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[u/mrichter/AliRoot.git] / STEER / AliRun.cxx
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99d554c8 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$Log$
c222d2b0 18Revision 1.33 2000/05/16 13:10:40 fca
19New method IsNewTrack and fix for a problem in Father-Daughter relations
20
a01a8b12 21Revision 1.32 2000/04/27 10:38:21 fca
22Correct termination of Lego Run and introduce Lego getter in AliRun
23
838edcaf 24Revision 1.31 2000/04/26 10:17:32 fca
25Changes in Lego for G4 compatibility
26
dffd31ef 27Revision 1.30 2000/04/18 19:11:40 fca
28Introduce variable Config.C function signature
29
45189757 30Revision 1.29 2000/04/07 11:12:34 fca
31G4 compatibility changes
32
875c717b 33Revision 1.28 2000/04/05 06:51:06 fca
34Workaround for an HP compiler problem
35
5eb58812 36Revision 1.27 2000/03/22 18:08:07 fca
37Rationalisation of the virtual MC interfaces
38
80762cb1 39Revision 1.26 2000/03/22 13:42:26 fca
40SetGenerator does not replace an existing generator, ResetGenerator does
41
ee1dd322 42Revision 1.25 2000/02/23 16:25:22 fca
43AliVMC and AliGeant3 classes introduced
44ReadEuclid moved from AliRun to AliModule
45
b13db077 46Revision 1.24 2000/01/19 17:17:20 fca
47Introducing a list of lists of hits -- more hits allowed for detector now
48
1cedd08a 49Revision 1.23 1999/12/03 11:14:31 fca
50Fixing previous wrong checking
51
00719c1b 52Revision 1.21 1999/11/25 10:40:08 fca
53Fixing daughters information also in primary tracks
54
ae23d366 55Revision 1.20 1999/10/04 18:08:49 fca
56Adding protection against inconsistent Euclid files
57
3fcc96a1 58Revision 1.19 1999/09/29 07:50:40 fca
59Introduction of the Copyright and cvs Log
60
99d554c8 61*/
62
fe4da5cc 63///////////////////////////////////////////////////////////////////////////////
64// //
65// Control class for Alice C++ //
66// Only one single instance of this class exists. //
67// The object is created in main program aliroot //
68// and is pointed by the global gAlice. //
69// //
8494b010 70// -Supports the list of all Alice Detectors (fModules). //
fe4da5cc 71// -Supports the list of particles (fParticles). //
72// -Supports the Trees. //
73// -Supports the geometry. //
74// -Supports the event display. //
75//Begin_Html
76/*
1439f98e 77<img src="picts/AliRunClass.gif">
fe4da5cc 78*/
79//End_Html
80//Begin_Html
81/*
1439f98e 82<img src="picts/alirun.gif">
fe4da5cc 83*/
84//End_Html
85// //
86///////////////////////////////////////////////////////////////////////////////
87
88#include <TFile.h>
89#include <TRandom.h>
90#include <TBRIK.h>
91#include <TNode.h>
fe4da5cc 92#include <TCint.h>
93#include <TSystem.h>
a8f1fb7c 94#include <TObjectTable.h>
fe4da5cc 95
1578254f 96#include "TParticle.h"
fe4da5cc 97#include "AliRun.h"
fe4da5cc 98#include "AliDisplay.h"
875c717b 99#include "AliMC.h"
dffd31ef 100#include "AliLego.h"
fe4da5cc 101
fe4da5cc 102#include <stdlib.h>
103#include <stdio.h>
104#include <string.h>
105
106AliRun *gAlice;
107
108static AliHeader *header;
109
fe4da5cc 110ClassImp(AliRun)
111
112//_____________________________________________________________________________
113AliRun::AliRun()
114{
115 //
116 // Default constructor for AliRun
117 //
118 header=&fHeader;
119 fRun = 0;
120 fEvent = 0;
121 fCurrent = -1;
8494b010 122 fModules = 0;
fe4da5cc 123 fGenerator = 0;
124 fTreeD = 0;
125 fTreeK = 0;
126 fTreeH = 0;
127 fTreeE = 0;
128 fTreeR = 0;
129 fParticles = 0;
130 fGeometry = 0;
131 fDisplay = 0;
132 fField = 0;
875c717b 133 fMC = 0;
fe4da5cc 134 fNdets = 0;
135 fImedia = 0;
136 fTrRmax = 1.e10;
137 fTrZmax = 1.e10;
fe4da5cc 138 fInitDone = kFALSE;
139 fLego = 0;
1578254f 140 fPDGDB = 0; //Particle factory object!
1cedd08a 141 fHitLists = 0;
45189757 142 fConfigFunction = "\0";
fe4da5cc 143}
144
145//_____________________________________________________________________________
146AliRun::AliRun(const char *name, const char *title)
147 : TNamed(name,title)
148{
149 //
150 // Constructor for the main processor.
151 // Creates the geometry
152 // Creates the list of Detectors.
153 // Creates the list of particles.
154 //
155 Int_t i;
156
157 gAlice = this;
158 fTreeD = 0;
159 fTreeK = 0;
160 fTreeH = 0;
161 fTreeE = 0;
162 fTreeR = 0;
163 fTrRmax = 1.e10;
164 fTrZmax = 1.e10;
1141f8e4 165 fGenerator = 0;
fe4da5cc 166 fInitDone = kFALSE;
167 fLego = 0;
168 fField = 0;
45189757 169 fConfigFunction = "Config();";
fe4da5cc 170
171 gROOT->GetListOfBrowsables()->Add(this,name);
172 //
173 // create the support list for the various Detectors
8494b010 174 fModules = new TObjArray(77);
fe4da5cc 175 //
176 // Create the TNode geometry for the event display
177
178 BuildSimpleGeometry();
179
180
181 fNtrack=0;
182 fHgwmk=0;
183 fCurrent=-1;
184 header=&fHeader;
185 fRun = 0;
186 fEvent = 0;
187 //
188 // Create the particle stack
1578254f 189 fParticles = new TClonesArray("TParticle",100);
fe4da5cc 190
191 fDisplay = 0;
192 //
193 // Create default mag field
194 SetField();
195 //
875c717b 196 fMC = gMC;
fe4da5cc 197 //
198 // Prepare the tracking medium lists
199 fImedia = new TArrayI(1000);
200 for(i=0;i<1000;i++) (*fImedia)[i]=-99;
1578254f 201 //
202 // Make particles
203 fPDGDB = TDatabasePDG::Instance(); //Particle factory object!
1cedd08a 204 //
205 // Create HitLists list
206 fHitLists = new TList();
fe4da5cc 207}
208
209//_____________________________________________________________________________
210AliRun::~AliRun()
211{
212 //
213 // Defaullt AliRun destructor
214 //
fe4da5cc 215 delete fImedia;
216 delete fField;
875c717b 217 delete fMC;
fe4da5cc 218 delete fGeometry;
219 delete fDisplay;
220 delete fGenerator;
221 delete fLego;
222 delete fTreeD;
223 delete fTreeK;
224 delete fTreeH;
225 delete fTreeE;
226 delete fTreeR;
8494b010 227 if (fModules) {
228 fModules->Delete();
229 delete fModules;
fe4da5cc 230 }
231 if (fParticles) {
232 fParticles->Delete();
233 delete fParticles;
234 }
1cedd08a 235 delete fHitLists;
c222d2b0 236 delete fPDGDB;
fe4da5cc 237}
238
239//_____________________________________________________________________________
240void AliRun::AddHit(Int_t id, Int_t track, Int_t *vol, Float_t *hits) const
241{
242 //
243 // Add a hit to detector id
244 //
8494b010 245 TObjArray &dets = *fModules;
246 if(dets[id]) ((AliModule*) dets[id])->AddHit(track,vol,hits);
fe4da5cc 247}
248
249//_____________________________________________________________________________
250void AliRun::AddDigit(Int_t id, Int_t *tracks, Int_t *digits) const
251{
252 //
253 // Add digit to detector id
254 //
8494b010 255 TObjArray &dets = *fModules;
256 if(dets[id]) ((AliModule*) dets[id])->AddDigit(tracks,digits);
fe4da5cc 257}
258
259//_____________________________________________________________________________
260void AliRun::Browse(TBrowser *b)
261{
262 //
263 // Called when the item "Run" is clicked on the left pane
264 // of the Root browser.
265 // It displays the Root Trees and all detectors.
266 //
267 if (fTreeK) b->Add(fTreeK,fTreeK->GetName());
268 if (fTreeH) b->Add(fTreeH,fTreeH->GetName());
269 if (fTreeD) b->Add(fTreeD,fTreeD->GetName());
270 if (fTreeE) b->Add(fTreeE,fTreeE->GetName());
271 if (fTreeR) b->Add(fTreeR,fTreeR->GetName());
272
8494b010 273 TIter next(fModules);
274 AliModule *detector;
275 while((detector = (AliModule*)next())) {
fe4da5cc 276 b->Add(detector,detector->GetName());
277 }
278}
279
280//_____________________________________________________________________________
281void AliRun::Build()
282{
283 //
284 // Initialize Alice geometry
285 // Dummy routine
286 //
287}
288
289//_____________________________________________________________________________
290void AliRun::BuildSimpleGeometry()
291{
292 //
293 // Create a simple TNode geometry used by Root display engine
294 //
295 // Initialise geometry
296 //
297 fGeometry = new TGeometry("AliceGeom","Galice Geometry for Hits");
298 new TMaterial("void","Vacuum",0,0,0); //Everything is void
299 TBRIK *brik = new TBRIK("S_alice","alice volume","void",2000,2000,3000);
300 brik->SetVisibility(0);
301 new TNode("alice","alice","S_alice");
302}
303
304//_____________________________________________________________________________
305void AliRun::CleanDetectors()
306{
307 //
308 // Clean Detectors at the end of event
309 //
8494b010 310 TIter next(fModules);
311 AliModule *detector;
312 while((detector = (AliModule*)next())) {
fe4da5cc 313 detector->FinishEvent();
314 }
315}
316
317//_____________________________________________________________________________
318void AliRun::CleanParents()
319{
320 //
321 // Clean Particles stack.
1578254f 322 // Set parent/daughter relations
fe4da5cc 323 //
324 TClonesArray &particles = *(gAlice->Particles());
1578254f 325 TParticle *part;
fe4da5cc 326 int i;
327 for(i=0; i<fNtrack; i++) {
1578254f 328 part = (TParticle *)particles.UncheckedAt(i);
329 if(!part->TestBit(Daughters_Bit)) {
330 part->SetFirstDaughter(-1);
331 part->SetLastDaughter(-1);
fe4da5cc 332 }
333 }
334}
335
336//_____________________________________________________________________________
337Int_t AliRun::DistancetoPrimitive(Int_t, Int_t)
338{
339 //
340 // Return the distance from the mouse to the AliRun object
341 // Dummy routine
342 //
343 return 9999;
344}
345
346//_____________________________________________________________________________
347void AliRun::DumpPart (Int_t i)
348{
349 //
350 // Dumps particle i in the stack
351 //
352 TClonesArray &particles = *fParticles;
1578254f 353 ((TParticle*) particles[i])->Print();
fe4da5cc 354}
355
356//_____________________________________________________________________________
357void AliRun::DumpPStack ()
358{
359 //
360 // Dumps the particle stack
361 //
362 TClonesArray &particles = *fParticles;
363 printf(
364 "\n\n=======================================================================\n");
365 for (Int_t i=0;i<fNtrack;i++)
366 {
1578254f 367 printf("-> %d ",i); ((TParticle*) particles[i])->Print();
fe4da5cc 368 printf("--------------------------------------------------------------\n");
369 }
370 printf(
371 "\n=======================================================================\n\n");
372}
373
374//_____________________________________________________________________________
375void AliRun::SetField(Int_t type, Int_t version, Float_t scale,
376 Float_t maxField, char* filename)
377{
378 //
379 // Set magnetic field parameters
380 // type Magnetic field transport flag 0=no field, 2=helix, 3=Runge Kutta
381 // version Magnetic field map version (only 1 active now)
382 // scale Scale factor for the magnetic field
383 // maxField Maximum value for the magnetic field
384
385 //
386 // --- Sanity check on mag field flags
387 if(type<0 || type > 2) {
23370b7a 388 Warning("SetField",
389 "Invalid magnetic field flag: %5d; Helix tracking chosen instead\n"
fe4da5cc 390 ,type);
391 type=2;
392 }
393 if(fField) delete fField;
394 if(version==1) {
395 fField = new AliMagFC("Map1"," ",type,version,scale,maxField);
396 } else if(version<=3) {
397 fField = new AliMagFCM("Map2-3",filename,type,version,scale,maxField);
398 fField->ReadField();
399 } else {
23370b7a 400 Warning("SetField","Invalid map %d\n",version);
fe4da5cc 401 }
402}
403
404//_____________________________________________________________________________
405void AliRun::FillTree()
406{
407 //
408 // Fills all AliRun TTrees
409 //
410 if (fTreeK) fTreeK->Fill();
411 if (fTreeH) fTreeH->Fill();
412 if (fTreeD) fTreeD->Fill();
413 if (fTreeR) fTreeR->Fill();
414}
415
416//_____________________________________________________________________________
417void AliRun::FinishPrimary()
418{
419 //
420 // Called at the end of each primary track
421 //
422
6c9704e6 423 // static Int_t count=0;
424 // const Int_t times=10;
fe4da5cc 425 // This primary is finished, purify stack
80762cb1 426 PurifyKine();
fe4da5cc 427
428 // Write out hits if any
429 if (gAlice->TreeH()) {
430 gAlice->TreeH()->Fill();
431 }
432
433 // Reset Hits info
434 gAlice->ResetHits();
a8f1fb7c 435
436 //
437 // if(++count%times==1) gObjectTable->Print();
fe4da5cc 438}
439
440//_____________________________________________________________________________
441void AliRun::FinishEvent()
442{
443 //
444 // Called at the end of the event.
445 //
7fb01480 446
dffd31ef 447 //
448 if(fLego) fLego->FinishEvent();
449
fe4da5cc 450 //Update the energy deposit tables
451 Int_t i;
875c717b 452 for(i=0;i<fEventEnergy.GetSize();i++) {
453 fSummEnergy[i]+=fEventEnergy[i];
454 fSum2Energy[i]+=fEventEnergy[i]*fEventEnergy[i];
fe4da5cc 455 }
875c717b 456 fEventEnergy.Reset();
fe4da5cc 457
458 // Clean detector information
459 CleanDetectors();
460
461 // Write out the kinematics
462 if (fTreeK) {
463 CleanParents();
464 fTreeK->Fill();
465 }
466
467 // Write out the digits
468 if (fTreeD) {
469 fTreeD->Fill();
470 ResetDigits();
471 }
472
473 // Write out reconstructed clusters
474 if (fTreeR) {
475 fTreeR->Fill();
476 }
477
478 // Write out the event Header information
479 if (fTreeE) fTreeE->Fill();
480
481 // Reset stack info
482 ResetStack();
483
484 // Write Tree headers
59fe9bd2 485 // Int_t ievent = fHeader.GetEvent();
486 // char hname[30];
487 // sprintf(hname,"TreeK%d",ievent);
488 if (fTreeK) fTreeK->Write();
489 // sprintf(hname,"TreeH%d",ievent);
490 if (fTreeH) fTreeH->Write();
491 // sprintf(hname,"TreeD%d",ievent);
492 if (fTreeD) fTreeD->Write();
493 // sprintf(hname,"TreeR%d",ievent);
494 if (fTreeR) fTreeR->Write();
875c717b 495
496 ++fEvent;
fe4da5cc 497}
498
499//_____________________________________________________________________________
500void AliRun::FinishRun()
501{
502 //
503 // Called at the end of the run.
504 //
505
dffd31ef 506 //
507 if(fLego) fLego->FinishRun();
508
fe4da5cc 509 // Clean detector information
8494b010 510 TIter next(fModules);
511 AliModule *detector;
512 while((detector = (AliModule*)next())) {
fe4da5cc 513 detector->FinishRun();
514 }
515
516 //Output energy summary tables
517 EnergySummary();
518
519 // file is retrieved from whatever tree
520 TFile *File = 0;
521 if (fTreeK) File = fTreeK->GetCurrentFile();
522 if ((!File) && (fTreeH)) File = fTreeH->GetCurrentFile();
523 if ((!File) && (fTreeD)) File = fTreeD->GetCurrentFile();
524 if ((!File) && (fTreeE)) File = fTreeE->GetCurrentFile();
525 if( NULL==File ) {
526 Error("FinishRun","There isn't root file!");
527 exit(1);
528 }
529 File->cd();
530 fTreeE->Write();
531
532 // Clean tree information
533 delete fTreeK; fTreeK = 0;
534 delete fTreeH; fTreeH = 0;
535 delete fTreeD; fTreeD = 0;
536 delete fTreeR; fTreeR = 0;
537 delete fTreeE; fTreeE = 0;
538
539 // Write AliRun info and all detectors parameters
540 Write();
541
542 // Close output file
543 File->Write();
fe4da5cc 544}
545
546//_____________________________________________________________________________
547void AliRun::FlagTrack(Int_t track)
548{
549 //
550 // Flags a track and all its family tree to be kept
551 //
552 int curr;
1578254f 553 TParticle *particle;
fe4da5cc 554
555 curr=track;
556 while(1) {
1578254f 557 particle=(TParticle*)fParticles->UncheckedAt(curr);
fe4da5cc 558
559 // If the particle is flagged the three from here upward is saved already
560 if(particle->TestBit(Keep_Bit)) return;
561
562 // Save this particle
563 particle->SetBit(Keep_Bit);
564
565 // Move to father if any
1578254f 566 if((curr=particle->GetFirstMother())==-1) return;
fe4da5cc 567 }
568}
569
570//_____________________________________________________________________________
571void AliRun::EnergySummary()
572{
573 //
574 // Print summary of deposited energy
575 //
576
fe4da5cc 577 Int_t ndep=0;
578 Float_t edtot=0;
579 Float_t ed, ed2;
580 Int_t kn, i, left, j, id;
581 const Float_t zero=0;
582 Int_t ievent=fHeader.GetEvent()+1;
583 //
584 // Energy loss information
585 if(ievent) {
586 printf("***************** Energy Loss Information per event (GEV) *****************\n");
875c717b 587 for(kn=1;kn<fEventEnergy.GetSize();kn++) {
588 ed=fSummEnergy[kn];
fe4da5cc 589 if(ed>0) {
875c717b 590 fEventEnergy[ndep]=kn;
fe4da5cc 591 if(ievent>1) {
592 ed=ed/ievent;
875c717b 593 ed2=fSum2Energy[kn];
fe4da5cc 594 ed2=ed2/ievent;
595 ed2=100*TMath::Sqrt(TMath::Max(ed2-ed*ed,zero))/ed;
596 } else
597 ed2=99;
875c717b 598 fSummEnergy[ndep]=ed;
599 fSum2Energy[ndep]=TMath::Min((Float_t) 99.,TMath::Max(ed2,zero));
fe4da5cc 600 edtot+=ed;
601 ndep++;
602 }
603 }
604 for(kn=0;kn<(ndep-1)/3+1;kn++) {
605 left=ndep-kn*3;
606 for(i=0;i<(3<left?3:left);i++) {
607 j=kn*3+i;
875c717b 608 id=Int_t (fEventEnergy[j]+0.1);
609 printf(" %s %10.3f +- %10.3f%%;",gMC->VolName(id),fSummEnergy[j],fSum2Energy[j]);
fe4da5cc 610 }
611 printf("\n");
612 }
613 //
614 // Relative energy loss in different detectors
615 printf("******************** Relative Energy Loss per event ********************\n");
616 printf("Total energy loss per event %10.3f GeV\n",edtot);
617 for(kn=0;kn<(ndep-1)/5+1;kn++) {
618 left=ndep-kn*5;
619 for(i=0;i<(5<left?5:left);i++) {
620 j=kn*5+i;
875c717b 621 id=Int_t (fEventEnergy[j]+0.1);
622 printf(" %s %10.3f%%;",gMC->VolName(id),100*fSummEnergy[j]/edtot);
fe4da5cc 623 }
624 printf("\n");
625 }
626 for(kn=0;kn<75;kn++) printf("*");
627 printf("\n");
628 }
629 //
630 // Reset the TArray's
875c717b 631 // fEventEnergy.Set(0);
632 // fSummEnergy.Set(0);
633 // fSum2Energy.Set(0);
fe4da5cc 634}
635
636//_____________________________________________________________________________
8494b010 637AliModule *AliRun::GetModule(const char *name)
fe4da5cc 638{
639 //
640 // Return pointer to detector from name
641 //
8494b010 642 return (AliModule*)fModules->FindObject(name);
fe4da5cc 643}
644
a68348e9 645//_____________________________________________________________________________
646AliDetector *AliRun::GetDetector(const char *name)
647{
648 //
649 // Return pointer to detector from name
650 //
651 return (AliDetector*)fModules->FindObject(name);
652}
653
fe4da5cc 654//_____________________________________________________________________________
8494b010 655Int_t AliRun::GetModuleID(const char *name)
fe4da5cc 656{
657 //
658 // Return galice internal detector identifier from name
659 //
23370b7a 660 Int_t i=-1;
661 TObject *mod=fModules->FindObject(name);
662 if(mod) i=fModules->IndexOf(mod);
663 return i;
fe4da5cc 664}
665
666//_____________________________________________________________________________
667Int_t AliRun::GetEvent(Int_t event)
668{
669 //
670 // Connect the Trees Kinematics and Hits for event # event
671 // Set branch addresses
672 //
fe4da5cc 673
674 // Reset existing structures
675 ResetStack();
676 ResetHits();
677 ResetDigits();
678
679 // Delete Trees already connected
680 if (fTreeK) delete fTreeK;
681 if (fTreeH) delete fTreeH;
682 if (fTreeD) delete fTreeD;
683 if (fTreeR) delete fTreeR;
59fe9bd2 684
685 // Get header from file
686 if(fTreeE) fTreeE->GetEntry(event);
687 else Error("GetEvent","Cannot file Header Tree\n");
fe4da5cc 688
689 // Get Kine Tree from file
690 char treeName[20];
691 sprintf(treeName,"TreeK%d",event);
692 fTreeK = (TTree*)gDirectory->Get(treeName);
693 if (fTreeK) fTreeK->SetBranchAddress("Particles", &fParticles);
23370b7a 694 else Error("GetEvent","cannot find Kine Tree for event:%d\n",event);
fe4da5cc 695
696 // Get Hits Tree header from file
697 sprintf(treeName,"TreeH%d",event);
698 fTreeH = (TTree*)gDirectory->Get(treeName);
699 if (!fTreeH) {
23370b7a 700 Error("GetEvent","cannot find Hits Tree for event:%d\n",event);
fe4da5cc 701 }
702
703 // Get Digits Tree header from file
704 sprintf(treeName,"TreeD%d",event);
705 fTreeD = (TTree*)gDirectory->Get(treeName);
706 if (!fTreeD) {
07a68c1d 707 Warning("GetEvent","cannot find Digits Tree for event:%d\n",event);
fe4da5cc 708 }
709
710
711 // Get Reconstruct Tree header from file
712 sprintf(treeName,"TreeR%d",event);
713 fTreeR = (TTree*)gDirectory->Get(treeName);
714 if (!fTreeR) {
715 // printf("WARNING: cannot find Reconstructed Tree for event:%d\n",event);
716 }
717
718 // Set Trees branch addresses
8494b010 719 TIter next(fModules);
720 AliModule *detector;
721 while((detector = (AliModule*)next())) {
fe4da5cc 722 detector->SetTreeAddress();
723 }
724
725 if (fTreeK) fTreeK->GetEvent(0);
726 fNtrack = Int_t (fParticles->GetEntries());
727 return fNtrack;
728}
729
730//_____________________________________________________________________________
731TGeometry *AliRun::GetGeometry()
732{
733 //
734 // Import Alice geometry from current file
735 // Return pointer to geometry object
736 //
737 if (!fGeometry) fGeometry = (TGeometry*)gDirectory->Get("AliceGeom");
738 //
739 // Unlink and relink nodes in detectors
740 // This is bad and there must be a better way...
741 //
fe4da5cc 742
8494b010 743 TIter next(fModules);
744 AliModule *detector;
745 while((detector = (AliModule*)next())) {
fe4da5cc 746 detector->SetTreeAddress();
747 TList *dnodes=detector->Nodes();
748 Int_t j;
749 TNode *node, *node1;
750 for ( j=0; j<dnodes->GetSize(); j++) {
751 node = (TNode*) dnodes->At(j);
52d0ab00 752 node1 = fGeometry->GetNode(node->GetName());
fe4da5cc 753 dnodes->Remove(node);
754 dnodes->AddAt(node1,j);
755 }
756 }
757 return fGeometry;
758}
759
760//_____________________________________________________________________________
761void AliRun::GetNextTrack(Int_t &mtrack, Int_t &ipart, Float_t *pmom,
762 Float_t &e, Float_t *vpos, Float_t *polar,
763 Float_t &tof)
764{
765 //
766 // Return next track from stack of particles
767 //
a8f1fb7c 768 TVector3 pol;
fe4da5cc 769 fCurrent=-1;
1578254f 770 TParticle *track;
fe4da5cc 771 for(Int_t i=fNtrack-1; i>=0; i--) {
1578254f 772 track=(TParticle*) fParticles->UncheckedAt(i);
fe4da5cc 773 if(!track->TestBit(Done_Bit)) {
774 //
775 // The track has not yet been processed
776 fCurrent=i;
1578254f 777 ipart=track->GetPdgCode();
778 pmom[0]=track->Px();
779 pmom[1]=track->Py();
780 pmom[2]=track->Pz();
781 e =track->Energy();
782 vpos[0]=track->Vx();
783 vpos[1]=track->Vy();
784 vpos[2]=track->Vz();
a8f1fb7c 785 track->GetPolarisation(pol);
786 polar[0]=pol.X();
787 polar[1]=pol.Y();
788 polar[2]=pol.Z();
1578254f 789 tof=track->T();
fe4da5cc 790 track->SetBit(Done_Bit);
791 break;
792 }
793 }
794 mtrack=fCurrent;
795 //
796 // stop and start timer when we start a primary track
797 Int_t nprimaries = fHeader.GetNprimary();
798 if (fCurrent >= nprimaries) return;
799 if (fCurrent < nprimaries-1) {
800 fTimer.Stop();
1578254f 801 track=(TParticle*) fParticles->UncheckedAt(fCurrent+1);
802 // track->SetProcessTime(fTimer.CpuTime());
fe4da5cc 803 }
804 fTimer.Start();
805}
806
807//_____________________________________________________________________________
808Int_t AliRun::GetPrimary(Int_t track)
809{
810 //
811 // return number of primary that has generated track
812 //
813 int current, parent;
1578254f 814 TParticle *part;
fe4da5cc 815 //
816 parent=track;
817 while (1) {
818 current=parent;
1578254f 819 part = (TParticle *)fParticles->UncheckedAt(current);
820 parent=part->GetFirstMother();
fe4da5cc 821 if(parent<0) return current;
822 }
823}
824
825//_____________________________________________________________________________
875c717b 826void AliRun::InitMC(const char *setup)
fe4da5cc 827{
828 //
829 // Initialize the Alice setup
830 //
831
832 gROOT->LoadMacro(setup);
45189757 833 gInterpreter->ProcessLine(fConfigFunction.Data());
fe4da5cc 834
cfce8870 835 gMC->DefineParticles(); //Create standard MC particles
fe4da5cc 836
837 TObject *objfirst, *objlast;
838
23370b7a 839 fNdets = fModules->GetLast()+1;
840
fe4da5cc 841 //
875c717b 842 //=================Create Materials and geometry
843 gMC->Init();
844
8494b010 845 TIter next(fModules);
846 AliModule *detector;
847 while((detector = (AliModule*)next())) {
fe4da5cc 848 detector->SetTreeAddress();
849 objlast = gDirectory->GetList()->Last();
850
fe4da5cc 851 // Add Detector histograms in Detector list of histograms
852 if (objlast) objfirst = gDirectory->GetList()->After(objlast);
853 else objfirst = gDirectory->GetList()->First();
854 while (objfirst) {
855 detector->Histograms()->Add(objfirst);
856 objfirst = gDirectory->GetList()->After(objfirst);
857 }
858 }
859 SetTransPar(); //Read the cuts for all materials
860
861 MediaTable(); //Build the special IMEDIA table
862
fe4da5cc 863 //Initialise geometry deposition table
875c717b 864 fEventEnergy.Set(gMC->NofVolumes()+1);
865 fSummEnergy.Set(gMC->NofVolumes()+1);
866 fSum2Energy.Set(gMC->NofVolumes()+1);
fe4da5cc 867
fe4da5cc 868 //Compute cross-sections
875c717b 869 gMC->BuildPhysics();
fe4da5cc 870
871 //Write Geometry object to current file.
872 fGeometry->Write();
873
874 fInitDone = kTRUE;
875}
876
877//_____________________________________________________________________________
878void AliRun::MediaTable()
879{
880 //
881 // Built media table to get from the media number to
882 // the detector id
883 //
ad51aeb0 884 Int_t kz, nz, idt, lz, i, k, ind;
885 // Int_t ibeg;
fe4da5cc 886 TObjArray &dets = *gAlice->Detectors();
8494b010 887 AliModule *det;
fe4da5cc 888 //
889 // For all detectors
890 for (kz=0;kz<fNdets;kz++) {
891 // If detector is defined
8494b010 892 if((det=(AliModule*) dets[kz])) {
ad51aeb0 893 TArrayI &idtmed = *(det->GetIdtmed());
894 for(nz=0;nz<100;nz++) {
fe4da5cc 895 // Find max and min material number
ad51aeb0 896 if((idt=idtmed[nz])) {
fe4da5cc 897 det->LoMedium() = det->LoMedium() < idt ? det->LoMedium() : idt;
898 det->HiMedium() = det->HiMedium() > idt ? det->HiMedium() : idt;
899 }
900 }
901 if(det->LoMedium() > det->HiMedium()) {
902 det->LoMedium() = 0;
903 det->HiMedium() = 0;
904 } else {
905 if(det->HiMedium() > fImedia->GetSize()) {
ad51aeb0 906 Error("MediaTable","Increase fImedia from %d to %d",
907 fImedia->GetSize(),det->HiMedium());
fe4da5cc 908 return;
909 }
910 // Tag all materials in rage as belonging to detector kz
911 for(lz=det->LoMedium(); lz<= det->HiMedium(); lz++) {
912 (*fImedia)[lz]=kz;
913 }
914 }
915 }
916 }
917 //
918 // Print summary table
919 printf(" Traking media ranges:\n");
920 for(i=0;i<(fNdets-1)/6+1;i++) {
921 for(k=0;k< (6<fNdets-i*6?6:fNdets-i*6);k++) {
922 ind=i*6+k;
8494b010 923 det=(AliModule*)dets[ind];
fe4da5cc 924 if(det)
925 printf(" %6s: %3d -> %3d;",det->GetName(),det->LoMedium(),
926 det->HiMedium());
927 else
928 printf(" %6s: %3d -> %3d;","NULL",0,0);
929 }
930 printf("\n");
931 }
932}
933
934//____________________________________________________________________________
935void AliRun::SetGenerator(AliGenerator *generator)
ee1dd322 936{
937 //
938 // Load the event generator
939 //
940 if(!fGenerator) fGenerator = generator;
941}
942
943//____________________________________________________________________________
944void AliRun::ResetGenerator(AliGenerator *generator)
fe4da5cc 945{
946 //
947 // Load the event generator
948 //
b13db077 949 if(fGenerator)
838edcaf 950 if(generator)
951 Warning("ResetGenerator","Replacing generator %s with %s\n",
952 fGenerator->GetName(),generator->GetName());
953 else
954 Warning("ResetGenerator","Replacing generator %s with NULL\n",
955 fGenerator->GetName());
b13db077 956 fGenerator = generator;
fe4da5cc 957}
958
959//____________________________________________________________________________
960void AliRun::SetTransPar(char* filename)
961{
962 //
963 // Read filename to set the transport parameters
964 //
965
fe4da5cc 966
967 const Int_t ncuts=10;
968 const Int_t nflags=11;
969 const Int_t npars=ncuts+nflags;
970 const char pars[npars][7] = {"CUTGAM" ,"CUTELE","CUTNEU","CUTHAD","CUTMUO",
971 "BCUTE","BCUTM","DCUTE","DCUTM","PPCUTM","ANNI",
972 "BREM","COMP","DCAY","DRAY","HADR","LOSS",
973 "MULS","PAIR","PHOT","RAYL"};
974 char line[256];
ad51aeb0 975 char detName[7];
fe4da5cc 976 char* filtmp;
977 Float_t cut[ncuts];
978 Int_t flag[nflags];
979 Int_t i, itmed, iret, ktmed, kz;
980 FILE *lun;
981 //
982 // See whether the file is there
983 filtmp=gSystem->ExpandPathName(filename);
984 lun=fopen(filtmp,"r");
985 delete [] filtmp;
986 if(!lun) {
ad51aeb0 987 Warning("SetTransPar","File %s does not exist!\n",filename);
fe4da5cc 988 return;
989 }
990 //
991 printf(" "); for(i=0;i<60;i++) printf("*"); printf("\n");
992 printf(" *%59s\n","*");
993 printf(" * Please check carefully what you are doing!%10s\n","*");
994 printf(" *%59s\n","*");
995 //
996 while(1) {
997 // Initialise cuts and flags
998 for(i=0;i<ncuts;i++) cut[i]=-99;
999 for(i=0;i<nflags;i++) flag[i]=-99;
1000 itmed=0;
1001 for(i=0;i<256;i++) line[i]='\0';
1002 // Read up to the end of line excluded
1003 iret=fscanf(lun,"%[^\n]",line);
1004 if(iret<0) {
1005 //End of file
1006 fclose(lun);
1007 printf(" *%59s\n","*");
1008 printf(" "); for(i=0;i<60;i++) printf("*"); printf("\n");
1009 return;
1010 }
1011 // Read the end of line
1012 fscanf(lun,"%*c");
1013 if(!iret) continue;
1014 if(line[0]=='*') continue;
1015 // Read the numbers
ad51aeb0 1016 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",
1017 detName,&itmed,&cut[0],&cut[1],&cut[2],&cut[3],&cut[4],&cut[5],&cut[6],&cut[7],&cut[8],
1018 &cut[9],&flag[0],&flag[1],&flag[2],&flag[3],&flag[4],&flag[5],&flag[6],&flag[7],
1019 &flag[8],&flag[9],&flag[10]);
fe4da5cc 1020 if(!iret) continue;
1021 if(iret<0) {
1022 //reading error
ad51aeb0 1023 Warning("SetTransPar","Error reading file %s\n",filename);
fe4da5cc 1024 continue;
1025 }
ad51aeb0 1026 // Check that the module exist
1027 AliModule *mod = GetModule(detName);
1028 if(mod) {
1029 // Get the array of media numbers
1030 TArrayI &idtmed = *mod->GetIdtmed();
1031 // Check that the tracking medium code is valid
1032 if(0<=itmed && itmed < 100) {
1033 ktmed=idtmed[itmed];
1034 if(!ktmed) {
1035 Warning("SetTransPar","Invalid tracking medium code %d for %s\n",itmed,mod->GetName());
1036 continue;
fe4da5cc 1037 }
ad51aeb0 1038 // Set energy thresholds
1039 for(kz=0;kz<ncuts;kz++) {
1040 if(cut[kz]>=0) {
23370b7a 1041 printf(" * %-6s set to %10.3E for tracking medium code %4d for %s\n",
ad51aeb0 1042 pars[kz],cut[kz],itmed,mod->GetName());
cfce8870 1043 gMC->Gstpar(ktmed,pars[kz],cut[kz]);
ad51aeb0 1044 }
fe4da5cc 1045 }
ad51aeb0 1046 // Set transport mechanisms
1047 for(kz=0;kz<nflags;kz++) {
1048 if(flag[kz]>=0) {
1049 printf(" * %-6s set to %10d for tracking medium code %4d for %s\n",
1050 pars[ncuts+kz],flag[kz],itmed,mod->GetName());
cfce8870 1051 gMC->Gstpar(ktmed,pars[ncuts+kz],Float_t(flag[kz]));
ad51aeb0 1052 }
1053 }
1054 } else {
1055 Warning("SetTransPar","Invalid medium code %d *\n",itmed);
1056 continue;
fe4da5cc 1057 }
1058 } else {
ad51aeb0 1059 Warning("SetTransPar","Module %s not present\n",detName);
fe4da5cc 1060 continue;
1061 }
1062 }
1063}
1064
1065//_____________________________________________________________________________
1066void AliRun::MakeTree(Option_t *option)
1067{
1068 //
1069 // Create the ROOT trees
1070 // Loop on all detectors to create the Root branch (if any)
1071 //
1072
b13db077 1073 char hname[30];
fe4da5cc 1074 //
1075 // Analyse options
1076 char *K = strstr(option,"K");
1077 char *H = strstr(option,"H");
1078 char *E = strstr(option,"E");
1079 char *D = strstr(option,"D");
1080 char *R = strstr(option,"R");
1081 //
b13db077 1082 if (K && !fTreeK) {
1083 sprintf(hname,"TreeK%d",fEvent);
1084 fTreeK = new TTree(hname,"Kinematics");
1085 // Create a branch for particles
1086 fTreeK->Branch("Particles",&fParticles,4000);
1087 }
1088 if (H && !fTreeH) {
1089 sprintf(hname,"TreeH%d",fEvent);
1090 fTreeH = new TTree(hname,"Hits");
1091 fTreeH->SetAutoSave(1000000000); //no autosave
1092 }
1093 if (D && !fTreeD) {
1094 sprintf(hname,"TreeD%d",fEvent);
1095 fTreeD = new TTree(hname,"Digits");
1096 }
1097 if (R && !fTreeR) {
1098 sprintf(hname,"TreeR%d",fEvent);
1099 fTreeR = new TTree(hname,"Reconstruction");
1100 }
1101 if (E && !fTreeE) {
1102 fTreeE = new TTree("TE","Header");
1103 // Create a branch for Header
1104 fTreeE->Branch("Header","AliHeader",&header,4000);
1105 }
fe4da5cc 1106 //
1107 // Create a branch for hits/digits for each detector
1108 // Each branch is a TClonesArray. Each data member of the Hits classes
1109 // will be in turn a subbranch of the detector master branch
8494b010 1110 TIter next(fModules);
1111 AliModule *detector;
1112 while((detector = (AliModule*)next())) {
fe4da5cc 1113 if (H || D || R) detector->MakeBranch(option);
1114 }
fe4da5cc 1115}
1116
1117//_____________________________________________________________________________
1118Int_t AliRun::PurifyKine(Int_t lastSavedTrack, Int_t nofTracks)
1119{
1120 //
1121 // PurifyKine with external parameters
1122 //
1123 fHgwmk = lastSavedTrack;
1124 fNtrack = nofTracks;
1125 PurifyKine();
1126 return fHgwmk;
1127}
1128
1129//_____________________________________________________________________________
1130void AliRun::PurifyKine()
1131{
1132 //
1133 // Compress kinematic tree keeping only flagged particles
1134 // and renaming the particle id's in all the hits
1135 //
1136 TClonesArray &particles = *fParticles;
1137 int nkeep=fHgwmk+1, parent, i;
1578254f 1138 TParticle *part, *partnew, *father;
fe4da5cc 1139 int *map = new int[particles.GetEntries()];
1140
1141 // Save in Header total number of tracks before compression
1142 fHeader.SetNtrack(fHeader.GetNtrack()+fNtrack-fHgwmk);
1143
a01a8b12 1144 // First pass, invalid Daughter information
fe4da5cc 1145 for(i=0; i<fNtrack; i++) {
a01a8b12 1146 // Preset map, to be removed later
1147 if(i<=fHgwmk) map[i]=i ; else map[i] = -99;
1148 ((TParticle *)particles.UncheckedAt(i))->ResetBit(Daughters_Bit);
1149 }
fe4da5cc 1150 // Second pass, build map between old and new numbering
1151 for(i=fHgwmk+1; i<fNtrack; i++) {
1578254f 1152 part = (TParticle *)particles.UncheckedAt(i);
fe4da5cc 1153 if(part->TestBit(Keep_Bit)) {
1154
1155 // This particle has to be kept
1156 map[i]=nkeep;
1157 if(i!=nkeep) {
1158
1159 // Old and new are different, have to copy
1578254f 1160 partnew = (TParticle *)particles.UncheckedAt(nkeep);
5eb58812 1161 // Change due to a bug in the HP compiler
1162 // *partnew = *part;
1163 memcpy(partnew,part,sizeof(TParticle));
fe4da5cc 1164 } else partnew = part;
1165
1166 // as the parent is always *before*, it must be already
1167 // in place. This is what we are checking anyway!
1578254f 1168 if((parent=partnew->GetFirstMother())>fHgwmk) {
fe4da5cc 1169 if(map[parent]==-99) printf("map[%d] = -99!\n",parent);
1578254f 1170 partnew->SetFirstMother(map[parent]);
fe4da5cc 1171 }
1172 nkeep++;
1173 }
1174 }
1175 fNtrack=nkeep;
1176
1578254f 1177 // Fix daughters information
ae23d366 1178 for (i=0; i<fNtrack; i++) {
1578254f 1179 part = (TParticle *)particles.UncheckedAt(i);
1180 parent = part->GetFirstMother();
ae23d366 1181 if(parent>=0) {
1182 father = (TParticle *)particles.UncheckedAt(parent);
1183 if(father->TestBit(Daughters_Bit)) {
fe4da5cc 1184
ae23d366 1185 if(i<father->GetFirstDaughter()) father->SetFirstDaughter(i);
1186 if(i>father->GetLastDaughter()) father->SetLastDaughter(i);
1187 } else {
1188 // Iitialise daughters info for first pass
1189 father->SetFirstDaughter(i);
1190 father->SetLastDaughter(i);
1191 father->SetBit(Daughters_Bit);
1192 }
fe4da5cc 1193 }
1194 }
1195
1cedd08a 1196#ifdef old
fe4da5cc 1197 // Now loop on all detectors and reset the hits
b13db077 1198 AliHit *OneHit;
8494b010 1199 TIter next(fModules);
1200 AliModule *detector;
1201 while((detector = (AliModule*)next())) {
fe4da5cc 1202 if (!detector->Hits()) continue;
1203 TClonesArray &vHits=*(detector->Hits());
1204 if(vHits.GetEntries() != detector->GetNhits())
1205 printf("vHits.GetEntries()!=detector->GetNhits(): %d != %d\n",
1206 vHits.GetEntries(),detector->GetNhits());
1207 for (i=0; i<detector->GetNhits(); i++) {
1208 OneHit = (AliHit *)vHits.UncheckedAt(i);
1209 OneHit->SetTrack(map[OneHit->GetTrack()]);
1210 }
1211 }
1cedd08a 1212#else
1213
1214 // Now loop on all registered hit lists
1215 TIter next(fHitLists);
1216 TCollection *hitList;
1217 while((hitList = (TCollection*)next())) {
1218 TIter nexthit(hitList);
1219 AliHit *hit;
1220 while((hit = (AliHit*)nexthit())) {
1221 hit->SetTrack(map[hit->GetTrack()]);
1222 }
1223 }
1224#endif
fe4da5cc 1225
1226 fHgwmk=nkeep-1;
1227 particles.SetLast(fHgwmk);
1228 delete [] map;
1229}
1230
1231//_____________________________________________________________________________
dffd31ef 1232void AliRun::BeginEvent()
fe4da5cc 1233{
1234 //
1235 // Reset all Detectors & kinematics & trees
1236 //
59fe9bd2 1237 char hname[30];
dffd31ef 1238 //
1239
1240 //
1241 if(fLego) {
1242 fLego->BeginEvent();
1243 return;
1244 }
1245
59fe9bd2 1246 //
fe4da5cc 1247 ResetStack();
1248 ResetHits();
1249 ResetDigits();
1250
1251 // Initialise event header
875c717b 1252 fHeader.Reset(fRun,fEvent);
fe4da5cc 1253
59fe9bd2 1254 if(fTreeK) {
1255 fTreeK->Reset();
875c717b 1256 sprintf(hname,"TreeK%d",fEvent);
59fe9bd2 1257 fTreeK->SetName(hname);
1258 }
1259 if(fTreeH) {
1260 fTreeH->Reset();
875c717b 1261 sprintf(hname,"TreeH%d",fEvent);
59fe9bd2 1262 fTreeH->SetName(hname);
1263 }
1264 if(fTreeD) {
1265 fTreeD->Reset();
875c717b 1266 sprintf(hname,"TreeD%d",fEvent);
59fe9bd2 1267 fTreeD->SetName(hname);
1268 }
1269 if(fTreeR) {
1270 fTreeR->Reset();
875c717b 1271 sprintf(hname,"TreeR%d",fEvent);
59fe9bd2 1272 fTreeR->SetName(hname);
1273 }
fe4da5cc 1274}
1275
1276//_____________________________________________________________________________
1277void AliRun::ResetDigits()
1278{
1279 //
1280 // Reset all Detectors digits
1281 //
8494b010 1282 TIter next(fModules);
1283 AliModule *detector;
1284 while((detector = (AliModule*)next())) {
fe4da5cc 1285 detector->ResetDigits();
1286 }
1287}
1288
1289//_____________________________________________________________________________
1290void AliRun::ResetHits()
1291{
1292 //
1293 // Reset all Detectors hits
1294 //
8494b010 1295 TIter next(fModules);
1296 AliModule *detector;
1297 while((detector = (AliModule*)next())) {
fe4da5cc 1298 detector->ResetHits();
1299 }
1300}
1301
1302//_____________________________________________________________________________
1303void AliRun::ResetPoints()
1304{
1305 //
1306 // Reset all Detectors points
1307 //
8494b010 1308 TIter next(fModules);
1309 AliModule *detector;
1310 while((detector = (AliModule*)next())) {
fe4da5cc 1311 detector->ResetPoints();
1312 }
1313}
1314
1315//_____________________________________________________________________________
875c717b 1316void AliRun::RunMC(Int_t nevent, const char *setup)
fe4da5cc 1317{
1318 //
1319 // Main function to be called to process a galice run
1320 // example
1321 // Root > gAlice.Run();
1322 // a positive number of events will cause the finish routine
1323 // to be called
1324 //
1325
fe4da5cc 1326 // check if initialisation has been done
875c717b 1327 if (!fInitDone) InitMC(setup);
fe4da5cc 1328
fe4da5cc 1329 // Create the Root Tree with one branch per detector
80762cb1 1330 MakeTree("KHDER");
fe4da5cc 1331
875c717b 1332 gMC->ProcessRun(nevent);
1333
fe4da5cc 1334 // End of this run, close files
80762cb1 1335 if(nevent>0) FinishRun();
fe4da5cc 1336}
1337
1338//_____________________________________________________________________________
1339void AliRun::RunLego(const char *setup,Int_t ntheta,Float_t themin,
1340 Float_t themax,Int_t nphi,Float_t phimin,Float_t phimax,
1341 Float_t rmin,Float_t rmax,Float_t zmax)
1342{
1343 //
1344 // Generates lego plots of:
1345 // - radiation length map phi vs theta
1346 // - radiation length map phi vs eta
1347 // - interaction length map
1348 // - g/cm2 length map
1349 //
1350 // ntheta bins in theta, eta
1351 // themin minimum angle in theta (degrees)
1352 // themax maximum angle in theta (degrees)
1353 // nphi bins in phi
1354 // phimin minimum angle in phi (degrees)
1355 // phimax maximum angle in phi (degrees)
1356 // rmin minimum radius
1357 // rmax maximum radius
1358 //
1359 //
1360 // The number of events generated = ntheta*nphi
1361 // run input parameters in macro setup (default="Config.C")
1362 //
1363 // Use macro "lego.C" to visualize the 3 lego plots in spherical coordinates
1364 //Begin_Html
1365 /*
1439f98e 1366 <img src="picts/AliRunLego1.gif">
fe4da5cc 1367 */
1368 //End_Html
1369 //Begin_Html
1370 /*
1439f98e 1371 <img src="picts/AliRunLego2.gif">
fe4da5cc 1372 */
1373 //End_Html
1374 //Begin_Html
1375 /*
1439f98e 1376 <img src="picts/AliRunLego3.gif">
fe4da5cc 1377 */
1378 //End_Html
1379 //
1380
1381 // check if initialisation has been done
875c717b 1382 if (!fInitDone) InitMC(setup);
b13db077 1383
838edcaf 1384 //Save current generator
1385 AliGenerator *gen=Generator();
1386
b13db077 1387 //Create Lego object
1388 fLego = new AliLego("lego",ntheta,themin,themax,nphi,phimin,phimax,rmin,rmax,zmax);
1389
dffd31ef 1390 //Prepare MC for Lego Run
1391 gMC->InitLego();
1392
b13db077 1393 //Run Lego Object
dffd31ef 1394 gMC->ProcessRun(ntheta*nphi+1);
fe4da5cc 1395
1396 // Create only the Root event Tree
80762cb1 1397 MakeTree("E");
fe4da5cc 1398
1399 // End of this run, close files
80762cb1 1400 FinishRun();
838edcaf 1401
1402 // Delete Lego Object
1403 delete fLego; fLego=0;
1404
1405 // Restore current generator
1406 SetGenerator(gen);
fe4da5cc 1407}
1408
1409//_____________________________________________________________________________
1410void AliRun::SetCurrentTrack(Int_t track)
1411{
1412 //
1413 // Set current track number
1414 //
1415 fCurrent = track;
1416}
1417
1418//_____________________________________________________________________________
1578254f 1419void AliRun::SetTrack(Int_t done, Int_t parent, Int_t pdg, Float_t *pmom,
fe4da5cc 1420 Float_t *vpos, Float_t *polar, Float_t tof,
1421 const char *mecha, Int_t &ntr, Float_t weight)
1422{
1423 //
1424 // Load a track on the stack
1425 //
1426 // done 0 if the track has to be transported
1427 // 1 if not
1428 // parent identifier of the parent track. -1 for a primary
1578254f 1429 // pdg particle code
fe4da5cc 1430 // pmom momentum GeV/c
1431 // vpos position
1432 // polar polarisation
1433 // tof time of flight in seconds
1434 // mecha production mechanism
1435 // ntr on output the number of the track stored
1436 //
1437 TClonesArray &particles = *fParticles;
1578254f 1438 TParticle *particle;
fe4da5cc 1439 Float_t mass;
1578254f 1440 const Int_t firstdaughter=-1;
1441 const Int_t lastdaughter=-1;
fe4da5cc 1442 const Int_t KS=0;
1578254f 1443 // const Float_t tlife=0;
fe4da5cc 1444
1578254f 1445 //
1446 // Here we get the static mass
1447 // For MC is ok, but a more sophisticated method could be necessary
1448 // if the calculated mass is required
1449 // also, this method is potentially dangerous if the mass
1450 // used in the MC is not the same of the PDG database
1451 //
1452 mass = TDatabasePDG::Instance()->GetParticle(pdg)->Mass();
fe4da5cc 1453 Float_t e=TMath::Sqrt(mass*mass+pmom[0]*pmom[0]+
1454 pmom[1]*pmom[1]+pmom[2]*pmom[2]);
1455
1456 //printf("Loading particle %s mass %f ene %f No %d ip %d pos %f %f %f mom %f %f %f KS %d m %s\n",
1578254f 1457 //pname,mass,e,fNtrack,pdg,vpos[0],vpos[1],vpos[2],pmom[0],pmom[1],pmom[2],KS,mecha);
fe4da5cc 1458
1578254f 1459 particle=new(particles[fNtrack]) TParticle(pdg,KS,parent,-1,firstdaughter,
1460 lastdaughter,pmom[0],pmom[1],pmom[2],
1461 e,vpos[0],vpos[1],vpos[2],tof);
1462 // polar[0],polar[1],polar[2],tof,
1463 // mecha,weight);
1464 ((TParticle*)particles[fNtrack])->SetPolarisation(TVector3(polar[0],polar[1],polar[2]));
1465 ((TParticle*)particles[fNtrack])->SetWeight(weight);
fe4da5cc 1466 if(!done) particle->SetBit(Done_Bit);
a01a8b12 1467 //Declare that the daughter information is valid
1468 ((TParticle*)particles[fNtrack])->SetBit(Daughters_Bit);
fe4da5cc 1469
1470 if(parent>=0) {
1578254f 1471 particle=(TParticle*) fParticles->UncheckedAt(parent);
1472 particle->SetLastDaughter(fNtrack);
1473 if(particle->GetFirstDaughter()<0) particle->SetFirstDaughter(fNtrack);
fe4da5cc 1474 } else {
1475 //
1476 // This is a primary track. Set high water mark for this event
1477 fHgwmk=fNtrack;
1478 //
1479 // Set also number if primary tracks
1480 fHeader.SetNprimary(fHgwmk+1);
1481 fHeader.SetNtrack(fHgwmk+1);
1482 }
1483 ntr = fNtrack++;
1484}
1485
1486//_____________________________________________________________________________
1487void AliRun::KeepTrack(const Int_t track)
1488{
1489 //
1490 // flags a track to be kept
1491 //
1492 TClonesArray &particles = *fParticles;
1578254f 1493 ((TParticle*)particles[track])->SetBit(Keep_Bit);
fe4da5cc 1494}
1495
1496//_____________________________________________________________________________
875c717b 1497void AliRun::StepManager(Int_t id)
fe4da5cc 1498{
1499 //
1500 // Called at every step during transport
1501 //
1502
fe4da5cc 1503 //
1504 // --- If lego option, do it and leave
b13db077 1505 if (fLego)
fe4da5cc 1506 fLego->StepManager();
b13db077 1507 else {
1508 Int_t copy;
1509 //Update energy deposition tables
875c717b 1510 AddEnergyDeposit(gMC->CurrentVolID(copy),gMC->Edep());
fe4da5cc 1511
b13db077 1512 //Call the appropriate stepping routine;
1513 AliModule *det = (AliModule*)fModules->At(id);
1514 if(det) det->StepManager();
fe4da5cc 1515 }
fe4da5cc 1516}
1517
fe4da5cc 1518//_____________________________________________________________________________
1519void AliRun::Streamer(TBuffer &R__b)
1520{
1521 //
1522 // Stream an object of class AliRun.
1523 //
1524 if (R__b.IsReading()) {
1525 Version_t R__v = R__b.ReadVersion(); if (R__v) { }
1526 TNamed::Streamer(R__b);
1527 if (!gAlice) gAlice = this;
1528 gROOT->GetListOfBrowsables()->Add(this,"Run");
59fe9bd2 1529 fTreeE = (TTree*)gDirectory->Get("TE");
1530 if (fTreeE) fTreeE->SetBranchAddress("Header", &header);
1531 else Error("Streamer","cannot find Header Tree\n");
fe4da5cc 1532 R__b >> fNtrack;
1533 R__b >> fHgwmk;
1534 R__b >> fDebug;
1535 fHeader.Streamer(R__b);
8494b010 1536 R__b >> fModules;
fe4da5cc 1537 R__b >> fParticles;
1538 R__b >> fField;
875c717b 1539 // R__b >> fMC;
fe4da5cc 1540 R__b >> fNdets;
1541 R__b >> fTrRmax;
1542 R__b >> fTrZmax;
1543 R__b >> fGenerator;
59fe9bd2 1544 if(R__v>1) {
1545 R__b >> fPDGDB; //Particle factory object!
1546 fTreeE->GetEntry(0);
1547 } else {
1548 fHeader.SetEvent(0);
1549 fPDGDB = TDatabasePDG::Instance(); //Particle factory object!
1550 }
45189757 1551 if(R__v>2) {
1552 fConfigFunction.Streamer(R__b);
1553 } else {
1554 fConfigFunction="Config();";
1555 }
fe4da5cc 1556 } else {
1557 R__b.WriteVersion(AliRun::IsA());
1558 TNamed::Streamer(R__b);
1559 R__b << fNtrack;
1560 R__b << fHgwmk;
1561 R__b << fDebug;
1562 fHeader.Streamer(R__b);
8494b010 1563 R__b << fModules;
fe4da5cc 1564 R__b << fParticles;
1565 R__b << fField;
875c717b 1566 // R__b << fMC;
fe4da5cc 1567 R__b << fNdets;
1568 R__b << fTrRmax;
1569 R__b << fTrZmax;
1570 R__b << fGenerator;
1578254f 1571 R__b << fPDGDB; //Particle factory object!
45189757 1572 fConfigFunction.Streamer(R__b);
fe4da5cc 1573 }
1574}