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a9e2aefa 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
88cb7938 16/* $Id$ */
a9e2aefa 17
3831f268 18////////////////////////////////////
a9e2aefa 19//
20// MUON event reconstructor in ALICE
21//
22// This class contains as data:
23// * the parameters for the event reconstruction
24// * a pointer to the array of hits to be reconstructed (the event)
25// * a pointer to the array of segments made with these hits inside each station
26// * a pointer to the array of reconstructed tracks
27//
28// It contains as methods, among others:
29// * MakeEventToBeReconstructed to build the array of hits to be reconstructed
30// * MakeSegments to build the segments
31// * MakeTracks to build the tracks
3831f268 32//
33////////////////////////////////////
a9e2aefa 34
ae17f568 35#include <stdlib.h>
30178c30 36#include <Riostream.h>
37#include <TDirectory.h>
38#include <TFile.h>
39#include <TMatrixD.h> //AZ
a9e2aefa 40
3831f268 41#include "AliMUONEventReconstructor.h"
30178c30 42#include "AliMUON.h"
29fc2c86 43#include "AliMUONConstants.h"
30178c30 44#include "AliMUONHit.h"
a9e2aefa 45#include "AliMUONHitForRec.h"
276c44b7 46#include "AliMUONTriggerTrack.h"
276c44b7 47#include "AliMUONTriggerCircuit.h"
a9e2aefa 48#include "AliMUONRawCluster.h"
276c44b7 49#include "AliMUONLocalTrigger.h"
52c9bc11 50#include "AliMUONGlobalTrigger.h"
3831f268 51#include "AliMUONRecoEvent.h"
52#include "AliMUONSegment.h"
a9e2aefa 53#include "AliMUONTrack.h"
a9e2aefa 54#include "AliMUONTrackHit.h"
94de3818 55#include "AliMagF.h"
3831f268 56#include "AliRun.h" // for gAlice
88cb7938 57#include "AliRunLoader.h"
58#include "AliLoader.h"
83dbc640 59#include "AliMUONTrackK.h" //AZ
5d12ce38 60#include "AliMC.h"
8c343c7c 61#include "AliLog.h"
29fc2c86 62#include "AliTrackReference.h"
a9e2aefa 63
a9e2aefa 64//************* Defaults parameters for reconstruction
343146bf 65const Double_t AliMUONEventReconstructor::fgkDefaultMinBendingMomentum = 3.0;
66const Double_t AliMUONEventReconstructor::fgkDefaultMaxBendingMomentum = 500.0;
67const Double_t AliMUONEventReconstructor::fgkDefaultMaxChi2 = 100.0;
68const Double_t AliMUONEventReconstructor::fgkDefaultMaxSigma2Distance = 16.0;
69const Double_t AliMUONEventReconstructor::fgkDefaultBendingResolution = 0.01;
70const Double_t AliMUONEventReconstructor::fgkDefaultNonBendingResolution = 0.144;
71const Double_t AliMUONEventReconstructor::fgkDefaultChamberThicknessInX0 = 0.03;
a9e2aefa 72// Simple magnetic field:
73// Value taken from macro MUONtracking.C: 0.7 T, hence 7 kG
74// Length and Position from reco_muon.F, with opposite sign:
75// Length = ZMAGEND-ZCOIL
76// Position = (ZMAGEND+ZCOIL)/2
77// to be ajusted differently from real magnetic field ????
343146bf 78const Double_t AliMUONEventReconstructor::fgkDefaultSimpleBValue = 7.0;
79const Double_t AliMUONEventReconstructor::fgkDefaultSimpleBLength = 428.0;
80const Double_t AliMUONEventReconstructor::fgkDefaultSimpleBPosition = 1019.0;
29fc2c86 81const Int_t AliMUONEventReconstructor::fgkDefaultRecTrackRefHits = 0;
343146bf 82const Double_t AliMUONEventReconstructor::fgkDefaultEfficiency = 0.95;
a9e2aefa 83
343146bf 84const Int_t AliMUONEventReconstructor::fgkDefaultPrintLevel = -1;
a9e2aefa 85
86ClassImp(AliMUONEventReconstructor) // Class implementation in ROOT context
87
88 //__________________________________________________________________________
52c9bc11 89AliMUONEventReconstructor::AliMUONEventReconstructor(AliLoader* loader)
30178c30 90 : TObject()
a9e2aefa 91{
92 // Constructor for class AliMUONEventReconstructor
93 SetReconstructionParametersToDefaults();
83dbc640 94 fTrackMethod = 1; //AZ - tracking method (1-default, 2-Kalman)
a9e2aefa 95 // Memory allocation for the TClonesArray of hits for reconstruction
96 // Is 10000 the right size ????
97 fHitsForRecPtr = new TClonesArray("AliMUONHitForRec", 10000);
98 fNHitsForRec = 0; // really needed or GetEntriesFast sufficient ????
99 // Memory allocation for the TClonesArray's of segments in stations
100 // Is 2000 the right size ????
30178c30 101 for (Int_t st = 0; st < fgkMaxMuonTrackingStations; st++) {
a9e2aefa 102 fSegmentsPtr[st] = new TClonesArray("AliMUONSegment", 2000);
103 fNSegments[st] = 0; // really needed or GetEntriesFast sufficient ????
104 }
105 // Memory allocation for the TClonesArray of reconstructed tracks
106 // Is 10 the right size ????
107 fRecTracksPtr = new TClonesArray("AliMUONTrack", 10);
108 fNRecTracks = 0; // really needed or GetEntriesFast sufficient ????
276c44b7 109// trigger tracks
110 fRecTriggerTracksPtr = new TClonesArray("AliMUONTriggerTrack", 10);
111 fNRecTriggerTracks = 0; // really needed or GetEntriesFast sufficient ????
8429a5e4 112 // Memory allocation for the TClonesArray of hits on reconstructed tracks
113 // Is 100 the right size ????
b035a148 114 //AZ fRecTrackHitsPtr = new TClonesArray("AliMUONTrack", 100);
115 fRecTrackHitsPtr = new TClonesArray("AliMUONTrackHit", 100);
8429a5e4 116 fNRecTrackHits = 0; // really needed or GetEntriesFast sufficient ????
a9e2aefa 117
5b64e914 118 // Sign of fSimpleBValue according to sign of Bx value at (50,50,-950).
a6f03ddb 119 Float_t b[3], x[3];
5b64e914 120 x[0] = 50.; x[1] = 50.; x[2] = -950.;
a6f03ddb 121 gAlice->Field()->Field(x, b);
065bd0e1 122 fSimpleBValue = TMath::Sign(fSimpleBValue,(Double_t) b[0]);
5b64e914 123 fSimpleBPosition = TMath::Sign(fSimpleBPosition,(Double_t) x[2]);
a6f03ddb 124 // See how to get fSimple(BValue, BLength, BPosition)
125 // automatically calculated from the actual magnetic field ????
a9e2aefa 126
127 if (fPrintLevel >= 0) {
a6f03ddb 128 cout << "AliMUONEventReconstructor constructed with defaults" << endl; Dump();
129 cout << endl << "Magnetic field from root file:" << endl;
130 gAlice->Field()->Dump();
131 cout << endl;
132 }
c7ba256d 133
29fc2c86 134 // Initializions for track ref. background events
135 fBkgTrackRefFile = 0;
136 fBkgTrackRefTK = 0;
137 fBkgTrackRefParticles = 0;
138 fBkgTrackRefTTR = 0;
139 fBkgTrackRefEventNumber = -1;
47a6b602 140
c7ba256d 141 // Initialize to 0 pointers to RecoEvent, tree and tree file
142 fRecoEvent = 0;
143 fEventTree = 0;
144 fTreeFile = 0;
52c9bc11 145
146 // initialize loader's
147 fLoader = loader;
148
149 // initialize container
150 fMUONData = new AliMUONData(fLoader,"MUON","MUON");
151
a9e2aefa 152 return;
153}
52c9bc11 154 //__________________________________________________________________________
30178c30 155AliMUONEventReconstructor::AliMUONEventReconstructor (const AliMUONEventReconstructor& rhs)
156 : TObject(rhs)
9cbdf048 157{
30178c30 158// Protected copy constructor
159
8c343c7c 160 AliFatal("Not implemented.");
9cbdf048 161}
162
30178c30 163AliMUONEventReconstructor &
164AliMUONEventReconstructor::operator=(const AliMUONEventReconstructor& rhs)
9cbdf048 165{
30178c30 166// Protected assignement operator
167
168 if (this == &rhs) return *this;
169
8c343c7c 170 AliFatal("Not implemented.");
30178c30 171
172 return *this;
9cbdf048 173}
174
a9e2aefa 175 //__________________________________________________________________________
176AliMUONEventReconstructor::~AliMUONEventReconstructor(void)
177{
178 // Destructor for class AliMUONEventReconstructor
c7ba256d 179 if (fTreeFile) {
180 fTreeFile->Close();
181 delete fTreeFile;
182 }
183// if (fEventTree) delete fEventTree;
184 if (fRecoEvent) delete fRecoEvent;
a9e2aefa 185 delete fHitsForRecPtr; // Correct destruction of everything ???? or delete [] ????
30178c30 186 for (Int_t st = 0; st < fgkMaxMuonTrackingStations; st++)
a9e2aefa 187 delete fSegmentsPtr[st]; // Correct destruction of everything ????
188 return;
189}
190
191 //__________________________________________________________________________
192void AliMUONEventReconstructor::SetReconstructionParametersToDefaults(void)
193{
194 // Set reconstruction parameters to default values
195 // Would be much more convenient with a structure (or class) ????
343146bf 196 fMinBendingMomentum = fgkDefaultMinBendingMomentum;
197 fMaxBendingMomentum = fgkDefaultMaxBendingMomentum;
198 fMaxChi2 = fgkDefaultMaxChi2;
199 fMaxSigma2Distance = fgkDefaultMaxSigma2Distance;
a9e2aefa 200
9cbdf048 201 AliMUON *pMUON = (AliMUON*) gAlice->GetModule("MUON");
a9e2aefa 202 // ******** Parameters for making HitsForRec
203 // minimum radius,
204 // like in TRACKF_STAT:
205 // 2 degrees for stations 1 and 2, or ch(0...) from 0 to 3;
206 // 30 cm for stations 3 to 5, or ch(0...) from 4 to 9
343146bf 207 for (Int_t ch = 0; ch < fgkMaxMuonTrackingChambers; ch++) {
9cbdf048 208 if (ch < 4) fRMin[ch] = TMath::Abs((&(pMUON->Chamber(ch)))->Z()) *
a9e2aefa 209 2.0 * TMath::Pi() / 180.0;
210 else fRMin[ch] = 30.0;
d0bfce8d 211 // maximum radius at 10 degrees and Z of chamber
212 fRMax[ch] = TMath::Abs((&(pMUON->Chamber(ch)))->Z()) *
213 10.0 * TMath::Pi() / 180.0;
a9e2aefa 214 }
a9e2aefa 215
216 // ******** Parameters for making segments
217 // should be parametrized ????
218 // according to interval between chambers in a station ????
219 // Maximum distance in non bending plane
220 // 5 * 0.22 just to remember the way it was made in TRACKF_STAT
221 // SIGCUT*DYMAX(IZ)
30178c30 222 for (Int_t st = 0; st < fgkMaxMuonTrackingStations; st++)
a9e2aefa 223 fSegmentMaxDistNonBending[st] = 5. * 0.22;
860cef81 224 // Maximum distance in bending plane:
225 // values from TRACKF_STAT, corresponding to (J psi 20cm),
226 // scaled to the real distance between chambers in a station
ef21c79e 227 fSegmentMaxDistBending[0] = TMath::Abs( 1.5 *
228 ((&(pMUON->Chamber(1)))->Z() - (&(pMUON->Chamber(0)))->Z()) / 20.0);
e516b01d 229 fSegmentMaxDistBending[1] = TMath::Abs( 1.5 *
ef21c79e 230 ((&(pMUON->Chamber(3)))->Z() - (&(pMUON->Chamber(2)))->Z()) / 20.0);
e516b01d 231 fSegmentMaxDistBending[2] = TMath::Abs( 3.0 *
ef21c79e 232 ((&(pMUON->Chamber(5)))->Z() - (&(pMUON->Chamber(4)))->Z()) / 20.0);
e516b01d 233 fSegmentMaxDistBending[3] = TMath::Abs( 6.0 *
ef21c79e 234 ((&(pMUON->Chamber(7)))->Z() - (&(pMUON->Chamber(6)))->Z()) / 20.0);
e516b01d 235 fSegmentMaxDistBending[4] = TMath::Abs( 6.0 *
ef21c79e 236 ((&(pMUON->Chamber(9)))->Z() - (&(pMUON->Chamber(8)))->Z()) / 20.0);
a9e2aefa 237
343146bf 238 fBendingResolution = fgkDefaultBendingResolution;
239 fNonBendingResolution = fgkDefaultNonBendingResolution;
240 fChamberThicknessInX0 = fgkDefaultChamberThicknessInX0;
241 fSimpleBValue = fgkDefaultSimpleBValue;
242 fSimpleBLength = fgkDefaultSimpleBLength;
243 fSimpleBPosition = fgkDefaultSimpleBPosition;
29fc2c86 244 fRecTrackRefHits = fgkDefaultRecTrackRefHits;
343146bf 245 fEfficiency = fgkDefaultEfficiency;
246 fPrintLevel = fgkDefaultPrintLevel;
a9e2aefa 247 return;
248}
249
250//__________________________________________________________________________
3831f268 251Double_t AliMUONEventReconstructor::GetImpactParamFromBendingMomentum(Double_t BendingMomentum) const
a9e2aefa 252{
253 // Returns impact parameter at vertex in bending plane (cm),
254 // from the signed bending momentum "BendingMomentum" in bending plane (GeV/c),
255 // using simple values for dipole magnetic field.
065bd0e1 256 // The sign of "BendingMomentum" is the sign of the charge.
a9e2aefa 257 return (-0.0003 * fSimpleBValue * fSimpleBLength * fSimpleBPosition /
258 BendingMomentum);
259}
260
261//__________________________________________________________________________
3831f268 262Double_t AliMUONEventReconstructor::GetBendingMomentumFromImpactParam(Double_t ImpactParam) const
a9e2aefa 263{
264 // Returns signed bending momentum in bending plane (GeV/c),
065bd0e1 265 // the sign being the sign of the charge for particles moving forward in Z,
a9e2aefa 266 // from the impact parameter "ImpactParam" at vertex in bending plane (cm),
267 // using simple values for dipole magnetic field.
a9e2aefa 268 return (-0.0003 * fSimpleBValue * fSimpleBLength * fSimpleBPosition /
269 ImpactParam);
270}
271
272//__________________________________________________________________________
29fc2c86 273void AliMUONEventReconstructor::SetBkgTrackRefFile(Text_t *BkgTrackRefFileName)
a9e2aefa 274{
29fc2c86 275 // Set background file ... for track ref. hits
a9e2aefa 276 // Must be called after having loaded the firts signal event
277 if (fPrintLevel >= 0) {
29fc2c86 278 cout << "Enter SetBkgTrackRefFile with BkgTrackRefFileName ``"
279 << BkgTrackRefFileName << "''" << endl;}
280 if (strlen(BkgTrackRefFileName)) {
281 // BkgTrackRefFileName not empty: try to open the file
a9e2aefa 282 if (fPrintLevel >= 2) {cout << "Before File(Bkg)" << endl; gDirectory->Dump();}
29fc2c86 283 fBkgTrackRefFile = new TFile(BkgTrackRefFileName);
a9e2aefa 284 if (fPrintLevel >= 2) {cout << "After File(Bkg)" << endl; gDirectory->Dump();}
29fc2c86 285 if (fBkgTrackRefFile-> IsOpen()) {
a9e2aefa 286 if (fPrintLevel >= 0) {
29fc2c86 287 cout << "Background for Track ref. hits in file: ``" << BkgTrackRefFileName
a9e2aefa 288 << "'' successfully opened" << endl;}
289 }
290 else {
29fc2c86 291 cout << "Background for Track Ref. hits in file: " << BkgTrackRefFileName << endl;
a9e2aefa 292 cout << "NOT FOUND: EXIT" << endl;
293 exit(0); // right instruction for exit ????
294 }
295 // Arrays for "particles" and "hits"
29fc2c86 296 fBkgTrackRefParticles = new TClonesArray("TParticle", 200);
a9e2aefa 297 // Event number to -1 for initialization
29fc2c86 298 fBkgTrackRefEventNumber = -1;
a9e2aefa 299 // Back to the signal file:
300 // first signal event must have been loaded previously,
301 // otherwise, Segmentation violation at the next instruction
302 // How is it possible to do smething better ????
303 ((gAlice->TreeK())->GetCurrentFile())->cd();
304 if (fPrintLevel >= 2) {cout << "After cd(gAlice)" << endl; gDirectory->Dump();}
305 }
306 return;
307}
308
309//__________________________________________________________________________
29fc2c86 310void AliMUONEventReconstructor::NextBkgTrackRefEvent(void)
a9e2aefa 311{
29fc2c86 312 // Get next event in background file for track ref. hits
a9e2aefa 313 // Goes back to event number 0 when end of file is reached
314 char treeName[20];
a9e2aefa 315 if (fPrintLevel >= 0) {
29fc2c86 316 cout << "Enter NextBkgTrackRefEvent" << endl;}
a9e2aefa 317 // Clean previous event
29fc2c86 318 if(fBkgTrackRefTK) delete fBkgTrackRefTK;
319 fBkgTrackRefTK = NULL;
320 if(fBkgTrackRefParticles) fBkgTrackRefParticles->Clear();
321 if(fBkgTrackRefTTR) delete fBkgTrackRefTTR;
322 fBkgTrackRefTTR = NULL;
a9e2aefa 323 // Increment event number
29fc2c86 324 fBkgTrackRefEventNumber++;
a9e2aefa 325 // Get access to Particles and Hits for event from background file
326 if (fPrintLevel >= 2) {cout << "Before cd(Bkg)" << endl; gDirectory->Dump();}
29fc2c86 327 fBkgTrackRefFile->cd();
a9e2aefa 328 if (fPrintLevel >= 2) {cout << "After cd(Bkg)" << endl; gDirectory->Dump();}
329 // Particles: TreeK for event and branch "Particles"
29fc2c86 330 sprintf(treeName, "TreeK%d", fBkgTrackRefEventNumber);
331 fBkgTrackRefTK = (TTree*)gDirectory->Get(treeName);
332 if (!fBkgTrackRefTK) {
a9e2aefa 333 if (fPrintLevel >= 0) {
334 cout << "Cannot find Kine Tree for background event: " <<
29fc2c86 335 fBkgTrackRefEventNumber << endl;
a9e2aefa 336 cout << "Goes back to event 0" << endl;
337 }
29fc2c86 338 fBkgTrackRefEventNumber = 0;
339 sprintf(treeName, "TreeK%d", fBkgTrackRefEventNumber);
340 fBkgTrackRefTK = (TTree*)gDirectory->Get(treeName);
341 if (!fBkgTrackRefTK) {
342 AliError(Form("cannot find Kine Tree for background event: %d",fBkgTrackRefEventNumber));
8c343c7c 343 exit(0);
a9e2aefa 344 }
345 }
29fc2c86 346 if (fBkgTrackRefTK)
347 fBkgTrackRefTK->SetBranchAddress("Particles", &fBkgTrackRefParticles);
348 fBkgTrackRefTK->GetEvent(0); // why event 0 ???? necessary ????
a9e2aefa 349 // Hits: TreeH for event and branch "MUON"
29fc2c86 350 sprintf(treeName, "TreeTR%d", fBkgTrackRefEventNumber);
351 fBkgTrackRefTTR = (TTree*)gDirectory->Get(treeName);
352 if (!fBkgTrackRefTTR) {
353 AliError(Form("cannot find Hits Tree for background event: %d",fBkgTrackRefEventNumber));
a9e2aefa 354 exit(0);
355 }
29fc2c86 356 fBkgTrackRefTTR->GetEntries(); // necessary ????
a9e2aefa 357 // Back to the signal file
358 ((gAlice->TreeK())->GetCurrentFile())->cd();
359 if (fPrintLevel >= 2) {cout << "After cd(gAlice)" << endl; gDirectory->Dump();}
360 return;
361}
362
363//__________________________________________________________________________
364void AliMUONEventReconstructor::EventReconstruct(void)
365{
366 // To reconstruct one event
367 if (fPrintLevel >= 1) cout << "enter EventReconstruct" << endl;
368 MakeEventToBeReconstructed();
369 MakeSegments();
370 MakeTracks();
d837040f 371 if (fMUONData->IsTriggerTrackBranchesInTree())
372 ValidateTracksWithTrigger();
373
374 // Add tracks to MUON data container
375 for(Int_t i=0; i<GetNRecTracks(); i++) {
376 AliMUONTrack * track = (AliMUONTrack*) GetRecTracksPtr()->At(i);
377 fMUONData->AddRecTrack(*track);
378 }
379
a9e2aefa 380 return;
381}
382
276c44b7 383//__________________________________________________________________________
384void AliMUONEventReconstructor::EventReconstructTrigger(void)
385{
386 // To reconstruct one event
387 if (fPrintLevel >= 1) cout << "enter EventReconstructTrigger" << endl;
388 MakeTriggerTracks();
389 return;
390}
391
a9e2aefa 392 //__________________________________________________________________________
393void AliMUONEventReconstructor::ResetHitsForRec(void)
394{
395 // To reset the array and the number of HitsForRec,
396 // and also the number of HitsForRec
397 // and the index of the first HitForRec per chamber
398 if (fHitsForRecPtr) fHitsForRecPtr->Clear();
399 fNHitsForRec = 0;
343146bf 400 for (Int_t ch = 0; ch < fgkMaxMuonTrackingChambers; ch++)
a9e2aefa 401 fNHitsForRecPerChamber[ch] = fIndexOfFirstHitForRecPerChamber[ch] = 0;
402 return;
403}
404
405 //__________________________________________________________________________
406void AliMUONEventReconstructor::ResetSegments(void)
407{
408 // To reset the TClonesArray of segments and the number of Segments
409 // for all stations
30178c30 410 for (Int_t st = 0; st < fgkMaxMuonTrackingStations; st++) {
a9e2aefa 411 if (fSegmentsPtr[st]) fSegmentsPtr[st]->Clear();
412 fNSegments[st] = 0;
413 }
414 return;
415}
416
417 //__________________________________________________________________________
418void AliMUONEventReconstructor::ResetTracks(void)
419{
420 // To reset the TClonesArray of reconstructed tracks
8429a5e4 421 if (fRecTracksPtr) fRecTracksPtr->Delete();
422 // Delete in order that the Track destructors are called,
423 // hence the space for the TClonesArray of pointers to TrackHit's is freed
a9e2aefa 424 fNRecTracks = 0;
425 return;
426}
427
276c44b7 428 //__________________________________________________________________________
429void AliMUONEventReconstructor::ResetTriggerTracks(void)
430{
431 // To reset the TClonesArray of reconstructed trigger tracks
432 if (fRecTriggerTracksPtr) fRecTriggerTracksPtr->Delete();
433 // Delete in order that the Track destructors are called,
434 // hence the space for the TClonesArray of pointers to TrackHit's is freed
435 fNRecTriggerTracks = 0;
436 return;
437}
438
8429a5e4 439 //__________________________________________________________________________
440void AliMUONEventReconstructor::ResetTrackHits(void)
441{
442 // To reset the TClonesArray of hits on reconstructed tracks
443 if (fRecTrackHitsPtr) fRecTrackHitsPtr->Clear();
444 fNRecTrackHits = 0;
445 return;
446}
447
a9e2aefa 448 //__________________________________________________________________________
449void AliMUONEventReconstructor::MakeEventToBeReconstructed(void)
450{
451 // To make the list of hits to be reconstructed,
29fc2c86 452 // either from the track ref. hits or from the raw clusters
a9e2aefa 453 // according to the parameter set for the reconstructor
e191bb57 454// TString evfoldname = AliConfig::GetDefaultEventFolderName();//to be interfaced properly
88cb7938 455
52c9bc11 456// AliRunLoader* rl = AliRunLoader::GetRunLoader(evfoldname);
457// if (rl == 0x0)
458// {
459// Error("MakeEventToBeReconstructed",
460// "Can not find Run Loader in Event Folder named %s.",
461// evfoldname.Data());
462// return;
463// }
464// AliLoader* gime = rl->GetLoader("MUONLoader");
465// if (gime == 0x0)
466// {
467// Error("MakeEventToBeReconstructed","Can not get MUON Loader from Run Loader.");
468// return;
469// }
29fc2c86 470 AliRunLoader *runLoader = fLoader->GetRunLoader();
471
a9e2aefa 472 if (fPrintLevel >= 1) cout << "enter MakeEventToBeReconstructed" << endl;
473 ResetHitsForRec();
29fc2c86 474 if (fRecTrackRefHits == 1) {
475 // Reconstruction from track ref. hits
a9e2aefa 476 // Back to the signal file
29fc2c86 477 TTree* treeTR = runLoader->TreeTR();
478 if (treeTR == 0x0)
479 {
480 Int_t retval = runLoader->LoadTrackRefs("READ");
481 if ( retval)
88cb7938 482 {
8c343c7c 483 AliError("Error occured while loading hits.");
88cb7938 484 return;
485 }
29fc2c86 486 treeTR = runLoader->TreeTR();
487 if (treeTR == 0x0)
88cb7938 488 {
29fc2c86 489 AliError("Can not get TreeTR");
490 return;
88cb7938 491 }
29fc2c86 492 }
493
494 AddHitsForRecFromTrackRef(treeTR,1);
88cb7938 495
a9e2aefa 496 // Background hits
29fc2c86 497 AddHitsForRecFromTrackRef(fBkgTrackRefTTR,0);
a9e2aefa 498 // Sort HitsForRec in increasing order with respect to chamber number
499 SortHitsForRecWithIncreasingChamber();
500 }
501 else {
502 // Reconstruction from raw clusters
503 // AliMUON *MUON = (AliMUON*) gAlice->GetModule("MUON"); // necessary ????
504 // Security on MUON ????
505 // TreeR assumed to be be "prepared" in calling function
506 // by "MUON->GetTreeR(nev)" ????
52c9bc11 507 TTree *treeR = fLoader->TreeR();
508 fMUONData->SetTreeAddress("RC");
9cbdf048 509 AddHitsForRecFromRawClusters(treeR);
a9e2aefa 510 // No sorting: it is done automatically in the previous function
511 }
512 if (fPrintLevel >= 10) {
513 cout << "end of MakeEventToBeReconstructed" << endl;
514 cout << "NHitsForRec: " << fNHitsForRec << endl;
343146bf 515 for (Int_t ch = 0; ch < fgkMaxMuonTrackingChambers; ch++) {
a9e2aefa 516 cout << "chamber(0...): " << ch
517 << " NHitsForRec: " << fNHitsForRecPerChamber[ch]
518 << " index(first HitForRec): " << fIndexOfFirstHitForRecPerChamber[ch]
519 << endl;
520 for (Int_t hit = fIndexOfFirstHitForRecPerChamber[ch];
521 hit < fIndexOfFirstHitForRecPerChamber[ch] + fNHitsForRecPerChamber[ch];
522 hit++) {
523 cout << "HitForRec index(0...): " << hit << endl;
524 ((*fHitsForRecPtr)[hit])->Dump();
525 }
526 }
527 }
528 return;
529}
530
531 //__________________________________________________________________________
29fc2c86 532void AliMUONEventReconstructor::AddHitsForRecFromTrackRef(TTree *TTR, Int_t signal)
a9e2aefa 533{
534 // To add to the list of hits for reconstruction
29fc2c86 535 // the signal hits from a track reference tree TreeTR.
536 TClonesArray *listOfTrackRefs = NULL;
537 AliTrackReference *trackRef;
538
539 Int_t track = 0;
a9e2aefa 540 if (fPrintLevel >= 2)
29fc2c86 541 cout << "enter AddHitsForRecFromTrackRef with TTR: " << TTR << endl;
542 if (TTR == NULL) return;
543
544 listOfTrackRefs = CleanTrackRefs(TTR);
1391e633 545
29fc2c86 546 Int_t ntracks = listOfTrackRefs->GetEntriesFast();
a9e2aefa 547
a9e2aefa 548 if (fPrintLevel >= 2)
549 cout << "ntracks: " << ntracks << endl;
29fc2c86 550
551 for (Int_t index = 0; index < ntracks; index++) {
552 trackRef = (AliTrackReference*) listOfTrackRefs->At(index);
553 track = trackRef->GetTrack();
554
555 NewHitForRecFromTrackRef(trackRef,track,signal);
556 } // end of track ref.
557
558 listOfTrackRefs->Delete();
559 delete listOfTrackRefs;
a9e2aefa 560 return;
561}
562
29fc2c86 563
a9e2aefa 564 //__________________________________________________________________________
29fc2c86 565AliMUONHitForRec* AliMUONEventReconstructor::NewHitForRecFromTrackRef(AliTrackReference* Hit, Int_t TrackNumber, Int_t Signal)
a9e2aefa 566{
29fc2c86 567 // To make a new hit for reconstruction from a track ref. hit pointed to by "Hit",
568 // with the track numbered "TrackNumber",
a9e2aefa 569 // either from signal ("Signal" = 1) or background ("Signal" = 0) event.
570 // Selects hits in tracking (not trigger) chambers.
571 // Takes into account the efficiency (fEfficiency)
572 // and the smearing from resolution (fBendingResolution and fNonBendingResolution).
573 // Adds a condition on the radius between RMin and RMax
574 // to better simulate the real chambers.
575 // Returns the pointer to the new hit for reconstruction,
576 // or NULL in case of inefficiency or non tracking chamber or bad radius.
577 // No condition on at most 20 cm from a muon from a resonance
578 // like in Fortran TRACKF_STAT.
579 AliMUONHitForRec* hitForRec;
580 Double_t bendCoor, nonBendCoor, radius;
29fc2c86 581 Int_t chamber = AliMUONConstants::ChamberNumber(Hit->Z()); // chamber(0...)
582 if (chamber < 0) return NULL;
a9e2aefa 583 // only in tracking chambers (fChamber starts at 1)
343146bf 584 if (chamber >= fgkMaxMuonTrackingChambers) return NULL;
a9e2aefa 585 // only if hit is efficient (keep track for checking ????)
586 if (gRandom->Rndm() > fEfficiency) return NULL;
587 // only if radius between RMin and RMax
94de3818 588 bendCoor = Hit->Y();
589 nonBendCoor = Hit->X();
a9e2aefa 590 radius = TMath::Sqrt((bendCoor * bendCoor) + (nonBendCoor * nonBendCoor));
d0bfce8d 591 // This cut is not needed with a realistic chamber geometry !!!!
592// if ((radius < fRMin[chamber]) || (radius > fRMax[chamber])) return NULL;
29fc2c86 593 // new AliMUONHitForRec from track ref. hit and increment number of AliMUONHitForRec's
a9e2aefa 594 hitForRec = new ((*fHitsForRecPtr)[fNHitsForRec]) AliMUONHitForRec(Hit);
595 fNHitsForRec++;
596 // add smearing from resolution
597 hitForRec->SetBendingCoor(bendCoor + gRandom->Gaus(0., fBendingResolution));
598 hitForRec->SetNonBendingCoor(nonBendCoor
599 + gRandom->Gaus(0., fNonBendingResolution));
d0bfce8d 600// // !!!! without smearing
601// hitForRec->SetBendingCoor(bendCoor);
602// hitForRec->SetNonBendingCoor(nonBendCoor);
a9e2aefa 603 // more information into HitForRec
604 // resolution: angular effect to be added here ????
605 hitForRec->SetBendingReso2(fBendingResolution * fBendingResolution);
606 hitForRec->SetNonBendingReso2(fNonBendingResolution * fNonBendingResolution);
29fc2c86 607 // track ref. info
608 hitForRec->SetTTRTrack(TrackNumber);
609 hitForRec->SetTrackRefSignal(Signal);
a9e2aefa 610 if (fPrintLevel >= 10) {
29fc2c86 611 cout << "track: " << TrackNumber << endl;
a9e2aefa 612 Hit->Dump();
613 cout << "AliMUONHitForRec number (1...): " << fNHitsForRec << endl;
614 hitForRec->Dump();}
615 return hitForRec;
616}
29fc2c86 617 //__________________________________________________________________________
618TClonesArray* AliMUONEventReconstructor::CleanTrackRefs(TTree *treeTR)
619{
620 // Make hits from track ref..
621 // Re-calculate hits parameters because two AliTrackReferences are recorded for
622 // each chamber (one when particle is entering + one when particle is leaving
623 // the sensitive volume)
624
625 AliTrackReference *trackReference;
626 Float_t x1, y1, z1, pX1, pY1, pZ1;
627 Float_t x2, y2, z2, pX2, pY2, pZ2;
628 Int_t track1, track2;
629 Int_t nRec = 0;
630 Float_t maxGasGap = 1.; // cm
631 Int_t iHit1 = 0;
632 Int_t iHitMin = 0;
633
634 AliTrackReference *trackReferenceNew = new AliTrackReference();
635
636 TClonesArray* trackRefs = new TClonesArray("AliTrackReference", 10);
637 TClonesArray* cleanTrackRefs = new TClonesArray("AliTrackReference", 10);
638
639 if (treeTR == NULL) return NULL;
640 TBranch* branch = treeTR->GetBranch("MUON");
641 if (branch == NULL) return NULL;
642 branch->SetAddress(&trackRefs);
643
644 Int_t nTrack = (Int_t)treeTR->GetEntries();
645 for (Int_t iTrack = 0; iTrack < nTrack; iTrack++) {
646 treeTR->GetEntry(iTrack);
647 iHitMin = 0;
648 iHit1 = 0;
649 while (iHit1 < trackRefs->GetEntries()) {
650 trackReference = (AliTrackReference*)trackRefs->At(iHit1);
651 x1 = trackReference->X();
652 y1 = trackReference->Y();
653 z1 = trackReference->Z();
654 pX1 = trackReference->Px();
655 pY1 = trackReference->Py();
656 pZ1 = trackReference->Pz();
657 track1 = trackReference->GetTrack();
658 nRec = 1;
659 iHitMin = iHit1+1;
660 for (Int_t iHit2 = iHit1+1; iHit2 < trackRefs->GetEntries(); iHit2++) {
661 trackReference = (AliTrackReference*)trackRefs->At(iHit2);
662 x2 = trackReference->X();
663 y2 = trackReference->Y();
664 z2 = trackReference->Z();
665 pX2 = trackReference->Px();
666 pY2 = trackReference->Py();
667 pZ2 = trackReference->Pz();
668 track2 = trackReference->GetTrack();
669 if (track2 == track1 && TMath::Abs(z2-z1) < maxGasGap ) {
670 nRec++;
671 x1 += x2;
672 y1 += y2;
673 z1 += z2;
674 pX1 += pX2;
675 pY1 += pY2;
676 pZ1 += pZ2;
677 iHitMin = iHit2+1;
678 }
679
680 } // for iHit2
681 x1 /= (Float_t)nRec;
682 y1 /= (Float_t)nRec;
683 z1 /= (Float_t)nRec;
684 pX1 /= (Float_t)nRec;
685 pY1 /= (Float_t)nRec;
686 pZ1 /= (Float_t)nRec;
687 trackReferenceNew->SetPosition(x1,y1,z1);
688 trackReferenceNew->SetMomentum(pX1,pY1,pZ1);
689 trackReferenceNew->SetTrack(track1);
690 {new ((*cleanTrackRefs)[cleanTrackRefs->GetEntriesFast()]) AliTrackReference(*trackReferenceNew);}
691 iHit1 = iHitMin;
692 } // while iHit1
693 } // for track
694
695 trackRefs->Delete();
696 delete trackRefs;
697 delete trackReferenceNew;
698 return cleanTrackRefs;
699
700}
a9e2aefa 701 //__________________________________________________________________________
702void AliMUONEventReconstructor::SortHitsForRecWithIncreasingChamber()
703{
704 // Sort HitsForRec's in increasing order with respect to chamber number.
705 // Uses the function "Compare".
706 // Update the information for HitsForRec per chamber too.
707 Int_t ch, nhits, prevch;
708 fHitsForRecPtr->Sort();
343146bf 709 for (ch = 0; ch < fgkMaxMuonTrackingChambers; ch++) {
a9e2aefa 710 fNHitsForRecPerChamber[ch] = 0;
711 fIndexOfFirstHitForRecPerChamber[ch] = 0;
712 }
713 prevch = 0; // previous chamber
714 nhits = 0; // number of hits in current chamber
715 // Loop over HitsForRec
716 for (Int_t hit = 0; hit < fNHitsForRec; hit++) {
717 // chamber number (0...)
718 ch = ((AliMUONHitForRec*) ((*fHitsForRecPtr)[hit]))->GetChamberNumber();
719 // increment number of hits in current chamber
720 (fNHitsForRecPerChamber[ch])++;
721 // update index of first HitForRec in current chamber
722 // if chamber number different from previous one
723 if (ch != prevch) {
724 fIndexOfFirstHitForRecPerChamber[ch] = hit;
725 prevch = ch;
726 }
727 }
728 return;
729}
730
731// //__________________________________________________________________________
732// void AliMUONEventReconstructor::AddHitsForRecFromCathodeCorrelations(TTree* TC)
733// {
734// // OLD VERSION WHEN ONE ONE WAS USING SO CALLED CATHODE CORRELATIONS
735// // To add to the list of hits for reconstruction
736// // the (cathode correlated) raw clusters
737// // No condition added, like in Fortran TRACKF_STAT,
738// // on the radius between RMin and RMax.
739// AliMUONHitForRec *hitForRec;
740// if (fPrintLevel >= 1) cout << "enter AddHitsForRecFromCathodeCorrelations" << endl;
741// AliMUON *MUON = (AliMUON*) gAlice->GetModule("MUON"); // necessary ????
742// // Security on MUON ????
743// // Loop over tracking chambers
343146bf 744// for (Int_t ch = 0; ch < fgkMaxMuonTrackingChambers; ch++) {
a9e2aefa 745// // number of HitsForRec to 0 for the chamber
746// fNHitsForRecPerChamber[ch] = 0;
747// // index of first HitForRec for the chamber
748// if (ch == 0) fIndexOfFirstHitForRecPerChamber[ch] = 0;
749// else fIndexOfFirstHitForRecPerChamber[ch] = fNHitsForRec;
750// TClonesArray *reconst_hits = MUON->ReconstHitsAddress(ch);
751// MUON->ResetReconstHits();
752// TC->GetEvent();
753// Int_t ncor = (Int_t)reconst_hits->GetEntries();
754// // Loop over (cathode correlated) raw clusters
755// for (Int_t cor = 0; cor < ncor; cor++) {
756// AliMUONReconstHit * mCor =
757// (AliMUONReconstHit*) reconst_hits->UncheckedAt(cor);
758// // new AliMUONHitForRec from (cathode correlated) raw cluster
759// // and increment number of AliMUONHitForRec's (total and in chamber)
760// hitForRec = new ((*fHitsForRecPtr)[fNHitsForRec]) AliMUONHitForRec(mCor);
761// fNHitsForRec++;
762// (fNHitsForRecPerChamber[ch])++;
763// // more information into HitForRec
764// hitForRec->SetChamberNumber(ch);
765// hitForRec->SetHitNumber(cor);
29fc2c86 766// // Z coordinate of the chamber (cm) with sign opposite to TRACKREF sign
a9e2aefa 767// // could (should) be more exact from chamber geometry ????
768// hitForRec->SetZ(-(&(MUON->Chamber(ch)))->Z());
769// if (fPrintLevel >= 10) {
770// cout << "chamber (0...): " << ch <<
771// " cathcorrel (0...): " << cor << endl;
772// mCor->Dump();
773// cout << "AliMUONHitForRec number (1...): " << fNHitsForRec << endl;
774// hitForRec->Dump();}
775// } // end of cluster loop
776// } // end of chamber loop
777// return;
778// }
779
780 //__________________________________________________________________________
781void AliMUONEventReconstructor::AddHitsForRecFromRawClusters(TTree* TR)
782{
783 // To add to the list of hits for reconstruction all the raw clusters
784 // No condition added, like in Fortran TRACKF_STAT,
785 // on the radius between RMin and RMax.
786 AliMUONHitForRec *hitForRec;
787 AliMUONRawCluster *clus;
f69d51b5 788 Int_t iclus, nclus, nTRentries;
a9e2aefa 789 TClonesArray *rawclusters;
790 if (fPrintLevel >= 1) cout << "enter AddHitsForRecFromRawClusters" << endl;
88cb7938 791
e191bb57 792// TString evfoldname = AliConfig::GetDefaultEventFolderName();//to be interfaced properly
52c9bc11 793// AliRunLoader* rl = AliRunLoader::GetRunLoader(evfoldname);
794// if (rl == 0x0)
795// {
796// Error("MakeEventToBeReconstructed",
797// "Can not find Run Loader in Event Folder named %s.",
798// evfoldname.Data());
799// return;
800// }
801// AliLoader* gime = rl->GetLoader("MUONLoader");
802// if (gime == 0x0)
803// {
804// Error("MakeEventToBeReconstructed","Can not get MUON Loader from Run Loader.");
805// return;
806// }
807// // Loading AliRun master
808// rl->LoadgAlice();
809// gAlice = rl->GetAliRun();
88cb7938 810
811 // Loading MUON subsystem
52c9bc11 812 // AliMUON * pMUON = (AliMUON *) gAlice->GetDetector("MUON");
88cb7938 813
f69d51b5 814 nTRentries = Int_t(TR->GetEntries());
815 if (nTRentries != 1) {
8c343c7c 816 AliError(Form("nTRentries = %d not equal to 1 ",nTRentries));
f69d51b5 817 exit(0);
818 }
52c9bc11 819 fLoader->TreeR()->GetEvent(0); // only one entry
820
a9e2aefa 821 // Loop over tracking chambers
343146bf 822 for (Int_t ch = 0; ch < fgkMaxMuonTrackingChambers; ch++) {
a9e2aefa 823 // number of HitsForRec to 0 for the chamber
824 fNHitsForRecPerChamber[ch] = 0;
825 // index of first HitForRec for the chamber
826 if (ch == 0) fIndexOfFirstHitForRecPerChamber[ch] = 0;
827 else fIndexOfFirstHitForRecPerChamber[ch] = fNHitsForRec;
52c9bc11 828 rawclusters =fMUONData->RawClusters(ch);
f69d51b5 829// pMUON->ResetRawClusters();
830// TR->GetEvent((Int_t) (TR->GetEntries()) - 1); // to be checked ????
a9e2aefa 831 nclus = (Int_t) (rawclusters->GetEntries());
832 // Loop over (cathode correlated) raw clusters
833 for (iclus = 0; iclus < nclus; iclus++) {
834 clus = (AliMUONRawCluster*) rawclusters->UncheckedAt(iclus);
835 // new AliMUONHitForRec from raw cluster
836 // and increment number of AliMUONHitForRec's (total and in chamber)
837 hitForRec = new ((*fHitsForRecPtr)[fNHitsForRec]) AliMUONHitForRec(clus);
838 fNHitsForRec++;
839 (fNHitsForRecPerChamber[ch])++;
840 // more information into HitForRec
841 // resolution: info should be already in raw cluster and taken from it ????
842 hitForRec->SetBendingReso2(fBendingResolution * fBendingResolution);
843 hitForRec->SetNonBendingReso2(fNonBendingResolution * fNonBendingResolution);
844 // original raw cluster
845 hitForRec->SetChamberNumber(ch);
846 hitForRec->SetHitNumber(iclus);
ba5b68db 847 // Z coordinate of the raw cluster (cm)
ba12c242 848 hitForRec->SetZ(clus->GetZ(0));
a9e2aefa 849 if (fPrintLevel >= 10) {
850 cout << "chamber (0...): " << ch <<
851 " raw cluster (0...): " << iclus << endl;
852 clus->Dump();
853 cout << "AliMUONHitForRec number (1...): " << fNHitsForRec << endl;
854 hitForRec->Dump();}
855 } // end of cluster loop
856 } // end of chamber loop
83dbc640 857 SortHitsForRecWithIncreasingChamber(); //AZ
a9e2aefa 858 return;
859}
860
861 //__________________________________________________________________________
862void AliMUONEventReconstructor::MakeSegments(void)
863{
864 // To make the list of segments in all stations,
865 // from the list of hits to be reconstructed
866 if (fPrintLevel >= 1) cout << "enter MakeSegments" << endl;
867 ResetSegments();
868 // Loop over stations
83dbc640 869 Int_t nb = (fTrackMethod == 2) ? 3 : 0; //AZ
30178c30 870 //AZ for (Int_t st = 0; st < fgkMaxMuonTrackingStations; st++)
871 for (Int_t st = nb; st < fgkMaxMuonTrackingStations; st++) //AZ
a9e2aefa 872 MakeSegmentsPerStation(st);
873 if (fPrintLevel >= 10) {
874 cout << "end of MakeSegments" << endl;
30178c30 875 for (Int_t st = 0; st < fgkMaxMuonTrackingStations; st++) {
a9e2aefa 876 cout << "station(0...): " << st
877 << " Segments: " << fNSegments[st]
878 << endl;
879 for (Int_t seg = 0;
880 seg < fNSegments[st];
881 seg++) {
882 cout << "Segment index(0...): " << seg << endl;
883 ((*fSegmentsPtr[st])[seg])->Dump();
884 }
885 }
886 }
887 return;
888}
889
890 //__________________________________________________________________________
891void AliMUONEventReconstructor::MakeSegmentsPerStation(Int_t Station)
892{
893 // To make the list of segments in station number "Station" (0...)
894 // from the list of hits to be reconstructed.
895 // Updates "fNSegments"[Station].
896 // Segments in stations 4 and 5 are sorted
897 // according to increasing absolute value of "impact parameter"
898 AliMUONHitForRec *hit1Ptr, *hit2Ptr;
899 AliMUONSegment *segment;
900 Bool_t last2st;
901 Double_t bendingSlope, distBend, distNonBend, extBendCoor, extNonBendCoor,
d0bfce8d 902 impactParam = 0., maxImpactParam = 0., minImpactParam = 0.; // =0 to avoid compilation warnings.
a9e2aefa 903 if (fPrintLevel >= 1)
904 cout << "enter MakeSegmentsPerStation (0...) " << Station << endl;
905 // first and second chambers (0...) in the station
906 Int_t ch1 = 2 * Station;
907 Int_t ch2 = ch1 + 1;
908 // variable true for stations downstream of the dipole:
909 // Station(0..4) equal to 3 or 4
910 if ((Station == 3) || (Station == 4)) {
911 last2st = kTRUE;
912 // maximum impact parameter (cm) according to fMinBendingMomentum...
913 maxImpactParam =
914 TMath::Abs(GetImpactParamFromBendingMomentum(fMinBendingMomentum));
d0bfce8d 915 // minimum impact parameter (cm) according to fMaxBendingMomentum...
916 minImpactParam =
917 TMath::Abs(GetImpactParamFromBendingMomentum(fMaxBendingMomentum));
a9e2aefa 918 }
919 else last2st = kFALSE;
920 // extrapolation factor from Z of first chamber to Z of second chamber
921 // dZ to be changed to take into account fine structure of chambers ????
e516b01d 922 Double_t extrapFact;
a9e2aefa 923 // index for current segment
924 Int_t segmentIndex = 0;
925 // Loop over HitsForRec in the first chamber of the station
926 for (Int_t hit1 = fIndexOfFirstHitForRecPerChamber[ch1];
927 hit1 < fIndexOfFirstHitForRecPerChamber[ch1] + fNHitsForRecPerChamber[ch1];
928 hit1++) {
929 // pointer to the HitForRec
930 hit1Ptr = (AliMUONHitForRec*) ((*fHitsForRecPtr)[hit1]);
931 // extrapolation,
932 // on the straight line joining the HitForRec to the vertex (0,0,0),
933 // to the Z of the second chamber of the station
a9e2aefa 934 // Loop over HitsForRec in the second chamber of the station
935 for (Int_t hit2 = fIndexOfFirstHitForRecPerChamber[ch2];
936 hit2 < fIndexOfFirstHitForRecPerChamber[ch2] + fNHitsForRecPerChamber[ch2];
937 hit2++) {
938 // pointer to the HitForRec
939 hit2Ptr = (AliMUONHitForRec*) ((*fHitsForRecPtr)[hit2]);
940 // absolute values of distances, in bending and non bending planes,
941 // between the HitForRec in the second chamber
942 // and the previous extrapolation
e516b01d 943 extrapFact = hit2Ptr->GetZ()/ hit1Ptr->GetZ();
944 extBendCoor = extrapFact * hit1Ptr->GetBendingCoor();
945 extNonBendCoor = extrapFact * hit1Ptr->GetNonBendingCoor();
a9e2aefa 946 distBend = TMath::Abs(hit2Ptr->GetBendingCoor() - extBendCoor);
947 distNonBend = TMath::Abs(hit2Ptr->GetNonBendingCoor() - extNonBendCoor);
948 if (last2st) {
949 // bending slope
950 bendingSlope = (hit1Ptr->GetBendingCoor() - hit2Ptr->GetBendingCoor()) /
951 (hit1Ptr->GetZ() - hit2Ptr->GetZ());
952 // absolute value of impact parameter
953 impactParam =
31817925 954 TMath::Abs(hit1Ptr->GetBendingCoor() - hit1Ptr->GetZ() * bendingSlope);
a9e2aefa 955 }
956 // check for distances not too large,
957 // and impact parameter not too big if stations downstream of the dipole.
958 // Conditions "distBend" and "impactParam" correlated for these stations ????
959 if ((distBend < fSegmentMaxDistBending[Station]) &&
960 (distNonBend < fSegmentMaxDistNonBending[Station]) &&
d0bfce8d 961 (!last2st || (impactParam < maxImpactParam)) &&
962 (!last2st || (impactParam > minImpactParam))) {
a9e2aefa 963 // make new segment
964 segment = new ((*fSegmentsPtr[Station])[segmentIndex])
965 AliMUONSegment(hit1Ptr, hit2Ptr);
966 // update "link" to this segment from the hit in the first chamber
967 if (hit1Ptr->GetNSegments() == 0)
968 hit1Ptr->SetIndexOfFirstSegment(segmentIndex);
969 hit1Ptr->SetNSegments(hit1Ptr->GetNSegments() + 1);
970 if (fPrintLevel >= 10) {
971 cout << "segmentIndex(0...): " << segmentIndex
972 << " distBend: " << distBend
973 << " distNonBend: " << distNonBend
974 << endl;
975 segment->Dump();
976 cout << "HitForRec in first chamber" << endl;
977 hit1Ptr->Dump();
978 cout << "HitForRec in second chamber" << endl;
979 hit2Ptr->Dump();
980 };
981 // increment index for current segment
982 segmentIndex++;
983 }
984 } //for (Int_t hit2
985 } // for (Int_t hit1...
986 fNSegments[Station] = segmentIndex;
987 // Sorting according to "impact parameter" if station(1..5) 4 or 5,
988 // i.e. Station(0..4) 3 or 4, using the function "Compare".
989 // After this sorting, it is impossible to use
990 // the "fNSegments" and "fIndexOfFirstSegment"
991 // of the HitForRec in the first chamber to explore all segments formed with it.
992 // Is this sorting really needed ????
993 if ((Station == 3) || (Station == 4)) (fSegmentsPtr[Station])->Sort();
994 if (fPrintLevel >= 1) cout << "Station: " << Station << " NSegments: "
995 << fNSegments[Station] << endl;
996 return;
997}
998
999 //__________________________________________________________________________
1000void AliMUONEventReconstructor::MakeTracks(void)
1001{
1002 // To make the tracks,
1003 // from the list of segments and points in all stations
1004 if (fPrintLevel >= 1) cout << "enter MakeTracks" << endl;
8429a5e4 1005 // The order may be important for the following Reset's
a9e2aefa 1006 ResetTracks();
8429a5e4 1007 ResetTrackHits();
83dbc640 1008 if (fTrackMethod == 2) { //AZ - Kalman filter
1009 MakeTrackCandidatesK();
b035a148 1010 if (fRecTracksPtr->GetEntriesFast() == 0) return;
83dbc640 1011 // Follow tracks in stations(1..) 3, 2 and 1
1012 FollowTracksK();
1013 // Remove double tracks
1014 RemoveDoubleTracksK();
1015 // Propagate tracks to the vertex thru absorber
1016 GoToVertex();
b035a148 1017 // Fill AliMUONTrack data members
1018 FillMUONTrack();
d837040f 1019 } else {
83dbc640 1020 // Look for candidates from at least 3 aligned points in stations(1..) 4 and 5
1021 MakeTrackCandidates();
1022 // Follow tracks in stations(1..) 3, 2 and 1
1023 FollowTracks();
1024 // Remove double tracks
1025 RemoveDoubleTracks();
d837040f 1026 UpdateTrackParamAtHit();
b8dc484b 1027 UpdateHitForRecAtHit();
52c9bc11 1028 }
a9e2aefa 1029 return;
1030}
1031
276c44b7 1032 //__________________________________________________________________________
d837040f 1033void AliMUONEventReconstructor::ValidateTracksWithTrigger(void)
1034{
7e6d7e07 1035 // Try to match track from tracking system with trigger track
d837040f 1036 AliMUONTrack *track;
24ab3324 1037 TClonesArray *recTriggerTracks;
1038
1039 fMUONData->ResetRecTriggerTracks();
1040 fMUONData->SetTreeAddress("RL");
1041 fMUONData->GetRecTriggerTracks();
1042 recTriggerTracks = fMUONData->RecTriggerTracks();
e8765288 1043
d837040f 1044 track = (AliMUONTrack*) fRecTracksPtr->First();
1045 while (track) {
1046 track->MatchTriggerTrack(recTriggerTracks);
1047 track = (AliMUONTrack*) fRecTracksPtr->After(track);
e8765288 1048 }
24ab3324 1049
d837040f 1050}
1051
1052 //__________________________________________________________________________
1053Bool_t AliMUONEventReconstructor::MakeTriggerTracks(void)
276c44b7 1054{
1055 // To make the trigger tracks from Local Trigger
1056 if (fPrintLevel >= 1) cout << "enter MakeTriggerTracks" << endl;
52c9bc11 1057 // ResetTriggerTracks();
276c44b7 1058
1059 Int_t nTRentries;
52c9bc11 1060 Long_t gloTrigPat;
276c44b7 1061 TClonesArray *localTrigger;
9131b4fe 1062 TClonesArray *globalTrigger;
276c44b7 1063 AliMUONLocalTrigger *locTrg;
9131b4fe 1064 AliMUONGlobalTrigger *gloTrg;
276c44b7 1065 AliMUONTriggerCircuit *circuit;
52c9bc11 1066 AliMUONTriggerTrack *recTriggerTrack = 0;
d837040f 1067
30178c30 1068 TTree* treeR = fLoader->TreeR();
276c44b7 1069
276c44b7 1070 // Loading MUON subsystem
1071 AliMUON * pMUON = (AliMUON *) gAlice->GetDetector("MUON");
1072
30178c30 1073 nTRentries = Int_t(treeR->GetEntries());
d837040f 1074
30178c30 1075 treeR->GetEvent(0); // only one entry
d837040f 1076
1077 if (!(fMUONData->IsTriggerBranchesInTree())) {
8c343c7c 1078 AliWarning(Form("Trigger information is not avalaible, nTRentries = %d not equal to 1",nTRentries));
d837040f 1079 return kFALSE;
276c44b7 1080 }
276c44b7 1081
ce3e25a8 1082 fMUONData->SetTreeAddress("TC");
52c9bc11 1083 fMUONData->GetTrigger();
9131b4fe 1084
52c9bc11 1085 // global trigger for trigger pattern
9131b4fe 1086 gloTrigPat = 0;
52c9bc11 1087 globalTrigger = fMUONData->GlobalTrigger();
9131b4fe 1088 gloTrg = (AliMUONGlobalTrigger*)globalTrigger->UncheckedAt(0);
8efb0686 1089 if (gloTrg) {
1090 if (gloTrg->SinglePlusLpt()) gloTrigPat|= 0x1;
1091 if (gloTrg->SinglePlusHpt()) gloTrigPat|= 0x2;
1092 if (gloTrg->SinglePlusApt()) gloTrigPat|= 0x4;
1093
1094 if (gloTrg->SingleMinusLpt()) gloTrigPat|= 0x8;
1095 if (gloTrg->SingleMinusHpt()) gloTrigPat|= 0x10;
1096 if (gloTrg->SingleMinusApt()) gloTrigPat|= 0x20;
1097
1098 if (gloTrg->SingleUndefLpt()) gloTrigPat|= 0x40;
1099 if (gloTrg->SingleUndefHpt()) gloTrigPat|= 0x80;
1100 if (gloTrg->SingleUndefApt()) gloTrigPat|= 0x100;
1101
1102 if (gloTrg->PairUnlikeLpt()) gloTrigPat|= 0x200;
1103 if (gloTrg->PairUnlikeHpt()) gloTrigPat|= 0x400;
1104 if (gloTrg->PairUnlikeApt()) gloTrigPat|= 0x800;
1105
1106 if (gloTrg->PairLikeLpt()) gloTrigPat|= 0x1000;
1107 if (gloTrg->PairLikeHpt()) gloTrigPat|= 0x2000;
1108 if (gloTrg->PairLikeApt()) gloTrigPat|= 0x4000;
1109 }
9131b4fe 1110
52c9bc11 1111
1112
1113 // local trigger for tracking
1114 localTrigger = fMUONData->LocalTrigger();
276c44b7 1115 Int_t nlocals = (Int_t) (localTrigger->GetEntries());
1116 Float_t z11 = ( &(pMUON->Chamber(10)) )->Z();
1117 Float_t z21 = ( &(pMUON->Chamber(12)) )->Z();
1118
1119 for (Int_t i=0; i<nlocals; i++) { // loop on Local Trigger
52c9bc11 1120 locTrg = (AliMUONLocalTrigger*)localTrigger->UncheckedAt(i);
1121 circuit = &(pMUON->TriggerCircuit(locTrg->LoCircuit()));
1122 Float_t y11 = circuit->GetY11Pos(locTrg->LoStripX());
aeb4f510 1123 Int_t stripX21 = locTrg->LoStripX()+locTrg->LoDev()+1;
1124 Float_t y21 = circuit->GetY21Pos(stripX21);
52c9bc11 1125 Float_t x11 = circuit->GetX11Pos(locTrg->LoStripY());
1126 Float_t thetax = TMath::ATan2( x11 , z11 );
1127 Float_t thetay = TMath::ATan2( (y21-y11) , (z21-z11) );
1128
1129 recTriggerTrack = new AliMUONTriggerTrack(x11,y11,thetax,thetay,gloTrigPat,this);
1130 // since static statement does not work, set gloTrigPat for each track
1131
1132 // fNRecTriggerTracks++;
1133 fMUONData->AddRecTriggerTrack(*recTriggerTrack);
276c44b7 1134 } // end of loop on Local Trigger
d837040f 1135 return kTRUE;
276c44b7 1136}
1137
a9e2aefa 1138 //__________________________________________________________________________
1139Int_t AliMUONEventReconstructor::MakeTrackCandidatesWithTwoSegments(AliMUONSegment *BegSegment)
1140{
1141 // To make track candidates with two segments in stations(1..) 4 and 5,
1142 // the first segment being pointed to by "BegSegment".
1143 // Returns the number of such track candidates.
1144 Int_t endStation, iEndSegment, nbCan2Seg;
e516b01d 1145 AliMUONSegment *endSegment;
1146 AliMUONSegment *extrapSegment = NULL;
a9e2aefa 1147 AliMUONTrack *recTrack;
1148 Double_t mcsFactor;
1149 if (fPrintLevel >= 1) cout << "enter MakeTrackCandidatesWithTwoSegments" << endl;
1150 // Station for the end segment
1151 endStation = 7 - (BegSegment->GetHitForRec1())->GetChamberNumber() / 2;
1152 // multiple scattering factor corresponding to one chamber
1153 mcsFactor = 0.0136 /
1154 GetBendingMomentumFromImpactParam(BegSegment->GetBendingImpact());
1155 mcsFactor = fChamberThicknessInX0 * mcsFactor * mcsFactor;
1156 // linear extrapolation to end station
a9e2aefa 1157 // number of candidates with 2 segments to 0
1158 nbCan2Seg = 0;
1159 // Loop over segments in the end station
1160 for (iEndSegment = 0; iEndSegment < fNSegments[endStation]; iEndSegment++) {
1161 // pointer to segment
1162 endSegment = (AliMUONSegment*) ((*fSegmentsPtr[endStation])[iEndSegment]);
1163 // test compatibility between current segment and "extrapSegment"
04b5ea16 1164 // 4 because 4 quantities in chi2
e516b01d 1165 extrapSegment =
1166 BegSegment->CreateSegmentFromLinearExtrapToStation(endSegment->GetZ(), mcsFactor);
a9e2aefa 1167 if ((endSegment->
1168 NormalizedChi2WithSegment(extrapSegment,
1169 fMaxSigma2Distance)) <= 4.0) {
1170 // both segments compatible:
1171 // make track candidate from "begSegment" and "endSegment"
1172 if (fPrintLevel >= 2)
1173 cout << "TrackCandidate with Segment " << iEndSegment <<
1174 " in Station(0..) " << endStation << endl;
1175 // flag for both segments in one track:
1176 // to be done in track constructor ????
1177 BegSegment->SetInTrack(kTRUE);
1178 endSegment->SetInTrack(kTRUE);
1179 recTrack = new ((*fRecTracksPtr)[fNRecTracks])
1180 AliMUONTrack(BegSegment, endSegment, this);
1181 fNRecTracks++;
1182 if (fPrintLevel >= 10) recTrack->RecursiveDump();
1183 // increment number of track candidates with 2 segments
1184 nbCan2Seg++;
1185 }
1186 } // for (iEndSegment = 0;...
1187 delete extrapSegment; // should not delete HitForRec's it points to !!!!
1188 return nbCan2Seg;
1189}
1190
1191 //__________________________________________________________________________
1192Int_t AliMUONEventReconstructor::MakeTrackCandidatesWithOneSegmentAndOnePoint(AliMUONSegment *BegSegment)
1193{
1194 // To make track candidates with one segment and one point
1195 // in stations(1..) 4 and 5,
1196 // the segment being pointed to by "BegSegment".
1197 Int_t ch, ch1, ch2, endStation, iHit, iHitMax, iHitMin, nbCan1Seg1Hit;
e516b01d 1198 AliMUONHitForRec *extrapHitForRec= NULL;
1199 AliMUONHitForRec *hit;
a9e2aefa 1200 AliMUONTrack *recTrack;
1201 Double_t mcsFactor;
1202 if (fPrintLevel >= 1)
1203 cout << "enter MakeTrackCandidatesWithOneSegmentAndOnePoint" << endl;
1204 // station for the end point
1205 endStation = 7 - (BegSegment->GetHitForRec1())->GetChamberNumber() / 2;
1206 // multiple scattering factor corresponding to one chamber
1207 mcsFactor = 0.0136 /
1208 GetBendingMomentumFromImpactParam(BegSegment->GetBendingImpact());
1209 mcsFactor = fChamberThicknessInX0 * mcsFactor * mcsFactor;
1210 // first and second chambers(0..) in the end station
1211 ch1 = 2 * endStation;
1212 ch2 = ch1 + 1;
1213 // number of candidates to 0
1214 nbCan1Seg1Hit = 0;
1215 // Loop over chambers of the end station
1216 for (ch = ch2; ch >= ch1; ch--) {
a9e2aefa 1217 // limits for the hit index in the loop
1218 iHitMin = fIndexOfFirstHitForRecPerChamber[ch];
1219 iHitMax = iHitMin + fNHitsForRecPerChamber[ch];
1220 // Loop over HitForRec's in the chamber
1221 for (iHit = iHitMin; iHit < iHitMax; iHit++) {
1222 // pointer to HitForRec
1223 hit = (AliMUONHitForRec*) ((*fHitsForRecPtr)[iHit]);
1224 // test compatibility between current HitForRec and "extrapHitForRec"
04b5ea16 1225 // 2 because 2 quantities in chi2
e516b01d 1226 // linear extrapolation to chamber
1227 extrapHitForRec =
1228 BegSegment->CreateHitForRecFromLinearExtrapToChamber( hit->GetZ(), mcsFactor);
a9e2aefa 1229 if ((hit->
1230 NormalizedChi2WithHitForRec(extrapHitForRec,
1231 fMaxSigma2Distance)) <= 2.0) {
1232 // both HitForRec's compatible:
1233 // make track candidate from begSegment and current HitForRec
1234 if (fPrintLevel >= 2)
1235 cout << "TrackCandidate with HitForRec " << iHit <<
1236 " in Chamber(0..) " << ch << endl;
1237 // flag for beginning segments in one track:
1238 // to be done in track constructor ????
1239 BegSegment->SetInTrack(kTRUE);
1240 recTrack = new ((*fRecTracksPtr)[fNRecTracks])
1241 AliMUONTrack(BegSegment, hit, this);
1242 // the right place to eliminate "double counting" ???? how ????
1243 fNRecTracks++;
1244 if (fPrintLevel >= 10) recTrack->RecursiveDump();
1245 // increment number of track candidates
1246 nbCan1Seg1Hit++;
1247 }
1248 } // for (iHit = iHitMin;...
1249 delete extrapHitForRec;
305197bd 1250 extrapHitForRec = NULL;
a9e2aefa 1251 } // for (ch = ch2;...
1252 return nbCan1Seg1Hit;
1253}
1254
1255 //__________________________________________________________________________
1256void AliMUONEventReconstructor::MakeTrackCandidates(void)
1257{
1258 // To make track candidates
1259 // with at least 3 aligned points in stations(1..) 4 and 5
1260 // (two Segment's or one Segment and one HitForRec)
1261 Int_t begStation, iBegSegment, nbCan1Seg1Hit, nbCan2Seg;
1262 AliMUONSegment *begSegment;
1263 if (fPrintLevel >= 1) cout << "enter MakeTrackCandidates" << endl;
1264 // Loop over stations(1..) 5 and 4 for the beginning segment
1265 for (begStation = 4; begStation > 2; begStation--) {
1266 // Loop over segments in the beginning station
1267 for (iBegSegment = 0; iBegSegment < fNSegments[begStation]; iBegSegment++) {
1268 // pointer to segment
1269 begSegment = (AliMUONSegment*) ((*fSegmentsPtr[begStation])[iBegSegment]);
1270 if (fPrintLevel >= 2)
1271 cout << "look for TrackCandidate's with Segment " << iBegSegment <<
1272 " in Station(0..) " << begStation << endl;
1273 // Look for track candidates with two segments,
1274 // "begSegment" and all compatible segments in other station.
1275 // Only for beginning station(1..) 5
1276 // because candidates with 2 segments have to looked for only once.
1277 if (begStation == 4)
1278 nbCan2Seg = MakeTrackCandidatesWithTwoSegments(begSegment);
956019b6 1279 // Look for track candidates with one segment and one point,
a9e2aefa 1280 // "begSegment" and all compatible HitForRec's in other station.
1281 // Only if "begSegment" does not belong already to a track candidate.
1282 // Is that a too strong condition ????
1283 if (!(begSegment->GetInTrack()))
1284 nbCan1Seg1Hit = MakeTrackCandidatesWithOneSegmentAndOnePoint(begSegment);
1285 } // for (iBegSegment = 0;...
1286 } // for (begStation = 4;...
1287 return;
1288}
1289
1290 //__________________________________________________________________________
1291void AliMUONEventReconstructor::FollowTracks(void)
1292{
1293 // Follow tracks in stations(1..) 3, 2 and 1
04b5ea16 1294 // too long: should be made more modular !!!!
e516b01d 1295 AliMUONHitForRec *bestHit, *extrapHit, *hit;
1296 AliMUONSegment *bestSegment, *extrapSegment, *segment;
04b5ea16 1297 AliMUONTrack *track, *nextTrack;
1298 AliMUONTrackParam *trackParam1, trackParam[2], trackParamVertex;
ecfa008b 1299 // -1 to avoid compilation warnings
1300 Int_t ch = -1, chInStation, chBestHit = -1, iHit, iSegment, station, trackIndex;
04b5ea16 1301 Double_t bestChi2, chi2, dZ1, dZ2, dZ3, maxSigma2Distance, mcsFactor;
d0bfce8d 1302 Double_t bendingMomentum, chi2Norm = 0.;
9cbdf048 1303 AliMUON *pMUON = (AliMUON*) gAlice->GetModule("MUON"); // necessary ????
04b5ea16 1304 // local maxSigma2Distance, for easy increase in testing
1305 maxSigma2Distance = fMaxSigma2Distance;
a9e2aefa 1306 if (fPrintLevel >= 2)
1307 cout << "enter FollowTracks" << endl;
1308 // Loop over track candidates
04b5ea16 1309 track = (AliMUONTrack*) fRecTracksPtr->First();
1310 trackIndex = -1;
1311 while (track) {
1312 // Follow function for each track candidate ????
1313 trackIndex++;
1314 nextTrack = (AliMUONTrack*) fRecTracksPtr->After(track); // prepare next track
a9e2aefa 1315 if (fPrintLevel >= 2)
1316 cout << "FollowTracks: track candidate(0..): " << trackIndex << endl;
956019b6 1317 // Fit track candidate
1318 track->SetFitMCS(0); // without multiple Coulomb scattering
1319 track->SetFitNParam(3); // with 3 parameters (X = Y = 0)
1320 track->SetFitStart(0); // from parameters at vertex
1321 track->Fit();
a9e2aefa 1322 if (fPrintLevel >= 10) {
1323 cout << "FollowTracks: track candidate(0..): " << trackIndex
956019b6 1324 << " after fit in stations(0..) 3 and 4" << endl;
a9e2aefa 1325 track->RecursiveDump();
1326 }
1327 // Loop over stations(1..) 3, 2 and 1
04b5ea16 1328 // something SPECIAL for stations 2 and 1 for majority 3 coincidence ????
1329 // otherwise: majority coincidence 2 !!!!
a9e2aefa 1330 for (station = 2; station >= 0; station--) {
1331 // Track parameters at first track hit (smallest Z)
1332 trackParam1 = ((AliMUONTrackHit*)
1333 (track->GetTrackHitsPtr()->First()))->GetTrackParam();
1334 // extrapolation to station
1335 trackParam1->ExtrapToStation(station, trackParam);
79e1e601 1336 extrapSegment = new AliMUONSegment(); // empty segment
a9e2aefa 1337 // multiple scattering factor corresponding to one chamber
1338 // and momentum in bending plane (not total)
1339 mcsFactor = 0.0136 * trackParam1->GetInverseBendingMomentum();
1340 mcsFactor = fChamberThicknessInX0 * mcsFactor * mcsFactor;
1341 // Z difference from previous station
9cbdf048 1342 dZ1 = (&(pMUON->Chamber(2 * station)))->Z() -
1343 (&(pMUON->Chamber(2 * station + 2)))->Z();
a9e2aefa 1344 // Z difference between the two previous stations
9cbdf048 1345 dZ2 = (&(pMUON->Chamber(2 * station + 2)))->Z() -
1346 (&(pMUON->Chamber(2 * station + 4)))->Z();
04b5ea16 1347 // Z difference between the two chambers in the previous station
1348 dZ3 = (&(pMUON->Chamber(2 * station)))->Z() -
1349 (&(pMUON->Chamber(2 * station + 1)))->Z();
1350 extrapSegment->SetBendingCoorReso2(fBendingResolution * fBendingResolution);
1351 extrapSegment->
1352 SetNonBendingCoorReso2(fNonBendingResolution * fNonBendingResolution);
1353 extrapSegment->UpdateFromStationTrackParam
1354 (trackParam, mcsFactor, dZ1, dZ2, dZ3, station,
1355 trackParam1->GetInverseBendingMomentum());
a9e2aefa 1356 bestChi2 = 5.0;
1357 bestSegment = NULL;
1358 if (fPrintLevel >= 10) {
1359 cout << "FollowTracks: track candidate(0..): " << trackIndex
1360 << " Look for segment in station(0..): " << station << endl;
1361 }
1362 // Loop over segments in station
1363 for (iSegment = 0; iSegment < fNSegments[station]; iSegment++) {
1364 // Look for best compatible Segment in station
1365 // should consider all possibilities ????
1366 // multiple scattering ????
1367 // separation in 2 functions: Segment and HitForRec ????
1368 segment = (AliMUONSegment*) ((*fSegmentsPtr[station])[iSegment]);
d0bfce8d 1369 // correction of corrected segment (fBendingCoor and fNonBendingCoor)
1370 // according to real Z value of "segment" and slopes of "extrapSegment"
e516b01d 1371 (&(trackParam[0]))->ExtrapToZ(segment->GetZ());
1372 (&(trackParam[1]))->ExtrapToZ(segment->GetZ());
1373 extrapSegment->SetBendingCoor((&(trackParam[0]))->GetBendingCoor());
1374 extrapSegment->SetNonBendingCoor((&(trackParam[0]))->GetNonBendingCoor());
1375 extrapSegment->SetBendingSlope((&(trackParam[0]))->GetBendingSlope());
1376 extrapSegment->SetNonBendingSlope((&(trackParam[0]))->GetNonBendingSlope());
d0bfce8d 1377 chi2 = segment->
e516b01d 1378 NormalizedChi2WithSegment(extrapSegment, maxSigma2Distance);
a9e2aefa 1379 if (chi2 < bestChi2) {
1380 // update best Chi2 and Segment if better found
1381 bestSegment = segment;
1382 bestChi2 = chi2;
1383 }
1384 }
1385 if (bestSegment) {
1386 // best segment found: add it to track candidate
e516b01d 1387 (&(trackParam[0]))->ExtrapToZ(bestSegment->GetZ());
1388 (&(trackParam[1]))->ExtrapToZ(bestSegment->GetZ());
a9e2aefa 1389 track->AddSegment(bestSegment);
1390 // set track parameters at these two TrakHit's
1391 track->SetTrackParamAtHit(track->GetNTrackHits() - 2, &(trackParam[0]));
1392 track->SetTrackParamAtHit(track->GetNTrackHits() - 1, &(trackParam[1]));
1393 if (fPrintLevel >= 10) {
1394 cout << "FollowTracks: track candidate(0..): " << trackIndex
1395 << " Added segment in station(0..): " << station << endl;
1396 track->RecursiveDump();
1397 }
1398 }
1399 else {
1400 // No best segment found:
1401 // Look for best compatible HitForRec in station:
1402 // should consider all possibilities ????
1403 // multiple scattering ???? do about like for extrapSegment !!!!
79e1e601 1404 extrapHit = new AliMUONHitForRec(); // empty hit
a9e2aefa 1405 bestChi2 = 3.0;
1406 bestHit = NULL;
1407 if (fPrintLevel >= 10) {
1408 cout << "FollowTracks: track candidate(0..): " << trackIndex
1409 << " Segment not found, look for hit in station(0..): " << station
1410 << endl;
1411 }
1412 // Loop over chambers of the station
d82671a0 1413 for (chInStation = 0; chInStation < 2; chInStation++) {
956019b6 1414 ch = 2 * station + chInStation;
a9e2aefa 1415 for (iHit = fIndexOfFirstHitForRecPerChamber[ch];
1416 iHit < fIndexOfFirstHitForRecPerChamber[ch] +
1417 fNHitsForRecPerChamber[ch];
1418 iHit++) {
1419 hit = (AliMUONHitForRec*) ((*fHitsForRecPtr)[iHit]);
e516b01d 1420 // coordinates of extrapolated hit
1421 (&(trackParam[chInStation]))->ExtrapToZ(hit->GetZ());
1422 extrapHit->
1423 SetBendingCoor((&(trackParam[chInStation]))->GetBendingCoor());
1424 extrapHit->
1425 SetNonBendingCoor((&(trackParam[chInStation]))->GetNonBendingCoor());
1426 // resolutions from "extrapSegment"
1427 extrapHit->SetBendingReso2(extrapSegment->GetBendingCoorReso2());
1428 extrapHit->SetNonBendingReso2(extrapSegment->GetNonBendingCoorReso2());
1429 // Loop over hits in the chamber
a9e2aefa 1430 // condition for hit not already in segment ????
1431 chi2 = hit->NormalizedChi2WithHitForRec(extrapHit, maxSigma2Distance);
1432 if (chi2 < bestChi2) {
1433 // update best Chi2 and HitForRec if better found
1434 bestHit = hit;
1435 bestChi2 = chi2;
d82671a0 1436 chBestHit = chInStation;
a9e2aefa 1437 }
1438 }
1439 }
1440 if (bestHit) {
1441 // best hit found: add it to track candidate
e516b01d 1442 (&(trackParam[chBestHit]))->ExtrapToZ(bestHit->GetZ());
a9e2aefa 1443 track->AddHitForRec(bestHit);
956019b6 1444 // set track parameters at this TrackHit
a9e2aefa 1445 track->SetTrackParamAtHit(track->GetNTrackHits() - 1,
1446 &(trackParam[chBestHit]));
1447 if (fPrintLevel >= 10) {
1448 cout << "FollowTracks: track candidate(0..): " << trackIndex
1449 << " Added hit in station(0..): " << station << endl;
1450 track->RecursiveDump();
1451 }
1452 }
1453 else {
8429a5e4 1454 // Remove current track candidate
1455 // and corresponding TrackHit's, ...
1456 track->Remove();
04b5ea16 1457 delete extrapSegment;
d0bfce8d 1458 delete extrapHit;
a9e2aefa 1459 break; // stop the search for this candidate:
1460 // exit from the loop over station
1461 }
d0bfce8d 1462 delete extrapHit;
a9e2aefa 1463 }
04b5ea16 1464 delete extrapSegment;
a9e2aefa 1465 // Sort track hits according to increasing Z
1466 track->GetTrackHitsPtr()->Sort();
1467 // Update track parameters at first track hit (smallest Z)
1468 trackParam1 = ((AliMUONTrackHit*)
1469 (track->GetTrackHitsPtr()->First()))->GetTrackParam();
d0bfce8d 1470 bendingMomentum = 0.;
1471 if (TMath::Abs(trackParam1->GetInverseBendingMomentum()) > 0.)
1472 bendingMomentum = TMath::Abs(1/(trackParam1->GetInverseBendingMomentum()));
1473 // Track removed if bendingMomentum not in window [min, max]
1474 if ((bendingMomentum < fMinBendingMomentum) || (bendingMomentum > fMaxBendingMomentum)) {
1475 track->Remove();
1476 break; // stop the search for this candidate:
1477 // exit from the loop over station
1478 }
956019b6 1479 // Track fit
04b5ea16 1480 // with multiple Coulomb scattering if all stations
1481 if (station == 0) track->SetFitMCS(1);
956019b6 1482 // without multiple Coulomb scattering if not all stations
04b5ea16 1483 else track->SetFitMCS(0);
956019b6 1484 track->SetFitNParam(5); // with 5 parameters (momentum and position)
1485 track->SetFitStart(1); // from parameters at first hit
1486 track->Fit();
d0bfce8d 1487 Double_t numberOfDegFree = (2.0 * track->GetNTrackHits() - 5);
1488 if (numberOfDegFree > 0) {
1489 chi2Norm = track->GetFitFMin() / numberOfDegFree;
1490 } else {
1491 chi2Norm = 1.e10;
1492 }
1493 // Track removed if normalized chi2 too high
1494 if (chi2Norm > fMaxChi2) {
1495 track->Remove();
1496 break; // stop the search for this candidate:
1497 // exit from the loop over station
1498 }
a9e2aefa 1499 if (fPrintLevel >= 10) {
1500 cout << "FollowTracks: track candidate(0..): " << trackIndex
1501 << " after fit from station(0..): " << station << " to 4" << endl;
1502 track->RecursiveDump();
1503 }
04b5ea16 1504 // Track extrapolation to the vertex through the absorber (Branson)
956019b6 1505 // after going through the first station
04b5ea16 1506 if (station == 0) {
1507 trackParamVertex = *trackParam1;
889a0215 1508 (&trackParamVertex)->ExtrapToVertex(0.,0.,0.);
04b5ea16 1509 track->SetTrackParamAtVertex(&trackParamVertex);
6ae236ee 1510 if (fPrintLevel >= 1) {
1511 cout << "FollowTracks: track candidate(0..): " << trackIndex
1512 << " after extrapolation to vertex" << endl;
1513 track->RecursiveDump();
1514 }
04b5ea16 1515 }
a9e2aefa 1516 } // for (station = 2;...
04b5ea16 1517 // go really to next track
1518 track = nextTrack;
1519 } // while (track)
1520 // Compression of track array (necessary after Remove ????)
1521 fRecTracksPtr->Compress();
1522 return;
1523}
1524
1525 //__________________________________________________________________________
8429a5e4 1526void AliMUONEventReconstructor::RemoveDoubleTracks(void)
1527{
1528 // To remove double tracks.
1529 // Tracks are considered identical
1530 // if they have at least half of their hits in common.
1531 // Among two identical tracks, one keeps the track with the larger number of hits
1532 // or, if these numbers are equal, the track with the minimum Chi2.
1533 AliMUONTrack *track1, *track2, *trackToRemove;
1534 Bool_t identicalTracks;
1535 Int_t hitsInCommon, nHits1, nHits2;
1536 identicalTracks = kTRUE;
1537 while (identicalTracks) {
1538 identicalTracks = kFALSE;
1539 // Loop over first track of the pair
1540 track1 = (AliMUONTrack*) fRecTracksPtr->First();
1541 while (track1 && (!identicalTracks)) {
1542 nHits1 = track1->GetNTrackHits();
1543 // Loop over second track of the pair
1544 track2 = (AliMUONTrack*) fRecTracksPtr->After(track1);
1545 while (track2 && (!identicalTracks)) {
1546 nHits2 = track2->GetNTrackHits();
1547 // number of hits in common between two tracks
1548 hitsInCommon = track1->HitsInCommon(track2);
1549 // check for identical tracks
1550 if ((4 * hitsInCommon) >= (nHits1 + nHits2)) {
1551 identicalTracks = kTRUE;
1552 // decide which track to remove
1553 if (nHits1 > nHits2) trackToRemove = track2;
1554 else if (nHits1 < nHits2) trackToRemove = track1;
1555 else if ((track1->GetFitFMin()) < (track2->GetFitFMin()))
1556 trackToRemove = track2;
1557 else trackToRemove = track1;
1558 // remove it
1559 trackToRemove->Remove();
1560 }
1561 track2 = (AliMUONTrack*) fRecTracksPtr->After(track2);
1562 } // track2
1563 track1 = (AliMUONTrack*) fRecTracksPtr->After(track1);
1564 } // track1
1565 }
1566 return;
1567}
1568
d837040f 1569 //__________________________________________________________________________
1570void AliMUONEventReconstructor::UpdateTrackParamAtHit()
1571{
1572 // Set track parameters after track fitting. Fill fTrackParamAtHit of AliMUONTrack's
1573 AliMUONTrack *track;
1574 AliMUONTrackHit *trackHit;
1575 AliMUONTrackParam *trackParam;
1576 track = (AliMUONTrack*) fRecTracksPtr->First();
1577 while (track) {
1578 trackHit = (AliMUONTrackHit*) (track->GetTrackHitsPtr())->First();
1579 while (trackHit) {
1580 trackParam = trackHit->GetTrackParam();
1581 track->AddTrackParamAtHit(trackParam);
1582 trackHit = (AliMUONTrackHit*) (track->GetTrackHitsPtr())->After(trackHit);
1583 } // trackHit
1584 track = (AliMUONTrack*) fRecTracksPtr->After(track);
1585 } // track
1586 return;
1587}
1588
b8dc484b 1589 //__________________________________________________________________________
1590void AliMUONEventReconstructor::UpdateHitForRecAtHit()
1591{
1592 // Set cluster parameterss after track fitting. Fill fHitForRecAtHit of AliMUONTrack's
1593 AliMUONTrack *track;
1594 AliMUONTrackHit *trackHit;
1595 AliMUONHitForRec *hitForRec;
1596 track = (AliMUONTrack*) fRecTracksPtr->First();
1597 while (track) {
1598 trackHit = (AliMUONTrackHit*) (track->GetTrackHitsPtr())->First();
1599 while (trackHit) {
1600 hitForRec = trackHit->GetHitForRecPtr();
1601 track->AddHitForRecAtHit(hitForRec);
1602 trackHit = (AliMUONTrackHit*) (track->GetTrackHitsPtr())->After(trackHit);
1603 } // trackHit
1604 track = (AliMUONTrack*) fRecTracksPtr->After(track);
1605 } // track
1606 return;
1607}
1608
b035a148 1609 //__________________________________________________________________________
1610void AliMUONEventReconstructor::FillMUONTrack()
1611{
1612 // Set track parameters at hits for Kalman track. Fill fTrackParamAtHit of AliMUONTrack's
1613 AliMUONTrackK *track;
1614 track = (AliMUONTrackK*) fRecTracksPtr->First();
1615 while (track) {
1616 track->FillMUONTrack();
1617 track = (AliMUONTrackK*) fRecTracksPtr->After(track);
1618 }
1619 return;
1620}
1621
8429a5e4 1622 //__________________________________________________________________________
04b5ea16 1623void AliMUONEventReconstructor::EventDump(void)
1624{
1625 // Dump reconstructed event (track parameters at vertex and at first hit),
1626 // and the particle parameters
1627
1628 AliMUONTrack *track;
1629 AliMUONTrackParam *trackParam, *trackParam1;
04b5ea16 1630 Double_t bendingSlope, nonBendingSlope, pYZ;
1631 Double_t pX, pY, pZ, x, y, z, c;
1632 Int_t np, trackIndex, nTrackHits;
1633
1634 if (fPrintLevel >= 1) cout << "****** enter EventDump ******" << endl;
1635 if (fPrintLevel >= 1) {
1636 cout << " Number of Reconstructed tracks :" << fNRecTracks << endl;
1637 }
1638 fRecTracksPtr->Compress(); // for simple loop without "Next" since no hole
1639 // Loop over reconstructed tracks
1640 for (trackIndex = 0; trackIndex < fNRecTracks; trackIndex++) {
83dbc640 1641 if (fTrackMethod != 1) continue; //AZ - skip the rest for now
04b5ea16 1642 if (fPrintLevel >= 1)
1643 cout << " track number: " << trackIndex << endl;
1644 // function for each track for modularity ????
1645 track = (AliMUONTrack*) ((*fRecTracksPtr)[trackIndex]);
1646 nTrackHits = track->GetNTrackHits();
1647 if (fPrintLevel >= 1)
1648 cout << " number of track hits: " << nTrackHits << endl;
1649 // track parameters at Vertex
1650 trackParam = track->GetTrackParamAtVertex();
1651 x = trackParam->GetNonBendingCoor();
1652 y = trackParam->GetBendingCoor();
1653 z = trackParam->GetZ();
1654 bendingSlope = trackParam->GetBendingSlope();
1655 nonBendingSlope = trackParam->GetNonBendingSlope();
1656 pYZ = 1/TMath::Abs(trackParam->GetInverseBendingMomentum());
1657 pZ = pYZ/TMath::Sqrt(1+bendingSlope*bendingSlope);
1658 pX = pZ * nonBendingSlope;
1659 pY = pZ * bendingSlope;
1660 c = TMath::Sign(1.0, trackParam->GetInverseBendingMomentum());
1661 if (fPrintLevel >= 1)
1662 printf(" track parameters at Vertex z= %f: X= %f Y= %f pX= %f pY= %f pZ= %f c= %f\n",
1663 z, x, y, pX, pY, pZ, c);
1664
1665 // track parameters at first hit
1666 trackParam1 = ((AliMUONTrackHit*)
1667 (track->GetTrackHitsPtr()->First()))->GetTrackParam();
1668 x = trackParam1->GetNonBendingCoor();
1669 y = trackParam1->GetBendingCoor();
1670 z = trackParam1->GetZ();
1671 bendingSlope = trackParam1->GetBendingSlope();
1672 nonBendingSlope = trackParam1->GetNonBendingSlope();
1673 pYZ = 1/TMath::Abs(trackParam1->GetInverseBendingMomentum());
1674 pZ = pYZ/TMath::Sqrt(1.0 + bendingSlope * bendingSlope);
1675 pX = pZ * nonBendingSlope;
1676 pY = pZ * bendingSlope;
1677 c = TMath::Sign(1.0, trackParam1->GetInverseBendingMomentum());
1678 if (fPrintLevel >= 1)
1679 printf(" track parameters at z= %f: X= %f Y= %f pX= %f pY= %f pZ= %f c= %f\n",
1680 z, x, y, pX, pY, pZ, c);
1681 }
1682 // informations about generated particles
5d12ce38 1683 np = gAlice->GetMCApp()->GetNtrack();
04b5ea16 1684 printf(" **** number of generated particles: %d \n", np);
1685
88cb7938 1686// for (Int_t iPart = 0; iPart < np; iPart++) {
1687// p = gAlice->Particle(iPart);
1688// printf(" particle %d: type= %d px= %f py= %f pz= %f pdg= %d\n",
1689// iPart, p->GetPdgCode(), p->Px(), p->Py(), p->Pz(), p->GetPdgCode());
1690// }
a9e2aefa 1691 return;
1692}
1693
276c44b7 1694
1695//__________________________________________________________________________
1696void AliMUONEventReconstructor::EventDumpTrigger(void)
1697{
1698 // Dump reconstructed trigger event
1699 // and the particle parameters
1700
52c9bc11 1701 AliMUONTriggerTrack *triggertrack ;
1702 Int_t nTriggerTracks = fMUONData->RecTriggerTracks()->GetEntriesFast();
276c44b7 1703
276c44b7 1704 if (fPrintLevel >= 1) {
52c9bc11 1705 cout << "****** enter EventDumpTrigger ******" << endl;
1706 cout << " Number of Reconstructed tracks :" << nTriggerTracks << endl;
276c44b7 1707 }
1708 // Loop over reconstructed tracks
52c9bc11 1709 for (Int_t trackIndex = 0; trackIndex < nTriggerTracks; trackIndex++) {
1710 triggertrack = (AliMUONTriggerTrack*)fMUONData->RecTriggerTracks()->At(trackIndex);
276c44b7 1711 printf(" trigger track number %i x11=%f y11=%f thetax=%f thetay=%f \n",
1712 trackIndex,
1713 triggertrack->GetX11(),triggertrack->GetY11(),
1714 triggertrack->GetThetax(),triggertrack->GetThetay());
1715 }
1716}
1717
1718//__________________________________________________________________________
c7ba256d 1719void AliMUONEventReconstructor::FillEvent()
1720{
1721// Create a new AliMUONRecoEvent, fill its track list, then add it as a
1722// leaf in the Event branch of TreeRecoEvent tree
1723 cout << "Enter FillEvent() ...\n";
1724
1725 if (!fRecoEvent) {
1726 fRecoEvent = new AliMUONRecoEvent();
1727 } else {
1728 fRecoEvent->Clear();
1729 }
1730 //save current directory
1731 TDirectory *current = gDirectory;
1732 if (!fTreeFile) fTreeFile = new TFile("tree_reco.root", "RECREATE");
1733 if (!fEventTree) fEventTree = new TTree("TreeRecoEvent", "MUON reconstructed events");
83dbc640 1734 //AZif (fRecoEvent->MakeDumpTracks(fRecTracksPtr)) {
1735 if (fRecoEvent->MakeDumpTracks(fMuons, fRecTracksPtr, this)) { //AZ
c7ba256d 1736 if (fPrintLevel > 1) fRecoEvent->EventInfo();
1737 TBranch *branch = fEventTree->GetBranch("Event");
d0f40f23 1738 if (!branch) branch = fEventTree->Branch("Event", "AliMUONRecoEvent", &fRecoEvent, 64000);
c7ba256d 1739 branch->SetAutoDelete();
1740 fTreeFile->cd();
1741 fEventTree->Fill();
1742 fTreeFile->Write();
1743 }
1744 // restore directory
1745 current->cd();
1746}
83dbc640 1747
1748//__________________________________________________________________________
1749void AliMUONEventReconstructor::MakeTrackCandidatesK(void)
1750{
1751 // To make initial tracks for Kalman filter from the list of segments
1752 Int_t istat, iseg;
1753 AliMUONSegment *segment;
1754 AliMUONTrackK *trackK;
1755
1756 if (fPrintLevel >= 1) cout << "enter MakeTrackCandidatesK" << endl;
1757 // Reset the TClonesArray of reconstructed tracks
1758 if (fRecTracksPtr) fRecTracksPtr->Delete();
1759 // Delete in order that the Track destructors are called,
1760 // hence the space for the TClonesArray of pointers to TrackHit's is freed
1761 fNRecTracks = 0;
1762
1763 AliMUONTrackK a(this, fHitsForRecPtr); // bad idea ???
1764 // Loop over stations(1...) 5 and 4
1765 for (istat=4; istat>=3; istat--) {
1766 // Loop over segments in the station
1767 for (iseg=0; iseg<fNSegments[istat]; iseg++) {
1768 // Transform segments to tracks and evaluate covariance matrix
1769 segment = (AliMUONSegment*) ((*fSegmentsPtr[istat])[iseg]);
1770 trackK = new ((*fRecTracksPtr)[fNRecTracks]) AliMUONTrackK(segment);
1771 fNRecTracks++;
1772 } // for (iseg=0;...)
1773 } // for (istat=4;...)
1774 return;
1775}
1776
1777//__________________________________________________________________________
1778void AliMUONEventReconstructor::FollowTracksK(void)
1779{
1780 // Follow tracks using Kalman filter
30178c30 1781 Bool_t ok;
b035a148 1782 Int_t icand, ichamBeg = 0, ichamEnd, chamBits;
83dbc640 1783 Double_t zDipole1, zDipole2;
1784 AliMUONTrackK *trackK;
1785 AliMUONHitForRec *hit;
1786 AliMUONRawCluster *clus;
1787 TClonesArray *rawclusters;
83dbc640 1788 clus = 0; rawclusters = 0;
1789
b035a148 1790 //AZ(z->-z) zDipole1 = GetSimpleBPosition() - GetSimpleBLength()/2;
1791 //AZ(z->-z) zDipole2 = zDipole1 + GetSimpleBLength();
1792 zDipole1 = GetSimpleBPosition() + GetSimpleBLength()/2;
1793 zDipole2 = zDipole1 - GetSimpleBLength();
83dbc640 1794
1795 // Print hits
b035a148 1796 trackK = (AliMUONTrackK*) ((*fRecTracksPtr)[0]);
1797 if (trackK->DebugLevel() > 0) {
1798 for (Int_t i1=0; i1<fNHitsForRec; i1++) {
1799 hit = (AliMUONHitForRec*) ((*fHitsForRecPtr)[i1]);
29fc2c86 1800 //if (hit->GetTTRTrack() > 1 || hit->GetTrackRefSignal() == 0) continue;
b035a148 1801 printf(" Hit # %d %10.4f %10.4f %10.4f",
1802 hit->GetChamberNumber(), hit->GetBendingCoor(),
1803 hit->GetNonBendingCoor(), hit->GetZ());
29fc2c86 1804 if (fRecTrackRefHits) {
1805 // from track ref hits
1806 printf(" %3d %3d \n", hit->GetTrackRefSignal(), hit->GetTTRTrack());
b035a148 1807 } else {
1808 // from raw clusters
1809 rawclusters = fMUONData->RawClusters(hit->GetChamberNumber());
1810 clus = (AliMUONRawCluster*) rawclusters->UncheckedAt(hit->
1811 GetHitNumber());
1812 printf("%3d", clus->GetTrack(1)-1);
1813 if (clus->GetTrack(2) != 0) printf("%3d \n", clus->GetTrack(2)-1);
1814 else printf("\n");
29fc2c86 1815 } // if (fRecTrackRefHits)
83dbc640 1816 }
b035a148 1817 } // if (trackK->DebugLevel() > 0)
83dbc640 1818
1819 icand = -1;
b035a148 1820 Int_t nSeeds;
1821 nSeeds = fNRecTracks; // starting number of seeds
83dbc640 1822 // Loop over track candidates
1823 while (icand < fNRecTracks-1) {
1824 icand ++;
b035a148 1825 if (trackK->DebugLevel()>0) cout << " *** Kalman track candidate No. " << icand << endl;
83dbc640 1826 trackK = (AliMUONTrackK*) ((*fRecTracksPtr)[icand]);
b035a148 1827 if (trackK->GetRecover() < 0) continue; // failed track
83dbc640 1828
1829 // Discard candidate which will produce the double track
b035a148 1830 /*
83dbc640 1831 if (icand > 0) {
30178c30 1832 ok = CheckCandidateK(icand,nSeeds);
1833 if (!ok) {
b035a148 1834 trackK->SetRecover(-1); // mark candidate to be removed
1835 continue;
83dbc640 1836 }
1837 }
b035a148 1838 */
83dbc640 1839
30178c30 1840 ok = kTRUE;
83dbc640 1841 if (trackK->GetRecover() == 0) hit = (AliMUONHitForRec*)
1842 trackK->GetHitOnTrack()->Last(); // last hit
b035a148 1843 //else hit = (AliMUONHitForRec*) (*trackK->GetHitOnTrack())[1]; // 2'nd hit
1844 else hit = trackK->GetHitLastOk(); // hit where track stopped
1845 if (hit) ichamBeg = hit->GetChamberNumber();
83dbc640 1846 ichamEnd = 0;
1847 // Check propagation direction
b035a148 1848 if (hit == NULL) ichamBeg = ichamEnd;
1849 //AZ(z->-z) else if (trackK->GetTrackDir() > 0) {
1850 else if (trackK->GetTrackDir() < 0) {
83dbc640 1851 ichamEnd = 9; // forward propagation
30178c30 1852 ok = trackK->KalmanFilter(ichamBeg,ichamEnd,kFALSE,zDipole1,zDipole2);
1853 if (ok) {
83dbc640 1854 ichamBeg = ichamEnd;
1855 ichamEnd = 6; // backward propagation
1856 // Change weight matrix and zero fChi2 for backpropagation
1857 trackK->StartBack();
b035a148 1858 //AZ trackK->SetTrackDir(-1);
1859 trackK->SetTrackDir(1);
30178c30 1860 ok = trackK->KalmanFilter(ichamBeg,ichamEnd,kTRUE,zDipole1,zDipole2);
83dbc640 1861 ichamBeg = ichamEnd;
1862 ichamEnd = 0;
1863 }
1864 } else {
1865 if (trackK->GetBPFlag()) {
1866 // backpropagation
1867 ichamEnd = 6; // backward propagation
1868 // Change weight matrix and zero fChi2 for backpropagation
1869 trackK->StartBack();
30178c30 1870 ok = trackK->KalmanFilter(ichamBeg,ichamEnd,kTRUE,zDipole1,zDipole2);
83dbc640 1871 ichamBeg = ichamEnd;
1872 ichamEnd = 0;
1873 }
1874 }
1875
30178c30 1876 if (ok) {
b035a148 1877 //AZ trackK->SetTrackDir(-1);
1878 trackK->SetTrackDir(1);
83dbc640 1879 trackK->SetBPFlag(kFALSE);
30178c30 1880 ok = trackK->KalmanFilter(ichamBeg,ichamEnd,kFALSE,zDipole1,zDipole2);
83dbc640 1881 }
b035a148 1882 if (!ok) { trackK->SetRecover(-1); continue; } // mark candidate to be removed
1883
1884 // Apply smoother
1885 if (trackK->GetRecover() >= 0) {
1886 ok = trackK->Smooth();
1887 if (!ok) trackK->SetRecover(-1); // mark candidate to be removed
1888 }
83dbc640 1889
1890 // Majority 3 of 4 in first 2 stations
b035a148 1891 if (!ok) continue;
83dbc640 1892 chamBits = 0;
b035a148 1893 Double_t chi2_max = 0;
83dbc640 1894 for (Int_t i=0; i<trackK->GetNTrackHits(); i++) {
1895 hit = (AliMUONHitForRec*) (*trackK->GetHitOnTrack())[i];
b035a148 1896 chamBits |= BIT(hit->GetChamberNumber());
1897 if (trackK->GetChi2PerPoint(i) > chi2_max) chi2_max = trackK->GetChi2PerPoint(i);
83dbc640 1898 }
b035a148 1899 if (!((chamBits&3)==3 || (chamBits>>2&3)==3) && chi2_max > 25) {
1900 //trackK->Recover();
1901 trackK->SetRecover(-1); //mark candidate to be removed
1902 continue;
1903 }
1904 if (ok) trackK->SetTrackQuality(0); // compute "track quality"
83dbc640 1905 } // while
1906
1907 for (Int_t i=0; i<fNRecTracks; i++) {
1908 trackK = (AliMUONTrackK*) ((*fRecTracksPtr)[i]);
1909 if (trackK->GetRecover() < 0) fRecTracksPtr->RemoveAt(i);
1910 }
1911
1912 // Compress TClonesArray
1913 fRecTracksPtr->Compress();
1914 fNRecTracks = fRecTracksPtr->GetEntriesFast();
1915 return;
1916}
1917
1918//__________________________________________________________________________
30178c30 1919Bool_t AliMUONEventReconstructor::CheckCandidateK(Int_t icand, Int_t nSeeds) const
83dbc640 1920{
1921 // Discards track candidate if it will produce the double track (having
1922 // the same seed segment hits as hits of a good track found before)
1923 AliMUONTrackK *track1, *track2;
1924 AliMUONHitForRec *hit1, *hit2, *hit;
1925
1926 track1 = (AliMUONTrackK*) ((*fRecTracksPtr)[icand]);
1927 hit1 = (AliMUONHitForRec*) (*track1->GetHitOnTrack())[0]; // 1'st hit
1928 hit2 = (AliMUONHitForRec*) (*track1->GetHitOnTrack())[1]; // 2'nd hit
1929
1930 for (Int_t i=0; i<icand; i++) {
1931 track2 = (AliMUONTrackK*) ((*fRecTracksPtr)[i]);
1932 //if (track2->GetRecover() < 0) continue;
1933 if (track2->GetRecover() < 0 && icand >= nSeeds) continue;
1934
1935 if (track1->GetStartSegment() == track2->GetStartSegment()) {
1936 return kFALSE;
1937 } else {
1938 Int_t nSame = 0;
1939 for (Int_t j=0; j<track2->GetNTrackHits(); j++) {
1940 hit = (AliMUONHitForRec*) (*track2->GetHitOnTrack())[j];
1941 if (hit == hit1 || hit == hit2) {
1942 nSame++;
1943 if (nSame == 2) return kFALSE;
1944 }
1945 } // for (Int_t j=0;
1946 }
1947 } // for (Int_t i=0;
1948 return kTRUE;
1949}
1950
1951//__________________________________________________________________________
1952void AliMUONEventReconstructor::RemoveDoubleTracksK(void)
1953{
1954 // Removes double tracks (sharing more than half of their hits). Keeps
1955 // the track with higher quality
1956 AliMUONTrackK *track1, *track2, *trackToKill;
1957
1958 // Sort tracks according to their quality
1959 fRecTracksPtr->Sort();
1960
1961 // Loop over first track of the pair
1962 track1 = (AliMUONTrackK*) fRecTracksPtr->First();
b035a148 1963 Int_t debug = track1->DebugLevel();
83dbc640 1964 while (track1) {
1965 // Loop over second track of the pair
1966 track2 = (AliMUONTrackK*) fRecTracksPtr->After(track1);
1967 while (track2) {
1968 // Check whether or not to keep track2
1969 if (!track2->KeepTrack(track1)) {
b035a148 1970 if (debug >= 0) cout << " Killed track: " << 1/(*track2->GetTrackParameters())(4,0) <<
83dbc640 1971 " " << track2->GetTrackQuality() << endl;
1972 trackToKill = track2;
1973 track2 = (AliMUONTrackK*) fRecTracksPtr->After(track2);
1974 trackToKill->Kill();
1975 fRecTracksPtr->Compress();
1976 } else track2 = (AliMUONTrackK*) fRecTracksPtr->After(track2);
1977 } // track2
1978 track1 = (AliMUONTrackK*) fRecTracksPtr->After(track1);
1979 } // track1
1980
1981 fNRecTracks = fRecTracksPtr->GetEntriesFast();
b035a148 1982 if (debug >= 0) cout << " Number of Kalman tracks: " << fNRecTracks << endl;
83dbc640 1983}
1984
1985//__________________________________________________________________________
1986void AliMUONEventReconstructor::GoToVertex(void)
1987{
1988 // Propagates track to the vertex thru absorber
1989 // (using Branson correction for now)
1990
1991 Double_t zVertex;
1992 zVertex = 0;
1993 for (Int_t i=0; i<fNRecTracks; i++) {
1994 //((AliMUONTrackK*)(*fRecTracksPtr)[i])->Branson();
83dbc640 1995 ((AliMUONTrackK*)(*fRecTracksPtr)[i])->SetTrackQuality(1); // compute Chi2
b035a148 1996 //((AliMUONTrackK*)(*fRecTracksPtr)[i])->GoToZ(zVertex); // w/out absorber
1997 ((AliMUONTrackK*)(*fRecTracksPtr)[i])->GoToVertex(1); // with absorber
83dbc640 1998 }
1999}
b035a148 2000
2001//__________________________________________________________________________
2002void AliMUONEventReconstructor::SetTrackMethod(Int_t iTrackMethod)
2003{
2004 // Set track method and recreate track container if necessary
2005
2006 fTrackMethod = iTrackMethod == 2 ? 2 : 1;
2007 if (fTrackMethod == 2) {
2008 if (fRecTracksPtr) delete fRecTracksPtr;
2009 fRecTracksPtr = new TClonesArray("AliMUONTrackK", 10);
2010 cout << " *** Tracking with the Kalman filter *** " << endl;
2011 } else cout << " *** Traditional tracking *** " << endl;
2012
2013}