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9e1a0ddb 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16/*
17$Log$
be3380a3 18Revision 1.16 2001/11/20 09:27:55 hristov
19Possibility to investigate a primary of not yet loaded particle (I.Hrivnacova)
20
f5f55563 21Revision 1.15 2001/09/04 15:10:37 hristov
22Additional protection is included to avoid some problems using Hijing
23
1305ca2f 24Revision 1.14 2001/08/30 09:44:06 hristov
25VertexSource_t added to avoid the warnings
26
da2af24c 27Revision 1.13 2001/08/29 13:31:42 morsch
28Protection against (fTreeK == 0) in destructor.
29
cfb2cc9c 30Revision 1.12 2001/07/27 13:03:13 hristov
31Default Branch split level set to 99
32
d0f40f23 33Revision 1.11 2001/07/27 12:34:20 jchudoba
34remove the dummy argument in GetEvent method
35
cec14bc5 36Revision 1.10 2001/07/20 10:13:54 morsch
37In Particle(Int_t) use GetEntriesFast to speed up the procedure.
38
911a3148 39Revision 1.9 2001/07/03 08:10:57 hristov
40J.Chudoba's changes merged correctly with the HEAD
41
d1750cff 42Revision 1.6 2001/05/31 06:59:06 fca
43Clean setting and deleting of fParticleBuffer
44
17f4a3d9 45Revision 1.5 2001/05/30 12:18:46 hristov
46Loop variables declared once
47
3ab6f951 48Revision 1.4 2001/05/25 07:25:20 hristov
49AliStack destructor corrected (I.Hrivnacova)
50
81694e6a 51Revision 1.3 2001/05/22 14:33:16 hristov
52Minor changes
53
ed54bf31 54Revision 1.2 2001/05/17 05:49:39 fca
55Reset pointers to daughters
56
76969085 57Revision 1.1 2001/05/16 14:57:22 alibrary
58New files for folders and Stack
59
9e1a0ddb 60*/
61
62///////////////////////////////////////////////////////////////////////////////
63// //
64// Particles stack class
65// //
66///////////////////////////////////////////////////////////////////////////////
67
68#include <iostream.h>
69
70#include <TObjArray.h>
71#include <TParticle.h>
72#include <TTree.h>
73#include <TFile.h>
74#include <TFolder.h>
75#include <TROOT.h>
76
77#include "AliStack.h"
78#include "AliRun.h"
79#include "AliModule.h"
80#include "AliHit.h"
81//#include "ETrackBits.h"
82
83ClassImp(AliStack)
84
85//_____________________________________________________________________________
86AliStack::AliStack(Int_t size)
87{
88 //
89 // Constructor
90 //
91
92 // Create the particles arrays
93 fParticles = new TClonesArray("TParticle",1000);
94 fParticleMap = new TObjArray(size);
17f4a3d9 95 fParticleBuffer = 0;
ccf7a81f 96 fNtrack = 0;
97 fNprimary = 0;
9e1a0ddb 98 fCurrent = -1;
99 fCurrentPrimary = -1;
ccf7a81f 100 fTreeK = 0;
9e1a0ddb 101}
102
103
104//_____________________________________________________________________________
105AliStack::AliStack()
106{
107 //
108 // Default constructor
109 //
110
111 // Create the particles arrays
be3380a3 112 fParticles = 0;
113 fParticleMap = 0;
17f4a3d9 114 fParticleBuffer = 0;
ccf7a81f 115 fNtrack = 0;
9e1a0ddb 116 fCurrent = -1;
ccf7a81f 117 fNprimary = 0;
9e1a0ddb 118 fCurrentPrimary = -1;
ccf7a81f 119 fTreeK = 0;
9e1a0ddb 120}
121
122
123//_____________________________________________________________________________
124AliStack::~AliStack()
125{
126 //
127 // Destructor
128 //
129
81694e6a 130 delete fParticleBuffer;
9e1a0ddb 131 if (fParticles) {
132 fParticles->Delete();
133 delete fParticles;
134 }
135 delete fParticleMap;
cfb2cc9c 136 if (fTreeK) delete fTreeK;
9e1a0ddb 137}
138
139//
140// public methods
141//
142
143//_____________________________________________________________________________
144void AliStack::SetTrack(Int_t done, Int_t parent, Int_t pdg, Float_t *pmom,
145 Float_t *vpos, Float_t *polar, Float_t tof,
146 AliMCProcess mech, Int_t &ntr, Float_t weight)
147{
148 //
149 // Load a track on the stack
150 //
151 // done 0 if the track has to be transported
152 // 1 if not
153 // parent identifier of the parent track. -1 for a primary
154 // pdg particle code
155 // pmom momentum GeV/c
156 // vpos position
157 // polar polarisation
158 // tof time of flight in seconds
159 // mecha production mechanism
160 // ntr on output the number of the track stored
161 //
162
163 Float_t mass;
164 const Int_t kfirstdaughter=-1;
165 const Int_t klastdaughter=-1;
166 const Int_t kS=0;
167 // const Float_t tlife=0;
168
169 //
170 // Here we get the static mass
171 // For MC is ok, but a more sophisticated method could be necessary
172 // if the calculated mass is required
173 // also, this method is potentially dangerous if the mass
174 // used in the MC is not the same of the PDG database
175 //
176 mass = TDatabasePDG::Instance()->GetParticle(pdg)->Mass();
177 Float_t e=TMath::Sqrt(mass*mass+pmom[0]*pmom[0]+
178 pmom[1]*pmom[1]+pmom[2]*pmom[2]);
179
ccf7a81f 180// printf("Loading mass %f ene %f No %d ip %d parent %d done %d pos %f %f %f mom %f %f %f kS %d m \n",
181// mass,e,fNtrack,pdg,parent,done,vpos[0],vpos[1],vpos[2],pmom[0],pmom[1],pmom[2],kS);
182
9e1a0ddb 183 TClonesArray &particles = *fParticles;
184 TParticle* particle
185 = new(particles[fLoadPoint++])
186 TParticle(pdg, kS, parent, -1, kfirstdaughter, klastdaughter,
187 pmom[0], pmom[1], pmom[2], e, vpos[0], vpos[1], vpos[2], tof);
188 particle->SetPolarisation(TVector3(polar[0],polar[1],polar[2]));
189 particle->SetWeight(weight);
190 particle->SetUniqueID(mech);
191 if(!done) particle->SetBit(kDoneBit);
192
193
194 // Declare that the daughter information is valid
195 particle->SetBit(kDaughtersBit);
196 // Add the particle to the stack
197 fParticleMap->AddAtAndExpand(particle, fNtrack);
198
199 if(parent>=0) {
200 particle = (TParticle*) fParticleMap->At(parent);
1305ca2f 201 if (particle) {
202 particle->SetLastDaughter(fNtrack);
203 if(particle->GetFirstDaughter()<0) particle->SetFirstDaughter(fNtrack);
204 }
205 else {
206 printf("Error in AliStack::SetTrack: Parent %d does not exist\n",parent);
207 }
9e1a0ddb 208 }
209 else {
210 //
211 // This is a primary track. Set high water mark for this event
212 fHgwmk = fNtrack;
213 //
214 // Set also number if primary tracks
215 fNprimary = fHgwmk+1;
216 fCurrentPrimary++;
217 }
218 ntr = fNtrack++;
219}
220
221//_____________________________________________________________________________
222void AliStack::SetTrack(Int_t done, Int_t parent, Int_t pdg,
223 Double_t px, Double_t py, Double_t pz, Double_t e,
224 Double_t vx, Double_t vy, Double_t vz, Double_t tof,
225 Double_t polx, Double_t poly, Double_t polz,
226 AliMCProcess mech, Int_t &ntr, Float_t weight)
227{
228 //
229 // Load a track on the stack
230 //
231 // done 0 if the track has to be transported
232 // 1 if not
233 // parent identifier of the parent track. -1 for a primary
234 // pdg particle code
235 // kS generation status code
236 // px, py, pz momentum GeV/c
237 // vx, vy, vz position
238 // polar polarisation
239 // tof time of flight in seconds
240 // mech production mechanism
241 // ntr on output the number of the track stored
242 //
243 // New method interface:
244 // arguments were changed to be in correspondence with TParticle
245 // constructor.
246 // Note: the energy is not calculated from the static mass but
247 // it is passed by argument e.
248
249
250 const Int_t kS=0;
251 const Int_t kFirstDaughter=-1;
252 const Int_t kLastDaughter=-1;
253
254 TClonesArray &particles = *fParticles;
255 TParticle* particle
256 = new(particles[fLoadPoint++])
257 TParticle(pdg, kS, parent, -1, kFirstDaughter, kLastDaughter,
258 px, py, pz, e, vx, vy, vz, tof);
259
260 particle->SetPolarisation(polx, poly, polz);
261 particle->SetWeight(weight);
262 particle->SetUniqueID(mech);
263
264 if(!done) particle->SetBit(kDoneBit);
265
266 // Declare that the daughter information is valid
267 particle->SetBit(kDaughtersBit);
268 // Add the particle to the stack
269 fParticleMap->AddAtAndExpand(particle, fNtrack);//CHECK!!
270
271 if(parent>=0) {
272 particle = (TParticle*) fParticleMap->At(parent);
1305ca2f 273 if (particle) {
274 particle->SetLastDaughter(fNtrack);
275 if(particle->GetFirstDaughter()<0) particle->SetFirstDaughter(fNtrack);
276 }
277 else {
278 printf("Error in AliStack::SetTrack: Parent %d does not exist\n",parent);
279 }
9e1a0ddb 280 }
281 else {
282 //
283 // This is a primary track. Set high water mark for this event
284 fHgwmk = fNtrack;
285 //
286 // Set also number if primary tracks
287 fNprimary = fHgwmk+1;
288 fCurrentPrimary++;
289 }
290 ntr = fNtrack++;
291}
292
293//_____________________________________________________________________________
294void AliStack::GetNextTrack(Int_t &mtrack, Int_t &ipart, Float_t *pmom,
295 Float_t &e, Float_t *vpos, Float_t *polar,
296 Float_t &tof)
297{
298 //
299 // Return next track from stack of particles
300 //
301
302
303 TParticle* track = GetNextParticle();
ccf7a81f 304// cout << "GetNextTrack():" << fCurrent << fNprimary << endl;
9e1a0ddb 305
306 if(track) {
307 mtrack=fCurrent;
308 ipart=track->GetPdgCode();
309 pmom[0]=track->Px();
310 pmom[1]=track->Py();
311 pmom[2]=track->Pz();
312 e =track->Energy();
313 vpos[0]=track->Vx();
314 vpos[1]=track->Vy();
315 vpos[2]=track->Vz();
316 TVector3 pol;
317 track->GetPolarisation(pol);
318 polar[0]=pol.X();
319 polar[1]=pol.Y();
320 polar[2]=pol.Z();
321 tof=track->T();
322 track->SetBit(kDoneBit);
ccf7a81f 323// cout << "Filled params" << endl;
9e1a0ddb 324 }
325 else
326 mtrack=-1;
327
328 //
329 // stop and start timer when we start a primary track
330 Int_t nprimaries = fNprimary;
331 if (fCurrent >= nprimaries) return;
332 if (fCurrent < nprimaries-1) {
333 fTimer.Stop();
334 track=(TParticle*) fParticleMap->At(fCurrent+1);
335 // track->SetProcessTime(fTimer.CpuTime());
336 }
337 fTimer.Start();
338}
339
340
341//_____________________________________________________________________________
342void AliStack::PurifyKine()
343{
344 //
345 // Compress kinematic tree keeping only flagged particles
346 // and renaming the particle id's in all the hits
347 //
348
349 TObjArray &particles = *fParticleMap;
350 int nkeep=fHgwmk+1, parent, i;
351 TParticle *part, *father;
352 TArrayI map(particles.GetLast()+1);
353
354 // Save in Header total number of tracks before compression
355
356 // If no tracks generated return now
357 if(fHgwmk+1 == fNtrack) return;
358
9e1a0ddb 359 // First pass, invalid Daughter information
360 for(i=0; i<fNtrack; i++) {
361 // Preset map, to be removed later
362 if(i<=fHgwmk) map[i]=i ;
363 else {
364 map[i] = -99;
76969085 365 if((part=(TParticle*) particles.At(i))) {
366 part->ResetBit(kDaughtersBit);
367 part->SetFirstDaughter(-1);
368 part->SetLastDaughter(-1);
369 }
9e1a0ddb 370 }
371 }
372 // Invalid daughter information for the parent of the first particle
373 // generated. This may or may not be the current primary according to
374 // whether decays have been recorded among the primaries
375 part = (TParticle *)particles.At(fHgwmk+1);
376 particles.At(part->GetFirstMother())->ResetBit(kDaughtersBit);
377 // Second pass, build map between old and new numbering
378 for(i=fHgwmk+1; i<fNtrack; i++) {
379 if(particles.At(i)->TestBit(kKeepBit)) {
380
381 // This particle has to be kept
382 map[i]=nkeep;
383 // If old and new are different, have to move the pointer
384 if(i!=nkeep) particles[nkeep]=particles.At(i);
385 part = (TParticle*) particles.At(nkeep);
386
387 // as the parent is always *before*, it must be already
388 // in place. This is what we are checking anyway!
389 if((parent=part->GetFirstMother())>fHgwmk)
390 if(map[parent]==-99) Fatal("PurifyKine","map[%d] = -99!\n",parent);
391 else part->SetFirstMother(map[parent]);
392
393 nkeep++;
394 }
395 }
396
397 // Fix daughters information
398 for (i=fHgwmk+1; i<nkeep; i++) {
399 part = (TParticle *)particles.At(i);
400 parent = part->GetFirstMother();
401 if(parent>=0) {
402 father = (TParticle *)particles.At(parent);
403 if(father->TestBit(kDaughtersBit)) {
404
405 if(i<father->GetFirstDaughter()) father->SetFirstDaughter(i);
406 if(i>father->GetLastDaughter()) father->SetLastDaughter(i);
407 } else {
408 // Initialise daughters info for first pass
409 father->SetFirstDaughter(i);
410 father->SetLastDaughter(i);
411 father->SetBit(kDaughtersBit);
412 }
413 }
414 }
415
416 // Now loop on all registered hit lists
417 TList* hitLists = gAlice->GetHitLists();
418 TIter next(hitLists);
419 TCollection *hitList;
420 while((hitList = (TCollection*)next())) {
421 TIter nexthit(hitList);
422 AliHit *hit;
423 while((hit = (AliHit*)nexthit())) {
424 hit->SetTrack(map[hit->GetTrack()]);
425 }
426 }
427
428 //
429 // This for detectors which have a special mapping mechanism
430 // for hits, such as TPC and TRD
431 //
432
433 TObjArray* modules = gAlice->Modules();
434 TIter nextmod(modules);
435 AliModule *detector;
436 while((detector = (AliModule*)nextmod())) {
437 detector->RemapTrackHitIDs(map.GetArray());
438 }
439
440 // Now the output bit, from fHgwmk to nkeep we write everything and we erase
441 if(nkeep>fParticleFileMap.GetSize()) fParticleFileMap.Set(Int_t (nkeep*1.5));
442
443 for (i=fHgwmk+1; i<nkeep; ++i) {
444 fParticleBuffer = (TParticle*) particles.At(i);
445 fParticleFileMap[i]=(Int_t) fTreeK->GetEntries();
446 fTreeK->Fill();
17f4a3d9 447 particles[i]=fParticleBuffer=0;
9e1a0ddb 448 }
449
450 for (i=nkeep; i<fNtrack; ++i) particles[i]=0;
451
76969085 452 Int_t toshrink = fNtrack-fHgwmk-1;
9e1a0ddb 453 fLoadPoint-=toshrink;
454 for(i=fLoadPoint; i<fLoadPoint+toshrink; ++i) fParticles->RemoveAt(i);
455
456 fNtrack=nkeep;
457 fHgwmk=nkeep-1;
458 // delete [] map;
459}
460
461//_____________________________________________________________________________
462void AliStack::FinishEvent()
463{
464 //
465 // Write out the kinematics that was not yet filled
466 //
467
468 // Update event header
469
470
471 if (!fTreeK) {
472// Fatal("FinishEvent", "No kinematics tree is defined.");
473// Don't panic this is a probably a lego run
474 return;
475
476 }
477
478 CleanParents();
479 if(fTreeK->GetEntries() ==0) {
480 // set the fParticleFileMap size for the first time
481 fParticleFileMap.Set(fHgwmk+1);
482 }
483
484 Bool_t allFilled = kFALSE;
485 TObject *part;
486 for(Int_t i=0; i<fHgwmk+1; ++i)
487 if((part=fParticleMap->At(i))) {
488 fParticleBuffer = (TParticle*) part;
489 fParticleFileMap[i]= (Int_t) fTreeK->GetEntries();
490 fTreeK->Fill();
da2af24c 491 //PH (*fParticleMap)[i]=fParticleBuffer=0;
492 fParticleBuffer=0;
493 fParticleMap->AddAt(0,i);
9e1a0ddb 494
495 // When all primaries were filled no particle!=0
496 // should be left => to be removed later.
497 if (allFilled) printf("Why != 0 part # %d?\n",i);
498 }
499 else {
500 // // printf("Why = 0 part # %d?\n",i); => We know.
501 // break;
502 // we don't break now in order to be sure there is no
503 // particle !=0 left.
504 // To be removed later and replaced with break.
505 if(!allFilled) allFilled = kTRUE;
506 }
ccf7a81f 507// cout << "Nof particles: " << fNtrack << endl;
9e1a0ddb 508 //Reset();
509}
510
511//_____________________________________________________________________________
512void AliStack::FlagTrack(Int_t track)
513{
514 //
515 // Flags a track and all its family tree to be kept
516 //
517
518 TParticle *particle;
519
520 Int_t curr=track;
521 while(1) {
522 particle=(TParticle*)fParticleMap->At(curr);
523
524 // If the particle is flagged the three from here upward is saved already
525 if(particle->TestBit(kKeepBit)) return;
526
527 // Save this particle
528 particle->SetBit(kKeepBit);
529
530 // Move to father if any
531 if((curr=particle->GetFirstMother())==-1) return;
532 }
533}
534
535//_____________________________________________________________________________
ed54bf31 536void AliStack::KeepTrack(Int_t track)
9e1a0ddb 537{
538 //
539 // Flags a track to be kept
540 //
541
542 fParticleMap->At(track)->SetBit(kKeepBit);
543}
544
545//_____________________________________________________________________________
546void AliStack::Reset(Int_t size)
547{
548 //
549 // Resets stack
550 //
551
552 fNtrack=0;
553 fNprimary=0;
554 fHgwmk=0;
555 fLoadPoint=0;
556 fCurrent = -1;
557 ResetArrays(size);
558}
559
560//_____________________________________________________________________________
561void AliStack::ResetArrays(Int_t size)
562{
563 //
564 // Resets stack arrays
565 //
566
be3380a3 567 if (fParticles)
568 fParticles->Clear();
569 else
570 fParticles = new TClonesArray("TParticle",1000);
571 if (fParticleMap) {
572 fParticleMap->Clear();
573 if (size>0) fParticleMap->Expand(size);}
574 else
575 fParticleMap = new TObjArray(size);
9e1a0ddb 576}
577
578//_____________________________________________________________________________
ed54bf31 579void AliStack::SetHighWaterMark(Int_t nt)
9e1a0ddb 580{
581 //
582 // Set high water mark for last track in event
583 //
584
585 fHgwmk = fNtrack-1;
586 fCurrentPrimary=fHgwmk;
587
588 // Set also number of primary tracks
589 fNprimary = fHgwmk+1;
590 fNtrack = fHgwmk+1;
591}
592
593//_____________________________________________________________________________
594TParticle* AliStack::Particle(Int_t i)
595{
596 //
597 // Return particle with specified ID
598
da2af24c 599 //PH if(!(*fParticleMap)[i]) {
600 if(!fParticleMap->At(i)) {
911a3148 601 Int_t nentries = fParticles->GetEntriesFast();
9e1a0ddb 602 // algorithmic way of getting entry index
603 // (primary particles are filled after secondaries)
604 Int_t entry;
605 if (i<fNprimary)
606 entry = i+fNtrack-fNprimary;
607 else
608 entry = i-fNprimary;
609 // check whether algorithmic way and
610 // and the fParticleFileMap[i] give the same;
611 // give the fatal error if not
612 if (entry != fParticleFileMap[i]) {
613 Fatal("Particle",
614 "!! The algorithmic way and map are different: !!\n entry: %d map: %d",
615 entry, fParticleFileMap[i]);
616 }
617
618 fTreeK->GetEntry(entry);
619 new ((*fParticles)[nentries]) TParticle(*fParticleBuffer);
620 fParticleMap->AddAt((*fParticles)[nentries],i);
621 }
da2af24c 622 //PH return (TParticle *) (*fParticleMap)[i];
623 return (TParticle *) fParticleMap->At(i);
9e1a0ddb 624}
625
626//_____________________________________________________________________________
f5f55563 627Int_t AliStack::GetPrimary(Int_t id)
9e1a0ddb 628{
629 //
630 // Return number of primary that has generated track
631 //
632
633 int current, parent;
9e1a0ddb 634 //
635 parent=id;
636 while (1) {
637 current=parent;
f5f55563 638 parent=Particle(current)->GetFirstMother();
9e1a0ddb 639 if(parent<0) return current;
640 }
641}
642
643//_____________________________________________________________________________
644void AliStack::DumpPart (Int_t i) const
645{
646 //
647 // Dumps particle i in the stack
648 //
649
da2af24c 650 //PH ((TParticle*) (*fParticleMap)[i])->Print();
651 ((TParticle*) fParticleMap->At(i))->Print();
9e1a0ddb 652}
653
654//_____________________________________________________________________________
655void AliStack::DumpPStack ()
656{
657 //
658 // Dumps the particle stack
659 //
660
3ab6f951 661 Int_t i;
662
9e1a0ddb 663 printf(
664 "\n\n=======================================================================\n");
3ab6f951 665 for (i=0;i<fNtrack;i++)
9e1a0ddb 666 {
667 TParticle* particle = Particle(i);
668 if (particle) {
669 printf("-> %d ",i); particle->Print();
670 printf("--------------------------------------------------------------\n");
671 }
672 else
673 Warning("DumpPStack", "No particle with id %d.", i);
674 }
675
676 printf(
677 "\n=======================================================================\n\n");
678
679 // print particle file map
680 printf("\nParticle file map: \n");
3ab6f951 681 for (i=0; i<fNtrack; i++)
9e1a0ddb 682 printf(" %d th entry: %d \n",i,fParticleFileMap[i]);
683}
684
685
686//_____________________________________________________________________________
687void AliStack::DumpLoadedStack() const
688{
689 //
690 // Dumps the particle in the stack
691 // that are loaded in memory.
692 //
693
694 TObjArray &particles = *fParticleMap;
695 printf(
696 "\n\n=======================================================================\n");
697 for (Int_t i=0;i<fNtrack;i++)
698 {
699 TParticle* particle = (TParticle*) particles[i];
700 if (particle) {
701 printf("-> %d ",i); particle->Print();
702 printf("--------------------------------------------------------------\n");
703 }
704 else {
705 printf("-> %d Particle not loaded.\n",i);
706 printf("--------------------------------------------------------------\n");
707 }
708 }
709 printf(
710 "\n=======================================================================\n\n");
711}
712
713//
714// protected methods
715//
716
717//_____________________________________________________________________________
718void AliStack::CleanParents()
719{
720 //
721 // Clean particles stack
722 // Set parent/daughter relations
723 //
724
725 TObjArray &particles = *fParticleMap;
726 TParticle *part;
727 int i;
728 for(i=0; i<fHgwmk+1; i++) {
729 part = (TParticle *)particles.At(i);
730 if(part) if(!part->TestBit(kDaughtersBit)) {
731 part->SetFirstDaughter(-1);
732 part->SetLastDaughter(-1);
733 }
734 }
735}
736
737//_____________________________________________________________________________
738TParticle* AliStack::GetNextParticle()
739{
740 //
741 // Return next particle from stack of particles
742 //
743
744 TParticle* particle = 0;
745
746 // search secondaries
747 //for(Int_t i=fNtrack-1; i>=0; i--) {
748 for(Int_t i=fNtrack-1; i>fHgwmk; i--) {
749 particle = (TParticle*) fParticleMap->At(i);
750 if ((particle) && (!particle->TestBit(kDoneBit))) {
751 fCurrent=i;
752 //cout << "GetNextParticle() - secondary "
753 // << fNtrack << " " << fHgwmk << " " << fCurrent << endl;
754 return particle;
755 }
756 }
757
758 // take next primary if all secondaries were done
759 while (fCurrentPrimary>=0) {
760 fCurrent = fCurrentPrimary;
761 particle = (TParticle*) fParticleMap->At(fCurrentPrimary--);
762 if ((particle) && (!particle->TestBit(kDoneBit))) {
763 //cout << "GetNextParticle() - primary "
764 // << fNtrack << " " << fHgwmk << " " << fCurrent << endl;
765 return particle;
766 }
767 }
768
769 // nothing to be tracked
770 fCurrent = -1;
771 //cout << "GetNextParticle() - none "
772 // << fNtrack << " " << fHgwmk << " " << fCurrent << endl;
773 return particle;
774}
775
776//__________________________________________________________________________________________
777void AliStack::MakeTree(Int_t event, const char *file)
778{
779//
780// Make Kine tree and creates branch for writing particles
781//
782 TBranch *branch=0;
783 // Make Kinematics Tree
784 char hname[30];
ccf7a81f 785// printf("\n MakeTree called %d", event);
9e1a0ddb 786 if (!fTreeK) {
787 sprintf(hname,"TreeK%d",event);
788 fTreeK = new TTree(hname,"Kinematics");
789 // Create a branch for particles
d0f40f23 790 branch = fTreeK->Branch("Particles", "TParticle", &fParticleBuffer, 4000);
9e1a0ddb 791 fTreeK->Write(0,TObject::kOverwrite);
792 }
793}
794
81694e6a 795//_____________________________________________________________________________
9e1a0ddb 796void AliStack::BeginEvent(Int_t event)
797{
798// start a new event
799//
800//
801 fNprimary = 0;
802 fNtrack = 0;
803
804 char hname[30];
805 if(fTreeK) {
806 fTreeK->Reset();
807 sprintf(hname,"TreeK%d",event);
808 fTreeK->SetName(hname);
809 }
810}
811
81694e6a 812//_____________________________________________________________________________
9e1a0ddb 813void AliStack::FinishRun()
814{
815// Clean TreeK information
816 if (fTreeK) {
817 delete fTreeK; fTreeK = 0;
818 }
819}
820
81694e6a 821//_____________________________________________________________________________
cec14bc5 822Bool_t AliStack::GetEvent(Int_t event)
9e1a0ddb 823{
824//
825// Get new event from TreeK
ccf7a81f 826
9e1a0ddb 827 // Reset/Create the particle stack
828 if (fTreeK) delete fTreeK;
829
830 // Get Kine Tree from file
831 char treeName[20];
832 sprintf(treeName,"TreeK%d",event);
833 fTreeK = (TTree*)gDirectory->Get(treeName);
834
ccf7a81f 835 if (fTreeK)
836 fTreeK->SetBranchAddress("Particles", &fParticleBuffer);
837 else {
9e1a0ddb 838 Error("GetEvent","cannot find Kine Tree for event:%d\n",event);
ccf7a81f 839 return kFALSE;
840 }
841// printf("\n primaries %d", fNprimary);
842// printf("\n tracks %d", fNtrack);
843
9e1a0ddb 844 Int_t size = (Int_t)fTreeK->GetEntries();
845 ResetArrays(size);
ccf7a81f 846 return kTRUE;
9e1a0ddb 847}
ccf7a81f 848
849//----------------------------------------------------------------------