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1 /**************************************************************************
2  * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3  *                                                                        *
4  * Author: The ALICE Off-line Project.                                    *
5  * Contributors are mentioned in the code where appropriate.              *
6  *                                                                        *
7  * Permission to use, copy, modify and distribute this software and its   *
8  * documentation strictly for non-commercial purposes is hereby granted   *
9  * without fee, provided that the above copyright notice appears in all   *
10  * copies and that both the copyright notice and this permission notice   *
11  * appear in the supporting documentation. The authors make no claims     *
12  * about the suitability of this software for any purpose. It is          *
13  * provided "as is" without express or implied warranty.                  *
14  **************************************************************************/
15
16
17 /* $Id$ */
18
19 //---
20 //  Produces the data needed to calculate the quality assurance. 
21 //  Alla.Maevskaya@cern.ch
22 //---
23
24 // --- ROOT system ---
25 #include <TClonesArray.h>
26 #include <TFile.h> 
27 #include <TH1F.h> 
28 #include <TH2F.h> 
29 #include <TDirectory.h>
30 // --- Standard library ---
31
32 // --- AliRoot header files ---
33 #include "AliESDEvent.h"
34 #include "AliLog.h"
35 #include "AliT0digit.h" 
36 #include "AliT0hit.h"
37 #include "AliT0RecPoint.h"
38 #include "AliT0QADataMakerRec.h"
39 #include "AliQAChecker.h"
40 #include "AliT0RawReader.h"
41 #include "AliT0RecoParam.h"
42
43 #include "Riostream.h"
44 ClassImp(AliT0QADataMakerRec)
45            
46 //____________________________________________________________________________ 
47   AliT0QADataMakerRec::AliT0QADataMakerRec() : 
48 AliQADataMakerRec(AliQAv1::GetDetName(AliQAv1::kT0), 
49                   "T0 Quality Assurance Data Maker"),
50   fnEventCal(0),
51   fnEventPhys(0)
52
53 {
54   // ctor
55   for (Int_t i=0; i<6; i++) {
56     fNumTriggers[i]=0;
57     fNumTriggersCal[i]=0;
58     fTrEffCal[i] = 0;
59     fTrEffPhys[i] = 0;
60
61   }
62   for (Int_t i=0; i<24; i++)
63     {
64       feffC[i]=0;
65       feffA[i]=0;
66       feffqtc[i]=0;
67    }
68 }
69
70 //____________________________________________________________________________ 
71 AliT0QADataMakerRec::AliT0QADataMakerRec(const AliT0QADataMakerRec& qadm) :
72   AliQADataMakerRec(),
73   fnEventCal(0),
74   fnEventPhys(0)
75
76   
77 {
78   //copy ctor 
79  SetName((const char*)qadm.GetName()) ; 
80   SetTitle((const char*)qadm.GetTitle()); 
81 }
82
83 //__________________________________________________________________
84 AliT0QADataMakerRec& AliT0QADataMakerRec::operator = (const AliT0QADataMakerRec& qadm )
85 {
86   // Equal operator.
87   this->~AliT0QADataMakerRec();
88   new(this) AliT0QADataMakerRec(qadm);
89   return *this;
90 }
91 //____________________________________________________________________________
92 void AliT0QADataMakerRec::EndOfDetectorCycle(AliQAv1::TASKINDEX_t task, TObjArray ** list)
93 {
94   //Detector specific actions at end of cycle
95   // do the QA checking
96   AliQAChecker::Instance()->Run(AliQAv1::kT0, task, list) ;
97   
98   for (Int_t specie = 0 ; specie < AliRecoParam::kNSpecies ; specie++) {
99     if (! IsValidEventSpecie(specie, list)) 
100       continue ;
101     SetEventSpecie(AliRecoParam::ConvertIndex(specie)) ; 
102     if ( task == AliQAv1::kRAWS ) {
103       GetRawsData(0)->SetLabelSize(0.02);
104       const Char_t *triggers[6] = {"mean", "vertex","ORA","ORC","central","semi-central"};
105       for (Int_t itr=0; itr<6; itr++) {
106         if ( fnEventCal>0) 
107           fTrEffCal[itr] = Float_t (fNumTriggersCal[itr])/Float_t (fnEventCal);
108         if ( fnEventPhys>0) 
109           fTrEffPhys[itr] = Float_t (fNumTriggers[itr])/Float_t (fnEventPhys);
110
111         GetRawsData(420)->Fill(triggers[itr], fTrEffCal[itr]);
112         GetRawsData(420)->SetBinContent(itr+1, fTrEffCal[itr]);
113         GetRawsData(97)->Fill(triggers[itr], fTrEffPhys[itr]);
114         GetRawsData(97)->SetBinContent(itr+1, fTrEffPhys[itr]);
115       } 
116       Float_t effic=0;
117       for(Int_t ik=0; ik<24; ik++)
118         {  
119           effic=0;
120           if ( fnEventCal>0) effic = Float_t(feffC[ik])/Float_t(fnEventCal);
121           GetRawsData(205)->SetBinContent(ik+1,effic) ;
122           effic=0;
123           if ( fnEventCal>0) effic = Float_t(feffA[ik])/Float_t(fnEventCal);
124           GetRawsData(206)->SetBinContent(ik+1,effic );
125           effic=0;
126           if ( fnEventCal>0) effic = Float_t(feffqtc[ik])/Float_t(fnEventCal);
127           GetRawsData(207)->SetBinContent(ik+1, effic);
128         }
129       
130       
131     }
132     
133   }
134
135 }
136 //____________________________________________________________________________
137 void AliT0QADataMakerRec::StartOfDetectorCycle()
138 {
139   //Detector specific actions at start of cycle
140
141
142 }
143  
144 //____________________________________________________________________________ 
145 void AliT0QADataMakerRec::InitRaws()
146 {
147   // create Raw histograms in Raw subdir
148   const Bool_t expert   = kTRUE ; 
149   const Bool_t saveCorr = kTRUE ; 
150   const Bool_t image    = kTRUE ; 
151   Float_t low[500];
152   Float_t high[500];
153
154   
155   for (Int_t i=0; i<500; i++){
156     low[i]  = GetRecoParam()->GetLow(i);
157     high[i]  = GetRecoParam()->GetHigh(i);
158
159   }
160
161   TString timename, ampname, qtcname, ledname;
162   TString timeCalname, ampCalname, ledCalname, qtcCalname;
163   TString qt1name, qt0name, qt1Calname, qt0Calname;
164   TString nhits;
165
166   TH1F* fhRefPoint = new TH1F("hRefPoint","Ref Point",high[0]-low[0],low[0],high[0]);
167   Add2RawsList( fhRefPoint,0, expert, !image, !saveCorr);
168    
169   TH1F *fhRawCFD[24]; TH1F * fhRawLEDamp[24];
170   TH1F *fhRawQTC[24]; TH1F * fhRawLED[24];
171   TH1F *fhRawCFDcal[24]; TH1F * fhRawLEDampcal[24]; 
172   TH1F *fhRawCFDcalpmt[24];  
173   TH1F *fhRawCFDpmt[24];
174   TH1F *fhRawQTCcal[24];  TH1F * fhRawLEDcal[24];
175   TH1F *fhRawQT0cal[24]; TH1F *fhRawQT1cal[24];
176   TH1F *fhRawQT1[24]; TH1F *fhRawQT0[24];
177   TH1F* fhRawNhits[24];
178   
179   for (Int_t i=0; i<24; i++)
180     {
181       timename ="hRawCFD";
182       ledname = "hRawLED";
183       qtcname = "hRawQTC";
184       qt0name = "hRawQT0_";
185       qt1name = "hRawQT1_";
186       ampname = "hRawLEDminCFD";
187       nhits = "hRawNhits";
188       timename += i+1;
189       ampname += i+1;
190       qtcname += i+1;
191       qt0name += i+1;
192       qt1name += i+1;
193       ledname += i+1;
194       nhits   += i+1;
195       fhRawCFD[i] = new TH1F(timename.Data(), Form("%s;CFD [#channels];Counts", timename.Data()),high[i+1]-low[i+1],low[i+1],high[i+1]);
196         Add2RawsList( fhRawCFD[i],i+1, expert, !image, !saveCorr);
197       fhRawLED[i] = new TH1F(ledname.Data(),  Form("%s;LED[#channels];Counts", ledname.Data()),high[i+24+1]-low[i+24+1],low[i+24+1],high[i]);
198       Add2RawsList( fhRawLED[i],i+24+1, expert, !image, !saveCorr);
199       fhRawLEDamp[i] = new TH1F(ampname.Data(),  Form("%s;LED-CFD [#channels];Counts", ampname.Data()),1000,0,1000);
200      Add2RawsList( fhRawLEDamp[i],i+48+1, expert, !image, !saveCorr);
201       fhRawQTC[i] = new TH1F(qtcname.Data(),  Form("%s;QTC[#channels];Counts", qtcname.Data()),10000,0,10000);
202       Add2RawsList( fhRawQTC[i],i+72+1, expert, !image, !saveCorr);
203       fhRawQT1[i] = new TH1F(qt1name.Data(),  Form("%s;QT1[#channels];Counts", qtcname.Data()),high[270+i]-low[270+i],low[270+i],high[270+i]);
204        Add2RawsList( fhRawQT1[i],270+i, expert, !image, !saveCorr);
205       fhRawQT0[i] = new TH1F(qt0name.Data(),  Form("%s;QT0[#channels];Counts", qtcname.Data()),high[270+24+i]-low[270+24+i],low[270+24+i],high[270+24+i]);
206      Add2RawsList( fhRawQT0[i],270+24+i, expert, !image, !saveCorr);
207
208       fhRawNhits[i] = new TH1F(nhits.Data(),  Form("%s;#Hits;Events", nhits.Data()),10, 0, 10);
209      Add2RawsList( fhRawNhits[i],244+i, expert, !image, !saveCorr);
210
211     }
212   TH1F* fhRawTrigger = new TH1F("hRawTrigger"," phys triggers;Trigger #;Counts",5,0,5);
213   Add2RawsList(fhRawTrigger ,97, expert, !image, !saveCorr);
214
215   TH1F* fhRawMean = new TH1F("hRawMean","online mean signal, physics event;",high[98]-low[98],low[98],high[98]);
216   Add2RawsList( fhRawMean,98, expert, !image, !saveCorr);
217
218   TH1F* fhRawVertex = new TH1F("hRawVertex","online vertex signal; counts",high[100]-low[99],low[99],high[99]);
219   Add2RawsList( fhRawVertex,99, expert, !image, !saveCorr);
220
221   TH1F* fhRawORA = new TH1F("hRawORA","online OR A; counts", high[100]-low[100],low[100],high[100]);
222   Add2RawsList( fhRawORA,100, expert, !image, !saveCorr);
223   TH1F* fhRawORC = new TH1F("hRawORC","online OR C;counts", high[101]-low[101],low[101],high[101]);
224   Add2RawsList( fhRawORC,101, expert, !image, !saveCorr);
225
226
227   for (Int_t i=0; i<24; i++)
228     {
229       // for events with trigger CALIBRATION_EVENT
230       timeCalname ="hRawCFDcal";
231       ledCalname = "hRawLEDcal";
232       ampCalname = "hRawLEDminCFDcal";
233       qtcCalname = "hRawQTCcal";
234       qt0Calname = "hRawQT0cal";
235       qt1Calname = "hRawQT1cal";
236       timeCalname += i+1;
237       ledCalname += i+1;
238       ampCalname += i+1;
239       qtcCalname += i+1;
240       qt0Calname += i+1;
241       qt1Calname += i+1;
242  
243       fhRawCFDcal[i] = new TH1F(timeCalname.Data(),  Form("%s;Time ;Counts", timeCalname.Data()),high[101+i+1]-low[101+i+1],low[101+i+1],high[101+i+1]);
244       Add2RawsList( fhRawCFDcal[i],101+i+1, expert, !image, !saveCorr);
245  
246      fhRawLEDcal[i] = new TH1F(ledCalname.Data(),  Form("%s;Time ;Counts", ledCalname.Data()),high[101+i+24+1]-low[101+i+24+1],low[101+i+24+1],high[101+i+24+1]);
247       Add2RawsList( fhRawLEDcal[i],101+i+24+1, expert, !image, !saveCorr);
248
249       fhRawLEDampcal[i] = new TH1F(ampCalname.Data(), Form("%s;Amplitude [ADC counts];Counts", ampCalname.Data()),1000,0,1000);
250       Add2RawsList( fhRawLEDampcal[i],101+i+48+1, expert, !image, !saveCorr);
251
252       fhRawQTCcal[i] = new TH1F(qtcCalname.Data(), Form("%s;Charge ;Counts",qtcCalname.Data()),10000,0,10000);
253       Add2RawsList( fhRawQTCcal[i],101+i+72+1, expert, !image, !saveCorr);
254
255       fhRawQT0cal[i] = new TH1F(qt0Calname.Data(), Form("%s;Charge ;Counts",qt0Calname.Data()),high[371+i]-low[371+i],low[371+i],high[371+i]);
256       Add2RawsList( fhRawQT0cal[i],371+i, expert, !image, !saveCorr);
257
258       fhRawQT1cal[i] = new TH1F(qt1Calname.Data(), Form("%s;Charge ;Counts",qt1Calname.Data()),high[i+371+24]-low[i+371+24],low[i+371+24],high[i+371+24]);
259       Add2RawsList( fhRawQT1cal[i],i+371+24, expert, !image, !saveCorr);
260
261       }
262
263   //from PMT1 (equalizing)
264   for (Int_t i=0; i<24; i++)
265     {
266       // for events with trigger CALIBRATION_EVENT
267       timeCalname ="hRawCFDcalpmt";
268       timename ="hRawCFDpmt";
269       timeCalname += i+1;
270       ledCalname += i+1;
271       timename += i+1;
272       ledname += i+1;
273       fhRawCFDcalpmt[i] = new TH1F(timeCalname.Data(),  Form("%s;Time;Counts", timeCalname.Data()),2000,-1000,1000);
274        Add2RawsList( fhRawCFDcalpmt[i],321+i , expert, !image, !saveCorr);
275
276       fhRawCFDpmt[i] = new TH1F(timename.Data(),  Form("%s;Time;Counts", timename.Data()),2000,-1000,1000);
277       Add2RawsList( fhRawCFDpmt[i],220+i, expert, !image, !saveCorr);
278      }
279
280   TH1F* fhRawTriggerCal = new TH1F("hRawTriggerCal"," laser triggers",6,0,6);
281   Add2RawsList(fhRawTriggerCal ,420 , !expert, image, !saveCorr);
282  
283   TH1F* fhRawMeanCal = new TH1F("hRawMeanCal","online mean signal, calibration event",high[198]-low[198],low[198],high[198]);
284   Add2RawsList( fhRawMeanCal,198, expert, !image, !saveCorr);
285  
286   TH1F* fhRawVertexCal = new TH1F("hRawVertexCal","online vertex signal, calibration event ", high[199]-low[199],low[199],high[199] );
287    Add2RawsList( fhRawVertexCal,199, expert, !image, !saveCorr);
288  
289  
290   TH1F* fhRawORAcal = new TH1F("hRawORAcal","laser OR A; counts", high[200]-low[200],low[200],high[200]);
291    Add2RawsList( fhRawORAcal,200, expert, !image, !saveCorr );
292  
293  
294   TH1F* fhRawORCcal = new TH1F("hRawORCcal","laserOR C;counts ", high[201]-low[201],low[201],high[201]);
295    Add2RawsList( fhRawORCcal,201, expert, !image, !saveCorr);
296  
297
298   //multiplicity trigger
299   TH1F* fhMultcal = new TH1F("hMultcal","full mulltiplicity;Multiplicity;Entries", high[202]-low[202],low[202],high[202]);
300   Add2RawsList( fhMultcal,202, expert, !image, !saveCorr );
301    TH1F* fhMultScal = new TH1F("hMultSemical","full multiplicity with semi-central trigger;Multiplicity;Entries",
302                              high[203]-low[203],low[203],high[203] );
303   Add2RawsList( fhMultScal,203, expert, !image, !saveCorr);
304   TH1F* fhMultCcal = new TH1F("hMultCentrcal","full multiplicity with central trigger;Multiplicity;Entries", 
305                              high[204]-low[204],low[204],high[204]);
306   Add2RawsList( fhMultCcal,204, expert, !image, !saveCorr);
307  
308   TH1F* fhMult = new TH1F("hMult","full mulltiplicity;Multiplicity;Entries", high[216]-low[216],low[216],high[216]);
309   Add2RawsList( fhMult,216, expert, !image, !saveCorr );
310    TH1F* fhMultS = new TH1F("hMultSemi","full multiplicity with semi-central trigger;Multiplicity;Entries",
311                              high[217]-low[217],low[217],high[217] );
312   Add2RawsList( fhMultS,217, expert, !image, !saveCorr);
313   TH1F* fhMultC = new TH1F("hMultCentr","full multiplicity with central trigger;Multiplicity;Entries", 
314                              high[218]-low[218],low[218],high[218]);
315   Add2RawsList( fhMultC,218, expert, !image, !saveCorr);
316
317   TH1F* fhEffCFD = new TH1F("hEffCFD","#PMT; #CFD counts/nEvents",24, 0 ,24); 
318   Add2RawsList( fhEffCFD,205, !expert, image, !saveCorr);
319  
320   TH1F* fhEffLED = new TH1F("hEffLED","#PMT; #LED counts/nEvent",24, 0 ,24);
321   Add2RawsList( fhEffLED,206, !expert, image, !saveCorr);
322
323   TH1F* fhEffQTC = new TH1F("hEffQTC","#PMT; QTC efficiency%s;",24, 0 ,24);
324   Add2RawsList( fhEffQTC,207, !expert, image, !saveCorr);
325
326   
327   TH2F* fhCFDcal = new TH2F("hCFDcal","CFD laser; #PMT; CFD {#channnels}",25, 0 ,25,high[208]-low[208],low[208],high[208]);
328   fhCFDcal->SetOption("COLZ");
329   Add2RawsList( fhCFDcal,208, !expert, image, !saveCorr);
330
331
332   TH2F* fhLEDcal = new TH2F("hLEDcal","LED laser; #PMT; LED [#channnels]",25, 0 ,25, high[209]-low[209],low[209],high[209]);
333   fhLEDcal->SetOption("COLZ");
334   Add2RawsList( fhLEDcal,209, !expert, image, !saveCorr);
335
336
337   TH1F* fhNumPMTA= new TH1F("hNumPMTA","number of PMT hitted per event",10, 0 ,10);
338   Add2RawsList(fhNumPMTA ,211, expert, !image, !saveCorr);
339
340   TH1F* fhNumPMTC= new TH1F("hNumPMTC","number of PMT hitted per event",10, 0 ,10);
341   Add2RawsList(fhNumPMTC ,212, expert, !image, !saveCorr);
342
343   TH1F* fhHitsOrA= new TH1F("fhHitsOrA","T0_OR A hit multiplicitie",10, 0 ,10);
344   Add2RawsList( fhHitsOrA,213, expert, !image, !saveCorr);
345
346   TH1F* fhHitsOrC= new TH1F("fhHitsOrC","T0_OR C hit multiplicitie",10, 0 ,10);
347   Add2RawsList(fhHitsOrC ,214, expert, !image, !saveCorr);
348
349   TH1F* fhOrCminOrA= new TH1F("fhOrCminOrA","T0_OR C - T0_OR A", high[215]-low[215],low[215],high[215]);
350   Add2RawsList( fhOrCminOrA,215, expert, !image, !saveCorr);
351
352  const Char_t *triggers[6] = {"mean", "vertex","ORA","ORC","central","semi-central"};
353   for (Int_t itr=0; itr<6; itr++) {
354     GetRawsData(420)->Fill(triggers[itr], fNumTriggersCal[itr]);
355     GetRawsData(420)->SetBinContent(itr+1, fNumTriggersCal[itr]);
356     GetRawsData(97)->Fill(triggers[itr], fNumTriggers[itr]);
357     GetRawsData(97)->SetBinContent(itr+1, fNumTriggers[itr]);
358   }  
359 }
360
361 //____________________________________________________________________________ 
362 void AliT0QADataMakerRec::InitDigits()
363 {
364   // create Digits histograms in Digits subdir
365   const Bool_t expert   = kTRUE ; 
366   const Bool_t image    = kTRUE ; 
367   
368   TH2F * fhDigCFD = new TH2F("fhDigCFD", " CFD digits; #PMT; CFD digits[#channels]",25,-0.5,24.5,100,0,1000);
369   fhDigCFD->SetOption("COLZ");
370   Add2DigitsList( fhDigCFD,0, !expert, image);
371   TH2F *fhDigLEDamp = new TH2F("fhDigLEDamp", " LED-CFD digits; #PMT; LED-CFD amplitude ",25,-0.5,24.5,100,100,1000);
372   fhDigLEDamp->SetOption("COLZ");
373   Add2DigitsList( fhDigLEDamp,1, !expert, !image);
374   TH2F * fhDigQTC = new TH2F("fhDigQTC", " QTC digits; #PMT; QTC amplitude",25,-0.5,24.5,100,100,10000);
375   fhDigQTC->SetOption("COLZ");
376   Add2DigitsList( fhDigQTC,2, !expert, !image);}
377
378 //____________________________________________________________________________ 
379
380 void AliT0QADataMakerRec::InitRecPoints()
381 {
382   // create cluster histograms in RecPoint subdir
383   const Bool_t expert   = kTRUE ; 
384   const Bool_t image    = kTRUE ; 
385
386   TH2F* fhRecCFD = new TH2F("hRecCFD"," CFD time;Time [ns];Counts",24, 0 ,24, 
387                               100,-50,50);
388   fhRecCFD->SetOption("COLZ");
389   Add2RecPointsList ( fhRecCFD,0, !expert, image);
390
391   TH2F* fhRecAmpDiff = new TH2F("hRecAmpDiff"," LED-CFD  min QTC amplitude;Amplitude [ADC counts];Counts",
392                                 24, 0 ,24, 200,-10,10);
393   fhRecAmpDiff->SetOption("COLZ");
394   Add2RecPointsList (fhRecAmpDiff, 1, !expert, image);
395   
396   TH1F *fhMean = new TH1F("hMean","online - rec mean;online - rec mean[#channels];",2000, -1000, 1000);
397   Add2RecPointsList ( fhMean,2, !expert, image);
398
399 }
400
401 //____________________________________________________________________________
402 void AliT0QADataMakerRec::InitESDs()
403 {
404   //create ESDs histograms in ESDs subdir
405   const Bool_t expert   = kTRUE ; 
406   const Bool_t image    = kTRUE ; 
407   
408   TH1F *fhESDMean = new TH1F("hESDmean"," ESD mean; mean time[%channels]",1000,0,1000);
409   Add2ESDsList(fhESDMean, 0, !expert, image) ;
410   TH1F * fhESDVertex = new TH1F("hESDvertex","ESDvertex; vertex[cm];",82,-30,30);
411   Add2ESDsList(fhESDVertex, 1, !expert, image) ;
412   
413
414 }
415
416 //____________________________________________________________________________
417 void AliT0QADataMakerRec::MakeRaws( AliRawReader* rawReader)
418 {
419
420   rawReader->Reset() ; 
421   //fills QA histos for RAW
422   Int_t shift=0;
423   Int_t refPointParam = GetRecoParam()->GetRefPoint();
424   Int_t refpoint = 0;
425
426   AliT0RawReader *start = new AliT0RawReader(rawReader);
427   
428   if (! start->Next())
429     AliDebug(AliQAv1::GetQADebugLevel(),Form(" no raw data found!!"));
430   else
431     {  
432       
433       UInt_t type =rawReader->GetType();
434       if (type == 8){ shift=101; fnEventCal++;} 
435       if (type == 7){ shift=0;   fnEventPhys++;}
436       Int_t allData[110][5];
437       for (Int_t i0=0; i0<105; i0++)
438         {
439           for (Int_t j0=0; j0<5; j0++) allData[i0][j0]=0;
440         }
441       for (Int_t i=0; i<105; i++) 
442         for (Int_t iHit=0; iHit<5; iHit++)
443           allData[i][iHit]= start->GetData(i,iHit);
444       
445       if (allData[0][0] > 0 ) GetRawsData(0) -> Fill( allData[0][0]);
446  
447       refpoint = allData[refPointParam][0];
448       if (refPointParam <  0 ) refpoint=0; 
449       if (refPointParam == 0 ) refpoint = allData[0][0] - 5000;
450
451       Int_t numPmtC=0;    
452       for (Int_t ik = 0; ik<12; ik++)
453         {
454         //      for (Int_t iHt=0; iHt<1; iHt++){
455
456         Int_t nhitsPMT=0;
457         if(allData[ik+1][0]>0 && type == 7  ) numPmtC++;
458         for (Int_t iHt=0; iHt<5; iHt++){
459           //cfd
460           if(allData[ik+1][iHt]>0) {
461             GetRawsData(shift+ik+1) -> Fill(allData[ik+1][iHt]-refpoint);
462             GetRawsData(shift+ik+220) -> Fill(allData[ik+1][iHt]-allData[1][0]);
463             //      cout<<"C  cfd "<<ik<<" "<<iHt<<" "<<allData[ik+1][iHt]<<" -RF "<<refpoint<<"  "<<allData[ik+1][iHt]-refpoint<<endl;
464             if(type == 8  ) {
465               feffC[ik]++;
466               GetRawsData(208)->Fill(ik+1, allData[ik+1][iHt]-refpoint);
467             } 
468             if(type == 7  )  nhitsPMT++;
469             
470           }
471           //led
472           if(allData[ik+13][iHt] > 0) { 
473             GetRawsData(shift+ik+24+1)->  Fill(allData[ik+13][iHt]-refpoint);
474             //      cout<<"C  led "<<ik<<" "<<iHt<<" "<<allData[ik+1][iHt]<<" -RF "<<refpoint<<"  "<<allData[ik+13][iHt]-refpoint<<endl;
475             if(type == 8  ) {
476               feffA[ik]++;
477               GetRawsData(209)->Fill(ik+1, allData[ik+13][iHt]-refpoint);
478             }
479           }
480           //led -cfd
481
482           if(allData[ik+13][iHt] > 0 && allData[ik+1][iHt] >0 )
483             GetRawsData(shift+ik+48+1)->
484               Fill(allData[ik+13][iHt]-allData[ik+1][iHt]);
485
486           //qtc
487           if(allData[2*ik+25][iHt] > 0 || allData[2*ik+26][iHt] > 0) {
488             GetRawsData(shift+ik+72+1)->
489               Fill(allData[2*ik+25][iHt]-allData[2*ik+26][iHt]);
490             GetRawsData(shift+ik+270)->Fill(allData[2*ik+26][iHt] - refpoint);
491             GetRawsData(shift+ik+24+270)->Fill(allData[2*ik+25][iHt] - refpoint);
492
493             if(type == 8  ) feffqtc[ik]++;
494           }
495         }
496         if(type == 7  ) GetRawsData(ik+244)->Fill(nhitsPMT);
497       }
498       Int_t numPmtA=0;    
499        for (Int_t ik = 12; ik<24; ik++) {
500         //      for (Int_t iHt=0; iHt<1; iHt++) {
501         if(allData[ik+1][0]>0 && type == 7 ) numPmtA++;
502         Int_t nhitsPMT=0;
503         if(allData[ik+1][0]>0) numPmtA++;
504         for (Int_t iHt=0; iHt<5; iHt++) {
505           if(allData[ik+45][iHt]>0) {
506             //cfd
507             GetRawsData(shift+ik+1)->
508               Fill(allData[ik+45][iHt]-refpoint);
509             GetRawsData(shift+ik+220) -> Fill(allData[ik+45][iHt]-allData[57][0]);
510
511             //      cout<<"A  cfd "<<ik<<" "<<iHt<<" "<<allData[ik+1][iHt]<<" -RF "<<refpoint<<"  "<<allData[ik+1][iHt]-refpoint<<endl;
512             if(type == 8  ) {
513               feffC[ik]++;
514               GetRawsData(208)->Fill(ik+1, allData[ik+45][iHt]-refpoint);
515             } 
516             if(type == 7  )   nhitsPMT++;
517             
518
519           }
520           //led
521           if(allData[ik+57][iHt] > 0 ) {
522             GetRawsData(shift+ik+24+1)->Fill(allData[ik+57][iHt]-refpoint);
523             //   cout<<"C  led "<<ik<<" "<<iHt<<" "<<allData[ik+1][iHt]<<" -RF "<<refpoint<<"  "<<allData[ik+13][iHt]-refpoint<<endl;
524             if(type == 8  ) {
525               feffA[ik]++;
526               GetRawsData(209)->Fill(ik+1, allData[ik+57][iHt]-refpoint);
527             }
528           }
529             //qtc         
530           if(allData[2*ik+57][iHt]>0 || allData[2*ik+58][iHt]>0)
531             {
532               GetRawsData(shift+ik+72+1)-> Fill(allData[2*ik+57][iHt]-allData[2*ik+58][iHt]);
533               GetRawsData(shift+ik+270)->Fill(allData[2*ik+58][iHt]-refpoint);
534               GetRawsData(shift+ik+24+270)->Fill(allData[2*ik+57][iHt]-refpoint);
535               if(type == 8  )  feffqtc[ik]++;
536             } 
537           //led-cfd
538           if(allData[ik+57][iHt] > 0 &&allData[ik+45][iHt]>0)
539             GetRawsData(shift+ik+48+1)->
540               Fill(allData[ik+57][iHt]-allData[ik+45][iHt]);
541         }
542         if(type == 7  ) GetRawsData(ik+244)->Fill(nhitsPMT);
543
544       }
545       
546       Int_t trChannel[6] = {49,50,51,52,55,56};  
547        
548       if(type == 7)
549         {
550           Int_t nhitsOrA=0;
551           Int_t nhitsOrC=0;
552           for (Int_t iHt=0; iHt<5; iHt++) {
553             for (Int_t itr=0; itr<6; itr++) {
554               if (allData[trChannel[itr]][iHt] >0) {
555                 fNumTriggers[itr]++;
556                 GetRawsData(98+itr)->Fill(allData[trChannel[itr]][iHt]-refpoint);
557               }
558             }
559
560             if(allData[51][iHt] >0) nhitsOrA++;
561             if(allData[52][iHt] >0) nhitsOrC++;
562             
563             if(allData[53][iHt]>0 && allData[54][iHt]>0) {
564               GetRawsData(216)->Fill(allData[53][iHt]-allData[54][iHt]);
565               if(allData[55][iHt]>0) GetRawsData(216)->Fill(allData[53][iHt]-allData[54][iHt]);
566               if(allData[56][iHt]>0) GetRawsData(218)->Fill(allData[53][iHt]-allData[54][iHt]);
567             }
568             if(allData[51][iHt]>0 && allData[52][iHt]>0)
569               GetRawsData(215)->Fill(allData[51][iHt]-allData[52][iHt]);
570           }
571           GetRawsData(213)->Fill(nhitsOrA);
572           GetRawsData(214)->Fill(nhitsOrC);
573           
574         }
575       
576       if(type == 8)
577           {
578             for (Int_t iHt=0; iHt<5; iHt++) {
579               for (Int_t itr=0; itr<6; itr++) {
580                 if(allData[trChannel[itr]][iHt]>0)
581                   {
582                     
583                     GetRawsData(198+itr)->
584                       Fill(allData[trChannel[itr]][iHt]-refpoint);
585                     fNumTriggersCal[itr]++;
586                   }
587               }
588               if(allData[53][iHt]>0 && allData[54][iHt]>0) {
589                 GetRawsData(202)->Fill(allData[53][iHt]-allData[54][iHt]);
590                 if(allData[55][iHt]>0) GetRawsData(202)->Fill(allData[53][iHt]-allData[54][iHt]);
591                 if(allData[56][iHt]>0) GetRawsData(204)->Fill(allData[53][iHt]-allData[54][iHt]);
592               }
593             }
594           } 
595       
596            delete start;
597     }
598 }
599
600
601
602 //____________________________________________________________________________
603 void AliT0QADataMakerRec::MakeDigits( TTree *digitsTree)
604 {
605   //fills QA histos for Digits
606
607   TArrayI *digCFD = new TArrayI(24);
608   TArrayI *digLED = new TArrayI(24);
609   TArrayI *digQT0 = new TArrayI(24);
610   TArrayI *digQT1 = new TArrayI(24);
611   Int_t refpoint=0;
612   
613   TBranch *brDigits=digitsTree->GetBranch("T0");
614   AliT0digit *fDigits = new AliT0digit() ;
615   if (brDigits) {
616     brDigits->SetAddress(&fDigits);
617   }else{
618     AliError(Form("EXEC Branch T0 digits not found"));
619     return;
620   }
621   digitsTree->GetEvent(0);
622   digitsTree->GetEntry(0);
623   brDigits->GetEntry(0);
624   fDigits->GetTimeCFD(*digCFD);
625   fDigits->GetTimeLED(*digLED);
626   fDigits->GetQT0(*digQT0);
627   fDigits->GetQT1(*digQT1);
628   refpoint = fDigits->RefPoint();
629   for (Int_t i=0; i<24; i++)
630     {
631     if (digCFD->At(i)>0) {
632       Int_t cfd=digCFD->At(i)- refpoint;
633       GetDigitsData(0) ->Fill(i,cfd);
634       GetDigitsData(1) -> Fill(i, (digLED->At(i) - digCFD->At(i)));
635       GetDigitsData(2) -> Fill(i, (digQT1->At(i) - digQT0->At(i)));
636     }
637     }  
638   
639   delete digCFD;
640   delete digLED;
641   delete digQT0;
642   delete digQT1;
643   
644 }
645
646 //____________________________________________________________________________
647 void AliT0QADataMakerRec::MakeRecPoints(TTree * clustersTree)
648 {
649   //fills QA histos for clusters
650
651   AliT0RecPoint* frecpoints= new AliT0RecPoint ();
652   if (!frecpoints) {
653     AliError(":MakeRecPoints >> no recpoints found");
654     return;
655   }
656   TBranch *brRec =clustersTree ->GetBranch("T0");
657   if (brRec) {
658     brRec->SetAddress(&frecpoints);
659   }else{
660     AliError(Form("EXEC Branch T0 rec not found "));
661     return;
662   } 
663
664   brRec->GetEntry(0);
665   
666   for ( Int_t i=0; i<24; i++) {
667     if(i<12)
668       GetRecPointsData(0) -> Fill(i, frecpoints -> GetTime(i) - frecpoints -> GetTime(0)); 
669     if(i>11)
670       GetRecPointsData(0) -> Fill(i,  frecpoints -> GetTime(i) - frecpoints -> GetTime(12)); 
671     GetRecPointsData(1) -> Fill( i, frecpoints -> GetAmp(i) - frecpoints->AmpLED(i));
672   }
673   Double_t mmm=frecpoints->GetOnlineMean()- frecpoints->GetMeanTime();
674   GetRecPointsData(2) ->Fill(mmm);
675   
676 }
677
678 //____________________________________________________________________________
679 void AliT0QADataMakerRec::MakeESDs(AliESDEvent * esd)
680 {
681   //fills QA histos for ESD
682   
683   GetESDsData(0) -> Fill(esd->GetT0());
684   GetESDsData(1)-> Fill(esd->GetT0zVertex());
685   
686 }