNz()-nz1[i]);
2944 }
2945 c1 = 2./TMath::Max(3.+deltan,2.);
2946 c2 = 0;
2947 }
2948
2949 if (clist2[i]){
2950 Float_t deltan = 0;
2951 if (i<2 || i>3){
2952 deltan = (clist2[i]->GetNy()+clist2[i]->GetNz()-ny2[i]-nz2[i]);
2953 }
2954 else{
2955 deltan = (clist2[i]->GetNz()-nz2[i]);
2956 }
2957 c2 = 2./TMath::Max(3.+deltan,2.);
2958 c1 = 0;
2959 }
2960 }
2961 //
a5d0fae6 2962 chi21=0;chi22=0;
b9671574 2963 if (TMath::Abs(track1->GetDy(i))>0.) {
2964 chi21 = (track1->GetDy(i)/track1->GetSigmaY(i))*(track1->GetDy(i)/track1->GetSigmaY(i))+
2965 (track1->GetDz(i)/track1->GetSigmaZ(i))*(track1->GetDz(i)/track1->GetSigmaZ(i));
e43c066c 2966 //chi21 = (track1->fDy[i]*track1->fDy[i])/(nerry[i]*nerry[i])+
b9671574 2967 // (track1->GetDz(i)*track1->GetDz(i))/(nerrz[i]*nerrz[i]);
e43c066c 2968 }else{
b9671574 2969 if (TMath::Abs(track1->GetSigmaY(i)>0.)) c1=1;
e43c066c 2970 }
2971 //
b9671574 2972 if (TMath::Abs(track2->GetDy(i))>0.) {
2973 chi22 = (track2->GetDy(i)/track2->GetSigmaY(i))*(track2->GetDy(i)/track2->GetSigmaY(i))+
2974 (track2->GetDz(i)/track2->GetSigmaZ(i))*(track2->GetDz(i)/track2->GetSigmaZ(i));
e43c066c 2975 //chi22 = (track2->fDy[i]*track2->fDy[i])/(nerry[i]*nerry[i])+
2976 // (track2->fDz[i]*track2->fDz[i])/(nerrz[i]*nerrz[i]);
2977 }
2978 else{
b9671574 2979 if (TMath::Abs(track2->GetSigmaY(i)>0.)) c2=1;
e43c066c 2980 }
2981 sumchi2+=w1*(1.+c1)*(1+c1)*(chi21+c1)+w2*(1.+c2)*(1+c2)*(chi22+c2);
2982 if (chi21>0) sum+=w1;
2983 if (chi22>0) sum+=w2;
2984 conflict+=(c1+c2);
2985 }
b9671574 2986 Double_t norm = sum-w1*track1->GetNSkipped()-w2*track2->GetNSkipped();
2987 if (norm<0) norm =1/(w1*track1->GetNSkipped()+w2*track2->GetNSkipped());
e43c066c 2988 Double_t normchi2 = 2*conflict+sumchi2/sum;
2989 if ( normchi2 <maxchi2 ){
2990 index1 = itrack1;
2991 index2 = itrack2;
2992 maxconflicts = conflict;
2993 maxchi2 = normchi2;
2994 }
2995 }
2996 UnRegisterClusterTracks(track1,trackID1);
2997 }
2998 //
2999 // if (maxconflicts<4 && maxchi2<th0){
3000 if (maxchi2<th0*2.){
b9671574 3001 Float_t orig = track10->GetFakeRatio()*track10->GetNumberOfClusters();
15dd636f 3002 AliITStrackMI* track1=(AliITStrackMI*) arr1->UncheckedAt(index1);
b9671574 3003 track1->SetChi2MIP(5,maxconflicts);
3004 track1->SetChi2MIP(6,maxchi2);
3005 track1->SetChi2MIP(7,0.01+orig-(track1->GetFakeRatio()*track1->GetNumberOfClusters()));
e43c066c 3006 // track1->UpdateESDtrack(AliESDtrack::kITSin);
b9671574 3007 track1->SetChi2MIP(8,index1);
e43c066c 3008 fBestTrackIndex[trackID1] =index1;
3009 UpdateESDtrack(track1, AliESDtrack::kITSin);
3010 }
b9671574 3011 else if (track10->GetChi2MIP(0)<th1){
3012 track10->SetChi2MIP(5,maxconflicts);
3013 track10->SetChi2MIP(6,maxchi2);
e43c066c 3014 // track10->UpdateESDtrack(AliESDtrack::kITSin);
3015 UpdateESDtrack(track10,AliESDtrack::kITSin);
3016 }
3017
3018 for (Int_t itrack=0;itrack<entries1;itrack++){
15dd636f 3019 AliITStrackMI * track=(AliITStrackMI*) arr1->UncheckedAt(itrack);
e43c066c 3020 UnRegisterClusterTracks(track,trackID1);
3021 }
3022 //
3023 for (Int_t itrack=0;itrack<entries2;itrack++){
15dd636f 3024 AliITStrackMI * track=(AliITStrackMI*) arr2->UncheckedAt(itrack);
e43c066c 3025 UnRegisterClusterTracks(track,trackID2);
3026 }
3027
44347160 3028 if (track10->GetConstrain()&&track10->GetChi2MIP(0)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)&&track10->GetChi2MIP(1)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)
3029 &&track10->GetChi2MIP(2)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)&&track10->GetChi2MIP(3)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3)){
3030 // if (track10->fChi2MIP[0]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)&&track10->fChi2MIP[1]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)
3031 // &&track10->fChi2MIP[2]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)&&track10->fChi2MIP[3]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3)){
e43c066c 3032 RegisterClusterTracks(track10,trackID1);
3033 }
44347160 3034 if (track20->GetConstrain()&&track20->GetChi2MIP(0)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)&&track20->GetChi2MIP(1)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)
3035 &&track20->GetChi2MIP(2)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)&&track20->GetChi2MIP(3)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3)){
3036 //if (track20->fChi2MIP[0]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)&&track20->fChi2MIP[1]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)
3037 // &&track20->fChi2MIP[2]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)&&track20->fChi2MIP[3]<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3)){
e43c066c 3038 RegisterClusterTracks(track20,trackID2);
3039 }
3040 return track10;
3041
3042}
44347160 3043//------------------------------------------------------------------------
e43c066c 3044void AliITStrackerMI::UseClusters(const AliKalmanTrack *t, Int_t from) const {
3045 //--------------------------------------------------------------------
3046 // This function marks clusters assigned to the track
3047 //--------------------------------------------------------------------
3048 AliTracker::UseClusters(t,from);
3049
00a7cc50 3050 AliITSRecPoint *c=(AliITSRecPoint *)GetCluster(t->GetClusterIndex(0));
e43c066c 3051 //if (c->GetQ()>2) c->Use();
3052 if (c->GetSigmaZ2()>0.1) c->Use();
00a7cc50 3053 c=(AliITSRecPoint *)GetCluster(t->GetClusterIndex(1));
e43c066c 3054 //if (c->GetQ()>2) c->Use();
3055 if (c->GetSigmaZ2()>0.1) c->Use();
3056
3057}
44347160 3058//------------------------------------------------------------------------
15dd636f 3059void AliITStrackerMI::AddTrackHypothesys(AliITStrackMI * track, Int_t esdindex)
e43c066c 3060{
3061 //------------------------------------------------------------------
3062 // add track to the list of hypothesys
3063 //------------------------------------------------------------------
3064
fddf8459 3065 if (esdindex>=fTrackHypothesys.GetEntriesFast())
3066 fTrackHypothesys.Expand(TMath::Max(fTrackHypothesys.GetSize(),esdindex*2+10));
e43c066c 3067 //
3068 TObjArray * array = (TObjArray*) fTrackHypothesys.At(esdindex);
3069 if (!array) {
3070 array = new TObjArray(10);
3071 fTrackHypothesys.AddAt(array,esdindex);
3072 }
3073 array->AddLast(track);
3074}
44347160 3075//------------------------------------------------------------------------
e43c066c 3076void AliITStrackerMI::SortTrackHypothesys(Int_t esdindex, Int_t maxcut, Int_t mode)
3077{
3078 //-------------------------------------------------------------------
3079 // compress array of track hypothesys
3080 // keep only maxsize best hypothesys
3081 //-------------------------------------------------------------------
3082 if (esdindex>fTrackHypothesys.GetEntriesFast()) return;
3083 if (! (fTrackHypothesys.At(esdindex)) ) return;
3084 TObjArray * array = (TObjArray*) fTrackHypothesys.At(esdindex);
3085 Int_t entries = array->GetEntriesFast();
3086 //
3087 //- find preliminary besttrack as a reference
3088 Float_t minchi2=10000;
3089 Int_t maxn=0;
15dd636f 3090 AliITStrackMI * besttrack=0;
e43c066c 3091 for (Int_t itrack=0;itrack<array->GetEntriesFast();itrack++){
15dd636f 3092 AliITStrackMI * track = (AliITStrackMI*)array->At(itrack);
e43c066c 3093 if (!track) continue;
3094 Float_t chi2 = NormalizedChi2(track,0);
3095 //
b9671574 3096 Int_t tpcLabel=track->GetESDtrack()->GetTPCLabel();
e43c066c 3097 track->SetLabel(tpcLabel);
3098 CookdEdx(track);
b9671574 3099 track->SetFakeRatio(1.);
e43c066c 3100 CookLabel(track,0.); //For comparison only
3101 //
44347160 3102 //if (chi2<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)&&track->fFakeRatio==0){
3103 if (chi2<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)){
e43c066c 3104 if (track->GetNumberOfClusters()<maxn) continue;
3105 maxn = track->GetNumberOfClusters();
3106 if (chi2<minchi2){
3107 minchi2=chi2;
3108 besttrack=track;
3109 }
3110 }
3111 else{
b9671574 3112 if (track->GetConstrain() || track->GetNumberOfClusters()>5){ //keep best short tracks - without vertex constrain
628e7bb0 3113 delete array->RemoveAt(itrack);
3114 }
e43c066c 3115 }
3116 }
3117 if (!besttrack) return;
3118 //
3119 //
3120 //take errors of best track as a reference
3121 Float_t *erry = GetErrY(esdindex), *errz = GetErrZ(esdindex);
3122 Float_t *ny = GetNy(esdindex), *nz = GetNz(esdindex);
a5d0fae6 3123 for (Int_t j=0;j<6;j++) {
3124 if (besttrack->GetClIndex(j)>0){
3125 erry[j] = besttrack->GetSigmaY(j); erry[j+6] = besttrack->GetSigmaY(j+6);
3126 errz[j] = besttrack->GetSigmaZ(j); errz[j+6] = besttrack->GetSigmaZ(j+6);
3127 ny[j] = besttrack->GetNy(j);
3128 nz[j] = besttrack->GetNz(j);
e43c066c 3129 }
3130 }
3131 //
3132 // calculate normalized chi2
3133 //
3134 Float_t * chi2 = new Float_t[entries];
3135 Int_t * index = new Int_t[entries];
3136 for (Int_t i=0;i<entries;i++) chi2[i] =10000;
3137 for (Int_t itrack=0;itrack<entries;itrack++){
15dd636f 3138 AliITStrackMI * track = (AliITStrackMI*)array->At(itrack);
e43c066c 3139 if (track){
b9671574 3140 track->SetChi2MIP(0,GetNormalizedChi2(track, mode));
44347160 3141 if (track->GetChi2MIP(0)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0))
b9671574 3142 chi2[itrack] = track->GetChi2MIP(0);
628e7bb0 3143 else{
b9671574 3144 if (track->GetConstrain() || track->GetNumberOfClusters()>5){ //keep best short tracks - without vertex constrain
628e7bb0 3145 delete array->RemoveAt(itrack);
3146 }
3147 }
e43c066c 3148 }
3149 }
3150 //
3151 TMath::Sort(entries,chi2,index,kFALSE);
15dd636f 3152 besttrack = (AliITStrackMI*)array->At(index[0]);
44347160 3153 if (besttrack&&besttrack->GetChi2MIP(0)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)){
a5d0fae6 3154 for (Int_t j=0;j<6;j++){
3155 if (besttrack->GetClIndex(j)>0){
3156 erry[j] = besttrack->GetSigmaY(j); erry[j+6] = besttrack->GetSigmaY(j+6);
3157 errz[j] = besttrack->GetSigmaZ(j); erry[j+6] = besttrack->GetSigmaY(j+6);
3158 ny[j] = besttrack->GetNy(j);
3159 nz[j] = besttrack->GetNz(j);
e43c066c 3160 }
3161 }
3162 }
3163 //
3164 // calculate one more time with updated normalized errors
3165 for (Int_t i=0;i<entries;i++) chi2[i] =10000;
3166 for (Int_t itrack=0;itrack<entries;itrack++){
15dd636f 3167 AliITStrackMI * track = (AliITStrackMI*)array->At(itrack);
e43c066c 3168 if (track){
b9671574 3169 track->SetChi2MIP(0,GetNormalizedChi2(track,mode));
44347160 3170 if (track->GetChi2MIP(0)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0))
b9671574 3171 chi2[itrack] = track->GetChi2MIP(0)-0*(track->GetNumberOfClusters()+track->GetNDeadZone());
628e7bb0 3172 else
3173 {
b9671574 3174 if (track->GetConstrain() || track->GetNumberOfClusters()>5){ //keep best short tracks - without vertex constrain
628e7bb0 3175 delete array->RemoveAt(itrack);
3176 }
3177 }
e43c066c 3178 }
3179 }
3180 entries = array->GetEntriesFast();
3181 //
628e7bb0 3182 //
e43c066c 3183 if (entries>0){
3184 TObjArray * newarray = new TObjArray();
3185 TMath::Sort(entries,chi2,index,kFALSE);
15dd636f 3186 besttrack = (AliITStrackMI*)array->At(index[0]);
e43c066c 3187 if (besttrack){
3188 //
a5d0fae6 3189 for (Int_t j=0;j<6;j++){
3190 if (besttrack->GetNz(j)>0&&besttrack->GetNy(j)>0){
3191 erry[j] = besttrack->GetSigmaY(j); erry[j+6] = besttrack->GetSigmaY(j+6);
3192 errz[j] = besttrack->GetSigmaZ(j); errz[j+6] = besttrack->GetSigmaZ(j+6);
3193 ny[j] = besttrack->GetNy(j);
3194 nz[j] = besttrack->GetNz(j);
e43c066c 3195 }
3196 }
b9671574 3197 besttrack->SetChi2MIP(0,GetNormalizedChi2(besttrack,mode));
a5d0fae6 3198 minchi2 = TMath::Min(besttrack->GetChi2MIP(0)+5.+besttrack->GetNUsed(), double(AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)));
e43c066c 3199 Float_t minn = besttrack->GetNumberOfClusters()-3;
3200 Int_t accepted=0;
3201 for (Int_t i=0;i<entries;i++){
15dd636f 3202 AliITStrackMI * track = (AliITStrackMI*)array->At(index[i]);
e43c066c 3203 if (!track) continue;
3204 if (accepted>maxcut) break;
b9671574 3205 track->SetChi2MIP(0,GetNormalizedChi2(track,mode));
3206 if (track->GetConstrain() || track->GetNumberOfClusters()>5){ //keep best short tracks - without vertex constrain
3207 if (track->GetNumberOfClusters()<6 && (track->GetChi2MIP(0)+track->GetNUsed()>minchi2)){
628e7bb0 3208 delete array->RemoveAt(index[i]);
3209 continue;
3210 }
e43c066c 3211 }
b9671574 3212 Bool_t shortbest = !track->GetConstrain() && track->GetNumberOfClusters()<6;
3213 if ((track->GetChi2MIP(0)+track->GetNUsed()<minchi2 && track->GetNumberOfClusters()>=minn) ||shortbest){
628e7bb0 3214 if (!shortbest) accepted++;
e43c066c 3215 //
3216 newarray->AddLast(array->RemoveAt(index[i]));
a5d0fae6 3217 for (Int_t j=0;j<6;j++){
3218 if (nz[j]==0){
3219 erry[j] = track->GetSigmaY(j); erry[j+6] = track->GetSigmaY(j+6);
3220 errz[j] = track->GetSigmaZ(j); errz[j] = track->GetSigmaZ(j+6);
3221 ny[j] = track->GetNy(j);
3222 nz[j] = track->GetNz(j);
e43c066c 3223 }
3224 }
3225 }
3226 else{
3227 delete array->RemoveAt(index[i]);
3228 }
3229 }
3230 array->Delete();
3231 delete fTrackHypothesys.RemoveAt(esdindex);
3232 fTrackHypothesys.AddAt(newarray,esdindex);
3233 }
3234 else{
3235 array->Delete();
3236 delete fTrackHypothesys.RemoveAt(esdindex);
3237 }
3238 }
3239 delete [] chi2;
3240 delete [] index;
3241}
44347160 3242//------------------------------------------------------------------------
15dd636f 3243AliITStrackMI * AliITStrackerMI::GetBestHypothesys(Int_t esdindex, AliITStrackMI * original, Int_t checkmax)
e43c066c 3244{
3245 //-------------------------------------------------------------
3246 // try to find best hypothesy
3247 // currently - minimal chi2 of track+backpropagated track+matching to the tpc track
3248 //-------------------------------------------------------------
3249 if (fTrackHypothesys.GetEntriesFast()<=esdindex) return 0;
3250 TObjArray * array = (TObjArray*) fTrackHypothesys.At(esdindex);
3251 if (!array) return 0;
3252 Int_t entries = array->GetEntriesFast();
3253 if (!entries) return 0;
3254 Float_t minchi2 = 100000;
15dd636f 3255 AliITStrackMI * besttrack=0;
e43c066c 3256 //
15dd636f 3257 AliITStrackMI * backtrack = new AliITStrackMI(*original);
3258 AliITStrackMI * forwardtrack = new AliITStrackMI(*original);
afd25725 3259 Double_t xyzVtx[]={GetX(),GetY(),GetZ()};
3260 Double_t ersVtx[]={GetSigmaX()/3.,GetSigmaY()/3.,GetSigmaZ()/3.};
e43c066c 3261 //
3262 for (Int_t i=0;i<entries;i++){
15dd636f 3263 AliITStrackMI * track = (AliITStrackMI*)array->At(i);
e43c066c 3264 if (!track) continue;
628e7bb0 3265 Float_t sigmarfi,sigmaz;
3266 GetDCASigma(track,sigmarfi,sigmaz);
b9671574 3267 track->SetDnorm(0,sigmarfi);
3268 track->SetDnorm(1,sigmaz);
628e7bb0 3269 //
b9671574 3270 track->SetChi2MIP(1,1000000);
3271 track->SetChi2MIP(2,1000000);
3272 track->SetChi2MIP(3,1000000);
e43c066c 3273 //
3274 // backtrack
15dd636f 3275 backtrack = new(backtrack) AliITStrackMI(*track);
afd25725 3276 if (track->GetConstrain()) {
e50912db 3277 if (!CorrectForPipeMaterial(backtrack,"inward")) continue;
afd25725 3278 if (!backtrack->Improve(0,xyzVtx,ersVtx)) continue;
6c94f330 3279 backtrack->ResetCovariance(10.);
628e7bb0 3280 }else{
6c94f330 3281 backtrack->ResetCovariance(10.);
628e7bb0 3282 }
e43c066c 3283 backtrack->ResetClusters();
628e7bb0 3284
e43c066c 3285 Double_t x = original->GetX();
3286 if (!RefitAt(x,backtrack,track)) continue;
628e7bb0 3287 //
b9671574 3288 track->SetChi2MIP(1,NormalizedChi2(backtrack,0));
e43c066c 3289 //for (Int_t i=2;i<6;i++){track->fDy[i]+=backtrack->fDy[i]; track->fDz[i]+=backtrack->fDz[i];}
44347160 3290 if (track->GetChi2MIP(1)>AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)*6.) continue;
b9671574 3291 track->SetChi22(GetMatchingChi2(backtrack,original));
e43c066c 3292
b9671574 3293 if ((track->GetConstrain()) && track->GetChi22()>90.) continue;
3294 if ((!track->GetConstrain()) && track->GetChi22()>30.) continue;
3295 if ( track->GetChi22()/track->GetNumberOfClusters()>11.) continue;
e43c066c 3296
3297
44347160 3298 if (!(track->GetConstrain())&&track->GetChi2MIP(1)>AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)) continue;
e43c066c 3299 //
3300 //forward track - without constraint
15dd636f 3301 forwardtrack = new(forwardtrack) AliITStrackMI(*original);
e43c066c 3302 forwardtrack->ResetClusters();
3303 x = track->GetX();
628e7bb0 3304 RefitAt(x,forwardtrack,track);
b9671574 3305 track->SetChi2MIP(2,NormalizedChi2(forwardtrack,0));
44347160 3306 if (track->GetChi2MIP(2)>AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)*6.0) continue;
3307 if (!(track->GetConstrain())&&track->GetChi2MIP(2)>AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)) continue;
e43c066c 3308
791f9a2a 3309 //track->fD[0] = forwardtrack->GetD(GetX(),GetY());
3310 //track->fD[1] = forwardtrack->GetZat(GetX())-GetZ();
b9671574 3311 forwardtrack->GetDZ(GetX(),GetY(),GetZ(),track->GetDP()); //I.B.
3312 forwardtrack->SetD(0,track->GetD(0));
3313 forwardtrack->SetD(1,track->GetD(1));
e43c066c 3314 {
3315 Int_t list[6];
00a7cc50 3316 AliITSRecPoint* clist[6];
b9671574 3317 track->SetChi2MIP(4,GetNumberOfSharedClusters(track,esdindex,list,clist));
3318 if ( (!track->GetConstrain()) && track->GetChi2MIP(4)>1.0) continue;
e43c066c 3319 }
3320
b9671574 3321 track->SetChi2MIP(3,GetInterpolatedChi2(forwardtrack,backtrack));
44347160 3322 if ( (track->GetChi2MIP(3)>6.*AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3))) continue;
3323 if ( (!track->GetConstrain()) && (track->GetChi2MIP(3)>2*AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3))) {
b9671574 3324 track->SetChi2MIP(3,1000);
e43c066c 3325 continue;
3326 }
b9671574 3327 Double_t chi2 = track->GetChi2MIP(0)+track->GetNUsed();
e43c066c 3328 //
3329 for (Int_t ichi=0;ichi<5;ichi++){
b9671574 3330 forwardtrack->SetChi2MIP(ichi, track->GetChi2MIP(ichi));
e43c066c 3331 }
3332 if (chi2 < minchi2){
15dd636f 3333 //besttrack = new AliITStrackMI(*forwardtrack);
99c2ee26 3334 besttrack = track;
e43c066c 3335 besttrack->SetLabel(track->GetLabel());
b9671574 3336 besttrack->SetFakeRatio(track->GetFakeRatio());
e43c066c 3337 minchi2 = chi2;
791f9a2a 3338 //original->fD[0] = forwardtrack->GetD(GetX(),GetY());
3339 //original->fD[1] = forwardtrack->GetZat(GetX())-GetZ();
b9671574 3340 forwardtrack->GetDZ(GetX(),GetY(),GetZ(),original->GetDP()); //I.B.
e43c066c 3341 }
3342 }
3343 delete backtrack;
3344 delete forwardtrack;
3345 Int_t accepted=0;
3346 for (Int_t i=0;i<entries;i++){
fddf8459 3347 AliITStrackMI * track = (AliITStrackMI*)array->At(i);
3348
e43c066c 3349 if (!track) continue;
628e7bb0 3350
44347160 3351 if (accepted>checkmax || track->GetChi2MIP(3)>AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3)*6. ||
e43c066c 3352 (track->GetNumberOfClusters()<besttrack->GetNumberOfClusters()-1.)||
b9671574 3353 track->GetChi2MIP(0)>besttrack->GetChi2MIP(0)+2.*besttrack->GetNUsed()+3.){
3354 if (track->GetConstrain() || track->GetNumberOfClusters()>5){ //keep best short tracks - without vertex constrain
628e7bb0 3355 delete array->RemoveAt(i);
3356 continue;
3357 }
e43c066c 3358 }
3359 else{
3360 accepted++;
3361 }
3362 }
3363 //
3364 array->Compress();
3365 SortTrackHypothesys(esdindex,checkmax,1);
fddf8459 3366
e43c066c 3367 array = (TObjArray*) fTrackHypothesys.At(esdindex);
afdf9b9c 3368 if (!array) return 0; // PH What can be the reason? Check SortTrackHypothesys
15dd636f 3369 besttrack = (AliITStrackMI*)array->At(0);
e43c066c 3370 if (!besttrack) return 0;
b9671574 3371 besttrack->SetChi2MIP(8,0);
e43c066c 3372 fBestTrackIndex[esdindex]=0;
3373 entries = array->GetEntriesFast();
15dd636f 3374 AliITStrackMI *longtrack =0;
e43c066c 3375 minchi2 =1000;
b9671574 3376 Float_t minn=besttrack->GetNumberOfClusters()+besttrack->GetNDeadZone();
6518a6c5 3377 for (Int_t itrack=entries-1;itrack>0;itrack--) {
15dd636f 3378 AliITStrackMI * track = (AliITStrackMI*)array->At(itrack);
b9671574 3379 if (!track->GetConstrain()) continue;
3380 if (track->GetNumberOfClusters()+track->GetNDeadZone()<minn) continue;
3381 if (track->GetChi2MIP(0)-besttrack->GetChi2MIP(0)>0.0) continue;
3382 if (track->GetChi2MIP(0)>4.) continue;
3383 minn = track->GetNumberOfClusters()+track->GetNDeadZone();
e43c066c 3384 longtrack =track;
3385 }
3386 //if (longtrack) besttrack=longtrack;
3387
3388 Int_t list[6];
00a7cc50 3389 AliITSRecPoint * clist[6];
e43c066c 3390 Float_t shared = GetNumberOfSharedClusters(besttrack,esdindex,list,clist);
44347160 3391 if (besttrack->GetConstrain()&&besttrack->GetChi2MIP(0)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(0)&&besttrack->GetChi2MIP(1)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(1)
3392 &&besttrack->GetChi2MIP(2)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(2)&&besttrack->GetChi2MIP(3)<AliITSReconstructor::GetRecoParam()->GetMaxChi2PerCluster(3)){
e43c066c 3393 RegisterClusterTracks(besttrack,esdindex);
3394 }
3395 //
3396 //
3397 if (shared>0.0){
3398 Int_t nshared;
3399 Int_t overlist[6];
3400 Int_t sharedtrack = GetOverlapTrack(besttrack, esdindex, nshared, list, overlist);
3401 if (sharedtrack>=0){
3402 //
3403 besttrack = GetBest2Tracks(esdindex,sharedtrack,10,5.5);
3404 if (besttrack){
3405 shared = GetNumberOfSharedClusters(besttrack,esdindex,list,clist);
3406 }
3407 else return 0;
3408 }
3409 }
3410
3411 if (shared>2.5) return 0;
3412 if (shared>1.0) return besttrack;
3413 //
628e7bb0 3414 // Don't sign clusters if not gold track
3415 //
3416 if (!besttrack->IsGoldPrimary()) return besttrack;
b9671574 3417 if (besttrack->GetESDtrack()->GetKinkIndex(0)!=0) return besttrack; //track belong to kink
628e7bb0 3418 //
e43c066c 3419 if (fConstraint[fPass]){
3420 //
3421 // sign clusters
3422 //
3423 Float_t *ny = GetNy(esdindex), *nz = GetNz(esdindex);
3424 for (Int_t i=0;i<6;i++){
b9671574 3425 Int_t index = besttrack->GetClIndex(i);
e43c066c 3426 if (index<=0) continue;
3427 Int_t ilayer = (index & 0xf0000000) >> 28;
b9671574 3428 if (besttrack->GetSigmaY(ilayer)<0.00000000001) continue;
00a7cc50 3429 AliITSRecPoint *c = (AliITSRecPoint*)GetCluster(index);
e43c066c 3430 if (!c) continue;
3431 if (ilayer>3&&c->GetNy()+c->GetNz()>6) continue;
3432 if ( (c->GetNy()+c->GetNz() )> ny[i]+nz[i]+0.7) continue; //shared track
3433 if ( c->GetNz()> nz[i]+0.7) continue; //shared track
572f41f9 3434 if ( ilayer>2&& AliITSReconstructor::GetRecoParam()->GetUseAmplitudeInfo(ilayer))
3435 if (besttrack->GetNormQ(ilayer)/besttrack->GetExpQ()>1.5) continue;
e43c066c 3436 //if ( c->GetNy()> ny[i]+0.7) continue; //shared track
3437
3438 Bool_t cansign = kTRUE;
3439 for (Int_t itrack=0;itrack<entries; itrack++){
15dd636f 3440 AliITStrackMI * track = (AliITStrackMI*)array->At(i);
e43c066c 3441 if (!track) continue;
b9671574 3442 if (track->GetChi2MIP(0)>besttrack->GetChi2MIP(0)+2.*shared+1.) break;
3443 if ( (track->GetClIndex(ilayer)>0) && (track->GetClIndex(ilayer)!=besttrack->GetClIndex(ilayer))){
e43c066c 3444 cansign = kFALSE;
3445 break;
3446 }
3447 }
3448 if (cansign){
b9671574 3449 if (TMath::Abs(besttrack->GetDy(ilayer)/besttrack->GetSigmaY(ilayer))>3.) continue;
3450 if (TMath::Abs(besttrack->GetDz(ilayer)/besttrack->GetSigmaZ(ilayer))>3.) continue;
e43c066c 3451 if (!c->IsUsed()) c->Use();
3452 }
3453 }
3454 }
3455 return besttrack;
3456}
44347160 3457//------------------------------------------------------------------------
e43c066c 3458void AliITStrackerMI::GetBestHypothesysMIP(TObjArray &itsTracks)
3459{
3460 //
3461 // get "best" hypothesys
628e7bb0 3462 //
e43c066c 3463
3464 Int_t nentries = itsTracks.GetEntriesFast();
3465 for (Int_t i=0;i<nentries;i++){
15dd636f 3466 AliITStrackMI* track = (AliITStrackMI*)itsTracks.At(i);
e43c066c 3467 if (!track) continue;
3468 TObjArray * array = (TObjArray*) fTrackHypothesys.At(i);
3469 if (!array) continue;
3470 if (array->GetEntriesFast()<=0) continue;
3471 //
15dd636f 3472 AliITStrackMI* longtrack=0;
e43c066c 3473 Float_t minn=0;
3474 Float_t maxchi2=1000;
3475 for (Int_t j=0;j<array->GetEntriesFast();j++){
a5d0fae6 3476 AliITStrackMI* trackHyp = (AliITStrackMI*)array->At(j);
3477 if (!trackHyp) continue;
3478 if (trackHyp->GetGoldV0()) {
3479 longtrack = trackHyp; //gold V0 track taken
628e7bb0 3480 break;
3481 }
a5d0fae6 3482 if (trackHyp->GetNumberOfClusters()+trackHyp->GetNDeadZone()<minn) continue;
3483 Float_t chi2 = trackHyp->GetChi2MIP(0);
628e7bb0 3484 if (fAfterV0){
a5d0fae6 3485 if (!trackHyp->GetGoldV0()&&trackHyp->GetConstrain()==kFALSE) chi2+=5;
628e7bb0 3486 }
a5d0fae6 3487 if (trackHyp->GetNumberOfClusters()+trackHyp->GetNDeadZone()>minn) maxchi2 = trackHyp->GetChi2MIP(0);
628e7bb0 3488 //
3489 if (chi2 > maxchi2) continue;
a5d0fae6 3490 minn= trackHyp->GetNumberOfClusters()+trackHyp->GetNDeadZone();
628e7bb0 3491 maxchi2 = chi2;
a5d0fae6 3492 longtrack=trackHyp;
e43c066c 3493 }
628e7bb0 3494 //
3495 //
3496 //
15dd636f 3497 AliITStrackMI * besttrack = (AliITStrackMI*)array->At(0);
e43c066c 3498 if (!longtrack) {longtrack = besttrack;}
3499 else besttrack= longtrack;
628e7bb0 3500 //
afd25725 3501 if (besttrack) {
e43c066c 3502 Int_t list[6];
00a7cc50 3503 AliITSRecPoint * clist[6];
e43c066c 3504 Float_t shared = GetNumberOfSharedClusters(longtrack,i,list,clist);
3505 //
b9671574 3506 track->SetNUsed(shared);
3507 track->SetNSkipped(besttrack->GetNSkipped());
3508 track->SetChi2MIP(0,besttrack->GetChi2MIP(0));
afd25725 3509 if (shared>0) {
3510 if(!AliITSReconstructor::GetRecoParam()->GetAllowSharedClusters()) continue;
e43c066c 3511 Int_t nshared;
3512 Int_t overlist[6];
3513 //
3514 Int_t sharedtrack = GetOverlapTrack(longtrack, i, nshared, list, overlist);
3515 //if (sharedtrack==-1) sharedtrack=0;
afd25725 3516 if (sharedtrack>=0) {
e43c066c 3517 besttrack = GetBest2Tracks(i,sharedtrack,10,5.5);
3518 }
3519 }
afd25725 3520 if (besttrack&&fAfterV0) {
628e7bb0 3521 UpdateESDtrack(besttrack,AliESDtrack::kITSin);
3522 }
e43c066c 3523 if (besttrack&&fConstraint[fPass])
3524 UpdateESDtrack(besttrack,AliESDtrack::kITSin);
afd25725 3525 if (besttrack->GetChi2MIP(0)+besttrack->GetNUsed()>1.5 && fConstraint[fPass]) {
3526 if ( TMath::Abs(besttrack->GetD(0))>0.1 ||
3527 TMath::Abs(besttrack->GetD(1))>0.1 ) track->SetReconstructed(kFALSE);
e43c066c 3528 }
3529
3530 }
3531 }
3532}
44347160 3533//------------------------------------------------------------------------
15dd636f 3534void AliITStrackerMI::CookLabel(AliITStrackMI *track,Float_t wrong) const {
e43c066c 3535 //--------------------------------------------------------------------
3536 //This function "cooks" a track label. If label<0, this track is fake.
3537 //--------------------------------------------------------------------
3538 Int_t tpcLabel=-1;
3539
b9671574 3540 if ( track->GetESDtrack()) tpcLabel = TMath::Abs(track->GetESDtrack()->GetTPCLabel());
e43c066c 3541
b9671574 3542 track->SetChi2MIP(9,0);
e43c066c 3543 Int_t nwrong=0;
3544 for (Int_t i=0;i<track->GetNumberOfClusters();i++){
3545 Int_t cindex = track->GetClusterIndex(i);
3546 Int_t l=(cindex & 0xf0000000) >> 28;
00a7cc50 3547 AliITSRecPoint *cl = (AliITSRecPoint*)GetCluster(cindex);
e43c066c 3548 Int_t isWrong=1;
3549 for (Int_t ind=0;ind<3;ind++){
3550 if (tpcLabel>0)
3551 if (cl->GetLabel(ind)==tpcLabel) isWrong=0;
9be1d1c7 3552 AliDebug(2,Form("icl %d ilab %d lab %d",i,ind,cl->GetLabel(ind)));
e43c066c 3553 }
b9671574 3554 track->SetChi2MIP(9,track->GetChi2MIP(9)+isWrong*(2<<l));
e43c066c 3555 nwrong+=isWrong;
3556 }
7d43b4c4 3557 Int_t nclusters = track->GetNumberOfClusters();
3558 if (nclusters > 0) //PH Some tracks don't have any cluster
3559 track->SetFakeRatio(double(nwrong)/double(nclusters));
e43c066c 3560 if (tpcLabel>0){
b9671574 3561 if (track->GetFakeRatio()>wrong) track->SetLabel(-tpcLabel);
e43c066c 3562 else
b9671574 3563 track->SetLabel(tpcLabel);
e43c066c 3564 }
9be1d1c7 3565 AliDebug(2,Form(" nls %d wrong %d label %d tpcLabel %d\n",nclusters,nwrong,track->GetLabel(),tpcLabel));
e43c066c 3566
3567}
44347160 3568//------------------------------------------------------------------------
15dd636f 3569void AliITStrackerMI::CookdEdx(AliITStrackMI* track)
e43c066c 3570{
3571 //
3572 //
3573 // Int_t list[6];
00a7cc50 3574 //AliITSRecPoint * clist[6];
e43c066c 3575 // Int_t shared = GetNumberOfSharedClusters(track,index,list,clist);
3576 Float_t dedx[4];
3577 Int_t accepted=0;
b9671574 3578 track->SetChi2MIP(9,0);
e43c066c 3579 for (Int_t i=0;i<track->GetNumberOfClusters();i++){
3580 Int_t cindex = track->GetClusterIndex(i);
3581 Int_t l=(cindex & 0xf0000000) >> 28;
00a7cc50 3582 AliITSRecPoint *cl = (AliITSRecPoint*)GetCluster(cindex);
b9671574 3583 Int_t lab = TMath::Abs(track->GetESDtrack()->GetTPCLabel());
e43c066c 3584 Int_t isWrong=1;
3585 for (Int_t ind=0;ind<3;ind++){
3586 if (cl->GetLabel(ind)==lab) isWrong=0;
3587 }
b9671574 3588 track->SetChi2MIP(9,track->GetChi2MIP(9)+isWrong*(2<<l));
e43c066c 3589 if (l<2) continue;
3590 //if (l>3 && (cl->GetNy()>4) || (cl->GetNz()>4)) continue; //shared track
3591 //if (l>3&& !(cl->GetType()==1||cl->GetType()==10)) continue;
3592 //if (l<4&& !(cl->GetType()==1)) continue;
b9671574 3593 dedx[accepted]= track->GetSampledEdx(i);
e43c066c 3594 //dedx[accepted]= track->fNormQ[l];
3595 accepted++;
3596 }
3597 if (accepted<1) {
3598 track->SetdEdx(0);
3599 return;
3600 }
3601 Int_t indexes[4];
3602 TMath::Sort(accepted,dedx,indexes,kFALSE);
3603 Double_t low=0.;
3604 Double_t up=0.51;
3605 Double_t nl=low*accepted, nu =up*accepted;
3606 Float_t sumamp = 0;
3607 Float_t sumweight =0;
3608 for (Int_t i=0; i<accepted; i++) {
3609 Float_t weight =1;
3610 if (i<nl+0.1) weight = TMath::Max(1.-(nl-i),0.);
3611 if (i>nu-1) weight = TMath::Max(nu-i,0.);
3612 sumamp+= dedx[indexes[i]]*weight;
3613 sumweight+=weight;
3614 }
3615 track->SetdEdx(sumamp/sumweight);
3616}
44347160 3617//------------------------------------------------------------------------
e50912db 3618void AliITStrackerMI::MakeCoefficients(Int_t ntracks){
e43c066c 3619 //
3620 //
afd25725 3621 if (fCoefficients) delete []fCoefficients;
3622 fCoefficients = new Float_t[ntracks*48];
3623 for (Int_t i=0;i<ntracks*48;i++) fCoefficients[i]=-1.;
e43c066c 3624}
44347160 3625//------------------------------------------------------------------------
00a7cc50 3626Double_t AliITStrackerMI::GetPredictedChi2MI(AliITStrackMI* track, const AliITSRecPoint *cluster,Int_t layer)
e43c066c 3627{
3628 //
3629 //
3630 //
3631 Float_t erry,errz;
3632 Float_t theta = track->GetTgl();
3633 Float_t phi = track->GetSnp();
3634 phi = TMath::Sqrt(phi*phi/(1.-phi*phi));
e50912db 3635 AliITSClusterParam::GetError(layer,cluster,theta,phi,track->GetExpQ(),erry,errz);
4187a601 3636 AliDebug(2,Form(" chi2: tr-cl %f %f tr X %f cl X %f",track->GetY()-cluster->GetY(),track->GetZ()-cluster->GetZ(),track->GetX(),cluster->GetX()));
1c97ce2f 3637 // Take into account the mis-alignment (bring track to cluster plane)
3638 Double_t xTrOrig=track->GetX();
9be1d1c7 3639 if (!track->Propagate(xTrOrig+cluster->GetX())) return 1000.;
4187a601 3640 AliDebug(2,Form(" chi2: tr-cl %f %f tr X %f cl X %f",track->GetY()-cluster->GetY(),track->GetZ()-cluster->GetZ(),track->GetX(),cluster->GetX()));
e43c066c 3641 Double_t chi2 = track->GetPredictedChi2MI(cluster->GetY(),cluster->GetZ(),erry,errz);
1c97ce2f 3642 // Bring the track back to detector plane in ideal geometry
3643 // [mis-alignment will be accounted for in UpdateMI()]
9be1d1c7 3644 if (!track->Propagate(xTrOrig)) return 1000.;
e43c066c 3645 Float_t ny,nz;
e50912db 3646 AliITSClusterParam::GetNTeor(layer,cluster,theta,phi,ny,nz);
e43c066c 3647 Double_t delta = cluster->GetNy()+cluster->GetNz()-nz-ny;
3648 if (delta>1){
3649 chi2+=0.5*TMath::Min(delta/2,2.);
3650 chi2+=2.*cluster->GetDeltaProbability();
3651 }
3652 //
b9671574 3653 track->SetNy(layer,ny);
3654 track->SetNz(layer,nz);
3655 track->SetSigmaY(layer,erry);
3656 track->SetSigmaZ(layer, errz);
e43c066c 3657 //track->fNormQ[layer] = cluster->GetQ()/TMath::Sqrt(1+theta*theta+phi*phi);
b9671574 3658 track->SetNormQ(layer,cluster->GetQ()/TMath::Sqrt((1.+ track->GetTgl()*track->GetTgl())/(1.- track->GetSnp()*track->GetSnp())));
e43c066c 3659 return chi2;
3660
3661}
e50912db 3662//------------------------------------------------------------------------
3663Int_t AliITStrackerMI::UpdateMI(AliITStrackMI* track, const AliITSRecPoint* cl,Double_t chi2,Int_t index) const
e43c066c 3664{
3665 //
3666 //
3667 //
3668 Int_t layer = (index & 0xf0000000) >> 28;
b9671574 3669 track->SetClIndex(layer, index);
572f41f9 3670 if (layer>1&&AliITSReconstructor::GetRecoParam()->GetUseAmplitudeInfo(layer)) {
3671 if (track->GetNormQ(layer)/track->GetExpQ()<0.5 ) {
3672 chi2+= (0.5-track->GetNormQ(layer)/track->GetExpQ())*10.;
3673 track->SetdEdxMismatch(track->GetdEdxMismatch()+(0.5-track->GetNormQ(layer)/track->GetExpQ())*10.);
3674 }
e43c066c 3675 }
a504d56f 3676
1f3e997f 3677 if (cl->GetQ()<=0) return 0; // ingore the "virtual" clusters
a504d56f 3678
afd25725 3679
1c97ce2f 3680 // Take into account the mis-alignment (bring track to cluster plane)
3681 Double_t xTrOrig=track->GetX();
4187a601 3682 Float_t clxyz[3]; cl->GetGlobalXYZ(clxyz);Double_t trxyz[3]; track->GetXYZ(trxyz);
3683 AliDebug(2,Form("gtr %f %f %f",trxyz[0],trxyz[1],trxyz[2]));
3684 AliDebug(2,Form("gcl %f %f %f",clxyz[0],clxyz[1],clxyz[2]));
3685 AliDebug(2,Form(" xtr %f xcl %f",track->GetX(),cl->GetX()));
fddf8459 3686
9be1d1c7 3687 if (!track->Propagate(xTrOrig+cl->GetX())) return 0;
fddf8459 3688
1f3e997f 3689
150f264c 3690 AliCluster c(*cl);
3691 c.SetSigmaY2(track->GetSigmaY(layer)*track->GetSigmaY(layer));
3692 c.SetSigmaZ2(track->GetSigmaZ(layer)*track->GetSigmaZ(layer));
3693
1c97ce2f 3694
3695 Int_t updated = track->UpdateMI(&c,chi2,index);
3696
3697 // Bring the track back to detector plane in ideal geometry
9be1d1c7 3698 if (!track->Propagate(xTrOrig)) return 0;
1c97ce2f 3699
4187a601 3700 if(!updated) AliDebug(2,"update failed");
1c97ce2f 3701 return updated;
e43c066c 3702}
150f264c 3703
44347160 3704//------------------------------------------------------------------------
e50912db 3705void AliITStrackerMI::GetDCASigma(AliITStrackMI* track, Float_t & sigmarfi, Float_t &sigmaz)
628e7bb0 3706{
3707 //
3708 //DCA sigmas parameterization
3709 //to be paramterized using external parameters in future
3710 //
3711 //
afd25725 3712 sigmarfi = 0.0040+1.4 *TMath::Abs(track->GetC())+332.*track->GetC()*track->GetC();
3713 sigmaz = 0.0110+4.37*TMath::Abs(track->GetC());
628e7bb0 3714}
e50912db 3715//------------------------------------------------------------------------
e43c066c 3716void AliITStrackerMI::SignDeltas( TObjArray *ClusterArray, Float_t vz)
3717{
3718 //
3719 //
3720 Int_t entries = ClusterArray->GetEntriesFast();
3721 if (entries<4) return;
00a7cc50 3722 AliITSRecPoint* cluster = (AliITSRecPoint*)ClusterArray->At(0);
e43c066c 3723 Int_t layer = cluster->GetLayer();
3724 if (layer>1) return;
3725 Int_t index[10000];
3726 Int_t ncandidates=0;
3727 Float_t r = (layer>0)? 7:4;
3728 //
3729 for (Int_t i=0;i<entries;i++){
00a7cc50 3730 AliITSRecPoint* cl0 = (AliITSRecPoint*)ClusterArray->At(i);
e43c066c 3731 Float_t nz = 1+TMath::Abs((cl0->GetZ()-vz)/r);
3732 if (cl0->GetNy()+cl0->GetNz()<=5+2*layer+nz) continue;
3733 index[ncandidates] = i; //candidate to belong to delta electron track
3734 ncandidates++;
3735 if (cl0->GetNy()+cl0->GetNz()>9+2*layer+nz) {
3736 cl0->SetDeltaProbability(1);
3737 }
3738 }
3739 //
3740 //
3741 //
3742 for (Int_t i=0;i<ncandidates;i++){
00a7cc50 3743 AliITSRecPoint* cl0 = (AliITSRecPoint*)ClusterArray->At(index[i]);
e43c066c 3744 if (cl0->GetDeltaProbability()>0.8) continue;
3745 //
3746 Int_t ncl = 0;
3747 Float_t y[100],z[100],sumy,sumz,sumy2, sumyz, sumw;
3748 sumy=sumz=sumy2=sumyz=sumw=0.0;
3749 for (Int_t j=0;j<ncandidates;j++){
3750 if (i==j) continue;
00a7cc50 3751 AliITSRecPoint* cl1 = (AliITSRecPoint*)ClusterArray->At(index[j]);
e43c066c 3752 //
3753 Float_t dz = cl0->GetZ()-cl1->GetZ();
3754 Float_t dy = cl0->GetY()-cl1->GetY();
3755 if (TMath::Sqrt(dz*dz+dy*dy)<0.2){
3756 Float_t weight = cl1->GetNy()+cl1->GetNz()-2;
3757 y[ncl] = cl1->GetY();
3758 z[ncl] = cl1->GetZ();
3759 sumy+= y[ncl]*weight;
3760 sumz+= z[ncl]*weight;
3761 sumy2+=y[ncl]*y[ncl]*weight;
3762 sumyz+=y[ncl]*z[ncl]*weight;
3763 sumw+=weight;
3764 ncl++;
3765 }
3766 }
3767 if (ncl<4) continue;
3768 Float_t det = sumw*sumy2 - sumy*sumy;
3769 Float_t delta=1000;
3770 if (TMath::Abs(det)>0.01){
3771 Float_t z0 = (sumy2*sumz - sumy*sumyz)/det;
3772 Float_t k = (sumyz*sumw - sumy*sumz)/det;
3773 delta = TMath::Abs(cl0->GetZ()-(z0+k*cl0->GetY()));
3774 }
3775 else{
3776 Float_t z0 = sumyz/sumy;
3777 delta = TMath::Abs(cl0->GetZ()-z0);
3778 }
3779 if ( delta<0.05) {
3780 cl0->SetDeltaProbability(1-20.*delta);
3781 }
3782 }
3783}
44347160 3784//------------------------------------------------------------------------
15dd636f 3785void AliITStrackerMI::UpdateESDtrack(AliITStrackMI* track, ULong_t flags) const
e43c066c 3786{
3787 //
3788 //
3789 track->UpdateESDtrack(flags);
b9671574 3790 AliITStrackMI * oldtrack = (AliITStrackMI*)(track->GetESDtrack()->GetITStrack());
99c2ee26 3791 if (oldtrack) delete oldtrack;
b9671574 3792 track->GetESDtrack()->SetITStrack(new AliITStrackMI(*track));
3793 if (TMath::Abs(track->GetDnorm(1))<0.000000001){
628e7bb0 3794 printf("Problem\n");
3795 }
e43c066c 3796}
44347160 3797//------------------------------------------------------------------------
81e97e0d 3798Int_t AliITStrackerMI::GetNearestLayer(const Double_t *xr) const{
3799 //
ae00569a 3800 // Get nearest upper layer close to the point xr.
81e97e0d 3801 // rough approximation
3802 //
bf6adc12 3803 const Float_t kRadiuses[6]={4,6.5,15.03,24.,38.5,43.7};
81e97e0d 3804 Float_t radius = TMath::Sqrt(xr[0]*xr[0]+xr[1]*xr[1]);
3805 Int_t res =6;
3806 for (Int_t i=0;i<6;i++){
bf6adc12 3807 if (radius<kRadiuses[i]){
81e97e0d 3808 res =i;
3809 break;
3810 }
3811 }
3812 return res;
3813}
44347160 3814//------------------------------------------------------------------------
af885e0f 3815void AliITStrackerMI::UpdateTPCV0(AliESDEvent *event){
81e97e0d 3816 //
3817 //try to update, or reject TPC V0s
3818 //
d6a49f20 3819 Int_t nv0s = event->GetNumberOfV0s();
81e97e0d 3820 Int_t nitstracks = fTrackHypothesys.GetEntriesFast();
51ad6848 3821
81e97e0d 3822 for (Int_t i=0;i<nv0s;i++){
d6a49f20 3823 AliESDv0 * vertex = event->GetV0(i);
81e97e0d 3824 Int_t ip = vertex->GetIndex(0);
3825 Int_t im = vertex->GetIndex(1);
3826 //
3827 TObjArray * arrayp = (ip<nitstracks) ? (TObjArray*)fTrackHypothesys.At(ip):0;
3828 TObjArray * arraym = (im<nitstracks) ? (TObjArray*)fTrackHypothesys.At(im):0;
3829 AliITStrackMI * trackp = (arrayp!=0) ? (AliITStrackMI*)arrayp->At(0):0;
3830 AliITStrackMI * trackm = (arraym!=0) ? (AliITStrackMI*)arraym->At(0):0;
3831 //
3832 //
3833 if (trackp){
b9671574 3834 if (trackp->GetNumberOfClusters()+trackp->GetNDeadZone()>5.5){
3835 if (trackp->GetConstrain()&&trackp->GetChi2MIP(0)<3) vertex->SetStatus(-100);
3836 if (!trackp->GetConstrain()&&trackp->GetChi2MIP(0)<2) vertex->SetStatus(-100);
81e97e0d 3837 }
3838 }
51ad6848 3839
81e97e0d 3840 if (trackm){
b9671574 3841 if (trackm->GetNumberOfClusters()+trackm->GetNDeadZone()>5.5){
3842 if (trackm->GetConstrain()&&trackm->GetChi2MIP(0)<3) vertex->SetStatus(-100);
3843 if (!trackm->GetConstrain()&&trackm->GetChi2MIP(0)<2) vertex->SetStatus(-100);
81e97e0d 3844 }
3845 }
3846 if (vertex->GetStatus()==-100) continue;
3847 //
b75d63a7 3848 Double_t xrp[3]; vertex->GetXYZ(xrp[0],xrp[1],xrp[2]); //I.B.
3849 Int_t clayer = GetNearestLayer(xrp); //I.B.
81e97e0d 3850 vertex->SetNBefore(clayer); //
3851 vertex->SetChi2Before(9*clayer); //
3852 vertex->SetNAfter(6-clayer); //
3853 vertex->SetChi2After(0); //
3854 //
3855 if (clayer >1 ){ // calculate chi2 before vertex
3856 Float_t chi2p = 0, chi2m=0;
3857 //
3858 if (trackp){
3859 for (Int_t ilayer=0;ilayer<clayer;ilayer++){
b9671574 3860 if (trackp->GetClIndex(ilayer)>0){
3861 chi2p+=trackp->GetDy(ilayer)*trackp->GetDy(ilayer)/(trackp->GetSigmaY(ilayer)*trackp->GetSigmaY(ilayer))+
3862 trackp->GetDz(ilayer)*trackp->GetDz(ilayer)/(trackp->GetSigmaZ(ilayer)*trackp->GetSigmaZ(ilayer));
81e97e0d 3863 }
3864 else{
3865 chi2p+=9;
3866 }
3867 }
3868 }else{
3869 chi2p = 9*clayer;
3870 }
3871 //
3872 if (trackm){
3873 for (Int_t ilayer=0;ilayer<clayer;ilayer++){
b9671574 3874 if (trackm->GetClIndex(ilayer)>0){
3875 chi2m+=trackm->GetDy(ilayer)*trackm->GetDy(ilayer)/(trackm->GetSigmaY(ilayer)*trackm->GetSigmaY(ilayer))+
3876 trackm->GetDz(ilayer)*trackm->GetDz(ilayer)/(trackm->GetSigmaZ(ilayer)*trackm->GetSigmaZ(ilayer));
81e97e0d 3877 }
3878 else{
3879 chi2m+=9;
3880 }
3881 }
3882 }else{
3883 chi2m = 9*clayer;
3884 }
3885 vertex->SetChi2Before(TMath::Min(chi2p,chi2m));
3886 if (TMath::Min(chi2p,chi2m)/Float_t(clayer)<4) vertex->SetStatus(-10); // track exist before vertex
3887 }
3888
3889 if (clayer < 5 ){ // calculate chi2 after vertex
3890 Float_t chi2p = 0, chi2m=0;
3891 //
6c94f330 3892 if (trackp&&TMath::Abs(trackp->GetTgl())<1.){
81e97e0d 3893 for (Int_t ilayer=clayer;ilayer<6;ilayer++){
b9671574 3894 if (trackp->GetClIndex(ilayer)>0){
3895 chi2p+=trackp->GetDy(ilayer)*trackp->GetDy(ilayer)/(trackp->GetSigmaY(ilayer)*trackp->GetSigmaY(ilayer))+
3896 trackp->GetDz(ilayer)*trackp->GetDz(ilayer)/(trackp->GetSigmaZ(ilayer)*trackp->GetSigmaZ(ilayer));
81e97e0d 3897 }
3898 else{
3899 chi2p+=9;
3900 }
3901 }
3902 }else{
3903 chi2p = 0;
3904 }
3905 //
6c94f330 3906 if (trackm&&TMath::Abs(trackm->GetTgl())<1.){
81e97e0d 3907 for (Int_t ilayer=clayer;ilayer<6;ilayer++){
b9671574 3908 if (trackm->GetClIndex(ilayer)>0){
3909 chi2m+=trackm->GetDy(ilayer)*trackm->GetDy(ilayer)/(trackm->GetSigmaY(ilayer)*trackm->GetSigmaY(ilayer))+
3910 trackm->GetDz(ilayer)*trackm->GetDz(ilayer)/(trackm->GetSigmaZ(ilayer)*trackm->GetSigmaZ(ilayer));
81e97e0d 3911 }
3912 else{
3913 chi2m+=9;
3914 }
3915 }
3916 }else{
3917 chi2m = 0;
3918 }
3919 vertex->SetChi2After(TMath::Max(chi2p,chi2m));
3920 if (TMath::Max(chi2m,chi2p)/Float_t(6-clayer)>9) vertex->SetStatus(-20); // track not found in ITS
3921 }
3922 }
3923 //
3924}
44347160 3925//------------------------------------------------------------------------
e50912db 3926void AliITStrackerMI::FindV02(AliESDEvent *event)
e43c066c 3927{
3928 //
81e97e0d 3929 // V0 finder
3930 //
3931 // Cuts on DCA - R dependent
3932 // max distance DCA between 2 tracks cut
3933 // maxDist = TMath::Min(kMaxDist,kMaxDist0+pvertex->GetRr()*kMaxDist);
3934 //
3935 const Float_t kMaxDist0 = 0.1;
3936 const Float_t kMaxDist1 = 0.1;
3937 const Float_t kMaxDist = 1;
3938 const Float_t kMinPointAngle = 0.85;
3939 const Float_t kMinPointAngle2 = 0.99;
3940 const Float_t kMinR = 0.5;
3941 const Float_t kMaxR = 220;
3942 //const Float_t kCausality0Cut = 0.19;
3943 //const Float_t kLikelihood01Cut = 0.25;
3944 //const Float_t kPointAngleCut = 0.9996;
3945 const Float_t kCausality0Cut = 0.19;
3946 const Float_t kLikelihood01Cut = 0.45;
3947 const Float_t kLikelihood1Cut = 0.5;
3948 const Float_t kCombinedCut = 0.55;
3949
3950 //
3951 //
3952 TTreeSRedirector &cstream = *fDebugStreamer;
3953 Int_t ntracks = event->GetNumberOfTracks();
3954 Int_t nitstracks = fTrackHypothesys.GetEntriesFast();
3955 fOriginal.Expand(ntracks);
3956 fTrackHypothesys.Expand(ntracks);
3957 fBestHypothesys.Expand(ntracks);
3958 //
3959 AliHelix * helixes = new AliHelix[ntracks+2];
3960 TObjArray trackarray(ntracks+2); //array with tracks - with vertex constrain
3961 TObjArray trackarrayc(ntracks+2); //array of "best tracks" - without vertex constrain
3962 TObjArray trackarrayl(ntracks+2); //array of "longest tracks" - without vertex constrain
3963 Bool_t * forbidden = new Bool_t [ntracks+2];
3964 Int_t *itsmap = new Int_t [ntracks+2];
3965 Float_t *dist = new Float_t[ntracks+2];
3966 Float_t *normdist0 = new Float_t[ntracks+2];
3967 Float_t *normdist1 = new Float_t[ntracks+2];
3968 Float_t *normdist = new Float_t[ntracks+2];
3969 Float_t *norm = new Float_t[ntracks+2];
3970 Float_t *maxr = new Float_t[ntracks+2];
3971 Float_t *minr = new Float_t[ntracks+2];
3972 Float_t *minPointAngle= new Float_t[ntracks+2];
3973 //
6c94f330 3974 AliV0 *pvertex = new AliV0;
81e97e0d 3975 AliITStrackMI * dummy= new AliITStrackMI;
3976 dummy->SetLabel(0);
3977 AliITStrackMI trackat0; //temporary track for DCA calculation
e43c066c 3978 //
81e97e0d 3979 Float_t primvertex[3]={GetX(),GetY(),GetZ()};
628e7bb0 3980 //
afd25725 3981 // make ITS - ESD map
e43c066c 3982 //
81e97e0d 3983 for (Int_t itrack=0;itrack<ntracks+2;itrack++) {
3984 itsmap[itrack] = -1;
3985 forbidden[itrack] = kFALSE;
3986 maxr[itrack] = kMaxR;
3987 minr[itrack] = kMinR;
3988 minPointAngle[itrack] = kMinPointAngle;
3989 }
3990 for (Int_t itrack=0;itrack<nitstracks;itrack++){
3991 AliITStrackMI * original = (AliITStrackMI*)(fOriginal.At(itrack));
b9671574 3992 Int_t esdindex = original->GetESDtrack()->GetID();
81e97e0d 3993 itsmap[esdindex] = itrack;
3994 }
3995 //
afd25725 3996 // create ITS tracks from ESD tracks if not done before
81e97e0d 3997 //
3998 for (Int_t itrack=0;itrack<ntracks;itrack++){
3999 if (itsmap[itrack]>=0) continue;
4000 AliITStrackMI * tpctrack = new AliITStrackMI(*(event->GetTrack(itrack)));
791f9a2a 4001 //tpctrack->fD[0] = tpctrack->GetD(GetX(),GetY());
4002 //tpctrack->fD[1] = tpctrack->GetZat(GetX())-GetZ();
b9671574 4003 tpctrack->GetDZ(GetX(),GetY(),GetZ(),tpctrack->GetDP()); //I.B.
4004 if (tpctrack->GetD(0)<20 && tpctrack->GetD(1)<20){
81e97e0d 4005 // tracks which can reach inner part of ITS
4006 // propagate track to outer its volume - with correction for material
afd25725 4007 CorrectForTPCtoITSDeadZoneMaterial(tpctrack);
81e97e0d 4008 }
4009 itsmap[itrack] = nitstracks;
4010 fOriginal.AddAt(tpctrack,nitstracks);
4011 nitstracks++;
4012 }
4013 //
4014 // fill temporary arrays
4015 //
4016 for (Int_t itrack=0;itrack<ntracks;itrack++){
4017 AliESDtrack * esdtrack = event->GetTrack(itrack);
4018 Int_t itsindex = itsmap[itrack];
4019 AliITStrackMI *original = (AliITStrackMI*)fOriginal.At(itsmap[itrack]);
4020 if (!original) continue;
4021 AliITStrackMI *bestConst = 0;
4022 AliITStrackMI *bestLong = 0;
4023 AliITStrackMI *best = 0;
4024 //
628e7bb0 4025 //
81e97e0d 4026 TObjArray * array = (TObjArray*) fTrackHypothesys.At(itsindex);
4027 Int_t hentries = (array==0) ? 0 : array->GetEntriesFast();
4028 // Get best track with vertex constrain
628e7bb0 4029 for (Int_t ih=0;ih<hentries;ih++){
4030 AliITStrackMI * trackh = (AliITStrackMI*)array->At(ih);
b9671574 4031 if (!trackh->GetConstrain()) continue;
81e97e0d 4032 if (!bestConst) bestConst = trackh;
b9671574 4033 if (trackh->GetNumberOfClusters()>5.0){
81e97e0d 4034 bestConst = trackh; // full track - with minimal chi2
4035 break;
4036 }
b9671574 4037 if (trackh->GetNumberOfClusters()+trackh->GetNDeadZone()<=bestConst->GetNumberOfClusters()+bestConst->GetNDeadZone()) continue;
81e97e0d 4038 bestConst = trackh;
628e7bb0 4039 break;
81e97e0d 4040 }
4041 // Get best long track without vertex constrain and best track without vertex constrain
628e7bb0 4042 for (Int_t ih=0;ih<hentries;ih++){
4043 AliITStrackMI * trackh = (AliITStrackMI*)array->At(ih);
b9671574 4044 if (trackh->GetConstrain()) continue;
81e97e0d 4045 if (!best) best = trackh;
4046 if (!bestLong) bestLong = trackh;
b9671574 4047 if (trackh->GetNumberOfClusters()>5.0){
81e97e0d 4048 bestLong = trackh; // full track - with minimal chi2
4049 break;
4050 }
b9671574 4051 if (trackh->GetNumberOfClusters()+trackh->GetNDeadZone()<=bestLong->GetNumberOfClusters()+bestLong->GetNDeadZone()) continue;
81e97e0d 4052 bestLong = trackh;
628e7bb0 4053 }
81e97e0d 4054 if (!best) {
4055 best = original;
4056 bestLong = original;
628e7bb0 4057 }
6c94f330 4058 //I.B. trackat0 = *bestLong;
420c3064 4059 new (&trackat0) AliITStrackMI(*bestLong);
81e97e0d 4060 Double_t xx,yy,zz,alpha;
d1181f10 4061 if (!bestLong->GetGlobalXYZat(bestLong->GetX(),xx,yy,zz)) continue;
81e97e0d 4062 alpha = TMath::ATan2(yy,xx);
6fb0a40f 4063 if (!trackat0.Propagate(alpha,0)) continue;
81e97e0d 4064 // calculate normalized distances to the vertex
628e7bb0 4065 //
6c94f330 4066 Float_t ptfac = (1.+100.*TMath::Abs(trackat0.GetC()));
b9671574 4067 if ( bestLong->GetNumberOfClusters()>3 ){
6c94f330 4068 dist[itsindex] = trackat0.GetY();
4069 norm[itsindex] = ptfac*TMath::Sqrt(trackat0.GetSigmaY2());
4070 normdist0[itsindex] = TMath::Abs(trackat0.GetY()/norm[itsindex]);
4071 normdist1[itsindex] = TMath::Abs((trackat0.GetZ()-primvertex[2])/(ptfac*TMath::Sqrt(trackat0.GetSigmaZ2())));
81e97e0d 4072 normdist[itsindex] = TMath::Sqrt(normdist0[itsindex]*normdist0[itsindex]+normdist1[itsindex]*normdist1[itsindex]);
29641977 4073 if (!bestConst){
b9671574 4074 if (bestLong->GetNumberOfClusters()+bestLong->GetNDeadZone()<6) normdist[itsindex]*=2.;
4075 if (bestLong->GetNumberOfClusters()+bestLong->GetNDeadZone()<5) normdist[itsindex]*=2.;
4076 if (bestLong->GetNumberOfClusters()+bestLong->GetNDeadZone()<4) normdist[itsindex]*=2.;
29641977 4077 }else{
b9671574 4078 if (bestConst->GetNumberOfClusters()+bestConst->GetNDeadZone()<6) normdist[itsindex]*=1.5;
4079 if (bestConst->GetNumberOfClusters()+bestConst->GetNDeadZone()<5) normdist[itsindex]*=1.5;
29641977 4080 }
81e97e0d 4081 }
4082 else{
b9671574 4083 if (bestConst&&bestConst->GetNumberOfClusters()+bestConst->GetNDeadZone()>4.5){
4084 dist[itsindex] = bestConst->GetD(0);
4085 norm[itsindex] = bestConst->GetDnorm(0);
4086 normdist0[itsindex] = TMath::Abs(bestConst->GetD(0)/norm[itsindex]);
4087 normdist1[itsindex] = TMath::Abs(bestConst->GetD(0)/norm[itsindex]);
81e97e0d 4088 normdist[itsindex] = TMath::Sqrt(normdist0[itsindex]*normdist0[itsindex]+normdist1[itsindex]*normdist1[itsindex]);
4089 }else{
6c94f330 4090 dist[itsindex] = trackat0.GetY();
4091 norm[itsindex] = ptfac*TMath::Sqrt(trackat0.GetSigmaY2());
4092 normdist0[itsindex] = TMath::Abs(trackat0.GetY()/norm[itsindex]);
4093 normdist1[itsindex] = TMath::Abs((trackat0.GetZ()-primvertex[2])/(ptfac*TMath::Sqrt(trackat0.GetSigmaZ2())));
81e97e0d 4094 normdist[itsindex] = TMath::Sqrt(normdist0[itsindex]*normdist0[itsindex]+normdist1[itsindex]*normdist1[itsindex]);
6c94f330 4095 if (TMath::Abs(trackat0.GetTgl())>1.05){
67c1e979 4096 if (normdist[itsindex]<3) forbidden[itsindex]=kTRUE;
4097 if (normdist[itsindex]>3) {
4098 minr[itsindex] = TMath::Max(Float_t(40.),minr[itsindex]);
4099 }
81e97e0d 4100 }
4101 }
4102 }
628e7bb0 4103 //
81e97e0d 4104 //-----------------------------------------------------------
4105 //Forbid primary track candidates -
628e7bb0 4106 //
81e97e0d 4107 //treetr->SetAlias("forbidden0","Tr0.fN<4&&Tr1.fN+Tr1.fNDeadZone>4.5");
4108 //treetr->SetAlias("forbidden1","ND<3&&Tr1.fN+Tr1.fNDeadZone>5.5");
4109 //treetr->SetAlias("forbidden2","ND<2&&Tr1.fClIndex[0]>0&&Tr1.fClIndex[0]>0");
4110 //treetr->SetAlias("forbidden3","ND<1&&Tr1.fClIndex[0]>0");
4111 //treetr->SetAlias("forbidden4","ND<4&&Tr1.fNormChi2[0]<2");
4112 //treetr->SetAlias("forbidden5","ND<5&&Tr1.fNormChi2[0]<1");
4113 //-----------------------------------------------------------
4114 if (bestConst){
b9671574 4115 if (bestLong->GetNumberOfClusters()<4 && bestConst->GetNumberOfClusters()+bestConst->GetNDeadZone()>4.5) forbidden[itsindex]=kTRUE;
4116 if (normdist[itsindex]<3 && bestConst->GetNumberOfClusters()+bestConst->GetNDeadZone()>5.5) forbidden[itsindex]=kTRUE;
4117 if (normdist[itsindex]<2 && bestConst->GetClIndex(0)>0 && bestConst->GetClIndex(1)>0 ) forbidden[itsindex]=kTRUE;
4118 if (normdist[itsindex]<1 && bestConst->GetClIndex(0)>0) forbidden[itsindex]=kTRUE;
4119 if (normdist[itsindex]<4 && bestConst->GetNormChi2(0)<2) forbidden[itsindex]=kTRUE;
4120 if (normdist[itsindex]<5 && bestConst->GetNormChi2(0)<1) forbidden[itsindex]=kTRUE;
4121 if (bestConst->GetNormChi2(0)<2.5) {
81e97e0d 4122 minPointAngle[itsindex]= 0.9999;
4123 maxr[itsindex] = 10;
628e7bb0 4124 }
e43c066c 4125 }
81e97e0d 4126 //
4127 //forbid daughter kink candidates
4128 //
4129 if (esdtrack->GetKinkIndex(0)>0) forbidden[itsindex] = kTRUE;
4130 Bool_t isElectron = kTRUE;
29641977 4131 Bool_t isProton = kTRUE;
81e97e0d 4132 Double_t pid[5];
4133 esdtrack->GetESDpid(pid);
4134 for (Int_t i=1;i<5;i++){
4135 if (pid[0]<pid[i]) isElectron= kFALSE;
29641977 4136 if (pid[4]<pid[i]) isProton= kFALSE;
81e97e0d 4137 }
4138 if (isElectron){
4139 forbidden[itsindex]=kFALSE;
29641977 4140 normdist[itsindex]*=-1;
4141 }
4142 if (isProton){
4143 if (normdist[itsindex]>2) forbidden[itsindex]=kFALSE;
4144 normdist[itsindex]*=-1;
81e97e0d 4145 }
29641977 4146
81e97e0d 4147 //
4148 // Causality cuts in TPC volume
4149 //
4150 if (esdtrack->GetTPCdensity(0,10) >0.6) maxr[itsindex] = TMath::Min(Float_t(110),maxr[itsindex]);
4151 if (esdtrack->GetTPCdensity(10,30)>0.6) maxr[itsindex] = TMath::Min(Float_t(120),maxr[itsindex]);
4152 if (esdtrack->GetTPCdensity(20,40)>0.6) maxr[itsindex] = TMath::Min(Float_t(130),maxr[itsindex]);
4153 if (esdtrack->GetTPCdensity(30,50)>0.6) maxr[itsindex] = TMath::Min(Float_t(140),maxr[itsindex]);
4154 //
b9671574 4155 if (esdtrack->GetTPCdensity(0,60)<0.4&&bestLong->GetNumberOfClusters()<3) minr[itsindex]=100;
81e97e0d 4156 //
4157 //
29641977 4158 if (kFALSE){
81e97e0d 4159 cstream<<"Track"<<
4160 "Tr0.="<<best<<
4161 "Tr1.="<<((bestConst)? bestConst:dummy)<<
4162 "Tr2.="<<bestLong<<
4163 "Tr3.="<<&trackat0<<
4164 "Esd.="<<esdtrack<<
4165 "Dist="<<dist[itsindex]<<
4166 "ND0="<<normdist0[itsindex]<<
4167 "ND1="<<normdist1[itsindex]<<
4168 "ND="<<normdist[itsindex]<<
4169 "Pz="<<primvertex[2]<<
4170 "Forbid="<<forbidden[itsindex]<<
4171 "\n";
4172 //
4173 }
4174 trackarray.AddAt(best,itsindex);
4175 trackarrayc.AddAt(bestConst,itsindex);
4176 trackarrayl.AddAt(bestLong,itsindex);
4177 new (&helixes[itsindex]) AliHelix(*best);
e43c066c 4178 }
628e7bb0 4179 //
4180 //
81e97e0d 4181 //
4182 // first iterration of V0 finder
4183 //
4184 for (Int_t iesd0=0;iesd0<ntracks;iesd0++){
4185 Int_t itrack0 = itsmap[iesd0];
4186 if (forbidden[itrack0]) continue;
4187 AliITStrackMI * btrack0 = (AliITStrackMI*)trackarray.At(itrack0);
4188 if (!btrack0) continue;
420c3064 4189 if (btrack0->GetSign()>0) continue;
628e7bb0 4190 AliITStrackMI *trackc0 = (AliITStrackMI*)trackarrayc.At(itrack0);
4191 //
81e97e0d 4192 for (Int_t iesd1=0;iesd1<ntracks;iesd1++){
4193 Int_t itrack1 = itsmap[iesd1];
4194 if (forbidden[itrack1]) continue;
4195
4196 AliITStrackMI * btrack1 = (AliITStrackMI*)trackarray.At(itrack1);
4197 if (!btrack1) continue;
420c3064 4198 if (btrack1->GetSign()<0) continue;
81e97e0d 4199 Bool_t isGold = kFALSE;
4200 if (TMath::Abs(TMath::Abs(btrack0->GetLabel())-TMath::Abs(btrack1->GetLabel()))==1){
4201 isGold = kTRUE;
628e7bb0 4202 }
81e97e0d 4203 AliITStrackMI *trackc1 = (AliITStrackMI*)trackarrayc.At(itrack1);
4204 AliHelix &h1 = helixes[itrack0];
4205 AliHelix &h2 = helixes[itrack1];
628e7bb0 4206 //
81e97e0d 4207 // find linear distance
4208 Double_t rmin =0;
628e7bb0 4209 //
51ad6848 4210 //
51ad6848 4211 //
81e97e0d 4212 Double_t phase[2][2],radius[2];
4213 Int_t points = h1.GetRPHIintersections(h2, phase, radius);
4214 if (points==0) continue;
c49fe0bf 4215 Double_t delta[2]={1000000,1000000};
81e97e0d 4216 rmin = radius[0];
4217 h1.ParabolicDCA(h2,phase[0][0],phase[0][1],radius[0],delta[0]);
4218 if (points==2){
4219 if (radius[1]<rmin) rmin = radius[1];
4220 h1.ParabolicDCA(h2,phase[1][0],phase[1][1],radius[1],delta[1]);
4221 }
4222 rmin = TMath::Sqrt(rmin);
4223 Double_t distance = 0;
4224 Double_t radiusC = 0;
4225 Int_t iphase = 0;
c49fe0bf 4226 if (points==1 || delta[0]<delta[1]){
81e97e0d 4227 distance = TMath::Sqrt(delta[0]);
4228 radiusC = TMath::Sqrt(radius[0]);
4229 }else{
4230 distance = TMath::Sqrt(delta[1]);
4231 radiusC = TMath::Sqrt(radius[1]);
4232 iphase=1;
4233 }
4234 if (radiusC<TMath::Max(minr[itrack0],minr[itrack1])) continue;
4235 if (radiusC>TMath::Min(maxr[itrack0],maxr[itrack1])) continue;
4236 Float_t maxDist = TMath::Min(kMaxDist,Float_t(kMaxDist0+radiusC*kMaxDist1));
4237 if (distance>maxDist) continue;
4238 Float_t pointAngle = h1.GetPointAngle(h2,phase[iphase],primvertex);
4239 if (pointAngle<TMath::Max(minPointAngle[itrack0],minPointAngle[itrack1])) continue;
628e7bb0 4240 //
51ad6848 4241 //
81e97e0d 4242 // Double_t distance = TestV0(h1,h2,pvertex,rmin);
51ad6848 4243 //
81e97e0d 4244 // if (distance>maxDist) continue;
4245 // if (pvertex->GetRr()<kMinR) continue;
4246 // if (pvertex->GetRr()>kMaxR) continue;
4247 AliITStrackMI * track0=btrack0;
4248 AliITStrackMI * track1=btrack1;
4249 // if (pvertex->GetRr()<3.5){
4250 if (radiusC<3.5){
4251 //use longest tracks inside the pipe
4252 track0 = (AliITStrackMI*)trackarrayl.At(itrack0);
4253 track1 = (AliITStrackMI*)trackarrayl.At(itrack1);
4254 }
51ad6848 4255 //
4256 //
b75d63a7 4257 pvertex->SetParamN(*track0);
4258 pvertex->SetParamP(*track1);
81e97e0d 4259 pvertex->Update(primvertex);
b9671574 4260 pvertex->SetClusters(track0->ClIndex(),track1->ClIndex()); // register clusters
67c1e979 4261
81e97e0d 4262 if (pvertex->GetRr()<kMinR) continue;
4263 if (pvertex->GetRr()>kMaxR) continue;
b75d63a7 4264 if (pvertex->GetV0CosineOfPointingAngle()<kMinPointAngle) continue;
4265//Bo: if (pvertex->GetDist2()>maxDist) continue;
4266 if (pvertex->GetDcaV0Daughters()>maxDist) continue;
4267//Bo: pvertex->SetLab(0,track0->GetLabel());
4268//Bo: pvertex->SetLab(1,track1->GetLabel());
b9671574 4269 pvertex->SetIndex(0,track0->GetESDtrack()->GetID());
4270 pvertex->SetIndex(1,track1->GetESDtrack()->GetID());
81e97e0d 4271 //
4272 AliITStrackMI * htrackc0 = trackc0 ? trackc0:dummy;
4273 AliITStrackMI * htrackc1 = trackc1 ? trackc1:dummy;
51ad6848 4274
81e97e0d 4275 //
4276 //
4277 TObjArray * array0b = (TObjArray*)fBestHypothesys.At(itrack0);
513ab112 4278 if (!array0b&&pvertex->GetRr()<40 && TMath::Abs(track0->GetTgl())<1.1) {
4279 fCurrentEsdTrack = itrack0;
81e97e0d 4280 FollowProlongationTree((AliITStrackMI*)fOriginal.At(itrack0),itrack0, kFALSE);
513ab112 4281 }
81e97e0d 4282 TObjArray * array1b = (TObjArray*)fBestHypothesys.At(itrack1);
513ab112 4283 if (!array1b&&pvertex->GetRr()<40 && TMath::Abs(track1->GetTgl())<1.1) {
4284 fCurrentEsdTrack = itrack1;
81e97e0d 4285 FollowProlongationTree((AliITStrackMI*)fOriginal.At(itrack1),itrack1, kFALSE);
513ab112 4286 }
81e97e0d 4287 //
4288 AliITStrackMI * track0b = (AliITStrackMI*)fOriginal.At(itrack0);
4289 AliITStrackMI * track1b = (AliITStrackMI*)fOriginal.At(itrack1);
4290 AliITStrackMI * track0l = (AliITStrackMI*)fOriginal.At(itrack0);
4291 AliITStrackMI * track1l = (AliITStrackMI*)fOriginal.At(itrack1);
4292
4293 Float_t minchi2before0=16;
4294 Float_t minchi2before1=16;
4295 Float_t minchi2after0 =16;
4296 Float_t minchi2after1 =16;
b75d63a7 4297 Double_t xrp[3]; pvertex->GetXYZ(xrp[0],xrp[1],xrp[2]); //I.B.
4298 Int_t maxLayer = GetNearestLayer(xrp); //I.B.
81e97e0d 4299
4300 if (array0b) for (Int_t i=0;i<5;i++){
4301 // best track after vertex
4302 AliITStrackMI * btrack = (AliITStrackMI*)array0b->At(i);
4303 if (!btrack) continue;
b9671574 4304 if (btrack->GetNumberOfClusters()>track0l->GetNumberOfClusters()) track0l = btrack;
29641977 4305 // if (btrack->fX<pvertex->GetRr()-2.-0.5/(0.1+pvertex->GetAnglep()[2])) {
6c94f330 4306 if (btrack->GetX()<pvertex->GetRr()-2.) {
b9671574 4307 if ( (maxLayer>i+2|| (i==0)) && btrack->GetNumberOfClusters()==(6-i)&&i<3){
81e97e0d 4308 Float_t sumchi2= 0;
4309 Float_t sumn = 0;
29641977 4310 if (maxLayer<3){ // take prim vertex as additional measurement
4311 if (normdist[itrack0]>0 && htrackc0){
97f754fa 4312 sumchi2 += TMath::Min((3.-maxLayer)*normdist[itrack0]*normdist[itrack0],16.);
29641977 4313 }else{
97f754fa 4314 sumchi2 += TMath::Min((3.-maxLayer)*(3*normdist[itrack0]*normdist[itrack0]+3.),16.);
29641977 4315 }
4316 sumn += 3-maxLayer;
4317 }
81e97e0d 4318 for (Int_t ilayer=i;ilayer<maxLayer;ilayer++){
97f754fa 4319 sumn+=1.;
b9671574 4320 if (!btrack->GetClIndex(ilayer)){
81e97e0d 4321 sumchi2+=25;
4322 continue;
4323 }else{
b9671574 4324 Int_t c=( btrack->GetClIndex(ilayer) & 0x0fffffff);
97f754fa 4325 for (Int_t itrack=0;itrack<4;itrack++){
b9671574 4326 if (fgLayers[ilayer].GetClusterTracks(itrack,c)>=0 && fgLayers[ilayer].GetClusterTracks(itrack,c)!=itrack0){
97f754fa 4327 sumchi2+=18.; //shared cluster
4328 break;
4329 }
4330 }
b9671574 4331 sumchi2+=btrack->GetDy(ilayer)*btrack->GetDy(ilayer)/(btrack->GetSigmaY(ilayer)*btrack->GetSigmaY(ilayer));
4332 sumchi2+=btrack->GetDz(ilayer)*btrack->GetDz(ilayer)/(btrack->GetSigmaZ(ilayer)*btrack->GetSigmaZ(ilayer));
81e97e0d 4333 }
4334 }
4335 sumchi2/=sumn;
4336 if (sumchi2<minchi2before0) minchi2before0=sumchi2;
51ad6848 4337 }
81e97e0d 4338 continue; //safety space - Geo manager will give exact layer
51ad6848 4339 }
81e97e0d 4340 track0b = btrack;
b9671574 4341 minchi2after0 = btrack->GetNormChi2(i);
81e97e0d 4342 break;
4343 }
4344 if (array1b) for (Int_t i=0;i<5;i++){
4345 // best track after vertex
4346 AliITStrackMI * btrack = (AliITStrackMI*)array1b->At(i);
4347 if (!btrack) continue;
b9671574 4348 if (btrack->GetNumberOfClusters()>track1l->GetNumberOfClusters()) track1l = btrack;
29641977 4349 // if (btrack->fX<pvertex->GetRr()-2-0.5/(0.1+pvertex->GetAnglep()[2])){
6c94f330 4350 if (btrack->GetX()<pvertex->GetRr()-2){
b9671574 4351 if ((maxLayer>i+2 || (i==0))&&btrack->GetNumberOfClusters()==(6-i)&&(i<3)){
81e97e0d 4352 Float_t sumchi2= 0;
4353 Float_t sumn = 0;
29641977 4354 if (maxLayer<3){ // take prim vertex as additional measurement
4355 if (normdist[itrack1]>0 && htrackc1){
97f754fa 4356 sumchi2 += TMath::Min((3.-maxLayer)*normdist[itrack1]*normdist[itrack1],16.);
29641977 4357 }else{
97f754fa 4358 sumchi2 += TMath::Min((3.-maxLayer)*(3*normdist[itrack1]*normdist[itrack1]+3.),16.);
29641977 4359 }
4360 sumn += 3-maxLayer;
4361 }
81e97e0d 4362 for (Int_t ilayer=i;ilayer<maxLayer;ilayer++){
4363 sumn+=1.;
b9671574 4364 if (!btrack->GetClIndex(ilayer)){
81e97e0d 4365 sumchi2+=30;
4366 continue;
4367 }else{
b9671574 4368 Int_t c=( btrack->GetClIndex(ilayer) & 0x0fffffff);
97f754fa 4369 for (Int_t itrack=0;itrack<4;itrack++){
b9671574 4370 if (fgLayers[ilayer].GetClusterTracks(itrack,c)>=0 && fgLayers[ilayer].GetClusterTracks(itrack,c)!=itrack1){
97f754fa 4371 sumchi2+=18.; //shared cluster
4372 break;
4373 }
4374 }
b9671574 4375 sumchi2+=btrack->GetDy(ilayer)*btrack->GetDy(ilayer)/(btrack->GetSigmaY(ilayer)*btrack->GetSigmaY(ilayer));
4376 sumchi2+=btrack->GetDz(ilayer)*btrack->GetDz(ilayer)/(btrack->GetSigmaZ(ilayer)*btrack->GetSigmaZ(ilayer));
81e97e0d 4377 }
4378 }
4379 sumchi2/=sumn;
4380 if (sumchi2<minchi2before1) minchi2before1=sumchi2;
51ad6848 4381 }
81e97e0d 4382 continue; //safety space - Geo manager will give exact layer
51ad6848 4383 }
81e97e0d 4384 track1b = btrack;
b9671574 4385 minchi2after1 = btrack->GetNormChi2(i);
81e97e0d 4386 break;
e43c066c 4387 }
628e7bb0 4388 //
81e97e0d 4389 // position resolution - used for DCA cut
6c94f330 4390 Float_t sigmad = track0b->GetSigmaY2()+track0b->GetSigmaZ2()+track1b->GetSigmaY2()+track1b->GetSigmaZ2()+
4391 (track0b->GetX()-pvertex->GetRr())*(track0b->GetX()-pvertex->GetRr())*(track0b->GetSigmaSnp2()+track0b->GetSigmaTgl2())+
4392 (track1b->GetX()-pvertex->GetRr())*(track1b->GetX()-pvertex->GetRr())*(track1b->GetSigmaSnp2()+track1b->GetSigmaTgl2());
81e97e0d 4393 sigmad =TMath::Sqrt(sigmad)+0.04;
4394 if (pvertex->GetRr()>50){
4395 Double_t cov0[15],cov1[15];
b9671574 4396 track0b->GetESDtrack()->GetInnerExternalCovariance(cov0);
4397 track1b->GetESDtrack()->GetInnerExternalCovariance(cov1);
81e97e0d 4398 sigmad = cov0[0]+cov0[2]+cov1[0]+cov1[2]+
4399 (80.-pvertex->GetRr())*(80.-pvertex->GetRr())*(cov0[5]+cov0[9])+
4400 (80.-pvertex->GetRr())*(80.-pvertex->GetRr())*(cov1[5]+cov1[9]);
4401 sigmad =TMath::Sqrt(sigmad)+0.05;
4402 }
4403 //
6c94f330 4404 AliV0 vertex2;
b75d63a7 4405 vertex2.SetParamN(*track0b);
4406 vertex2.SetParamP(*track1b);
81e97e0d 4407 vertex2.Update(primvertex);
b75d63a7 4408 //Bo: if (vertex2.GetDist2()<=pvertex->GetDist2()&&(vertex2.GetV0CosineOfPointingAngle()>=pvertex->GetV0CosineOfPointingAngle())){
4409 if (vertex2.GetDcaV0Daughters()<=pvertex->GetDcaV0Daughters()&&(vertex2.GetV0CosineOfPointingAngle()>=pvertex->GetV0CosineOfPointingAngle())){
4410 pvertex->SetParamN(*track0b);
4411 pvertex->SetParamP(*track1b);
81e97e0d 4412 pvertex->Update(primvertex);
b9671574 4413 pvertex->SetClusters(track0b->ClIndex(),track1b->ClIndex()); // register clusters
4414 pvertex->SetIndex(0,track0->GetESDtrack()->GetID());
4415 pvertex->SetIndex(1,track1->GetESDtrack()->GetID());
81e97e0d 4416 }
4417 pvertex->SetDistSigma(sigmad);
b75d63a7 4418 //Bo: pvertex->SetDistNorm(pvertex->GetDist2()/sigmad);
29641977 4419 pvertex->SetNormDCAPrim(normdist[itrack0],normdist[itrack1]);
628e7bb0 4420 //
81e97e0d 4421 // define likelihhod and causalities
628e7bb0 4422 //
81e97e0d 4423 Float_t pa0=1, pa1=1, pb0=0.26, pb1=0.26;
29641977 4424 if (maxLayer<1){
4425 Float_t fnorm0 = normdist[itrack0];
4426 if (fnorm0<0) fnorm0*=-3;
4427 Float_t fnorm1 = normdist[itrack1];
4428 if (fnorm1<0) fnorm1*=-3;
5af4a2d0 4429 if ((pvertex->GetAnglep()[2]>0.1) || ( (pvertex->GetRr()<10.5)&& pvertex->GetAnglep()[2]>0.05 ) || (pvertex->GetRr()<3)){
29641977 4430 pb0 = TMath::Exp(-TMath::Min(fnorm0,Float_t(16.))/12.);
4431 pb1 = TMath::Exp(-TMath::Min(fnorm1,Float_t(16.))/12.);
67c1e979 4432 }
81e97e0d 4433 pvertex->SetChi2Before(normdist[itrack0]);
4434 pvertex->SetChi2After(normdist[itrack1]);
4435 pvertex->SetNAfter(0);
4436 pvertex->SetNBefore(0);
4437 }else{
4438 pvertex->SetChi2Before(minchi2before0);
4439 pvertex->SetChi2After(minchi2before1);
29641977 4440 if (pvertex->GetAnglep()[2]>0.1 || ( pvertex->GetRr()<10.5 && pvertex->GetAnglep()[2]>0.05) || pvertex->GetRr()<3){
4441 pb0 = TMath::Exp(-TMath::Min(minchi2before0,Float_t(16))/12.);
4442 pb1 = TMath::Exp(-TMath::Min(minchi2before1,Float_t(16))/12.);
4443 }
4444 pvertex->SetNAfter(maxLayer);
4445 pvertex->SetNBefore(maxLayer);
628e7bb0 4446 }
81e97e0d 4447 if (pvertex->GetRr()<90){
f941f7fa 4448 pa0 *= TMath::Min(track0->GetESDtrack()->GetTPCdensity(0,60),Double_t(1.));
4449 pa1 *= TMath::Min(track1->GetESDtrack()->GetTPCdensity(0,60),Double_t(1.));
628e7bb0 4450 }
81e97e0d 4451 if (pvertex->GetRr()<20){
4452 pa0 *= (0.2+TMath::Exp(-TMath::Min(minchi2after0,Float_t(16))/8.))/1.2;
4453 pa1 *= (0.2+TMath::Exp(-TMath::Min(minchi2after1,Float_t(16))/8.))/1.2;
e43c066c 4454 }
628e7bb0 4455 //
81e97e0d 4456 pvertex->SetCausality(pb0,pb1,pa0,pa1);
628e7bb0 4457 //
81e97e0d 4458 // Likelihood calculations - apply cuts
4459 //
4460 Bool_t v0OK = kTRUE;
4461 Float_t p12 = pvertex->GetParamP()->GetParameter()[4]*pvertex->GetParamP()->GetParameter()[4];
b75d63a7 4462 p12 += pvertex->GetParamN()->GetParameter()[4]*pvertex->GetParamN()->GetParameter()[4];
81e97e0d 4463 p12 = TMath::Sqrt(p12); // "mean" momenta
4464 Float_t sigmap0 = 0.0001+0.001/(0.1+pvertex->GetRr());
4465 Float_t sigmap = 0.5*sigmap0*(0.6+0.4*p12); // "resolution: of point angle - as a function of radius and momenta
4466
bf6adc12 4467 Float_t causalityA = (1.0-pvertex->GetCausalityP()[0])*(1.0-pvertex->GetCausalityP()[1]);
f941f7fa 4468 Float_t causalityB = TMath::Sqrt(TMath::Min(pvertex->GetCausalityP()[2],Double_t(0.7))*
4469 TMath::Min(pvertex->GetCausalityP()[3],Double_t(0.7)));
628e7bb0 4470 //
b75d63a7 4471 //Bo: Float_t likelihood0 = (TMath::Exp(-pvertex->GetDistNorm())+0.1) *(pvertex->GetDist2()<0.5)*(pvertex->GetDistNorm()<5);
4472 Float_t lDistNorm = pvertex->GetDcaV0Daughters()/pvertex->GetDistSigma();
4473 Float_t likelihood0 = (TMath::Exp(-lDistNorm)+0.1) *(pvertex->GetDcaV0Daughters()<0.5)*(lDistNorm<5);
4474
4475 Float_t likelihood1 = TMath::Exp(-(1.0001-pvertex->GetV0CosineOfPointingAngle())/sigmap)+
4476 0.4*TMath::Exp(-(1.0001-pvertex->GetV0CosineOfPointingAngle())/(4.*sigmap))+
4477 0.4*TMath::Exp(-(1.0001-pvertex->GetV0CosineOfPointingAngle())/(8.*sigmap))+
4478 0.1*TMath::Exp(-(1.0001-pvertex->GetV0CosineOfPointingAngle())/0.01);
628e7bb0 4479 //
bf6adc12 4480 if (causalityA<kCausality0Cut) v0OK = kFALSE;
4481 if (TMath::Sqrt(likelihood0*likelihood1)<kLikelihood01Cut) v0OK = kFALSE;
4482 if (likelihood1<kLikelihood1Cut) v0OK = kFALSE;
4483 if (TMath::Power(likelihood0*likelihood1*causalityB,0.33)<kCombinedCut) v0OK = kFALSE;
81e97e0d 4484
628e7bb0 4485 //
628e7bb0 4486 //
67c1e979 4487 if (kFALSE){
81e97e0d 4488 Bool_t gold = TMath::Abs(TMath::Abs(track0->GetLabel())-TMath::Abs(track1->GetLabel()))==1;
4489 cstream<<"It0"<<
4490 "Tr0.="<<track0<< //best without constrain
4491 "Tr1.="<<track1<< //best without constrain
4492 "Tr0B.="<<track0b<< //best without constrain after vertex
4493 "Tr1B.="<<track1b<< //best without constrain after vertex
4494 "Tr0C.="<<htrackc0<< //best with constrain if exist
4495 "Tr1C.="<<htrackc1<< //best with constrain if exist
4496 "Tr0L.="<<track0l<< //longest best
4497 "Tr1L.="<<track1l<< //longest best
b9671574 4498 "Esd0.="<<track0->GetESDtrack()<< // esd track0 params
4499 "Esd1.="<<track1->GetESDtrack()<< // esd track1 params
81e97e0d 4500 "V0.="<<pvertex<< //vertex properties
4501 "V0b.="<<&vertex2<< //vertex properties at "best" track
4502 "ND0="<<normdist[itrack0]<< //normalize distance for track0
4503 "ND1="<<normdist[itrack1]<< //normalize distance for track1
4504 "Gold="<<gold<< //
4505 // "RejectBase="<<rejectBase<< //rejection in First itteration
4506 "OK="<<v0OK<<
4507 "rmin="<<rmin<<
4508 "sigmad="<<sigmad<<
4509 "\n";
4510 }
4511 //if (rejectBase) continue;
628e7bb0 4512 //
81e97e0d 4513 pvertex->SetStatus(0);
4514 // if (rejectBase) {
4515 // pvertex->SetStatus(-100);
4516 //}
b75d63a7 4517 if (pvertex->GetV0CosineOfPointingAngle()>kMinPointAngle2) {
4518 //Bo: pvertex->SetESDindexes(track0->GetESDtrack()->GetID(),track1->GetESDtrack()->GetID());
4519 pvertex->SetIndex(0,track0->GetESDtrack()->GetID());//Bo: consistency 0 for neg
4520 pvertex->SetIndex(1,track1->GetESDtrack()->GetID());//Bo: consistency 1 for pos
67c1e979 4521 if (v0OK){
4522 // AliV0vertex vertexjuri(*track0,*track1);
4523 // vertexjuri.SetESDindexes(track0->fESDtrack->GetID(),track1->fESDtrack->GetID());
4524 // event->AddV0(&vertexjuri);
81e97e0d 4525 pvertex->SetStatus(100);
4526 }
d6a49f20 4527 pvertex->SetOnFlyStatus(kTRUE);
b75d63a7 4528 pvertex->ChangeMassHypothesis(kK0Short);
d6a49f20 4529 event->AddV0(pvertex);
628e7bb0 4530 }
51ad6848 4531 }
4532 }
628e7bb0 4533 //
4534 //
81e97e0d 4535 // delete temporary arrays
4536 //
316c6cd9 4537 delete[] forbidden;
81e97e0d 4538 delete[] minPointAngle;
4539 delete[] maxr;
4540 delete[] minr;
4541 delete[] norm;
4542 delete[] normdist;
4543 delete[] normdist1;
4544 delete[] normdist0;
4545 delete[] dist;
4546 delete[] itsmap;
4547 delete[] helixes;
4548 delete pvertex;
e43c066c 4549}
44347160 4550//------------------------------------------------------------------------
af885e0f 4551void AliITStrackerMI::RefitV02(AliESDEvent *event)
67c1e979 4552{
4553 //
4554 //try to refit V0s in the third path of the reconstruction
4555 //
4556 TTreeSRedirector &cstream = *fDebugStreamer;
4557 //
d6a49f20 4558 Int_t nv0s = event->GetNumberOfV0s();
67c1e979 4559 Float_t primvertex[3]={GetX(),GetY(),GetZ()};
6c94f330 4560 AliV0 v0temp;
67c1e979 4561 for (Int_t iv0 = 0; iv0<nv0s;iv0++){
d6a49f20 4562 AliV0 * v0mi = (AliV0*)event->GetV0(iv0);
67c1e979 4563 if (!v0mi) continue;
4564 Int_t itrack0 = v0mi->GetIndex(0);
4565 Int_t itrack1 = v0mi->GetIndex(1);
4566 AliESDtrack *esd0 = event->GetTrack(itrack0);
4567 AliESDtrack *esd1 = event->GetTrack(itrack1);
4568 if (!esd0||!esd1) continue;
4569 AliITStrackMI tpc0(*esd0);
4570 AliITStrackMI tpc1(*esd1);
b75d63a7 4571 Double_t x,y,z; v0mi->GetXYZ(x,y,z); //I.B.
4572 Double_t alpha =TMath::ATan2(y,x); //I.B.
67c1e979 4573 if (v0mi->GetRr()>85){
4574 if (tpc0.Propagate(alpha,v0mi->GetRr())&&tpc1.Propagate(alpha,v0mi->GetRr())){
b75d63a7 4575 v0temp.SetParamN(tpc0);
4576 v0temp.SetParamP(tpc1);
67c1e979 4577 v0temp.Update(primvertex);
29641977 4578 if (kFALSE) cstream<<"Refit"<<
67c1e979 4579 "V0.="<<v0mi<<
4580 "V0refit.="<<&v0temp<<
4581 "Tr0.="<<&tpc0<<
4582 "Tr1.="<<&tpc1<<
4583 "\n";
b75d63a7 4584 //Bo: if (v0temp.GetDist2()<v0mi->GetDist2() || v0temp.GetV0CosineOfPointingAngle()>v0mi->GetV0CosineOfPointingAngle()){
4585 if (v0temp.GetDcaV0Daughters()<v0mi->GetDcaV0Daughters() || v0temp.GetV0CosineOfPointingAngle()>v0mi->GetV0CosineOfPointingAngle()){
4586 v0mi->SetParamN(tpc0);
4587 v0mi->SetParamP(tpc1);
67c1e979 4588 v0mi->Update(primvertex);
4589 }
4590 }
4591 continue;
4592 }
4593 if (v0mi->GetRr()>35){
afd25725 4594 CorrectForTPCtoITSDeadZoneMaterial(&tpc0);
4595 CorrectForTPCtoITSDeadZoneMaterial(&tpc1);
67c1e979 4596 if (tpc0.Propagate(alpha,v0mi->GetRr())&&tpc1.Propagate(alpha,v0mi->GetRr())){
b75d63a7 4597 v0temp.SetParamN(tpc0);
4598 v0temp.SetParamP(tpc1);
67c1e979 4599 v0temp.Update(primvertex);
29641977 4600 if (kFALSE) cstream<<"Refit"<<
67c1e979 4601 "V0.="<<v0mi<<
4602 "V0refit.="<<&v0temp<<
4603 "Tr0.="<<&tpc0<<
4604 "Tr1.="<<&tpc1<<
4605 "\n";
b75d63a7 4606 //Bo: if (v0temp.GetDist2()<v0mi->GetDist2() || v0temp.GetV0CosineOfPointingAngle()>v0mi->GetV0CosineOfPointingAngle()){
4607 if (v0temp.GetDcaV0Daughters()<v0mi->GetDcaV0Daughters() || v0temp.GetV0CosineOfPointingAngle()>v0mi->GetV0CosineOfPointingAngle()){
4608 v0mi->SetParamN(tpc0);
4609 v0mi->SetParamP(tpc1);
67c1e979 4610 v0mi->Update(primvertex);
4611 }
4612 }
4613 continue;
4614 }
afd25725 4615 CorrectForTPCtoITSDeadZoneMaterial(&tpc0);
4616 CorrectForTPCtoITSDeadZoneMaterial(&tpc1);
67c1e979 4617 // if (tpc0.Propagate(alpha,v0mi->GetRr())&&tpc1.Propagate(alpha,v0mi->GetRr())){
4618 if (RefitAt(v0mi->GetRr(),&tpc0, v0mi->GetClusters(0)) && RefitAt(v0mi->GetRr(),&tpc1, v0mi->GetClusters(1))){
b75d63a7 4619 v0temp.SetParamN(tpc0);
4620 v0temp.SetParamP(tpc1);
67c1e979 4621 v0temp.Update(primvertex);
29641977 4622 if (kFALSE) cstream<<"Refit"<<
67c1e979 4623 "V0.="<<v0mi<<
4624 "V0refit.="<<&v0temp<<
4625 "Tr0.="<<&tpc0<<
4626 "Tr1.="<<&tpc1<<
4627 "\n";
b75d63a7 4628 //Bo: if (v0temp.GetDist2()<v0mi->GetDist2() || v0temp.GetV0CosineOfPointingAngle()>v0mi->GetV0CosineOfPointingAngle()){
4629 if (v0temp.GetDcaV0Daughters()<v0mi->GetDcaV0Daughters() || v0temp.GetV0CosineOfPointingAngle()>v0mi->GetV0CosineOfPointingAngle()){
4630 v0mi->SetParamN(tpc0);
4631 v0mi->SetParamP(tpc1);
67c1e979 4632 v0mi->Update(primvertex);
4633 }
4634 }
4635 }
4636}
44347160 4637//------------------------------------------------------------------------
e50912db 4638void AliITStrackerMI::BuildMaterialLUT(TString material) {
4639 //--------------------------------------------------------------------
4640 // Fill a look-up table with mean material
4641 //--------------------------------------------------------------------
4642
4643 Int_t n=1000;
4644 Double_t mparam[7];
4645 Double_t point1[3],point2[3];
4646 Double_t phi,cosphi,sinphi,z;
4647 // 0-5 layers, 6 pipe, 7-8 shields
1ec3c859 4648 Double_t rmin[9]={ 3.5, 5.5,13.0,22.0,35.0,41.0, 2.0, 8.0,25.0};
4649 Double_t rmax[9]={ 5.5, 8.0,17.0,26.0,41.0,47.0, 3.0,10.5,30.0};
e50912db 4650
4651 Int_t ifirst=0,ilast=0;
4652 if(material.Contains("Pipe")) {
4653 ifirst=6; ilast=6;
4654 } else if(material.Contains("Shields")) {
4655 ifirst=7; ilast=8;
4656 } else if(material.Contains("Layers")) {
4657 ifirst=0; ilast=5;
4658 } else {
4659 Error("BuildMaterialLUT","Wrong layer name\n");
4660 }
4661
4662 for(Int_t imat=ifirst; imat<=ilast; imat++) {
4663 Double_t param[5]={0.,0.,0.,0.,0.};
4664 for (Int_t i=0; i<n; i++) {
4665 phi = 2.*TMath::Pi()*gRandom->Rndm();
4666 cosphi = TMath::Cos(phi); sinphi = TMath::Sin(phi);
4667 z = 14.*(-1.+2.*gRandom->Rndm()); // SPD barrel
4668 point1[0] = rmin[imat]*cosphi;
4669 point1[1] = rmin[imat]*sinphi;
4670 point1[2] = z;
4671 point2[0] = rmax[imat]*cosphi;
4672 point2[1] = rmax[imat]*sinphi;
4673 point2[2] = z;
4674 AliTracker::MeanMaterialBudget(point1,point2,mparam);
4675 for(Int_t j=0;j<5;j++) param[j]+=mparam[j];
4676 }
4677 for(Int_t j=0;j<5;j++) param[j]/=(Float_t)n;
4678 if(imat<=5) {
4679 fxOverX0Layer[imat] = param[1];
4680 fxTimesRhoLayer[imat] = param[0]*param[4];
4681 } else if(imat==6) {
4682 fxOverX0Pipe = param[1];
4683 fxTimesRhoPipe = param[0]*param[4];
4684 } else if(imat==7) {
4685 fxOverX0Shield[0] = param[1];
4686 fxTimesRhoShield[0] = param[0]*param[4];
4687 } else if(imat==8) {
4688 fxOverX0Shield[1] = param[1];
4689 fxTimesRhoShield[1] = param[0]*param[4];
4690 }
4691 }
4692 /*
4693 printf("%s\n",material.Data());
4694 printf("%f %f\n",fxOverX0Pipe,fxTimesRhoPipe);
4695 printf("%f %f\n",fxOverX0Shield[0],fxTimesRhoShield[0]);
4696 printf("%f %f\n",fxOverX0Shield[1],fxTimesRhoShield[1]);
4697 printf("%f %f\n",fxOverX0Layer[0],fxTimesRhoLayer[0]);
4698 printf("%f %f\n",fxOverX0Layer[1],fxTimesRhoLayer[1]);
4699 printf("%f %f\n",fxOverX0Layer[2],fxTimesRhoLayer[2]);
4700 printf("%f %f\n",fxOverX0Layer[3],fxTimesRhoLayer[3]);
4701 printf("%f %f\n",fxOverX0Layer[4],fxTimesRhoLayer[4]);
4702 printf("%f %f\n",fxOverX0Layer[5],fxTimesRhoLayer[5]);
4703 */
4704 return;
4705}
4706//------------------------------------------------------------------------
4707Int_t AliITStrackerMI::CorrectForPipeMaterial(AliITStrackMI *t,
4708 TString direction) {
4709 //-------------------------------------------------------------------
4710 // Propagate beyond beam pipe and correct for material
4711 // (material budget in different ways according to fUseTGeo value)
4712 //-------------------------------------------------------------------
4713
4714 // Define budget mode:
4715 // 0: material from AliITSRecoParam (hard coded)
9be1d1c7 4716 // 1: material from TGeo in one step (on the fly)
e50912db 4717 // 2: material from lut
9be1d1c7 4718 // 3: material from TGeo in one step (same for all hypotheses)
e50912db 4719 Int_t mode;
4720 switch(fUseTGeo) {
4721 case 0:
4722 mode=0;
4723 break;
4724 case 1:
4725 mode=1;
4726 break;
4727 case 2:
4728 mode=2;
4729 break;
4730 case 3:
4731 if(fTrackingPhase.Contains("Clusters2Tracks"))
4732 { mode=3; } else { mode=1; }
4733 break;
4734 case 4:
4735 if(fTrackingPhase.Contains("Clusters2Tracks"))
4736 { mode=3; } else { mode=2; }
4737 break;
4738 default:
4739 mode=0;
4740 break;
4741 }
4742 if(fTrackingPhase.Contains("Default")) mode=0;
4743
4744 Int_t index=fCurrentEsdTrack;
4745
4746 Float_t dir = (direction.Contains("inward") ? 1. : -1.);
4747 Double_t rToGo=(dir>0 ? AliITSRecoParam::GetrInsidePipe() : AliITSRecoParam::GetrOutsidePipe());
70e83b26 4748 Double_t xToGo;
4749 if (!t->GetLocalXat(rToGo,xToGo)) return 0;
e50912db 4750
4751 Double_t xOverX0,x0,lengthTimesMeanDensity;
4752 Bool_t anglecorr=kTRUE;
4753
4754 switch(mode) {
4755 case 0:
4756 xOverX0 = AliITSRecoParam::GetdPipe();
4757 x0 = AliITSRecoParam::GetX0Be();
4758 lengthTimesMeanDensity = xOverX0*x0;
9be1d1c7 4759 lengthTimesMeanDensity *= dir;
4760 if (!t->Propagate(xToGo)) return 0;
4761 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4762 break;
4763 case 1:
4764 if (!t->PropagateToTGeo(xToGo,1)) return 0;
e50912db 4765 break;
4766 case 2:
4767 if(fxOverX0Pipe<0) BuildMaterialLUT("Pipe");
4768 xOverX0 = fxOverX0Pipe;
4769 lengthTimesMeanDensity = fxTimesRhoPipe;
9be1d1c7 4770 lengthTimesMeanDensity *= dir;
4771 if (!t->Propagate(xToGo)) return 0;
4772 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4773 break;
4774 case 3:
4775 if(!fxOverX0PipeTrks || index<0 || index>=fNtracks) Error("CorrectForPipeMaterial","Incorrect usage of UseTGeo option!\n");
4776 if(fxOverX0PipeTrks[index]<0) {
4777 if (!t->PropagateToTGeo(xToGo,1,xOverX0,lengthTimesMeanDensity)) return 0;
4778 Double_t angle=TMath::Sqrt((1.+t->GetTgl()*t->GetTgl())/
4779 (1.-t->GetSnp()*t->GetSnp()));
4780 fxOverX0PipeTrks[index] = TMath::Abs(xOverX0)/angle;
4781 fxTimesRhoPipeTrks[index] = TMath::Abs(lengthTimesMeanDensity)/angle;
4782 return 1;
4783 }
4784 xOverX0 = fxOverX0PipeTrks[index];
4785 lengthTimesMeanDensity = fxTimesRhoPipeTrks[index];
9be1d1c7 4786 lengthTimesMeanDensity *= dir;
4787 if (!t->Propagate(xToGo)) return 0;
4788 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4789 break;
4790 }
4791
e50912db 4792 return 1;
4793}
4794//------------------------------------------------------------------------
4795Int_t AliITStrackerMI::CorrectForShieldMaterial(AliITStrackMI *t,
4796 TString shield,
4797 TString direction) {
4798 //-------------------------------------------------------------------
4799 // Propagate beyond SPD or SDD shield and correct for material
4800 // (material budget in different ways according to fUseTGeo value)
4801 //-------------------------------------------------------------------
4802
4803 // Define budget mode:
4804 // 0: material from AliITSRecoParam (hard coded)
9be1d1c7 4805 // 1: material from TGeo in steps of X cm (on the fly)
4806 // X = AliITSRecoParam::GetStepSizeTGeo()
e50912db 4807 // 2: material from lut
9be1d1c7 4808 // 3: material from TGeo in one step (same for all hypotheses)
e50912db 4809 Int_t mode;
4810 switch(fUseTGeo) {
4811 case 0:
4812 mode=0;
4813 break;
4814 case 1:
4815 mode=1;
4816 break;
4817 case 2:
4818 mode=2;
4819 break;
4820 case 3:
4821 if(fTrackingPhase.Contains("Clusters2Tracks"))
4822 { mode=3; } else { mode=1; }
4823 break;
4824 case 4:
4825 if(fTrackingPhase.Contains("Clusters2Tracks"))
4826 { mode=3; } else { mode=2; }
4827 break;
4828 default:
4829 mode=0;
4830 break;
4831 }
4832 if(fTrackingPhase.Contains("Default")) mode=0;
4833
4834 Float_t dir = (direction.Contains("inward") ? 1. : -1.);
4835 Double_t rToGo;
4836 Int_t shieldindex=0;
4837 if (shield.Contains("SDD")) { // SDDouter
4838 rToGo=(dir>0 ? AliITSRecoParam::GetrInsideShield(1) : AliITSRecoParam::GetrOutsideShield(1));
4839 shieldindex=1;
4840 } else if (shield.Contains("SPD")) { // SPDouter
4841 rToGo=(dir>0 ? AliITSRecoParam::GetrInsideShield(0) : AliITSRecoParam::GetrOutsideShield(0));
4842 shieldindex=0;
4843 } else {
4844 Error("CorrectForShieldMaterial"," Wrong shield name\n");
e50912db 4845 return 0;
4846 }
70e83b26 4847 Double_t xToGo;
4848 if (!t->GetLocalXat(rToGo,xToGo)) return 0;
e50912db 4849
4850 Int_t index=2*fCurrentEsdTrack+shieldindex;
4851
4852 Double_t xOverX0,x0,lengthTimesMeanDensity;
4853 Bool_t anglecorr=kTRUE;
9be1d1c7 4854 Int_t nsteps=1;
e50912db 4855
4856 switch(mode) {
4857 case 0:
4858 xOverX0 = AliITSRecoParam::Getdshield(shieldindex);
4859 x0 = AliITSRecoParam::GetX0shield(shieldindex);
4860 lengthTimesMeanDensity = xOverX0*x0;
9be1d1c7 4861 lengthTimesMeanDensity *= dir;
4862 if (!t->Propagate(xToGo)) return 0;
4863 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4864 break;
4865 case 1:
9be1d1c7 4866 nsteps= (Int_t)(TMath::Abs(t->GetX()-xToGo)/AliITSReconstructor::GetRecoParam()->GetStepSizeTGeo())+1;
4867 if (!t->PropagateToTGeo(xToGo,nsteps)) return 0; // cross the material and apply correction
e50912db 4868 break;
4869 case 2:
4870 if(fxOverX0Shield[shieldindex]<0) BuildMaterialLUT("Shields");
4871 xOverX0 = fxOverX0Shield[shieldindex];
4872 lengthTimesMeanDensity = fxTimesRhoShield[shieldindex];
9be1d1c7 4873 lengthTimesMeanDensity *= dir;
4874 if (!t->Propagate(xToGo)) return 0;
4875 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4876 break;
4877 case 3:
4878 if(!fxOverX0ShieldTrks || index<0 || index>=2*fNtracks) Error("CorrectForShieldMaterial","Incorrect usage of UseTGeo option!\n");
4879 if(fxOverX0ShieldTrks[index]<0) {
4880 if (!t->PropagateToTGeo(xToGo,1,xOverX0,lengthTimesMeanDensity)) return 0;
4881 Double_t angle=TMath::Sqrt((1.+t->GetTgl()*t->GetTgl())/
4882 (1.-t->GetSnp()*t->GetSnp()));
4883 fxOverX0ShieldTrks[index] = TMath::Abs(xOverX0)/angle;
4884 fxTimesRhoShieldTrks[index] = TMath::Abs(lengthTimesMeanDensity)/angle;
4885 return 1;
4886 }
4887 xOverX0 = fxOverX0ShieldTrks[index];
4888 lengthTimesMeanDensity = fxTimesRhoShieldTrks[index];
9be1d1c7 4889 lengthTimesMeanDensity *= dir;
4890 if (!t->Propagate(xToGo)) return 0;
4891 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4892 break;
4893 }
4894
e50912db 4895 return 1;
4896}
4897//------------------------------------------------------------------------
4898Int_t AliITStrackerMI::CorrectForLayerMaterial(AliITStrackMI *t,
4899 Int_t layerindex,
4900 Double_t oldGlobXYZ[3],
4901 TString direction) {
4902 //-------------------------------------------------------------------
4903 // Propagate beyond layer and correct for material
4904 // (material budget in different ways according to fUseTGeo value)
4905 //-------------------------------------------------------------------
4906
4907 // Define budget mode:
4908 // 0: material from AliITSRecoParam (hard coded)
9be1d1c7 4909 // 1: material from TGeo in stepsof X cm (on the fly)
4910 // X = AliITSRecoParam::GetStepSizeTGeo()
e50912db 4911 // 2: material from lut
9be1d1c7 4912 // 3: material from TGeo in one step (same for all hypotheses)
e50912db 4913 Int_t mode;
4914 switch(fUseTGeo) {
4915 case 0:
4916 mode=0;
4917 break;
4918 case 1:
4919 mode=1;
4920 break;
4921 case 2:
4922 mode=2;
4923 break;
4924 case 3:
4925 if(fTrackingPhase.Contains("Clusters2Tracks"))
4926 { mode=3; } else { mode=1; }
4927 break;
4928 case 4:
4929 if(fTrackingPhase.Contains("Clusters2Tracks"))
4930 { mode=3; } else { mode=2; }
4931 break;
4932 default:
4933 mode=0;
4934 break;
4935 }
4936 if(fTrackingPhase.Contains("Default")) mode=0;
4937
4938 Float_t dir = (direction.Contains("inward") ? 1. : -1.);
4939
4940 Double_t r=fgLayers[layerindex].GetR();
4941 Double_t deltar=(layerindex<2 ? 0.10*r : 0.05*r);
4942
4943 Double_t rToGo=TMath::Sqrt(t->GetX()*t->GetX()+t->GetY()*t->GetY())-deltar*dir;
70e83b26 4944 Double_t xToGo;
4945 if (!t->GetLocalXat(rToGo,xToGo)) return 0;
e50912db 4946
4947 Int_t index=6*fCurrentEsdTrack+layerindex;
4948
e50912db 4949
4950 Double_t xOverX0=0.0,x0=0.0,lengthTimesMeanDensity=0.0;
4951 Double_t mparam[7];
4952 Bool_t anglecorr=kTRUE;
9be1d1c7 4953 Int_t nsteps=1;
d634c32b 4954 Double_t rOld,xOld;
e50912db 4955
db355ee7 4956 Bool_t addTime = kFALSE;
e50912db 4957 switch(mode) {
4958 case 0:
4959 xOverX0 = fgLayers[layerindex].GetThickness(t->GetY(),t->GetZ(),x0);
4960 lengthTimesMeanDensity = xOverX0*x0;
9be1d1c7 4961 // Bring the track beyond the material
4962 if (!t->Propagate(xToGo)) return 0;
4963 lengthTimesMeanDensity *= dir;
4964 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4965 break;
4966 case 1:
d634c32b 4967 rOld=TMath::Sqrt(oldGlobXYZ[0]*oldGlobXYZ[0]+oldGlobXYZ[1]*oldGlobXYZ[1]);
9be1d1c7 4968 if (!t->GetLocalXat(rOld,xOld)) return 0;
4969 if (!t->Propagate(xOld)) return 0; // back before material (no correction)
4970 nsteps = (Int_t)(TMath::Abs(xOld-xToGo)/AliITSReconstructor::GetRecoParam()->GetStepSizeTGeo())+1;
db355ee7 4971 if (!t->PropagateToTGeo(xToGo,nsteps,addTime)) return 0; // cross the material and apply correction
e50912db 4972 break;
4973 case 2:
4974 if(fxOverX0Layer[layerindex]<0) BuildMaterialLUT("Layers");
4975 xOverX0 = fxOverX0Layer[layerindex];
4976 lengthTimesMeanDensity = fxTimesRhoLayer[layerindex];
9be1d1c7 4977 // Bring the track beyond the material
4978 if (!t->Propagate(xToGo)) return 0;
4979 lengthTimesMeanDensity *= dir;
4980 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 4981 break;
4982 case 3:
4983 if(!fxOverX0LayerTrks || index<0 || index>=6*fNtracks) Error("CorrectForLayerMaterial","Incorrect usage of UseTGeo option!\n");
9be1d1c7 4984 // Bring the track beyond the material
4985 if (!t->Propagate(xToGo)) return 0;
4986 Double_t globXYZ[3];
4987 if (!t->GetXYZ(globXYZ)) return 0;
4988 if (fxOverX0LayerTrks[index]<0) {
e50912db 4989 AliTracker::MeanMaterialBudget(oldGlobXYZ,globXYZ,mparam);
4990 if(mparam[1]>900000) return 0;
4991 Double_t angle=TMath::Sqrt((1.+t->GetTgl()*t->GetTgl())/
4992 (1.-t->GetSnp()*t->GetSnp()));
4993 xOverX0=mparam[1]/angle;
4994 lengthTimesMeanDensity=mparam[0]*mparam[4]/angle;
4995 fxOverX0LayerTrks[index] = TMath::Abs(xOverX0);
4996 fxTimesRhoLayerTrks[index] = TMath::Abs(lengthTimesMeanDensity);
4997 }
4998 xOverX0 = fxOverX0LayerTrks[index];
4999 lengthTimesMeanDensity = fxTimesRhoLayerTrks[index];
9be1d1c7 5000 lengthTimesMeanDensity *= dir;
5001 if (!t->CorrectForMeanMaterial(xOverX0,lengthTimesMeanDensity,anglecorr)) return 0;
e50912db 5002 break;
5003 }
5004
e50912db 5005 return 1;
5006}
5007//------------------------------------------------------------------------
5008void AliITStrackerMI::MakeTrksMaterialLUT(Int_t ntracks) {
5009 //-----------------------------------------------------------------
5010 // Initialize LUT for storing material for each prolonged track
5011 //-----------------------------------------------------------------
5012 fxOverX0PipeTrks = new Float_t[ntracks];
5013 fxTimesRhoPipeTrks = new Float_t[ntracks];
5014 fxOverX0ShieldTrks = new Float_t[ntracks*2];
5015 fxTimesRhoShieldTrks = new Float_t[ntracks*2];
5016 fxOverX0LayerTrks = new Float_t[ntracks*6];
5017 fxTimesRhoLayerTrks = new Float_t[ntracks*6];
5018
5019 for(Int_t i=0; i<ntracks; i++) {
5020 fxOverX0PipeTrks[i] = -1.;
5021 fxTimesRhoPipeTrks[i] = -1.;
5022 }
5023 for(Int_t j=0; j<ntracks*2; j++) {
5024 fxOverX0ShieldTrks[j] = -1.;
5025 fxTimesRhoShieldTrks[j] = -1.;
5026 }
5027 for(Int_t k=0; k<ntracks*6; k++) {
5028 fxOverX0LayerTrks[k] = -1.;
5029 fxTimesRhoLayerTrks[k] = -1.;
5030 }
5031
5032 fNtracks = ntracks;
5033
5034 return;
5035}
5036//------------------------------------------------------------------------
5037void AliITStrackerMI::DeleteTrksMaterialLUT() {
5038 //-----------------------------------------------------------------
5039 // Delete LUT for storing material for each prolonged track
5040 //-----------------------------------------------------------------
5041 if(fxOverX0PipeTrks) {
5042 delete [] fxOverX0PipeTrks; fxOverX0PipeTrks = 0;
5043 }
5044 if(fxOverX0ShieldTrks) {
5045 delete [] fxOverX0ShieldTrks; fxOverX0ShieldTrks = 0;
5046 }
5047
5048 if(fxOverX0LayerTrks) {
5049 delete [] fxOverX0LayerTrks; fxOverX0LayerTrks = 0;
5050 }
5051 if(fxTimesRhoPipeTrks) {
5052 delete [] fxTimesRhoPipeTrks; fxTimesRhoPipeTrks = 0;
5053 }
5054 if(fxTimesRhoShieldTrks) {
5055 delete [] fxTimesRhoShieldTrks; fxTimesRhoShieldTrks = 0;
5056 }
5057 if(fxTimesRhoLayerTrks) {
5058 delete [] fxTimesRhoLayerTrks; fxTimesRhoLayerTrks = 0;
5059 }
5060 return;
5061}
5062//------------------------------------------------------------------------
6518a6c5 5063Int_t AliITStrackerMI::CheckSkipLayer(AliITStrackMI *track,
5064 Int_t ilayer,Int_t idet) const {
2755f080 5065 //-----------------------------------------------------------------
5066 // This method is used to decide whether to allow a prolongation
5067 // without clusters, because we want to skip the layer.
5068 // In this case the return value is > 0:
5069 // return 1: the user requested to skip a layer
5070 // return 2: track outside z acceptance of SSD/SDD and will cross both SPD
5071 //-----------------------------------------------------------------
e43c066c 5072
2755f080 5073 if (AliITSReconstructor::GetRecoParam()->GetLayersToSkip(ilayer)) return 1;
51ad6848 5074
2755f080 5075 if (idet<0 && ilayer>1 && AliITSReconstructor::GetRecoParam()->GetExtendedEtaAcceptance()) {
5076 // check if track will cross SPD outer layer
5077 Double_t phiAtSPD2,zAtSPD2;
6518a6c5 5078 if (track->GetPhiZat(fgLayers[1].GetR(),phiAtSPD2,zAtSPD2)) {
2755f080 5079 if (TMath::Abs(zAtSPD2)<2.*AliITSRecoParam::GetSPDdetzlength()) return 2;
5080 }
5081 }
51ad6848 5082
2755f080 5083 return 0;
5084}
5085//------------------------------------------------------------------------
23197852 5086Int_t AliITStrackerMI::CheckDeadZone(AliITStrackMI *track,
ae00569a 5087 Int_t ilayer,Int_t idet,
1c97ce2f 5088 Double_t dz,Double_t dy,
23197852 5089 Bool_t noClusters) const {
6518a6c5 5090 //-----------------------------------------------------------------
5091 // This method is used to decide whether to allow a prolongation
ae00569a 5092 // without clusters, because there is a dead zone in the road.
6518a6c5 5093 // In this case the return value is > 0:
5094 // return 1: dead zone at z=0,+-7cm in SPD
23197852 5095 // return 2: all road is "bad" (dead or noisy) from the OCDB
5096 // return 3: something "bad" (dead or noisy) from the OCDB
6518a6c5 5097 //-----------------------------------------------------------------
5098
5099 // check dead zones at z=0,+-7cm in the SPD
5100 if (ilayer<2 && !AliITSReconstructor::GetRecoParam()->GetAddVirtualClustersInDeadZone()) {
5101 Double_t zmindead[3]={fSPDdetzcentre[0] + 0.5*AliITSRecoParam::GetSPDdetzlength(),
5102 fSPDdetzcentre[1] + 0.5*AliITSRecoParam::GetSPDdetzlength(),
5103 fSPDdetzcentre[2] + 0.5*AliITSRecoParam::GetSPDdetzlength()};
5104 Double_t zmaxdead[3]={fSPDdetzcentre[1] - 0.5*AliITSRecoParam::GetSPDdetzlength(),
5105 fSPDdetzcentre[2] - 0.5*AliITSRecoParam::GetSPDdetzlength(),
5106 fSPDdetzcentre[3] - 0.5*AliITSRecoParam::GetSPDdetzlength()};
5107 for (Int_t i=0; i<3; i++)
4187a601 5108 if (track->GetZ()-dz<zmaxdead[i] && track->GetZ()+dz>zmindead[i]) {
5109 AliDebug(2,Form("crack SPD %d",ilayer));
5110 return 1;
5111 }
6518a6c5 5112 }
5113
23197852 5114 // check bad zones from OCDB
5115 if (!AliITSReconstructor::GetRecoParam()->GetUseBadZonesFromOCDB()) return 0;
ae00569a 5116
23197852 5117 if (idet<0) return 0;
ae00569a 5118
23197852 5119 AliITSdetector &det=fgLayers[ilayer].GetDetector(idet);
5120
23197852 5121 Int_t detType=-1;
5122 Float_t detSizeFactorX=0.0001,detSizeFactorZ=0.0001;
5123 if (ilayer==0 || ilayer==1) { // ---------- SPD
5124 detType = 0;
5125 } else if (ilayer==2 || ilayer==3) { // ---------- SDD
5126 detType = 1;
5127 detSizeFactorX *= 2.;
5128 } else if (ilayer==4 || ilayer==5) { // ---------- SSD
5129 detType = 2;
5130 }
5131 AliITSsegmentation *segm = (AliITSsegmentation*)fDetTypeRec->GetSegmentationModel(detType);
5132 if (detType==2) segm->SetLayer(ilayer+1);
5133 Float_t detSizeX = detSizeFactorX*segm->Dx();
5134 Float_t detSizeZ = detSizeFactorZ*segm->Dz();
5135
5136 // check if the road overlaps with bad chips
5137 Float_t xloc,zloc;
4187a601 5138 LocalModuleCoord(ilayer,idet,track,xloc,zloc);
1c97ce2f 5139 Float_t zlocmin = zloc-dz;
5140 Float_t zlocmax = zloc+dz;
5141 Float_t xlocmin = xloc-dy;
5142 Float_t xlocmax = xloc+dy;
23197852 5143 Int_t chipsInRoad[100];
5144
4187a601 5145 // check if road goes out of detector
5146 Bool_t touchNeighbourDet=kFALSE;
5147 if (TMath::Abs(xlocmin)>0.5*detSizeX) {xlocmin=-0.5*detSizeX; touchNeighbourDet=kTRUE;}
5148 if (TMath::Abs(xlocmax)>0.5*detSizeX) {xlocmax=+0.5*detSizeX; touchNeighbourDet=kTRUE;}
5149 if (TMath::Abs(zlocmin)>0.5*detSizeZ) {zlocmin=-0.5*detSizeZ; touchNeighbourDet=kTRUE;}
5150 if (TMath::Abs(zlocmax)>0.5*detSizeZ) {zlocmax=+0.5*detSizeZ; touchNeighbourDet=kTRUE;}
5151 AliDebug(2,Form("layer %d det %d zmim zmax %f %f xmin xmax %f %f %f %f",ilayer,idet,zlocmin,zlocmax,xlocmin,xlocmax,detSizeZ,detSizeX));
5152
5153 // check if this detector is bad
5154 if (det.IsBad()) {
5155 AliDebug(2,Form("lay %d bad detector %d",ilayer,idet));
5156 if(!touchNeighbourDet) {
5157 return 2; // all detectors in road are bad
5158 } else {
5159 return 3; // at least one is bad
5160 }
5161 }
5162
23197852 5163 Int_t nChipsInRoad = segm->GetChipsInLocalWindow(chipsInRoad,zlocmin,zlocmax,xlocmin,xlocmax);
4187a601 5164 AliDebug(2,Form("lay %d nChipsInRoad %d",ilayer,nChipsInRoad));
23197852 5165 if (!nChipsInRoad) return 0;
5166
5167 Bool_t anyBad=kFALSE,anyGood=kFALSE;
5168 for (Int_t iCh=0; iCh<nChipsInRoad; iCh++) {
5169 if (chipsInRoad[iCh]<0 || chipsInRoad[iCh]>det.GetNChips()-1) continue;
4187a601 5170 AliDebug(2,Form(" chip %d bad %d",chipsInRoad[iCh],(Int_t)det.IsChipBad(chipsInRoad[iCh])));
23197852 5171 if (det.IsChipBad(chipsInRoad[iCh])) {
5172 anyBad=kTRUE;
5173 } else {
5174 anyGood=kTRUE;
5175 }
6518a6c5 5176 }
5177
4187a601 5178 if (!anyGood) {
5179 if(!touchNeighbourDet) {
5180 AliDebug(2,"all bad in road");
5181 return 2; // all chips in road are bad
5182 } else {
5183 return 3; // at least a bad chip in road
5184 }
5185 }
23197852 5186
4187a601 5187 if (anyBad) {
5188 AliDebug(2,"at least a bad in road");
5189 return 3; // at least a bad chip in road
5190 }
23197852 5191
5192
5193 if (!AliITSReconstructor::GetRecoParam()->GetUseSingleBadChannelsFromOCDB()
5194 || ilayer==4 || ilayer==5 // SSD
5195 || !noClusters) return 0;
5196
5197 // There are no clusters in road: check if there is at least
5198 // a bad SPD pixel or SDD anode
5199
4187a601 5200 Int_t idetInITS=idet;
5201 for(Int_t l=0;l<ilayer;l++) idetInITS+=AliITSgeomTGeo::GetNLadders(l+1)*AliITSgeomTGeo::GetNDetectors(l+1);
23197852 5202
4187a601 5203 if (fITSChannelStatus->AnyBadInRoad(idetInITS,zlocmin,zlocmax,xlocmin,xlocmax)) {
5204 AliDebug(2,Form("Bad channel in det %d of layer %d\n",idet,ilayer));
5205 return 3;
5206 }
5207 //if (fITSChannelStatus->FractionOfBadInRoad(idet,zlocmin,zlocmax,xlocmin,xlocmax) > AliITSReconstructor::GetRecoParam()->GetMinFractionOfBadInRoad()) return 3;
23197852 5208
6518a6c5 5209 return 0;
5210}
5211//------------------------------------------------------------------------
ae00569a 5212Bool_t AliITStrackerMI::LocalModuleCoord(Int_t ilayer,Int_t idet,
5213 AliITStrackMI *track,
5214 Float_t &xloc,Float_t &zloc) const {
5215 //-----------------------------------------------------------------
5216 // Gives position of track in local module ref. frame
5217 //-----------------------------------------------------------------
5218
5219 xloc=0.;
5220 zloc=0.;
5221
5222 if(idet<0) return kFALSE;
5223
5224 Int_t ndet=AliITSgeomTGeo::GetNDetectors(ilayer+1); // layers from 1 to 6
5225
5226 Int_t lad = Int_t(idet/ndet) + 1;
4a66240a 5227
ae00569a 5228 Int_t det = idet - (lad-1)*ndet + 1;
5229
5230 Double_t xyzGlob[3],xyzLoc[3];
5231
1c97ce2f 5232 AliITSdetector &detector = fgLayers[ilayer].GetDetector(idet);
5233 // take into account the misalignment: xyz at real detector plane
d1181f10 5234 if(!track->GetXYZAt(detector.GetRmisal(),GetBz(),xyzGlob)) return kFALSE;
ae00569a 5235
d1181f10 5236 if(!AliITSgeomTGeo::GlobalToLocal(ilayer+1,lad,det,xyzGlob,xyzLoc)) return kFALSE;
ae00569a 5237
5238 xloc = (Float_t)xyzLoc[0];
5239 zloc = (Float_t)xyzLoc[2];
5240
5241 return kTRUE;
5242}
5243//------------------------------------------------------------------------
0ed58a47 5244Bool_t AliITStrackerMI::IsOKForPlaneEff(AliITStrackMI* track, const Int_t *clusters, Int_t ilayer) const {
0e91092f 5245//
5246// Method to be optimized further:
5247// Aim: decide whether a track can be used for PlaneEff evaluation
5248// the decision is taken based on the track quality at the layer under study
5249// no information on the clusters on this layer has to be used
5250// The criterium is to reject tracks at boundaries between basic block (e.g. SPD chip)
5251// the cut is done on number of sigmas from the boundaries
5252//
5253// Input: Actual track, layer [0,5] under study
5254// Output: none
5255// Return: kTRUE if this is a good track
7167ae53 5256//
5257// it will apply a pre-selection to obtain good quality tracks.
5258// Here also you will have the possibility to put a control on the
5259// impact point of the track on the basic block, in order to exclude border regions
5260// this will be done by calling a proper method of the AliITSPlaneEff class.
5261//
5262// input: AliITStrackMI* track, ilayer= layer number [0,5]
0e91092f 5263// return: Bool_t -> kTRUE if usable track, kFALSE if not usable.
0ed58a47 5264//
5265 Int_t index[AliITSgeomTGeo::kNLayers];
5266 Int_t k;
5267 for (k=0; k<AliITSgeomTGeo::GetNLayers(); k++) index[k]=-1;
5268 //
5269 for (k=0; k<AliITSgeomTGeo::GetNLayers(); k++) {
5270 index[k]=clusters[k];
5271 }
5272
0e91092f 5273 if(!fPlaneEff)
a31a139f 5274 {AliWarning("IsOKForPlaneEff: null pointer to AliITSPlaneEff"); return kFALSE;}
8a32c4b5 5275 AliITSlayer &layer=fgLayers[ilayer];
5276 Double_t r=layer.GetR();
8a32c4b5 5277 AliITStrackMI tmp(*track);
5278
0ed58a47 5279// require a minimal number of cluster in other layers and eventually clusters in closest layers
5280 Int_t ncl=0;
5281 for(Int_t lay=AliITSgeomTGeo::kNLayers-1;lay>ilayer;lay--) {
5282 AliDebug(2,Form("trak=%d lay=%d ; index=%d ESD label= %d",tmp.GetLabel(),lay,
5283 tmp.GetClIndex(lay),((AliESDtrack*)tmp.GetESDtrack())->GetLabel())) ;
5284 if (tmp.GetClIndex(lay)>0) ncl++;
5285 }
5286 Bool_t nextout = kFALSE;
5287 if(ilayer==AliITSgeomTGeo::kNLayers-1) nextout=kTRUE; // you are already on the outermost layer
5288 else nextout = ((tmp.GetClIndex(ilayer+1)>0)? kTRUE : kFALSE );
5289 Bool_t nextin = kFALSE;
5290 if(ilayer==0) nextin=kTRUE; // you are already on the innermost layer
5291 else nextin = ((index[ilayer-1]>=0)? kTRUE : kFALSE );
5292 if(ncl<AliITSgeomTGeo::kNLayers-(ilayer+1)-AliITSReconstructor::GetRecoParam()->GetMaxMissingClustersPlaneEff())
5293 return kFALSE;
5294 if(AliITSReconstructor::GetRecoParam()->GetRequireClusterInOuterLayerPlaneEff() && !nextout) return kFALSE;
5295 if(AliITSReconstructor::GetRecoParam()->GetRequireClusterInInnerLayerPlaneEff() && !nextin) return kFALSE;
5296 if(tmp.Pt() < AliITSReconstructor::GetRecoParam()->GetMinPtPlaneEff()) return kFALSE;
5297 // if(AliITSReconstructor::GetRecoParam()->GetOnlyConstraintPlaneEff() && !tmp.GetConstrain()) return kFALSE;
5298
8a32c4b5 5299// detector number
5300 Double_t phi,z;
5301 if (!tmp.GetPhiZat(r,phi,z)) return kFALSE;
5302 Int_t idet=layer.FindDetectorIndex(phi,z);
5303 if(idet<0) { AliInfo(Form("cannot find detector"));
5304 return kFALSE;}
5305
5306 // here check if it has good Chi Square.
5307
5308 //propagate to the intersection with the detector plane
5309 const AliITSdetector &det=layer.GetDetector(idet);
5310 if (!tmp.Propagate(det.GetPhi(),det.GetR())) return kFALSE;
5311
5312 Float_t locx; //
5313 Float_t locz; //
0e91092f 5314 if(!LocalModuleCoord(ilayer,idet,&tmp,locx,locz)) return kFALSE;
8a32c4b5 5315 UInt_t key=fPlaneEff->GetKeyFromDetLocCoord(ilayer,idet,locx,locz);
5316 if(key>fPlaneEff->Nblock()) return kFALSE;
5317 Float_t blockXmn,blockXmx,blockZmn,blockZmx;
5318 if (!fPlaneEff->GetBlockBoundaries(key,blockXmn,blockXmx,blockZmn,blockZmx)) return kFALSE;
8a32c4b5 5319 //***************
0e91092f 5320 // DEFINITION OF SEARCH ROAD FOR accepting a track
8a32c4b5 5321 //
5322 //For the time being they are hard-wired, later on from AliITSRecoParam
0e91092f 5323 // Double_t nsigx=AliITSRecoParam::GetNSigXFarFromBoundary();
5324 // Double_t nsigz=AliITSRecoParam::GetNSigZFarFromBoundary();
5325 Double_t nsigz=4;
5326 Double_t nsigx=4;
5327 Double_t dx=nsigx*TMath::Sqrt(tmp.GetSigmaY2()); // those are precisions in the tracking reference system
5328 Double_t dz=nsigz*TMath::Sqrt(tmp.GetSigmaZ2()); // Use it also for the module reference system, as it is
5329 // done for RecPoints
8a32c4b5 5330
1c97ce2f 5331 // exclude tracks at boundary between detectors
0e91092f 5332 //Double_t boundaryWidth=AliITSRecoParam::GetBoundaryWidthPlaneEff();
8a32c4b5 5333 Double_t boundaryWidth=0; // for the time being hard-wired, later on from AliITSRecoParam
a31a139f 5334 AliDebug(2,Form("Tracking: track impact x=%f, y=%f, z=%f",tmp.GetX(), tmp.GetY(), tmp.GetZ()));
0e91092f 5335 AliDebug(2,Form("Local: track impact x=%f, z=%f",locx,locz));
5336 AliDebug(2,Form("Search Road. Tracking: dy=%f , dz=%f",dx,dz));
8a32c4b5 5337
0e91092f 5338 if ( (locx-dx < blockXmn+boundaryWidth) ||
5339 (locx+dx > blockXmx-boundaryWidth) ||
5340 (locz-dz < blockZmn+boundaryWidth) ||
5341 (locz+dz > blockZmx-boundaryWidth) ) return kFALSE;
8a32c4b5 5342 return kTRUE;
7167ae53 5343}
5344//------------------------------------------------------------------------
5345void AliITStrackerMI::UseTrackForPlaneEff(AliITStrackMI* track, Int_t ilayer) {
5346//
5347// This Method has to be optimized! For the time-being it uses the same criteria
5348// as those used in the search of extra clusters for overlapping modules.
5349//
5350// Method Purpose: estabilish whether a track has produced a recpoint or not
5351// in the layer under study (For Plane efficiency)
5352//
5353// inputs: AliITStrackMI* track (pointer to a usable track)
5354// outputs: none
5355// side effects: update (by 1 count) the Plane Efficiency statistics of the basic block
5356// traversed by this very track. In details:
5357// - if a cluster can be associated to the track then call
5358// AliITSPlaneEff::UpDatePlaneEff(key,kTRUE);
5359// - if not, the AliITSPlaneEff::UpDatePlaneEff(key,kFALSE) is called
5360//
a31a139f 5361 if(!fPlaneEff)
5362 {AliWarning("UseTrackForPlaneEff: null pointer to AliITSPlaneEff"); return;}
7167ae53 5363 AliITSlayer &layer=fgLayers[ilayer];
5364 Double_t r=layer.GetR();
7167ae53 5365 AliITStrackMI tmp(*track);
5366
5367// detector number
5368 Double_t phi,z;
5369 if (!tmp.GetPhiZat(r,phi,z)) return;
5370 Int_t idet=layer.FindDetectorIndex(phi,z);
5371
8a32c4b5 5372 if(idet<0) { AliInfo(Form("cannot find detector"));
5373 return;}
7167ae53 5374
7167ae53 5375
0e91092f 5376//propagate to the intersection with the detector plane
7167ae53 5377 const AliITSdetector &det=layer.GetDetector(idet);
5378 if (!tmp.Propagate(det.GetPhi(),det.GetR())) return;
8a32c4b5 5379
1c97ce2f 5380
0e91092f 5381//***************
5382// DEFINITION OF SEARCH ROAD FOR CLUSTERS SELECTION
5383//
5384 Double_t dz=AliITSReconstructor::GetRecoParam()->GetNSigmaRoadZ()*
5385 TMath::Sqrt(tmp.GetSigmaZ2() +
5386 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
5387 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
5388 AliITSReconstructor::GetRecoParam()->GetSigmaZ2(ilayer));
5389 Double_t dy=AliITSReconstructor::GetRecoParam()->GetNSigmaRoadY()*
5390 TMath::Sqrt(tmp.GetSigmaY2() +
5391 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
5392 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
5393 AliITSReconstructor::GetRecoParam()->GetSigmaY2(ilayer));
5394
5395// road in global (rphi,z) [i.e. in tracking ref. system]
5396 Double_t zmin = tmp.GetZ() - dz;
5397 Double_t zmax = tmp.GetZ() + dz;
5398 Double_t ymin = tmp.GetY() + r*det.GetPhi() - dy;
5399 Double_t ymax = tmp.GetY() + r*det.GetPhi() + dy;
5400
5401// select clusters in road
7167ae53 5402 layer.SelectClusters(zmin,zmax,ymin,ymax);
5403
0e91092f 5404// Define criteria for track-cluster association
7167ae53 5405 Double_t msz = tmp.GetSigmaZ2() +
5406 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
5407 AliITSReconstructor::GetRecoParam()->GetNSigmaZLayerForRoadZ()*
5408 AliITSReconstructor::GetRecoParam()->GetSigmaZ2(ilayer);
5409 Double_t msy = tmp.GetSigmaY2() +
5410 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
5411 AliITSReconstructor::GetRecoParam()->GetNSigmaYLayerForRoadY()*
5412 AliITSReconstructor::GetRecoParam()->GetSigmaY2(ilayer);
8a32c4b5 5413 if (tmp.GetConstrain()) {
7167ae53 5414 msz *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadZC();
5415 msy *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadYC();
8a32c4b5 5416 } else {
5417 msz *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadZNonC();
5418 msy *= AliITSReconstructor::GetRecoParam()->GetNSigma2RoadYNonC();
5419 }
7167ae53 5420 msz = 1./msz; // 1/RoadZ^2
5421 msy = 1./msy; // 1/RoadY^2
0e91092f 5422//
7167ae53 5423
5424 const AliITSRecPoint *cl=0; Int_t clidx=-1, ci=-1;
5425 Int_t idetc=-1;
8a32c4b5 5426 Double_t chi2trkcl=1000.*AliITSReconstructor::GetRecoParam()->GetMaxChi2();
5427 //Double_t tolerance=0.2;
5428 /*while ((cl=layer.GetNextCluster(clidx))!=0) {
7167ae53 5429 idetc = cl->GetDetectorIndex();
5430 if(idet!=idetc) continue;
5431 //Int_t ilay = cl->GetLayer();
5432
5433 if (TMath::Abs(tmp.GetZ() - cl->GetZ()) > tolerance) continue;
5434 if (TMath::Abs(tmp.GetY() - cl->GetY()) > tolerance) continue;
5435
5436 Double_t chi2=tmp.GetPredictedChi2(cl);
8a32c4b5 5437 if (chi2<chi2trkcl) { chi2trkcl=chi2; ci=clidx; }
5438 }*/
5439 Float_t locx; //
5440 Float_t locz; //
0e91092f 5441 if(!LocalModuleCoord(ilayer,idet,&tmp,locx,locz)) return;
7167ae53 5442//
5443 AliDebug(2,Form("ilayer= %d, idet=%d, x= %f, z=%f",ilayer,idet,locx,locz));
5444 UInt_t key=fPlaneEff->GetKeyFromDetLocCoord(ilayer,idet,locx,locz);
5445 if(key>fPlaneEff->Nblock()) return;
5446 Bool_t found=kFALSE;
8a32c4b5 5447 //if (ci>=0) {
1cc5cedc 5448 Double_t chi2;
8a32c4b5 5449 while ((cl=layer.GetNextCluster(clidx))!=0) {
5450 idetc = cl->GetDetectorIndex();
5451 if(idet!=idetc) continue;
5452 // here real control to see whether the cluster can be associated to the track.
5453 // cluster not associated to track
5454 if ( (tmp.GetZ()-cl->GetZ())*(tmp.GetZ()-cl->GetZ())*msz +
5455 (tmp.GetY()-cl->GetY())*(tmp.GetY()-cl->GetY())*msy > 1. ) continue;
5456 // calculate track-clusters chi2
1cc5cedc 5457 chi2 = GetPredictedChi2MI(&tmp,cl,ilayer); // note that this method change track tmp
5458 // in particular, the error associated to the cluster
8a32c4b5 5459 //Double_t chi2 = tmp.GetPredictedChi(cl); // this method does not change track tmp
5460 // chi2 cut
5461 if (chi2 > AliITSReconstructor::GetRecoParam()->GetMaxChi2s(ilayer)) continue;
7167ae53 5462 found=kTRUE;
8a32c4b5 5463 if (chi2<chi2trkcl) { chi2trkcl=chi2; ci=clidx; } // this just to trace which cluster is selected
7167ae53 5464 // track->SetExtraCluster(ilayer,(ilayer<<28)+ci);
5465 // track->SetExtraModule(ilayer,idetExtra);
5466 }
5467 if(!fPlaneEff->UpDatePlaneEff(found,key))
8a32c4b5 5468 AliWarning(Form("UseTrackForPlaneEff: cannot UpDate PlaneEff for key=%d",key));
5fbd4fd6 5469 if(fPlaneEff->GetCreateHistos()&& AliITSReconstructor::GetRecoParam()->GetHistoPlaneEff()) {
1cc5cedc 5470 Float_t tr[4]={99999.,99999.,9999.,9999.}; // initialize to high values
5471 Float_t clu[4]={-99999.,-99999.,9999.,9999.}; // (in some cases GetCov fails)
5472 Int_t cltype[2]={-999,-999};
0e91092f 5473
5474 tr[0]=locx;
5475 tr[1]=locz;
5476 tr[2]=TMath::Sqrt(tmp.GetSigmaY2()); // those are precisions in the tracking reference system
5477 tr[3]=TMath::Sqrt(tmp.GetSigmaZ2()); // Use it also for the module reference system, as it is
5478
3ebe30ad 5479 if (found){
5480 clu[0]=layer.GetCluster(ci)->GetDetLocalX();
5481 clu[1]=layer.GetCluster(ci)->GetDetLocalZ();
5482 cltype[0]=layer.GetCluster(ci)->GetNy();
5483 cltype[1]=layer.GetCluster(ci)->GetNz();
1cc5cedc 5484
5485 // Without the following 6 lines you would retrieve the nominal error of a cluster (e.g. for the SPD:
5486 // X->50/sqrt(12)=14 micron Z->450/sqrt(12)= 120 micron)
5487 // Within AliTrackerMI/AliTrackMI the error on the cluster is associated to the AliITStrackMI (fSigmaY,Z)
5488 // It is computed properly by calling the method
5489 // AliITStrackerMI::GetPredictedChi2MI(AliITStrackMI* track, const AliITSRecPoint *cluster,Int_t layer)
5490 // T
5491 //Double_t x=0.5*(tmp.GetX()+layer.GetCluster(ci)->GetX()); // Take into account the mis-alignment
5492 //if (tmp.PropagateTo(x,0.,0.)) {
5493 chi2=GetPredictedChi2MI(&tmp,layer.GetCluster(ci),ilayer);
5494 AliCluster c(*layer.GetCluster(ci));
5495 c.SetSigmaY2(tmp.GetSigmaY(ilayer)*tmp.GetSigmaY(ilayer));
5496 c.SetSigmaZ2(tmp.GetSigmaZ(ilayer)*tmp.GetSigmaZ(ilayer));
1cc5cedc 5497 //if (layer.GetCluster(ci)->GetGlobalCov(cov)) // by using this, instead, you got nominal cluster errors
0e91092f 5498 clu[2]=TMath::Sqrt(c.GetSigmaY2());
5499 clu[3]=TMath::Sqrt(c.GetSigmaZ2());
1cc5cedc 5500 //}
3ebe30ad 5501 }
5502 fPlaneEff->FillHistos(key,found,tr,clu,cltype);
5fbd4fd6 5503 }
7167ae53 5504return;
5505}
47cdc446 5506