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4c039060 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
88cb7938 16/* $Id$ */
4c039060 17
fe4da5cc 18///////////////////////////////////////////////////////////////////////////////
19// //
20// Time Projection Chamber //
21// This class contains the basic functions for the Time Projection Chamber //
22// detector. Functions specific to one particular geometry are //
23// contained in the derived classes //
24// //
25//Begin_Html
26/*
1439f98e 27<img src="picts/AliTPCClass.gif">
fe4da5cc 28*/
29//End_Html
30// //
8c555625 31// //
fe4da5cc 32///////////////////////////////////////////////////////////////////////////////
33
73042f01 34//
35
88cb7938 36#include <Riostream.h>
37#include <stdlib.h>
38
f7a1cc68 39#include <TF2.h>
88cb7938 40#include <TFile.h>
f7a1cc68 41#include <TGeoGlobalMagField.h>
88cb7938 42#include <TInterpreter.h>
fe4da5cc 43#include <TMath.h>
e8d02863 44#include <TMatrixF.h>
fe4da5cc 45#include <TObjectTable.h>
88cb7938 46#include <TParticle.h>
afc42102 47#include <TROOT.h>
88cb7938 48#include <TRandom.h>
f7a1cc68 49#include <TStopwatch.h>
50#include <TString.h>
afc42102 51#include <TSystem.h>
88cb7938 52#include <TTree.h>
f7a1cc68 53#include <TVector.h>
88cb7938 54#include <TVirtualMC.h>
f546a4b4 55#include <TParameter.h>
cc80f89e 56
cc80f89e 57#include "AliDigits.h"
88cb7938 58#include "AliMagF.h"
88cb7938 59#include "AliRun.h"
60#include "AliRunLoader.h"
cc80f89e 61#include "AliSimDigits.h"
88cb7938 62#include "AliTPC.h"
63#include "AliTPC.h"
88cb7938 64#include "AliTPCDigitsArray.h"
65#include "AliTPCLoader.h"
66#include "AliTPCPRF2D.h"
67#include "AliTPCParamSR.h"
68#include "AliTPCRF1D.h"
792bb11c 69#include "AliTPCTrackHitsV2.h"
88cb7938 70#include "AliTrackReference.h"
5d12ce38 71#include "AliMC.h"
5bf6eb16 72#include "AliStack.h"
85a5290f 73#include "AliTPCDigitizer.h"
0421c3d1 74#include "AliTPCBuffer.h"
75#include "AliTPCDDLRawData.h"
8c2b3fd7 76#include "AliLog.h"
79fa3dc8 77#include "AliTPCcalibDB.h"
78#include "AliTPCCalPad.h"
79#include "AliTPCCalROC.h"
80#include "AliTPCExB.h"
bc807150 81#include "AliRawReader.h"
dbfbf54e 82#include "AliTPCRawStreamV3.h"
23effa8e 83#include "TTreeStream.h"
39c8eb58 84
fe4da5cc 85ClassImp(AliTPC)
fe4da5cc 86//_____________________________________________________________________________
179c6296 87 AliTPC::AliTPC():AliDetector(),
88 fDefaults(0),
89 fSens(0),
90 fNsectors(0),
91 fDigitsArray(0),
92 fTPCParam(0),
93 fTrackHits(0),
94 fHitType(0),
95 fDigitsSwitch(0),
96 fSide(0),
b97617a6 97 fPrimaryIonisation(0),
179c6296 98 fNoiseDepth(0),
99 fNoiseTable(0),
100 fCurrentNoise(0),
8261c673 101 fActiveSectors(0),
23effa8e 102 fGainFactor(1.),
f546a4b4 103 fDebugStreamer(0),
104 fLHCclockPhaseSw(0)
179c6296 105
fe4da5cc 106{
107 //
108 // Default constructor
109 //
110 fIshunt = 0;
712976a6 111 for(Int_t i=0;i<4;i++) fCurrentIndex[i]=0;
179c6296 112
be5ffbfe 113 // fTrackHitsOld = 0;
8c2b3fd7 114#if ROOT_VERSION_CODE >= ROOT_VERSION(4,0,1)
115 fHitType = 4; // ROOT containers
116#else
117 fHitType = 2; //default CONTAINERS - based on ROOT structure
118#endif
fe4da5cc 119}
120
121//_____________________________________________________________________________
122AliTPC::AliTPC(const char *name, const char *title)
179c6296 123 : AliDetector(name,title),
124 fDefaults(0),
125 fSens(0),
126 fNsectors(0),
127 fDigitsArray(0),
128 fTPCParam(0),
129 fTrackHits(0),
130 fHitType(0),
131 fDigitsSwitch(0),
132 fSide(0),
b97617a6 133 fPrimaryIonisation(0),
179c6296 134 fNoiseDepth(0),
135 fNoiseTable(0),
136 fCurrentNoise(0),
8261c673 137 fActiveSectors(0),
f546a4b4 138 fGainFactor(1.),
139 fDebugStreamer(0),
140 fLHCclockPhaseSw(0)
b97617a6 141
fe4da5cc 142{
143 //
144 // Standard constructor
145 //
146
147 //
148 // Initialise arrays of hits and digits
149 fHits = new TClonesArray("AliTPChit", 176);
5d12ce38 150 gAlice->GetMCApp()->AddHitList(fHits);
fe4da5cc 151 //
792bb11c 152 fTrackHits = new AliTPCTrackHitsV2;
39c8eb58 153 fTrackHits->SetHitPrecision(0.002);
154 fTrackHits->SetStepPrecision(0.003);
792bb11c 155 fTrackHits->SetMaxDistance(100);
156
be5ffbfe 157 //fTrackHitsOld = new AliTPCTrackHits; //MI - 13.09.2000
158 //fTrackHitsOld->SetHitPrecision(0.002);
159 //fTrackHitsOld->SetStepPrecision(0.003);
160 //fTrackHitsOld->SetMaxDistance(100);
792bb11c 161
39c8eb58 162
8c2b3fd7 163#if ROOT_VERSION_CODE >= ROOT_VERSION(4,0,1)
164 fHitType = 4; // ROOT containers
165#else
da33556f 166 fHitType = 2;
8c2b3fd7 167#endif
179c6296 168
712976a6 169 for(Int_t i=0;i<4;i++) fCurrentIndex[i]=0;
cc80f89e 170
fe4da5cc 171 //
172 fIshunt = 0;
173 //
174 // Initialise color attributes
e939a978 175 //PH SetMarkerColor(kYellow);
73042f01 176
177 //
178 // Set TPC parameters
179 //
180
afc42102 181
182 if (!strcmp(title,"Default")) {
db2fdcfb 183 //fTPCParam = new AliTPCParamSR;
184 fTPCParam = AliTPCcalibDB::Instance()->GetParameters();
73042f01 185 } else {
8c2b3fd7 186 AliWarning("In Config.C you must set non-default parameters.");
73042f01 187 fTPCParam=0;
188 }
23effa8e 189
fe4da5cc 190}
0f2ff24c 191void AliTPC::CreateDebugStremer(){
192 //
193 // Create Debug streamer to check simulation
194 //
195 fDebugStreamer = new TTreeSRedirector("TPCSimdebug.root");
196}
fe4da5cc 197//_____________________________________________________________________________
198AliTPC::~AliTPC()
199{
200 //
201 // TPC destructor
202 //
73042f01 203
fe4da5cc 204 fIshunt = 0;
205 delete fHits;
206 delete fDigits;
db2fdcfb 207 //delete fTPCParam;
39c8eb58 208 delete fTrackHits; //MI 15.09.2000
be5ffbfe 209 // delete fTrackHitsOld; //MI 10.12.2001
9ff4af81 210
211 fDigitsArray = 0x0;
212 delete [] fNoiseTable;
213 delete [] fActiveSectors;
23effa8e 214 if (fDebugStreamer) delete fDebugStreamer;
fe4da5cc 215}
216
fe4da5cc 217//_____________________________________________________________________________
218void AliTPC::AddHit(Int_t track, Int_t *vol, Float_t *hits)
219{
220 //
221 // Add a hit to the list
222 //
39c8eb58 223 if (fHitType&1){
224 TClonesArray &lhits = *fHits;
225 new(lhits[fNhits++]) AliTPChit(fIshunt,track,vol,hits);
226 }
792bb11c 227 if (fHitType>1)
8c2b3fd7 228 AddHit2(track,vol,hits);
fe4da5cc 229}
88cb7938 230
fe4da5cc 231//_____________________________________________________________________________
232void AliTPC::CreateMaterials()
233{
8c555625 234 //-----------------------------------------------
37831078 235 // Create Materials for for TPC simulations
8c555625 236 //-----------------------------------------------
237
238 //-----------------------------------------------------------------
239 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
240 //-----------------------------------------------------------------
1283eee5 241
f7a1cc68 242 Int_t iSXFLD=((AliMagF*)TGeoGlobalMagField::Instance()->GetField())->Integ();
243 Float_t sXMGMX=((AliMagF*)TGeoGlobalMagField::Instance()->GetField())->Max();
1283eee5 244
245 Float_t amat[5]; // atomic numbers
246 Float_t zmat[5]; // z
247 Float_t wmat[5]; // proportions
248
249 Float_t density;
37831078 250
1283eee5 251
1283eee5 252
c1637e41 253 //***************** Gases *************************
1283eee5 254
37831078 255
1283eee5 256 //--------------------------------------------------------------
c1637e41 257 // gases - air and CO2
1283eee5 258 //--------------------------------------------------------------
259
37831078 260 // CO2
1283eee5 261
262 amat[0]=12.011;
263 amat[1]=15.9994;
264
265 zmat[0]=6.;
266 zmat[1]=8.;
267
c1637e41 268 wmat[0]=0.2729;
269 wmat[1]=0.7271;
1283eee5 270
2556fc5b 271 density=0.001754609;
1283eee5 272
1283eee5 273
c1637e41 274 AliMixture(10,"CO2",amat,zmat,density,2,wmat);
275 //
276 // Air
277 //
278 amat[0]=15.9994;
279 amat[1]=14.007;
280 //
281 zmat[0]=8.;
282 zmat[1]=7.;
283 //
284 wmat[0]=0.233;
285 wmat[1]=0.767;
286 //
287 density=0.001205;
1283eee5 288
c1637e41 289 AliMixture(11,"Air",amat,zmat,density,2,wmat);
290
1283eee5 291 //----------------------------------------------------------------
c1637e41 292 // drift gases
1283eee5 293 //----------------------------------------------------------------
37831078 294
4f1c6f0b 295 //
37831078 296 // Drift gases 1 - nonsensitive, 2 - sensitive
4f1c6f0b 297 // Ne-CO2-N2 (90-10-5) (volume) values at 20deg and 1 atm.
298 // rho(Ne) = 0.839 g/cm^3, rho(CO2) = 1.842 g/cm^3, rho(N2) = 1.165 g/cm^3
299 // for the calculation - everything is normalized to 1
e4e763b9 300
301 amat[0]= 20.18;
302 amat[1]=12.011;
303 amat[2]=15.9994;
c1637e41 304 amat[3]=14.007;
e4e763b9 305
306 zmat[0]= 10.;
307 zmat[1]=6.;
308 zmat[2]=8.;
c1637e41 309 zmat[3]=7.;
e4e763b9 310
4f1c6f0b 311 wmat[0]=0.756992632;
312 wmat[1]=0.056235789;
313 wmat[2]=0.128469474;
314 wmat[3]=0.058395789;
c1637e41 315
2556fc5b 316 density=0.000904929;
e4e763b9 317
c1637e41 318 AliMixture(12,"Ne-CO2-N-1",amat,zmat,density,4,wmat);
319 AliMixture(13,"Ne-CO2-N-2",amat,zmat,density,4,wmat);
a1648281 320 AliMixture(35,"Ne-CO2-N-3",amat,zmat,density,4,wmat);
1283eee5 321 //----------------------------------------------------------------------
322 // solid materials
323 //----------------------------------------------------------------------
324
1283eee5 325
37831078 326 // Kevlar C14H22O2N2
1283eee5 327
37831078 328 amat[0] = 12.011;
329 amat[1] = 1.;
330 amat[2] = 15.999;
331 amat[3] = 14.006;
1283eee5 332
37831078 333 zmat[0] = 6.;
334 zmat[1] = 1.;
335 zmat[2] = 8.;
336 zmat[3] = 7.;
337
338 wmat[0] = 14.;
339 wmat[1] = 22.;
340 wmat[2] = 2.;
341 wmat[3] = 2.;
342
343 density = 1.45;
344
c1637e41 345 AliMixture(14,"Kevlar",amat,zmat,density,-4,wmat);
37831078 346
347 // NOMEX
1283eee5 348
37831078 349 amat[0] = 12.011;
350 amat[1] = 1.;
351 amat[2] = 15.999;
352 amat[3] = 14.006;
353
354 zmat[0] = 6.;
355 zmat[1] = 1.;
356 zmat[2] = 8.;
357 zmat[3] = 7.;
358
359 wmat[0] = 14.;
360 wmat[1] = 22.;
361 wmat[2] = 2.;
362 wmat[3] = 2.;
363
c1637e41 364 density = 0.029;
365
366 AliMixture(15,"NOMEX",amat,zmat,density,-4,wmat);
37831078 367
368 // Makrolon C16H18O3
369
370 amat[0] = 12.011;
371 amat[1] = 1.;
372 amat[2] = 15.999;
1283eee5 373
37831078 374 zmat[0] = 6.;
375 zmat[1] = 1.;
376 zmat[2] = 8.;
377
378 wmat[0] = 16.;
379 wmat[1] = 18.;
380 wmat[2] = 3.;
381
382 density = 1.2;
383
c1637e41 384 AliMixture(16,"Makrolon",amat,zmat,density,-3,wmat);
385
386 // Tedlar C2H3F
387
388 amat[0] = 12.011;
389 amat[1] = 1.;
390 amat[2] = 18.998;
391
392 zmat[0] = 6.;
393 zmat[1] = 1.;
394 zmat[2] = 9.;
395
396 wmat[0] = 2.;
397 wmat[1] = 3.;
398 wmat[2] = 1.;
399
400 density = 1.71;
401
402 AliMixture(17, "Tedlar",amat,zmat,density,-3,wmat);
37831078 403
1283eee5 404 // Mylar C5H4O2
405
406 amat[0]=12.011;
407 amat[1]=1.;
408 amat[2]=15.9994;
409
410 zmat[0]=6.;
411 zmat[1]=1.;
412 zmat[2]=8.;
413
414 wmat[0]=5.;
415 wmat[1]=4.;
416 wmat[2]=2.;
417
418 density = 1.39;
fe4da5cc 419
c1637e41 420 AliMixture(18, "Mylar",amat,zmat,density,-3,wmat);
421 // material for "prepregs"
422 // Epoxy - C14 H20 O3
423 // Quartz SiO2
424 // Carbon C
425 // prepreg1 60% C-fiber, 40% epoxy (vol)
426 amat[0]=12.011;
427 amat[1]=1.;
428 amat[2]=15.994;
1283eee5 429
c1637e41 430 zmat[0]=6.;
431 zmat[1]=1.;
432 zmat[2]=8.;
1283eee5 433
c1637e41 434 wmat[0]=0.923;
435 wmat[1]=0.023;
436 wmat[2]=0.054;
1283eee5 437
c1637e41 438 density=1.859;
1283eee5 439
c1637e41 440 AliMixture(19, "Prepreg1",amat,zmat,density,3,wmat);
1283eee5 441
c1637e41 442 //prepreg2 60% glass-fiber, 40% epoxy
1283eee5 443
c1637e41 444 amat[0]=12.01;
445 amat[1]=1.;
446 amat[2]=15.994;
447 amat[3]=28.086;
448
449 zmat[0]=6.;
450 zmat[1]=1.;
451 zmat[2]=8.;
452 zmat[3]=14.;
453
454 wmat[0]=0.194;
455 wmat[1]=0.023;
456 wmat[2]=0.443;
efbf94c5 457 wmat[3]=0.34;
c1637e41 458
459 density=1.82;
460
461 AliMixture(20, "Prepreg2",amat,zmat,density,4,wmat);
462
463 //prepreg3 50% glass-fiber, 50% epoxy
464
465 amat[0]=12.01;
466 amat[1]=1.;
467 amat[2]=15.994;
468 amat[3]=28.086;
469
470 zmat[0]=6.;
471 zmat[1]=1.;
472 zmat[2]=8.;
473 zmat[3]=14.;
1283eee5 474
efbf94c5 475 wmat[0]=0.257;
c1637e41 476 wmat[1]=0.03;
efbf94c5 477 wmat[2]=0.412;
c1637e41 478 wmat[3]=0.3;
479
0f788f87 480 density=1.725;
c1637e41 481
482 AliMixture(21, "Prepreg3",amat,zmat,density,4,wmat);
483
484 // G10 60% SiO2 40% epoxy
485
486 amat[0]=12.01;
487 amat[1]=1.;
488 amat[2]=15.994;
489 amat[3]=28.086;
490
491 zmat[0]=6.;
492 zmat[1]=1.;
493 zmat[2]=8.;
494 zmat[3]=14.;
495
496 wmat[0]=0.194;
497 wmat[1]=0.023;
498 wmat[2]=0.443;
499 wmat[3]=0.340;
500
501 density=1.7;
502
503 AliMixture(22, "G10",amat,zmat,density,4,wmat);
504
37831078 505 // Al
1283eee5 506
37831078 507 amat[0] = 26.98;
508 zmat[0] = 13.;
1283eee5 509
37831078 510 density = 2.7;
1283eee5 511
c1637e41 512 AliMaterial(23,"Al",amat[0],zmat[0],density,999.,999.);
1283eee5 513
c1637e41 514 // Si (for electronics
1283eee5 515
37831078 516 amat[0] = 28.086;
9a3667bd 517 zmat[0] = 14.;
1283eee5 518
37831078 519 density = 2.33;
1283eee5 520
c1637e41 521 AliMaterial(24,"Si",amat[0],zmat[0],density,999.,999.);
1283eee5 522
37831078 523 // Cu
1283eee5 524
37831078 525 amat[0] = 63.546;
526 zmat[0] = 29.;
1283eee5 527
37831078 528 density = 8.96;
1283eee5 529
c1637e41 530 AliMaterial(25,"Cu",amat[0],zmat[0],density,999.,999.);
1283eee5 531
0f788f87 532 // brass
533
534 amat[0] = 63.546;
535 zmat[0] = 29.;
536 //
537 amat[1]= 65.409;
538 zmat[1]= 30.;
539 //
540 wmat[0]= 0.6;
541 wmat[1]= 0.4;
542
543 //
544 density = 8.23;
545
546
547 //
548 AliMixture(33,"Brass",amat,zmat,density,2,wmat);
549
c1637e41 550 // Epoxy - C14 H20 O3
551
37831078 552 amat[0]=12.011;
553 amat[1]=1.;
554 amat[2]=15.9994;
1283eee5 555
37831078 556 zmat[0]=6.;
557 zmat[1]=1.;
558 zmat[2]=8.;
1283eee5 559
c1637e41 560 wmat[0]=14.;
561 wmat[1]=20.;
562 wmat[2]=3.;
1283eee5 563
c1637e41 564 density=1.25;
1283eee5 565
c1637e41 566 AliMixture(26,"Epoxy",amat,zmat,density,-3,wmat);
efbf94c5 567 //
568 // epoxy film - 90% epoxy, 10% glass fiber
569 //
570 amat[0]=12.01;
571 amat[1]=1.;
572 amat[2]=15.994;
573 amat[3]=28.086;
574
575 zmat[0]=6.;
576 zmat[1]=1.;
577 zmat[2]=8.;
578 zmat[3]=14.;
579
580 wmat[0]=0.596;
581 wmat[1]=0.071;
582 wmat[2]=0.257;
583 wmat[3]=0.076;
584
585
586 density=1.345;
587
588 AliMixture(34, "Epoxy-film",amat,zmat,density,4,wmat);
1283eee5 589
c1637e41 590 // Plexiglas C5H8O2
1283eee5 591
5a28a08f 592 amat[0]=12.011;
593 amat[1]=1.;
594 amat[2]=15.9994;
595
596 zmat[0]=6.;
597 zmat[1]=1.;
598 zmat[2]=8.;
599
c1637e41 600 wmat[0]=5.;
601 wmat[1]=8.;
602 wmat[2]=2.;
5a28a08f 603
c1637e41 604 density=1.18;
5a28a08f 605
c1637e41 606 AliMixture(27,"Plexiglas",amat,zmat,density,-3,wmat);
37831078 607
ba1d05f9 608 // Carbon
609
610 amat[0]=12.011;
611 zmat[0]=6.;
612 density= 2.265;
613
c1637e41 614 AliMaterial(28,"C",amat[0],zmat[0],density,999.,999.);
ba1d05f9 615
c1637e41 616 // Fe (steel for the inner heat screen)
e4e763b9 617
c1637e41 618 amat[0]=55.845;
e4e763b9 619
c1637e41 620 zmat[0]=26.;
e4e763b9 621
c1637e41 622 density=7.87;
ba1d05f9 623
c1637e41 624 AliMaterial(29,"Fe",amat[0],zmat[0],density,999.,999.);
f4441b15 625 //
626 // Peek - (C6H4-O-OC6H4-O-C6H4-CO)n
627 amat[0]=12.011;
628 amat[1]=1.;
629 amat[2]=15.9994;
630
631 zmat[0]=6.;
632 zmat[1]=1.;
633 zmat[2]=8.;
634
635 wmat[0]=19.;
636 wmat[1]=12.;
637 wmat[2]=3.;
638 //
639 density=1.3;
640 //
641 AliMixture(30,"Peek",amat,zmat,density,-3,wmat);
642 //
643 // Ceramics - Al2O3
644 //
645 amat[0] = 26.98;
646 amat[1]= 15.9994;
647
648 zmat[0] = 13.;
649 zmat[1]=8.;
650
651 wmat[0]=2.;
652 wmat[1]=3.;
653
654 density = 3.97;
655
656 AliMixture(31,"Alumina",amat,zmat,density,-2,wmat);
657
658 //
659 // liquids
660 //
661
662 // water
663
664 amat[0]=1.;
665 amat[1]=15.9994;
666
667 zmat[0]=1.;
668 zmat[1]=8.;
669
670 wmat[0]=2.;
671 wmat[1]=1.;
672
673 density=1.;
674
675 AliMixture(32,"Water",amat,zmat,density,-2,wmat);
efbf94c5 676
ba1d05f9 677
37831078 678 //----------------------------------------------------------
679 // tracking media for gases
680 //----------------------------------------------------------
681
c1637e41 682 AliMedium(0, "Air", 11, 0, iSXFLD, sXMGMX, 10., 999., .1, .01, .1);
683 AliMedium(1, "Ne-CO2-N-1", 12, 0, iSXFLD, sXMGMX, 10., 999.,.1,.001, .001);
684 AliMedium(2, "Ne-CO2-N-2", 13, 1, iSXFLD, sXMGMX, 10., 999.,.1,.001, .001);
37831078 685 AliMedium(3,"CO2",10,0, iSXFLD, sXMGMX, 10., 999.,.1, .001, .001);
a1648281 686 AliMedium(20, "Ne-CO2-N-3", 35, 1, iSXFLD, sXMGMX, 10., 999.,.1,.001, .001);
37831078 687 //-----------------------------------------------------------
688 // tracking media for solids
689 //-----------------------------------------------------------
690
c1637e41 691 AliMedium(4,"Al",23,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
692 AliMedium(5,"Kevlar",14,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
693 AliMedium(6,"Nomex",15,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
694 AliMedium(7,"Makrolon",16,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
695 AliMedium(8,"Mylar",18,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
696 AliMedium(9,"Tedlar",17,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
697 //
698 AliMedium(10,"Prepreg1",19,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
699 AliMedium(11,"Prepreg2",20,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
700 AliMedium(12,"Prepreg3",21,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
701 AliMedium(13,"Epoxy",26,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
702
703 AliMedium(14,"Cu",25,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
704 AliMedium(15,"Si",24,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
705 AliMedium(16,"G10",22,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
706 AliMedium(17,"Plexiglas",27,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
707 AliMedium(18,"Steel",29,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
f4441b15 708 AliMedium(19,"Peek",30,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
709 AliMedium(21,"Alumina",31,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
0f788f87 710 AliMedium(22,"Water",32,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
efbf94c5 711 AliMedium(23,"Brass",33,0, iSXFLD, sXMGMX, 10., 999., .1, .001, .001);
712 AliMedium(24,"Epoxyfm",34,0, iSXFLD, sXMGMX, 10., 999., .1, .0005, .001);
fe4da5cc 713}
714
407ff276 715void AliTPC::GenerNoise(Int_t tablesize)
716{
717 //
718 //Generate table with noise
719 //
720 if (fTPCParam==0) {
721 // error message
722 fNoiseDepth=0;
723 return;
724 }
725 if (fNoiseTable) delete[] fNoiseTable;
726 fNoiseTable = new Float_t[tablesize];
727 fNoiseDepth = tablesize;
728 fCurrentNoise =0; //!index of the noise in the noise table
729
730 Float_t norm = fTPCParam->GetNoise()*fTPCParam->GetNoiseNormFac();
731 for (Int_t i=0;i<tablesize;i++) fNoiseTable[i]= gRandom->Gaus(0,norm);
732}
733
734Float_t AliTPC::GetNoise()
735{
736 // get noise from table
737 // if ((fCurrentNoise%10)==0)
738 // fCurrentNoise= gRandom->Rndm()*fNoiseDepth;
739 if (fCurrentNoise>=fNoiseDepth) fCurrentNoise=0;
740 return fNoiseTable[fCurrentNoise++];
741 //gRandom->Gaus(0, fTPCParam->GetNoise()*fTPCParam->GetNoiseNormFac());
742}
743
744
9bdd974b 745Bool_t AliTPC::IsSectorActive(Int_t sec) const
792bb11c 746{
747 //
748 // check if the sector is active
749 if (!fActiveSectors) return kTRUE;
750 else return fActiveSectors[sec];
751}
752
753void AliTPC::SetActiveSectors(Int_t * sectors, Int_t n)
754{
755 // activate interesting sectors
88cb7938 756 SetTreeAddress();//just for security
7ed5ec98 757 if (!fActiveSectors) fActiveSectors = new Bool_t[fTPCParam->GetNSector()];
792bb11c 758 for (Int_t i=0;i<fTPCParam->GetNSector();i++) fActiveSectors[i]=kFALSE;
759 for (Int_t i=0;i<n;i++)
760 if ((sectors[i]>=0) && sectors[i]<fTPCParam->GetNSector()) fActiveSectors[sectors[i]]=kTRUE;
761
762}
763
12d8d654 764void AliTPC::SetActiveSectors(Int_t flag)
792bb11c 765{
766 //
767 // activate sectors which were hitted by tracks
768 //loop over tracks
88cb7938 769 SetTreeAddress();//just for security
792bb11c 770 if (fHitType==0) return; // if Clones hit - not short volume ID information
7ed5ec98 771 if (!fActiveSectors) fActiveSectors = new Bool_t[fTPCParam->GetNSector()];
12d8d654 772 if (flag) {
773 for (Int_t i=0;i<fTPCParam->GetNSector();i++) fActiveSectors[i]=kTRUE;
774 return;
775 }
792bb11c 776 for (Int_t i=0;i<fTPCParam->GetNSector();i++) fActiveSectors[i]=kFALSE;
097d753a 777 //TBranch * branch=0;
cb5b8b21 778 if (fLoader->TreeH() == 0x0)
88cb7938 779 {
8c2b3fd7 780 AliFatal("Can not find TreeH in folder");
88cb7938 781 return;
782 }
097d753a 783 //if (fHitType>1) branch = fLoader->TreeH()->GetBranch("TPC2");
784 if (fHitType>1) fLoader->TreeH()->GetBranch("TPC2");
785 //else branch = fLoader->TreeH()->GetBranch("TPC");
786 else fLoader->TreeH()->GetBranch("TPC");
cb5b8b21 787 Stat_t ntracks = fLoader->TreeH()->GetEntries();
792bb11c 788 // loop over all hits
7d85e147 789 AliDebug(1,Form("Got %d tracks", (Int_t) ntracks));
88cb7938 790
8c2b3fd7 791 for(Int_t track=0;track<ntracks;track++) {
792bb11c 792 ResetHits();
793 //
794 if (fTrackHits && fHitType&4) {
cb5b8b21 795 TBranch * br1 = fLoader->TreeH()->GetBranch("fVolumes");
796 TBranch * br2 = fLoader->TreeH()->GetBranch("fNVolumes");
792bb11c 797 br1->GetEvent(track);
798 br2->GetEvent(track);
799 Int_t *volumes = fTrackHits->GetVolumes();
7ed5ec98 800 for (Int_t j=0;j<fTrackHits->GetNVolumes(); j++) {
e8631c7d 801 if (volumes[j]>-1 && volumes[j]<fTPCParam->GetNSector()) {
7ed5ec98 802 fActiveSectors[volumes[j]]=kTRUE;
803 }
804 else {
805 AliError(Form("Volume %d -> sector number %d is outside (0..%d)",
806 j,
807 volumes[j],
808 fTPCParam->GetNSector()));
809 }
810 }
792bb11c 811 }
812
813 //
be5ffbfe 814// if (fTrackHitsOld && fHitType&2) {
cb5b8b21 815// TBranch * br = fLoader->TreeH()->GetBranch("fTrackHitsInfo");
be5ffbfe 816// br->GetEvent(track);
817// AliObjectArray * ar = fTrackHitsOld->fTrackHitsInfo;
818// for (UInt_t j=0;j<ar->GetSize();j++){
819// fActiveSectors[((AliTrackHitsInfo*)ar->At(j))->fVolumeID] =kTRUE;
820// }
821// }
792bb11c 822 }
792bb11c 823}
824
825
826
fe4da5cc 827
0421c3d1 828//_____________________________________________________________________________
829void AliTPC::Digits2Raw()
830{
831// convert digits of the current event to raw data
832
833 static const Int_t kThreshold = 0;
0421c3d1 834
835 fLoader->LoadDigits();
836 TTree* digits = fLoader->TreeD();
837 if (!digits) {
8c2b3fd7 838 AliError("No digits tree");
0421c3d1 839 return;
840 }
841
19bbb61d 842 //
0421c3d1 843 AliSimDigits digarr;
844 AliSimDigits* digrow = &digarr;
845 digits->GetBranch("Segment")->SetAddress(&digrow);
846
847 const char* fileName = "AliTPCDDL.dat";
848 AliTPCBuffer* buffer = new AliTPCBuffer(fileName);
849 //Verbose level
850 // 0: Silent
851 // 1: cout messages
852 // 2: txt files with digits
853 //BE CAREFUL, verbose level 2 MUST be used only for debugging and
854 //it is highly suggested to use this mode only for debugging digits files
855 //reasonably small, because otherwise the size of the txt files can reach
856 //quickly several MB wasting time and disk space.
857 buffer->SetVerbose(0);
858
859 Int_t nEntries = Int_t(digits->GetEntries());
860 Int_t previousSector = -1;
861 Int_t subSector = 0;
862 for (Int_t i = 0; i < nEntries; i++) {
863 digits->GetEntry(i);
864 Int_t sector, row;
865 fTPCParam->AdjustSectorRow(digarr.GetID(), sector, row);
866 if(previousSector != sector) {
867 subSector = 0;
868 previousSector = sector;
869 }
870
871 if (sector < 36) { //inner sector [0;35]
872 if (row != 30) {
873 //the whole row is written into the output file
874 buffer->WriteRowBinary(kThreshold, digrow, 0, 0, 0,
875 sector, subSector, row);
876 } else {
877 //only the pads in the range [37;48] are written into the output file
878 buffer->WriteRowBinary(kThreshold, digrow, 37, 48, 1,
879 sector, subSector, row);
880 subSector = 1;
881 //only the pads outside the range [37;48] are written into the output file
882 buffer->WriteRowBinary(kThreshold, digrow, 37, 48, 2,
883 sector, subSector, row);
884 }//end else
885
886 } else { //outer sector [36;71]
887 if (row == 54) subSector = 2;
888 if ((row != 27) && (row != 76)) {
889 buffer->WriteRowBinary(kThreshold, digrow, 0, 0, 0,
890 sector, subSector, row);
891 } else if (row == 27) {
8c2b3fd7 892 //only the pads outside the range [43;46] are written into the output file
893 buffer->WriteRowBinary(kThreshold, digrow, 43, 46, 2,
0421c3d1 894 sector, subSector, row);
8c2b3fd7 895 subSector = 1;
896 //only the pads in the range [43;46] are written into the output file
897 buffer->WriteRowBinary(kThreshold, digrow, 43, 46, 1,
0421c3d1 898 sector, subSector, row);
899 } else if (row == 76) {
8c2b3fd7 900 //only the pads outside the range [33;88] are written into the output file
901 buffer->WriteRowBinary(kThreshold, digrow, 33, 88, 2,
902 sector, subSector, row);
903 subSector = 3;
904 //only the pads in the range [33;88] are written into the output file
905 buffer->WriteRowBinary(kThreshold, digrow, 33, 88, 1,
0421c3d1 906 sector, subSector, row);
907 }
908 }//end else
909 }//end for
910
911 delete buffer;
912 fLoader->UnloadDigits();
913
914 AliTPCDDLRawData rawWriter;
915 rawWriter.SetVerbose(0);
916
917 rawWriter.RawData(fileName);
918 gSystem->Unlink(fileName);
919
0421c3d1 920}
921
922
bc807150 923//_____________________________________________________________________________
924Bool_t AliTPC::Raw2SDigits(AliRawReader* rawReader){
925 // Converts the TPC raw data into summable digits
926 // The method is used for merging simulated and
927 // real data events
928 if (fLoader->TreeS() == 0x0 ) {
929 fLoader->MakeTree("S");
930 }
931
932 if(fDefaults == 0) SetDefaults(); // check if the parameters are set
933
934 //setup TPCDigitsArray
935 if(GetDigitsArray()) delete GetDigitsArray();
936
937 AliTPCDigitsArray *arr = new AliTPCDigitsArray;
938 arr->SetClass("AliSimDigits");
939 arr->Setup(fTPCParam);
940 arr->MakeTree(fLoader->TreeS());
941
942 SetDigitsArray(arr);
943
944 // set zero suppression to "0"
945 fTPCParam->SetZeroSup(0);
946
947 // Loop over sectors
d899e254 948 const Int_t kmaxTime = fTPCParam->GetMaxTBin();
bc807150 949 const Int_t kNIS = fTPCParam->GetNInnerSector();
950 const Int_t kNOS = fTPCParam->GetNOuterSector();
951 const Int_t kNS = kNIS + kNOS;
952
dbfbf54e 953 // Setup storage
954 AliTPCROC * roc = AliTPCROC::Instance();
955 Int_t nRowsMax = roc->GetNRows(roc->GetNSector()-1);
956 Int_t nPadsMax = roc->GetNPads(roc->GetNSector()-1,nRowsMax-1);
957 Short_t** allBins = new Short_t*[nRowsMax];
958 for (Int_t iRow = 0; iRow < nRowsMax; iRow++) {
959 Int_t maxBin = kmaxTime*nPadsMax;
960 allBins[iRow] = new Short_t[maxBin];
961 memset(allBins[iRow],0,sizeof(Short_t)*maxBin);
962 }
963
bc807150 964 for(Int_t iSector = 0; iSector < kNS; iSector++) {
965
966 Int_t nRows = fTPCParam->GetNRow(iSector);
967 Int_t nDDLs = 0, indexDDL = 0;
968 if (iSector < kNIS) {
969 nDDLs = 2;
970 indexDDL = iSector * 2;
971 }
972 else {
973 nDDLs = 4;
974 indexDDL = (iSector-kNIS) * 4 + kNIS * 2;
975 }
976
dbfbf54e 977 // Load the raw data for corresponding DDLs
bc807150 978 rawReader->Reset();
dbfbf54e 979
980 AliTPCAltroMapping** mapping =AliTPCcalibDB::Instance()->GetMapping();
981 AliTPCRawStreamV3 input(rawReader,(AliAltroMapping**)mapping);
bc807150 982 rawReader->Select("TPC",indexDDL,indexDDL+nDDLs-1);
983
dbfbf54e 984 // Clean storage
985 for (Int_t iRow = 0; iRow < nRowsMax; iRow++) {
986 Int_t maxBin = kmaxTime*nPadsMax;
bc807150 987 memset(allBins[iRow],0,sizeof(Short_t)*maxBin);
988 }
989
990 // Begin loop over altro data
dbfbf54e 991 while (input.NextDDL()) {
bc807150 992
993 if (input.GetSector() != iSector)
994 AliFatal(Form("Sector index mismatch ! Expected (%d), but got (%d) !",iSector,input.GetSector()));
995
dbfbf54e 996 //loop over pads
997 while ( input.NextChannel() ) {
998
999 Int_t iRow = input.GetRow();
1000 if (iRow < 0 || iRow >= nRows)
1001 AliFatal(Form("Pad-row index (%d) outside the range (%d -> %d) !",
1002 iRow, 0, nRows -1));
1003 Int_t iPad = input.GetPad();
1004
1005 Int_t maxPad = fTPCParam->GetNPads(iSector,iRow);
1006
1007 if (iPad < 0 || iPad >= maxPad)
1008 AliFatal(Form("Pad index (%d) outside the range (%d -> %d) !",
1009 iPad, 0, maxPad -1));
1010
1011 //loop over bunches
1012 while ( input.NextBunch() ){
1013 Int_t startTbin = (Int_t)input.GetStartTimeBin();
1014 Int_t bunchlength = (Int_t)input.GetBunchLength();
1015 const UShort_t *sig = input.GetSignals();
1016 for (Int_t iTime = 0; iTime<bunchlength; iTime++){
1017 Int_t iTimeBin=startTbin-iTime;
1018 if ( iTimeBin < 0 || iTimeBin >= kmaxTime) {
1019 continue;
1020 //AliFatal(Form("Timebin index (%d) outside the range (%d -> %d) !",
1021 // iTimeBin, 0, kmaxTime -1));
1022 }
1023
1024 Int_t maxBin = kmaxTime*maxPad;
1025 if (((iPad*kmaxTime+iTimeBin) >= maxBin) ||
1026 ((iPad*kmaxTime+iTimeBin) < 0))
1027 AliFatal(Form("Index outside the allowed range"
1028 " Sector=%d Row=%d Pad=%d Timebin=%d"
1029 " (Max.index=%d)",iSector,iRow,iPad,iTimeBin,maxBin));
1030 allBins[iRow][iPad*kmaxTime+iTimeBin] = sig[iTime];
1031 }
1032 }
1033 } // End loop over altro data
1034 }
bc807150 1035
bc807150 1036 // Now fill the digits array
1037 if (fDigitsArray->GetTree()==0) {
1038 AliFatal("Tree not set in fDigitsArray");
1039 }
1040
1041 for (Int_t iRow = 0; iRow < nRows; iRow++) {
1042 AliDigits * dig = fDigitsArray->CreateRow(iSector,iRow);
bc807150 1043 Int_t maxPad = fTPCParam->GetNPads(iSector,iRow);
1044 for(Int_t iPad = 0; iPad < maxPad; iPad++) {
d899e254 1045 for(Int_t iTimeBin = 0; iTimeBin < kmaxTime; iTimeBin++) {
1046 Short_t q = allBins[iRow][iPad*kmaxTime + iTimeBin];
bc807150 1047 if (q <= 0) continue;
1048 q *= 16;
1049 dig->SetDigitFast((Short_t)q,iTimeBin,iPad);
1050 }
1051 }
1052 fDigitsArray->StoreRow(iSector,iRow);
1053 Int_t ndig = dig->GetDigitSize();
1054
1055 AliDebug(10,
1056 Form("*** Sector, row, compressed digits %d %d %d ***\n",
1057 iSector,iRow,ndig));
1058
1059 fDigitsArray->ClearRow(iSector,iRow);
1060
1061 } // end of the sector digitization
bc807150 1062 }
19bbb61d 1063 // get LHC clock phase from the digits tree
13627b46 1064
19bbb61d 1065 TParameter<float> *ph;
13627b46 1066 Float_t phase;
1067 TTree *digtree = fLoader->TreeD();
1068 //
1069 if(digtree){ // if TreeD exists
1070 ph = (TParameter<float>*)digtree->GetUserInfo()->FindObject("lhcphase0");
1071 phase = ph->GetVal();
1072 }
1073 else{ //TreeD does not exist
1074 phase = 0.;
1075 }
19bbb61d 1076 //
1077 // store lhc clock phase in S-digits tree
1078 //
13627b46 1079 fLoader->TreeS()->GetUserInfo()->Add(new TParameter<float>("lhcphase0",phase));
19bbb61d 1080 //
1081 fLoader->WriteSDigits("OVERWRITE");
bc807150 1082
1083 if(GetDigitsArray()) delete GetDigitsArray();
1084 SetDigitsArray(0x0);
1085
dbfbf54e 1086 // cleanup storage
1087 for (Int_t iRow = 0; iRow < nRowsMax; iRow++)
1088 delete [] allBins[iRow];
1089 delete [] allBins;
1090
bc807150 1091 return kTRUE;
1092}
0a61bf9d 1093
85a5290f 1094//______________________________________________________________________
9bdd974b 1095AliDigitizer* AliTPC::CreateDigitizer(AliRunDigitizer* manager) const
85a5290f 1096{
1097 return new AliTPCDigitizer(manager);
1098}
0a61bf9d 1099//__
176aff27 1100void AliTPC::SDigits2Digits2(Int_t /*eventnumber*/)
0a61bf9d 1101{
1102 //create digits from summable digits
407ff276 1103 GenerNoise(500000); //create teble with noise
0a61bf9d 1104
1105 //conect tree with sSDigits
88cb7938 1106 TTree *t = fLoader->TreeS();
1107
8c2b3fd7 1108 if (t == 0x0) {
1109 fLoader->LoadSDigits("READ");
1110 t = fLoader->TreeS();
1111 if (t == 0x0) {
1112 AliError("Can not get input TreeS");
1113 return;
1114 }
1115 }
88cb7938 1116
1117 if (fLoader->TreeD() == 0x0) fLoader->MakeTree("D");
1118
0a61bf9d 1119 AliSimDigits digarr, *dummy=&digarr;
88cb7938 1120 TBranch* sdb = t->GetBranch("Segment");
8c2b3fd7 1121 if (sdb == 0x0) {
1122 AliError("Can not find branch with segments in TreeS.");
1123 return;
1124 }
88cb7938 1125
1126 sdb->SetAddress(&dummy);
1127
0a61bf9d 1128 Stat_t nentries = t->GetEntries();
1129
5f16d237 1130 // set zero suppression
1131
1132 fTPCParam->SetZeroSup(2);
1133
1134 // get zero suppression
1135
1136 Int_t zerosup = fTPCParam->GetZeroSup();
1137
1138 //make tree with digits
1139
0a61bf9d 1140 AliTPCDigitsArray *arr = new AliTPCDigitsArray;
1141 arr->SetClass("AliSimDigits");
1142 arr->Setup(fTPCParam);
88cb7938 1143 arr->MakeTree(fLoader->TreeD());
0a61bf9d 1144
88cb7938 1145 AliTPCParam * par = fTPCParam;
5f16d237 1146
0a61bf9d 1147 //Loop over segments of the TPC
5f16d237 1148
0a61bf9d 1149 for (Int_t n=0; n<nentries; n++) {
1150 t->GetEvent(n);
1151 Int_t sec, row;
1152 if (!par->AdjustSectorRow(digarr.GetID(),sec,row)) {
8c2b3fd7 1153 AliWarning(Form("Invalid segment ID ! %d",digarr.GetID()));
0a61bf9d 1154 continue;
1155 }
8c2b3fd7 1156 if (!IsSectorActive(sec)) continue;
1157
0a61bf9d 1158 AliSimDigits * digrow =(AliSimDigits*) arr->CreateRow(sec,row);
1159 Int_t nrows = digrow->GetNRows();
1160 Int_t ncols = digrow->GetNCols();
1161
1162 digrow->ExpandBuffer();
1163 digarr.ExpandBuffer();
1164 digrow->ExpandTrackBuffer();
1165 digarr.ExpandTrackBuffer();
1166
5f16d237 1167
407ff276 1168 Short_t * pamp0 = digarr.GetDigits();
1169 Int_t * ptracks0 = digarr.GetTracks();
1170 Short_t * pamp1 = digrow->GetDigits();
1171 Int_t * ptracks1 = digrow->GetTracks();
1172 Int_t nelems =nrows*ncols;
e93a083a 1173 Int_t saturation = fTPCParam->GetADCSat() - 1;
407ff276 1174 //use internal structure of the AliDigits - for speed reason
1175 //if you cahnge implementation
1176 //of the Alidigits - it must be rewriten -
1177 for (Int_t i= 0; i<nelems; i++){
407ff276 1178 Float_t q = TMath::Nint(Float_t(*pamp0)/16.+GetNoise());
1179 if (q>zerosup){
1180 if (q>saturation) q=saturation;
1181 *pamp1=(Short_t)q;
8c2b3fd7 1182
407ff276 1183 ptracks1[0]=ptracks0[0];
1184 ptracks1[nelems]=ptracks0[nelems];
1185 ptracks1[2*nelems]=ptracks0[2*nelems];
1186 }
1187 pamp0++;
1188 pamp1++;
1189 ptracks0++;
1190 ptracks1++;
1191 }
5f16d237 1192
5f16d237 1193 arr->StoreRow(sec,row);
1194 arr->ClearRow(sec,row);
5f16d237 1195 }
0a61bf9d 1196
0a61bf9d 1197
5f16d237 1198 //write results
88cb7938 1199 fLoader->WriteDigits("OVERWRITE");
5f16d237 1200
88cb7938 1201 delete arr;
afc42102 1202}
1203//__________________________________________________________________
1204void AliTPC::SetDefaults(){
9bdd974b 1205 //
1206 // setting the defaults
1207 //
afc42102 1208
afc42102 1209 // Set response functions
1210
88cb7938 1211 //
024a7e64 1212 AliRunLoader* rl = (AliRunLoader*)fLoader->GetEventFolder()->FindObject(AliRunLoader::GetRunLoaderName());
88cb7938 1213 rl->CdGAFile();
097d753a 1214 //AliTPCParamSR *param=(AliTPCParamSR*)gDirectory->Get("75x40_100x60");
1215 gDirectory->Get("75x40_100x60");
1216 AliTPCParamSR *param = (AliTPCParamSR*)AliTPCcalibDB::Instance()->GetParameters();
de0e19ab 1217 if(!param){
1218 AliFatal("No TPC parameters found");
1219 }
db2fdcfb 1220 if (!param->IsGeoRead()){
1221 //
1222 // read transformation matrices for gGeoManager
1223 //
1224 param->ReadGeoMatrices();
1225 }
de0e19ab 1226
7a09f434 1227
1228
2ab0c725 1229 AliTPCPRF2D * prfinner = new AliTPCPRF2D;
f03e3423 1230 AliTPCPRF2D * prfouter1 = new AliTPCPRF2D;
1231 AliTPCPRF2D * prfouter2 = new AliTPCPRF2D;
bfb1cfbd 1232
afc42102 1233
bfb1cfbd 1234 //AliTPCRF1D * rf = new AliTPCRF1D(kTRUE);
1235 //rf->SetGauss(param->GetZSigma(),param->GetZWidth(),1.);
1236 //rf->SetOffset(3*param->GetZSigma());
1237 //rf->Update();
1238 //
1239 // Use gamma 4
1240 //
1241 char strgamma4[1000];
04c5c48d 1242 sprintf(strgamma4,"AliTPCRF1D::Gamma4((x-0.135+%f)*%f,55,160)",3*param->GetZSigma(), 1000000000*param->GetTSample()/param->GetZWidth());
bfb1cfbd 1243
1244 TF1 * fgamma4 = new TF1("fgamma4",strgamma4, -1,1);
1245 AliTPCRF1D * rf = new AliTPCRF1D(kTRUE,1000);
1246 rf->SetParam(fgamma4,param->GetZWidth(), 1,0.2);
1247 rf->SetOffset(3*param->GetZSigma());
1248 rf->Update();
1249
afc42102 1250 TDirectory *savedir=gDirectory;
2ab0c725 1251 TFile *f=TFile::Open("$ALICE_ROOT/TPC/AliTPCprf2d.root");
8c2b3fd7 1252 if (!f->IsOpen())
1253 AliFatal("Can't open $ALICE_ROOT/TPC/AliTPCprf2d.root !");
2a336e15 1254
1255 TString s;
2ab0c725 1256 prfinner->Read("prf_07504_Gati_056068_d02");
2a336e15 1257 //PH Set different names
1258 s=prfinner->GetGRF()->GetName();
1259 s+="in";
1260 prfinner->GetGRF()->SetName(s.Data());
1261
f03e3423 1262 prfouter1->Read("prf_10006_Gati_047051_d03");
2a336e15 1263 s=prfouter1->GetGRF()->GetName();
1264 s+="out1";
1265 prfouter1->GetGRF()->SetName(s.Data());
1266
f03e3423 1267 prfouter2->Read("prf_15006_Gati_047051_d03");
2a336e15 1268 s=prfouter2->GetGRF()->GetName();
1269 s+="out2";
1270 prfouter2->GetGRF()->SetName(s.Data());
1271
2ab0c725 1272 f->Close();
afc42102 1273 savedir->cd();
1274
2ab0c725 1275 param->SetInnerPRF(prfinner);
f03e3423 1276 param->SetOuter1PRF(prfouter1);
1277 param->SetOuter2PRF(prfouter2);
2ab0c725 1278 param->SetTimeRF(rf);
1279
afc42102 1280 // set fTPCParam
1281
2ab0c725 1282 SetParam(param);
1283
afc42102 1284
1285 fDefaults = 1;
1286
1287}
1288//__________________________________________________________________
85a5290f 1289void AliTPC::Hits2Digits()
1290{
9bdd974b 1291 //
1292 // creates digits from hits
1293 //
506e60a6 1294 if (!fTPCParam->IsGeoRead()){
1295 //
1296 // read transformation matrices for gGeoManager
1297 //
1298 fTPCParam->ReadGeoMatrices();
1299 }
9bdd974b 1300
85a5290f 1301 fLoader->LoadHits("read");
1302 fLoader->LoadDigits("recreate");
1303 AliRunLoader* runLoader = fLoader->GetRunLoader();
1304
1305 for (Int_t iEvent = 0; iEvent < runLoader->GetNumberOfEvents(); iEvent++) {
7ed5ec98 1306 //PH runLoader->GetEvent(iEvent);
85a5290f 1307 Hits2Digits(iEvent);
1308 }
1309
1310 fLoader->UnloadHits();
1311 fLoader->UnloadDigits();
1312}
1313//__________________________________________________________________
afc42102 1314void AliTPC::Hits2Digits(Int_t eventnumber)
1315{
1316 //----------------------------------------------------
1317 // Loop over all sectors for a single event
1318 //----------------------------------------------------
024a7e64 1319 AliRunLoader* rl = (AliRunLoader*)fLoader->GetEventFolder()->FindObject(AliRunLoader::GetRunLoaderName());
88cb7938 1320 rl->GetEvent(eventnumber);
6db60b71 1321 SetActiveSectors();
8c2b3fd7 1322 if (fLoader->TreeH() == 0x0) {
1323 if(fLoader->LoadHits()) {
1324 AliError("Can not load hits.");
1325 }
1326 }
88cb7938 1327 SetTreeAddress();
1328
8c2b3fd7 1329 if (fLoader->TreeD() == 0x0 ) {
1330 fLoader->MakeTree("D");
1331 if (fLoader->TreeD() == 0x0 ) {
1332 AliError("Can not get TreeD");
1333 return;
1334 }
1335 }
afc42102 1336
1337 if(fDefaults == 0) SetDefaults(); // check if the parameters are set
407ff276 1338 GenerNoise(500000); //create teble with noise
2ab0c725 1339
1340 //setup TPCDigitsArray
afc42102 1341
1342 if(GetDigitsArray()) delete GetDigitsArray();
8c2b3fd7 1343
2ab0c725 1344 AliTPCDigitsArray *arr = new AliTPCDigitsArray;
1345 arr->SetClass("AliSimDigits");
afc42102 1346 arr->Setup(fTPCParam);
88cb7938 1347
1348 arr->MakeTree(fLoader->TreeD());
2ab0c725 1349 SetDigitsArray(arr);
1350
afc42102 1351 fDigitsSwitch=0; // standard digits
f546a4b4 1352 // here LHC clock phase
1353 Float_t lhcph = 0.;
1354 switch (fLHCclockPhaseSw){
1355 case 0:
1356 // no phase
1357 lhcph=0.;
1358 break;
1359 case 1:
1360 // random phase
1361 lhcph = (Int_t)(gRandom->Rndm()/0.25);
1362 break;
1363 case 2:
1364 lhcph=0.;
1365 // not implemented yet
1366 break;
1367 }
1368 // adding phase to the TreeD user info
1369 fLoader->TreeD()->GetUserInfo()->Add(new TParameter<float>("lhcphase0",lhcph));
1370 //
8c2b3fd7 1371 for(Int_t isec=0;isec<fTPCParam->GetNSector();isec++)
1372 if (IsSectorActive(isec)) {
7d85e147 1373 AliDebug(1,Form("Hits2Digits: Sector %d is active.",isec));
8c2b3fd7 1374 Hits2DigitsSector(isec);
1375 }
1376 else {
7d85e147 1377 AliDebug(1,Form("Hits2Digits: Sector %d is NOT active.",isec));
8c2b3fd7 1378 }
1379
88cb7938 1380 fLoader->WriteDigits("OVERWRITE");
f2a509af 1381
1382//this line prevents the crash in the similar one
1383//on the beginning of this method
1384//destructor attempts to reset the tree, which is deleted by the loader
1385//need to be redesign
8c2b3fd7 1386 if(GetDigitsArray()) delete GetDigitsArray();
1387 SetDigitsArray(0x0);
f2a509af 1388
8c555625 1389}
1390
f8cf550c 1391//__________________________________________________________________
0a61bf9d 1392void AliTPC::Hits2SDigits2(Int_t eventnumber)
f8cf550c 1393{
1394
1395 //-----------------------------------------------------------
1396 // summable digits - 16 bit "ADC", no noise, no saturation
1397 //-----------------------------------------------------------
1398
8c2b3fd7 1399 //----------------------------------------------------
1400 // Loop over all sectors for a single event
1401 //----------------------------------------------------
88cb7938 1402
1403 AliRunLoader* rl = fLoader->GetRunLoader();
1404
1405 rl->GetEvent(eventnumber);
8c2b3fd7 1406 if (fLoader->TreeH() == 0x0) {
1407 if(fLoader->LoadHits()) {
1408 AliError("Can not load hits.");
1409 return;
1410 }
1411 }
88cb7938 1412 SetTreeAddress();
f8cf550c 1413
afc42102 1414
8c2b3fd7 1415 if (fLoader->TreeS() == 0x0 ) {
1416 fLoader->MakeTree("S");
1417 }
88cb7938 1418
afc42102 1419 if(fDefaults == 0) SetDefaults();
88cb7938 1420
407ff276 1421 GenerNoise(500000); //create table with noise
afc42102 1422 //setup TPCDigitsArray
1423
1424 if(GetDigitsArray()) delete GetDigitsArray();
1425
88cb7938 1426
afc42102 1427 AliTPCDigitsArray *arr = new AliTPCDigitsArray;
1428 arr->SetClass("AliSimDigits");
1429 arr->Setup(fTPCParam);
88cb7938 1430 arr->MakeTree(fLoader->TreeS());
1431
afc42102 1432 SetDigitsArray(arr);
1433
afc42102 1434 fDigitsSwitch=1; // summable digits
5f16d237 1435
1436 // set zero suppression to "0"
f546a4b4 1437 // here LHC clock phase
1438 Float_t lhcph = 0.;
1439 switch (fLHCclockPhaseSw){
1440 case 0:
1441 // no phase
1442 lhcph=0.;
1443 break;
1444 case 1:
1445 // random phase
1446 lhcph = (Int_t)(gRandom->Rndm()/0.25);
1447 break;
1448 case 2:
1449 lhcph=0.;
1450 // not implemented yet
1451 break;
1452 }
1453 // adding phase to the TreeS user info
1454
1455 fLoader->TreeS()->GetUserInfo()->Add(new TParameter<float>("lhcphase0",lhcph));
5f16d237 1456
1457 fTPCParam->SetZeroSup(0);
f8cf550c 1458
8c2b3fd7 1459 for(Int_t isec=0;isec<fTPCParam->GetNSector();isec++)
1460 if (IsSectorActive(isec)) {
1461 Hits2DigitsSector(isec);
1462 }
88cb7938 1463
8c2b3fd7 1464 fLoader->WriteSDigits("OVERWRITE");
88cb7938 1465
1466//this line prevents the crash in the similar one
1467//on the beginning of this method
1468//destructor attempts to reset the tree, which is deleted by the loader
1469//need to be redesign
8c2b3fd7 1470 if(GetDigitsArray()) delete GetDigitsArray();
1471 SetDigitsArray(0x0);
f8cf550c 1472}
0a61bf9d 1473//__________________________________________________________________
88cb7938 1474
0a61bf9d 1475void AliTPC::Hits2SDigits()
1476{
1477
1478 //-----------------------------------------------------------
1479 // summable digits - 16 bit "ADC", no noise, no saturation
1480 //-----------------------------------------------------------
1481
506e60a6 1482 if (!fTPCParam->IsGeoRead()){
1483 //
1484 // read transformation matrices for gGeoManager
1485 //
1486 fTPCParam->ReadGeoMatrices();
1487 }
1488
85a5290f 1489 fLoader->LoadHits("read");
1490 fLoader->LoadSDigits("recreate");
1491 AliRunLoader* runLoader = fLoader->GetRunLoader();
0a61bf9d 1492
85a5290f 1493 for (Int_t iEvent = 0; iEvent < runLoader->GetNumberOfEvents(); iEvent++) {
1494 runLoader->GetEvent(iEvent);
1495 SetTreeAddress();
1496 SetActiveSectors();
1497 Hits2SDigits2(iEvent);
1498 }
f546a4b4 1499
85a5290f 1500 fLoader->UnloadHits();
1501 fLoader->UnloadSDigits();
23effa8e 1502 if (fDebugStreamer) {
1503 delete fDebugStreamer;
1504 fDebugStreamer=0;
1505 }
0a61bf9d 1506}
fe4da5cc 1507//_____________________________________________________________________________
88cb7938 1508
8c555625 1509void AliTPC::Hits2DigitsSector(Int_t isec)
fe4da5cc 1510{
8c555625 1511 //-------------------------------------------------------------------
fe4da5cc 1512 // TPC conversion from hits to digits.
8c555625 1513 //-------------------------------------------------------------------
1514
1515 //-----------------------------------------------------------------
1516 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
1517 //-----------------------------------------------------------------
1518
fe4da5cc 1519 //-------------------------------------------------------
8c555625 1520 // Get the access to the track hits
fe4da5cc 1521 //-------------------------------------------------------
8c555625 1522
afc42102 1523 // check if the parameters are set - important if one calls this method
1524 // directly, not from the Hits2Digits
1525
1526 if(fDefaults == 0) SetDefaults();
cc80f89e 1527
cb5b8b21 1528 TTree *tH = fLoader->TreeH(); // pointer to the hits tree
8c2b3fd7 1529 if (tH == 0x0) {
1530 AliFatal("Can not find TreeH in folder");
1531 return;
1532 }
88cb7938 1533
73042f01 1534 Stat_t ntracks = tH->GetEntries();
8c555625 1535
8c2b3fd7 1536 Int_t nrows =fTPCParam->GetNRow(isec);
8c555625 1537
606d6545 1538 TObjArray **row=new TObjArray* [nrows+2]; // 2 extra rows for cross talk
1539 for(Int_t j=0;j<nrows+2;j++) row[j]=0;
fe4da5cc 1540
8c2b3fd7 1541 MakeSector(isec,nrows,tH,ntracks,row);
8c555625 1542
8c2b3fd7 1543 //--------------------------------------------------------
1544 // Digitize this sector, row by row
1545 // row[i] is the pointer to the TObjArray of TVectors,
1546 // each one containing electrons accepted on this
1547 // row, assigned into tracks
1548 //--------------------------------------------------------
8c555625 1549
8c2b3fd7 1550 Int_t i;
8c555625 1551
8c2b3fd7 1552 if (fDigitsArray->GetTree()==0) {
1553 AliFatal("Tree not set in fDigitsArray");
1554 }
8c555625 1555
8c2b3fd7 1556 for (i=0;i<nrows;i++){
1557
1558 AliDigits * dig = fDigitsArray->CreateRow(isec,i);
8c555625 1559
8c2b3fd7 1560 DigitizeRow(i,isec,row);
8c555625 1561
8c2b3fd7 1562 fDigitsArray->StoreRow(isec,i);
8c555625 1563
8c2b3fd7 1564 Int_t ndig = dig->GetDigitSize();
88cb7938 1565
8c2b3fd7 1566 AliDebug(10,
1567 Form("*** Sector, row, compressed digits %d %d %d ***\n",
1568 isec,i,ndig));
792bb11c 1569
8c2b3fd7 1570 fDigitsArray->ClearRow(isec,i);
8c555625 1571
cc80f89e 1572
8c2b3fd7 1573 } // end of the sector digitization
8c555625 1574
8c2b3fd7 1575 for(i=0;i<nrows+2;i++){
1576 row[i]->Delete();
1577 delete row[i];
1578 }
cc80f89e 1579
8c2b3fd7 1580 delete [] row; // delete the array of pointers to TObjArray-s
8c555625 1581
8c555625 1582
cc80f89e 1583} // end of Hits2DigitsSector
8c555625 1584
8c555625 1585
8c555625 1586//_____________________________________________________________________________
cc80f89e 1587void AliTPC::DigitizeRow(Int_t irow,Int_t isec,TObjArray **rows)
8c555625 1588{
1589 //-----------------------------------------------------------
1590 // Single row digitization, coupling from the neighbouring
1591 // rows taken into account
1592 //-----------------------------------------------------------
1593
1594 //-----------------------------------------------------------------
1595 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
cc80f89e 1596 // Modified: Marian Ivanov GSI Darmstadt, m.ivanov@gsi.de
8c555625 1597 //-----------------------------------------------------------------
1598
8c555625 1599 Float_t zerosup = fTPCParam->GetZeroSup();
28c55807 1600 AliTPCCalPad * gainTPC = AliTPCcalibDB::Instance()->GetDedxGainFactor();
1601 AliTPCCalPad * noiseTPC = AliTPCcalibDB::Instance()->GetPadNoise();
1602 AliTPCCalROC * gainROC = gainTPC->GetCalROC(isec); // pad gains per given sector
1603 AliTPCCalROC * noiseROC = noiseTPC->GetCalROC(isec); // noise per given sector
1604
8c2b3fd7 1605
cc80f89e 1606 fCurrentIndex[1]= isec;
8c555625 1607
8c555625 1608
73042f01 1609 Int_t nofPads = fTPCParam->GetNPads(isec,irow);
1610 Int_t nofTbins = fTPCParam->GetMaxTBin();
1611 Int_t indexRange[4];
8c555625 1612 //
1613 // Integrated signal for this row
1614 // and a single track signal
cc80f89e 1615 //
de61d5d5 1616
e8d02863 1617 TMatrixF *m1 = new TMatrixF(0,nofPads,0,nofTbins); // integrated
1618 TMatrixF *m2 = new TMatrixF(0,nofPads,0,nofTbins); // single
8c555625 1619 //
e8d02863 1620 TMatrixF &total = *m1;
8c555625 1621
1622 // Array of pointers to the label-signal list
1623
73042f01 1624 Int_t nofDigits = nofPads*nofTbins; // number of digits for this row
1625 Float_t **pList = new Float_t* [nofDigits];
8c555625 1626
1627 Int_t lp;
cc80f89e 1628 Int_t i1;
73042f01 1629 for(lp=0;lp<nofDigits;lp++)pList[lp]=0; // set all pointers to NULL
8c555625 1630 //
cc80f89e 1631 //calculate signal
1632 //
b584c7dd 1633 Int_t row1=irow;
1634 Int_t row2=irow+2;
cc80f89e 1635 for (Int_t row= row1;row<=row2;row++){
1636 Int_t nTracks= rows[row]->GetEntries();
1637 for (i1=0;i1<nTracks;i1++){
1638 fCurrentIndex[2]= row;
b584c7dd 1639 fCurrentIndex[3]=irow+1;
1640 if (row==irow+1){
cc80f89e 1641 m2->Zero(); // clear single track signal matrix
73042f01 1642 Float_t trackLabel = GetSignal(rows[row],i1,m2,m1,indexRange);
1643 GetList(trackLabel,nofPads,m2,indexRange,pList);
cc80f89e 1644 }
73042f01 1645 else GetSignal(rows[row],i1,0,m1,indexRange);
cc80f89e 1646 }
8c555625 1647 }
cc80f89e 1648
8c555625 1649 Int_t tracks[3];
8c555625 1650
cc80f89e 1651 AliDigits *dig = fDigitsArray->GetRow(isec,irow);
de61d5d5 1652 Int_t gi=-1;
1653 Float_t fzerosup = zerosup+0.5;
1654 for(Int_t it=0;it<nofTbins;it++){
de61d5d5 1655 for(Int_t ip=0;ip<nofPads;ip++){
1656 gi++;
8c2b3fd7 1657 Float_t q=total(ip,it);
28c55807 1658 if(fDigitsSwitch == 0){
1659 Float_t gain = gainROC->GetValue(irow,ip); // get gain for given - pad-row pad
1660 Float_t noisePad = noiseROC->GetValue(irow,ip);
1661 //
1662 q*=gain;
1663 q+=GetNoise()*noisePad;
de61d5d5 1664 if(q <=fzerosup) continue; // do not fill zeros
68771f83 1665 q = TMath::Nint(q);
e93a083a 1666 if(q >= fTPCParam->GetADCSat()) q = fTPCParam->GetADCSat() - 1; // saturation
cc80f89e 1667
f8cf550c 1668 }
1669
1670 else {
8c2b3fd7 1671 if(q <= 0.) continue; // do not fill zeros
1672 if(q>2000.) q=2000.;
1673 q *= 16.;
1674 q = TMath::Nint(q);
f8cf550c 1675 }
8c555625 1676
1677 //
1678 // "real" signal or electronic noise (list = -1)?
1679 //
1680
1681 for(Int_t j1=0;j1<3;j1++){
407ff276 1682 tracks[j1] = (pList[gi]) ?(Int_t)(*(pList[gi]+j1)) : -2;
8c555625 1683 }
1684
cc80f89e 1685//Begin_Html
1686/*
1687 <A NAME="AliDigits"></A>
1688 using of AliDigits object
1689*/
1690//End_Html
1691 dig->SetDigitFast((Short_t)q,it,ip);
8c2b3fd7 1692 if (fDigitsArray->IsSimulated()) {
1693 ((AliSimDigits*)dig)->SetTrackIDFast(tracks[0],it,ip,0);
1694 ((AliSimDigits*)dig)->SetTrackIDFast(tracks[1],it,ip,1);
1695 ((AliSimDigits*)dig)->SetTrackIDFast(tracks[2],it,ip,2);
1696 }
8c555625 1697
1698 } // end of loop over time buckets
1699 } // end of lop over pads
58c45a5e 1700 //
1701 // test
1702 //
1703 //
8c555625 1704
58c45a5e 1705 // glitch filters if normal simulated digits
1706 //
1707 if(!fDigitsSwitch) ((AliSimDigits*)dig)->GlitchFilter();
8c555625 1708 //
1709 // This row has been digitized, delete nonused stuff
1710 //
1711
73042f01 1712 for(lp=0;lp<nofDigits;lp++){
8c555625 1713 if(pList[lp]) delete [] pList[lp];
1714 }
1715
1716 delete [] pList;
1717
1718 delete m1;
1719 delete m2;
8c555625 1720
1721} // end of DigitizeRow
cc80f89e 1722
8c555625 1723//_____________________________________________________________________________
cc80f89e 1724
de61d5d5 1725Float_t AliTPC::GetSignal(TObjArray *p1, Int_t ntr,
e8d02863 1726 TMatrixF *m1, TMatrixF *m2,Int_t *indexRange)
8c555625 1727{
1728
1729 //---------------------------------------------------------------
1730 // Calculates 2-D signal (pad,time) for a single track,
1731 // returns a pointer to the signal matrix and the track label
1732 // No digitization is performed at this level!!!
1733 //---------------------------------------------------------------
1734
1735 //-----------------------------------------------------------------
1736 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
cc80f89e 1737 // Modified: Marian Ivanov
8c555625 1738 //-----------------------------------------------------------------
1739
8c2b3fd7 1740 TVector *tv;
de61d5d5 1741
8c2b3fd7 1742 tv = (TVector*)p1->At(ntr); // pointer to a track
1743 TVector &v = *tv;
8c555625 1744
1745 Float_t label = v(0);
506e60a6 1746 Int_t centralPad = (fTPCParam->GetNPads(fCurrentIndex[1],fCurrentIndex[3]-1))/2;
8c555625 1747
e61fd20d 1748 Int_t nElectrons = (tv->GetNrows()-1)/5;
73042f01 1749 indexRange[0]=9999; // min pad
1750 indexRange[1]=-1; // max pad
1751 indexRange[2]=9999; //min time
1752 indexRange[3]=-1; // max time
8c555625 1753
e8d02863 1754 TMatrixF &signal = *m1;
1755 TMatrixF &total = *m2;
8c555625 1756 //
f546a4b4 1757 // Get LHC clock phase
1758 //
1759 TParameter<float> *ph;
1760 if(fDigitsSwitch){// s-digits
1761 ph = (TParameter<float>*)fLoader->TreeS()->GetUserInfo()->FindObject("lhcphase0");
1762 }
1763 else{ // normal digits
1764 ph = (TParameter<float>*)fLoader->TreeD()->GetUserInfo()->FindObject("lhcphase0");
1765 }
8c555625 1766 // Loop over all electrons
1767 //
8c555625 1768 for(Int_t nel=0; nel<nElectrons; nel++){
e61fd20d 1769 Int_t idx=nel*5;
cc80f89e 1770 Float_t aval = v(idx+4);
1771 Float_t eltoadcfac=aval*fTPCParam->GetTotalNormFac();
e61fd20d 1772 Float_t xyz[4]={v(idx+1),v(idx+2),v(idx+3),v(idx+5)};
f546a4b4 1773 Int_t n = ((AliTPCParamSR*)fTPCParam)->CalcResponseFast(xyz,fCurrentIndex,
1774 fCurrentIndex[3],ph->GetVal());
de61d5d5 1775
1776 Int_t *index = fTPCParam->GetResBin(0);
1777 Float_t *weight = & (fTPCParam->GetResWeight(0));
1778
1779 if (n>0) for (Int_t i =0; i<n; i++){
e30e6a9c 1780 Int_t pad=index[1]+centralPad; //in digit coordinates central pad has coordinate 0
8c2b3fd7 1781
1782 if (pad>=0){
1783 Int_t time=index[2];
1784 Float_t qweight = *(weight)*eltoadcfac;
1785
1786 if (m1!=0) signal(pad,time)+=qweight;
1787 total(pad,time)+=qweight;
1788 if (indexRange[0]>pad) indexRange[0]=pad;
1789 if (indexRange[1]<pad) indexRange[1]=pad;
1790 if (indexRange[2]>time) indexRange[2]=time;
1791 if (indexRange[3]<time) indexRange[3]=time;
1792
1793 index+=3;
1794 weight++;
1795
1796 }
cc80f89e 1797 }
8c555625 1798 } // end of loop over electrons
cc80f89e 1799
8c555625 1800 return label; // returns track label when finished
1801}
1802
1803//_____________________________________________________________________________
e8d02863 1804void AliTPC::GetList(Float_t label,Int_t np,TMatrixF *m,
de61d5d5 1805 Int_t *indexRange, Float_t **pList)
8c555625 1806{
1807 //----------------------------------------------------------------------
1808 // Updates the list of tracks contributing to digits for a given row
1809 //----------------------------------------------------------------------
1810
1811 //-----------------------------------------------------------------
1812 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
1813 //-----------------------------------------------------------------
1814
e8d02863 1815 TMatrixF &signal = *m;
8c555625 1816
1817 // lop over nonzero digits
1818
73042f01 1819 for(Int_t it=indexRange[2];it<indexRange[3]+1;it++){
1820 for(Int_t ip=indexRange[0];ip<indexRange[1]+1;ip++){
8c555625 1821
1822
8c2b3fd7 1823 // accept only the contribution larger than 500 electrons (1/2 s_noise)
921bf71a 1824
8c2b3fd7 1825 if(signal(ip,it)<0.5) continue;
921bf71a 1826
8c2b3fd7 1827 Int_t globalIndex = it*np+ip; // globalIndex starts from 0!
8c555625 1828
8c2b3fd7 1829 if(!pList[globalIndex]){
8c555625 1830
8c2b3fd7 1831 //
1832 // Create new list (6 elements - 3 signals and 3 labels),
1833 //
8c555625 1834
8c2b3fd7 1835 pList[globalIndex] = new Float_t [6];
8c555625 1836
8c2b3fd7 1837 // set list to -1
1838
1839 *pList[globalIndex] = -1.;
1840 *(pList[globalIndex]+1) = -1.;
1841 *(pList[globalIndex]+2) = -1.;
1842 *(pList[globalIndex]+3) = -1.;
1843 *(pList[globalIndex]+4) = -1.;
1844 *(pList[globalIndex]+5) = -1.;
1845
1846 *pList[globalIndex] = label;
1847 *(pList[globalIndex]+3) = signal(ip,it);
1848 }
1849 else {
8c555625 1850
8c2b3fd7 1851 // check the signal magnitude
8c555625 1852
8c2b3fd7 1853 Float_t highest = *(pList[globalIndex]+3);
1854 Float_t middle = *(pList[globalIndex]+4);
1855 Float_t lowest = *(pList[globalIndex]+5);
1856
1857 //
1858 // compare the new signal with already existing list
1859 //
1860
1861 if(signal(ip,it)<lowest) continue; // neglect this track
8c555625 1862
8c2b3fd7 1863 //
8c555625 1864
8c2b3fd7 1865 if (signal(ip,it)>highest){
1866 *(pList[globalIndex]+5) = middle;
1867 *(pList[globalIndex]+4) = highest;
1868 *(pList[globalIndex]+3) = signal(ip,it);
1869
1870 *(pList[globalIndex]+2) = *(pList[globalIndex]+1);
1871 *(pList[globalIndex]+1) = *pList[globalIndex];
1872 *pList[globalIndex] = label;
1873 }
1874 else if (signal(ip,it)>middle){
1875 *(pList[globalIndex]+5) = middle;
1876 *(pList[globalIndex]+4) = signal(ip,it);
1877
1878 *(pList[globalIndex]+2) = *(pList[globalIndex]+1);
1879 *(pList[globalIndex]+1) = label;
1880 }
1881 else{
1882 *(pList[globalIndex]+5) = signal(ip,it);
1883 *(pList[globalIndex]+2) = label;
1884 }
1885 }
1886
8c555625 1887 } // end of loop over pads
1888 } // end of loop over time bins
1889
8c555625 1890}//end of GetList
1891//___________________________________________________________________
1892void AliTPC::MakeSector(Int_t isec,Int_t nrows,TTree *TH,
1893 Stat_t ntracks,TObjArray **row)
1894{
1895
1896 //-----------------------------------------------------------------
1897 // Prepares the sector digitization, creates the vectors of
1898 // tracks for each row of this sector. The track vector
1899 // contains the track label and the position of electrons.
1900 //-----------------------------------------------------------------
1901
79fa3dc8 1902 //
1903 // The trasport of the electrons through TPC drift volume
1904 // Drift (drift velocity + velocity map(not yet implemented)))
1905 // Application of the random processes (diffusion, gas gain)
1906 // Systematic effects (ExB effect in drift volume + ROCs)
1907 //
1908 // Algorithm:
1909 // Loop over primary electrons:
1910 // Creation of the secondary electrons
1911 // Loop over electrons (primary+ secondaries)
1912 // Global coordinate frame:
1913 // 1. Skip electrons if attached
1914 // 2. ExB effect in drift volume
1915 // a.) Simulation calib->GetExB()->CorrectInverse(dxyz0,dxyz1);
1916 // b.) Reconstruction - calib->GetExB()->CorrectInverse(dxyz0,dxyz1);
1917 // 3. Generation of gas gain (Random - Exponential distribution)
1918 // 4. TransportElectron function (diffusion)
1919 //
1920 // 5. Conversion to the local coordinate frame pad-row, pad, timebin
1921 // 6. Apply Time0 shift - AliTPCCalPad class
1922 // a.) Plus sign in simulation
1923 // b.) Minus sign in reconstruction
1924 // end of loop
1925 //
8c555625 1926 //-----------------------------------------------------------------
1927 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
79fa3dc8 1928 // Origin: Marian Ivanov, marian.ivanov@cern.ch
8c555625 1929 //-----------------------------------------------------------------
79fa3dc8 1930 AliTPCcalibDB* const calib=AliTPCcalibDB::Instance();
7bab76cf 1931 if (gAlice){ // Set correctly the magnetic field in the ExB calculation
9ac65c7c 1932 if (!calib->GetExB()){
1933 AliMagF * field = ((AliMagF*)TGeoGlobalMagField::Instance()->GetField());
1934 if (field) {
1935 calib->SetExBField(field);
1936 }
7bab76cf 1937 }
1938 }
8c555625 1939
cc80f89e 1940 Float_t gasgain = fTPCParam->GetGasGain();
8261c673 1941 gasgain = gasgain/fGainFactor;
8c555625 1942 Int_t i;
e61fd20d 1943 Float_t xyz[5];
8c555625 1944
1945 AliTPChit *tpcHit; // pointer to a sigle TPC hit
39c8eb58 1946 //MI change
1947 TBranch * branch=0;
792bb11c 1948 if (fHitType>1) branch = TH->GetBranch("TPC2");
39c8eb58 1949 else branch = TH->GetBranch("TPC");
1950
8c555625 1951
1952 //----------------------------------------------
1953 // Create TObjArray-s, one for each row,
8c2b3fd7 1954 // each TObjArray will store the TVectors
1955 // of electrons, one TVectors per each track.
8c555625 1956 //----------------------------------------------
1957
b584c7dd 1958 Int_t *nofElectrons = new Int_t [nrows+2]; // electron counter for each row
8c2b3fd7 1959 TVector **tracks = new TVector* [nrows+2]; //pointers to the track vectors
de61d5d5 1960
b584c7dd 1961 for(i=0; i<nrows+2; i++){
8c555625 1962 row[i] = new TObjArray;
f74bb6f5 1963 nofElectrons[i]=0;
1964 tracks[i]=0;
8c555625 1965 }
8c555625 1966
37831078 1967
1968
8c555625 1969 //--------------------------------------------------------------------
1970 // Loop over tracks, the "track" contains the full history
1971 //--------------------------------------------------------------------
8c2b3fd7 1972
8c555625 1973 Int_t previousTrack,currentTrack;
1974 previousTrack = -1; // nothing to store so far!
1975
1976 for(Int_t track=0;track<ntracks;track++){
39c8eb58 1977 Bool_t isInSector=kTRUE;
8c555625 1978 ResetHits();
792bb11c 1979 isInSector = TrackInVolume(isec,track);
39c8eb58 1980 if (!isInSector) continue;
1981 //MI change
1982 branch->GetEntry(track); // get next track
8c2b3fd7 1983
39c8eb58 1984 //M.I. changes
8c555625 1985
39c8eb58 1986 tpcHit = (AliTPChit*)FirstHit(-1);
8c555625 1987
1988 //--------------------------------------------------------------
1989 // Loop over hits
1990 //--------------------------------------------------------------
1991
8c555625 1992
39c8eb58 1993 while(tpcHit){
8c555625 1994
1995 Int_t sector=tpcHit->fSector; // sector number
39c8eb58 1996 if(sector != isec){
1997 tpcHit = (AliTPChit*) NextHit();
1998 continue;
1999 }
8c555625 2000
daf14717 2001 // Remove hits which arrive before the TPC opening gate signal
a1ec4d07 2002 if(((fTPCParam->GetZLength(isec)-TMath::Abs(tpcHit->Z()))
daf14717 2003 /fTPCParam->GetDriftV()+tpcHit->Time())<fTPCParam->GetGateDelay()) {
2004 tpcHit = (AliTPChit*) NextHit();
2005 continue;
2006 }
2007
8c2b3fd7 2008 currentTrack = tpcHit->Track(); // track number
39c8eb58 2009
8c2b3fd7 2010 if(currentTrack != previousTrack){
8c555625 2011
8c2b3fd7 2012 // store already filled fTrack
8c555625 2013
8c2b3fd7 2014 for(i=0;i<nrows+2;i++){
2015 if(previousTrack != -1){
2016 if(nofElectrons[i]>0){
2017 TVector &v = *tracks[i];
2018 v(0) = previousTrack;
e61fd20d 2019 tracks[i]->ResizeTo(5*nofElectrons[i]+1); // shrink if necessary
8c2b3fd7 2020 row[i]->Add(tracks[i]);
2021 }
2022 else {
2023 delete tracks[i]; // delete empty TVector
2024 tracks[i]=0;
2025 }
2026 }
2027
2028 nofElectrons[i]=0;
e61fd20d 2029 tracks[i] = new TVector(601); // TVectors for the next fTrack
8c2b3fd7 2030
2031 } // end of loop over rows
8c555625 2032
8c2b3fd7 2033 previousTrack=currentTrack; // update track label
2034 }
8c555625 2035
8c2b3fd7 2036 Int_t qI = (Int_t) (tpcHit->fQ); // energy loss (number of electrons)
8c555625 2037
8c2b3fd7 2038 //---------------------------------------------------
2039 // Calculate the electron attachment probability
2040 //---------------------------------------------------
8c555625 2041
cc80f89e 2042
a1ec4d07 2043 Float_t time = 1.e6*(fTPCParam->GetZLength(isec)-TMath::Abs(tpcHit->Z()))
8c2b3fd7 2044 /fTPCParam->GetDriftV();
2045 // in microseconds!
2046 Float_t attProb = fTPCParam->GetAttCoef()*
2047 fTPCParam->GetOxyCont()*time; // fraction!
8c555625 2048
8c2b3fd7 2049 //-----------------------------------------------
2050 // Loop over electrons
2051 //-----------------------------------------------
2052 Int_t index[3];
2053 index[1]=isec;
2054 for(Int_t nel=0;nel<qI;nel++){
2055 // skip if electron lost due to the attachment
2056 if((gRandom->Rndm(0)) < attProb) continue; // electron lost!
79fa3dc8 2057
2058 //
2059 // ExB effect
2060 //
2061 Double_t dxyz0[3],dxyz1[3];
2062 dxyz0[0]=tpcHit->X();
2063 dxyz0[1]=tpcHit->Y();
2064 dxyz0[2]=tpcHit->Z();
2065 if (calib->GetExB()){
2066 calib->GetExB()->CorrectInverse(dxyz0,dxyz1);
2067 }else{
2068 AliError("Not valid ExB calibration");
2069 dxyz1[0]=tpcHit->X();
2070 dxyz1[1]=tpcHit->Y();
2071 dxyz1[2]=tpcHit->Z();
2072 }
2073 xyz[0]=dxyz1[0];
2074 xyz[1]=dxyz1[1];
2075 xyz[2]=dxyz1[2];
2076 //
2077 //
8c2b3fd7 2078 //
2079 // protection for the nonphysical avalanche size (10**6 maximum)
2080 //
2081 Double_t rn=TMath::Max(gRandom->Rndm(0),1.93e-22);
2082 xyz[3]= (Float_t) (-gasgain*TMath::Log(rn));
2083 index[0]=1;
79fa3dc8 2084
8c2b3fd7 2085 TransportElectron(xyz,index);
2086 Int_t rowNumber;
23effa8e 2087 Int_t padrow = fTPCParam->GetPadRow(xyz,index);
79fa3dc8 2088 //
2089 // Add Time0 correction due unisochronity
2090 // xyz[0] - pad row coordinate
2091 // xyz[1] - pad coordinate
2092 // xyz[2] - is in now time bin coordinate system
2093 Float_t correction =0;
2094 if (calib->GetPadTime0()){
23effa8e 2095 if (!calib->GetPadTime0()->GetCalROC(isec)) continue;
2096 Int_t npads = fTPCParam->GetNPads(isec,padrow);
17807087 2097 // Int_t pad = TMath::Nint(xyz[1]+fTPCParam->GetNPads(isec,TMath::Nint(xyz[0]))*0.5);
23effa8e 2098 // pad numbering from -npads/2 .. npads/2-1
2099 Int_t pad = TMath::Nint(xyz[1]+npads/2);
17807087 2100 if (pad<0) pad=0;
2101 if (pad>=npads) pad=npads-1;
23effa8e 2102 correction = calib->GetPadTime0()->GetCalROC(isec)->GetValue(padrow,pad);
2103 // printf("%d\t%d\t%d\t%f\n",isec,padrow,pad,correction);
2104 if (fDebugStreamer){
2105 (*fDebugStreamer)<<"Time0"<<
2106 "isec="<<isec<<
2107 "padrow="<<padrow<<
2108 "pad="<<pad<<
2109 "x0="<<xyz[0]<<
2110 "x1="<<xyz[1]<<
2111 "x2="<<xyz[2]<<
2112 "hit.="<<tpcHit<<
2113 "cor="<<correction<<
2114 "\n";
2115 }
79fa3dc8 2116 }
2117 xyz[2]+=correction;
c2940e77 2118 xyz[2]+=fTPCParam->GetNTBinsL1(); // adding Level 1 time bin offset
79fa3dc8 2119 //
e61fd20d 2120 // Electron track time (for pileup simulation)
c2940e77 2121 xyz[2]+=tpcHit->Time()/fTPCParam->GetTSample(); // adding time of flight
2122 xyz[4] =0;
2123
2124 //
8c2b3fd7 2125 // row 0 - cross talk from the innermost row
2126 // row fNRow+1 cross talk from the outermost row
2127 rowNumber = index[2]+1;
2128 //transform position to local digit coordinates
2129 //relative to nearest pad row
2130 if ((rowNumber<0)||rowNumber>fTPCParam->GetNRow(isec)+1) continue;
4555e0d2 2131 /* Float_t x1,y1;
8c2b3fd7 2132 if (isec <fTPCParam->GetNInnerSector()) {
2133 x1 = xyz[1]*fTPCParam->GetInnerPadPitchWidth();
2134 y1 = fTPCParam->GetYInner(rowNumber);
2135 }
2136 else{
2137 x1=xyz[1]*fTPCParam->GetOuterPadPitchWidth();
2138 y1 = fTPCParam->GetYOuter(rowNumber);
2139 }
2140 // gain inefficiency at the wires edges - linear
2141 x1=TMath::Abs(x1);
2142 y1-=1.;
4555e0d2 2143 if(x1>y1) xyz[3]*=TMath::Max(1.e-6,(y1-x1+1.)); */
8c2b3fd7 2144
2145 nofElectrons[rowNumber]++;
2146 //----------------------------------
2147 // Expand vector if necessary
2148 //----------------------------------
2149 if(nofElectrons[rowNumber]>120){
2150 Int_t range = tracks[rowNumber]->GetNrows();
e61fd20d 2151 if((nofElectrons[rowNumber])>(range-1)/5){
8c2b3fd7 2152
e61fd20d 2153 tracks[rowNumber]->ResizeTo(range+500); // Add 100 electrons
fe4da5cc 2154 }
8c2b3fd7 2155 }
2156
2157 TVector &v = *tracks[rowNumber];
e61fd20d 2158 Int_t idx = 5*nofElectrons[rowNumber]-4;
8c2b3fd7 2159 Real_t * position = &(((TVector&)v)(idx)); //make code faster
e61fd20d 2160 memcpy(position,xyz,5*sizeof(Float_t));
8c2b3fd7 2161
2162 } // end of loop over electrons
39c8eb58 2163
8c2b3fd7 2164 tpcHit = (AliTPChit*)NextHit();
2165
2166 } // end of loop over hits
2167 } // end of loop over tracks
8c555625 2168
2169 //
2170 // store remaining track (the last one) if not empty
2171 //
8c2b3fd7 2172
2173 for(i=0;i<nrows+2;i++){
2174 if(nofElectrons[i]>0){
2175 TVector &v = *tracks[i];
2176 v(0) = previousTrack;
e61fd20d 2177 tracks[i]->ResizeTo(5*nofElectrons[i]+1); // shrink if necessary
8c2b3fd7 2178 row[i]->Add(tracks[i]);
2179 }
2180 else{
2181 delete tracks[i];
2182 tracks[i]=0;
2183 }
2184 }
2185
2186 delete [] tracks;
2187 delete [] nofElectrons;
8c555625 2188
cc80f89e 2189} // end of MakeSector
8c555625 2190
fe4da5cc 2191
2192//_____________________________________________________________________________
2193void AliTPC::Init()
2194{
2195 //
2196 // Initialise TPC detector after definition of geometry
2197 //
8c2b3fd7 2198 AliDebug(1,"*********************************************");
fe4da5cc 2199}
2200
fe4da5cc 2201//_____________________________________________________________________________
2202void AliTPC::ResetDigits()
2203{
2204 //
2205 // Reset number of digits and the digits array for this detector
fe4da5cc 2206 //
2207 fNdigits = 0;
cc80f89e 2208 if (fDigits) fDigits->Clear();
fe4da5cc 2209}
2210
fe4da5cc 2211
fe4da5cc 2212
2213//_____________________________________________________________________________
2214void AliTPC::SetSens(Int_t sens)
2215{
8c555625 2216
2217 //-------------------------------------------------------------
2218 // Activates/deactivates the sensitive strips at the center of
2219 // the pad row -- this is for the space-point resolution calculations
2220 //-------------------------------------------------------------
2221
2222 //-----------------------------------------------------------------
2223 // Origin: Marek Kowalski IFJ, Krakow, Marek.Kowalski@ifj.edu.pl
2224 //-----------------------------------------------------------------
2225
fe4da5cc 2226 fSens = sens;
2227}
2b06d5c3 2228
4b0fdcad 2229
73042f01 2230void AliTPC::SetSide(Float_t side=0.)
4b0fdcad 2231{
73042f01 2232 // choice of the TPC side
2233
4b0fdcad 2234 fSide = side;
2235
2236}
cc80f89e 2237//_____________________________________________________________________________
2238
2239void AliTPC::TransportElectron(Float_t *xyz, Int_t *index)
2240{
2241 //
2242 // electron transport taking into account:
2243 // 1. diffusion,
2244 // 2.ExB at the wires
2245 // 3. nonisochronity
2246 //
2247 // xyz and index must be already transformed to system 1
2248 //
2249
23effa8e 2250 fTPCParam->Transform1to2(xyz,index); // mis-alignment applied in this step
cc80f89e 2251
2252 //add diffusion
2253 Float_t driftl=xyz[2];
2254 if(driftl<0.01) driftl=0.01;
2255 driftl=TMath::Sqrt(driftl);
73042f01 2256 Float_t sigT = driftl*(fTPCParam->GetDiffT());
2257 Float_t sigL = driftl*(fTPCParam->GetDiffL());
2258 xyz[0]=gRandom->Gaus(xyz[0],sigT);
2259 xyz[1]=gRandom->Gaus(xyz[1],sigT);
2260 xyz[2]=gRandom->Gaus(xyz[2],sigL);
cc80f89e 2261
2262 // ExB
2263
2264 if (fTPCParam->GetMWPCReadout()==kTRUE){
b584c7dd 2265 Float_t dx = fTPCParam->Transform2to2NearestWire(xyz,index);
cc80f89e 2266 xyz[1]+=dx*(fTPCParam->GetOmegaTau());
2267 }
79fa3dc8 2268 //add nonisochronity (not implemented yet)
2269
2270
1283eee5 2271}
fe4da5cc 2272
fe4da5cc 2273ClassImp(AliTPChit)
179c6296 2274 //______________________________________________________________________
2275 AliTPChit::AliTPChit()
2276 :AliHit(),
2277 fSector(0),
2278 fPadRow(0),
2279 fQ(0),
2280 fTime(0)
2281{
2282 //
2283 // default
2284 //
2285
2286}
fe4da5cc 2287//_____________________________________________________________________________
179c6296 2288AliTPChit::AliTPChit(Int_t shunt, Int_t track, Int_t *vol, Float_t *hits)
2289 :AliHit(shunt,track),
2290 fSector(0),
2291 fPadRow(0),
2292 fQ(0),
2293 fTime(0)
fe4da5cc 2294{
2295 //
2296 // Creates a TPC hit object
2297 //
2298 fSector = vol[0];
2299 fPadRow = vol[1];
2300 fX = hits[0];
2301 fY = hits[1];
2302 fZ = hits[2];
2303 fQ = hits[3];
e61fd20d 2304 fTime = hits[4];
fe4da5cc 2305}
2306
39c8eb58 2307//________________________________________________________________________
792bb11c 2308// Additional code because of the AliTPCTrackHitsV2
39c8eb58 2309
a6005888 2310void AliTPC::MakeBranch(Option_t *option)
39c8eb58 2311{
2312 //
2313 // Create a new branch in the current Root Tree
2314 // The branch of fHits is automatically split
2315 // MI change 14.09.2000
8c2b3fd7 2316 AliDebug(1,"");
792bb11c 2317 if (fHitType<2) return;
39c8eb58 2318 char branchname[10];
2319 sprintf(branchname,"%s2",GetName());
2320 //
2321 // Get the pointer to the header
5cf7bbad 2322 const char *cH = strstr(option,"H");
39c8eb58 2323 //
cb5b8b21 2324 if (fTrackHits && fLoader->TreeH() && cH && fHitType&4) {
8c2b3fd7 2325 AliDebug(1,"Making branch for Type 4 Hits");
cb5b8b21 2326 fLoader->TreeH()->Branch(branchname,"AliTPCTrackHitsV2",&fTrackHits,fBufferSize,99);
8c2b3fd7 2327 }
792bb11c 2328
cb5b8b21 2329// if (fTrackHitsOld && fLoader->TreeH() && cH && fHitType&2) {
be5ffbfe 2330// AliDebug(1,"Making branch for Type 2 Hits");
2331// AliObjectBranch * branch = new AliObjectBranch(branchname,"AliTPCTrackHits",&fTrackHitsOld,
cb5b8b21 2332// fLoader->TreeH(),fBufferSize,99);
2333// fLoader->TreeH()->GetListOfBranches()->Add(branch);
be5ffbfe 2334// }
39c8eb58 2335}
2336
2337void AliTPC::SetTreeAddress()
2338{
8c2b3fd7 2339 //Sets tree address for hits
2340 if (fHitType<=1) {
2341 if (fHits == 0x0 ) fHits = new TClonesArray("AliTPChit", 176);//skowron 20.06.03
2342 AliDetector::SetTreeAddress();
2343 }
792bb11c 2344 if (fHitType>1) SetTreeAddress2();
39c8eb58 2345}
2346
2347void AliTPC::SetTreeAddress2()
2348{
2349 //
2350 // Set branch address for the TrackHits Tree
2351 //
8c2b3fd7 2352 AliDebug(1,"");
88cb7938 2353
39c8eb58 2354 TBranch *branch;
2355 char branchname[20];
2356 sprintf(branchname,"%s2",GetName());
2357 //
2358 // Branch address for hit tree
cb5b8b21 2359 TTree *treeH = fLoader->TreeH();
792bb11c 2360 if ((treeH)&&(fHitType&4)) {
39c8eb58 2361 branch = treeH->GetBranch(branchname);
8c2b3fd7 2362 if (branch) {
2363 branch->SetAddress(&fTrackHits);
2364 AliDebug(1,"fHitType&4 Setting");
2365 }
f2a509af 2366 else
8c2b3fd7 2367 AliDebug(1,"fHitType&4 Failed (can not find branch)");
f2a509af 2368
39c8eb58 2369 }
be5ffbfe 2370 // if ((treeH)&&(fHitType&2)) {
2371// branch = treeH->GetBranch(branchname);
2372// if (branch) {
2373// branch->SetAddress(&fTrackHitsOld);
2374// AliDebug(1,"fHitType&2 Setting");
2375// }
2376// else
2377// AliDebug(1,"fHitType&2 Failed (can not find branch)");
2378// }
39c8eb58 2379}
2380
2381void AliTPC::FinishPrimary()
2382{
792bb11c 2383 if (fTrackHits &&fHitType&4) fTrackHits->FlushHitStack();
be5ffbfe 2384 // if (fTrackHitsOld && fHitType&2) fTrackHitsOld->FlushHitStack();
39c8eb58 2385}
2386
2387
2388void AliTPC::AddHit2(Int_t track, Int_t *vol, Float_t *hits)
2389{
2390 //
a6005888 2391 // add hit to the list
2392
39c8eb58 2393 Int_t rtrack;
2394 if (fIshunt) {
5d12ce38 2395 int primary = gAlice->GetMCApp()->GetPrimary(track);
2396 gAlice->GetMCApp()->Particle(primary)->SetBit(kKeepBit);
39c8eb58 2397 rtrack=primary;
2398 } else {
2399 rtrack=track;
5d12ce38 2400 gAlice->GetMCApp()->FlagTrack(track);
39c8eb58 2401 }
792bb11c 2402 if (fTrackHits && fHitType&4)
39c8eb58 2403 fTrackHits->AddHitKartez(vol[0],rtrack, hits[0],
e61fd20d 2404 hits[1],hits[2],(Int_t)hits[3],hits[4]);
be5ffbfe 2405 // if (fTrackHitsOld &&fHitType&2 )
2406// fTrackHitsOld->AddHitKartez(vol[0],rtrack, hits[0],
2407// hits[1],hits[2],(Int_t)hits[3]);
792bb11c 2408
39c8eb58 2409}
2410
2411void AliTPC::ResetHits()
88cb7938 2412{
39c8eb58 2413 if (fHitType&1) AliDetector::ResetHits();
792bb11c 2414 if (fHitType>1) ResetHits2();
39c8eb58 2415}
2416
2417void AliTPC::ResetHits2()
2418{
2419 //
2420 //reset hits
792bb11c 2421 if (fTrackHits && fHitType&4) fTrackHits->Clear();
be5ffbfe 2422 // if (fTrackHitsOld && fHitType&2) fTrackHitsOld->Clear();
792bb11c 2423
39c8eb58 2424}
2425
2426AliHit* AliTPC::FirstHit(Int_t track)
2427{
792bb11c 2428 if (fHitType>1) return FirstHit2(track);
39c8eb58 2429 return AliDetector::FirstHit(track);
2430}
2431AliHit* AliTPC::NextHit()
2432{
9bdd974b 2433 //
2434 // gets next hit
2435 //
792bb11c 2436 if (fHitType>1) return NextHit2();
2437
39c8eb58 2438 return AliDetector::NextHit();
2439}
2440
2441AliHit* AliTPC::FirstHit2(Int_t track)
2442{
2443 //
2444 // Initialise the hit iterator
2445 // Return the address of the first hit for track
2446 // If track>=0 the track is read from disk
2447 // while if track<0 the first hit of the current
2448 // track is returned
2449 //
2450 if(track>=0) {
3e2e3ece 2451 gAlice->GetMCApp()->ResetHits();
cb5b8b21 2452 fLoader->TreeH()->GetEvent(track);
39c8eb58 2453 }
2454 //
792bb11c 2455 if (fTrackHits && fHitType&4) {
39c8eb58 2456 fTrackHits->First();
2457 return fTrackHits->GetHit();
2458 }
be5ffbfe 2459 // if (fTrackHitsOld && fHitType&2) {
2460// fTrackHitsOld->First();
2461// return fTrackHitsOld->GetHit();
2462// }
792bb11c 2463
39c8eb58 2464 else return 0;
2465}
2466
2467AliHit* AliTPC::NextHit2()
2468{
2469 //
2470 //Return the next hit for the current track
2471
792bb11c 2472
be5ffbfe 2473// if (fTrackHitsOld && fHitType&2) {
2474// fTrackHitsOld->Next();
2475// return fTrackHitsOld->GetHit();
2476// }
39c8eb58 2477 if (fTrackHits) {
2478 fTrackHits->Next();
2479 return fTrackHits->GetHit();
2480 }
2481 else
2482 return 0;
2483}
2484
39c8eb58 2485void AliTPC::RemapTrackHitIDs(Int_t *map)
2486{
9bdd974b 2487 //
2488 // remapping
2489 //
39c8eb58 2490 if (!fTrackHits) return;
39c8eb58 2491
be5ffbfe 2492// if (fTrackHitsOld && fHitType&2){
2493// AliObjectArray * arr = fTrackHitsOld->fTrackHitsInfo;
2494// for (UInt_t i=0;i<arr->GetSize();i++){
2495// AliTrackHitsInfo * info = (AliTrackHitsInfo *)(arr->At(i));
2496// info->fTrackID = map[info->fTrackID];
2497// }
2498// }
2499// if (fTrackHitsOld && fHitType&4){
2500 if (fTrackHits && fHitType&4){
792bb11c 2501 TClonesArray * arr = fTrackHits->GetArray();;
2502 for (Int_t i=0;i<arr->GetEntriesFast();i++){
2503 AliTrackHitsParamV2 * info = (AliTrackHitsParamV2 *)(arr->At(i));
b9671574 2504 info->SetTrackID(map[info->GetTrackID()]);
792bb11c 2505 }
2506 }
39c8eb58 2507}
2508
792bb11c 2509Bool_t AliTPC::TrackInVolume(Int_t id,Int_t track)
2510{
2511 //return bool information - is track in given volume
2512 //load only part of the track information
2513 //return true if current track is in volume
2514 //
2515 // return kTRUE;
be5ffbfe 2516 // if (fTrackHitsOld && fHitType&2) {
cb5b8b21 2517// TBranch * br = fLoader->TreeH()->GetBranch("fTrackHitsInfo");
be5ffbfe 2518// br->GetEvent(track);
2519// AliObjectArray * ar = fTrackHitsOld->fTrackHitsInfo;
2520// for (UInt_t j=0;j<ar->GetSize();j++){
2521// if ( ((AliTrackHitsInfo*)ar->At(j))->fVolumeID==id) return kTRUE;
2522// }
2523// }
792bb11c 2524
2525 if (fTrackHits && fHitType&4) {
cb5b8b21 2526 TBranch * br1 = fLoader->TreeH()->GetBranch("fVolumes");
2527 TBranch * br2 = fLoader->TreeH()->GetBranch("fNVolumes");
792bb11c 2528 br2->GetEvent(track);
2529 br1->GetEvent(track);
2530 Int_t *volumes = fTrackHits->GetVolumes();
2531 Int_t nvolumes = fTrackHits->GetNVolumes();
2532 if (!volumes && nvolumes>0) {
8c2b3fd7 2533 AliWarning(Form("Problematic track\t%d\t%d",track,nvolumes));
792bb11c 2534 return kFALSE;
2535 }
2536 for (Int_t j=0;j<nvolumes; j++)
2537 if (volumes[j]==id) return kTRUE;
2538 }
2539
2540 if (fHitType&1) {
cb5b8b21 2541 TBranch * br = fLoader->TreeH()->GetBranch("fSector");
792bb11c 2542 br->GetEvent(track);
2543 for (Int_t j=0;j<fHits->GetEntriesFast();j++){
2544 if ( ((AliTPChit*)fHits->At(j))->fSector==id) return kTRUE;
2545 }
2546 }
2547 return kFALSE;
2548
2549}
39c8eb58 2550
39c8eb58 2551
88cb7938 2552AliLoader* AliTPC::MakeLoader(const char* topfoldername)
2553{
8c2b3fd7 2554 //Makes TPC loader
2555 fLoader = new AliTPCLoader(GetName(),topfoldername);
2556 return fLoader;
88cb7938 2557}
2558
42157e55 2559////////////////////////////////////////////////////////////////////////
2560AliTPCParam* AliTPC::LoadTPCParam(TFile *file) {
2561//
2562// load TPC paarmeters from a given file or create new if the object
2563// is not found there
88cb7938 2564// 12/05/2003 This method should be moved to the AliTPCLoader
2565// and one has to decide where to store the TPC parameters
2566// M.Kowalski
42157e55 2567 char paramName[50];
2568 sprintf(paramName,"75x40_100x60_150x60");
2569 AliTPCParam *paramTPC=(AliTPCParam*)file->Get(paramName);
2570 if (paramTPC) {
8c2b3fd7 2571 AliDebugClass(1,Form("TPC parameters %s found.",paramName));
42157e55 2572 } else {
8c2b3fd7 2573 AliWarningClass("TPC parameters not found. Create new (they may be incorrect)");
db2fdcfb 2574 //paramTPC = new AliTPCParamSR;
2575 paramTPC = AliTPCcalibDB::Instance()->GetParameters();
2576 if (!paramTPC->IsGeoRead()){
2577 //
2578 // read transformation matrices for gGeoManager
2579 //
2580 paramTPC->ReadGeoMatrices();
2581 }
2582
42157e55 2583 }
2584 return paramTPC;
2585
2586// the older version of parameters can be accessed with this code.
2587// In some cases, we have old parameters saved in the file but
2588// digits were created with new parameters, it can be distinguish
2589// by the name of TPC TreeD. The code here is just for the case
2590// we would need to compare with old data, uncomment it if needed.
2591//
2592// char paramName[50];
2593// sprintf(paramName,"75x40_100x60");
2594// AliTPCParam *paramTPC=(AliTPCParam*)in->Get(paramName);
2595// if (paramTPC) {
2596// cout<<"TPC parameters "<<paramName<<" found."<<endl;
2597// } else {
2598// sprintf(paramName,"75x40_100x60_150x60");
2599// paramTPC=(AliTPCParam*)in->Get(paramName);
2600// if (paramTPC) {
2601// cout<<"TPC parameters "<<paramName<<" found."<<endl;
2602// } else {
2603// cerr<<"TPC parameters not found. Create new (they may be incorrect)."
2604// <<endl;
2605// paramTPC = new AliTPCParamSR;
2606// }
2607// }
2608// return paramTPC;
2609
2610}
2611
85a5290f 2612