1 /**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
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 **************************************************************************/
18 ///////////////////////////////////////////////////////////////////////////////
20 // class for running the reconstruction //
22 // Clusters and tracks are created for all detectors and all events by //
25 // AliReconstruction rec; //
28 // The Run method returns kTRUE in case of successful execution. //
30 // If the input to the reconstruction are not simulated digits but raw data, //
31 // this can be specified by an argument of the Run method or by the method //
33 // rec.SetInput("..."); //
35 // The input formats and the corresponding argument are: //
36 // - DDL raw data files: directory name, ends with "/" //
37 // - raw data root file: root file name, extension ".root" //
38 // - raw data DATE file: DATE file name, any other non-empty string //
39 // - MC root files : empty string, default //
41 // By default all events are reconstructed. The reconstruction can be //
42 // limited to a range of events by giving the index of the first and the //
43 // last event as an argument to the Run method or by calling //
45 // rec.SetEventRange(..., ...); //
47 // The index -1 (default) can be used for the last event to indicate no //
48 // upper limit of the event range. //
50 // In case of raw-data reconstruction the user can modify the default //
51 // number of events per digits/clusters/tracks file. In case the option //
52 // is not used the number is set 1. In case the user provides 0, than //
53 // the number of events is equal to the number of events inside the //
54 // raw-data file (i.e. one digits/clusters/tracks file): //
56 // rec.SetNumberOfEventsPerFile(...); //
59 // The name of the galice file can be changed from the default //
60 // "galice.root" by passing it as argument to the AliReconstruction //
61 // constructor or by //
63 // rec.SetGAliceFile("..."); //
65 // The local reconstruction can be switched on or off for individual //
68 // rec.SetRunLocalReconstruction("..."); //
70 // The argument is a (case sensitive) string with the names of the //
71 // detectors separated by a space. The special string "ALL" selects all //
72 // available detectors. This is the default. //
74 // The reconstruction of the primary vertex position can be switched off by //
76 // rec.SetRunVertexFinder(kFALSE); //
78 // The tracking and the creation of ESD tracks can be switched on for //
79 // selected detectors by //
81 // rec.SetRunTracking("..."); //
83 // Uniform/nonuniform field tracking switches (default: uniform field) //
85 // rec.SetUniformFieldTracking(); ( rec.SetUniformFieldTracking(kFALSE); ) //
87 // The filling of additional ESD information can be steered by //
89 // rec.SetFillESD("..."); //
91 // Again, for both methods the string specifies the list of detectors. //
92 // The default is "ALL". //
94 // The call of the shortcut method //
96 // rec.SetRunReconstruction("..."); //
98 // is equivalent to calling SetRunLocalReconstruction, SetRunTracking and //
99 // SetFillESD with the same detector selecting string as argument. //
101 // The reconstruction requires digits or raw data as input. For the creation //
102 // of digits and raw data have a look at the class AliSimulation. //
104 // The input data of a detector can be replaced by the corresponding HLT //
105 // data by calling (usual detector string) //
106 // SetUseHLTData("..."); //
109 ///////////////////////////////////////////////////////////////////////////////
116 #include <TGeoGlobalMagField.h>
117 #include <TGeoManager.h>
119 #include <TLorentzVector.h>
121 #include <TObjArray.h>
122 #include <TPRegexp.h>
123 #include <TParameter.h>
124 #include <TPluginManager.h>
126 #include <TProofOutputFile.h>
129 #include <THashTable.h>
131 #include <TMessage.h>
133 #include "AliAlignObj.h"
134 #include "AliCDBEntry.h"
135 #include "AliCDBManager.h"
136 #include "AliCDBStorage.h"
137 #include "AliCTPRawStream.h"
138 #include "AliCascadeVertexer.h"
139 #include "AliCentralTrigger.h"
140 #include "AliCodeTimer.h"
142 #include "AliDetectorRecoParam.h"
143 #include "AliESDCaloCells.h"
144 #include "AliESDCaloCluster.h"
145 #include "AliESDEvent.h"
146 #include "AliESDMuonTrack.h"
147 #include "AliESDPmdTrack.h"
148 #include "AliESDTagCreator.h"
149 #include "AliESDVertex.h"
150 #include "AliESDcascade.h"
151 #include "AliESDfriend.h"
152 #include "AliESDkink.h"
153 #include "AliESDpid.h"
154 #include "AliESDtrack.h"
155 #include "AliESDtrack.h"
156 #include "AliEventInfo.h"
157 #include "AliGRPObject.h"
158 #include "AliGRPRecoParam.h"
159 #include "AliGenEventHeader.h"
160 #include "AliGeomManager.h"
161 #include "AliGlobalQADataMaker.h"
162 #include "AliHeader.h"
165 #include "AliMultiplicity.h"
167 #include "AliPlaneEff.h"
169 #include "AliQADataMakerRec.h"
170 #include "AliQAManager.h"
171 #include "AliRawVEvent.h"
172 #include "AliRawEventHeaderBase.h"
173 #include "AliRawHLTManager.h"
174 #include "AliRawReaderDate.h"
175 #include "AliRawReaderFile.h"
176 #include "AliRawReaderRoot.h"
177 #include "AliReconstruction.h"
178 #include "AliReconstructor.h"
180 #include "AliRunInfo.h"
181 #include "AliRunLoader.h"
182 #include "AliSysInfo.h" // memory snapshots
183 #include "AliTrackPointArray.h"
184 #include "AliTracker.h"
185 #include "AliTriggerClass.h"
186 #include "AliTriggerCluster.h"
187 #include "AliTriggerIR.h"
188 #include "AliTriggerConfiguration.h"
189 #include "AliV0vertexer.h"
190 #include "AliVertexer.h"
191 #include "AliVertexerTracks.h"
192 #include "AliTriggerRunScalers.h"
193 #include "AliCTPTimeParams.h"
194 #include "AliESDHLTDecision.h"
196 ClassImp(AliReconstruction)
198 //_____________________________________________________________________________
199 const char* AliReconstruction::fgkDetectorName[AliReconstruction::kNDetectors] = {"ITS", "TPC", "TRD", "TOF", "PHOS", "HMPID", "EMCAL", "MUON", "FMD", "ZDC", "PMD", "T0", "VZERO", "ACORDE", "HLT"};
201 //_____________________________________________________________________________
202 AliReconstruction::AliReconstruction(const char* gAliceFilename) :
204 fRunVertexFinder(kTRUE),
205 fRunVertexFinderTracks(kTRUE),
206 fRunHLTTracking(kFALSE),
207 fRunMuonTracking(kFALSE),
209 fRunCascadeFinder(kTRUE),
211 fWriteAlignmentData(kFALSE),
212 fWriteESDfriend(kFALSE),
213 fFillTriggerESD(kTRUE),
221 fRunLocalReconstruction("ALL"),
225 fUseTrackingErrorsForAlignment(""),
226 fGAliceFileName(gAliceFilename),
229 fProofOutputFileName(""),
230 fProofOutputLocation(""),
231 fProofOutputDataset(kFALSE),
232 fProofOutputArchive(""),
236 fNumberOfEventsPerFile((UInt_t)-1),
238 fLoadAlignFromCDB(kTRUE),
239 fLoadAlignData("ALL"),
244 fCTPTimeParams(NULL),
248 fParentRawReader(NULL),
252 fSPDTrackleter(NULL),
254 fDiamondProfileSPD(NULL),
255 fDiamondProfile(NULL),
256 fDiamondProfileTPC(NULL),
257 fListOfCosmicTriggers(NULL),
261 fAlignObjArray(NULL),
265 fInitCDBCalled(kFALSE),
266 fSetRunNumberFromDataCalled(kFALSE),
271 fSameQACycle(kFALSE),
272 fInitQACalled(kFALSE),
273 fWriteQAExpertData(kTRUE),
274 fRunPlaneEff(kFALSE),
283 fIsNewRunLoader(kFALSE),
287 // create reconstruction object with default parameters
290 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
291 fReconstructor[iDet] = NULL;
292 fLoader[iDet] = NULL;
293 fTracker[iDet] = NULL;
295 for (Int_t iDet = 0; iDet < AliQAv1::kNDET; iDet++) {
296 fQACycles[iDet] = 999999 ;
297 fQAWriteExpert[iDet] = kFALSE ;
303 //_____________________________________________________________________________
304 AliReconstruction::AliReconstruction(const AliReconstruction& rec) :
306 fRunVertexFinder(rec.fRunVertexFinder),
307 fRunVertexFinderTracks(rec.fRunVertexFinderTracks),
308 fRunHLTTracking(rec.fRunHLTTracking),
309 fRunMuonTracking(rec.fRunMuonTracking),
310 fRunV0Finder(rec.fRunV0Finder),
311 fRunCascadeFinder(rec.fRunCascadeFinder),
312 fStopOnError(rec.fStopOnError),
313 fWriteAlignmentData(rec.fWriteAlignmentData),
314 fWriteESDfriend(rec.fWriteESDfriend),
315 fFillTriggerESD(rec.fFillTriggerESD),
317 fCleanESD(rec.fCleanESD),
318 fV0DCAmax(rec.fV0DCAmax),
319 fV0CsPmin(rec.fV0CsPmin),
323 fRunLocalReconstruction(rec.fRunLocalReconstruction),
324 fRunTracking(rec.fRunTracking),
325 fFillESD(rec.fFillESD),
326 fLoadCDB(rec.fLoadCDB),
327 fUseTrackingErrorsForAlignment(rec.fUseTrackingErrorsForAlignment),
328 fGAliceFileName(rec.fGAliceFileName),
329 fRawInput(rec.fRawInput),
330 fESDOutput(rec.fESDOutput),
331 fProofOutputFileName(rec.fProofOutputFileName),
332 fProofOutputLocation(rec.fProofOutputLocation),
333 fProofOutputDataset(rec.fProofOutputDataset),
334 fProofOutputArchive(rec.fProofOutputArchive),
335 fEquipIdMap(rec.fEquipIdMap),
336 fFirstEvent(rec.fFirstEvent),
337 fLastEvent(rec.fLastEvent),
338 fNumberOfEventsPerFile(rec.fNumberOfEventsPerFile),
340 fLoadAlignFromCDB(rec.fLoadAlignFromCDB),
341 fLoadAlignData(rec.fLoadAlignData),
342 fUseHLTData(rec.fUseHLTData),
346 fCTPTimeParams(NULL),
350 fParentRawReader(NULL),
352 fRecoParam(rec.fRecoParam),
354 fSPDTrackleter(NULL),
356 fDiamondProfileSPD(rec.fDiamondProfileSPD),
357 fDiamondProfile(rec.fDiamondProfile),
358 fDiamondProfileTPC(rec.fDiamondProfileTPC),
359 fListOfCosmicTriggers(NULL),
363 fAlignObjArray(rec.fAlignObjArray),
364 fCDBUri(rec.fCDBUri),
365 fQARefUri(rec.fQARefUri),
367 fInitCDBCalled(rec.fInitCDBCalled),
368 fSetRunNumberFromDataCalled(rec.fSetRunNumberFromDataCalled),
369 fQADetectors(rec.fQADetectors),
370 fQATasks(rec.fQATasks),
372 fRunGlobalQA(rec.fRunGlobalQA),
373 fSameQACycle(rec.fSameQACycle),
374 fInitQACalled(rec.fInitQACalled),
375 fWriteQAExpertData(rec.fWriteQAExpertData),
376 fRunPlaneEff(rec.fRunPlaneEff),
385 fIsNewRunLoader(rec.fIsNewRunLoader),
391 for (Int_t i = 0; i < rec.fOptions.GetEntriesFast(); i++) {
392 if (rec.fOptions[i]) fOptions.Add(rec.fOptions[i]->Clone());
394 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
395 fReconstructor[iDet] = NULL;
396 fLoader[iDet] = NULL;
397 fTracker[iDet] = NULL;
400 for (Int_t iDet = 0; iDet < AliQAv1::kNDET; iDet++) {
401 fQACycles[iDet] = rec.fQACycles[iDet];
402 fQAWriteExpert[iDet] = rec.fQAWriteExpert[iDet] ;
405 for (Int_t i = 0; i < rec.fSpecCDBUri.GetEntriesFast(); i++) {
406 if (rec.fSpecCDBUri[i]) fSpecCDBUri.Add(rec.fSpecCDBUri[i]->Clone());
410 //_____________________________________________________________________________
411 AliReconstruction& AliReconstruction::operator = (const AliReconstruction& rec)
413 // assignment operator
414 // Used in PROOF mode
415 // Be very careful while modifing it!
416 // Simple rules to follow:
417 // for persistent data members - use their assignment operators
418 // for non-persistent ones - do nothing or take the default values from constructor
419 // TSelector members should not be touched
420 if(&rec == this) return *this;
422 fRunVertexFinder = rec.fRunVertexFinder;
423 fRunVertexFinderTracks = rec.fRunVertexFinderTracks;
424 fRunHLTTracking = rec.fRunHLTTracking;
425 fRunMuonTracking = rec.fRunMuonTracking;
426 fRunV0Finder = rec.fRunV0Finder;
427 fRunCascadeFinder = rec.fRunCascadeFinder;
428 fStopOnError = rec.fStopOnError;
429 fWriteAlignmentData = rec.fWriteAlignmentData;
430 fWriteESDfriend = rec.fWriteESDfriend;
431 fFillTriggerESD = rec.fFillTriggerESD;
433 fCleanESD = rec.fCleanESD;
434 fV0DCAmax = rec.fV0DCAmax;
435 fV0CsPmin = rec.fV0CsPmin;
439 fRunLocalReconstruction = rec.fRunLocalReconstruction;
440 fRunTracking = rec.fRunTracking;
441 fFillESD = rec.fFillESD;
442 fLoadCDB = rec.fLoadCDB;
443 fUseTrackingErrorsForAlignment = rec.fUseTrackingErrorsForAlignment;
444 fGAliceFileName = rec.fGAliceFileName;
445 fRawInput = rec.fRawInput;
446 fESDOutput = rec.fESDOutput;
447 fProofOutputFileName = rec.fProofOutputFileName;
448 fProofOutputLocation = rec.fProofOutputLocation;
449 fProofOutputDataset = rec.fProofOutputDataset;
450 fProofOutputArchive = rec.fProofOutputArchive;
451 fEquipIdMap = rec.fEquipIdMap;
452 fFirstEvent = rec.fFirstEvent;
453 fLastEvent = rec.fLastEvent;
454 fNumberOfEventsPerFile = rec.fNumberOfEventsPerFile;
456 for (Int_t i = 0; i < rec.fOptions.GetEntriesFast(); i++) {
457 if (rec.fOptions[i]) fOptions.Add(rec.fOptions[i]->Clone());
460 fLoadAlignFromCDB = rec.fLoadAlignFromCDB;
461 fLoadAlignData = rec.fLoadAlignData;
462 fUseHLTData = rec.fUseHLTData;
464 delete fRunInfo; fRunInfo = NULL;
465 if (rec.fRunInfo) fRunInfo = new AliRunInfo(*rec.fRunInfo);
467 fEventInfo = rec.fEventInfo;
469 delete fRunScalers; fRunScalers = NULL;
470 if (rec.fRunScalers) fRunScalers = new AliTriggerRunScalers(*rec.fRunScalers);
472 delete fCTPTimeParams; fCTPTimeParams = NULL;
473 if (rec.fCTPTimeParams) fCTPTimeParams = new AliCTPTimeParams(*rec.fCTPTimeParams);
477 fParentRawReader = NULL;
479 fRecoParam = rec.fRecoParam;
481 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
482 delete fReconstructor[iDet]; fReconstructor[iDet] = NULL;
483 delete fLoader[iDet]; fLoader[iDet] = NULL;
484 delete fTracker[iDet]; fTracker[iDet] = NULL;
487 for (Int_t iDet = 0; iDet < AliQAv1::kNDET; iDet++) {
488 fQACycles[iDet] = rec.fQACycles[iDet];
489 fQAWriteExpert[iDet] = rec.fQAWriteExpert[iDet] ;
492 delete fSPDTrackleter; fSPDTrackleter = NULL;
494 delete fDiamondProfileSPD; fDiamondProfileSPD = NULL;
495 if (rec.fDiamondProfileSPD) fDiamondProfileSPD = new AliESDVertex(*rec.fDiamondProfileSPD);
496 delete fDiamondProfile; fDiamondProfile = NULL;
497 if (rec.fDiamondProfile) fDiamondProfile = new AliESDVertex(*rec.fDiamondProfile);
498 delete fDiamondProfileTPC; fDiamondProfileTPC = NULL;
499 if (rec.fDiamondProfileTPC) fDiamondProfileTPC = new AliESDVertex(*rec.fDiamondProfileTPC);
501 delete fListOfCosmicTriggers; fListOfCosmicTriggers = NULL;
502 if (rec.fListOfCosmicTriggers) fListOfCosmicTriggers = (THashTable*)((rec.fListOfCosmicTriggers)->Clone());
504 delete fGRPData; fGRPData = NULL;
505 // if (rec.fGRPData) fGRPData = (TMap*)((rec.fGRPData)->Clone());
506 if (rec.fGRPData) fGRPData = (AliGRPObject*)((rec.fGRPData)->Clone());
508 delete fAlignObjArray; fAlignObjArray = NULL;
511 fQARefUri = rec.fQARefUri;
512 fSpecCDBUri.Delete();
513 fInitCDBCalled = rec.fInitCDBCalled;
514 fSetRunNumberFromDataCalled = rec.fSetRunNumberFromDataCalled;
515 fQADetectors = rec.fQADetectors;
516 fQATasks = rec.fQATasks;
518 fRunGlobalQA = rec.fRunGlobalQA;
519 fSameQACycle = rec.fSameQACycle;
520 fInitQACalled = rec.fInitQACalled;
521 fWriteQAExpertData = rec.fWriteQAExpertData;
522 fRunPlaneEff = rec.fRunPlaneEff;
531 fIsNewRunLoader = rec.fIsNewRunLoader;
538 //_____________________________________________________________________________
539 AliReconstruction::~AliReconstruction()
544 if (fListOfCosmicTriggers) {
545 fListOfCosmicTriggers->Delete();
546 delete fListOfCosmicTriggers;
550 delete fCTPTimeParams;
552 if (fAlignObjArray) {
553 fAlignObjArray->Delete();
554 delete fAlignObjArray;
556 fSpecCDBUri.Delete();
558 AliCodeTimer::Instance()->Print();
561 //_____________________________________________________________________________
562 void AliReconstruction::InitQA()
564 //Initialize the QA and start of cycle
565 AliCodeTimerAuto("",0);
567 if (fInitQACalled) return;
568 fInitQACalled = kTRUE;
570 AliQAManager * qam = AliQAManager::QAManager(AliQAv1::kRECMODE) ;
571 if (fWriteQAExpertData)
572 qam->SetWriteExpert() ;
574 if (qam->IsDefaultStorageSet()) {
575 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
576 AliWarning("Default QA reference storage has been already set !");
577 AliWarning(Form("Ignoring the default storage declared in AliReconstruction: %s",fQARefUri.Data()));
578 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
579 fQARefUri = qam->GetDefaultStorage()->GetURI();
581 if (fQARefUri.Length() > 0) {
582 AliDebug(2,"!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
583 AliDebug(2, Form("Default QA reference storage is set to: %s", fQARefUri.Data()));
584 AliDebug(2, "!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
586 fQARefUri="local://$ALICE_ROOT/QAref";
587 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
588 AliWarning("Default QA refeference storage not yet set !!!!");
589 AliWarning(Form("Setting it now to: %s", fQARefUri.Data()));
590 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
593 qam->SetDefaultStorage(fQARefUri);
597 qam->SetActiveDetectors(fQADetectors) ;
598 for (Int_t det = 0 ; det < AliQAv1::kNDET ; det++) {
599 qam->SetCycleLength(AliQAv1::DETECTORINDEX_t(det), fQACycles[det]) ;
600 qam->SetWriteExpert(AliQAv1::DETECTORINDEX_t(det)) ;
602 if (!fRawReader && !fInput && IsInTasks(AliQAv1::kRAWS))
603 fQATasks.ReplaceAll(Form("%d",AliQAv1::kRAWS), "") ;
604 qam->SetTasks(fQATasks) ;
605 qam->InitQADataMaker(AliCDBManager::Instance()->GetRun()) ;
608 Bool_t sameCycle = kFALSE ;
609 AliQADataMaker *qadm = qam->GetQADataMaker(AliQAv1::kGLOBAL);
610 AliInfo(Form("Initializing the global QA data maker"));
611 if (IsInTasks(AliQAv1::kRECPOINTS)) {
612 qadm->StartOfCycle(AliQAv1::kRECPOINTS, AliCDBManager::Instance()->GetRun(), sameCycle) ;
613 TObjArray **arr=qadm->Init(AliQAv1::kRECPOINTS);
614 AliTracker::SetResidualsArray(arr);
617 if (IsInTasks(AliQAv1::kESDS)) {
618 qadm->StartOfCycle(AliQAv1::kESDS, AliCDBManager::Instance()->GetRun(), sameCycle) ;
619 qadm->Init(AliQAv1::kESDS);
622 AliSysInfo::AddStamp("InitQA") ;
625 //_____________________________________________________________________________
626 void AliReconstruction::MergeQA(const char *fileName)
628 //Initialize the QA and start of cycle
629 AliCodeTimerAuto("",0) ;
630 AliQAManager::QAManager()->Merge(AliCDBManager::Instance()->GetRun(),fileName) ;
631 AliSysInfo::AddStamp("MergeQA") ;
634 //_____________________________________________________________________________
635 void AliReconstruction::InitCDB()
637 // activate a default CDB storage
638 // First check if we have any CDB storage set, because it is used
639 // to retrieve the calibration and alignment constants
640 AliCodeTimerAuto("",0);
642 if (fInitCDBCalled) return;
643 fInitCDBCalled = kTRUE;
645 AliCDBManager* man = AliCDBManager::Instance();
646 if (man->IsDefaultStorageSet())
648 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
649 AliWarning("Default CDB storage has been already set !");
650 AliWarning(Form("Ignoring the default storage declared in AliReconstruction: %s",fCDBUri.Data()));
651 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
652 fCDBUri = man->GetDefaultStorage()->GetURI();
655 if (fCDBUri.Length() > 0)
657 AliDebug(2,"!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
658 AliDebug(2, Form("Default CDB storage is set to: %s", fCDBUri.Data()));
659 AliDebug(2, "!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
660 man->SetDefaultStorage(fCDBUri);
662 else if (!man->GetRaw()){
663 fCDBUri="local://$ALICE_ROOT/OCDB";
664 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
665 AliWarning("Default CDB storage not yet set !!!!");
666 AliWarning(Form("Setting it now to: %s", fCDBUri.Data()));
667 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
668 man->SetDefaultStorage(fCDBUri);
671 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
672 AliWarning("Default storage will be set after setting the Run Number!!!");
673 AliWarning("!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
677 // Now activate the detector specific CDB storage locations
678 for (Int_t i = 0; i < fSpecCDBUri.GetEntriesFast(); i++) {
679 TObject* obj = fSpecCDBUri[i];
681 AliDebug(2, "!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
682 AliDebug(2, Form("Specific CDB storage for %s is set to: %s",obj->GetName(),obj->GetTitle()));
683 AliDebug(2, "!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!");
684 man->SetSpecificStorage(obj->GetName(), obj->GetTitle());
686 AliSysInfo::AddStamp("InitCDB");
689 //_____________________________________________________________________________
690 void AliReconstruction::SetDefaultStorage(const char* uri) {
691 // Store the desired default CDB storage location
692 // Activate it later within the Run() method
698 //_____________________________________________________________________________
699 void AliReconstruction::SetQARefDefaultStorage(const char* uri) {
700 // Store the desired default CDB storage location
701 // Activate it later within the Run() method
704 AliQAv1::SetQARefStorage(fQARefUri.Data()) ;
707 //_____________________________________________________________________________
708 void AliReconstruction::SetSpecificStorage(const char* calibType, const char* uri) {
709 // Store a detector-specific CDB storage location
710 // Activate it later within the Run() method
712 AliCDBPath aPath(calibType);
713 if(!aPath.IsValid()){
714 // if calibType is not wildcard but it is a valid detector, add "/*" to make it a valid path
715 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
716 if(!strcmp(calibType, fgkDetectorName[iDet])) {
717 aPath.SetPath(Form("%s/*", calibType));
718 AliInfo(Form("Path for specific storage set to %s", aPath.GetPath().Data()));
722 if(!aPath.IsValid()){
723 AliError(Form("Not a valid path or detector: %s", calibType));
728 // // check that calibType refers to a "valid" detector name
729 // Bool_t isDetector = kFALSE;
730 // for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
731 // TString detName = fgkDetectorName[iDet];
732 // if(aPath.GetLevel0() == detName) {
733 // isDetector = kTRUE;
739 // AliError(Form("Not a valid detector: %s", aPath.GetLevel0().Data()));
743 TObject* obj = fSpecCDBUri.FindObject(aPath.GetPath().Data());
744 if (obj) fSpecCDBUri.Remove(obj);
745 fSpecCDBUri.Add(new TNamed(aPath.GetPath().Data(), uri));
749 //_____________________________________________________________________________
750 Bool_t AliReconstruction::SetRunNumberFromData()
752 // The method is called in Run() in order
753 // to set a correct run number.
754 // In case of raw data reconstruction the
755 // run number is taken from the raw data header
757 if (fSetRunNumberFromDataCalled) return kTRUE;
758 fSetRunNumberFromDataCalled = kTRUE;
760 AliCDBManager* man = AliCDBManager::Instance();
763 if(fRawReader->NextEvent()) {
764 if(man->GetRun() > 0) {
765 AliWarning("Run number is taken from raw-event header! Ignoring settings in AliCDBManager!");
767 man->SetRun(fRawReader->GetRunNumber());
768 fRawReader->RewindEvents();
771 if(man->GetRun() > 0) {
772 AliWarning("No raw-data events are found ! Using settings in AliCDBManager !");
775 AliWarning("Neither raw events nor settings in AliCDBManager are found !");
781 AliRunLoader *rl = AliRunLoader::Open(fGAliceFileName.Data());
783 AliError(Form("No run loader found in file %s", fGAliceFileName.Data()));
788 // read run number from gAlice
789 if(rl->GetHeader()) {
790 man->SetRun(rl->GetHeader()->GetRun());
795 AliError("Neither run-loader header nor RawReader objects are found !");
807 //_____________________________________________________________________________
808 void AliReconstruction::SetCDBLock() {
809 // Set CDB lock: from now on it is forbidden to reset the run number
810 // or the default storage or to activate any further storage!
812 AliCDBManager::Instance()->SetLock(1);
815 //_____________________________________________________________________________
816 Bool_t AliReconstruction::MisalignGeometry(const TString& detectors)
818 // Read the alignment objects from CDB.
819 // Each detector is supposed to have the
820 // alignment objects in DET/Align/Data CDB path.
821 // All the detector objects are then collected,
822 // sorted by geometry level (starting from ALIC) and
823 // then applied to the TGeo geometry.
824 // Finally an overlaps check is performed.
826 // Load alignment data from CDB and fill fAlignObjArray
827 if(fLoadAlignFromCDB){
829 TString detStr = detectors;
830 TString loadAlObjsListOfDets = "";
832 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
833 if(!IsSelected(fgkDetectorName[iDet], detStr)) continue;
834 if(!strcmp(fgkDetectorName[iDet],"HLT")) continue;
836 if(AliGeomManager::GetNalignable(fgkDetectorName[iDet]) != 0)
838 loadAlObjsListOfDets += fgkDetectorName[iDet];
839 loadAlObjsListOfDets += " ";
841 } // end loop over detectors
843 if(AliGeomManager::GetNalignable("GRP") != 0)
844 loadAlObjsListOfDets.Prepend("GRP "); //add alignment objects for non-sensitive modules
845 AliGeomManager::ApplyAlignObjsFromCDB(loadAlObjsListOfDets.Data());
846 AliCDBManager::Instance()->UnloadFromCache("*/Align/*");
848 // Check if the array with alignment objects was
849 // provided by the user. If yes, apply the objects
850 // to the present TGeo geometry
851 if (fAlignObjArray) {
852 if (gGeoManager && gGeoManager->IsClosed()) {
853 if (AliGeomManager::ApplyAlignObjsToGeom(*fAlignObjArray) == kFALSE) {
854 AliError("The misalignment of one or more volumes failed!"
855 "Compare the list of simulated detectors and the list of detector alignment data!");
860 AliError("Can't apply the misalignment! gGeoManager doesn't exist or it is still opened!");
866 if (fAlignObjArray) {
867 fAlignObjArray->Delete();
868 delete fAlignObjArray; fAlignObjArray=NULL;
874 //_____________________________________________________________________________
875 void AliReconstruction::SetGAliceFile(const char* fileName)
877 // set the name of the galice file
879 fGAliceFileName = fileName;
882 //_____________________________________________________________________________
883 void AliReconstruction::SetInput(const char* input)
885 // In case the input string starts with 'mem://', we run in an online mode
886 // and AliRawReaderDateOnline object is created. In all other cases a raw-data
887 // file is assumed. One can give as an input:
888 // mem://: - events taken from DAQ monitoring libs online
890 // mem://<filename> - emulation of the above mode (via DATE monitoring libs)
891 if (input) fRawInput = input;
894 //_____________________________________________________________________________
895 void AliReconstruction::SetOutput(const char* output)
897 // Set the output ESD filename
898 // 'output' is a normalt ROOT url
899 // The method is used in case of raw-data reco with PROOF
900 if (output) fESDOutput = output;
903 //_____________________________________________________________________________
904 void AliReconstruction::SetOption(const char* detector, const char* option)
906 // set options for the reconstruction of a detector
908 TObject* obj = fOptions.FindObject(detector);
909 if (obj) fOptions.Remove(obj);
910 fOptions.Add(new TNamed(detector, option));
913 //_____________________________________________________________________________
914 void AliReconstruction::SetRecoParam(const char* detector, AliDetectorRecoParam *par)
916 // Set custom reconstruction parameters for a given detector
917 // Single set of parameters for all the events
919 // First check if the reco-params are global
920 if(!strcmp(detector, "GRP")) {
922 fRecoParam.AddDetRecoParam(kNDetectors,par);
926 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
927 if(!strcmp(detector, fgkDetectorName[iDet])) {
929 fRecoParam.AddDetRecoParam(iDet,par);
936 //_____________________________________________________________________________
937 Bool_t AliReconstruction::InitGRP() {
938 //------------------------------------
939 // Initialization of the GRP entry
940 //------------------------------------
941 AliCDBEntry* entry = AliCDBManager::Instance()->Get("GRP/GRP/Data");
945 TMap* m = dynamic_cast<TMap*>(entry->GetObject()); // old GRP entry
948 AliInfo("Found a TMap in GRP/GRP/Data, converting it into an AliGRPObject");
950 fGRPData = new AliGRPObject();
951 fGRPData->ReadValuesFromMap(m);
955 AliInfo("Found an AliGRPObject in GRP/GRP/Data, reading it");
956 fGRPData = dynamic_cast<AliGRPObject*>(entry->GetObject()); // new GRP entry
960 // FIX ME: The unloading of GRP entry is temporarily disabled
961 // because ZDC and VZERO are using it in order to initialize
962 // their reconstructor objects. In the future one has to think
963 // of propagating AliRunInfo to the reconstructors.
964 // AliCDBManager::Instance()->UnloadFromCache("GRP/GRP/Data");
968 AliError("No GRP entry found in OCDB!");
972 TString lhcState = fGRPData->GetLHCState();
973 if (lhcState==AliGRPObject::GetInvalidString()) {
974 AliError("GRP/GRP/Data entry: missing value for the LHC state ! Using UNKNOWN");
975 lhcState = "UNKNOWN";
978 TString beamType = fGRPData->GetBeamType();
979 if (beamType==AliGRPObject::GetInvalidString()) {
980 AliError("GRP/GRP/Data entry: missing value for the beam type ! Using UNKNOWN");
981 beamType = "UNKNOWN";
984 Float_t beamEnergy = fGRPData->GetBeamEnergy();
985 if (beamEnergy==AliGRPObject::GetInvalidFloat()) {
986 AliError("GRP/GRP/Data entry: missing value for the beam energy ! Using 0");
989 // LHC: "multiply by 120 to get the energy in MeV"
992 TString runType = fGRPData->GetRunType();
993 if (runType==AliGRPObject::GetInvalidString()) {
994 AliError("GRP/GRP/Data entry: missing value for the run type ! Using UNKNOWN");
998 Int_t activeDetectors = fGRPData->GetDetectorMask();
999 if (activeDetectors==AliGRPObject::GetInvalidUInt()) {
1000 AliError("GRP/GRP/Data entry: missing value for the detector mask ! Using 1074790399");
1001 activeDetectors = 1074790399;
1004 fRunInfo = new AliRunInfo(lhcState, beamType, beamEnergy, runType, activeDetectors);
1008 // Process the list of active detectors
1009 if (activeDetectors) {
1010 UInt_t detMask = activeDetectors;
1011 fRunLocalReconstruction = MatchDetectorList(fRunLocalReconstruction,detMask);
1012 fRunTracking = MatchDetectorList(fRunTracking,detMask);
1013 fFillESD = MatchDetectorList(fFillESD,detMask);
1014 fQADetectors = MatchDetectorList(fQADetectors,detMask);
1015 fLoadCDB.Form("%s %s %s %s",
1016 fRunLocalReconstruction.Data(),
1017 fRunTracking.Data(),
1019 fQADetectors.Data());
1020 fLoadCDB = MatchDetectorList(fLoadCDB,detMask);
1021 if (!((detMask >> AliDAQ::DetectorID("ITSSPD")) & 0x1) &&
1022 !((detMask >> AliDAQ::DetectorID("ITSSDD")) & 0x1) &&
1023 !((detMask >> AliDAQ::DetectorID("ITSSSD")) & 0x1) ) {
1024 // switch off the vertexer
1025 AliInfo("SPD,SDD,SSD is not in the list of active detectors. Vertexer switched off.");
1026 fRunVertexFinder = kFALSE;
1028 if (!((detMask >> AliDAQ::DetectorID("TRG")) & 0x1)) {
1029 // switch off the reading of CTP raw-data payload
1030 if (fFillTriggerESD) {
1031 AliInfo("CTP is not in the list of active detectors. CTP data reading switched off.");
1032 fFillTriggerESD = kFALSE;
1037 AliInfo("===================================================================================");
1038 AliInfo(Form("Running local reconstruction for detectors: %s",fRunLocalReconstruction.Data()));
1039 AliInfo(Form("Running tracking for detectors: %s",fRunTracking.Data()));
1040 AliInfo(Form("Filling ESD for detectors: %s",fFillESD.Data()));
1041 AliInfo(Form("Quality assurance is active for detectors: %s",fQADetectors.Data()));
1042 AliInfo(Form("CDB and reconstruction parameters are loaded for detectors: %s",fLoadCDB.Data()));
1043 AliInfo("===================================================================================");
1045 //*** Dealing with the magnetic field map
1046 if ( TGeoGlobalMagField::Instance()->IsLocked() ) {
1047 if (TGeoGlobalMagField::Instance()->GetField()->TestBit(AliMagF::kOverrideGRP)) {
1048 AliInfo("ExpertMode!!! GRP information will be ignored !");
1049 AliInfo("ExpertMode!!! Running with the externally locked B field !");
1052 AliInfo("Destroying existing B field instance!");
1053 delete TGeoGlobalMagField::Instance();
1056 if ( !TGeoGlobalMagField::Instance()->IsLocked() ) {
1057 // Construct the field map out of the information retrieved from GRP.
1060 Float_t l3Current = fGRPData->GetL3Current((AliGRPObject::Stats)0);
1061 if (l3Current == AliGRPObject::GetInvalidFloat()) {
1062 AliError("GRP/GRP/Data entry: missing value for the L3 current !");
1066 Char_t l3Polarity = fGRPData->GetL3Polarity();
1067 if (l3Polarity == AliGRPObject::GetInvalidChar()) {
1068 AliError("GRP/GRP/Data entry: missing value for the L3 polarity !");
1073 Float_t diCurrent = fGRPData->GetDipoleCurrent((AliGRPObject::Stats)0);
1074 if (diCurrent == AliGRPObject::GetInvalidFloat()) {
1075 AliError("GRP/GRP/Data entry: missing value for the dipole current !");
1079 Char_t diPolarity = fGRPData->GetDipolePolarity();
1080 if (diPolarity == AliGRPObject::GetInvalidChar()) {
1081 AliError("GRP/GRP/Data entry: missing value for the dipole polarity !");
1085 // read special bits for the polarity convention and map type
1086 Int_t polConvention = fGRPData->IsPolarityConventionLHC() ? AliMagF::kConvLHC : AliMagF::kConvDCS2008;
1087 Bool_t uniformB = fGRPData->IsUniformBMap();
1090 AliMagF* fld = AliMagF::CreateFieldMap(TMath::Abs(l3Current) * (l3Polarity ? -1:1),
1091 TMath::Abs(diCurrent) * (diPolarity ? -1:1),
1092 polConvention,uniformB,beamEnergy, beamType.Data());
1094 TGeoGlobalMagField::Instance()->SetField( fld );
1095 TGeoGlobalMagField::Instance()->Lock();
1096 AliInfo("Running with the B field constructed out of GRP !");
1098 else AliFatal("Failed to create a B field map !");
1100 else AliFatal("B field is neither set nor constructed from GRP ! Exitig...");
1103 //*** Get the diamond profiles from OCDB
1104 entry = AliCDBManager::Instance()->Get("GRP/Calib/MeanVertexSPD");
1106 fDiamondProfileSPD = dynamic_cast<AliESDVertex*> (entry->GetObject());
1108 AliError("No SPD diamond profile found in OCDB!");
1111 entry = AliCDBManager::Instance()->Get("GRP/Calib/MeanVertex");
1113 fDiamondProfile = dynamic_cast<AliESDVertex*> (entry->GetObject());
1115 AliError("No diamond profile found in OCDB!");
1118 entry = AliCDBManager::Instance()->Get("GRP/Calib/MeanVertexTPC");
1120 fDiamondProfileTPC = dynamic_cast<AliESDVertex*> (entry->GetObject());
1122 AliError("No TPC diamond profile found in OCDB!");
1125 entry = AliCDBManager::Instance()->Get("GRP/Calib/CosmicTriggers");
1127 fListOfCosmicTriggers = dynamic_cast<THashTable*>(entry->GetObject());
1129 AliCDBManager::Instance()->UnloadFromCache("GRP/Calib/CosmicTriggers");
1132 if (!fListOfCosmicTriggers) {
1133 AliWarning("Can not get list of cosmic triggers from OCDB! Cosmic event specie will be effectively disabled!");
1139 //_____________________________________________________________________________
1140 Bool_t AliReconstruction::LoadCDB()
1142 AliCodeTimerAuto("",0);
1144 AliCDBManager::Instance()->Get("GRP/CTP/Config");
1146 TString detStr = fLoadCDB;
1147 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
1148 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
1149 AliCDBManager::Instance()->GetAll(Form("%s/Calib/*",fgkDetectorName[iDet]));
1152 // Temporary fix - one has to define the correct policy in order
1153 // to load the trigger OCDB entries only for the detectors that
1154 // in the trigger or that are needed in order to put correct
1155 // information in ESD
1156 AliCDBManager::Instance()->GetAll("TRIGGER/*/*");
1160 //_____________________________________________________________________________
1161 Bool_t AliReconstruction::LoadTriggerScalersCDB()
1163 AliCodeTimerAuto("",0);
1165 AliCDBEntry* entry = AliCDBManager::Instance()->Get("GRP/CTP/Scalers");
1169 AliInfo("Found an AliTriggerRunScalers in GRP/CTP/Scalers, reading it");
1170 fRunScalers = dynamic_cast<AliTriggerRunScalers*> (entry->GetObject());
1172 if (fRunScalers->CorrectScalersOverflow() == 0) AliInfo("32bit Trigger counters corrected for overflow");
1177 //_____________________________________________________________________________
1178 Bool_t AliReconstruction::LoadCTPTimeParamsCDB()
1180 AliCDBEntry* entry = AliCDBManager::Instance()->Get("GRP/CTP/CTPtiming");
1184 AliInfo("Found an AliCTPTimeParams in GRP/CTP/CTPtiming, reading it");
1185 fCTPTimeParams = dynamic_cast<AliCTPTimeParams*> (entry->GetObject());
1192 //_____________________________________________________________________________
1193 Bool_t AliReconstruction::Run(const char* input)
1196 AliCodeTimerAuto("",0);
1199 if (GetAbort() != TSelector::kContinue) return kFALSE;
1201 TChain *chain = NULL;
1202 if (fRawReader && (chain = fRawReader->GetChain())) {
1203 Long64_t nEntries = (fLastEvent < 0) ? (TChain::kBigNumber) : (fLastEvent - fFirstEvent + 1);
1206 // Temporary fix for long raw-data runs (until socket timeout handling in PROOF is revised)
1207 gProof->Exec("gEnv->SetValue(\"Proof.SocketActivityTimeout\",-1)", kTRUE);
1210 gProof->Exec("TGrid::Connect(\"alien://\")",kTRUE);
1212 TMessage::EnableSchemaEvolutionForAll(kTRUE);
1213 gProof->Exec("TMessage::EnableSchemaEvolutionForAll(kTRUE)",kTRUE);
1215 gProof->AddInput(this);
1217 if (!ParseOutput()) return kFALSE;
1219 gProof->SetParameter("PROOF_MaxSlavesPerNode", 9999);
1221 chain->Process("AliReconstruction","",nEntries,fFirstEvent);
1224 chain->Process(this,"",nEntries,fFirstEvent);
1229 if (GetAbort() != TSelector::kContinue) return kFALSE;
1231 if (GetAbort() != TSelector::kContinue) return kFALSE;
1232 //******* The loop over events
1233 AliInfo("Starting looping over events");
1235 while ((iEvent < fRunLoader->GetNumberOfEvents()) ||
1236 (fRawReader && fRawReader->NextEvent())) {
1237 if (!ProcessEvent(iEvent)) {
1238 Abort("ProcessEvent",TSelector::kAbortFile);
1244 if (GetAbort() != TSelector::kContinue) return kFALSE;
1246 if (GetAbort() != TSelector::kContinue) return kFALSE;
1252 //_____________________________________________________________________________
1253 void AliReconstruction::InitRawReader(const char* input)
1255 AliCodeTimerAuto("",0);
1257 // Init raw-reader and
1258 // set the input in case of raw data
1259 if (input) fRawInput = input;
1260 fRawReader = AliRawReader::Create(fRawInput.Data());
1262 if (fRawInput.IsNull()) {
1263 AliInfo("Reconstruction will run over digits");
1266 AliFatal("Can not create raw-data reader ! Exiting...");
1270 if (!fEquipIdMap.IsNull() && fRawReader)
1271 fRawReader->LoadEquipmentIdsMap(fEquipIdMap);
1273 if (!fUseHLTData.IsNull()) {
1274 // create the RawReaderHLT which performs redirection of HLT input data for
1275 // the specified detectors
1276 AliRawReader* pRawReader=AliRawHLTManager::CreateRawReaderHLT(fRawReader, fUseHLTData.Data());
1278 fParentRawReader=fRawReader;
1279 fRawReader=pRawReader;
1281 AliError(Form("can not create Raw Reader for HLT input %s", fUseHLTData.Data()));
1284 AliSysInfo::AddStamp("CreateRawReader");
1287 //_____________________________________________________________________________
1288 void AliReconstruction::InitRun(const char* input)
1290 // Initialization of raw-reader,
1291 // run number, CDB etc.
1292 AliCodeTimerAuto("",0);
1293 AliSysInfo::AddStamp("Start");
1295 // Initialize raw-reader if any
1296 InitRawReader(input);
1298 // Initialize the CDB storage
1301 // Set run number in CDBManager (if it is not already set by the user)
1302 if (!SetRunNumberFromData()) {
1303 Abort("SetRunNumberFromData", TSelector::kAbortProcess);
1307 // Set CDB lock: from now on it is forbidden to reset the run number
1308 // or the default storage or to activate any further storage!
1313 //_____________________________________________________________________________
1314 void AliReconstruction::Begin(TTree *)
1316 // Initialize AlReconstruction before
1317 // going into the event loop
1318 // Should follow the TSelector convention
1319 // i.e. initialize only the object on the client side
1320 AliCodeTimerAuto("",0);
1322 AliReconstruction *reco = NULL;
1324 if ((reco = (AliReconstruction*)fInput->FindObject("AliReconstruction"))) {
1327 AliSysInfo::AddStamp("ReadInputInBegin");
1330 // Import ideal TGeo geometry and apply misalignment
1332 TString geom(gSystem->DirName(fGAliceFileName));
1333 geom += "/geometry.root";
1334 AliGeomManager::LoadGeometry(geom.Data());
1336 Abort("LoadGeometry", TSelector::kAbortProcess);
1339 AliSysInfo::AddStamp("LoadGeom");
1340 TString detsToCheck=fRunLocalReconstruction;
1341 if(!AliGeomManager::CheckSymNamesLUT(detsToCheck.Data())) {
1342 Abort("CheckSymNamesLUT", TSelector::kAbortProcess);
1345 AliSysInfo::AddStamp("CheckGeom");
1348 if (!MisalignGeometry(fLoadAlignData)) {
1349 Abort("MisalignGeometry", TSelector::kAbortProcess);
1352 AliCDBManager::Instance()->UnloadFromCache("GRP/Geometry/Data");
1353 AliSysInfo::AddStamp("MisalignGeom");
1356 Abort("InitGRP", TSelector::kAbortProcess);
1359 AliSysInfo::AddStamp("InitGRP");
1362 Abort("LoadCDB", TSelector::kAbortProcess);
1365 AliSysInfo::AddStamp("LoadCDB");
1367 if (!LoadTriggerScalersCDB()) {
1368 Abort("LoadTriggerScalersCDB", TSelector::kAbortProcess);
1371 AliSysInfo::AddStamp("LoadTriggerScalersCDB");
1373 if (!LoadCTPTimeParamsCDB()) {
1374 Abort("LoadCTPTimeParamsCDB", TSelector::kAbortProcess);
1377 AliSysInfo::AddStamp("LoadCTPTimeParamsCDB");
1379 // Read the reconstruction parameters from OCDB
1380 if (!InitRecoParams()) {
1381 AliWarning("Not all detectors have correct RecoParam objects initialized");
1383 AliSysInfo::AddStamp("InitRecoParams");
1385 if (fInput && gProof) {
1386 if (reco) *reco = *this;
1388 gGeoManager->SetName("Geometry");
1389 gProof->AddInputData(gGeoManager,kTRUE);
1391 gProof->AddInputData(const_cast<TMap*>(AliCDBManager::Instance()->GetEntryCache()),kTRUE);
1392 fInput->Add(new TParameter<Int_t>("RunNumber",AliCDBManager::Instance()->GetRun()));
1393 AliMagF *magFieldMap = (AliMagF*)TGeoGlobalMagField::Instance()->GetField();
1394 magFieldMap->SetName("MagneticFieldMap");
1395 gProof->AddInputData(magFieldMap,kTRUE);
1400 //_____________________________________________________________________________
1401 void AliReconstruction::SlaveBegin(TTree*)
1403 // Initialization related to run-loader,
1404 // vertexer, trackers, recontructors
1405 // In proof mode it is executed on the slave
1406 AliCodeTimerAuto("",0);
1408 TProofOutputFile *outProofFile = NULL;
1410 if (AliDebugLevel() > 0) fInput->Print();
1411 if (AliDebugLevel() > 10) fInput->Dump();
1412 if (AliReconstruction *reco = (AliReconstruction*)fInput->FindObject("AliReconstruction")) {
1415 if (TGeoManager *tgeo = (TGeoManager*)fInput->FindObject("Geometry")) {
1417 AliGeomManager::SetGeometry(tgeo);
1419 if (TMap *entryCache = (TMap*)fInput->FindObject("CDBEntryCache")) {
1420 Int_t runNumber = -1;
1421 if (TProof::GetParameter(fInput,"RunNumber",runNumber) == 0) {
1422 AliCDBManager *man = AliCDBManager::Instance(entryCache,runNumber);
1423 man->SetCacheFlag(kTRUE);
1424 man->SetLock(kTRUE);
1428 if (AliMagF *map = (AliMagF*)fInput->FindObject("MagneticFieldMap")) {
1429 AliMagF *newMap = new AliMagF(*map);
1430 if (!newMap->LoadParameterization()) {
1431 Abort("AliMagF::LoadParameterization", TSelector::kAbortProcess);
1434 TGeoGlobalMagField::Instance()->SetField(newMap);
1435 TGeoGlobalMagField::Instance()->Lock();
1437 if (TNamed *outputFileName = (TNamed*)fInput->FindObject("PROOF_OUTPUTFILE"))
1438 fProofOutputFileName = outputFileName->GetTitle();
1439 if (TNamed *outputLocation = (TNamed*)fInput->FindObject("PROOF_OUTPUTFILE_LOCATION"))
1440 fProofOutputLocation = outputLocation->GetTitle();
1441 if (fInput->FindObject("PROOF_OUTPUTFILE_DATASET"))
1442 fProofOutputDataset = kTRUE;
1443 if (TNamed *archiveList = (TNamed*)fInput->FindObject("PROOF_OUTPUTFILE_ARCHIVE"))
1444 fProofOutputArchive = archiveList->GetTitle();
1445 if (!fProofOutputFileName.IsNull() &&
1446 !fProofOutputLocation.IsNull() &&
1447 fProofOutputArchive.IsNull()) {
1448 if (!fProofOutputDataset) {
1449 outProofFile = new TProofOutputFile(fProofOutputFileName.Data(),"M");
1450 outProofFile->SetOutputFileName(Form("%s%s",fProofOutputLocation.Data(),fProofOutputFileName.Data()));
1453 outProofFile = new TProofOutputFile(fProofOutputFileName.Data(),"DROV",fProofOutputLocation.Data());
1455 if (AliDebugLevel() > 0) outProofFile->Dump();
1456 fOutput->Add(outProofFile);
1458 AliSysInfo::AddStamp("ReadInputInSlaveBegin");
1461 // get the run loader
1462 if (!InitRunLoader()) {
1463 Abort("InitRunLoader", TSelector::kAbortProcess);
1466 AliSysInfo::AddStamp("LoadLoader");
1468 ftVertexer = new AliVertexerTracks(AliTracker::GetBz());
1471 if (!fRunTracking.IsNull() && !CreateTrackers(fRunTracking)) {
1472 Abort("CreateTrackers", TSelector::kAbortProcess);
1475 AliSysInfo::AddStamp("CreateTrackers");
1477 // create the ESD output file and tree
1478 if (!outProofFile) {
1479 ffile = TFile::Open("AliESDs.root", "RECREATE");
1480 ffile->SetCompressionLevel(2);
1481 if (!ffile->IsOpen()) {
1482 Abort("OpenESDFile", TSelector::kAbortProcess);
1487 AliInfo(Form("Opening output PROOF file: %s/%s",
1488 outProofFile->GetDir(), outProofFile->GetFileName()));
1489 if (!(ffile = outProofFile->OpenFile("RECREATE"))) {
1490 Abort(Form("Problems opening output PROOF file: %s/%s",
1491 outProofFile->GetDir(), outProofFile->GetFileName()),
1492 TSelector::kAbortProcess);
1497 ftree = new TTree("esdTree", "Tree with ESD objects");
1498 fesd = new AliESDEvent();
1499 fesd->CreateStdContent();
1501 // add a so far non-std object to the ESD, this will
1502 // become part of the std content
1503 fesd->AddObject(new AliESDHLTDecision);
1505 fesd->WriteToTree(ftree);
1506 if (fWriteESDfriend) {
1508 // Since we add the branch manually we must
1509 // book and add it after WriteToTree
1510 // otherwise it is created twice,
1511 // once via writetotree and once here.
1512 // The case for AliESDfriend is now
1513 // caught also in AlIESDEvent::WriteToTree but
1514 // be careful when changing the name (AliESDfriend is not
1515 // a TNamed so we had to hardwire it)
1516 fesdf = new AliESDfriend();
1517 TBranch *br=ftree->Branch("ESDfriend.","AliESDfriend", &fesdf);
1518 br->SetFile("AliESDfriends.root");
1519 fesd->AddObject(fesdf);
1521 ftree->GetUserInfo()->Add(fesd);
1523 fhlttree = new TTree("HLTesdTree", "Tree with HLT ESD objects");
1524 fhltesd = new AliESDEvent();
1525 fhltesd->CreateStdContent();
1527 // read the ESD template from CDB
1528 // HLT is allowed to put non-std content to its ESD, the non-std
1529 // objects need to be created before invocation of WriteToTree in
1530 // order to create all branches. Initialization is done from an
1531 // ESD layout template in CDB
1532 AliCDBManager* man = AliCDBManager::Instance();
1533 AliCDBPath hltESDConfigPath("HLT/ConfigHLT/esdLayout");
1534 AliCDBEntry* hltESDConfig=NULL;
1535 if (man->GetId(hltESDConfigPath)!=NULL &&
1536 (hltESDConfig=man->Get(hltESDConfigPath))!=NULL) {
1537 AliESDEvent* pESDLayout=dynamic_cast<AliESDEvent*>(hltESDConfig->GetObject());
1539 // init all internal variables from the list of objects
1540 pESDLayout->GetStdContent();
1542 // copy content and create non-std objects
1543 *fhltesd=*pESDLayout;
1546 AliError(Form("error setting hltEsd layout from %s: invalid object type",
1547 hltESDConfigPath.GetPath().Data()));
1551 fhltesd->WriteToTree(fhlttree);
1552 fhlttree->GetUserInfo()->Add(fhltesd);
1554 ProcInfo_t procInfo;
1555 gSystem->GetProcInfo(&procInfo);
1556 AliInfo(Form("Current memory usage %d %d", procInfo.fMemResident, procInfo.fMemVirtual));
1559 //Initialize the QA and start of cycle
1560 if (fRunQA || fRunGlobalQA)
1563 //Initialize the Plane Efficiency framework
1564 if (fRunPlaneEff && !InitPlaneEff()) {
1565 Abort("InitPlaneEff", TSelector::kAbortProcess);
1569 if (strcmp(gProgName,"alieve") == 0)
1570 fRunAliEVE = InitAliEVE();
1575 //_____________________________________________________________________________
1576 Bool_t AliReconstruction::Process(Long64_t entry)
1578 // run the reconstruction over a single entry
1579 // from the chain with raw data
1580 AliCodeTimerAuto("",0);
1582 TTree *currTree = fChain->GetTree();
1583 AliRawVEvent *event = NULL;
1584 currTree->SetBranchAddress("rawevent",&event);
1585 currTree->GetEntry(entry);
1586 fRawReader = new AliRawReaderRoot(event);
1587 fStatus = ProcessEvent(fRunLoader->GetNumberOfEvents());
1595 //_____________________________________________________________________________
1596 void AliReconstruction::Init(TTree *tree)
1599 AliError("The input tree is not found!");
1605 //_____________________________________________________________________________
1606 Bool_t AliReconstruction::ProcessEvent(Int_t iEvent)
1608 // run the reconstruction over a single event
1609 // The event loop is steered in Run method
1611 AliCodeTimerAuto("",0);
1613 if (iEvent >= fRunLoader->GetNumberOfEvents()) {
1614 fRunLoader->SetEventNumber(iEvent);
1615 fRunLoader->GetHeader()->Reset(fRawReader->GetRunNumber(),
1617 fRunLoader->TreeE()->Fill();
1618 if (fRawReader && fRawReader->UseAutoSaveESD())
1619 fRunLoader->TreeE()->AutoSave("SaveSelf");
1622 if ((iEvent < fFirstEvent) || ((fLastEvent >= 0) && (iEvent > fLastEvent))) {
1626 AliInfo(Form("processing event %d", iEvent));
1628 fRunLoader->GetEvent(iEvent);
1630 // Fill Event-info object
1632 fRecoParam.SetEventSpecie(fRunInfo,fEventInfo,fListOfCosmicTriggers);
1633 AliInfo(Form("Current event specie: %s",fRecoParam.PrintEventSpecie()));
1635 // Set the reco-params
1637 TString detStr = fLoadCDB;
1638 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
1639 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
1640 AliReconstructor *reconstructor = GetReconstructor(iDet);
1641 if (reconstructor && fRecoParam.GetDetRecoParamArray(iDet)) {
1642 const AliDetectorRecoParam *par = fRecoParam.GetDetRecoParam(iDet);
1643 reconstructor->SetRecoParam(par);
1644 reconstructor->SetEventInfo(&fEventInfo);
1646 AliQAManager::QAManager()->SetRecoParam(iDet, par) ;
1647 AliQAManager::QAManager()->SetEventSpecie(AliRecoParam::Convert(par->GetEventSpecie())) ;
1654 if (fRunQA && IsInTasks(AliQAv1::kRAWS)) {
1655 AliQAManager::QAManager()->SetEventSpecie(fRecoParam.GetEventSpecie()) ;
1656 AliQAManager::QAManager()->RunOneEvent(fRawReader) ;
1658 // local single event reconstruction
1659 if (!fRunLocalReconstruction.IsNull()) {
1660 TString detectors=fRunLocalReconstruction;
1661 // run HLT event reconstruction first
1662 // ;-( IsSelected changes the string
1663 if (IsSelected("HLT", detectors) &&
1664 !RunLocalEventReconstruction("HLT")) {
1665 if (fStopOnError) {CleanUp(); return kFALSE;}
1667 detectors=fRunLocalReconstruction;
1668 detectors.ReplaceAll("HLT", "");
1669 if (!RunLocalEventReconstruction(detectors)) {
1677 fesd->SetRunNumber(fRunLoader->GetHeader()->GetRun());
1678 fhltesd->SetRunNumber(fRunLoader->GetHeader()->GetRun());
1679 fesd->SetEventNumberInFile(fRunLoader->GetHeader()->GetEventNrInRun());
1680 fhltesd->SetEventNumberInFile(fRunLoader->GetHeader()->GetEventNrInRun());
1682 fesd->SetEventSpecie(fRecoParam.GetEventSpecie());
1683 fhltesd->SetEventSpecie(fRecoParam.GetEventSpecie());
1685 // Set magnetic field from the tracker
1686 fesd->SetMagneticField(AliTracker::GetBz());
1687 fhltesd->SetMagneticField(AliTracker::GetBz());
1689 AliMagF* fld = (AliMagF*)TGeoGlobalMagField::Instance()->GetField();
1690 if (fld) { // set info needed for field initialization
1691 fesd->SetCurrentL3(fld->GetCurrentSol());
1692 fesd->SetCurrentDip(fld->GetCurrentDip());
1693 fesd->SetBeamEnergy(fld->GetBeamEnergy());
1694 fesd->SetBeamType(fld->GetBeamTypeText());
1695 fesd->SetUniformBMap(fld->IsUniform());
1696 fesd->SetBInfoStored();
1698 fhltesd->SetCurrentL3(fld->GetCurrentSol());
1699 fhltesd->SetCurrentDip(fld->GetCurrentDip());
1700 fhltesd->SetBeamEnergy(fld->GetBeamEnergy());
1701 fhltesd->SetBeamType(fld->GetBeamTypeText());
1702 fhltesd->SetUniformBMap(fld->IsUniform());
1703 fhltesd->SetBInfoStored();
1706 // Set most probable pt, for B=0 tracking
1707 // Get the global reco-params. They are atposition 16 inside the array of detectors in fRecoParam
1708 const AliGRPRecoParam *grpRecoParam = dynamic_cast<const AliGRPRecoParam*>(fRecoParam.GetDetRecoParam(kNDetectors));
1709 if (grpRecoParam) AliExternalTrackParam::SetMostProbablePt(grpRecoParam->GetMostProbablePt());
1711 // Fill raw-data error log into the ESD
1712 if (fRawReader) FillRawDataErrorLog(iEvent,fesd);
1715 if (fRunVertexFinder) {
1716 if (!RunVertexFinder(fesd)) {
1717 if (fStopOnError) {CleanUp(); return kFALSE;}
1721 // For Plane Efficiency: run the SPD trackleter
1722 if (fRunPlaneEff && fSPDTrackleter) {
1723 if (!RunSPDTrackleting(fesd)) {
1724 if (fStopOnError) {CleanUp(); return kFALSE;}
1729 if (!fRunTracking.IsNull()) {
1730 if (fRunMuonTracking) {
1731 if (!RunMuonTracking(fesd)) {
1732 if (fStopOnError) {CleanUp(); return kFALSE;}
1738 if (!fRunTracking.IsNull()) {
1739 if (!RunTracking(fesd)) {
1740 if (fStopOnError) {CleanUp(); return kFALSE;}
1745 if (!fFillESD.IsNull()) {
1746 TString detectors=fFillESD;
1747 // run HLT first and on hltesd
1748 // ;-( IsSelected changes the string
1749 if (IsSelected("HLT", detectors) &&
1750 !FillESD(fhltesd, "HLT")) {
1751 if (fStopOnError) {CleanUp(); return kFALSE;}
1754 // Temporary fix to avoid problems with HLT that overwrites the offline ESDs
1755 if (detectors.Contains("ALL")) {
1757 for (Int_t idet=0; idet<kNDetectors; ++idet){
1758 detectors += fgkDetectorName[idet];
1762 detectors.ReplaceAll("HLT", "");
1763 if (!FillESD(fesd, detectors)) {
1764 if (fStopOnError) {CleanUp(); return kFALSE;}
1768 // fill Event header information from the RawEventHeader
1769 if (fRawReader){FillRawEventHeaderESD(fesd);}
1770 if (fRawReader){FillRawEventHeaderESD(fhltesd);}
1773 AliESDpid::MakePID(fesd);
1775 if (fFillTriggerESD) {
1776 if (!FillTriggerESD(fesd)) {
1777 if (fStopOnError) {CleanUp(); return kFALSE;}
1780 // Always fill scalers
1781 if (!FillTriggerScalers(fesd)) {
1782 if (fStopOnError) {CleanUp(); return kFALSE;}
1789 // Propagate track to the beam pipe (if not already done by ITS)
1791 const Int_t ntracks = fesd->GetNumberOfTracks();
1792 const Double_t kRadius = 2.8; //something less than the beam pipe radius
1795 UShort_t *selectedIdx=new UShort_t[ntracks];
1797 for (Int_t itrack=0; itrack<ntracks; itrack++){
1798 const Double_t kMaxStep = 1; //max step over the material
1801 AliESDtrack *track = fesd->GetTrack(itrack);
1802 if (!track) continue;
1804 AliExternalTrackParam *tpcTrack =
1805 (AliExternalTrackParam *)track->GetTPCInnerParam();
1809 PropagateTrackToBxByBz(tpcTrack,kRadius,track->GetMass(),kMaxStep,kFALSE);
1812 Int_t n=trkArray.GetEntriesFast();
1813 selectedIdx[n]=track->GetID();
1814 trkArray.AddLast(tpcTrack);
1817 //Tracks refitted by ITS should already be at the SPD vertex
1818 if (track->IsOn(AliESDtrack::kITSrefit)) continue;
1821 PropagateTrackToBxByBz(track,kRadius,track->GetMass(),kMaxStep,kFALSE);
1822 Double_t x[3]; track->GetXYZ(x);
1823 Double_t b[3]; AliTracker::GetBxByBz(x,b);
1824 track->RelateToVertexBxByBz(fesd->GetPrimaryVertexSPD(), b, kVeryBig);
1829 // Improve the reconstructed primary vertex position using the tracks
1831 Bool_t runVertexFinderTracks = fRunVertexFinderTracks;
1832 if(fesd->GetPrimaryVertexSPD()) {
1833 TString vtitle = fesd->GetPrimaryVertexSPD()->GetTitle();
1834 if(vtitle.Contains("cosmics")) {
1835 runVertexFinderTracks=kFALSE;
1839 if (runVertexFinderTracks) {
1840 // TPC + ITS primary vertex
1841 ftVertexer->SetITSMode();
1842 ftVertexer->SetConstraintOff();
1843 // get cuts for vertexer from AliGRPRecoParam
1845 Int_t nCutsVertexer = grpRecoParam->GetVertexerTracksNCuts();
1846 Double_t *cutsVertexer = new Double_t[nCutsVertexer];
1847 grpRecoParam->GetVertexerTracksCutsITS(cutsVertexer);
1848 ftVertexer->SetCuts(cutsVertexer);
1849 delete [] cutsVertexer; cutsVertexer = NULL;
1850 if(fDiamondProfile && grpRecoParam->GetVertexerTracksConstraintITS())
1851 ftVertexer->SetVtxStart(fDiamondProfile);
1853 AliESDVertex *pvtx=ftVertexer->FindPrimaryVertex(fesd);
1855 if (pvtx->GetStatus()) {
1856 fesd->SetPrimaryVertexTracks(pvtx);
1857 for (Int_t i=0; i<ntracks; i++) {
1858 AliESDtrack *t = fesd->GetTrack(i);
1859 Double_t x[3]; t->GetXYZ(x);
1860 Double_t b[3]; AliTracker::GetBxByBz(x,b);
1861 t->RelateToVertexBxByBz(pvtx, b, kVeryBig);
1864 delete pvtx; pvtx=NULL;
1867 // TPC-only primary vertex
1868 ftVertexer->SetTPCMode();
1869 ftVertexer->SetConstraintOff();
1870 // get cuts for vertexer from AliGRPRecoParam
1872 Int_t nCutsVertexer = grpRecoParam->GetVertexerTracksNCuts();
1873 Double_t *cutsVertexer = new Double_t[nCutsVertexer];
1874 grpRecoParam->GetVertexerTracksCutsTPC(cutsVertexer);
1875 ftVertexer->SetCuts(cutsVertexer);
1876 delete [] cutsVertexer; cutsVertexer = NULL;
1877 if(fDiamondProfileTPC && grpRecoParam->GetVertexerTracksConstraintTPC())
1878 ftVertexer->SetVtxStart(fDiamondProfileTPC);
1880 pvtx=ftVertexer->FindPrimaryVertex(&trkArray,selectedIdx);
1882 if (pvtx->GetStatus()) {
1883 fesd->SetPrimaryVertexTPC(pvtx);
1884 for (Int_t i=0; i<ntracks; i++) {
1885 AliESDtrack *t = fesd->GetTrack(i);
1886 Double_t x[3]; t->GetXYZ(x);
1887 Double_t b[3]; AliTracker::GetBxByBz(x,b);
1888 t->RelateToVertexTPCBxByBz(pvtx, b, kVeryBig);
1891 delete pvtx; pvtx=NULL;
1895 delete[] selectedIdx;
1897 if(fDiamondProfile) fesd->SetDiamond(fDiamondProfile);
1902 AliV0vertexer vtxer;
1903 vtxer.Tracks2V0vertices(fesd);
1905 if (fRunCascadeFinder) {
1907 AliCascadeVertexer cvtxer;
1908 cvtxer.V0sTracks2CascadeVertices(fesd);
1913 if (fCleanESD) CleanESD(fesd);
1915 if (fRunQA && IsInTasks(AliQAv1::kESDS)) {
1916 AliQAManager::QAManager()->SetEventSpecie(fRecoParam.GetEventSpecie()) ;
1917 AliQAManager::QAManager()->RunOneEvent(fesd, fhltesd) ;
1920 AliQADataMaker *qadm = AliQAManager::QAManager()->GetQADataMaker(AliQAv1::kGLOBAL);
1921 qadm->SetEventSpecie(fRecoParam.GetEventSpecie()) ;
1922 if (qadm && IsInTasks(AliQAv1::kESDS))
1923 qadm->Exec(AliQAv1::kESDS, fesd);
1926 // copy HLT decision from HLTesd to esd
1927 // the most relevant information is stored in a reduced container in the esd,
1928 // while the full information can be found in the HLTesd
1929 TObject* pHLTSrc=fhltesd->FindListObject(AliESDHLTDecision::Name());
1930 TObject* pHLTTgt=fesd->FindListObject(AliESDHLTDecision::Name());
1931 if (pHLTSrc && pHLTTgt) {
1932 pHLTSrc->Copy(*pHLTTgt);
1935 if (fWriteESDfriend) {
1936 // fesdf->~AliESDfriend();
1937 // new (fesdf) AliESDfriend(); // Reset...
1938 fesd->GetESDfriend(fesdf);
1942 // Auto-save the ESD tree in case of prompt reco @P2
1943 if (fRawReader && fRawReader->UseAutoSaveESD()) {
1944 ftree->AutoSave("SaveSelf");
1945 TFile *friendfile = (TFile *)(gROOT->GetListOfFiles()->FindObject("AliESDfriends.root"));
1946 if (friendfile) friendfile->Save();
1953 if (fRunAliEVE) RunAliEVE();
1957 if (fWriteESDfriend) {
1958 fesdf->~AliESDfriend();
1959 new (fesdf) AliESDfriend(); // Reset...
1962 ProcInfo_t procInfo;
1963 gSystem->GetProcInfo(&procInfo);
1964 AliInfo(Form("Event %d -> Current memory usage %d %d",iEvent, procInfo.fMemResident, procInfo.fMemVirtual));
1967 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
1968 if (fReconstructor[iDet]) {
1969 fReconstructor[iDet]->SetRecoParam(NULL);
1970 fReconstructor[iDet]->SetEventInfo(NULL);
1972 if (fTracker[iDet]) fTracker[iDet]->SetEventInfo(NULL);
1975 if (fRunQA || fRunGlobalQA)
1976 AliQAManager::QAManager()->Increment() ;
1981 //_____________________________________________________________________________
1982 void AliReconstruction::SlaveTerminate()
1984 // Finalize the run on the slave side
1985 // Called after the exit
1986 // from the event loop
1987 AliCodeTimerAuto("",0);
1989 if (fIsNewRunLoader) { // galice.root didn't exist
1990 fRunLoader->WriteHeader("OVERWRITE");
1991 fRunLoader->CdGAFile();
1992 fRunLoader->Write(0, TObject::kOverwrite);
1995 const TMap *cdbMap = AliCDBManager::Instance()->GetStorageMap();
1996 const TList *cdbList = AliCDBManager::Instance()->GetRetrievedIds();
1998 TMap *cdbMapCopy = new TMap(cdbMap->GetEntries());
1999 cdbMapCopy->SetOwner(1);
2000 cdbMapCopy->SetName("cdbMap");
2001 TIter iter(cdbMap->GetTable());
2004 while((pair = dynamic_cast<TPair*> (iter.Next()))){
2005 TObjString* keyStr = dynamic_cast<TObjString*> (pair->Key());
2006 TObjString* valStr = dynamic_cast<TObjString*> (pair->Value());
2007 cdbMapCopy->Add(new TObjString(keyStr->GetName()), new TObjString(valStr->GetName()));
2010 TList *cdbListCopy = new TList();
2011 cdbListCopy->SetOwner(1);
2012 cdbListCopy->SetName("cdbList");
2014 TIter iter2(cdbList);
2017 while((id = dynamic_cast<AliCDBId*> (iter2.Next()))){
2018 cdbListCopy->Add(new TObjString(id->ToString().Data()));
2021 ftree->GetUserInfo()->Add(cdbMapCopy);
2022 ftree->GetUserInfo()->Add(cdbListCopy);
2027 if (fWriteESDfriend)
2028 ftree->SetBranchStatus("ESDfriend*",0);
2029 // we want to have only one tree version number
2030 ftree->Write(ftree->GetName(),TObject::kOverwrite);
2031 fhlttree->Write(fhlttree->GetName(),TObject::kOverwrite);
2033 // Finish with Plane Efficiency evaluation: before of CleanUp !!!
2034 if (fRunPlaneEff && !FinishPlaneEff()) {
2035 AliWarning("Finish PlaneEff evaluation failed");
2038 // End of cycle for the in-loop
2040 if (fRunQA || fRunGlobalQA) {
2041 AliQAManager::QAManager()->EndOfCycle() ;
2043 !fProofOutputLocation.IsNull() &&
2044 fProofOutputArchive.IsNull() &&
2045 !fProofOutputDataset) {
2046 TString qaOutputFile(Form("%sMerged.%s.Data.root",
2047 fProofOutputLocation.Data(),
2048 AliQAv1::GetQADataFileName()));
2049 TProofOutputFile *qaProofFile = new TProofOutputFile(Form("Merged.%s.Data.root",
2050 AliQAv1::GetQADataFileName()));
2051 qaProofFile->SetOutputFileName(qaOutputFile.Data());
2052 if (AliDebugLevel() > 0) qaProofFile->Dump();
2053 fOutput->Add(qaProofFile);
2054 MergeQA(qaProofFile->GetFileName());
2065 if (!fProofOutputFileName.IsNull() &&
2066 !fProofOutputLocation.IsNull() &&
2067 fProofOutputDataset &&
2068 !fProofOutputArchive.IsNull()) {
2069 TProofOutputFile *zipProofFile = new TProofOutputFile(fProofOutputFileName.Data(),
2071 fProofOutputLocation.Data());
2072 if (AliDebugLevel() > 0) zipProofFile->Dump();
2073 fOutput->Add(zipProofFile);
2074 TString fileList(fProofOutputArchive.Data());
2075 fileList.ReplaceAll(","," ");
2077 #if ROOT_SVN_REVISION >= 30174
2078 command.Form("zip -n root %s/%s %s",zipProofFile->GetDir(kTRUE),zipProofFile->GetFileName(),fileList.Data());
2080 command.Form("zip -n root %s/%s %s",zipProofFile->GetDir(),zipProofFile->GetFileName(),fileList.Data());
2082 AliInfo(Form("Executing: %s",command.Data()));
2083 gSystem->Exec(command.Data());
2088 //_____________________________________________________________________________
2089 void AliReconstruction::Terminate()
2091 // Create tags for the events in the ESD tree (the ESD tree is always present)
2092 // In case of empty events the tags will contain dummy values
2093 AliCodeTimerAuto("",0);
2095 // Do not call the ESD tag creator in case of PROOF-based reconstruction
2097 AliESDTagCreator *esdtagCreator = new AliESDTagCreator();
2098 esdtagCreator->CreateESDTags(fFirstEvent,fLastEvent,fGRPData, AliQAv1::Instance()->GetQA(), AliQAv1::Instance()->GetEventSpecies(), AliQAv1::kNDET, AliRecoParam::kNSpecies);
2099 delete esdtagCreator;
2102 // Cleanup of CDB manager: cache and active storages!
2103 AliCDBManager::Instance()->ClearCache();
2106 //_____________________________________________________________________________
2107 Bool_t AliReconstruction::RunLocalEventReconstruction(const TString& detectors)
2109 // run the local reconstruction
2111 static Int_t eventNr=0;
2112 AliCodeTimerAuto("",0)
2114 TString detStr = detectors;
2115 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2116 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
2117 AliReconstructor* reconstructor = GetReconstructor(iDet);
2118 if (!reconstructor) continue;
2119 AliLoader* loader = fLoader[iDet];
2120 // Matthias April 2008: temporary fix to run HLT reconstruction
2121 // although the HLT loader is missing
2122 if (strcmp(fgkDetectorName[iDet], "HLT")==0) {
2124 reconstructor->Reconstruct(fRawReader, NULL);
2127 reconstructor->Reconstruct(dummy, NULL);
2132 AliWarning(Form("No loader is defined for %s!",fgkDetectorName[iDet]));
2135 // conversion of digits
2136 if (fRawReader && reconstructor->HasDigitConversion()) {
2137 AliInfo(Form("converting raw data digits into root objects for %s",
2138 fgkDetectorName[iDet]));
2139 // AliCodeTimerAuto(Form("converting raw data digits into root objects for %s",
2140 // fgkDetectorName[iDet]),0);
2141 loader->LoadDigits("update");
2142 loader->CleanDigits();
2143 loader->MakeDigitsContainer();
2144 TTree* digitsTree = loader->TreeD();
2145 reconstructor->ConvertDigits(fRawReader, digitsTree);
2146 loader->WriteDigits("OVERWRITE");
2147 loader->UnloadDigits();
2149 // local reconstruction
2150 AliInfo(Form("running reconstruction for %s", fgkDetectorName[iDet]));
2151 //AliCodeTimerAuto(Form("running reconstruction for %s", fgkDetectorName[iDet]),0);
2152 loader->LoadRecPoints("update");
2153 loader->CleanRecPoints();
2154 loader->MakeRecPointsContainer();
2155 TTree* clustersTree = loader->TreeR();
2156 if (fRawReader && !reconstructor->HasDigitConversion()) {
2157 reconstructor->Reconstruct(fRawReader, clustersTree);
2159 loader->LoadDigits("read");
2160 TTree* digitsTree = loader->TreeD();
2162 AliError(Form("Can't get the %s digits tree", fgkDetectorName[iDet]));
2166 reconstructor->Reconstruct(digitsTree, clustersTree);
2167 if (fRunQA && IsInTasks(AliQAv1::kDIGITSR)) {
2168 AliQAManager::QAManager()->SetEventSpecie(fRecoParam.GetEventSpecie()) ;
2169 AliQAManager::QAManager()->RunOneEventInOneDetector(iDet, digitsTree) ;
2172 loader->UnloadDigits();
2174 if (fRunQA && IsInTasks(AliQAv1::kRECPOINTS)) {
2175 AliQAManager::QAManager()->SetEventSpecie(fRecoParam.GetEventSpecie()) ;
2176 AliQAManager::QAManager()->RunOneEventInOneDetector(iDet, clustersTree) ;
2178 loader->WriteRecPoints("OVERWRITE");
2179 loader->UnloadRecPoints();
2180 AliSysInfo::AddStamp(Form("LRec%s_%d",fgkDetectorName[iDet],eventNr), iDet,1,eventNr);
2182 IsSelected("CTP", detStr);
2183 if ((detStr.CompareTo("ALL") != 0) && !detStr.IsNull()) {
2184 AliError(Form("the following detectors were not found: %s",
2192 //_____________________________________________________________________________
2193 Bool_t AliReconstruction::RunSPDTrackleting(AliESDEvent*& esd)
2195 // run the SPD trackleting (for SPD efficiency purpouses)
2197 AliCodeTimerAuto("",0)
2199 Double_t vtxPos[3] = {0, 0, 0};
2200 Double_t vtxErr[3] = {0.0, 0.0, 0.0};
2202 TArrayF mcVertex(3);
2204 if (fRunLoader->GetHeader() && fRunLoader->GetHeader()->GenEventHeader()) {
2205 fRunLoader->GetHeader()->GenEventHeader()->PrimaryVertex(mcVertex);
2206 for (Int_t i = 0; i < 3; i++) vtxPos[i] = mcVertex[i];
2209 const AliESDVertex *vertex = esd->GetVertex();
2211 AliWarning("Vertex not found");
2214 vertex->GetXYZ(vtxPos);
2215 vertex->GetSigmaXYZ(vtxErr);
2216 if (fSPDTrackleter) {
2217 AliInfo("running the SPD Trackleter for Plane Efficiency Evaluation");
2220 fLoader[0]->LoadRecPoints("read");
2221 TTree* tree = fLoader[0]->TreeR();
2223 AliError("Can't get the ITS cluster tree");
2226 fSPDTrackleter->LoadClusters(tree);
2227 fSPDTrackleter->SetVertex(vtxPos, vtxErr);
2229 if (fSPDTrackleter->Clusters2Tracks(esd) != 0) {
2230 AliError("AliITSTrackleterSPDEff Clusters2Tracks failed");
2231 // fLoader[0]->UnloadRecPoints();
2234 //fSPDTrackleter->UnloadRecPoints();
2236 AliWarning("SPDTrackleter not available");
2242 //_____________________________________________________________________________
2243 Bool_t AliReconstruction::RunVertexFinder(AliESDEvent*& esd)
2245 // run the barrel tracking
2247 AliCodeTimerAuto("",0)
2249 AliVertexer *vertexer = CreateVertexer();
2250 if (!vertexer) return kFALSE;
2252 AliInfo("running the ITS vertex finder");
2253 AliESDVertex* vertex = NULL;
2255 fLoader[0]->LoadRecPoints();
2256 TTree* cltree = fLoader[0]->TreeR();
2258 if(fDiamondProfileSPD) vertexer->SetVtxStart(fDiamondProfileSPD);
2259 vertex = vertexer->FindVertexForCurrentEvent(cltree);
2262 AliError("Can't get the ITS cluster tree");
2264 fLoader[0]->UnloadRecPoints();
2267 AliError("Can't get the ITS loader");
2270 AliWarning("Vertex not found");
2271 vertex = new AliESDVertex();
2272 vertex->SetName("default");
2275 vertex->SetName("reconstructed");
2280 vertex->GetXYZ(vtxPos);
2281 vertex->GetSigmaXYZ(vtxErr);
2283 esd->SetPrimaryVertexSPD(vertex);
2284 AliESDVertex *vpileup = NULL;
2285 Int_t novertices = 0;
2286 vpileup = vertexer->GetAllVertices(novertices);
2288 for (Int_t kk=1; kk<novertices; kk++)esd->AddPileupVertexSPD(&vpileup[kk]);
2290 // if SPD multiplicity has been determined, it is stored in the ESD
2291 AliMultiplicity *mult = vertexer->GetMultiplicity();
2292 if(mult)esd->SetMultiplicity(mult);
2294 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2295 if (fTracker[iDet]) fTracker[iDet]->SetVertex(vtxPos, vtxErr);
2304 //_____________________________________________________________________________
2305 Bool_t AliReconstruction::RunHLTTracking(AliESDEvent*& esd)
2307 // run the HLT barrel tracking
2309 AliCodeTimerAuto("",0)
2312 AliError("Missing runLoader!");
2316 AliInfo("running HLT tracking");
2318 // Get a pointer to the HLT reconstructor
2319 AliReconstructor *reconstructor = GetReconstructor(kNDetectors-1);
2320 if (!reconstructor) return kFALSE;
2323 for (Int_t iDet = 1; iDet >= 0; iDet--) {
2324 TString detName = fgkDetectorName[iDet];
2325 AliDebug(1, Form("%s HLT tracking", detName.Data()));
2326 reconstructor->SetOption(detName.Data());
2327 AliTracker *tracker = reconstructor->CreateTracker();
2329 AliWarning(Form("couldn't create a HLT tracker for %s", detName.Data()));
2330 if (fStopOnError) return kFALSE;
2334 Double_t vtxErr[3]={0.005,0.005,0.010};
2335 const AliESDVertex *vertex = esd->GetVertex();
2336 vertex->GetXYZ(vtxPos);
2337 tracker->SetVertex(vtxPos,vtxErr);
2339 fLoader[iDet]->LoadRecPoints("read");
2340 TTree* tree = fLoader[iDet]->TreeR();
2342 AliError(Form("Can't get the %s cluster tree", detName.Data()));
2345 tracker->LoadClusters(tree);
2347 if (tracker->Clusters2Tracks(esd) != 0) {
2348 AliError(Form("HLT %s Clusters2Tracks failed", fgkDetectorName[iDet]));
2352 tracker->UnloadClusters();
2360 //_____________________________________________________________________________
2361 Bool_t AliReconstruction::RunMuonTracking(AliESDEvent*& esd)
2363 // run the muon spectrometer tracking
2365 AliCodeTimerAuto("",0)
2368 AliError("Missing runLoader!");
2371 Int_t iDet = 7; // for MUON
2373 AliInfo("is running...");
2375 // Get a pointer to the MUON reconstructor
2376 AliReconstructor *reconstructor = GetReconstructor(iDet);
2377 if (!reconstructor) return kFALSE;
2380 TString detName = fgkDetectorName[iDet];
2381 AliDebug(1, Form("%s tracking", detName.Data()));
2382 AliTracker *tracker = reconstructor->CreateTracker();
2384 AliWarning(Form("couldn't create a tracker for %s", detName.Data()));
2389 fLoader[iDet]->LoadRecPoints("read");
2391 tracker->LoadClusters(fLoader[iDet]->TreeR());
2393 Int_t rv = tracker->Clusters2Tracks(esd);
2395 fLoader[iDet]->UnloadRecPoints();
2397 tracker->UnloadClusters();
2403 AliError(Form("%s Clusters2Tracks failed", fgkDetectorName[iDet]));
2411 //_____________________________________________________________________________
2412 Bool_t AliReconstruction::RunTracking(AliESDEvent*& esd)
2414 // run the barrel tracking
2415 static Int_t eventNr=0;
2416 AliCodeTimerAuto("",0)
2418 AliInfo("running tracking");
2420 // Set the event info which is used
2421 // by the trackers in order to obtain
2422 // information about read-out detectors,
2424 AliDebug(1, "Setting event info");
2425 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2426 if (!fTracker[iDet]) continue;
2427 fTracker[iDet]->SetEventInfo(&fEventInfo);
2430 //Fill the ESD with the T0 info (will be used by the TOF)
2431 if (fReconstructor[11] && fLoader[11]) {
2432 fLoader[11]->LoadRecPoints("READ");
2433 TTree *treeR = fLoader[11]->TreeR();
2435 GetReconstructor(11)->FillESD((TTree *)NULL,treeR,esd);
2439 // pass 1: TPC + ITS inwards
2440 for (Int_t iDet = 1; iDet >= 0; iDet--) {
2441 if (!fTracker[iDet]) continue;
2442 AliDebug(1, Form("%s tracking", fgkDetectorName[iDet]));
2445 fLoader[iDet]->LoadRecPoints("read");
2446 AliSysInfo::AddStamp(Form("RLoadCluster%s_%d",fgkDetectorName[iDet],eventNr),iDet,1, eventNr);
2447 TTree* tree = fLoader[iDet]->TreeR();
2449 AliError(Form("Can't get the %s cluster tree", fgkDetectorName[iDet]));
2452 fTracker[iDet]->LoadClusters(tree);
2453 AliSysInfo::AddStamp(Form("TLoadCluster%s_%d",fgkDetectorName[iDet],eventNr), iDet,2, eventNr);
2455 if (fTracker[iDet]->Clusters2Tracks(esd) != 0) {
2456 AliError(Form("%s Clusters2Tracks failed", fgkDetectorName[iDet]));
2459 // preliminary PID in TPC needed by the ITS tracker
2461 GetReconstructor(1)->FillESD((TTree*)NULL, (TTree*)NULL, esd);
2462 AliESDpid::MakePID(esd);
2464 AliSysInfo::AddStamp(Form("Tracking0%s_%d",fgkDetectorName[iDet],eventNr), iDet,3,eventNr);
2467 // pass 2: ALL backwards
2469 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2470 if (!fTracker[iDet]) continue;
2471 AliDebug(1, Form("%s back propagation", fgkDetectorName[iDet]));
2474 if (iDet > 1) { // all except ITS, TPC
2476 fLoader[iDet]->LoadRecPoints("read");
2477 AliSysInfo::AddStamp(Form("RLoadCluster0%s_%d",fgkDetectorName[iDet],eventNr), iDet,1, eventNr);
2478 tree = fLoader[iDet]->TreeR();
2480 AliError(Form("Can't get the %s cluster tree", fgkDetectorName[iDet]));
2483 fTracker[iDet]->LoadClusters(tree);
2484 AliSysInfo::AddStamp(Form("TLoadCluster0%s_%d",fgkDetectorName[iDet],eventNr), iDet,2, eventNr);
2488 if (iDet>1) // start filling residuals for the "outer" detectors
2490 AliTracker::SetFillResiduals(fRecoParam.GetEventSpecie(), kTRUE);
2491 TObjArray ** arr = AliTracker::GetResidualsArray() ;
2493 AliRecoParam::EventSpecie_t es=fRecoParam.GetEventSpecie();
2494 TObjArray * elem = arr[AliRecoParam::AConvert(es)];
2495 if ( elem && (! elem->At(0)) ) {
2496 AliQADataMaker *qadm = AliQAManager::QAManager()->GetQADataMaker(AliQAv1::kGLOBAL);
2497 if (qadm) qadm->InitRecPointsForTracker() ;
2501 if (fTracker[iDet]->PropagateBack(esd) != 0) {
2502 AliError(Form("%s backward propagation failed", fgkDetectorName[iDet]));
2507 if (iDet > 3) { // all except ITS, TPC, TRD and TOF
2508 fTracker[iDet]->UnloadClusters();
2509 fLoader[iDet]->UnloadRecPoints();
2511 // updated PID in TPC needed by the ITS tracker -MI
2513 GetReconstructor(1)->FillESD((TTree*)NULL, (TTree*)NULL, esd);
2514 AliESDpid::MakePID(esd);
2516 AliSysInfo::AddStamp(Form("Tracking1%s_%d",fgkDetectorName[iDet],eventNr), iDet,3, eventNr);
2518 //stop filling residuals for the "outer" detectors
2519 if (fRunGlobalQA) AliTracker::SetFillResiduals(fRecoParam.GetEventSpecie(), kFALSE);
2521 // pass 3: TRD + TPC + ITS refit inwards
2523 for (Int_t iDet = 2; iDet >= 0; iDet--) {
2524 if (!fTracker[iDet]) continue;
2525 AliDebug(1, Form("%s inward refit", fgkDetectorName[iDet]));
2528 if (iDet<2) // start filling residuals for TPC and ITS
2530 AliTracker::SetFillResiduals(fRecoParam.GetEventSpecie(), kTRUE);
2531 TObjArray ** arr = AliTracker::GetResidualsArray() ;
2533 AliRecoParam::EventSpecie_t es=fRecoParam.GetEventSpecie();
2534 TObjArray * elem = arr[AliRecoParam::AConvert(es)];
2535 if ( elem && (! elem->At(0)) ) {
2536 AliQADataMaker *qadm = AliQAManager::QAManager()->GetQADataMaker(AliQAv1::kGLOBAL);
2537 if (qadm) qadm->InitRecPointsForTracker() ;
2542 if (fTracker[iDet]->RefitInward(esd) != 0) {
2543 AliError(Form("%s inward refit failed", fgkDetectorName[iDet]));
2546 // run postprocessing
2547 if (fTracker[iDet]->PostProcess(esd) != 0) {
2548 AliError(Form("%s postprocessing failed", fgkDetectorName[iDet]));
2551 AliSysInfo::AddStamp(Form("Tracking2%s_%d",fgkDetectorName[iDet],eventNr), iDet,3, eventNr);
2554 // write space-points to the ESD in case alignment data output
2556 if (fWriteAlignmentData)
2557 WriteAlignmentData(esd);
2559 for (Int_t iDet = 3; iDet >= 0; iDet--) {
2560 if (!fTracker[iDet]) continue;
2562 fTracker[iDet]->UnloadClusters();
2563 AliSysInfo::AddStamp(Form("TUnloadCluster%s_%d",fgkDetectorName[iDet],eventNr), iDet,4, eventNr);
2564 fLoader[iDet]->UnloadRecPoints();
2565 AliSysInfo::AddStamp(Form("RUnloadCluster%s_%d",fgkDetectorName[iDet],eventNr), iDet,5, eventNr);
2567 // stop filling residuals for TPC and ITS
2568 if (fRunGlobalQA) AliTracker::SetFillResiduals(fRecoParam.GetEventSpecie(), kFALSE);
2574 //_____________________________________________________________________________
2575 Bool_t AliReconstruction::CleanESD(AliESDEvent *esd){
2577 // Remove the data which are not needed for the physics analysis.
2580 Int_t nTracks=esd->GetNumberOfTracks();
2581 Int_t nV0s=esd->GetNumberOfV0s();
2583 (Form("Number of ESD tracks and V0s before cleaning: %d %d",nTracks,nV0s));
2585 Float_t cleanPars[]={fV0DCAmax,fV0CsPmin,fDmax,fZmax};
2586 Bool_t rc=esd->Clean(cleanPars);
2588 nTracks=esd->GetNumberOfTracks();
2589 nV0s=esd->GetNumberOfV0s();
2591 (Form("Number of ESD tracks and V0s after cleaning %d %d",nTracks,nV0s));
2596 //_____________________________________________________________________________
2597 Bool_t AliReconstruction::FillESD(AliESDEvent*& esd, const TString& detectors)
2599 // fill the event summary data
2601 AliCodeTimerAuto("",0)
2602 static Int_t eventNr=0;
2603 TString detStr = detectors;
2605 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2606 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
2607 AliReconstructor* reconstructor = GetReconstructor(iDet);
2608 if (!reconstructor) continue;
2609 AliDebug(1, Form("filling ESD for %s", fgkDetectorName[iDet]));
2610 TTree* clustersTree = NULL;
2611 if (fLoader[iDet]) {
2612 fLoader[iDet]->LoadRecPoints("read");
2613 clustersTree = fLoader[iDet]->TreeR();
2614 if (!clustersTree) {
2615 AliError(Form("Can't get the %s clusters tree",
2616 fgkDetectorName[iDet]));
2617 if (fStopOnError) return kFALSE;
2620 if (fRawReader && !reconstructor->HasDigitConversion()) {
2621 reconstructor->FillESD(fRawReader, clustersTree, esd);
2623 TTree* digitsTree = NULL;
2624 if (fLoader[iDet]) {
2625 fLoader[iDet]->LoadDigits("read");
2626 digitsTree = fLoader[iDet]->TreeD();
2628 AliError(Form("Can't get the %s digits tree",
2629 fgkDetectorName[iDet]));
2630 if (fStopOnError) return kFALSE;
2633 reconstructor->FillESD(digitsTree, clustersTree, esd);
2634 if (fLoader[iDet]) fLoader[iDet]->UnloadDigits();
2636 if (fLoader[iDet]) {
2637 fLoader[iDet]->UnloadRecPoints();
2641 IsSelected("CTP", detStr);
2642 if ((detStr.CompareTo("ALL") != 0) && !detStr.IsNull()) {
2643 AliError(Form("the following detectors were not found: %s",
2645 if (fStopOnError) return kFALSE;
2647 AliSysInfo::AddStamp(Form("FillESD%d",eventNr), 0,1, eventNr);
2652 //_____________________________________________________________________________
2653 Bool_t AliReconstruction::FillTriggerESD(AliESDEvent*& esd)
2655 // Reads the trigger decision which is
2656 // stored in Trigger.root file and fills
2657 // the corresponding esd entries
2659 AliCodeTimerAuto("",0)
2661 AliInfo("Filling trigger information into the ESD");
2664 AliCTPRawStream input(fRawReader);
2665 if (!input.Next()) {
2666 AliWarning("No valid CTP (trigger) DDL raw data is found ! The trigger info is taken from the event header!");
2669 if (esd->GetTriggerMask() != input.GetClassMask())
2670 AliError(Form("Invalid trigger pattern found in CTP raw-data: %llx %llx",
2671 input.GetClassMask(),esd->GetTriggerMask()));
2672 if (esd->GetOrbitNumber() != input.GetOrbitID())
2673 AliError(Form("Invalid orbit id found in CTP raw-data: %x %x",
2674 input.GetOrbitID(),esd->GetOrbitNumber()));
2675 if (esd->GetBunchCrossNumber() != input.GetBCID())
2676 AliError(Form("Invalid bunch-crossing id found in CTP raw-data: %x %x",
2677 input.GetBCID(),esd->GetBunchCrossNumber()));
2678 AliESDHeader* esdheader = esd->GetHeader();
2679 esdheader->SetL0TriggerInputs(input.GetL0Inputs());
2680 esdheader->SetL1TriggerInputs(input.GetL1Inputs());
2681 esdheader->SetL2TriggerInputs(input.GetL2Inputs());
2683 UInt_t orbit=input.GetOrbitID();
2684 for(Int_t i=0 ; i<input.GetNIRs() ; i++ )
2685 if(TMath::Abs(Int_t(orbit-(input.GetIR(i))->GetOrbit()))<=1){
2686 esdheader->AddTriggerIR(input.GetIR(i));
2692 //_____________________________________________________________________________
2693 Bool_t AliReconstruction::FillTriggerScalers(AliESDEvent*& esd)
2696 //fRunScalers->Print();
2697 if(fRunScalers && fRunScalers->CheckRunScalers()){
2698 AliTimeStamp* timestamp = new AliTimeStamp(esd->GetOrbitNumber(), esd->GetPeriodNumber(), esd->GetBunchCrossNumber());
2699 //AliTimeStamp* timestamp = new AliTimeStamp(10308000, 0, (ULong64_t)486238);
2700 AliESDHeader* esdheader = fesd->GetHeader();
2701 for(Int_t i=0;i<50;i++){
2702 if((1ull<<i) & esd->GetTriggerMask()){
2703 AliTriggerScalersESD* scalesd = fRunScalers->GetScalersForEventClass( timestamp, i+1);
2704 if(scalesd)esdheader->SetTriggerScalersRecord(scalesd);
2710 //_____________________________________________________________________________
2711 Bool_t AliReconstruction::FillRawEventHeaderESD(AliESDEvent*& esd)
2714 // Filling information from RawReader Header
2717 if (!fRawReader) return kFALSE;
2719 AliInfo("Filling information from RawReader Header");
2721 esd->SetBunchCrossNumber(fRawReader->GetBCID());
2722 esd->SetOrbitNumber(fRawReader->GetOrbitID());
2723 esd->SetPeriodNumber(fRawReader->GetPeriod());
2725 esd->SetTimeStamp(fRawReader->GetTimestamp());
2726 esd->SetEventType(fRawReader->GetType());
2732 //_____________________________________________________________________________
2733 Bool_t AliReconstruction::IsSelected(TString detName, TString& detectors) const
2735 // check whether detName is contained in detectors
2736 // if yes, it is removed from detectors
2738 // check if all detectors are selected
2739 if ((detectors.CompareTo("ALL") == 0) ||
2740 detectors.BeginsWith("ALL ") ||
2741 detectors.EndsWith(" ALL") ||
2742 detectors.Contains(" ALL ")) {
2747 // search for the given detector
2748 Bool_t result = kFALSE;
2749 if ((detectors.CompareTo(detName) == 0) ||
2750 detectors.BeginsWith(detName+" ") ||
2751 detectors.EndsWith(" "+detName) ||
2752 detectors.Contains(" "+detName+" ")) {
2753 detectors.ReplaceAll(detName, "");
2757 // clean up the detectors string
2758 while (detectors.Contains(" ")) detectors.ReplaceAll(" ", " ");
2759 while (detectors.BeginsWith(" ")) detectors.Remove(0, 1);
2760 while (detectors.EndsWith(" ")) detectors.Remove(detectors.Length()-1, 1);
2765 //_____________________________________________________________________________
2766 Bool_t AliReconstruction::InitRunLoader()
2768 // get or create the run loader
2770 if (gAlice) delete gAlice;
2773 TFile *gafile = TFile::Open(fGAliceFileName.Data());
2774 // if (!gSystem->AccessPathName(fGAliceFileName.Data())) { // galice.root exists
2775 if (gafile) { // galice.root exists
2779 // load all base libraries to get the loader classes
2780 TString libs = gSystem->GetLibraries();
2781 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2782 TString detName = fgkDetectorName[iDet];
2783 if (detName == "HLT") continue;
2784 if (libs.Contains("lib" + detName + "base.so")) continue;
2785 gSystem->Load("lib" + detName + "base.so");
2787 fRunLoader = AliRunLoader::Open(fGAliceFileName.Data());
2789 AliError(Form("no run loader found in file %s", fGAliceFileName.Data()));
2794 fRunLoader->CdGAFile();
2795 fRunLoader->LoadgAlice();
2797 //PH This is a temporary fix to give access to the kinematics
2798 //PH that is needed for the labels of ITS clusters
2799 fRunLoader->LoadHeader();
2800 fRunLoader->LoadKinematics();
2802 } else { // galice.root does not exist
2804 AliError(Form("the file %s does not exist", fGAliceFileName.Data()));
2806 fRunLoader = AliRunLoader::Open(fGAliceFileName.Data(),
2807 AliConfig::GetDefaultEventFolderName(),
2810 AliError(Form("could not create run loader in file %s",
2811 fGAliceFileName.Data()));
2815 fIsNewRunLoader = kTRUE;
2816 fRunLoader->MakeTree("E");
2818 if (fNumberOfEventsPerFile > 0)
2819 fRunLoader->SetNumberOfEventsPerFile(fNumberOfEventsPerFile);
2821 fRunLoader->SetNumberOfEventsPerFile((UInt_t)-1);
2827 //_____________________________________________________________________________
2828 AliReconstructor* AliReconstruction::GetReconstructor(Int_t iDet)
2830 // get the reconstructor object and the loader for a detector
2832 if (fReconstructor[iDet]) {
2833 if (fRecoParam.GetDetRecoParamArray(iDet) && !AliReconstructor::GetRecoParam(iDet)) {
2834 const AliDetectorRecoParam *par = fRecoParam.GetDetRecoParam(iDet);
2835 fReconstructor[iDet]->SetRecoParam(par);
2836 fReconstructor[iDet]->SetRunInfo(fRunInfo);
2838 return fReconstructor[iDet];
2841 // load the reconstructor object
2842 TPluginManager* pluginManager = gROOT->GetPluginManager();
2843 TString detName = fgkDetectorName[iDet];
2844 TString recName = "Ali" + detName + "Reconstructor";
2846 if (!fIsNewRunLoader && !fRunLoader->GetLoader(detName+"Loader") && (detName != "HLT")) return NULL;
2848 AliReconstructor* reconstructor = NULL;
2849 // first check if a plugin is defined for the reconstructor
2850 TPluginHandler* pluginHandler =
2851 pluginManager->FindHandler("AliReconstructor", detName);
2852 // if not, add a plugin for it
2853 if (!pluginHandler) {
2854 AliDebug(1, Form("defining plugin for %s", recName.Data()));
2855 TString libs = gSystem->GetLibraries();
2856 if (libs.Contains("lib" + detName + "base.so") ||
2857 (gSystem->Load("lib" + detName + "base.so") >= 0)) {
2858 pluginManager->AddHandler("AliReconstructor", detName,
2859 recName, detName + "rec", recName + "()");
2861 pluginManager->AddHandler("AliReconstructor", detName,
2862 recName, detName, recName + "()");
2864 pluginHandler = pluginManager->FindHandler("AliReconstructor", detName);
2866 if (pluginHandler && (pluginHandler->LoadPlugin() == 0)) {
2867 reconstructor = (AliReconstructor*) pluginHandler->ExecPlugin(0);
2869 if (reconstructor) {
2870 TObject* obj = fOptions.FindObject(detName.Data());
2871 if (obj) reconstructor->SetOption(obj->GetTitle());
2872 reconstructor->SetRunInfo(fRunInfo);
2873 reconstructor->Init();
2874 fReconstructor[iDet] = reconstructor;
2877 // get or create the loader
2878 if (detName != "HLT") {
2879 fLoader[iDet] = fRunLoader->GetLoader(detName + "Loader");
2880 if (!fLoader[iDet]) {
2881 AliConfig::Instance()
2882 ->CreateDetectorFolders(fRunLoader->GetEventFolder(),
2884 // first check if a plugin is defined for the loader
2886 pluginManager->FindHandler("AliLoader", detName);
2887 // if not, add a plugin for it
2888 if (!pluginHandler) {
2889 TString loaderName = "Ali" + detName + "Loader";
2890 AliDebug(1, Form("defining plugin for %s", loaderName.Data()));
2891 pluginManager->AddHandler("AliLoader", detName,
2892 loaderName, detName + "base",
2893 loaderName + "(const char*, TFolder*)");
2894 pluginHandler = pluginManager->FindHandler("AliLoader", detName);
2896 if (pluginHandler && (pluginHandler->LoadPlugin() == 0)) {
2898 (AliLoader*) pluginHandler->ExecPlugin(2, detName.Data(),
2899 fRunLoader->GetEventFolder());
2901 if (!fLoader[iDet]) { // use default loader
2902 fLoader[iDet] = new AliLoader(detName, fRunLoader->GetEventFolder());
2904 if (!fLoader[iDet]) {
2905 AliWarning(Form("couldn't get loader for %s", detName.Data()));
2906 if (fStopOnError) return NULL;
2908 fRunLoader->AddLoader(fLoader[iDet]);
2909 fRunLoader->CdGAFile();
2910 if (gFile && !gFile->IsWritable()) gFile->ReOpen("UPDATE");
2911 fRunLoader->Write(0, TObject::kOverwrite);
2916 if (fRecoParam.GetDetRecoParamArray(iDet) && !AliReconstructor::GetRecoParam(iDet)) {
2917 const AliDetectorRecoParam *par = fRecoParam.GetDetRecoParam(iDet);
2918 reconstructor->SetRecoParam(par);
2919 reconstructor->SetRunInfo(fRunInfo);
2921 return reconstructor;
2924 //_____________________________________________________________________________
2925 AliVertexer* AliReconstruction::CreateVertexer()
2927 // create the vertexer
2928 // Please note that the caller is the owner of the
2931 AliVertexer* vertexer = NULL;
2932 AliReconstructor* itsReconstructor = GetReconstructor(0);
2933 if (itsReconstructor && ((fRunLocalReconstruction.Contains("ITS")) || fRunTracking.Contains("ITS"))) {
2934 vertexer = itsReconstructor->CreateVertexer();
2937 AliWarning("couldn't create a vertexer for ITS");
2943 //_____________________________________________________________________________
2944 Bool_t AliReconstruction::CreateTrackers(const TString& detectors)
2946 // create the trackers
2947 AliInfo("Creating trackers");
2949 TString detStr = detectors;
2950 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2951 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
2952 AliReconstructor* reconstructor = GetReconstructor(iDet);
2953 if (!reconstructor) continue;
2954 TString detName = fgkDetectorName[iDet];
2955 if (detName == "HLT") {
2956 fRunHLTTracking = kTRUE;
2959 if (detName == "MUON") {
2960 fRunMuonTracking = kTRUE;
2965 fTracker[iDet] = reconstructor->CreateTracker();
2966 if (!fTracker[iDet] && (iDet < 7)) {
2967 AliWarning(Form("couldn't create a tracker for %s", detName.Data()));
2968 if (fStopOnError) return kFALSE;
2970 AliSysInfo::AddStamp(Form("LTracker%s",fgkDetectorName[iDet]), iDet,0);
2976 //_____________________________________________________________________________
2977 void AliReconstruction::CleanUp()
2979 // delete trackers and the run loader and close and delete the file
2981 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
2982 delete fReconstructor[iDet];
2983 fReconstructor[iDet] = NULL;
2984 fLoader[iDet] = NULL;
2985 delete fTracker[iDet];
2986 fTracker[iDet] = NULL;
2991 delete fSPDTrackleter;
2992 fSPDTrackleter = NULL;
3001 delete fParentRawReader;
3002 fParentRawReader=NULL;
3010 if (AliQAManager::QAManager())
3011 AliQAManager::QAManager()->ShowQA() ;
3012 AliQAManager::Destroy() ;
3016 void AliReconstruction::WriteAlignmentData(AliESDEvent* esd)
3018 // Write space-points which are then used in the alignment procedures
3019 // For the moment only ITS, TPC, TRD and TOF
3021 Int_t ntracks = esd->GetNumberOfTracks();
3022 for (Int_t itrack = 0; itrack < ntracks; itrack++)
3024 AliESDtrack *track = esd->GetTrack(itrack);
3027 for (Int_t i=0; i<200; ++i) idx[i] = -1; //PH avoid uninitialized values
3028 for (Int_t iDet = 5; iDet >= 0; iDet--) {// TOF, TRD, TPC, ITS clusters
3029 nsp += (iDet==GetDetIndex("TRD")) ? track->GetTRDntracklets():track->GetNcls(iDet);
3031 if (iDet==GetDetIndex("ITS")) { // ITS "extra" clusters
3032 track->GetClusters(iDet,idx);
3033 for (Int_t i=6; i<12; i++) if(idx[i] >= 0) nsp++;
3038 AliTrackPointArray *sp = new AliTrackPointArray(nsp);
3039 track->SetTrackPointArray(sp);
3041 for (Int_t iDet = 5; iDet >= 0; iDet--) {
3042 AliTracker *tracker = fTracker[iDet];
3043 if (!tracker) continue;
3044 Int_t nspdet = (iDet==GetDetIndex("TRD")) ? track->GetTRDtracklets(idx):track->GetClusters(iDet,idx);
3046 if (iDet==GetDetIndex("ITS")) // ITS "extra" clusters
3047 for (Int_t i=6; i<12; i++) if(idx[i] >= 0) nspdet++;
3049 if (nspdet <= 0) continue;
3053 while (isp2 < nspdet) {
3054 Bool_t isvalid=kTRUE;
3056 Int_t index=idx[isp++];
3057 if (index < 0) continue;
3059 TString dets = fgkDetectorName[iDet];
3060 if ((fUseTrackingErrorsForAlignment.CompareTo(dets) == 0) ||
3061 fUseTrackingErrorsForAlignment.BeginsWith(dets+" ") ||
3062 fUseTrackingErrorsForAlignment.EndsWith(" "+dets) ||
3063 fUseTrackingErrorsForAlignment.Contains(" "+dets+" ")) {
3064 isvalid = tracker->GetTrackPointTrackingError(index,p,track);
3066 isvalid = tracker->GetTrackPoint(index,p);
3069 if (!isvalid) continue;
3070 if (iDet==GetDetIndex("ITS") && (isp-1)>=6) p.SetExtra();
3071 sp->AddPoint(isptrack,&p); isptrack++;
3078 //_____________________________________________________________________________
3079 void AliReconstruction::FillRawDataErrorLog(Int_t iEvent, AliESDEvent* esd)
3081 // The method reads the raw-data error log
3082 // accumulated within the rawReader.
3083 // It extracts the raw-data errors related to
3084 // the current event and stores them into
3085 // a TClonesArray inside the esd object.
3087 if (!fRawReader) return;
3089 for(Int_t i = 0; i < fRawReader->GetNumberOfErrorLogs(); i++) {
3091 AliRawDataErrorLog *log = fRawReader->GetErrorLog(i);
3093 if (iEvent != log->GetEventNumber()) continue;
3095 esd->AddRawDataErrorLog(log);
3100 //_____________________________________________________________________________
3101 void AliReconstruction::CheckQA()
3103 // check the QA of SIM for this run and remove the detectors
3104 // with status Fatal
3106 // TString newRunLocalReconstruction ;
3107 // TString newRunTracking ;
3108 // TString newFillESD ;
3110 // for (Int_t iDet = 0; iDet < AliQAv1::kNDET; iDet++) {
3111 // TString detName(AliQAv1::GetDetName(iDet)) ;
3112 // AliQAv1 * qa = AliQAv1::Instance(AliQAv1::DETECTORINDEX_t(iDet)) ;
3113 // if ( qa->IsSet(AliQAv1::DETECTORINDEX_t(iDet), AliQAv1::kSIM, specie, AliQAv1::kFATAL)) {
3114 // AliInfo(Form("QA status for %s %s in Hits and/or SDIGITS and/or Digits was Fatal; No reconstruction performed",
3115 // detName.Data(), AliRecoParam::GetEventSpecieName(es))) ;
3117 // if ( fRunLocalReconstruction.Contains(AliQAv1::GetDetName(iDet)) ||
3118 // fRunLocalReconstruction.Contains("ALL") ) {
3119 // newRunLocalReconstruction += detName ;
3120 // newRunLocalReconstruction += " " ;
3122 // if ( fRunTracking.Contains(AliQAv1::GetDetName(iDet)) ||
3123 // fRunTracking.Contains("ALL") ) {
3124 // newRunTracking += detName ;
3125 // newRunTracking += " " ;
3127 // if ( fFillESD.Contains(AliQAv1::GetDetName(iDet)) ||
3128 // fFillESD.Contains("ALL") ) {
3129 // newFillESD += detName ;
3130 // newFillESD += " " ;
3134 // fRunLocalReconstruction = newRunLocalReconstruction ;
3135 // fRunTracking = newRunTracking ;
3136 // fFillESD = newFillESD ;
3139 //_____________________________________________________________________________
3140 Int_t AliReconstruction::GetDetIndex(const char* detector)
3142 // return the detector index corresponding to detector
3144 for (index = 0; index < kNDetectors ; index++) {
3145 if ( strcmp(detector, fgkDetectorName[index]) == 0 )
3150 //_____________________________________________________________________________
3151 Bool_t AliReconstruction::FinishPlaneEff() {
3153 // Here execute all the necessary operationis, at the end of the tracking phase,
3154 // in case that evaluation of PlaneEfficiencies was required for some detector.
3155 // E.g., write into a DataBase file the PlaneEfficiency which have been evaluated.
3157 // This Preliminary version works only FOR ITS !!!!!
3158 // other detectors (TOF,TRD, etc. have to develop their specific codes)
3161 // Return: kTRUE if all operations have been done properly, kFALSE otherwise
3164 TString detStr = fLoadCDB;
3165 //for (Int_t iDet = 0; iDet < fgkNDetectors; iDet++) {
3166 for (Int_t iDet = 0; iDet < 1; iDet++) { // for the time being only ITS
3167 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
3168 if(fTracker[iDet] && fTracker[iDet]->GetPlaneEff()) {
3169 AliPlaneEff *planeeff=fTracker[iDet]->GetPlaneEff();
3170 TString name=planeeff->GetName();
3172 TFile* pefile = TFile::Open(name, "RECREATE");
3173 ret=(Bool_t)planeeff->Write();
3175 if(planeeff->GetCreateHistos()) {
3176 TString hname=planeeff->GetName();
3177 hname+="Histo.root";
3178 ret*=planeeff->WriteHistosToFile(hname,"RECREATE");
3181 if(fSPDTrackleter) {
3182 AliPlaneEff *planeeff=fSPDTrackleter->GetPlaneEff();
3183 TString name="AliITSPlaneEffSPDtracklet.root";
3184 TFile* pefile = TFile::Open(name, "RECREATE");
3185 ret=(Bool_t)planeeff->Write();
3187 AliESDEvent *dummy=NULL;
3188 ret=(Bool_t)fSPDTrackleter->PostProcess(dummy); // take care of writing other files
3193 //_____________________________________________________________________________
3194 Bool_t AliReconstruction::InitPlaneEff() {
3196 // Here execute all the necessary operations, before of the tracking phase,
3197 // for the evaluation of PlaneEfficiencies, in case required for some detectors.
3198 // E.g., read from a DataBase file a first evaluation of the PlaneEfficiency
3199 // which should be updated/recalculated.
3201 // This Preliminary version will work only FOR ITS !!!!!
3202 // other detectors (TOF,TRD, etc. have to develop their specific codes)
3205 // Return: kTRUE if all operations have been done properly, kFALSE otherwise
3207 AliWarning(Form("Implementation of this method not yet completed !! Method return kTRUE"));
3209 fSPDTrackleter = NULL;
3210 TString detStr = fLoadCDB;
3211 if (IsSelected(fgkDetectorName[0], detStr)) {
3212 AliReconstructor* itsReconstructor = GetReconstructor(0);
3213 if (itsReconstructor) {
3214 fSPDTrackleter = itsReconstructor->CreateTrackleter(); // this is NULL unless required in RecoParam
3216 if (fSPDTrackleter) {
3217 AliInfo("Trackleter for SPD has been created");
3223 //_____________________________________________________________________________
3224 Bool_t AliReconstruction::InitAliEVE()
3226 // This method should be called only in case
3227 // AliReconstruction is run
3228 // within the alieve environment.
3229 // It will initialize AliEVE in a way
3230 // so that it can visualize event processed
3231 // by AliReconstruction.
3232 // The return flag shows whenever the
3233 // AliEVE initialization was successful or not.
3236 macroStr.Form("%s/EVE/macros/alieve_online.C",gSystem->ExpandPathName("$ALICE_ROOT"));
3237 AliInfo(Form("Loading AliEVE macro: %s",macroStr.Data()));
3238 if (gROOT->LoadMacro(macroStr.Data()) != 0) return kFALSE;
3240 gROOT->ProcessLine("if (!AliEveEventManager::GetMaster()){new AliEveEventManager();AliEveEventManager::GetMaster()->AddNewEventCommand(\"alieve_online_on_new_event()\");gEve->AddEvent(AliEveEventManager::GetMaster());};");
3241 gROOT->ProcessLine("alieve_online_init()");
3246 //_____________________________________________________________________________
3247 void AliReconstruction::RunAliEVE()
3249 // Runs AliEVE visualisation of
3250 // the current event.
3251 // Should be executed only after
3252 // successful initialization of AliEVE.
3254 AliInfo("Running AliEVE...");
3255 gROOT->ProcessLine(Form("AliEveEventManager::GetMaster()->SetEvent((AliRunLoader*)0x%lx,(AliRawReader*)0x%lx,(AliESDEvent*)0x%lx,(AliESDfriend*)0x%lx);",fRunLoader,fRawReader,fesd,fesdf));
3259 //_____________________________________________________________________________
3260 Bool_t AliReconstruction::SetRunQA(TString detAndAction)
3262 // Allows to run QA for a selected set of detectors
3263 // and a selected set of tasks among RAWS, DIGITSR, RECPOINTS and ESDS
3264 // all selected detectors run the same selected tasks
3266 if (!detAndAction.Contains(":")) {
3267 AliError( Form("%s is a wrong syntax, use \"DetectorList:ActionList\" \n", detAndAction.Data()) ) ;
3271 Int_t colon = detAndAction.Index(":") ;
3272 fQADetectors = detAndAction(0, colon) ;
3273 fQATasks = detAndAction(colon+1, detAndAction.Sizeof() ) ;
3274 if (fQATasks.Contains("ALL") ) {
3275 fQATasks = Form("%d %d %d %d", AliQAv1::kRAWS, AliQAv1::kDIGITSR, AliQAv1::kRECPOINTS, AliQAv1::kESDS) ;
3277 fQATasks.ToUpper() ;
3279 if ( fQATasks.Contains("RAW") )
3280 tempo = Form("%d ", AliQAv1::kRAWS) ;
3281 if ( fQATasks.Contains("DIGIT") )
3282 tempo += Form("%d ", AliQAv1::kDIGITSR) ;
3283 if ( fQATasks.Contains("RECPOINT") )
3284 tempo += Form("%d ", AliQAv1::kRECPOINTS) ;
3285 if ( fQATasks.Contains("ESD") )
3286 tempo += Form("%d ", AliQAv1::kESDS) ;
3288 if (fQATasks.IsNull()) {
3289 AliInfo("No QA requested\n") ;
3294 TString tempo(fQATasks) ;
3295 tempo.ReplaceAll(Form("%d", AliQAv1::kRAWS), AliQAv1::GetTaskName(AliQAv1::kRAWS)) ;
3296 tempo.ReplaceAll(Form("%d", AliQAv1::kDIGITSR), AliQAv1::GetTaskName(AliQAv1::kDIGITSR)) ;
3297 tempo.ReplaceAll(Form("%d", AliQAv1::kRECPOINTS), AliQAv1::GetTaskName(AliQAv1::kRECPOINTS)) ;
3298 tempo.ReplaceAll(Form("%d", AliQAv1::kESDS), AliQAv1::GetTaskName(AliQAv1::kESDS)) ;
3299 AliInfo( Form("QA will be done on \"%s\" for \"%s\"\n", fQADetectors.Data(), tempo.Data()) ) ;
3304 //_____________________________________________________________________________
3305 Bool_t AliReconstruction::InitRecoParams()
3307 // The method accesses OCDB and retrieves all
3308 // the available reco-param objects from there.
3310 Bool_t isOK = kTRUE;
3312 if (fRecoParam.GetDetRecoParamArray(kNDetectors)) {
3313 AliInfo("Using custom GRP reconstruction parameters");
3316 AliInfo("Loading GRP reconstruction parameter objects");
3318 AliCDBPath path("GRP","Calib","RecoParam");
3319 AliCDBEntry *entry=AliCDBManager::Instance()->Get(path.GetPath());
3321 AliWarning("Couldn't find GRP RecoParam entry in OCDB");
3325 TObject *recoParamObj = entry->GetObject();
3326 if (dynamic_cast<TObjArray*>(recoParamObj)) {
3327 // GRP has a normal TobjArray of AliDetectorRecoParam objects
3328 // Registering them in AliRecoParam
3329 fRecoParam.AddDetRecoParamArray(kNDetectors,dynamic_cast<TObjArray*>(recoParamObj));
3331 else if (dynamic_cast<AliDetectorRecoParam*>(recoParamObj)) {
3332 // GRP has only onse set of reco parameters
3333 // Registering it in AliRecoParam
3334 AliInfo("Single set of GRP reconstruction parameters found");
3335 dynamic_cast<AliDetectorRecoParam*>(recoParamObj)->SetAsDefault();
3336 fRecoParam.AddDetRecoParam(kNDetectors,dynamic_cast<AliDetectorRecoParam*>(recoParamObj));
3339 AliError("No valid GRP RecoParam object found in the OCDB");
3346 TString detStr = fLoadCDB;
3347 for (Int_t iDet = 0; iDet < kNDetectors; iDet++) {
3349 if (!IsSelected(fgkDetectorName[iDet], detStr)) continue;
3351 if (fRecoParam.GetDetRecoParamArray(iDet)) {
3352 AliInfo(Form("Using custom reconstruction parameters for detector %s",fgkDetectorName[iDet]));
3356 AliInfo(Form("Loading reconstruction parameter objects for detector %s",fgkDetectorName[iDet]));
3358 AliCDBPath path(fgkDetectorName[iDet],"Calib","RecoParam");
3359 AliCDBEntry *entry=AliCDBManager::Instance()->Get(path.GetPath());
3361 AliWarning(Form("Couldn't find RecoParam entry in OCDB for detector %s",fgkDetectorName[iDet]));
3365 TObject *recoParamObj = entry->GetObject();
3366 if (dynamic_cast<TObjArray*>(recoParamObj)) {
3367 // The detector has a normal TobjArray of AliDetectorRecoParam objects
3368 // Registering them in AliRecoParam
3369 fRecoParam.AddDetRecoParamArray(iDet,dynamic_cast<TObjArray*>(recoParamObj));
3371 else if (dynamic_cast<AliDetectorRecoParam*>(recoParamObj)) {
3372 // The detector has only onse set of reco parameters
3373 // Registering it in AliRecoParam
3374 AliInfo(Form("Single set of reconstruction parameters found for detector %s",fgkDetectorName[iDet]));
3375 dynamic_cast<AliDetectorRecoParam*>(recoParamObj)->SetAsDefault();
3376 fRecoParam.AddDetRecoParam(iDet,dynamic_cast<AliDetectorRecoParam*>(recoParamObj));
3379 AliError(Form("No valid RecoParam object found in the OCDB for detector %s",fgkDetectorName[iDet]));
3383 // FIX ME: We have to disable the unloading of reco-param CDB
3384 // entries because QA framework is using them. Has to be fix in
3385 // a way that the QA takes the objects already constructed in
3387 // AliCDBManager::Instance()->UnloadFromCache(path.GetPath());
3391 if (AliDebugLevel() > 0) fRecoParam.Print();
3396 //_____________________________________________________________________________
3397 Bool_t AliReconstruction::GetEventInfo()
3399 // Fill the event info object
3401 AliCodeTimerAuto("",0)
3403 AliCentralTrigger *aCTP = NULL;
3405 fEventInfo.SetEventType(fRawReader->GetType());
3407 ULong64_t mask = fRawReader->GetClassMask();
3408 fEventInfo.SetTriggerMask(mask);
3409 UInt_t clmask = fRawReader->GetDetectorPattern()[0];
3410 fEventInfo.SetTriggerCluster(AliDAQ::ListOfTriggeredDetectors(clmask));
3412 aCTP = new AliCentralTrigger();
3413 TString configstr("");
3414 if (!aCTP->LoadConfiguration(configstr)) { // Load CTP config from OCDB
3415 AliError("No trigger configuration found in OCDB! The trigger configuration information will not be used!");
3419 aCTP->SetClassMask(mask);
3420 aCTP->SetClusterMask(clmask);
3423 fEventInfo.SetEventType(AliRawEventHeaderBase::kPhysicsEvent);
3425 if (fRunLoader && (!fRunLoader->LoadTrigger())) {
3426 aCTP = fRunLoader->GetTrigger();
3427 fEventInfo.SetTriggerMask(aCTP->GetClassMask());
3428 // get inputs from actp - just get
3429 AliESDHeader* esdheader = fesd->GetHeader();
3430 esdheader->SetL0TriggerInputs(aCTP->GetL0TriggerInputs());
3431 esdheader->SetL1TriggerInputs(aCTP->GetL1TriggerInputs());
3432 esdheader->SetL2TriggerInputs(aCTP->GetL2TriggerInputs());
3433 fEventInfo.SetTriggerCluster(AliDAQ::ListOfTriggeredDetectors(aCTP->GetClusterMask()));
3436 AliWarning("No trigger can be loaded! The trigger information will not be used!");
3441 AliTriggerConfiguration *config = aCTP->GetConfiguration();
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