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3551db50 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16/* $Id$ */
17
18///////////////////////////////////////////////////////////////////////////////
19// //
20// Class providing the calibration parameters by accessing the CDB //
21// //
2745a409 22// Request an instance with AliTRDcalibDB::Instance() //
3551db50 23// If a new event is processed set the event number with SetRun //
24// Then request the calibration data //
25// //
2745a409 26// Author: //
27// Jan Fiete Grosse-Oetringhaus (Jan.Fiete.Grosse-Oetringhaus@cern.ch) //
28// //
3551db50 29///////////////////////////////////////////////////////////////////////////////
30
090026bf 31#include <TMath.h>
3551db50 32#include <TRandom.h>
33
2745a409 34#include "AliCDBManager.h"
35#include "AliCDBStorage.h"
36#include "AliCDBEntry.h"
37#include "AliLog.h"
3551db50 38
39#include "AliTRDcalibDB.h"
40#include "AliTRDgeometry.h"
41#include "AliTRDpadPlane.h"
42#include "AliTRDCommonParam.h"
43
7754cd1f 44#include "Cal/AliTRDCalROC.h"
7754cd1f 45#include "Cal/AliTRDCalPad.h"
46#include "Cal/AliTRDCalDet.h"
47#include "Cal/AliTRDCalGlobals.h"
48#include "Cal/AliTRDCalPIDLQ.h"
49#include "Cal/AliTRDCalMonitoring.h"
7754cd1f 50#include "Cal/AliTRDCalChamberStatus.h"
7754cd1f 51#include "Cal/AliTRDCalPadStatus.h"
52#include "Cal/AliTRDCalSingleChamberStatus.h"
3551db50 53
54ClassImp(AliTRDcalibDB)
55
2745a409 56AliTRDcalibDB *AliTRDcalibDB::fgInstance = 0;
57Bool_t AliTRDcalibDB::fgTerminated = kFALSE;
3551db50 58
59//_ singleton implementation __________________________________________________
60AliTRDcalibDB* AliTRDcalibDB::Instance()
61{
62 //
63 // Singleton implementation
64 // Returns an instance of this class, it is created if neccessary
63a700c6 65 //
3551db50 66
6d50f529 67 if (fgTerminated != kFALSE) {
3551db50 68 return 0;
6d50f529 69 }
3551db50 70
6d50f529 71 if (fgInstance == 0) {
3551db50 72 fgInstance = new AliTRDcalibDB();
6d50f529 73 }
e254cad1 74
3551db50 75 return fgInstance;
4e009ce4 76
3551db50 77}
78
2745a409 79//_____________________________________________________________________________
3551db50 80void AliTRDcalibDB::Terminate()
81{
82 //
83 // Singleton implementation
6bf5f0ce 84 // Deletes the instance of this class and sets the terminated flag,
85 // instances cannot be requested anymore
3551db50 86 // This function can be called several times.
87 //
88
89 fgTerminated = kTRUE;
90
6d50f529 91 if (fgInstance != 0) {
3551db50 92 delete fgInstance;
93 fgInstance = 0;
94 }
2745a409 95
3551db50 96}
97
98//_____________________________________________________________________________
99AliTRDcalibDB::AliTRDcalibDB()
2745a409 100 :TObject()
101 ,fRun(-1)
6d50f529 102 ,fPRFsmp(0)
103 ,fPRFbin(0)
104 ,fPRFlo(0)
105 ,fPRFhi(0)
106 ,fPRFwid(0)
107 ,fPRFpad(0)
3551db50 108{
109 //
2745a409 110 // Default constructor
3551db50 111 //
2745a409 112 // TODO Default runnumber is set to 0, this should be changed later
113 // to an invalid value (e.g. -1) to prevent
3551db50 114 // TODO invalid calibration data to be used.
2745a409 115 //
116
95867fd1 117 for (Int_t i = 0; i < kCDBCacheSize; ++i) {
2745a409 118 fCDBCache[i] = 0;
119 fCDBEntries[i] = 0;
120 }
3551db50 121
2745a409 122 // Create the sampled PRF
123 SamplePRF();
d4c6453d 124
2745a409 125}
126
127//_____________________________________________________________________________
128AliTRDcalibDB::AliTRDcalibDB(const AliTRDcalibDB &c)
129 :TObject(c)
6d50f529 130 ,fRun(-1)
131 ,fPRFsmp(0)
132 ,fPRFbin(0)
133 ,fPRFlo(0)
134 ,fPRFhi(0)
135 ,fPRFwid(0)
136 ,fPRFpad(0)
2745a409 137{
138 //
139 // Copy constructor (not that it make any sense for a singleton...)
140 //
141
95867fd1 142 for (Int_t i = 0; i < kCDBCacheSize; ++i) {
2745a409 143 fCDBCache[i] = 0;
3551db50 144 fCDBEntries[i] = 0;
145 }
6a739e92 146
147 // Create the sampled PRF
148 SamplePRF();
2745a409 149
150}
151
152//_____________________________________________________________________________
153AliTRDcalibDB &AliTRDcalibDB::operator=(const AliTRDcalibDB &c)
154{
155 //
156 // Assignment operator (same as above ...)
157 //
158
159 if (this != &c) {
160 AliFatal("No assignment operator defined");
161 }
4e009ce4 162
2745a409 163 return *this;
164
acba9bad 165}
3551db50 166
167//_____________________________________________________________________________
168AliTRDcalibDB::~AliTRDcalibDB()
169{
170 //
171 // destructor
172 //
173
6d50f529 174 if (fPRFsmp) {
175 delete [] fPRFsmp;
176 fPRFsmp = 0;
6a739e92 177 }
178
3551db50 179 Invalidate();
2745a409 180
acba9bad 181}
3551db50 182
63a700c6 183//_caching functions____________________________________________________________
95867fd1 184const TObject *AliTRDcalibDB::GetCachedCDBObject(Int_t id)
63a700c6 185{
2745a409 186 //
187 // Retrieves a cdb object with the given id. The objects are cached as
188 // long as the run number is not changed.
189 //
190 // Put together the available objects here by using the lines
191 // a) For usual calibration objects:
192 // case kID<Name> :
193 // return CacheCDBEntry(kID<Name>,"TRD/Calib/<Path>");
194 // break;
195 // See function CacheCDBEntry for details.
196 // and
197 // b) For calibration data which depends on two objects: One containing
198 // a value per detector and one the local fluctuations per pad:
199 // case kID<Name> :
200 // return CacheMergeCDBEntry(kID<Name>,"TRD/Calib/<padPath>","TRD/Calib/<chamberPath>");
201 // break;
202 // See function CacheMergeCDBEntry for details.
203 //
63a700c6 204
6d50f529 205 switch (id) {
2745a409 206
207 // Parameters defined per pad and chamber
208 case kIDVdriftPad :
6d50f529 209 return CacheCDBEntry(kIDVdriftPad ,"TRD/Calib/LocalVdrift");
2745a409 210 break;
211 case kIDVdriftChamber :
6d50f529 212 return CacheCDBEntry(kIDVdriftChamber ,"TRD/Calib/ChamberVdrift");
2745a409 213 break;
214 case kIDT0Pad :
6d50f529 215 return CacheCDBEntry(kIDT0Pad ,"TRD/Calib/LocalT0");
2745a409 216 break;
217 case kIDT0Chamber :
6d50f529 218 return CacheCDBEntry(kIDT0Chamber ,"TRD/Calib/ChamberT0");
2745a409 219 break;
220 case kIDGainFactorPad :
6d50f529 221 return CacheCDBEntry(kIDGainFactorPad ,"TRD/Calib/LocalGainFactor");
2745a409 222 break;
223 case kIDGainFactorChamber :
6d50f529 224 return CacheCDBEntry(kIDGainFactorChamber ,"TRD/Calib/ChamberGainFactor");
2745a409 225 break;
226
227 // Parameters defined per pad
228 case kIDPRFWidth :
6d50f529 229 return CacheCDBEntry(kIDPRFWidth ,"TRD/Calib/PRFWidth");
2745a409 230 break;
231
232 // Status values
2745a409 233 case kIDChamberStatus :
6d50f529 234 return CacheCDBEntry(kIDChamberStatus ,"TRD/Calib/ChamberStatus");
2745a409 235 break;
2745a409 236 case kIDPadStatus :
6d50f529 237 return CacheCDBEntry(kIDPadStatus ,"TRD/Calib/PadStatus");
2745a409 238 break;
239
240 // Global parameters
241 case kIDMonitoringData :
6d50f529 242 return CacheCDBEntry(kIDMonitoringData ,"TRD/Calib/MonitoringData");
2745a409 243 break;
244 case kIDGlobals :
6d50f529 245 return CacheCDBEntry(kIDGlobals ,"TRD/Calib/Globals");
2745a409 246 break;
247 case kIDPIDLQ :
6d50f529 248 return CacheCDBEntry(kIDPIDLQ ,"TRD/Calib/PIDLQ");
2745a409 249 break;
250
251 }
252
253 return 0;
254
63a700c6 255}
256
257//_____________________________________________________________________________
95867fd1 258AliCDBEntry *AliTRDcalibDB::GetCDBEntry(const char *cdbPath)
63a700c6 259{
260 //
261 // Retrieves an entry with path <cdbPath> from the CDB.
262 //
263
95867fd1 264 AliCDBEntry *entry = AliCDBManager::Instance()->Get(cdbPath,fRun);
2745a409 265 if (!entry) {
4fad09c9 266 AliFatal(Form("Failed to get entry: %s",cdbPath));
63a700c6 267 return 0;
268 }
269
63a700c6 270 return entry;
2745a409 271
63a700c6 272}
273
274//_____________________________________________________________________________
95867fd1 275const TObject *AliTRDcalibDB::CacheCDBEntry(Int_t id, const char *cdbPath)
63a700c6 276{
277 //
278 // Caches the entry <id> with cdb path <cdbPath>
279 //
280
2745a409 281 if (!fCDBCache[id]) {
63a700c6 282 fCDBEntries[id] = GetCDBEntry(cdbPath);
95867fd1 283 if (fCDBEntries[id]) {
63a700c6 284 fCDBCache[id] = fCDBEntries[id]->GetObject();
95867fd1 285 }
63a700c6 286 }
95867fd1 287
63a700c6 288 return fCDBCache[id];
2745a409 289
63a700c6 290}
291
3551db50 292//_____________________________________________________________________________
293void AliTRDcalibDB::SetRun(Long64_t run)
294{
295 //
7754cd1f 296 // Sets current run number. Calibration data is read from the corresponding file.
3551db50 297 // When the run number changes the caching is invalidated.
298 //
7754cd1f 299
6d50f529 300 if (fRun == run) {
3551db50 301 return;
6d50f529 302 }
7754cd1f 303
3551db50 304 fRun = run;
95867fd1 305
3551db50 306 Invalidate();
2745a409 307
3551db50 308}
7754cd1f 309
3551db50 310//_____________________________________________________________________________
311void AliTRDcalibDB::Invalidate()
312{
313 //
314 // Invalidates cache (when run number is changed).
315 //
316
95867fd1 317 for (Int_t i = 0; i < kCDBCacheSize; ++i) {
2745a409 318 if (fCDBEntries[i]) {
319 if (AliCDBManager::Instance()->GetCacheFlag() == kFALSE) {
11f5dd43 320 if ((fCDBEntries[i]->IsOwner() == kFALSE) &&
321 (fCDBCache[i])) {
e254cad1 322 delete fCDBCache[i];
2745a409 323 }
e254cad1 324 delete fCDBEntries[i];
325 }
3551db50 326 fCDBEntries[i] = 0;
2745a409 327 fCDBCache[i] = 0;
3551db50 328 }
329 }
2745a409 330
3551db50 331}
332
3551db50 333//_____________________________________________________________________________
334Float_t AliTRDcalibDB::GetVdrift(Int_t det, Int_t col, Int_t row)
335{
336 //
337 // Returns the drift velocity for the given pad.
338 //
7754cd1f 339
95867fd1 340 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
6d50f529 341 (GetCachedCDBObject(kIDVdriftPad));
342 if (!calPad) {
3551db50 343 return -1;
6d50f529 344 }
3551db50 345
95867fd1 346 AliTRDCalROC *roc = calPad->GetCalROC(det);
6d50f529 347 if (!roc) {
3551db50 348 return -1;
6d50f529 349 }
3551db50 350
95867fd1 351 const AliTRDCalDet *calChamber = dynamic_cast<const AliTRDCalDet *>
6d50f529 352 (GetCachedCDBObject(kIDVdriftChamber));
353 if (!calChamber) {
7754cd1f 354 return -1;
6d50f529 355 }
7754cd1f 356
95867fd1 357 return calChamber->GetValue(det) * roc->GetValue(col,row);
2745a409 358
7754cd1f 359}
afb9f880 360
361//_____________________________________________________________________________
362AliTRDCalROC *AliTRDcalibDB::GetVdriftROC(Int_t det)
363{
364 //
365 // Returns the Vdrift calibration object for a given ROC
366 // containing one number per pad
367 //
368
369 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
370 (GetCachedCDBObject(kIDVdriftPad));
371 if (!calPad) {
372 return 0;
373 }
374
375 AliTRDCalROC *roc = calPad->GetCalROC(det);
376 if (!roc) {
377 return 0;
378 }
379 else {
380 return roc;
381 }
382
383}
384
385//_____________________________________________________________________________
386const AliTRDCalDet *AliTRDcalibDB::GetVdriftDet()
387{
388 //
389 // Returns the Vdrift calibration object
390 // containing one number per detector
391 //
392
393 const AliTRDCalDet *calChamber = dynamic_cast<const AliTRDCalDet *>
394 (GetCachedCDBObject(kIDVdriftChamber));
395 if (!calChamber) {
396 return 0;
397 }
398 else {
399 return calChamber;
400 }
401
402}
7754cd1f 403
404//_____________________________________________________________________________
405Float_t AliTRDcalibDB::GetVdriftAverage(Int_t det)
406{
407 //
408 // Returns the average drift velocity for the given detector
409 //
410
95867fd1 411 const AliTRDCalDet *calDet = dynamic_cast<const AliTRDCalDet *>
6d50f529 412 (GetCachedCDBObject(kIDVdriftChamber));
413 if (!calDet) {
7754cd1f 414 return -1;
6d50f529 415 }
7754cd1f 416
417 return calDet->GetValue(det);
2745a409 418
acba9bad 419}
3551db50 420
421//_____________________________________________________________________________
422Float_t AliTRDcalibDB::GetT0(Int_t det, Int_t col, Int_t row)
423{
424 //
425 // Returns t0 for the given pad.
426 //
427
d4c6453d 428 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
429 (GetCachedCDBObject(kIDT0Pad));
6d50f529 430 if (!calPad) {
3551db50 431 return -1;
6d50f529 432 }
3551db50 433
d4c6453d 434 AliTRDCalROC *roc = calPad->GetCalROC(det);
6d50f529 435 if (!roc) {
3551db50 436 return -1;
6d50f529 437 }
3551db50 438
d4c6453d 439 const AliTRDCalDet *calChamber = dynamic_cast<const AliTRDCalDet *>
440 (GetCachedCDBObject(kIDT0Chamber));
6d50f529 441 if (!calChamber) {
7754cd1f 442 return -1;
6d50f529 443 }
7754cd1f 444
8d786fb8 445 return calChamber->GetValue(det) + roc->GetValue(col,row);
2745a409 446
7754cd1f 447}
afb9f880 448
56178ff4 449//_____________________________________________________________________________
450AliTRDCalROC *AliTRDcalibDB::GetT0ROC(Int_t det)
451{
452 //
453 // Returns the t0 calibration object for a given ROC
454 // containing one number per pad
455 //
456
457 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
458 (GetCachedCDBObject(kIDT0Pad));
459 if (!calPad) {
460 return 0;
461 }
462
463 AliTRDCalROC *roc = calPad->GetCalROC(det);
464 if (!roc) {
465 return 0;
466 }
467 else {
468 return roc;
469 }
470
471}
472
473//_____________________________________________________________________________
474const AliTRDCalDet *AliTRDcalibDB::GetT0Det()
475{
476 //
477 // Returns the t0 calibration object
478 // containing one number per detector
479 //
480
481 const AliTRDCalDet *calChamber = dynamic_cast<const AliTRDCalDet *>
482 (GetCachedCDBObject(kIDT0Chamber));
483 if (!calChamber) {
484 return 0;
485 }
486 else {
487 return calChamber;
488 }
489
490}
491
7754cd1f 492//_____________________________________________________________________________
493Float_t AliTRDcalibDB::GetT0Average(Int_t det)
494{
495 //
496 // Returns the average t0 for the given detector
497 //
498
5aba4f09 499 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
500 (GetCachedCDBObject(kIDT0Pad));
501 if (!calPad) {
502 return -1;
503 }
504
505 AliTRDCalROC *roc = calPad->GetCalROC(det);
506 if (!roc) {
507 return -1;
508 }
509
95867fd1 510 const AliTRDCalDet *calDet = dynamic_cast<const AliTRDCalDet *>
6d50f529 511 (GetCachedCDBObject(kIDT0Chamber));
512 if (!calDet) {
7754cd1f 513 return -1;
6d50f529 514 }
7754cd1f 515
5aba4f09 516 Double_t mean = 0.0;
517 for (Int_t channel = 0; channel < roc->GetNchannels(); ++channel) {
518 mean += (calDet->GetValue(det) + roc->GetValue(channel)) / roc->GetNchannels();
519 }
520
521 return mean;
2745a409 522
acba9bad 523}
3551db50 524
525//_____________________________________________________________________________
526Float_t AliTRDcalibDB::GetGainFactor(Int_t det, Int_t col, Int_t row)
527{
528 //
529 // Returns the gain factor for the given pad.
530 //
531
95867fd1 532 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
6d50f529 533 (GetCachedCDBObject(kIDGainFactorPad));
534 if (!calPad) {
3551db50 535 return -1;
6d50f529 536 }
3551db50 537
95867fd1 538 AliTRDCalROC *roc = calPad->GetCalROC(det);
56178ff4 539 if (!roc) {
3551db50 540 return -1;
56178ff4 541 }
3551db50 542
95867fd1 543 const AliTRDCalDet *calChamber = dynamic_cast<const AliTRDCalDet *>
6d50f529 544 (GetCachedCDBObject(kIDGainFactorChamber));
545 if (!calChamber) {
7754cd1f 546 return -1;
6d50f529 547 }
7754cd1f 548
95867fd1 549 return calChamber->GetValue(det) * roc->GetValue(col,row);
2745a409 550
7754cd1f 551}
552
56178ff4 553//_____________________________________________________________________________
554AliTRDCalROC *AliTRDcalibDB::GetGainFactorROC(Int_t det)
555{
556 //
557 // Returns the gain factor calibration object for a given ROC
558 // containing one number per pad
559 //
560
561 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
562 (GetCachedCDBObject(kIDGainFactorPad));
563 if (!calPad) {
564 return 0;
565 }
566
567 AliTRDCalROC *roc = calPad->GetCalROC(det);
568 if (!roc) {
569 return 0;
570 }
571 else {
572 return roc;
573 }
574
575}
576
577//_____________________________________________________________________________
578const AliTRDCalDet *AliTRDcalibDB::GetGainFactorDet()
579{
580 //
581 // Returns the gain factor calibration object
582 // containing one number per detector
583 //
584
585 const AliTRDCalDet *calChamber = dynamic_cast<const AliTRDCalDet *>
586 (GetCachedCDBObject(kIDGainFactorChamber));
587 if (!calChamber) {
588 return 0;
589 }
590 else {
591 return calChamber;
592 }
593
594}
595
7754cd1f 596//_____________________________________________________________________________
597Float_t AliTRDcalibDB::GetGainFactorAverage(Int_t det)
598{
599 //
600 // Returns the average gain factor for the given detector
601 //
602
95867fd1 603 const AliTRDCalDet *calDet = dynamic_cast<const AliTRDCalDet *>
6d50f529 604 (GetCachedCDBObject(kIDGainFactorChamber));
605 if (!calDet) {
7754cd1f 606 return -1;
6d50f529 607 }
7754cd1f 608
609 return calDet->GetValue(det);
2745a409 610
acba9bad 611}
6a739e92 612
613//_____________________________________________________________________________
614Float_t AliTRDcalibDB::GetPRFWidth(Int_t det, Int_t col, Int_t row)
615{
616 //
617 // Returns the PRF width for the given pad.
618 //
619
95867fd1 620 const AliTRDCalPad *calPad = dynamic_cast<const AliTRDCalPad *>
6d50f529 621 (GetCachedCDBObject(kIDPRFWidth));
622 if (!calPad) {
6a739e92 623 return -1;
6d50f529 624 }
6a739e92 625
95867fd1 626 AliTRDCalROC *roc = calPad->GetCalROC(det);
6d50f529 627 if (!roc) {
6a739e92 628 return -1;
6d50f529 629 }
6a739e92 630
95867fd1 631 return roc->GetValue(col,row);
2745a409 632
acba9bad 633}
3551db50 634
635//_____________________________________________________________________________
636Int_t AliTRDcalibDB::GetNumberOfTimeBins()
637{
638 //
639 // Returns the number of time bins which are read-out.
640 //
7754cd1f 641
95867fd1 642 const AliTRDCalGlobals *calGlobal = dynamic_cast<const AliTRDCalGlobals *>
6d50f529 643 (GetCachedCDBObject(kIDGlobals));
644 if (!calGlobal) {
7754cd1f 645 return -1;
6d50f529 646 }
7754cd1f 647
3551db50 648 return calGlobal->GetNumberOfTimeBins();
2745a409 649
3551db50 650}
651
7754cd1f 652//_____________________________________________________________________________
653Char_t AliTRDcalibDB::GetPadStatus(Int_t det, Int_t col, Int_t row)
654{
655 //
656 // Returns the status of the given pad
657 //
658
95867fd1 659 const AliTRDCalPadStatus *cal = dynamic_cast<const AliTRDCalPadStatus *>
6d50f529 660 (GetCachedCDBObject(kIDPadStatus));
661 if (!cal) {
7754cd1f 662 return -1;
6d50f529 663 }
7754cd1f 664
95867fd1 665 const AliTRDCalSingleChamberStatus *roc = cal->GetCalROC(det);
6d50f529 666 if (!roc) {
7754cd1f 667 return -1;
6d50f529 668 }
7754cd1f 669
95867fd1 670 return roc->GetStatus(col,row);
2745a409 671
7754cd1f 672}
673
7754cd1f 674//_____________________________________________________________________________
675Char_t AliTRDcalibDB::GetChamberStatus(Int_t det)
676{
677 //
678 // Returns the status of the given chamber
679 //
680
95867fd1 681 const AliTRDCalChamberStatus *cal = dynamic_cast<const AliTRDCalChamberStatus *>
6d50f529 682 (GetCachedCDBObject(kIDChamberStatus));
683 if (!cal) {
7754cd1f 684 return -1;
6d50f529 685 }
7754cd1f 686
687 return cal->GetStatus(det);
2745a409 688
7754cd1f 689}
690
7754cd1f 691//_____________________________________________________________________________
692Bool_t AliTRDcalibDB::IsPadMasked(Int_t det, Int_t col, Int_t row)
693{
694 //
695 // Returns status, see name of functions for details ;-)
696 //
697
95867fd1 698 const AliTRDCalPadStatus *cal = dynamic_cast<const AliTRDCalPadStatus *>
699 (GetCachedCDBObject(kIDPadStatus));
6d50f529 700 if (!cal) {
7754cd1f 701 return -1;
6d50f529 702 }
7754cd1f 703
95867fd1 704 return cal->IsMasked(det,col,row);
2745a409 705
7754cd1f 706}
707
708//_____________________________________________________________________________
709Bool_t AliTRDcalibDB::IsPadBridgedLeft(Int_t det, Int_t col, Int_t row)
710{
711 //
712 // Returns status, see name of functions for details ;-)
713 //
714
95867fd1 715 const AliTRDCalPadStatus *cal = dynamic_cast<const AliTRDCalPadStatus *>
716 (GetCachedCDBObject(kIDPadStatus));
6d50f529 717 if (!cal) {
7754cd1f 718 return -1;
6d50f529 719 }
7754cd1f 720
95867fd1 721 return cal->IsBridgedLeft(det,col,row);
2745a409 722
7754cd1f 723}
724
725//_____________________________________________________________________________
726Bool_t AliTRDcalibDB::IsPadBridgedRight(Int_t det, Int_t col, Int_t row)
727{
728 //
729 // Returns status, see name of functions for details ;-)
730 //
731
95867fd1 732 const AliTRDCalPadStatus * cal = dynamic_cast<const AliTRDCalPadStatus *>
733 (GetCachedCDBObject(kIDPadStatus));
6d50f529 734 if (!cal) {
7754cd1f 735 return -1;
6d50f529 736 }
7754cd1f 737
95867fd1 738 return cal->IsBridgedRight(det,col,row);
2745a409 739
7754cd1f 740}
741
7754cd1f 742//_____________________________________________________________________________
743Bool_t AliTRDcalibDB::IsChamberInstalled(Int_t det)
744{
745 //
746 // Returns status, see name of functions for details ;-)
747 //
748
95867fd1 749 const AliTRDCalChamberStatus * cal = dynamic_cast<const AliTRDCalChamberStatus *>
750 (GetCachedCDBObject(kIDChamberStatus));
6d50f529 751 if (!cal) {
7754cd1f 752 return -1;
6d50f529 753 }
7754cd1f 754
755 return cal->IsInstalled(det);
2745a409 756
7754cd1f 757}
758
759//_____________________________________________________________________________
760Bool_t AliTRDcalibDB::IsChamberMasked(Int_t det)
761{
762 //
763 // Returns status, see name of functions for details ;-)
764 //
765
95867fd1 766 const AliTRDCalChamberStatus * cal = dynamic_cast<const AliTRDCalChamberStatus *>
767 (GetCachedCDBObject(kIDChamberStatus));
6d50f529 768 if (!cal) {
7754cd1f 769 return -1;
6d50f529 770 }
7754cd1f 771
772 return cal->IsMasked(det);
2745a409 773
7754cd1f 774}
775
cc7cef99 776//_____________________________________________________________________________
d4c6453d 777const AliTRDCalPIDLQ *AliTRDcalibDB::GetPIDLQObject()
cc7cef99 778{
779 //
780 // Returns the object storing the distributions for PID with likelihood
781 //
7754cd1f 782
d4c6453d 783 return dynamic_cast<const AliTRDCalPIDLQ *>
784 (GetCachedCDBObject(kIDPIDLQ));
2745a409 785
cc7cef99 786}
787
7754cd1f 788//_____________________________________________________________________________
d4c6453d 789const AliTRDCalMonitoring *AliTRDcalibDB::GetMonitoringObject()
7754cd1f 790{
791 //
792 // Returns the object storing the monitoring data
793 //
794
d4c6453d 795 return dynamic_cast<const AliTRDCalMonitoring *>
796 (GetCachedCDBObject(kIDMonitoringData));
1b95a37b 797
7754cd1f 798}
799
3551db50 800//_____________________________________________________________________________
1b95a37b 801Float_t AliTRDcalibDB::GetOmegaTau(Float_t vdrift, Float_t bz)
3551db50 802{
803 //
4e009ce4 804 // Returns omega*tau (tan(Lorentz-angle)) for a given drift velocity <vdrift>
805 // and a B-field <bz> for Xe/CO2 (15%).
3551db50 806 // The values are according to a GARFIELD simulation.
807 //
4e009ce4 808 // This function basically does not belong to the calibration class.
809 // It should be moved somewhere else.
3551db50 810 // However, currently it is in use by simulation and reconstruction.
811 //
812
1b95a37b 813 Float_t fieldAbs = TMath::Abs(bz);
4e009ce4 814 Float_t fieldSgn = (bz > 0.0) ? 1.0 : -1.0;
3551db50 815
816 const Int_t kNb = 5;
817 Float_t p0[kNb] = { 0.004810, 0.007412, 0.010252, 0.013409, 0.016888 };
818 Float_t p1[kNb] = { 0.054875, 0.081534, 0.107333, 0.131983, 0.155455 };
819 Float_t p2[kNb] = { -0.008682, -0.012896, -0.016987, -0.020880, -0.024623 };
820 Float_t p3[kNb] = { 0.000155, 0.000238, 0.000330, 0.000428, 0.000541 };
821
4806f526 822 // No ExB if field is too small (or zero)
823 if (fieldAbs < 0.01) {
3551db50 824
4806f526 825 return 0.0;
d19b1f90 826
4806f526 827 }
828 // Calculate ExB from parametrization
829 else {
830
831 Int_t ib = ((Int_t) (10 * (fieldAbs - 0.15)));
832 ib = TMath::Max( 0,ib);
833 ib = TMath::Min(kNb,ib);
834
835 Float_t alphaL = p0[ib]
836 + p1[ib] * vdrift
837 + p2[ib] * vdrift*vdrift
838 + p3[ib] * vdrift*vdrift*vdrift;
839
840 return TMath::Tan(fieldSgn * alphaL);
841
842 }
3551db50 843
6a739e92 844}
845
846//_____________________________________________________________________________
847void AliTRDcalibDB::SamplePRF()
848{
849 //
2745a409 850 // Samples the pad response function (should maybe go somewhere else ...)
6a739e92 851 //
852
853 const Int_t kPRFbin = 61;
854
6d50f529 855 Float_t prf[kNplan][kPRFbin] = {
856 {2.9037e-02, 3.3608e-02, 3.9020e-02, 4.5292e-02,
6a739e92 857 5.2694e-02, 6.1362e-02, 7.1461e-02, 8.3362e-02,
858 9.7063e-02, 1.1307e-01, 1.3140e-01, 1.5235e-01,
859 1.7623e-01, 2.0290e-01, 2.3294e-01, 2.6586e-01,
860 3.0177e-01, 3.4028e-01, 3.8077e-01, 4.2267e-01,
861 4.6493e-01, 5.0657e-01, 5.4655e-01, 5.8397e-01,
862 6.1767e-01, 6.4744e-01, 6.7212e-01, 6.9188e-01,
863 7.0627e-01, 7.1499e-01, 7.1851e-01, 7.1499e-01,
864 7.0627e-01, 6.9188e-01, 6.7212e-01, 6.4744e-01,
865 6.1767e-01, 5.8397e-01, 5.4655e-01, 5.0657e-01,
866 4.6493e-01, 4.2267e-01, 3.8077e-01, 3.4028e-01,
867 3.0177e-01, 2.6586e-01, 2.3294e-01, 2.0290e-01,
868 1.7623e-01, 1.5235e-01, 1.3140e-01, 1.1307e-01,
869 9.7063e-02, 8.3362e-02, 7.1461e-02, 6.1362e-02,
870 5.2694e-02, 4.5292e-02, 3.9020e-02, 3.3608e-02,
871 2.9037e-02},
872 {2.5478e-02, 2.9695e-02, 3.4655e-02, 4.0454e-02,
873 4.7342e-02, 5.5487e-02, 6.5038e-02, 7.6378e-02,
874 8.9696e-02, 1.0516e-01, 1.2327e-01, 1.4415e-01,
875 1.6794e-01, 1.9516e-01, 2.2573e-01, 2.5959e-01,
876 2.9694e-01, 3.3719e-01, 3.7978e-01, 4.2407e-01,
877 4.6889e-01, 5.1322e-01, 5.5569e-01, 5.9535e-01,
878 6.3141e-01, 6.6259e-01, 6.8882e-01, 7.0983e-01,
879 7.2471e-01, 7.3398e-01, 7.3761e-01, 7.3398e-01,
880 7.2471e-01, 7.0983e-01, 6.8882e-01, 6.6259e-01,
881 6.3141e-01, 5.9535e-01, 5.5569e-01, 5.1322e-01,
882 4.6889e-01, 4.2407e-01, 3.7978e-01, 3.3719e-01,
883 2.9694e-01, 2.5959e-01, 2.2573e-01, 1.9516e-01,
884 1.6794e-01, 1.4415e-01, 1.2327e-01, 1.0516e-01,
885 8.9696e-02, 7.6378e-02, 6.5038e-02, 5.5487e-02,
886 4.7342e-02, 4.0454e-02, 3.4655e-02, 2.9695e-02,
887 2.5478e-02},
888 {2.2363e-02, 2.6233e-02, 3.0782e-02, 3.6140e-02,
889 4.2535e-02, 5.0157e-02, 5.9197e-02, 6.9900e-02,
890 8.2707e-02, 9.7811e-02, 1.1548e-01, 1.3601e-01,
891 1.5998e-01, 1.8739e-01, 2.1840e-01, 2.5318e-01,
892 2.9182e-01, 3.3373e-01, 3.7837e-01, 4.2498e-01,
893 4.7235e-01, 5.1918e-01, 5.6426e-01, 6.0621e-01,
894 6.4399e-01, 6.7700e-01, 7.0472e-01, 7.2637e-01,
895 7.4206e-01, 7.5179e-01, 7.5551e-01, 7.5179e-01,
896 7.4206e-01, 7.2637e-01, 7.0472e-01, 6.7700e-01,
897 6.4399e-01, 6.0621e-01, 5.6426e-01, 5.1918e-01,
898 4.7235e-01, 4.2498e-01, 3.7837e-01, 3.3373e-01,
899 2.9182e-01, 2.5318e-01, 2.1840e-01, 1.8739e-01,
900 1.5998e-01, 1.3601e-01, 1.1548e-01, 9.7811e-02,
901 8.2707e-02, 6.9900e-02, 5.9197e-02, 5.0157e-02,
902 4.2535e-02, 3.6140e-02, 3.0782e-02, 2.6233e-02,
903 2.2363e-02},
904 {1.9635e-02, 2.3167e-02, 2.7343e-02, 3.2293e-02,
905 3.8224e-02, 4.5335e-02, 5.3849e-02, 6.4039e-02,
906 7.6210e-02, 9.0739e-02, 1.0805e-01, 1.2841e-01,
907 1.5216e-01, 1.7960e-01, 2.1099e-01, 2.4671e-01,
908 2.8647e-01, 3.2996e-01, 3.7660e-01, 4.2547e-01,
909 4.7536e-01, 5.2473e-01, 5.7215e-01, 6.1632e-01,
910 6.5616e-01, 6.9075e-01, 7.1939e-01, 7.4199e-01,
911 7.5838e-01, 7.6848e-01, 7.7227e-01, 7.6848e-01,
912 7.5838e-01, 7.4199e-01, 7.1939e-01, 6.9075e-01,
913 6.5616e-01, 6.1632e-01, 5.7215e-01, 5.2473e-01,
914 4.7536e-01, 4.2547e-01, 3.7660e-01, 3.2996e-01,
915 2.8647e-01, 2.4671e-01, 2.1099e-01, 1.7960e-01,
916 1.5216e-01, 1.2841e-01, 1.0805e-01, 9.0739e-02,
917 7.6210e-02, 6.4039e-02, 5.3849e-02, 4.5335e-02,
918 3.8224e-02, 3.2293e-02, 2.7343e-02, 2.3167e-02,
919 1.9635e-02},
920 {1.7224e-02, 2.0450e-02, 2.4286e-02, 2.8860e-02,
921 3.4357e-02, 4.0979e-02, 4.8966e-02, 5.8612e-02,
922 7.0253e-02, 8.4257e-02, 1.0102e-01, 1.2094e-01,
923 1.4442e-01, 1.7196e-01, 2.0381e-01, 2.4013e-01,
924 2.8093e-01, 3.2594e-01, 3.7450e-01, 4.2563e-01,
925 4.7796e-01, 5.2991e-01, 5.7974e-01, 6.2599e-01,
926 6.6750e-01, 7.0344e-01, 7.3329e-01, 7.5676e-01,
927 7.7371e-01, 7.8410e-01, 7.8793e-01, 7.8410e-01,
928 7.7371e-01, 7.5676e-01, 7.3329e-01, 7.0344e-01,
929 6.6750e-01, 6.2599e-01, 5.7974e-01, 5.2991e-01,
930 4.7796e-01, 4.2563e-01, 3.7450e-01, 3.2594e-01,
931 2.8093e-01, 2.4013e-01, 2.0381e-01, 1.7196e-01,
932 1.4442e-01, 1.2094e-01, 1.0102e-01, 8.4257e-02,
933 7.0253e-02, 5.8612e-02, 4.8966e-02, 4.0979e-02,
934 3.4357e-02, 2.8860e-02, 2.4286e-02, 2.0450e-02,
935 1.7224e-02},
936 {1.5096e-02, 1.8041e-02, 2.1566e-02, 2.5793e-02,
937 3.0886e-02, 3.7044e-02, 4.4515e-02, 5.3604e-02,
938 6.4668e-02, 7.8109e-02, 9.4364e-02, 1.1389e-01,
939 1.3716e-01, 1.6461e-01, 1.9663e-01, 2.3350e-01,
940 2.7527e-01, 3.2170e-01, 3.7214e-01, 4.2549e-01,
941 4.8024e-01, 5.3460e-01, 5.8677e-01, 6.3512e-01,
942 6.7838e-01, 7.1569e-01, 7.4655e-01, 7.7071e-01,
943 7.8810e-01, 7.9871e-01, 8.0255e-01, 7.9871e-01,
944 7.8810e-01, 7.7071e-01, 7.4655e-01, 7.1569e-01,
945 6.7838e-01, 6.3512e-01, 5.8677e-01, 5.3460e-01,
946 4.8024e-01, 4.2549e-01, 3.7214e-01, 3.2170e-01,
947 2.7527e-01, 2.3350e-01, 1.9663e-01, 1.6461e-01,
948 1.3716e-01, 1.1389e-01, 9.4364e-02, 7.8109e-02,
949 6.4668e-02, 5.3604e-02, 4.4515e-02, 3.7044e-02,
950 3.0886e-02, 2.5793e-02, 2.1566e-02, 1.8041e-02,
951 1.5096e-02}};
952
953 // More sampling precision with linear interpolation
6d50f529 954 fPRFlo = -1.5;
955 fPRFhi = 1.5;
6a739e92 956 Float_t pad[kPRFbin];
957 Int_t sPRFbin = kPRFbin;
6d50f529 958 Float_t sPRFwid = (fPRFhi - fPRFlo) / ((Float_t) sPRFbin);
6a739e92 959 for (Int_t iPad = 0; iPad < sPRFbin; iPad++) {
6d50f529 960 pad[iPad] = ((Float_t) iPad + 0.5) * sPRFwid + fPRFlo;
6a739e92 961 }
6d50f529 962 fPRFbin = 500;
963 fPRFwid = (fPRFhi - fPRFlo) / ((Float_t) fPRFbin);
964 fPRFpad = ((Int_t) (1.0 / fPRFwid));
6a739e92 965
6d50f529 966 if (fPRFsmp) delete [] fPRFsmp;
967 fPRFsmp = new Float_t[kNplan*fPRFbin];
6a739e92 968
969 Int_t ipos1;
970 Int_t ipos2;
971 Float_t diff;
972
973 for (Int_t iPla = 0; iPla < kNplan; iPla++) {
974
6d50f529 975 for (Int_t iBin = 0; iBin < fPRFbin; iBin++) {
6a739e92 976
6d50f529 977 Float_t bin = (((Float_t) iBin) + 0.5) * fPRFwid + fPRFlo;
6a739e92 978 ipos1 = ipos2 = 0;
979 diff = 0;
980 do {
981 diff = bin - pad[ipos2++];
982 } while ((diff > 0) && (ipos2 < kPRFbin));
983 if (ipos2 == kPRFbin) {
6d50f529 984 fPRFsmp[iPla*fPRFbin+iBin] = prf[iPla][ipos2-1];
6a739e92 985 }
986 else if (ipos2 == 1) {
6d50f529 987 fPRFsmp[iPla*fPRFbin+iBin] = prf[iPla][ipos2-1];
6a739e92 988 }
989 else {
990 ipos2--;
991 if (ipos2 >= kPRFbin) ipos2 = kPRFbin - 1;
992 ipos1 = ipos2 - 1;
6d50f529 993 fPRFsmp[iPla*fPRFbin+iBin] = prf[iPla][ipos2]
6a739e92 994 + diff * (prf[iPla][ipos2] - prf[iPla][ipos1])
995 / sPRFwid;
996 }
997
998 }
999 }
1000
1001}
1002
1003//_____________________________________________________________________________
1004Int_t AliTRDcalibDB::PadResponse(Double_t signal, Double_t dist
2745a409 1005 , Int_t plane, Double_t *pad) const
6a739e92 1006{
1007 //
1008 // Applies the pad response
56178ff4 1009 // So far this is the fixed parametrization and should be replaced by
1010 // something dependent on calibration values
6a739e92 1011 //
1012
6d50f529 1013 Int_t iBin = ((Int_t) (( - dist - fPRFlo) / fPRFwid));
1014 Int_t iOff = plane * fPRFbin;
6a739e92 1015
6d50f529 1016 Int_t iBin0 = iBin - fPRFpad + iOff;
6a739e92 1017 Int_t iBin1 = iBin + iOff;
6d50f529 1018 Int_t iBin2 = iBin + fPRFpad + iOff;
6a739e92 1019
1020 pad[0] = 0.0;
1021 pad[1] = 0.0;
1022 pad[2] = 0.0;
6d50f529 1023 if ((iBin1 >= 0) && (iBin1 < (fPRFbin*kNplan))) {
6a739e92 1024
1025 if (iBin0 >= 0) {
6d50f529 1026 pad[0] = signal * fPRFsmp[iBin0];
6a739e92 1027 }
6d50f529 1028 pad[1] = signal * fPRFsmp[iBin1];
1029 if (iBin2 < (fPRFbin*kNplan)) {
1030 pad[2] = signal * fPRFsmp[iBin2];
6a739e92 1031 }
1032
1033 return 1;
1034
1035 }
1036 else {
1037
1038 return 0;
1039
1040 }
ab0a4106 1041
3551db50 1042}