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Correction of the offset settings in Rec and Sim QA for each EventSpecie. IsEQual...
[u/mrichter/AliRoot.git] / ITS / AliITSQADataMakerRec.cxx
1 /**************************************************************************
2  * Copyright(c) 2007-2009, ALICE Experiment at CERN, All rights reserved. *
3  *                                                                        *
4  * Author: The ALICE Off-line Project.                                    *
5  * Contributors are mentioned in the code where appropriate.              *
6  *                                                                        *
7  * Permission to use, copy, modify and distribute this software and its   *
8  * documentation strictly for non-commercial purposes is hereby granted   *
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10  * copies and that both the copyright notice and this permission notice   *
11  * appear in the supporting documentation. The authors make no claims     *
12  * about the suitability of this software for any purpose. It is          *
13  * provided "as is" without express or implied warranty.                  *
14  **************************************************************************/
15
16 /* $Id$ */
17
18 //  *************************************************************
19 //  Checks the quality assurance 
20 //  by comparing with reference data
21 //  contained in a DB
22 //  -------------------------------------------------------------
23 //  W. Ferrarese + P. Cerello Feb 2008
24 //  INFN Torino
25
26 // --- ROOT system ---
27 #include <TH2.h>
28 #include <TTree.h>
29 // --- Standard library ---
30
31 // --- AliRoot header files ---
32 #include "AliITSQADataMakerRec.h"
33 #include "AliITSQASPDDataMakerRec.h"
34 #include "AliITSQASDDDataMakerRec.h"
35 #include "AliITSQASSDDataMakerRec.h"
36 #include "AliLog.h"
37 #include "AliQAv1.h"
38 #include "AliQAChecker.h"
39 #include "AliITSQAChecker.h"
40 #include "AliITSRecPoint.h"
41 #include "AliRawReader.h"
42 #include "AliESDEvent.h"
43 #include "AliESDtrack.h"
44 #include "AliESDVertex.h"
45 #include "AliMultiplicity.h"
46 #include "AliITSgeomTGeo.h"
47
48 ClassImp(AliITSQADataMakerRec)
49
50 //____________________________________________________________________________ 
51 AliITSQADataMakerRec::AliITSQADataMakerRec(Bool_t kMode, Short_t subDet, Short_t ldc) :
52 AliQADataMakerRec(AliQAv1::GetDetName(AliQAv1::kITS), "ITS Quality Assurance Data Maker"),
53 fkOnline(kMode),
54 fSubDetector(subDet),
55 fLDC(ldc),
56 fSPDDataMaker(NULL),
57 fSDDDataMaker(NULL),
58 fSSDDataMaker(NULL)
59 {
60   //ctor used to discriminate OnLine-Offline analysis
61   if(fSubDetector < 0 || fSubDetector > 3) {
62         AliError("Error: fSubDetector number out of range; return\n");
63   }
64
65   // Initialization for RAW data 
66   if(fSubDetector == 0 || fSubDetector == 1) {
67     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM::Create SPD DataMakerRec\n");
68         fSPDDataMaker = new AliITSQASPDDataMakerRec(this,fkOnline);
69   }
70   if(fSubDetector == 0 || fSubDetector == 2) {
71     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM::Create SDD DataMakerRec\n");
72         fSDDDataMaker = new AliITSQASDDDataMakerRec(this,fkOnline);
73   }
74   if(fSubDetector == 0 || fSubDetector == 3) {
75     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM::Create SSD DataMakerRec\n");
76         fSSDDataMaker = new AliITSQASSDDataMakerRec(this,fkOnline);
77   }
78 }
79
80 //____________________________________________________________________________ 
81 AliITSQADataMakerRec::~AliITSQADataMakerRec(){
82   // destructor
83   if(fSPDDataMaker)delete fSPDDataMaker;
84   if(fSDDDataMaker)delete fSDDDataMaker;
85   if(fSSDDataMaker)delete fSSDDataMaker;
86 }
87
88 //____________________________________________________________________________ 
89 AliITSQADataMakerRec::AliITSQADataMakerRec(const AliITSQADataMakerRec& qadm) :
90 AliQADataMakerRec(),
91 fkOnline(qadm.fkOnline),
92 fSubDetector(qadm.fSubDetector),
93 fLDC(qadm.fLDC),
94 fSPDDataMaker(NULL),
95 fSDDDataMaker(NULL),
96 fSSDDataMaker(NULL)
97 {
98   //copy ctor 
99   SetName((const char*)qadm.GetName()) ; 
100   SetTitle((const char*)qadm.GetTitle());
101 }
102
103 //__________________________________________________________________
104 AliITSQADataMakerRec& AliITSQADataMakerRec::operator = (const AliITSQADataMakerRec& qac )
105 {
106   // Equal operator.
107   this->~AliITSQADataMakerRec();
108   new(this) AliITSQADataMakerRec(qac);
109   return *this;
110 }
111
112 //____________________________________________________________________________ 
113 void AliITSQADataMakerRec::StartOfDetectorCycle()
114 {
115   //Detector specific actions at start of cycle
116   AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM::Start of ITS Cycle\n");
117   if(fSubDetector == 0 || fSubDetector == 1) fSPDDataMaker->StartOfDetectorCycle();
118   if(fSubDetector == 0 || fSubDetector == 2) fSDDDataMaker->StartOfDetectorCycle();
119   if(fSubDetector == 0 || fSubDetector == 3) fSSDDataMaker->StartOfDetectorCycle();
120 }
121
122 //____________________________________________________________________________ 
123 void AliITSQADataMakerRec::EndOfDetectorCycle(AliQAv1::TASKINDEX_t task, TObjArray** list)
124 {
125   // launch the QA checking
126
127   for (Int_t specie = 0 ; specie < AliRecoParam::kNSpecies ; specie++) {
128     SetEventSpecie(specie) ; 
129     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSDM instantiates checker with Run(AliQAv1::kITS, task, list[specie])\n"); 
130     if(fSubDetector == 0 || fSubDetector == 1) fSPDDataMaker->EndOfDetectorCycle(task, list[specie]);
131     if(fSubDetector == 0 || fSubDetector == 2) fSDDDataMaker->EndOfDetectorCycle(task, list[specie]);
132     if(fSubDetector == 0 || fSubDetector == 3) fSSDDataMaker->EndOfDetectorCycle(task, list[specie]);
133   
134   
135     AliQAChecker *qac = AliQAChecker::Instance();
136     AliITSQAChecker *qacb = (AliITSQAChecker *) qac->GetDetQAChecker(0);
137     Int_t subdet=GetSubDet();
138     qacb->SetSubDet(subdet);
139  
140     if(subdet== 0 ){
141       qacb->SetTaskOffset(fSPDDataMaker->GetOffset(task), fSDDDataMaker->GetOffset(task), fSSDDataMaker->GetOffset(task)); //Setting the offset for the QAChecker list
142     }
143     else
144       if(subdet!=0){
145         Int_t offset=GetDetTaskOffset(subdet, task);
146         qacb->SetDetTaskOffset(subdet,offset);
147       }
148
149     qac->Run( AliQAv1::kITS , task, list); 
150
151   }
152 }
153
154 //____________________________________________________________________________ 
155 void AliITSQADataMakerRec::EndOfDetectorCycle(const char * /*fgDataName*/)
156 {
157   //eventually used for different  AliQAChecker::Instance()->Run
158 }
159
160 //____________________________________________________________________________ 
161 void AliITSQADataMakerRec::InitRaws()
162 {  
163
164   //if(fRawsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries()) return;
165         
166
167   if(fSubDetector == 0 || fSubDetector == 1) {
168     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SPD InitRaws\n");
169     fSPDDataMaker->InitRaws();
170   }
171   if(fSubDetector == 0 || fSubDetector == 2) {
172     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SDD InitRaws\n");
173     
174     fSDDDataMaker->SetOffset(AliQAv1::kRAWS, fRawsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries(),AliRecoParam::AConvert(fEventSpecie));
175     fSDDDataMaker->InitRaws();
176   }
177   if(fSubDetector == 0 || fSubDetector == 3) {
178     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SSD InitRaws\n");
179     
180     fSSDDataMaker->SetOffset(AliQAv1::kRAWS, fRawsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries(),AliRecoParam::AConvert(fEventSpecie));
181     fSSDDataMaker->InitRaws();
182   }
183 }
184
185 //____________________________________________________________________________
186 void AliITSQADataMakerRec::MakeRaws(AliRawReader* rawReader)
187
188   // Fill QA for RAW   
189   //return ; 
190
191
192   if(fSubDetector == 0 || fSubDetector == 1)  {
193     fSPDDataMaker->MakeRaws(rawReader) ; 
194   }
195   
196   if(fSubDetector == 0 || fSubDetector == 2) {
197     fSDDDataMaker->MakeRaws(rawReader) ; 
198   }
199
200   if(fSubDetector == 0 || fSubDetector == 3) fSSDDataMaker->MakeRaws(rawReader);
201
202 }
203
204 //____________________________________________________________________________ 
205 void AliITSQADataMakerRec::InitDigits()
206 {
207   
208   // Initialization for DIGITS
209   if(fSubDetector == 0 || fSubDetector == 1) {
210     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SPD InitDigitss\n");
211
212     fSPDDataMaker->InitDigits();
213   }
214   if(fSubDetector == 0 || fSubDetector == 2) {
215     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SDD InitDigits\n");
216     fSDDDataMaker->SetOffset(AliQAv1::kDIGITSR, fDigitsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries(),AliRecoParam::AConvert(fEventSpecie));
217
218     fSDDDataMaker->InitDigits();
219   }
220   if(fSubDetector == 0 || fSubDetector == 3) {
221     AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SSD InitDigits\n");
222     fSSDDataMaker->SetOffset(AliQAv1::kDIGITSR, fDigitsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries(),AliRecoParam::AConvert(fEventSpecie));
223
224     fSSDDataMaker->InitDigits();
225   }
226 }
227
228 //____________________________________________________________________________ 
229 void AliITSQADataMakerRec::MakeDigits(TTree * digitsTree)
230 {
231
232   
233   // Fill QA for recpoints
234   if(fSubDetector == 0 || fSubDetector == 1) {
235     fSPDDataMaker->MakeDigits(digitsTree) ; 
236   }
237   
238   if(fSubDetector == 0 || fSubDetector == 2) {
239     fSDDDataMaker->MakeDigits(digitsTree) ; 
240     
241   }
242   
243   if(fSubDetector == 0 || fSubDetector == 3) fSSDDataMaker->MakeDigits(digitsTree);
244 }
245
246 //____________________________________________________________________________ 
247 void AliITSQADataMakerRec::InitRecPoints()
248 {
249
250   // Initialization for RECPOINTS
251
252
253   //if(fRecPointsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries()) return;
254         if(fSubDetector == 0 || fSubDetector == 1) {
255                 AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SPD InitRecPoints\n");
256                 fSPDDataMaker->InitRecPoints();
257         }
258         if(fSubDetector == 0 || fSubDetector == 2) {
259                 AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SDD InitRecPoints\n");
260                 fSDDDataMaker->SetOffset(AliQAv1::kRECPOINTS, fRecPointsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries(), AliRecoParam::AConvert(fEventSpecie));
261                 fSDDDataMaker->InitRecPoints();
262         }
263         if(fSubDetector == 0 || fSubDetector == 3) {
264                 AliDebug(AliQAv1::GetQADebugLevel(),"AliITSQADM:: SSD InitRecPoints\n");
265                 fSSDDataMaker->SetOffset(AliQAv1::kRECPOINTS, fRecPointsQAList[AliRecoParam::AConvert(fEventSpecie)]->GetEntries(),AliRecoParam::AConvert(fEventSpecie));
266                 fSSDDataMaker->InitRecPoints();
267         }
268
269         Int_t offset = fRecPointsQAList [AliRecoParam::AConvert(fEventSpecie)]->GetEntries();
270         const Bool_t expert   = kTRUE ; 
271         const Bool_t image    = kTRUE ; 
272         Char_t name[50];
273         Char_t title[50];
274         TH2F**hPhiEta = new TH2F*[6];
275         for (Int_t iLay=0;iLay<6;iLay++) {
276                 sprintf(name,"Phi_vs_Eta_ITS_Layer%d",iLay+1);
277                 sprintf(title,"Phi vs Eta - ITS Layer %d",iLay+1);
278                 hPhiEta[iLay]=new TH2F(name,title,30,-1.5,1.5,200,0.,2*TMath::Pi());
279                 hPhiEta[iLay]->GetXaxis()->SetTitle("Pseudorapidity");
280                 hPhiEta[iLay]->GetYaxis()->SetTitle("#varphi [rad]");
281                 Add2RecPointsList((new TH2F(*hPhiEta[iLay])), iLay + offset, !expert, image);
282
283                 delete hPhiEta[iLay];
284         }
285
286 }
287
288 //____________________________________________________________________________ 
289 void AliITSQADataMakerRec::MakeRecPoints(TTree * clustersTree)
290 {
291  
292   // Fill QA for recpoints
293   if(fSubDetector == 0 || fSubDetector == 1) {
294     fSPDDataMaker->MakeRecPoints(clustersTree) ; 
295   }
296     
297   if(fSubDetector == 0 || fSubDetector == 2) {
298     fSDDDataMaker->MakeRecPoints(clustersTree) ; 
299   }
300   
301   if(fSubDetector == 0 || fSubDetector == 3) fSSDDataMaker->MakeRecPoints(clustersTree);
302
303
304
305
306         // Check id histograms already created for this Event Specie
307         TBranch *branchRecP = clustersTree->GetBranch("ITSRecPoints");
308         if (!branchRecP) {
309                 AliError("can't get the branch with the ITS clusters !");
310                 return;
311         }
312
313         Int_t offset = fRecPointsQAList [AliRecoParam::AConvert(fEventSpecie)]->GetEntries();
314         Float_t cluGlo[3] = {0.,0.,0.};
315         Int_t lay, lad, det; 
316         static TClonesArray statRecpoints("AliITSRecPoint") ;
317         TClonesArray *recpoints = &statRecpoints;
318         branchRecP->SetAddress(&recpoints);
319         // Fill QA for recpoints
320         for(Int_t module=0; module<clustersTree->GetEntries();module++){
321                 branchRecP->GetEvent(module);
322                 AliITSgeomTGeo::GetModuleId(module, lay, lad, det);
323                 for(Int_t j=0;j<recpoints->GetEntries();j++){
324                         AliITSRecPoint *rcp = (AliITSRecPoint*)recpoints->At(j);    
325                         //Check id histograms already created for this Event Specie
326                         rcp->GetGlobalXYZ(cluGlo);
327                         Double_t rad=TMath::Sqrt(cluGlo[0]*cluGlo[0]+cluGlo[1]*cluGlo[1]+cluGlo[2]*cluGlo[2]);
328                         Double_t phi= TMath::Pi() + TMath::ATan2(-cluGlo[1],-cluGlo[0]);
329                         Double_t theta = TMath::ACos(cluGlo[2]/rad);
330                         Double_t eta = 100.;
331                         if(AreEqual(rad,0.) == kFALSE) {
332                           if(theta<=1.e-14){ eta=30.; }
333                           else { eta = -TMath::Log(TMath::Tan(theta/2.));}
334                         }
335                         (GetRecPointsData( rcp->GetLayer() + offset - 6))->Fill(eta,phi);
336                 }
337         }
338
339
340 }
341
342 //____________________________________________________________________________ 
343 void AliITSQADataMakerRec::FillRecPoint(AliITSRecPoint rcp)
344 {
345
346         // Fill QA for recpoints
347         Float_t cluGlo[3] = {0.,0.,0.};
348         Int_t offset = fRecPointsQAList [AliRecoParam::AConvert(fEventSpecie)]->GetEntries();
349   // Check id histograms already created for this Event Specie
350         rcp.GetGlobalXYZ(cluGlo);
351         Double_t rad=TMath::Sqrt(cluGlo[0]*cluGlo[0]+cluGlo[1]*cluGlo[1]+cluGlo[2]*cluGlo[2]);
352         Double_t phi= TMath::Pi() + TMath::ATan2(-cluGlo[1],-cluGlo[0]);
353         Double_t theta = TMath::ACos(cluGlo[2]/rad);
354         Double_t eta = 100.;
355         if(AreEqual(rad,0.)==kFALSE) {
356           if(theta<=1.e-14){eta=30.;}
357           else    {eta = -TMath::Log(TMath::Tan(theta/2.));}
358         }
359         (GetRecPointsData( rcp.GetLayer() + offset - 6))->Fill(eta,phi);        
360
361 }
362
363 //____________________________________________________________________________ 
364 TH2F *AliITSQADataMakerRec::GetITSGlobalHisto(Int_t layer)
365 {
366
367         Int_t offset = fRecPointsQAList [AliRecoParam::AConvert(fEventSpecie)]->GetEntries();
368         return ((TH2F *) GetRecPointsData( layer + offset - 6));//local distribution
369 }
370
371 //____________________________________________________________________________ 
372 void AliITSQADataMakerRec::InitESDs()
373 {
374
375   // Create ESDs histograms in ESDs subdir
376
377   Bool_t expertHistogram = kTRUE;
378
379   TH1F *hESDClustersMI = 
380     new TH1F("hESDClustersMI", "N ITS clusters per track (MI); N clusters; Counts",
381              7, -0.5, 6.5);
382   hESDClustersMI->Sumw2();
383   hESDClustersMI->SetMinimum(0);
384   Add2ESDsList(hESDClustersMI, 0);
385
386   TH1F *hESDClusterMapMI =
387     new TH1F("hESDClusterMapMI", "N tracks with point Layer (MI); Layer; N tracks",
388              6, -0.5, 5.5);
389   hESDClusterMapMI->Sumw2();
390   hESDClusterMapMI->SetMinimum(0);
391   Add2ESDsList(hESDClusterMapMI, 1, expertHistogram);
392
393   TH1F *hESDClustersSA = 
394     new TH1F("hESDClustersSA", "N ITS clusters per track (SA); N clusters; Counts",
395              7, -0.5, 6.5);
396   hESDClustersSA->Sumw2();
397   hESDClustersSA->SetMinimum(0);
398   Add2ESDsList(hESDClustersSA, 2);
399
400   TH1F *hESDClusterMapSA =
401     new TH1F("hESDClusterMapSA", "N tracks with point Layer (SA); Layer; N tracks",
402              6, -0.5, 5.5);
403   hESDClusterMapSA->Sumw2();
404   hESDClusterMapSA->SetMinimum(0);
405   Add2ESDsList(hESDClusterMapSA, 3, expertHistogram);
406
407   TH1F *hSPDVertexX = 
408     new TH1F("hSPDVertexX","SPD Vertex x; x [cm]; N events",
409              10000,-2,2);
410   hSPDVertexX->Sumw2();
411   Add2ESDsList(hSPDVertexX, 4);
412
413   TH1F *hSPDVertexY = 
414     new TH1F("hSPDVertexY","SPD Vertex y; y [cm]; N events",
415              10000,-2,2);
416   hSPDVertexY->Sumw2();
417   Add2ESDsList(hSPDVertexY, 5);
418
419   TH1F *hSPDVertexZ = 
420     new TH1F("hSPDVertexZ","SPD Vertex Z; z [cm]; N events",
421              10000,-20,20);
422   hSPDVertexZ->Sumw2();
423   Add2ESDsList(hSPDVertexZ, 6);
424
425   TH1F *hSPDVertexContrOverMult =
426     new TH1F("hSPDVertexContrOverMult","SPD Vertex: contributors / multiplicity; N contributors / SPD multiplicity; N events",
427              100,-4,20);
428   hSPDVertexContrOverMult->Sumw2();
429   Add2ESDsList(hSPDVertexContrOverMult, 7, expertHistogram);
430
431   TH1F *hTrkVertexX = 
432     new TH1F("hTrkVertexX","ITS+TPC Trk Vertex x; x [cm]; N events",
433              10000,-2,2);
434   hTrkVertexX->Sumw2();
435   Add2ESDsList(hTrkVertexX, 8, expertHistogram);
436
437   TH1F *hTrkVertexY = 
438     new TH1F("hTrkVertexY","ITS+TPC Trk Vertex y; y [cm]; N events",
439              10000,-2,2);
440   hTrkVertexY->Sumw2();
441   Add2ESDsList(hTrkVertexY, 9, expertHistogram);
442
443   TH1F *hTrkVertexZ = 
444     new TH1F("hTrkVertexZ","ITS+TPC Trk Vertex Z; z [cm]; N events",
445              10000,-20,20);
446   hTrkVertexZ->Sumw2();
447   Add2ESDsList(hTrkVertexZ, 10, expertHistogram);
448
449   TH1F *hTrkVertexContrOverITSrefit5 =
450     new TH1F("hTrkVertexContrOverITSrefit5","ITS+TPC Trk Vertex: contributors / tracks; N contributors / N trks kITSrefit with 5 or 6 clusters; N events",
451              100,-4,2);
452   hTrkVertexContrOverITSrefit5->Sumw2();
453   Add2ESDsList(hTrkVertexContrOverITSrefit5, 11, expertHistogram);
454
455   TH1F *hSPDTrkVertexDeltaX =
456     new TH1F("hSPDTrkVertexDeltaX","Comparison of SPD and Trk vertices: x; xSPD-xTrk [cm]; N events",
457              1000,-1,1);
458   hSPDTrkVertexDeltaX->Sumw2();
459   Add2ESDsList(hSPDTrkVertexDeltaX, 12, expertHistogram);
460     
461   TH1F *hSPDTrkVertexDeltaY =
462     new TH1F("hSPDTrkVertexDeltaY","Comparison of SPD and Trk vertices: y; ySPD-yTrk [cm]; N events",
463              1000,-1,1);
464   hSPDTrkVertexDeltaY->Sumw2();
465   Add2ESDsList(hSPDTrkVertexDeltaY, 13, expertHistogram);
466     
467   TH1F *hSPDTrkVertexDeltaZ =
468     new TH1F("hSPDTrkVertexDeltaZ","Comparison of SPD and Trk vertices: z; zSPD-zTrk [cm]; N events",
469              1000,-1,1);
470   hSPDTrkVertexDeltaZ->Sumw2();
471   Add2ESDsList(hSPDTrkVertexDeltaZ, 14);
472     
473   // SPD Tracklets
474
475   TH1F* hSPDTracklets = 
476     new TH1F("hSPDTracklets","N SPD Tracklets; N tracklets; Counts",300,0.,300.);
477   hSPDTracklets->Sumw2();
478   Add2ESDsList(hSPDTracklets, 15); 
479
480   TH2F* hSPDTrackletsvsFiredChips0 = 
481     new TH2F("hSPDTrackletsvsFiredChips0","N SPD Tracklets vs N FiredChips Layer0",
482               300,0.,300.,300,0.,300.);
483   hSPDTrackletsvsFiredChips0->GetXaxis()->SetTitle("N SPD Tracklets"); 
484   hSPDTrackletsvsFiredChips0->GetYaxis()->SetTitle("N FiredChips Layer0"); 
485   hSPDTrackletsvsFiredChips0->Sumw2();
486   Add2ESDsList(hSPDTrackletsvsFiredChips0, 16, expertHistogram ); 
487
488   TH2F* hSPDTrackletsvsFiredChips1 = 
489     new TH2F("hSPDTrackletsvsFiredChips1","N SPD Tracklets vs N FiredChips Layer1",
490               300,0.,300.,300,0.,300.);
491   hSPDTrackletsvsFiredChips1->GetXaxis()->SetTitle("N SPD Tracklets"); 
492   hSPDTrackletsvsFiredChips1->GetYaxis()->SetTitle("N FiredChips Layer1"); 
493   hSPDTrackletsvsFiredChips1->Sumw2();
494   Add2ESDsList(hSPDTrackletsvsFiredChips1, 17, expertHistogram); 
495     
496   TH1F* hSPDTrackletsDePhi = 
497     new TH1F("hSPDTrackletsDePhi","DeltaPhi SPD Tracklets; DeltaPhi [rad]; N events",200,-0.2,0.2);
498   hSPDTrackletsDePhi->Sumw2();
499   Add2ESDsList(hSPDTrackletsDePhi, 18); 
500     
501   TH1F* hSPDTrackletsPhi = 
502     new TH1F("hSPDTrackletsPhi","Phi SPD Tracklets; Phi [rad]; N events",1000,0.,2*TMath::Pi());
503   hSPDTrackletsPhi->Sumw2();
504   Add2ESDsList(hSPDTrackletsPhi, 19); 
505     
506   TH1F* hSPDTrackletsTheta = 
507     new TH1F("hSPDTrackletsTheta","Theta SPD Tracklets; Theta [rad]; N events",500,0.,TMath::Pi());
508   hSPDTrackletsTheta->Sumw2();
509   Add2ESDsList(hSPDTrackletsTheta, 20); 
510
511   // map of layers skipped by tracking (set in AliITSRecoParam)
512   TH1F *hESDSkippedLayers = 
513     new TH1F("hESDSkippedLayers", "Map of layers skipped by tracking; Layer; Skipped",
514              6, -0.5, 5.5);
515   hESDSkippedLayers->Sumw2();
516   hESDSkippedLayers->SetMinimum(0);
517   Add2ESDsList(hESDSkippedLayers, 21, expertHistogram);
518
519
520   return;
521 }
522
523 //____________________________________________________________________________
524 void AliITSQADataMakerRec::MakeESDs(AliESDEvent *esd)
525 {
526   // Make QA data from ESDs
527
528   // Check id histograms already created for this Event Specie
529 //  if ( ! GetESDsData(0) )
530 //    InitESDs() ;
531   
532   const Int_t nESDTracks = esd->GetNumberOfTracks();
533   Int_t nITSrefit5 = 0; 
534
535   Int_t idet,status;
536   Float_t xloc,zloc;
537
538   // loop on tracks
539   for(Int_t i = 0; i < nESDTracks; i++) {
540     
541     AliESDtrack *track = esd->GetTrack(i);
542     
543     Int_t nclsITS = track->GetNcls(0);
544
545     Bool_t itsrefit=kFALSE,tpcin=kFALSE,itsin=kFALSE;
546     if ((track->GetStatus() & AliESDtrack::kITSrefit)) itsrefit=kTRUE;
547     if ((track->GetStatus() & AliESDtrack::kTPCin)) tpcin=kTRUE;     
548     if ((track->GetStatus() & AliESDtrack::kITSin)) itsin=kTRUE;     
549     if(nclsITS>=5 && itsrefit) nITSrefit5++;
550
551     if(tpcin) {
552       GetESDsData(0)->Fill(nclsITS);
553     }
554     if(itsin && !tpcin){
555       GetESDsData(2)->Fill(nclsITS);
556     }
557
558     for(Int_t layer=0; layer<6; layer++) {
559
560       if(TESTBIT(track->GetITSClusterMap(),layer)) {
561         if(tpcin) {
562           GetESDsData(1)->Fill(layer);
563         } else {
564           GetESDsData(3)->Fill(layer);
565         }
566       }
567       track->GetITSModuleIndexInfo(layer,idet,status,xloc,zloc);
568       if(status==3) GetESDsData(21)->SetBinContent(layer,1);
569     }     
570
571   } // end loop on tracks
572
573   // vertices
574   const AliESDVertex *vtxSPD = esd->GetPrimaryVertexSPD();
575   const AliESDVertex *vtxTrk = esd->GetPrimaryVertexTracks();
576
577   Int_t mult = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetNumberOfTracklets();
578   if(mult>0)
579     GetESDsData(7)->Fill((Float_t)(vtxSPD->GetNContributors())/(Float_t)mult);
580
581   if(nITSrefit5>0)
582     GetESDsData(11)->Fill((Float_t)(vtxTrk->GetNIndices())/(Float_t)nITSrefit5);
583
584   if(vtxSPD->GetNContributors()>0) {
585     GetESDsData(4)->Fill(vtxSPD->GetXv());
586     GetESDsData(5)->Fill(vtxSPD->GetYv());
587     GetESDsData(6)->Fill(vtxSPD->GetZv());
588   }
589
590   if(vtxTrk->GetNContributors()>0) {
591     GetESDsData(8)->Fill(vtxTrk->GetXv());
592     GetESDsData(9)->Fill(vtxTrk->GetYv());
593     GetESDsData(10)->Fill(vtxTrk->GetZv());
594   }
595
596   if(vtxSPD->GetNContributors()>0 && 
597      vtxTrk->GetNContributors()>0) {
598     GetESDsData(12)->Fill(vtxSPD->GetXv()-vtxTrk->GetXv());
599     GetESDsData(13)->Fill(vtxSPD->GetYv()-vtxTrk->GetYv());
600     GetESDsData(14)->Fill(vtxSPD->GetZv()-vtxTrk->GetZv());
601   }
602
603   // SPD Tracklets
604   GetESDsData(15)->Fill(mult);
605
606   Short_t nFiredChips0 = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetNumberOfFiredChips(0);
607   Short_t nFiredChips1 = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetNumberOfFiredChips(1);
608   GetESDsData(16)->Fill(nFiredChips0,mult);
609   GetESDsData(17)->Fill(nFiredChips1,mult);
610
611   // Loop over tracklets
612   for (Int_t itr=0; itr<mult; ++itr) {
613     Float_t dePhiTr = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetDeltaPhi(itr);
614     Float_t phiTr   = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetPhi(itr);
615     Float_t thetaTr = ((AliMultiplicity*)(esd->GetMultiplicity()))->GetTheta(itr);
616     GetESDsData(18)->Fill(dePhiTr);
617     GetESDsData(19)->Fill(phiTr);
618     GetESDsData(20)->Fill(thetaTr);
619   } // end loop on tracklets
620
621   return;
622 }
623
624 //_________________________________________________________________
625 Int_t AliITSQADataMakerRec::GetDetTaskOffset(Int_t subdet,AliQAv1::TASKINDEX_t task)
626 {
627   switch(subdet)
628     {
629
630       Int_t offset;
631     case 1:
632       offset=fSPDDataMaker->GetOffset(task);
633       return offset;
634       break;
635     case 2:
636       offset=fSDDDataMaker->GetOffset(task);
637       return offset;
638       break;
639     case 3:
640       offset=fSSDDataMaker->GetOffset(task);
641       return offset;
642       break;
643     default:
644       AliWarning("No specific subdetector (SPD, SDD, SSD) selected!! Offset set to zero \n");
645       offset=0;
646       return offset;
647       break;
648     }
649   //return offset;
650 }
651
652 //____________________________________________________________________
653
654 Bool_t AliITSQADataMakerRec::AreEqual(Double_t a1,Double_t a2)
655 {
656   const Double_t kEpsilon= 1.e-14;
657   return TMath::Abs(a1-a2)<=kEpsilon*TMath::Abs(a1);      
658 }
659