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5d12ce38 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16/* $Id$ */
17
d0d4a6b3 18// This class is extracted from the AliRun class
19// and contains all the MC-related functionality
20// The number of dependencies has to be reduced...
21// Author: F.Carminati
22// Federico.Carminati@cern.ch
23
c75cfb51 24#include <RVersion.h>
5d12ce38 25#include <TBrowser.h>
26#include <TStopwatch.h>
27#include <TSystem.h>
28#include <TVirtualMC.h>
4a9de4af 29#include <TGeoManager.h>
b60e0f5e 30#include "TGeant3.h"
0561efeb 31
b60e0f5e 32
21bf7095 33#include "AliLog.h"
5d12ce38 34#include "AliDetector.h"
35#include "AliGenerator.h"
36#include "AliHeader.h"
37#include "AliLego.h"
38#include "AliMC.h"
39#include "AliMCQA.h"
40#include "AliRun.h"
41#include "AliStack.h"
0561efeb 42#include "AliMagF.h"
5d12ce38 43#include "AliTrackReference.h"
44
45
46ClassImp(AliMC)
47
48//_______________________________________________________________________
49AliMC::AliMC() :
50 fGenerator(0),
51 fEventEnergy(0),
52 fSummEnergy(0),
53 fSum2Energy(0),
54 fTrRmax(1.e10),
55 fTrZmax(1.e10),
90e48c0c 56 fRDecayMax(1.e10),
57 fRDecayMin(0),
58 fDecayPdg(0),
5d12ce38 59 fImedia(0),
60 fTransParName("\0"),
61 fMCQA(0),
62 fHitLists(0),
63 fTrackReferences(0)
64
65{
d0d4a6b3 66 //default constructor
0561efeb 67 DecayLimits();
5d12ce38 68}
69
70//_______________________________________________________________________
71AliMC::AliMC(const char *name, const char *title) :
72 TVirtualMCApplication(name, title),
73 fGenerator(0),
74 fEventEnergy(0),
75 fSummEnergy(0),
76 fSum2Energy(0),
77 fTrRmax(1.e10),
78 fTrZmax(1.e10),
90e48c0c 79 fRDecayMax(1.e10),
80 fRDecayMin(0),
81 fDecayPdg(0),
5d12ce38 82 fImedia(new TArrayI(1000)),
83 fTransParName("\0"),
84 fMCQA(0),
85 fHitLists(new TList()),
86 fTrackReferences(new TClonesArray("AliTrackReference", 100))
87{
d0d4a6b3 88 //constructor
5d12ce38 89 // Set transport parameters
90 SetTransPar();
0561efeb 91 DecayLimits();
5d12ce38 92 // Prepare the tracking medium lists
93 for(Int_t i=0;i<1000;i++) (*fImedia)[i]=-99;
5d12ce38 94}
95
96//_______________________________________________________________________
97AliMC::AliMC(const AliMC &mc) :
98 TVirtualMCApplication(mc),
99 fGenerator(0),
100 fEventEnergy(0),
101 fSummEnergy(0),
102 fSum2Energy(0),
103 fTrRmax(1.e10),
104 fTrZmax(1.e10),
90e48c0c 105 fRDecayMax(1.e10),
106 fRDecayMin(0),
107 fDecayPdg(0),
5d12ce38 108 fImedia(0),
109 fTransParName("\0"),
110 fMCQA(0),
111 fHitLists(0),
112 fTrackReferences(0)
113{
114 //
90e48c0c 115 // Copy constructor for AliMC
5d12ce38 116 //
117 mc.Copy(*this);
118}
119
120//_______________________________________________________________________
121AliMC::~AliMC()
122{
d0d4a6b3 123 //destructor
5d12ce38 124 delete fGenerator;
125 delete fImedia;
126 delete fMCQA;
127 delete fHitLists;
128 // Delete track references
129 if (fTrackReferences) {
130 fTrackReferences->Delete();
131 delete fTrackReferences;
132 fTrackReferences = 0;
133 }
134
135}
136
137//_______________________________________________________________________
6c4904c2 138void AliMC::Copy(TObject &) const
5d12ce38 139{
d0d4a6b3 140 //dummy Copy function
21bf7095 141 AliFatal("Not implemented!");
5d12ce38 142}
143
144//_______________________________________________________________________
145void AliMC::ConstructGeometry()
146{
147 //
4a9de4af 148 // Either load geometry from file or create it through usual
149 // loop on detectors. In the first case the method
150 // AliModule::CreateMaterials() only builds fIdtmed and is postponed
151 // at InitGeometry().
5d12ce38 152 //
153
4a9de4af 154 if(gAlice->IsRootGeometry()){
155 // Load geometry
156 const char *geomfilename = gAlice->GetGeometryFileName();
157 if(gSystem->ExpandPathName(geomfilename)){
158 AliInfo(Form("Loading geometry from file:\n %40s\n\n",geomfilename));
159 TGeoManager::Import(geomfilename);
160 }else{
161 AliInfo(Form("Geometry file %40s not found!\n",geomfilename));
162 return;
163 }
164 }else{
165 // Create modules, materials, geometry
5d12ce38 166 TStopwatch stw;
167 TIter next(gAlice->Modules());
168 AliModule *detector;
21bf7095 169 AliDebug(1, "Geometry creation:");
5d12ce38 170 while((detector = dynamic_cast<AliModule*>(next()))) {
171 stw.Start();
172 // Initialise detector materials and geometry
173 detector->CreateMaterials();
174 detector->CreateGeometry();
21bf7095 175 AliInfo(Form("%10s R:%.2fs C:%.2fs",
176 detector->GetName(),stw.RealTime(),stw.CpuTime()));
5d12ce38 177 }
4a9de4af 178 }
179
5d12ce38 180}
181
182//_______________________________________________________________________
183void AliMC::InitGeometry()
184{
185 //
186 // Initialize detectors and display geometry
187 //
188
4a9de4af 189 AliInfo("Initialisation:");
190 TStopwatch stw;
191 TIter next(gAlice->Modules());
192 AliModule *detector;
193 while((detector = dynamic_cast<AliModule*>(next()))) {
194 stw.Start();
195 // Initialise detector and display geometry
196 if(gAlice->IsRootGeometry()) detector->CreateMaterials();
197 detector->Init();
198 detector->BuildGeometry();
199 AliInfo(Form("%10s R:%.2fs C:%.2fs",
200 detector->GetName(),stw.RealTime(),stw.CpuTime()));
201 }
202
5d12ce38 203}
204
205//_______________________________________________________________________
2057aecb 206void AliMC::GeneratePrimaries()
5d12ce38 207{
208 //
209 // Generate primary particles and fill them in the stack.
210 //
211
212 Generator()->Generate();
213}
214
215//_______________________________________________________________________
216void AliMC::SetGenerator(AliGenerator *generator)
217{
218 //
219 // Load the event generator
220 //
221 if(!fGenerator) fGenerator = generator;
222}
223
224//_______________________________________________________________________
225void AliMC::ResetGenerator(AliGenerator *generator)
226{
227 //
228 // Load the event generator
229 //
230 if(fGenerator)
231 if(generator)
21bf7095 232 AliWarning(Form("Replacing generator %s with %s",
233 fGenerator->GetName(),generator->GetName()))
5d12ce38 234 else
21bf7095 235 AliWarning(Form("Replacing generator %s with NULL",
236 fGenerator->GetName()));
5d12ce38 237 fGenerator = generator;
238}
239
240//_______________________________________________________________________
241void AliMC::FinishRun()
242{
243 // Clean generator information
21bf7095 244 AliDebug(1, "fGenerator->FinishRun()");
5d12ce38 245 fGenerator->FinishRun();
246
247 //Output energy summary tables
21bf7095 248 AliDebug(1, "EnergySummary()");
249 ToAliDebug(1, EnergySummary());
5d12ce38 250}
251
252//_______________________________________________________________________
253void AliMC::BeginPrimary()
254{
255 //
256 // Called at the beginning of each primary track
257 //
258
259 // Reset Hits info
260 ResetHits();
261 ResetTrackReferences();
262
263}
264
265//_______________________________________________________________________
266void AliMC::PreTrack()
267{
d0d4a6b3 268 // Actions before the track's transport
5d12ce38 269 TObjArray &dets = *gAlice->Modules();
270 AliModule *module;
271
272 for(Int_t i=0; i<=gAlice->GetNdets(); i++)
273 if((module = dynamic_cast<AliModule*>(dets[i])))
274 module->PreTrack();
275
276 fMCQA->PreTrack();
277}
278
279//_______________________________________________________________________
280void AliMC::Stepping()
281{
282 //
283 // Called at every step during transport
284 //
0561efeb 285
5d12ce38 286 Int_t id = DetFromMate(gMC->GetMedium());
287 if (id < 0) return;
288
0561efeb 289
290 if ( gMC->IsNewTrack() &&
291 gMC->TrackTime() == 0. &&
292 fRDecayMin > 0. &&
293 fRDecayMax > fRDecayMin &&
294 gMC->TrackPid() == fDecayPdg )
295 {
296 FixParticleDecaytime();
297 }
298
299
300
5d12ce38 301 //
302 // --- If lego option, do it and leave
303 if (gAlice->Lego())
304 gAlice->Lego()->StepManager();
305 else {
306 Int_t copy;
307 //Update energy deposition tables
308 AddEnergyDeposit(gMC->CurrentVolID(copy),gMC->Edep());
ab03c084 309 //
310 // write tracke reference for track which is dissapearing - MI
b60e0f5e 311 if (gMC->IsTrackDisappeared()) {
312 if (gMC->Etot()>0.05) AddTrackReference(GetCurrentTrackNumber());
313 }
5d12ce38 314
315 //Call the appropriate stepping routine;
316 AliModule *det = dynamic_cast<AliModule*>(gAlice->Modules()->At(id));
317 if(det && det->StepManagerIsEnabled()) {
318 fMCQA->StepManager(id);
319 det->StepManager();
320 }
321 }
322}
323
324//_______________________________________________________________________
325void AliMC::EnergySummary()
326{
327 //
328 // Print summary of deposited energy
329 //
330
331 Int_t ndep=0;
332 Float_t edtot=0;
333 Float_t ed, ed2;
334 Int_t kn, i, left, j, id;
335 const Float_t kzero=0;
336 Int_t ievent=gAlice->GetRunLoader()->GetHeader()->GetEvent()+1;
337 //
338 // Energy loss information
339 if(ievent) {
340 printf("***************** Energy Loss Information per event (GEV) *****************\n");
341 for(kn=1;kn<fEventEnergy.GetSize();kn++) {
342 ed=fSummEnergy[kn];
343 if(ed>0) {
344 fEventEnergy[ndep]=kn;
345 if(ievent>1) {
346 ed=ed/ievent;
347 ed2=fSum2Energy[kn];
348 ed2=ed2/ievent;
349 ed2=100*TMath::Sqrt(TMath::Max(ed2-ed*ed,kzero))/ed;
350 } else
351 ed2=99;
352 fSummEnergy[ndep]=ed;
353 fSum2Energy[ndep]=TMath::Min(static_cast<Float_t>(99.),TMath::Max(ed2,kzero));
354 edtot+=ed;
355 ndep++;
356 }
357 }
358 for(kn=0;kn<(ndep-1)/3+1;kn++) {
359 left=ndep-kn*3;
360 for(i=0;i<(3<left?3:left);i++) {
361 j=kn*3+i;
362 id=Int_t (fEventEnergy[j]+0.1);
363 printf(" %s %10.3f +- %10.3f%%;",gMC->VolName(id),fSummEnergy[j],fSum2Energy[j]);
364 }
365 printf("\n");
366 }
367 //
368 // Relative energy loss in different detectors
369 printf("******************** Relative Energy Loss per event ********************\n");
370 printf("Total energy loss per event %10.3f GeV\n",edtot);
371 for(kn=0;kn<(ndep-1)/5+1;kn++) {
372 left=ndep-kn*5;
373 for(i=0;i<(5<left?5:left);i++) {
374 j=kn*5+i;
375 id=Int_t (fEventEnergy[j]+0.1);
376 printf(" %s %10.3f%%;",gMC->VolName(id),100*fSummEnergy[j]/edtot);
377 }
378 printf("\n");
379 }
380 for(kn=0;kn<75;kn++) printf("*");
381 printf("\n");
382 }
383 //
384 // Reset the TArray's
385 // fEventEnergy.Set(0);
386 // fSummEnergy.Set(0);
387 // fSum2Energy.Set(0);
388}
389
390//_____________________________________________________________________________
391void AliMC::BeginEvent()
392{
393 //
394 // Clean-up previous event
395 // Energy scores
21bf7095 396 AliDebug(1, ">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>");
397 AliDebug(1, ">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>");
398 AliDebug(1, ">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>");
399 AliDebug(1, " BEGINNING EVENT ");
400 AliDebug(1, ">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>");
401 AliDebug(1, ">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>");
402 AliDebug(1, ">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>");
5d12ce38 403
404 AliRunLoader *runloader=gAlice->GetRunLoader();
405
406 /*******************************/
407 /* Clean after eventual */
408 /* previous event */
409 /*******************************/
410
411
412 //Set the next event in Run Loader -> Cleans trees (TreeK and all trees in detectors),
413 gAlice->SetEventNrInRun(gAlice->GetEventNrInRun()+1);
414 runloader->SetEventNumber(gAlice->GetEventNrInRun());// sets new files, cleans the previous event stuff, if necessary, etc.,
21bf7095 415 AliDebug(1, Form("EventNr is %d",gAlice->GetEventNrInRun()));
5d12ce38 416
417 fEventEnergy.Reset();
418 // Clean detector information
419
420 if (runloader->Stack())
421 runloader->Stack()->Reset();//clean stack -> tree is unloaded
422 else
423 runloader->MakeStack();//or make a new one
504b172d 424
425 if(gAlice->Lego() == 0x0)
426 {
21bf7095 427 AliDebug(1, "fRunLoader->MakeTree(K)");
504b172d 428 runloader->MakeTree("K");
429 }
430
21bf7095 431 AliDebug(1, "gMC->SetStack(fRunLoader->Stack())");
5d12ce38 432 gMC->SetStack(gAlice->GetRunLoader()->Stack());//Was in InitMC - but was moved here
433 //because we don't have guarantee that
434 //stack pointer is not going to change from event to event
435 //since it bellobgs to header and is obtained via RunLoader
436 //
437 // Reset all Detectors & kinematics & make/reset trees
438 //
439
440 runloader->GetHeader()->Reset(gAlice->GetRunNumber(),gAlice->GetEvNumber(),
441 gAlice->GetEventNrInRun());
442// fRunLoader->WriteKinematics("OVERWRITE"); is there any reason to rewrite here since MakeTree does so
443
504b172d 444 if(gAlice->Lego())
445 {
446 gAlice->Lego()->BeginEvent();
447 return;
448 }
449
5d12ce38 450
21bf7095 451 AliDebug(1, "ResetHits()");
5d12ce38 452 ResetHits();
504b172d 453
21bf7095 454 AliDebug(1, "fRunLoader->MakeTree(H)");
5d12ce38 455 runloader->MakeTree("H");
504b172d 456
21bf7095 457 AliDebug(1, "fRunLoader->MakeTrackRefsContainer()");
504b172d 458 runloader->MakeTrackRefsContainer();//for insurance
5d12ce38 459
5d12ce38 460
461 //create new branches and SetAdresses
462 TIter next(gAlice->Modules());
463 AliModule *detector;
464 while((detector = (AliModule*)next()))
465 {
21bf7095 466 AliDebug(2, Form("%s->MakeBranch(H)",detector->GetName()));
5d12ce38 467 detector->MakeBranch("H");
21bf7095 468 AliDebug(2, Form("%s->MakeBranchTR()",detector->GetName()));
5d12ce38 469 detector->MakeBranchTR();
21bf7095 470 AliDebug(2, Form("%s->SetTreeAddress()",detector->GetName()));
5d12ce38 471 detector->SetTreeAddress();
472 }
ab03c084 473 // make branch for AliRun track References
474 TTree * treeTR = runloader->TreeTR();
475 if (treeTR){
476 // make branch for central track references
477 if (!fTrackReferences) fTrackReferences = new TClonesArray("AliTrackReference",0);
478 TBranch *branch;
479 branch = treeTR->Branch("AliRun",&fTrackReferences);
480 branch->SetAddress(&fTrackReferences);
481 }
482 //
5d12ce38 483}
484
485//_______________________________________________________________________
486void AliMC::ResetHits()
487{
488 //
489 // Reset all Detectors hits
490 //
491 TIter next(gAlice->Modules());
492 AliModule *detector;
493 while((detector = dynamic_cast<AliModule*>(next()))) {
494 detector->ResetHits();
495 }
496}
497
498//_______________________________________________________________________
499void AliMC::PostTrack()
500{
d0d4a6b3 501 // Posts tracks for each module
4a9de4af 502 TObjArray &dets = *gAlice->Modules();
503 AliModule *module;
504
505 for(Int_t i=0; i<=gAlice->GetNdets(); i++)
506 if((module = dynamic_cast<AliModule*>(dets[i])))
507 module->PostTrack();
5d12ce38 508}
509
510//_______________________________________________________________________
511void AliMC::FinishPrimary()
512{
513 //
514 // Called at the end of each primary track
515 //
516 AliRunLoader *runloader=gAlice->GetRunLoader();
517 // static Int_t count=0;
518 // const Int_t times=10;
519 // This primary is finished, purify stack
c75cfb51 520#if ROOT_VERSION_CODE > 262152
05c7517d 521 if (!(gMC->SecondariesAreOrdered()))
522 runloader->Stack()->ReorderKine();
c75cfb51 523#endif
5d12ce38 524 runloader->Stack()->PurifyKine();
504b172d 525
5d12ce38 526 TIter next(gAlice->Modules());
527 AliModule *detector;
528 while((detector = dynamic_cast<AliModule*>(next()))) {
529 detector->FinishPrimary();
504b172d 530 AliLoader* loader = detector->GetLoader();
531 if(loader)
532 {
533 TTree* treeH = loader->TreeH();
534 if (treeH) treeH->Fill(); //can be Lego run and treeH can not exist
535 }
5d12ce38 536 }
537
538 // Write out track references if any
539 if (runloader->TreeTR()) runloader->TreeTR()->Fill();
540}
541
542//_______________________________________________________________________
543void AliMC::FinishEvent()
544{
545 //
546 // Called at the end of the event.
547 //
548
549 //
550 if(gAlice->Lego()) gAlice->Lego()->FinishEvent();
551
552 TIter next(gAlice->Modules());
553 AliModule *detector;
554 while((detector = dynamic_cast<AliModule*>(next()))) {
555 detector->FinishEvent();
556 }
557
558 //Update the energy deposit tables
559 Int_t i;
560 for(i=0;i<fEventEnergy.GetSize();i++)
561 {
562 fSummEnergy[i]+=fEventEnergy[i];
563 fSum2Energy[i]+=fEventEnergy[i]*fEventEnergy[i];
564 }
565
566 AliRunLoader *runloader=gAlice->GetRunLoader();
567
568 AliHeader* header = runloader->GetHeader();
569 AliStack* stack = runloader->Stack();
570 if ( (header == 0x0) || (stack == 0x0) )
571 {//check if we got header and stack. If not cry and exit aliroot
21bf7095 572 AliFatal("Can not get the stack or header from LOADER");
5d12ce38 573 return;//never reached
574 }
575 // Update Header information
576 header->SetNprimary(stack->GetNprimary());
577 header->SetNtrack(stack->GetNtrack());
578
579
580 // Write out the kinematics
581 stack->FinishEvent();
582
583 // Write out the event Header information
584 TTree* treeE = runloader->TreeE();
585 if (treeE)
586 {
587 header->SetStack(stack);
588 treeE->Fill();
589 }
590 else
591 {
21bf7095 592 AliError("Can not get TreeE from RL");
5d12ce38 593 }
594
504b172d 595 if(gAlice->Lego() == 0x0)
596 {
597 runloader->WriteKinematics("OVERWRITE");
598 runloader->WriteTrackRefs("OVERWRITE");
599 runloader->WriteHits("OVERWRITE");
600 }
601
21bf7095 602 AliDebug(1, "<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<");
603 AliDebug(1, "<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<");
604 AliDebug(1, "<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<");
605 AliDebug(1, " FINISHING EVENT ");
606 AliDebug(1, "<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<");
607 AliDebug(1, "<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<");
608 AliDebug(1, "<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<");
5d12ce38 609}
610
611//_______________________________________________________________________
612void AliMC::Field(const Double_t* x, Double_t* b) const
613{
d0d4a6b3 614 // Calculates field "b" at point "x"
5d12ce38 615 gAlice->Field(x,b);
616}
617
618//_______________________________________________________________________
619void AliMC::Init()
620{
d0d4a6b3 621 // MC initialization
5d12ce38 622
623 //=================Create Materials and geometry
624 gMC->Init();
5d12ce38 625 //Read the cuts for all materials
626 ReadTransPar();
627 //Build the special IMEDIA table
628 MediaTable();
629
630 //Compute cross-sections
631 gMC->BuildPhysics();
632
633 //Write Geometry object to current file.
634 gAlice->GetRunLoader()->WriteGeometry();
635
636 //Initialise geometry deposition table
637 fEventEnergy.Set(gMC->NofVolumes()+1);
638 fSummEnergy.Set(gMC->NofVolumes()+1);
639 fSum2Energy.Set(gMC->NofVolumes()+1);
640
641 //
642 fMCQA = new AliMCQA(gAlice->GetNdets());
643
644 // Register MC in configuration
645 AliConfig::Instance()->Add(gMC);
646
647}
648
649//_______________________________________________________________________
650void AliMC::MediaTable()
651{
652 //
653 // Built media table to get from the media number to
654 // the detector id
655 //
656
657 Int_t kz, nz, idt, lz, i, k, ind;
658 // Int_t ibeg;
659 TObjArray &dets = *gAlice->Detectors();
660 AliModule *det;
661 Int_t ndets=gAlice->GetNdets();
662 //
663 // For all detectors
664 for (kz=0;kz<ndets;kz++) {
665 // If detector is defined
666 if((det=dynamic_cast<AliModule*>(dets[kz]))) {
667 TArrayI &idtmed = *(det->GetIdtmed());
668 for(nz=0;nz<100;nz++) {
0561efeb 669
5d12ce38 670 // Find max and min material number
671 if((idt=idtmed[nz])) {
672 det->LoMedium() = det->LoMedium() < idt ? det->LoMedium() : idt;
673 det->HiMedium() = det->HiMedium() > idt ? det->HiMedium() : idt;
674 }
675 }
676 if(det->LoMedium() > det->HiMedium()) {
677 det->LoMedium() = 0;
678 det->HiMedium() = 0;
679 } else {
680 if(det->HiMedium() > fImedia->GetSize()) {
21bf7095 681 AliError(Form("Increase fImedia from %d to %d",
682 fImedia->GetSize(),det->HiMedium()));
5d12ce38 683 return;
684 }
685 // Tag all materials in rage as belonging to detector kz
686 for(lz=det->LoMedium(); lz<= det->HiMedium(); lz++) {
687 (*fImedia)[lz]=kz;
688 }
689 }
690 }
691 }
692 //
693 // Print summary table
21bf7095 694 AliInfo("Tracking media ranges:");
695 ToAliInfo(
5d12ce38 696 for(i=0;i<(ndets-1)/6+1;i++) {
697 for(k=0;k< (6<ndets-i*6?6:ndets-i*6);k++) {
698 ind=i*6+k;
699 det=dynamic_cast<AliModule*>(dets[ind]);
700 if(det)
701 printf(" %6s: %3d -> %3d;",det->GetName(),det->LoMedium(),
702 det->HiMedium());
703 else
704 printf(" %6s: %3d -> %3d;","NULL",0,0);
705 }
706 printf("\n");
707 }
21bf7095 708 )
5d12ce38 709}
710
711//_______________________________________________________________________
712void AliMC::ReadTransPar()
713{
714 //
715 // Read filename to set the transport parameters
716 //
717
718
719 const Int_t kncuts=10;
720 const Int_t knflags=11;
721 const Int_t knpars=kncuts+knflags;
722 const char kpars[knpars][7] = {"CUTGAM" ,"CUTELE","CUTNEU","CUTHAD","CUTMUO",
723 "BCUTE","BCUTM","DCUTE","DCUTM","PPCUTM","ANNI",
724 "BREM","COMP","DCAY","DRAY","HADR","LOSS",
725 "MULS","PAIR","PHOT","RAYL"};
726 char line[256];
727 char detName[7];
728 char* filtmp;
729 Float_t cut[kncuts];
730 Int_t flag[knflags];
731 Int_t i, itmed, iret, ktmed, kz;
732 FILE *lun;
733 //
734 // See whether the file is there
735 filtmp=gSystem->ExpandPathName(fTransParName.Data());
736 lun=fopen(filtmp,"r");
737 delete [] filtmp;
738 if(!lun) {
21bf7095 739 AliWarning(Form("File %s does not exist!",fTransParName.Data()));
5d12ce38 740 return;
741 }
742 //
5d12ce38 743 while(1) {
744 // Initialise cuts and flags
745 for(i=0;i<kncuts;i++) cut[i]=-99;
746 for(i=0;i<knflags;i++) flag[i]=-99;
747 itmed=0;
748 for(i=0;i<256;i++) line[i]='\0';
749 // Read up to the end of line excluded
750 iret=fscanf(lun,"%[^\n]",line);
751 if(iret<0) {
752 //End of file
753 fclose(lun);
5d12ce38 754 return;
755 }
756 // Read the end of line
757 fscanf(lun,"%*c");
758 if(!iret) continue;
759 if(line[0]=='*') continue;
760 // Read the numbers
761 iret=sscanf(line,"%s %d %f %f %f %f %f %f %f %f %f %f %d %d %d %d %d %d %d %d %d %d %d",
762 detName,&itmed,&cut[0],&cut[1],&cut[2],&cut[3],&cut[4],&cut[5],&cut[6],&cut[7],&cut[8],
763 &cut[9],&flag[0],&flag[1],&flag[2],&flag[3],&flag[4],&flag[5],&flag[6],&flag[7],
764 &flag[8],&flag[9],&flag[10]);
765 if(!iret) continue;
766 if(iret<0) {
767 //reading error
21bf7095 768 AliWarning(Form("Error reading file %s",fTransParName.Data()));
5d12ce38 769 continue;
770 }
771 // Check that the module exist
772 AliModule *mod = gAlice->GetModule(detName);
773 if(mod) {
774 // Get the array of media numbers
775 TArrayI &idtmed = *mod->GetIdtmed();
776 // Check that the tracking medium code is valid
777 if(0<=itmed && itmed < 100) {
778 ktmed=idtmed[itmed];
779 if(!ktmed) {
21bf7095 780 AliWarning(Form("Invalid tracking medium code %d for %s",itmed,mod->GetName()));
5d12ce38 781 continue;
782 }
783 // Set energy thresholds
784 for(kz=0;kz<kncuts;kz++) {
785 if(cut[kz]>=0) {
21bf7095 786 AliDebug(2, Form("%-6s set to %10.3E for tracking medium code %4d for %s",
787 kpars[kz],cut[kz],itmed,mod->GetName()));
5d12ce38 788 gMC->Gstpar(ktmed,kpars[kz],cut[kz]);
789 }
790 }
791 // Set transport mechanisms
792 for(kz=0;kz<knflags;kz++) {
793 if(flag[kz]>=0) {
21bf7095 794 AliDebug(2, Form("%-6s set to %10d for tracking medium code %4d for %s",
795 kpars[kncuts+kz],flag[kz],itmed,mod->GetName()));
5d12ce38 796 gMC->Gstpar(ktmed,kpars[kncuts+kz],Float_t(flag[kz]));
797 }
798 }
799 } else {
21bf7095 800 AliWarning(Form("Invalid medium code %d",itmed));
5d12ce38 801 continue;
802 }
803 } else {
21bf7095 804 AliDebug(1, Form("%s not present",detName));
5d12ce38 805 continue;
806 }
807 }
808}
809
810//_______________________________________________________________________
811void AliMC::SetTransPar(const char *filename)
812{
813 //
814 // Sets the file name for transport parameters
815 //
816 fTransParName = filename;
817}
818
819//_______________________________________________________________________
0054628d 820void AliMC::Browse(TBrowser *b)
5d12ce38 821{
822 //
823 // Called when the item "Run" is clicked on the left pane
824 // of the Root browser.
825 // It displays the Root Trees and all detectors.
826 //
827 //detectors are in folders anyway
828 b->Add(fMCQA,"AliMCQA");
829}
830
831//PH
832//_______________________________________________________________________
833void AliMC::AddHit(Int_t id, Int_t track, Int_t *vol, Float_t *hits) const
834{
835 //
836 // Add a hit to detector id
837 //
838 TObjArray &dets = *gAlice->Modules();
839 if(dets[id]) dynamic_cast<AliModule*>(dets[id])->AddHit(track,vol,hits);
840}
841
842//_______________________________________________________________________
843void AliMC::AddDigit(Int_t id, Int_t *tracks, Int_t *digits) const
844{
845 //
846 // Add digit to detector id
847 //
848 TObjArray &dets = *gAlice->Modules();
849 if(dets[id]) dynamic_cast<AliModule*>(dets[id])->AddDigit(tracks,digits);
850}
851
852//_______________________________________________________________________
853Int_t AliMC::GetCurrentTrackNumber() const {
854 //
855 // Returns current track
856 //
857 return gAlice->GetRunLoader()->Stack()->GetCurrentTrackNumber();
858}
859
860//_______________________________________________________________________
861void AliMC::DumpPart (Int_t i) const
862{
863 //
864 // Dumps particle i in the stack
865 //
866 AliRunLoader * runloader = gAlice->GetRunLoader();
867 if (runloader->Stack())
868 runloader->Stack()->DumpPart(i);
869}
870
871//_______________________________________________________________________
872void AliMC::DumpPStack () const
873{
874 //
875 // Dumps the particle stack
876 //
877 AliRunLoader * runloader = gAlice->GetRunLoader();
878 if (runloader->Stack())
879 runloader->Stack()->DumpPStack();
880}
881
882//_______________________________________________________________________
883Int_t AliMC::GetNtrack() const {
884 //
885 // Returns number of tracks in stack
886 //
887 Int_t ntracks = -1;
888 AliRunLoader * runloader = gAlice->GetRunLoader();
889 if (runloader->Stack())
890 ntracks = runloader->Stack()->GetNtrack();
891 return ntracks;
892}
893
894//_______________________________________________________________________
895Int_t AliMC::GetPrimary(Int_t track) const
896{
897 //
898 // return number of primary that has generated track
899 //
900 Int_t nprimary = -999;
901 AliRunLoader * runloader = gAlice->GetRunLoader();
902 if (runloader->Stack())
903 nprimary = runloader->Stack()->GetPrimary(track);
904 return nprimary;
905}
906
907//_______________________________________________________________________
908TParticle* AliMC::Particle(Int_t i) const
909{
d0d4a6b3 910 // Returns the i-th particle from the stack taking into account
911 // the remaping done by PurifyKine
5d12ce38 912 AliRunLoader * runloader = gAlice->GetRunLoader();
913 if (runloader)
914 if (runloader->Stack())
915 return runloader->Stack()->Particle(i);
916 return 0x0;
917}
918
919//_______________________________________________________________________
920TObjArray* AliMC::Particles() const {
921 //
922 // Returns pointer to Particles array
923 //
924 AliRunLoader * runloader = gAlice->GetRunLoader();
925 if (runloader)
926 if (runloader->Stack())
927 return runloader->Stack()->Particles();
928 return 0x0;
929}
930
931//_______________________________________________________________________
932void AliMC::PushTrack(Int_t done, Int_t parent, Int_t pdg, Float_t *pmom,
933 Float_t *vpos, Float_t *polar, Float_t tof,
2057aecb 934 TMCProcess mech, Int_t &ntr, Float_t weight, Int_t is) const
5d12ce38 935{
936// Delegate to stack
937//
938 AliRunLoader * runloader = gAlice->GetRunLoader();
939 if (runloader)
940 if (runloader->Stack())
941 runloader->Stack()->PushTrack(done, parent, pdg, pmom, vpos, polar, tof,
942 mech, ntr, weight, is);
943}
944
945//_______________________________________________________________________
946void AliMC::PushTrack(Int_t done, Int_t parent, Int_t pdg,
947 Double_t px, Double_t py, Double_t pz, Double_t e,
948 Double_t vx, Double_t vy, Double_t vz, Double_t tof,
949 Double_t polx, Double_t poly, Double_t polz,
2057aecb 950 TMCProcess mech, Int_t &ntr, Float_t weight, Int_t is) const
5d12ce38 951{
952 // Delegate to stack
953 //
954 AliRunLoader * runloader = gAlice->GetRunLoader();
955 if (runloader)
956 if (runloader->Stack())
957 runloader->Stack()->PushTrack(done, parent, pdg, px, py, pz, e, vx, vy, vz, tof,
958 polx, poly, polz, mech, ntr, weight, is);
959}
960
961//_______________________________________________________________________
2057aecb 962void AliMC::SetHighWaterMark(Int_t nt) const
5d12ce38 963{
964 //
965 // Set high water mark for last track in event
966 AliRunLoader * runloader = gAlice->GetRunLoader();
967 if (runloader)
968 if (runloader->Stack())
969 runloader->Stack()->SetHighWaterMark(nt);
970}
971
972//_______________________________________________________________________
2057aecb 973void AliMC::KeepTrack(Int_t track) const
5d12ce38 974{
975 //
976 // Delegate to stack
977 //
978 AliRunLoader * runloader = gAlice->GetRunLoader();
979 if (runloader)
980 if (runloader->Stack())
981 runloader->Stack()->KeepTrack(track);
982}
983
984//_______________________________________________________________________
2057aecb 985void AliMC::FlagTrack(Int_t track) const
5d12ce38 986{
987 // Delegate to stack
988 //
989 AliRunLoader * runloader = gAlice->GetRunLoader();
990 if (runloader)
991 if (runloader->Stack())
992 runloader->Stack()->FlagTrack(track);
993}
994
995//_______________________________________________________________________
2057aecb 996void AliMC::SetCurrentTrack(Int_t track) const
5d12ce38 997{
998 //
999 // Set current track number
1000 //
1001 AliRunLoader * runloader = gAlice->GetRunLoader();
1002 if (runloader)
1003 if (runloader->Stack())
1004 runloader->Stack()->SetCurrentTrack(track);
1005}
1006
1007//_______________________________________________________________________
1008void AliMC::AddTrackReference(Int_t label){
1009 //
1010 // add a trackrefernce to the list
1011 if (!fTrackReferences) {
21bf7095 1012 AliError("Container trackrefernce not active");
5d12ce38 1013 return;
1014 }
1015 Int_t nref = fTrackReferences->GetEntriesFast();
1016 TClonesArray &lref = *fTrackReferences;
1017 new(lref[nref]) AliTrackReference(label);
1018}
1019
1020
1021
1022//_______________________________________________________________________
1023void AliMC::ResetTrackReferences()
1024{
1025 //
1026 // Reset all references
1027 //
1028 if (fTrackReferences) fTrackReferences->Clear();
1029
1030 TIter next(gAlice->Modules());
1031 AliModule *detector;
1032 while((detector = dynamic_cast<AliModule*>(next()))) {
1033 detector->ResetTrackReferences();
1034 }
1035}
1036
1037void AliMC::RemapTrackReferencesIDs(Int_t *map)
1038{
1039 //
1040 // Remapping track reference
1041 // Called at finish primary
1042 //
1043 if (!fTrackReferences) return;
1044 for (Int_t i=0;i<fTrackReferences->GetEntries();i++){
1045 AliTrackReference * ref = dynamic_cast<AliTrackReference*>(fTrackReferences->UncheckedAt(i));
1046 if (ref) {
1047 Int_t newID = map[ref->GetTrack()];
1048 if (newID>=0) ref->SetTrack(newID);
1049 else {
1050 //ref->SetTrack(-1);
1051 ref->SetBit(kNotDeleted,kFALSE);
1052 fTrackReferences->RemoveAt(i);
1053 }
1054 }
1055 }
1056 fTrackReferences->Compress();
1057}
0561efeb 1058
1059void AliMC::FixParticleDecaytime()
1060{
1061 //
1062 // Fix the particle decay time according to rmin and rmax for decays
1063 //
1064
1065 TLorentzVector p;
1066 gMC->TrackMomentum(p);
1067 Double_t tmin, tmax;
1068 Double_t b;
1069
1070 // Transverse velocity
1071 Double_t vt = p.Pt() / p.E();
1072
1073 if ((b = gAlice->Field()->SolenoidField()) > 0.) { // [kG]
1074
1075 // Radius of helix
1076
1077 Double_t rho = p.Pt() / 0.0003 / b; // [cm]
1078
1079 // Revolution frequency
1080
1081 Double_t omega = vt / rho;
1082
1083 // Maximum and minimum decay time
1084 //
1085 // Check for curlers first
1086 if (fRDecayMax * fRDecayMax / rho / rho / 2. > 1.) return;
1087
1088 //
1089
1090 tmax = TMath::ACos(1. - fRDecayMax * fRDecayMax / rho / rho / 2.) / omega; // [ct]
1091 tmin = TMath::ACos(1. - fRDecayMin * fRDecayMin / rho / rho / 2.) / omega; // [ct]
1092 } else {
1093 tmax = fRDecayMax / vt; // [ct]
1094 tmin = fRDecayMin / vt; // [ct]
1095 }
1096
1097 //
1098 // Dial t using the two limits
1099 Double_t t = tmin + (tmax - tmin) * gRandom->Rndm(); // [ct]
1100 //
1101 //
1102 // Force decay time in transport code
1103 //
1104 TGeant3 * geant = (TGeant3*) gMC;
1105 geant->Gcphys()->sumlif = t / p.Beta() / p.Gamma();
1106}