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da268e11 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 *
d7f71269 12 * about the suitability of this software for any purpose. It is *
da268e11 13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16
17
18/*
f12abd89 19 Responsible: marian.ivanov@cern.ch
20 Code to analyze the TPC calibration and to produce OCDB entries
21
22
da268e11 23 .x ~/rootlogon.C
24 gSystem->Load("libANALYSIS");
25 gSystem->Load("libTPCcalib");
da268e11 26
27 AliTPCPreprocessorOffline proces;
b322e06a 28 TString ocdbPath="local:////"
29 ocdbPath+=gSystem->GetFromPipe("pwd");
30
31 proces.CalibTimeGain("CalibObjects.root",run0,run1,ocdbPath);
32 proces.CalibTimeVdrift("CalibObjects.root",run0,run1,ocdbPath);
f12abd89 33 // take the raw calibration data from the file CalibObjects.root
34 // and make a OCDB entry with run validity run0-run1
35 // results are stored at the ocdbPath - local or alien ...
36 // default storage ""- data stored at current working directory
da268e11 37
68d461b2 38 e.g.
6d64657a 39 gSystem->Load("libANALYSIS");
40 gSystem->Load("libTPCcalib");
41 AliTPCPreprocessorOffline proces;
42 proces.CalibTimeGain("TPCMultObjects.root",114000,140040,0);
68d461b2 43 TFile oo("OCDB/TPC/Calib/TimeGain/Run114000_121040_v0_s0.root")
2f3c5f09 44 TObjArray * arr = AliCDBEntry->GetObject()
68d461b2 45 arr->At(4)->Draw("alp")
46
da268e11 47*/
f12abd89 48#include "Riostream.h"
49#include <fstream>
da268e11 50#include "TMap.h"
51#include "TGraphErrors.h"
52#include "AliExternalTrackParam.h"
53#include "TFile.h"
08669268 54#include "TDirectory.h"
da268e11 55#include "TGraph.h"
56#include "TMultiGraph.h"
57#include "TCanvas.h"
58#include "THnSparse.h"
59#include "TLegend.h"
60#include "TPad.h"
61#include "TH2D.h"
391ffdb2 62#include "TH3D.h"
da268e11 63#include "AliTPCROC.h"
64#include "AliTPCCalROC.h"
da268e11 65#include "AliESDfriend.h"
da268e11 66#include "AliTPCcalibTime.h"
67#include "AliSplineFit.h"
68#include "AliCDBMetaData.h"
69#include "AliCDBId.h"
70#include "AliCDBManager.h"
71#include "AliCDBStorage.h"
72#include "AliTPCcalibBase.h"
73#include "AliTPCcalibDB.h"
74#include "AliTPCcalibDButil.h"
75#include "AliRelAlignerKalman.h"
76#include "AliTPCParamSR.h"
77#include "AliTPCcalibTimeGain.h"
56b51ad9 78#include "AliTPCcalibGainMult.h"
3db6421b 79#include "AliTPCcalibAlign.h"
da268e11 80#include "AliSplineFit.h"
f3023796 81#include "AliTPCComposedCorrection.h"
82#include "AliTPCExBTwist.h"
83#include "AliTPCCalibGlobalMisalignment.h"
84#include "TStatToolkit.h"
85#include "TChain.h"
86#include "TCut.h"
87#include "AliTrackerBase.h"
3db6421b 88#include "AliTracker.h"
da268e11 89#include "AliTPCPreprocessorOffline.h"
3db6421b 90#include "AliTPCCorrectionFit.h"
da268e11 91
8fae6121
MK
92#include "AliTPCClusterParam.h"
93#include "AliTPCRecoParam.h"
94
c82bb898 95using std::endl;
96using std::cout;
8fae6121 97
da268e11 98ClassImp(AliTPCPreprocessorOffline)
99
100AliTPCPreprocessorOffline::AliTPCPreprocessorOffline():
f12abd89 101 TNamed("TPCPreprocessorOffline","TPCPreprocessorOffline"),
40120adc 102 fMinEntries(500), // minimal number of entries for fit
a9f9c69b 103 fStartRun(0), // start Run - used to make fast selection in THnSparse
104 fEndRun(0), // end Run - used to make fast selection in THnSparse
105 fStartTime(0), // fStartTime - used to make fast selection in THnSparse
106 fEndTime(0), // fEndTime - used to make fast selection in THnSparse
107 fOCDBstorage(0), // OCDB storage
da268e11 108 fVdriftArray(new TObjArray),
109 fTimeDrift(0),
110 fGraphMIP(0), // graph time dependence of MIP
111 fGraphCosmic(0), // graph time dependence at Plateu
391ffdb2 112 fGraphAttachmentMIP(0),
da268e11 113 fFitMIP(0), // fit of dependence - MIP
114 fFitCosmic(0), // fit of dependence - Plateu
115 fGainArray(new TObjArray), // array to be stored in the OCDB
116 fGainMIP(0), // calibration component for MIP
68d461b2 117 fGainCosmic(0), // calibration component for cosmic
56b51ad9 118 fGainMult(0),
f3023796 119 fAlignTree(0), // alignment tree
88b09aaa 120 fSwitchOnValidation(kFALSE), // flag to switch on validation of OCDB parameters
121 fMinGain(2.0),
122 fMaxGain(3.0),
3f76dadb 123 fMaxVdriftCorr(0.03),
124 fNtracksVdrift(0),
125 fMinTracksVdrift(0),
126 fNeventsVdrift(0),
127 fMinEventsVdrift(0),
128 fCalibrationStatus(0)
da268e11 129{
130 //
f12abd89 131 // default constructor
132 //
da268e11 133}
134
135AliTPCPreprocessorOffline::~AliTPCPreprocessorOffline() {
136 //
137 // Destructor
138 //
139}
140
141
142
143
40120adc 144void AliTPCPreprocessorOffline::GetRunRange(AliTPCcalibTime * const timeDrift){
da268e11 145 //
146 // find the fist and last run
147 //
f12abd89 148 TObjArray *hisArray =timeDrift->GetHistoDrift();
da268e11 149 {for (Int_t i=0; i<hisArray->GetEntriesFast(); i++){
150 THnSparse* addHist=(THnSparse*)hisArray->UncheckedAt(i);
da268e11 151 if (!addHist) continue;
2a3fb9f6 152 if (addHist->GetEntries()<fMinEntries) continue;
da268e11 153 TH1D* histo =addHist->Projection(3);
154 TH1D* histoTime=addHist->Projection(0);
155 printf("%s\t%f\t%d\t%d\n",histo->GetName(), histo->GetEntries(),histo->FindFirstBinAbove(0),histo->FindLastBinAbove(0));
156
a9f9c69b 157 if (fStartRun<=0){
158 fStartRun=histo->FindFirstBinAbove(0);
159 fEndRun =histo->FindLastBinAbove(0);
da268e11 160 }else{
a9f9c69b 161 fStartRun=TMath::Min(histo->FindFirstBinAbove(0),fStartRun);
162 fEndRun =TMath::Max(histo->FindLastBinAbove(0),fEndRun);
da268e11 163 }
a9f9c69b 164 if (fStartTime==0){
165 fStartTime=histoTime->FindFirstBinAbove(0);
166 fEndTime =histoTime->FindLastBinAbove(0);
da268e11 167 }else{
a9f9c69b 168 fStartTime=TMath::Min(histoTime->FindFirstBinAbove(0),fStartTime);
169 fEndTime =TMath::Max(histoTime->FindLastBinAbove(0),fEndTime);
da268e11 170 }
171 delete histo;
172 delete histoTime;
173 }}
a9f9c69b 174 if (fStartRun<0) fStartRun=0;
175 if (fEndRun<0) fEndRun=100000000;
176 printf("Run range :\t%d-%d\n", fStartRun, fEndRun);
177 printf("Time range :\t%d-%d\n", fStartTime, fEndTime);
da268e11 178
179}
180
181
182
a9f9c69b 183void AliTPCPreprocessorOffline::CalibTimeVdrift(const Char_t* file, Int_t ustartRun, Int_t uendRun, AliCDBStorage* pocdbStorage){
da268e11 184 //
40120adc 185 // make calibration of the drift velocity
186 // Input parameters:
187 // file - the location of input file
188 // ustartRun, uendrun - run validity period
189 // pocdbStorage - path to hte OCDB storage
190 // - if empty - local storage 'pwd' uesed
a9f9c69b 191 if (pocdbStorage) fOCDBstorage=pocdbStorage;
192 else {
193 TString localStorage = "local://"+gSystem->GetFromPipe("pwd")+"/OCDB";
194 fOCDBstorage=AliCDBManager::Instance()->GetStorage(localStorage.Data());
195 }
196
da268e11 197 //
198 // 1. Initialization and run range setting
199 TFile fcalib(file);
08669268 200 TObject* obj = dynamic_cast<TObject*>(fcalib.Get("TPCCalib"));
201 TObjArray* array = dynamic_cast<TObjArray*>(obj);
202 TDirectory* dir = dynamic_cast<TDirectory*>(obj);
203 if (dir) {
204 fTimeDrift = dynamic_cast<AliTPCcalibTime*>(dir->Get("calibTime"));
205 }
206 else if (array){
68d461b2 207 fTimeDrift = (AliTPCcalibTime *)array->FindObject("calibTime");
208 } else {
209 fTimeDrift = (AliTPCcalibTime*)fcalib.Get("calibTime");
210 }
211 if(!fTimeDrift) return;
212
3f76dadb 213 //extract statistics
214 fNtracksVdrift = TMath::Nint(fTimeDrift->GetResHistoTPCITS(0)->GetEntries());
48b76105 215 //if we have 0 ITS TPC matches it means we have no ITS tracks and we try to use TPC-TOF matching for calibration
216 if (fNtracksVdrift==0) fNtracksVdrift=TMath::Nint(fTimeDrift->GetResHistoTPCTOF(0)->GetEntries());
3f76dadb 217 fNeventsVdrift = TMath::Nint(fTimeDrift->GetTPCVertexHisto(0)->GetEntries());
218
a9f9c69b 219 fStartRun=ustartRun;
220 fEndRun=ustartRun;
da268e11 221 TObjArray *hisArray =fTimeDrift->GetHistoDrift();
222 GetRunRange(fTimeDrift);
223 for (Int_t i=0; i<hisArray->GetEntriesFast(); i++){
224 THnSparse* addHist=(THnSparse*)hisArray->At(i);
225 if (!addHist) continue;
a9f9c69b 226 if (fStartTime<fEndTime) addHist->GetAxis(0)->SetRange(fStartTime-1,fEndTime+1);
227 if (fStartRun<fEndRun) addHist->GetAxis(3)->SetRange(fStartRun-1,fEndRun+1);
da268e11 228 }
229 //
230 //
231 // 2. extraction of the information
232 //
233 fVdriftArray = new TObjArray();
234 AddAlignmentGraphs(fVdriftArray,fTimeDrift);
40120adc 235 AddHistoGraphs(fVdriftArray,fTimeDrift,fMinEntries);
da268e11 236 AddLaserGraphs(fVdriftArray,fTimeDrift);
3f76dadb 237
da268e11 238 //
239 // 3. Append QA plots
240 //
241 MakeDefaultPlots(fVdriftArray,fVdriftArray);
68d461b2 242
da268e11 243 //
68d461b2 244 // 4. validate OCDB entries
da268e11 245 //
68d461b2 246 if(fSwitchOnValidation==kTRUE && ValidateTimeDrift()==kFALSE) {
247 Printf("TPC time drift OCDB parameters out of range!");
248 return;
249 }
f3023796 250 //
251 //4.b make alignment
252 //
253 MakeFitTime();
254 TFile * ftime= TFile::Open("fitITSVertex.root");
255 if (ftime){
256 TObject * alignmentTime=ftime->Get("FitCorrectionTime");
257 if (alignmentTime) fVdriftArray->AddLast(alignmentTime);
258 }
68d461b2 259 //
8fae6121
MK
260 // 5.) Add the RecoParam and ClusterParam - for compatibility checks -different sets of parameters can invalidate calibration
261 //
262 AliTPCClusterParam *clParam = AliTPCcalibDB::Instance()->GetClusterParam();
263 TObjArray *recoParams = new TObjArray(4) ;
264 for (Int_t i=0;i<4;i++) recoParams->AddAt(AliTPCcalibDB::Instance()->GetRecoParam(i),i);
265 fVdriftArray->AddLast(clParam);
266 fVdriftArray->AddLast(recoParams);
267 //
68d461b2 268 //
8fae6121 269 // 6. update of OCDB
da268e11 270 //
271 //
a9f9c69b 272 UpdateOCDBDrift(ustartRun,uendRun,fOCDBstorage);
da268e11 273}
274
a9f9c69b 275void AliTPCPreprocessorOffline::UpdateOCDBDrift( Int_t ustartRun, Int_t uendRun, AliCDBStorage* storage ){
da268e11 276 //
277 // Update OCDB
278 //
279 AliCDBMetaData *metaData= new AliCDBMetaData();
280 metaData->SetObjectClassName("TObjArray");
281 metaData->SetResponsible("Marian Ivanov");
282 metaData->SetBeamPeriod(1);
283 metaData->SetAliRootVersion("05-25-01"); //root version
284 metaData->SetComment("Calibration of the time dependence of the drift velocity");
285 AliCDBId* id1=NULL;
286 id1=new AliCDBId("TPC/Calib/TimeDrift", ustartRun, uendRun);
a9f9c69b 287 storage->Put(fVdriftArray, (*id1), metaData);
da268e11 288}
289
88b09aaa 290Bool_t AliTPCPreprocessorOffline::ValidateTimeGain()
68d461b2 291{
292 //
293 // Validate time gain corrections
294 //
295 Printf("ValidateTimeGain..." );
88b09aaa 296 Float_t minGain = fMinGain;
297 Float_t maxGain = fMaxGain;
68d461b2 298
299 TGraphErrors *gr = (TGraphErrors*)fGainArray->FindObject("TGRAPHERRORS_MEAN_GAIN_BEAM_ALL");
adeab288 300 if (!gr) {
301 gr = (TGraphErrors*)fGainArray->FindObject("TGRAPHERRORS_MEAN_GAIN_COSMIC_ALL");
3f76dadb 302 if (!gr)
303 {
304 fCalibrationStatus |= kCalibFailedTimeGain;
305 return kFALSE;
306 }
adeab288 307 Printf("Assuming given run is a cosmic run. Using gain calibration from Fermi-plateau muons.");
308 }
3f76dadb 309 if(gr->GetN()<1)
310 {
311 fCalibrationStatus |= kCalibFailedTimeGain;
312 return kFALSE;
313 }
68d461b2 314
315 // check whether gain in the range
316 for(Int_t iPoint=0; iPoint<gr->GetN(); iPoint++)
317 {
318 if(gr->GetY()[iPoint] < minGain || gr->GetY()[iPoint] > maxGain)
3f76dadb 319 {
320 fCalibrationStatus |= kCalibFailedTimeGain;
68d461b2 321 return kFALSE;
3f76dadb 322 }
68d461b2 323 }
324
325return kTRUE;
326}
327
da268e11 328
88b09aaa 329Bool_t AliTPCPreprocessorOffline::ValidateTimeDrift()
68d461b2 330{
331 //
332 // Validate time drift velocity corrections
333 //
334 Printf("ValidateTimeDrift..." );
335
88b09aaa 336 Float_t maxVDriftCorr = fMaxVdriftCorr;
337
68d461b2 338 TGraphErrors* gr = (TGraphErrors*)fVdriftArray->FindObject("ALIGN_ITSB_TPC_DRIFTVD");
3dcbe287 339 Printf("ALIGN_ITSB_TPC_DRIFTVD graph = %p",gr);
48b76105 340 if (!gr)
3f76dadb 341 {
48b76105 342 gr = (TGraphErrors*)fVdriftArray->FindObject("ALIGN_TOFB_TPC_DRIFTVD");
343 Printf("ALIGN_TOFB_TPC_DRIFTVD graph = %p",gr);
3f76dadb 344 }
345
346 if(!gr)
347 {
348 fCalibrationStatus|=kCalibFailedTimeDrift;
349 return kFALSE;
350 }
48b76105 351
352 // for now we validate even with low statistics
353 ////check if we have enough statistics
354 //if (fNtracksVdrift<fMinTracksVdrift)
355 //{
356 // fCalibrationStatus|=kCalibFailedTimeDrift;
357 // return kFALSE;
358 //}
359
3dcbe287 360 if(gr->GetN()<1) {
361 Printf("ALIGN_ITSB_TPC_DRIFTVD number of points = %d",gr->GetN());
3f76dadb 362 {
363 fCalibrationStatus|=kCalibFailedTimeDrift;
364 return kFALSE;
365 }
3dcbe287 366 }
68d461b2 367
368 // check whether drift velocity corrections in the range
369 for(Int_t iPoint = 0; iPoint<gr->GetN(); iPoint++)
370 {
a9f9c69b 371 //Printf("Y value from the graph: %f",TMath::Abs(gr->GetY()[iPoint]));
68d461b2 372 if(TMath::Abs(gr->GetY()[iPoint]) > maxVDriftCorr)
3f76dadb 373 {
374 fCalibrationStatus|=kCalibFailedTimeDrift;
68d461b2 375 return kFALSE;
3f76dadb 376 }
68d461b2 377 }
378
379return kTRUE;
380}
da268e11 381
40120adc 382void AliTPCPreprocessorOffline::UpdateDriftParam(AliTPCParam *param, TObjArray *const arr, Int_t lstartRun){
da268e11 383 //
384 // update the OCDB entry for the nominal time0
385 //
386 //
387 // AliTPCParam * param = AliTPCcalibDB::Instance()->GetParameters();
388 AliTPCParam *paramNew = (AliTPCParam *)param->Clone();
389 TGraphErrors *grT = (TGraphErrors *)arr->FindObject("ALIGN_ITSM_TPC_T0");
390 Double_t deltaTcm = TMath::Median(grT->GetN(),grT->GetY());
391 Double_t deltaT = deltaTcm/param->GetDriftV();
392 paramNew->SetL1Delay(param->GetL1Delay()-deltaT);
393 paramNew->Update();
394
395 AliCDBMetaData *metaData= new AliCDBMetaData();
396 metaData->SetObjectClassName("TObjArray");
397 metaData->SetResponsible("Marian Ivanov");
398 metaData->SetBeamPeriod(1);
399 metaData->SetAliRootVersion("05-25-02"); //root version
400 metaData->SetComment("Updated calibration of nominal time 0");
401 AliCDBId* id1=NULL;
f12abd89 402 id1=new AliCDBId("TPC/Calib/Parameters", lstartRun, AliCDBRunRange::Infinity());
a9f9c69b 403 fOCDBstorage->Put(param, (*id1), metaData);
da268e11 404
405}
406
407
408void AliTPCPreprocessorOffline::PrintArray(TObjArray *array){
409 //
40120adc 410 // Print the names of the entries in array
da268e11 411 //
412 Int_t entries = array->GetEntries();
413 for (Int_t i=0; i<entries; i++){
414 if (!array->At(i)) continue;
415 printf("%d\t %s\n", i, array->At(i)->GetName());
416 }
417}
418
419
420
421TGraphErrors* AliTPCPreprocessorOffline::FilterGraphDrift(TGraphErrors * graph, Float_t errSigmaCut, Float_t medianCutAbs){
422 // 2 filters:
423 // 1. filter graph - error cut errSigmaCut
424 // 2. filter graph - medianCutAbs around median
425 //
426 // errSigmaCut - cut on error
427 // medianCutAbs - cut on value around median
428 Double_t dummy=0; //
429 //
430 // 1. filter graph - error cut errSigmaCut
431 //
432 TGraphErrors *graphF;
433 graphF = AliTPCcalibDButil::FilterGraphMedianErr(graph,errSigmaCut,dummy);
434 delete graph;
435 if (!graphF) return 0;
436 graph = AliTPCcalibDButil::FilterGraphMedianErr(graphF,errSigmaCut,dummy);
437 delete graphF;
438 if (!graph) return 0;
439 //
440 // filter graph - kMedianCutAbs around median
441 //
442 graphF=FilterGraphMedianAbs(graph, medianCutAbs,dummy);
443 delete graph;
444 if (!graphF) return 0;
445 graph=FilterGraphMedianAbs(graphF, medianCutAbs,dummy);
446 delete graphF;
447 if (!graph) return 0;
448 return graph;
449}
450
451
452
453TGraphErrors* AliTPCPreprocessorOffline::FilterGraphMedianAbs(TGraphErrors * graph, Float_t cut,Double_t &medianY){
454 //
455 // filter outlyer measurement
456 // Only points around median +- cut filtered
457 //
458 if (!graph) return 0;
459 Int_t kMinPoints=2;
460 Int_t npoints0 = graph->GetN();
461 Int_t npoints=0;
462 Float_t rmsY=0;
463 Double_t *outx=new Double_t[npoints0];
464 Double_t *outy=new Double_t[npoints0];
465 Double_t *errx=new Double_t[npoints0];
466 Double_t *erry=new Double_t[npoints0];
467 //
468 //
0bc13e06 469 if (npoints0<kMinPoints) {
470 delete []outx;
471 delete []outy;
472 delete []errx;
473 delete []erry;
474 return 0;
475 }
da268e11 476 for (Int_t iter=0; iter<3; iter++){
477 npoints=0;
478 for (Int_t ipoint=0; ipoint<npoints0; ipoint++){
479 if (graph->GetY()[ipoint]==0) continue;
480 if (iter>0 &&TMath::Abs(graph->GetY()[ipoint]-medianY)>cut) continue;
481 outx[npoints] = graph->GetX()[ipoint];
482 outy[npoints] = graph->GetY()[ipoint];
483 errx[npoints] = graph->GetErrorX(ipoint);
484 erry[npoints] = graph->GetErrorY(ipoint);
485 npoints++;
486 }
487 if (npoints<=1) break;
488 medianY =TMath::Median(npoints,outy);
489 rmsY =TMath::RMS(npoints,outy);
490 }
491 TGraphErrors *graphOut=0;
492 if (npoints>1) graphOut= new TGraphErrors(npoints,outx,outy,errx,erry);
831e26ce 493 delete []outx;
494 delete []outy;
495 delete []errx;
496 delete []erry;
da268e11 497 return graphOut;
498}
499
500
40120adc 501void AliTPCPreprocessorOffline::AddHistoGraphs( TObjArray * vdriftArray, AliTPCcalibTime * const timeDrift, Int_t minEntries){
da268e11 502 //
503 // Add graphs corresponding to the alignment
504 //
505 const Double_t kErrSigmaCut=5; // error sigma cut - for filtering
506 const Double_t kMedianCutAbs=0.03; // error sigma cut - for filtering
507 //
508 TObjArray * array=timeDrift->GetHistoDrift();
509 if (array){
510 THnSparse* hist=NULL;
511 // 2.a) cosmics with different triggers
512 for (Int_t i=0; i<array->GetEntriesFast();i++){
513 hist=(THnSparseF*)array->UncheckedAt(i);
514 if(!hist) continue;
515 if (hist->GetEntries()<minEntries) continue;
516 //hist->Print();
517 TString name=hist->GetName();
518 Int_t dim[4]={0,1,2,3};
519 THnSparse* newHist=hist->Projection(4,dim);
520 newHist->SetName(name);
521 TGraphErrors* graph=AliTPCcalibBase::FitSlices(newHist,2,0,400,100,0.05,0.95, kTRUE);
0bc13e06 522 if (!graph) {
523 printf("Graph =%s filtered out\n", name.Data());
524 continue;
525 }
da268e11 526 printf("name=%s graph=%i, N=%i\n", name.Data(), graph==0, graph->GetN());
527 Int_t pos=name.Index("_");
528 name=name(pos,name.Capacity()-pos);
529 TString graphName=graph->ClassName();
530 graphName+=name;
531 graphName.ToUpper();
532 //
533 graph = FilterGraphDrift(graph, kErrSigmaCut, kMedianCutAbs);
56b51ad9 534 //
831e26ce 535 if (graph){
56b51ad9 536 graph->SetMarkerStyle(i%8+20);
537 graph->SetMarkerColor(i%7);
538 graph->GetXaxis()->SetTitle("Time");
539 graph->GetYaxis()->SetTitle("v_{dcor}");
540 graph->SetName(graphName);
541 graph->SetTitle(graphName);
542 printf("Graph %d\t=\t%s\n", i, graphName.Data());
543 vdriftArray->Add(graph);
da268e11 544 }
da268e11 545 }
546 }
547}
548
549
550
551
40120adc 552void AliTPCPreprocessorOffline::AddAlignmentGraphs( TObjArray * vdriftArray, AliTPCcalibTime *const timeDrift){
da268e11 553 //
554 // Add graphs corresponding to alignment to the object array
555 //
556 TObjArray *arrayITS=0;
557 TObjArray *arrayTOF=0;
558 TObjArray *arrayTRD=0;
559 TMatrixD *mstatITS=0;
560 TMatrixD *mstatTOF=0;
561 TMatrixD *mstatTRD=0;
562 //
563 arrayITS=timeDrift->GetAlignITSTPC();
564 arrayTRD=timeDrift->GetAlignTRDTPC();
565 arrayTOF=timeDrift->GetAlignTOFTPC();
566
938ce618 567 if (arrayITS->GetEntries()>0) mstatITS= AliTPCcalibDButil::MakeStatRelKalman(arrayITS,0.7,50,fMaxVdriftCorr);
568 if (arrayTOF->GetEntries()>0) mstatTOF= AliTPCcalibDButil::MakeStatRelKalman(arrayTOF,0.7,1000,fMaxVdriftCorr);
569 if (arrayTRD->GetEntries()>0) mstatTRD= AliTPCcalibDButil::MakeStatRelKalman(arrayTRD,0.7,50,fMaxVdriftCorr);
da268e11 570 //
571 TObjArray * arrayITSP= AliTPCcalibDButil::SmoothRelKalman(arrayITS,*mstatITS, 0, 5.);
572 TObjArray * arrayITSM= AliTPCcalibDButil::SmoothRelKalman(arrayITS,*mstatITS, 1, 5.);
573 TObjArray * arrayITSB= AliTPCcalibDButil::SmoothRelKalman(arrayITSP,arrayITSM);
574 TObjArray * arrayTOFP= AliTPCcalibDButil::SmoothRelKalman(arrayTOF,*mstatTOF, 0, 5.);
575 TObjArray * arrayTOFM= AliTPCcalibDButil::SmoothRelKalman(arrayTOF,*mstatTOF, 1, 5.);
576 TObjArray * arrayTOFB= AliTPCcalibDButil::SmoothRelKalman(arrayTOFP,arrayTOFM);
577
578 TObjArray * arrayTRDP= 0x0;
579 TObjArray * arrayTRDM= 0x0;
580 TObjArray * arrayTRDB= 0x0;
581 arrayTRDP= AliTPCcalibDButil::SmoothRelKalman(arrayTRD,*mstatTRD, 0, 5.);
582 arrayTRDM= AliTPCcalibDButil::SmoothRelKalman(arrayTRD,*mstatTRD, 1, 5.);
583 arrayTRDB= AliTPCcalibDButil::SmoothRelKalman(arrayTRDP,arrayTRDM);
584 //
585 //
586 Int_t entries=TMath::Max(arrayITS->GetEntriesFast(),arrayTOF->GetEntriesFast());
587 TObjArray *arrays[12]={arrayITS, arrayITSP, arrayITSM, arrayITSB,
588 arrayTRD, arrayTRDP, arrayTRDM, arrayTRDB,
589 arrayTOF, arrayTOFP, arrayTOFM, arrayTOFB};
590 TString grnames[12]={"ALIGN_ITS", "ALIGN_ITSP", "ALIGN_ITSM", "ALIGN_ITSB",
591 "ALIGN_TRD", "ALIGN_TRDP", "ALIGN_TRDM","ALIGN_TRDB",
592 "ALIGN_TOF", "ALIGN_TOFP", "ALIGN_TOFM","ALIGN_TOFB"};
593 TString grpar[9]={"DELTAPSI", "DELTATHETA", "DELTAPHI",
594 "DELTAX", "DELTAY", "DELTAZ",
595 "DRIFTVD", "T0", "VDGY"};
596
597
598 TVectorD vX(entries);
599 TVectorD vY(entries);
600 TVectorD vEx(entries);
601 TVectorD vEy(entries);
602 TObjArray *arr=0;
603 for (Int_t iarray=0; iarray<12; iarray++){
604 arr = arrays[iarray];
605 if (arr==0) continue;
606 for (Int_t ipar=0; ipar<9; ipar++){
607 Int_t counter=0;
608 for (Int_t itime=0; itime<arr->GetEntriesFast(); itime++){
609 AliRelAlignerKalman * kalman = (AliRelAlignerKalman *) arr->UncheckedAt(itime);
610 if (!kalman) continue;
611 vX[counter]=kalman->GetTimeStamp();
612 vY[counter]=(*(kalman->GetState()))[ipar];
613 if (ipar==6) vY[counter]=1./(*(kalman->GetState()))[ipar]-1;
614 vEx[counter]=0;
615 vEy[counter]=TMath::Sqrt((*(kalman->GetStateCov()))(ipar,ipar));
616 counter++;
617 }
618
619 TGraphErrors * graph=new TGraphErrors(counter, vX.GetMatrixArray(),
620 vY.GetMatrixArray(),
621 vEx.GetMatrixArray(),
622 vEy.GetMatrixArray());
623 TString grName=grnames[iarray];
624 grName+="_TPC_";
625 grName+=grpar[ipar];
626 graph->SetName(grName.Data());
627 vdriftArray->AddLast(graph);
628 }
629 }
630}
631
632
633
634
635void AliTPCPreprocessorOffline::AddLaserGraphs( TObjArray * vdriftArray, AliTPCcalibTime *timeDrift){
636 //
637 // add graphs for laser
638 //
639 const Double_t delayL0L1 = 0.071; //this is hack for 1/2 weeks
0bc13e06 640 //THnSparse *hisN=0;
da268e11 641 TGraphErrors *grLaser[6]={0,0,0,0,0,0};
0bc13e06 642 //hisN = timeDrift->GetHistVdriftLaserA(0);
da268e11 643 if (timeDrift->GetHistVdriftLaserA(0)){
644 grLaser[0]=MakeGraphFilter0(timeDrift->GetHistVdriftLaserA(0),0,2,5,delayL0L1);
645 grLaser[0]->SetName("GRAPH_MEAN_DELAY_LASER_ALL_A");
646 vdriftArray->AddLast(grLaser[0]);
647 }
648 if (timeDrift->GetHistVdriftLaserA(1)){
649 grLaser[1]=MakeGraphFilter0(timeDrift->GetHistVdriftLaserA(1),0,2,5);
650 grLaser[1]->SetName("GRAPH_MEAN_DRIFT_LASER_ALL_A");
651 vdriftArray->AddLast(grLaser[1]);
652 }
653 if (timeDrift->GetHistVdriftLaserA(2)){
654 grLaser[2]=MakeGraphFilter0(timeDrift->GetHistVdriftLaserA(2),0,2,5);
655 grLaser[2]->SetName("GRAPH_MEAN_GLOBALYGRADIENT_LASER_ALL_A");
656 vdriftArray->AddLast(grLaser[2]);
657 }
658 if (timeDrift->GetHistVdriftLaserC(0)){
659 grLaser[3]=MakeGraphFilter0(timeDrift->GetHistVdriftLaserC(0),0,2,5,delayL0L1);
660 grLaser[3]->SetName("GRAPH_MEAN_DELAY_LASER_ALL_C");
661 vdriftArray->AddLast(grLaser[3]);
662 }
663 if (timeDrift->GetHistVdriftLaserC(1)){
664 grLaser[4]=MakeGraphFilter0(timeDrift->GetHistVdriftLaserC(1),0,2,5);
665 grLaser[4]->SetName("GRAPH_MEAN_DRIFT_LASER_ALL_C");
666 vdriftArray->AddLast(grLaser[4]);
667 }
668 if (timeDrift->GetHistVdriftLaserC(2)){
669 grLaser[5]=MakeGraphFilter0(timeDrift->GetHistVdriftLaserC(2),0,2,5);
670 grLaser[5]->SetName("GRAPH_MEAN_GLOBALYGRADIENT_LASER_ALL_C");
671 vdriftArray->AddLast(grLaser[5]);
672 }
673 for (Int_t i=0; i<6;i++){
674 if (grLaser[i]) {
675 SetDefaultGraphDrift(grLaser[i], 1,(i+20));
676 grLaser[i]->GetYaxis()->SetTitle("Laser Correction");
677 }
678 }
679}
680
681
682TGraphErrors * AliTPCPreprocessorOffline::MakeGraphFilter0(THnSparse *hisN, Int_t itime, Int_t ival, Int_t minEntries, Double_t offset){
683 //
684 // Make graph with mean values and rms
685 //
686 hisN->GetAxis(itime)->SetRange(0,100000000);
687 hisN->GetAxis(ival)->SetRange(0,100000000);
688 TH1 * hisT = hisN->Projection(itime);
689 TH1 * hisV = hisN->Projection(ival);
690 //
691 Int_t firstBinA = hisT->FindFirstBinAbove(2);
692 Int_t lastBinA = hisT->FindLastBinAbove(2);
693 Int_t firstBinV = hisV->FindFirstBinAbove(0);
694 Int_t lastBinV = hisV->FindLastBinAbove(0);
695 hisN->GetAxis(itime)->SetRange(firstBinA,lastBinA);
696 hisN->GetAxis(ival)->SetRange(firstBinV,lastBinV);
697 Int_t entries=0;
68d461b2 698 for (Int_t ibin=firstBinA; ibin<=lastBinA; ibin++){
da268e11 699 Double_t cont = hisT->GetBinContent(ibin);
700 if (cont<minEntries) continue;
701 entries++;
702 }
703 TVectorD vecTime(entries);
704 TVectorD vecMean0(entries);
705 TVectorD vecRMS0(entries);
706 TVectorD vecMean1(entries);
707 TVectorD vecRMS1(entries);
708 entries=0;
68d461b2 709 for (Int_t ibin=firstBinA; ibin<=lastBinA; ibin++){
da268e11 710 Double_t cont = hisT->GetBinContent(ibin);
711 if (cont<minEntries) continue;
68d461b2 712 //hisN->GetAxis(itime)->SetRange(ibin-1,ibin+1);
713 Int_t minBin = ibin-1;
714 Int_t maxBin = ibin+1;
715 if(minBin <= 0) minBin = 1;
716 if(maxBin >= hisN->GetAxis(itime)->GetNbins()) maxBin = hisN->GetAxis(itime)->GetNbins()-1;
717 hisN->GetAxis(itime)->SetRange(minBin,maxBin);
718
da268e11 719 Double_t time = hisT->GetBinCenter(ibin);
720 TH1 * his = hisN->Projection(ival);
721 Double_t nentries0= his->GetBinContent(his->FindBin(0));
722 if (cont-nentries0<minEntries) continue;
723 //
724 his->SetBinContent(his->FindBin(0),0);
725 vecTime[entries]=time;
726 vecMean0[entries]=his->GetMean()+offset;
727 vecMean1[entries]=his->GetMeanError();
728 vecRMS0[entries] =his->GetRMS();
729 vecRMS1[entries] =his->GetRMSError();
730 delete his;
731 entries++;
68d461b2 732 }
da268e11 733 delete hisT;
734 delete hisV;
735 TGraphErrors * graph = new TGraphErrors(entries,vecTime.GetMatrixArray(), vecMean0.GetMatrixArray(), 0, vecMean1.GetMatrixArray());
736 return graph;
737}
738
739
740
741
742
743
744
745
746void AliTPCPreprocessorOffline::SetDefaultGraphDrift(TGraph *graph, Int_t color, Int_t style){
747 //
40120adc 748 // Set default style for QA views
da268e11 749 //
750 graph->GetXaxis()->SetTimeDisplay(kTRUE);
751 graph->GetXaxis()->SetTimeFormat("#splitline{%d/%m}{%H:%M}");
752 graph->SetMaximum( 0.025);
753 graph->SetMinimum(-0.025);
754 graph->GetXaxis()->SetTitle("Time");
755 graph->GetYaxis()->SetTitle("v_{dcorr}");
756 //
757 graph->GetYaxis()->SetLabelSize(0.03);
758 graph->GetXaxis()->SetLabelSize(0.03);
759 //
760 graph->GetXaxis()->SetNdivisions(10,5,0);
761 graph->GetYaxis()->SetNdivisions(10,5,0);
762 //
763 graph->GetXaxis()->SetLabelOffset(0.02);
764 graph->GetYaxis()->SetLabelOffset(0.005);
765 //
766 graph->GetXaxis()->SetTitleOffset(1.3);
767 graph->GetYaxis()->SetTitleOffset(1.2);
768 //
769 graph->SetMarkerColor(color);
770 graph->SetLineColor(color);
771 graph->SetMarkerStyle(style);
772}
773
774void AliTPCPreprocessorOffline::SetPadStyle(TPad *pad, Float_t mx0, Float_t mx1, Float_t my0, Float_t my1){
40120adc 775 //
776 // Set default pad style for QA
777 //
da268e11 778 pad->SetTicks(1,1);
779 pad->SetMargin(mx0,mx1,my0,my1);
780}
781
782
68d461b2 783void AliTPCPreprocessorOffline::MakeDefaultPlots(TObjArray * const arr, TObjArray * /*picArray*/){
da268e11 784 //
40120adc 785 // 0. make a default QA plots
786 // 1. Store them in the array
da268e11 787 //
788 //
da268e11 789 Float_t mx0=0.12, mx1=0.1, my0=0.15, my1=0.1;
790 //
791 TGraphErrors* laserA =(TGraphErrors*)arr->FindObject("GRAPH_MEAN_DRIFT_LASER_ALL_A");
792 TGraphErrors* laserC =(TGraphErrors*)arr->FindObject("GRAPH_MEAN_DRIFT_LASER_ALL_C");
793 TGraphErrors* cosmic =(TGraphErrors*)arr->FindObject("TGRAPHERRORS_MEAN_VDRIFT_COSMICS_ALL");
794 TGraphErrors* cross =(TGraphErrors*)arr->FindObject("TGRAPHERRORS_VDRIFT_CROSS_ALL");
795 TGraphErrors* itstpcP =(TGraphErrors*)arr->FindObject("ALIGN_ITSP_TPC_DRIFTVD");
796 TGraphErrors* itstpcM =(TGraphErrors*)arr->FindObject("ALIGN_ITSM_TPC_DRIFTVD");
797 TGraphErrors* itstpcB =(TGraphErrors*)arr->FindObject("ALIGN_ITSB_TPC_DRIFTVD");
798 //
799 if (laserA) SetDefaultGraphDrift(laserA,2,25);
800 if (laserC) SetDefaultGraphDrift(laserC,4,26);
801 if (cosmic) SetDefaultGraphDrift(cosmic,3,27);
802 if (cross) SetDefaultGraphDrift(cross,4,28);
803 if (itstpcP) SetDefaultGraphDrift(itstpcP,2,29);
804 if (itstpcM) SetDefaultGraphDrift(itstpcM,4,30);
805 if (itstpcB) SetDefaultGraphDrift(itstpcB,1,31);
806 //
807 //
808 TPad *pad=0;
809 //
810 // Laser-Laser
811 //
812 if (laserA&&laserC){
813 pad = new TCanvas("TPCLaserVDrift","TPCLaserVDrift");
814 laserA->Draw("alp");
815 SetPadStyle(pad,mx0,mx1,my0,my1);
816 laserA->Draw("apl");
817 laserC->Draw("p");
818 TLegend *legend = new TLegend(mx0+0.01,1-my1-0.2, 0.5, 1-my1-0.01, "Drift velocity correction");
819 legend->AddEntry(laserA,"Laser A side");
820 legend->AddEntry(laserC,"Laser C side");
821 legend->Draw();
68d461b2 822 //picArray->AddLast(pad);
da268e11 823 }
824
831e26ce 825 if (itstpcP&&itstpcM&&itstpcB){
da268e11 826 pad = new TCanvas("ITSTPC","ITSTPC");
827 itstpcP->Draw("alp");
828 SetPadStyle(pad,mx0,mx1,my0,my1);
829 itstpcP->Draw("alp");
830 gPad->Clear();
831 itstpcM->Draw("apl");
832 itstpcP->Draw("p");
833 itstpcB->Draw("p");
834 TLegend *legend = new TLegend(mx0+0.01,1-my1-0.2, 0.5, 1-my1-0.01, "Drift velocity correction");
835 legend->AddEntry(itstpcP,"ITS-TPC smooth plus");
836 legend->AddEntry(itstpcM,"ITS-TPC smooth minus");
837 legend->AddEntry(itstpcB,"ITS-TPC smooth ");
838 legend->Draw();
68d461b2 839 //picArray->AddLast(pad);
da268e11 840 }
841
831e26ce 842 if (itstpcB&&laserA&&itstpcP&&itstpcM){
da268e11 843 pad = new TCanvas("ITSTPC_LASER","ITSTPC_LASER");
844 SetPadStyle(pad,mx0,mx1,my0,my1);
845 laserA->Draw("alp");
846 itstpcP->Draw("p");
847 itstpcM->Draw("p");
848 itstpcB->Draw("p");
849 TLegend *legend = new TLegend(mx0+0.01,1-my1-0.2, 0.5, 1-my1-0.01, "Drift velocity correction");
850 legend->AddEntry(laserA,"TPC laser");
851 legend->AddEntry(itstpcP,"ITS-TPC smooth plus");
852 legend->AddEntry(itstpcM,"ITS-TPC smooth minus");
853 legend->AddEntry(itstpcB,"ITS-TPC smooth ");
854 legend->Draw();
68d461b2 855 //picArray->AddLast(pad);
da268e11 856 }
857
858 if (itstpcP&&cross){
859 pad = new TCanvas("ITSTPC_CROSS","ITSTPC_CROSS");
860 SetPadStyle(pad,mx0,mx1,my0,my1);
861 itstpcP->Draw("alp");
862 pad->Clear();
863 cross->Draw("ap");
864 itstpcP->Draw("p");
865 //
866 TLegend *legend = new TLegend(mx0+0.01,1-my1-0.2, 0.5, 1-my1-0.01, "Drift velocity correction");
867
868 legend->AddEntry(cross,"TPC cross tracks");
869 legend->AddEntry(itstpcB,"ITS-TPC smooth");
870 legend->Draw();
68d461b2 871 //picArray->AddLast(pad);
da268e11 872 }
873 if (itstpcP&&cosmic){
874 pad = new TCanvas("ITSTPC_COSMIC","ITSTPC_COSMIC");
875 SetPadStyle(pad,mx0,mx1,my0,my1);
876 itstpcP->Draw("alp");
877 pad->Clear();
878 cosmic->Draw("ap");
879 itstpcP->Draw("p");
880 //
881 TLegend *legend = new TLegend(mx0+0.01,1-my1-0.2, 0.5, 1-my1-0.01, "Drift velocity correction");
882
883 legend->AddEntry(cosmic,"TPC cross tracks0 up-down");
884 legend->AddEntry(itstpcB,"ITS-TPC smooth");
885 legend->Draw();
68d461b2 886 //picArray->AddLast(pad);
da268e11 887 }
888}
889
890
891
892
a9f9c69b 893void AliTPCPreprocessorOffline::CalibTimeGain(const Char_t* fileName, Int_t startRunNumber, Int_t endRunNumber, AliCDBStorage* pocdbStorage){
da268e11 894 //
895 // Update OCDB gain
896 //
a9f9c69b 897 if (pocdbStorage==0) {
898 TString localStorage = "local://"+gSystem->GetFromPipe("pwd")+"/OCDB";
899 pocdbStorage = AliCDBManager::Instance()->GetStorage(localStorage.Data());
900 }
68d461b2 901
902 //
903 // 1. Read gain values
904 //
da268e11 905 ReadGainGlobal(fileName);
68d461b2 906
907 //
908 // 2. Extract calibration values
909 //
da268e11 910 AnalyzeGain(startRunNumber,endRunNumber, 1000,1.43);
391ffdb2 911 AnalyzeAttachment(startRunNumber,endRunNumber);
56b51ad9 912 AnalyzePadRegionGain();
6d64657a 913 AnalyzeGainMultiplicity();
7e3e1a9c 914 AnalyzeGainChamberByChamber();
68d461b2 915 //
d7f71269
MK
916 AnalyzeGainDipAngle(0); // short pads
917 AnalyzeGainDipAngle(1); // medium pads
918 AnalyzeGainDipAngle(2); // long pads
596c62a8 919 AnalyzeGainDipAngle(3); // absolute calibration on full track
d7f71269 920 //
68d461b2 921 // 3. Make control plots
922 //
923 MakeQAPlot(1.43);
da268e11 924
68d461b2 925 //
926 // 4. validate OCDB entries
927 //
928 if(fSwitchOnValidation==kTRUE && ValidateTimeGain()==kFALSE) {
929 Printf("TPC time gain OCDB parameters out of range!");
930 return;
931 }
da268e11 932
68d461b2 933 //
934 // 5. Update OCDB
935 //
a9f9c69b 936 UpdateOCDBGain( startRunNumber, endRunNumber, pocdbStorage);
68d461b2 937}
da268e11 938
40120adc 939void AliTPCPreprocessorOffline::ReadGainGlobal(const Char_t* fileName){
da268e11 940 //
941 // read calibration entries from file
942 //
943 TFile fcalib(fileName);
08669268 944 TObject* obj = dynamic_cast<TObject*>(fcalib.Get("TPCCalib"));
945 TObjArray * array = dynamic_cast<TObjArray*>(obj);
946 TDirectory * dir = dynamic_cast<TDirectory*>(obj);
947 if (dir) {
948 fGainMIP = dynamic_cast<AliTPCcalibTimeGain *>(dir->Get("calibTimeGain"));
949 fGainCosmic = dynamic_cast<AliTPCcalibTimeGain *>(dir->Get("calibTimeGainCosmic"));
950 fGainMult = dynamic_cast<AliTPCcalibGainMult *>(dir->Get("calibGainMult"));
951 }
952 else if (array){
da268e11 953 fGainMIP = ( AliTPCcalibTimeGain *)array->FindObject("calibTimeGain");
954 fGainCosmic = ( AliTPCcalibTimeGain *)array->FindObject("calibTimeGainCosmic");
56b51ad9 955 fGainMult = ( AliTPCcalibGainMult *)array->FindObject("calibGainMult");
da268e11 956 }else{
957 fGainMIP = ( AliTPCcalibTimeGain *)fcalib.Get("calibTimeGain");
958 fGainCosmic = ( AliTPCcalibTimeGain *)fcalib.Get("calibTimeGainCosmic");
56b51ad9 959 fGainMult = ( AliTPCcalibGainMult *)fcalib.Get("calibGainMult");
da268e11 960 }
f8d8b429 961 if (!fGainMult){
a9f9c69b 962 TFile calibMultFile("TPCMultObjects.root");
963 fGainMult = ( AliTPCcalibGainMult *)calibMultFile.Get("calibGainMult");
f8d8b429 964 }
da268e11 965 TH1 * hisT=0;
966 Int_t firstBinA =0, lastBinA=0;
967
968 if (fGainCosmic){
969 hisT= fGainCosmic->GetHistGainTime()->Projection(1);
970 firstBinA = hisT->FindFirstBinAbove(2);
971 lastBinA = hisT->FindLastBinAbove(2);
972 fGainCosmic->GetHistGainTime()->GetAxis(1)->SetRange(firstBinA,lastBinA);
973 delete hisT;
974 }
975
976 if (fGainMIP){
977 hisT= fGainMIP->GetHistGainTime()->Projection(1);
978 firstBinA = hisT->FindFirstBinAbove(2);
979 lastBinA = hisT->FindLastBinAbove(2);
980 fGainMIP->GetHistGainTime()->GetAxis(1)->SetRange(firstBinA,lastBinA);
981 delete hisT;
982 }
983
984}
985
da268e11 986Bool_t AliTPCPreprocessorOffline::AnalyzeGain(Int_t startRunNumber, Int_t endRunNumber, Int_t minEntriesGaussFit, Float_t FPtoMIPratio){
987 //
40120adc 988 // Analyze gain - produce the calibration graphs
8fae6121 989 //
68d461b2 990
da268e11 991 // 1.) try to create MIP spline
68d461b2 992 if (fGainMIP)
993 {
994 fGainMIP->GetHistGainTime()->GetAxis(5)->SetRangeUser(startRunNumber, endRunNumber);
995 fGainMIP->GetHistGainTime()->GetAxis(2)->SetRangeUser(1.51,2.49); // only beam data
996 fGainMIP->GetHistGainTime()->GetAxis(4)->SetRangeUser(0.39,0.51); // only MIP pions
997 //
998 fGraphMIP = AliTPCcalibBase::FitSlices(fGainMIP->GetHistGainTime(),0,1,minEntriesGaussFit,10,0.1,0.7);
999 if (fGraphMIP->GetN()==0) fGraphMIP = 0x0;
1000 if (fGraphMIP) fFitMIP = AliTPCcalibTimeGain::MakeSplineFit(fGraphMIP);
1001 if (fGraphMIP) fGraphMIP->SetName("TGRAPHERRORS_MEAN_GAIN_BEAM_ALL");// set proper names according to naming convention
1002 fGainArray->AddAt(fFitMIP,0);
1003 }
da268e11 1004
1005 // 2.) try to create Cosmic spline
68d461b2 1006 if (fGainCosmic)
1007 {
6c8b3862 1008 fGainCosmic->GetHistGainTime()->GetAxis(2)->SetRangeUser(0.51,1.49); // only cosmics
1009 fGainCosmic->GetHistGainTime()->GetAxis(4)->SetRangeUser(20,100); // only Fermi-Plateau muons
1010 //
1011 fGraphCosmic = AliTPCcalibBase::FitSlices(fGainCosmic->GetHistGainTime(),0,1,minEntriesGaussFit,10);
1012 if (fGraphCosmic->GetN()==0) fGraphCosmic = 0x0;
1013 //
1014 if (fGraphCosmic) {
1015 for(Int_t i=0; i < fGraphCosmic->GetN(); i++) {
1016 fGraphCosmic->GetY()[i] /= FPtoMIPratio;
1017 fGraphCosmic->GetEY()[i] /= FPtoMIPratio;
1018 }
da268e11 1019 }
6c8b3862 1020 //
1021 if (fGraphCosmic) fFitCosmic = AliTPCcalibTimeGain::MakeSplineFit(fGraphCosmic);
1022 if (fGraphCosmic) fGraphCosmic->SetName("TGRAPHERRORS_MEAN_GAIN_COSMIC_ALL"); // set proper names according to naming convention
1023 fGainArray->AddAt(fFitCosmic,1);
da268e11 1024 }
da268e11 1025 // with naming convention and backward compatibility
1026 fGainArray->AddAt(fGraphMIP,2);
1027 fGainArray->AddAt(fGraphCosmic,3);
867224d5 1028 //
8fae6121 1029 // 3.) Add HV and PT correction parameterization which was used
867224d5 1030 //
1031 AliTPCParam *param= AliTPCcalibDB::Instance()->GetParameters();
1032 if (param->GetGainSlopesHV()) fGainArray->AddLast(param->GetGainSlopesHV());
1033 if (param->GetGainSlopesPT()) fGainArray->AddLast(param->GetGainSlopesPT());
8fae6121
MK
1034 //
1035 // 4.) Add the RecoParam and ClusterParam - for compatibility checks -deffrent sets of paramters can invalidate calibration
1036 //
1037 AliTPCClusterParam *clParam = AliTPCcalibDB::Instance()->GetClusterParam();
1038 TObjArray *recoParams = new TObjArray(4) ;
1039 for (Int_t i=0;i<4;i++) recoParams->AddAt(AliTPCcalibDB::Instance()->GetRecoParam(i),i);
1040 fGainArray->AddLast(clParam);
1041 fGainArray->AddLast(recoParams);
1042 //
da268e11 1043 cout << "fGraphCosmic: " << fGraphCosmic << " fGraphMIP " << fGraphMIP << endl;
1044 return kTRUE;
1045
1046}
1047
391ffdb2 1048Bool_t AliTPCPreprocessorOffline::AnalyzeAttachment(Int_t startRunNumber, Int_t endRunNumber, Int_t minEntriesFit) {
1049 //
1050 // determine slope as a function of mean driftlength
1051 //
68d461b2 1052 if(!fGainMIP) return kFALSE;
1053
391ffdb2 1054 fGainMIP->GetHistGainTime()->GetAxis(5)->SetRangeUser(startRunNumber, endRunNumber);
1055 //
1056 fGainMIP->GetHistGainTime()->GetAxis(2)->SetRangeUser(1.51,2.49); // only beam data
1057 fGainMIP->GetHistGainTime()->GetAxis(4)->SetRangeUser(0.39,0.51); // only MIP pions
1058 //
68d461b2 1059 fGainMIP->GetHistGainTime()->GetAxis(3)->SetRangeUser(125,250);// only full tracking region (driftlength)
1060 fGainMIP->GetHistGainTime()->GetAxis(0)->SetRangeUser(1.5,3.5);// only full tracking region (driftlength)
1061 //
391ffdb2 1062 TH3D * hist = fGainMIP->GetHistGainTime()->Projection(1, 0, 3);
1063 //
1064 Double_t *xvec = new Double_t[hist->GetNbinsX()];
1065 Double_t *yvec = new Double_t[hist->GetNbinsX()];
1066 Double_t *xerr = new Double_t[hist->GetNbinsX()];
1067 Double_t *yerr = new Double_t[hist->GetNbinsX()];
1068 Int_t counter = 0;
1069 //
1070 for(Int_t i=1; i < hist->GetNbinsX(); i++) {
1071 Int_t nsum=0;
1072 Int_t imin = i;
1073 Int_t imax = i;
68d461b2 1074 for (Int_t idelta=0; idelta<5; idelta++){
391ffdb2 1075 //
1076 imin = TMath::Max(i-idelta,1);
1077 imax = TMath::Min(i+idelta,hist->GetNbinsX());
1078 nsum = TMath::Nint(hist->Integral(imin,imax,1,hist->GetNbinsY()-1,1,hist->GetNbinsZ()-1));
1079 //if (nsum==0) break;
1080 if (nsum>minEntriesFit) break;
1081 }
1082 if (nsum<minEntriesFit) continue;
1083 //
68d461b2 1084 fGainMIP->GetHistGainTime()->GetAxis(1)->SetRangeUser(hist->GetXaxis()->GetBinCenter(imin-1),hist->GetXaxis()->GetBinCenter(imax+1)); // define time range
1085 TH2D * histZdep = fGainMIP->GetHistGainTime()->Projection(0,3);
1086 TObjArray arr;
1087 histZdep->FitSlicesY(0,0,-1,0,"QNR",&arr);
1088 TH1D * driftDep = (TH1D*)arr.At(1);
1089 delete histZdep;
1090 //TGraphErrors * driftDep = AliTPCcalibBase::FitSlices(fGainMIP->GetHistGainTime(),0,3,100,1,0.,1);
1091 /*if (driftDep->GetN() < 4) {
391ffdb2 1092 delete driftDep;
68d461b2 1093 continue;
1094 }*/
391ffdb2 1095 //
68d461b2 1096 //TObjArray arr;
391ffdb2 1097 //
68d461b2 1098 TF1 pol1("polynom1","pol1",125,240);
391ffdb2 1099 //driftDep->Fit(&pol1,"QNRROB=0.8");
1100 driftDep->Fit(&pol1,"QNR");
68d461b2 1101 xvec[counter] = 0.5*(hist->GetXaxis()->GetBinCenter(imin-1)+hist->GetXaxis()->GetBinCenter(imax+1));
391ffdb2 1102 yvec[counter] = pol1.GetParameter(1)/pol1.GetParameter(0);
68d461b2 1103 xerr[counter] = hist->GetXaxis()->GetBinCenter(imax+1)-hist->GetXaxis()->GetBinCenter(imin-1);
391ffdb2 1104 yerr[counter] = pol1.GetParError(1)/pol1.GetParameter(0);
1105 counter++;
1106 //
68d461b2 1107 //delete driftDep;
391ffdb2 1108 }
1109 //
1110 fGraphAttachmentMIP = new TGraphErrors(counter, xvec, yvec, xerr, yerr);
1111 if (fGraphAttachmentMIP) fGraphAttachmentMIP->SetName("TGRAPHERRORS_MEAN_ATTACHMENT_BEAM_ALL");// set proper names according to naming convention
1112 fGainArray->AddLast(fGraphAttachmentMIP);
1113 //
1114 delete [] xvec;
1115 delete [] yvec;
1116 delete [] xerr;
1117 delete [] yerr;
1118 delete hist;
1119 //
1120 if (counter < 1) return kFALSE;
1121 return kTRUE;
391ffdb2 1122
68d461b2 1123}
391ffdb2 1124
da268e11 1125
56b51ad9 1126Bool_t AliTPCPreprocessorOffline::AnalyzePadRegionGain(){
1127 //
1128 // Analyze gain for different pad regions - produce the calibration graphs 0,1,2
1129 //
1130 if (fGainMult)
1131 {
1132 TH2D * histQmax = (TH2D*) fGainMult->GetHistPadEqual()->Projection(0,2);
1133 TH2D * histQtot = (TH2D*) fGainMult->GetHistPadEqual()->Projection(1,2);
1134 //
1135 TObjArray arr;
1136 histQmax->FitSlicesY(0,0,-1,0,"QNR",&arr);
1137 Double_t xMax[3] = {0,1,2};
1138 Double_t yMax[3] = {((TH1D*)arr.At(1))->GetBinContent(1),
1139 ((TH1D*)arr.At(1))->GetBinContent(2),
1140 ((TH1D*)arr.At(1))->GetBinContent(3)};
1141 Double_t yMaxErr[3] = {((TH1D*)arr.At(1))->GetBinError(1),
1142 ((TH1D*)arr.At(1))->GetBinError(2),
1143 ((TH1D*)arr.At(1))->GetBinError(3)};
1144 TGraphErrors * fitPadRegionQmax = new TGraphErrors(3, xMax, yMax, 0, yMaxErr);
1145 //
1146 histQtot->FitSlicesY(0,0,-1,0,"QNR",&arr);
1147 Double_t xTot[3] = {0,1,2};
1148 Double_t yTot[3] = {((TH1D*)arr.At(1))->GetBinContent(1),
1149 ((TH1D*)arr.At(1))->GetBinContent(2),
1150 ((TH1D*)arr.At(1))->GetBinContent(3)};
1151 Double_t yTotErr[3] = {((TH1D*)arr.At(1))->GetBinError(1),
1152 ((TH1D*)arr.At(1))->GetBinError(2),
1153 ((TH1D*)arr.At(1))->GetBinError(3)};
1154 TGraphErrors * fitPadRegionQtot = new TGraphErrors(3, xTot, yTot, 0, yTotErr);
1155 //
1156 fitPadRegionQtot->SetName("TGRAPHERRORS_MEANQTOT_PADREGIONGAIN_BEAM_ALL");// set proper names according to naming convention
1157 fitPadRegionQmax->SetName("TGRAPHERRORS_MEANQMAX_PADREGIONGAIN_BEAM_ALL");// set proper names according to naming convention
1158 //
1159 fGainArray->AddLast(fitPadRegionQtot);
1160 fGainArray->AddLast(fitPadRegionQmax);
1161 return kTRUE;
1162 }
1163 return kFALSE;
1164
1165}
1166
1167
d7f71269
MK
1168Bool_t AliTPCPreprocessorOffline::AnalyzeGainDipAngle(Int_t padRegion) {
1169 //
e8eb02f8 1170 // Analyze gain as a function of multiplicity and produce calibration graphs
596c62a8 1171 // padRegion -- 0: short, 1: medium, 2: long, 3: absolute calibration of full track
d7f71269 1172 //
e5fec8fd 1173 Int_t kMarkers[10]={25,24,20,21,22};
1174 Int_t kColors[10]={1,2,4,3,6};
d7f71269 1175 if (!fGainMult) return kFALSE;
349942ff 1176 if (!(fGainMult->GetHistTopology())) return kFALSE;
e5fec8fd 1177 const Double_t kMinStat=100;
d7f71269
MK
1178 //
1179 // "dEdxRatioMax","dEdxRatioTot","padType","mult","driftlength"
1180 TObjArray arrMax;
1181 TObjArray arrTot;
1182 //
596c62a8 1183 TH2D * histQmax = 0x0;
1184 TH2D * histQtot = 0x0;
a3d990c6 1185 fGainMult->GetHistPadEqual()->GetAxis(4)->SetRangeUser(-0.85,0.85);
1186 fGainMult->GetHistTopology()->GetAxis(2)->SetRangeUser(-0.85,0.85);
596c62a8 1187 if (padRegion < 3) {
1188 fGainMult->GetHistPadEqual()->GetAxis(2)->SetRangeUser(padRegion,padRegion); // short,medium,long
1189 histQmax = (TH2D*) fGainMult->GetHistPadEqual()->Projection(0,4);
1190 histQtot = (TH2D*) fGainMult->GetHistPadEqual()->Projection(1,4);
1191 } else {
1192 fGainMult->GetHistTopology()->GetAxis(1)->SetRangeUser(1,1); //Qmax
1193 histQmax = (TH2D*) fGainMult->GetHistTopology()->Projection(0,2);
41e0756c 1194 histQmax->SetName("fGainMult_GetHistPadEqual_11");
596c62a8 1195 fGainMult->GetHistTopology()->GetAxis(1)->SetRangeUser(0,0); //Qtot
1196 histQtot = (TH2D*) fGainMult->GetHistTopology()->Projection(0,2);
41e0756c 1197 histQtot->SetName("fGainMult_GetHistPadEqual_00");
596c62a8 1198 }
41e0756c 1199 //
e5fec8fd 1200
1201 if (histQmax->GetEntries()<=kMinStat || histQtot->GetEntries()<=kMinStat) {
1202 AliError(Form("hisQtot.GetEntries()=%f",histQtot->GetEntries()));
1203 AliError(Form("hisQmax.GetEntries()=%f",histQmax->GetEntries()));
b53cce36 1204 return kFALSE;
1205 }
e5fec8fd 1206
1207 TGraphErrors * graphMax = TStatToolkit::MakeStat1D( histQmax,0,0.8,4,kMarkers[padRegion],kColors[padRegion]);
1208 TGraphErrors * graphTot = TStatToolkit::MakeStat1D( histQtot,0,0.8,4,kMarkers[padRegion],kColors[padRegion]);
d7f71269 1209 //
596c62a8 1210 const char* names[4]={"SHORT","MEDIUM","LONG","ABSOLUTE"};
d7f71269 1211 //
a3d990c6 1212 Double_t meanMax = TMath::Mean(graphMax->GetN(), graphMax->GetY());
1213 Double_t meanTot = TMath::Mean(graphTot->GetN(), graphTot->GetY());
e5fec8fd 1214 if (meanMax<=0 || meanTot<=0){
1215 AliError(Form("meanMax=%f",meanMax));
1216 AliError(Form("meanTot=%f",meanTot));
1217 return kFALSE;
1218 }
a3d990c6 1219 //
1220 for (Int_t ipoint=0; ipoint<graphMax->GetN(); ipoint++) {graphMax->GetY()[ipoint]/=meanMax;}
1221 for (Int_t ipoint=0; ipoint<graphTot->GetN(); ipoint++) {graphTot->GetY()[ipoint]/=meanTot;}
d7f71269
MK
1222 //
1223 graphMax->SetNameTitle(Form("TGRAPHERRORS_QMAX_DIPANGLE_%s_BEAM_ALL",names[padRegion]),
1224 Form("TGRAPHERRORS_QMAX_DIPANGLE_%s_BEAM_ALL",names[padRegion]));
1225 graphTot->SetNameTitle(Form("TGRAPHERRORS_QTOT_DIPANGLE_%s_BEAM_ALL",names[padRegion]),
1226 Form("TGRAPHERRORS_QTOT_DIPANGLE_%s_BEAM_ALL",names[padRegion]));
1227 //
1228 fGainArray->AddLast(graphMax);
1229 fGainArray->AddLast(graphTot);
1230 //
a3d990c6 1231 // Normalization to 1 (mean of the graph.fY --> 1)
1232 //
2f3c5f09 1233 TF1 * funMax= new TF1("","1++abs(x)++abs(x*x)");
1234 TF1 * funTot= new TF1("","1++abs(x)++abs(x*x)");
1235 graphMax->Fit(funMax,"w","rob=0.9",-0.8,0.8);
1236 graphTot->Fit(funTot,"w","rob=0.9",-0.8,0.8);
1237 funMax->SetNameTitle(Form("TF1_QMAX_DIPANGLE_%s_BEAM_ALL",names[padRegion]),
1238 Form("TF1_QMAX_DIPANGLE_%s_BEAM_ALL",names[padRegion]));
1239 funTot->SetNameTitle(Form("TF1_QTOT_DIPANGLE_%s_BEAM_ALL",names[padRegion]),
1240 Form("TF1_QTOT_DIPANGLE_%s_BEAM_ALL",names[padRegion]));
1241
1242 //
1243 fGainArray->AddLast(funMax);
1244 fGainArray->AddLast(funTot);
1245 //
d7f71269
MK
1246 return kTRUE;
1247}
1248
1249
6d64657a 1250Bool_t AliTPCPreprocessorOffline::AnalyzeGainMultiplicity() {
1251 //
1252 // Analyze gain as a function of multiplicity and produce calibration graphs
1253 //
1254 if (!fGainMult) return kFALSE;
1255 fGainMult->GetHistGainMult()->GetAxis(3)->SetRangeUser(3,3);
1256 TH2D * histMultMax = fGainMult->GetHistGainMult()->Projection(0,4);
1257 TH2D * histMultTot = fGainMult->GetHistGainMult()->Projection(1,4);
1258 histMultMax->RebinX(4);
1259 histMultTot->RebinX(4);
1260 //
1261 TObjArray arrMax;
1262 TObjArray arrTot;
9b230a45 1263 TF1 fitGaus("fitGaus","gaus(0)",histMultMax->GetYaxis()->GetXmin(),histMultMax->GetYaxis()->GetXmax());
1264 fitGaus.SetParameters(histMultMax->GetEntries()/10., histMultMax->GetMean(2), TMath::Sqrt(TMath::Abs(histMultMax->GetMean(2))));
1265 histMultMax->FitSlicesY(&fitGaus,0,-1,1,"QNRB",&arrMax);
1266 fitGaus.SetParameters(histMultTot->GetEntries()/10., histMultTot->GetMean(2), TMath::Sqrt(TMath::Abs(histMultTot->GetMean(2))));
1267 histMultTot->FitSlicesY(&fitGaus,0,-1,1,"QNRB",&arrTot);
6d64657a 1268 //
1269 TH1D * meanMax = (TH1D*)arrMax.At(1);
1270 TH1D * meanTot = (TH1D*)arrTot.At(1);
1271 Float_t meanMult = histMultMax->GetMean();
f8d8b429 1272 if(meanMax->GetBinContent(meanMax->FindBin(meanMult))) {
1273 meanMax->Scale(1./meanMax->GetBinContent(meanMax->FindBin(meanMult)));
1274 }
1275 else {
1276 return kFALSE;
1277 }
1278 if(meanTot->GetBinContent(meanTot->FindBin(meanMult))) {
1279 meanTot->Scale(1./meanTot->GetBinContent(meanTot->FindBin(meanMult)));
1280 }
1281 else {
1282 return kFALSE;
1283 }
6d64657a 1284 Float_t xMultMax[50];
1285 Float_t yMultMax[50];
1286 Float_t yMultErrMax[50];
1287 Float_t xMultTot[50];
1288 Float_t yMultTot[50];
1289 Float_t yMultErrTot[50];
1290 //
1291 Int_t nCountMax = 0;
1292 for(Int_t iBin = 1; iBin < meanMax->GetXaxis()->GetNbins(); iBin++) {
1293 Float_t yValMax = meanMax->GetBinContent(iBin);
b5547fe4 1294 if (yValMax < 0.7) continue;
1295 if (yValMax > 1.3) continue;
6d64657a 1296 if (meanMax->GetBinError(iBin)/yValMax > 0.01) continue;
1297 xMultMax[nCountMax] = meanMax->GetXaxis()->GetBinCenter(iBin);
1298 yMultMax[nCountMax] = yValMax;
1299 yMultErrMax[nCountMax] = meanMax->GetBinError(iBin);
1300 nCountMax++;
1301 }
1302 //
1303 if (nCountMax < 10) return kFALSE;
1304 TGraphErrors * fitMultMax = new TGraphErrors(nCountMax, xMultMax, yMultMax, 0, yMultErrMax);
1305 fitMultMax->SetName("TGRAPHERRORS_MEANQMAX_MULTIPLICITYDEPENDENCE_BEAM_ALL");
1306 //
1307 Int_t nCountTot = 0;
1308 for(Int_t iBin = 1; iBin < meanTot->GetXaxis()->GetNbins(); iBin++) {
1309 Float_t yValTot = meanTot->GetBinContent(iBin);
3dcbe287 1310 if (yValTot < 0.7) continue;
1311 if (yValTot > 1.3) continue;
6d64657a 1312 if (meanTot->GetBinError(iBin)/yValTot > 0.1) continue;
1313 xMultTot[nCountTot] = meanTot->GetXaxis()->GetBinCenter(iBin);
1314 yMultTot[nCountTot] = yValTot;
1315 yMultErrTot[nCountTot] = meanTot->GetBinError(iBin);
1316 nCountTot++;
1317 }
1318 //
1319 if (nCountTot < 10) return kFALSE;
1320 TGraphErrors * fitMultTot = new TGraphErrors(nCountTot, xMultTot, yMultTot, 0, yMultErrTot);
1321 fitMultTot->SetName("TGRAPHERRORS_MEANQTOT_MULTIPLICITYDEPENDENCE_BEAM_ALL");
1322 //
1323 fGainArray->AddLast(fitMultMax);
1324 fGainArray->AddLast(fitMultTot);
1325 //
1326 return kTRUE;
1327
1328}
1329
7e3e1a9c 1330Bool_t AliTPCPreprocessorOffline::AnalyzeGainChamberByChamber(){
1331 //
1332 // get chamber by chamber gain
1333 //
a9f9c69b 1334 if (!fGainMult) return kFALSE;
eece0b11 1335 TGraphErrors *grShort = fGainMult->GetGainPerChamberRobust(0);
1336 TGraphErrors *grMedium = fGainMult->GetGainPerChamberRobust(1);
1337 TGraphErrors *grLong = fGainMult->GetGainPerChamberRobust(2);
7e3e1a9c 1338 if (grShort==0x0 || grMedium==0x0 || grLong==0x0) {
1339 delete grShort;
1340 delete grMedium;
1341 delete grLong;
1342 return kFALSE;
1343 }
1344
1345 fGainArray->AddLast(grShort);
1346 fGainArray->AddLast(grMedium);
1347 fGainArray->AddLast(grLong);
1348
1349 return kTRUE;
1350}
6d64657a 1351
a9f9c69b 1352void AliTPCPreprocessorOffline::UpdateOCDBGain(Int_t startRunNumber, Int_t endRunNumber, AliCDBStorage *storage){
da268e11 1353 //
1354 // Update OCDB entry
1355 //
1356 AliCDBMetaData *metaData= new AliCDBMetaData();
1357 metaData->SetObjectClassName("TObjArray");
1358 metaData->SetResponsible("Alexander Kalweit");
1359 metaData->SetBeamPeriod(1);
1360 metaData->SetAliRootVersion("05-24-00"); //root version
1361 metaData->SetComment("Calibration of the time dependence of the gain due to pressure and temperature changes.");
1362 AliCDBId id1("TPC/Calib/TimeGain", startRunNumber, endRunNumber);
a9f9c69b 1363 storage->Put(fGainArray, id1, metaData);
da268e11 1364}
1365
1366void AliTPCPreprocessorOffline::MakeQAPlot(Float_t FPtoMIPratio) {
1367 //
1368 // Make QA plot to visualize results
1369 //
1370 //
1371 //
1372 if (fGraphCosmic) {
1373 TCanvas * canvasCosmic = new TCanvas("gain Cosmic", "time dependent gain QA histogram cosmic");
1374 canvasCosmic->cd();
1375 TH2D * gainHistoCosmic = fGainCosmic->GetHistGainTime()->Projection(0,1);
1376 gainHistoCosmic->SetDirectory(0);
1377 gainHistoCosmic->SetName("GainHistoCosmic");
1378 gainHistoCosmic->GetXaxis()->SetTimeDisplay(kTRUE);
1379 gainHistoCosmic->GetXaxis()->SetTimeFormat("#splitline{%d/%m}{%H:%M}");
1380 gainHistoCosmic->Draw("colz");
1381 fGraphCosmic->SetMarkerStyle(25);
1382 fGraphCosmic->Draw("lp");
1383 fGraphCosmic->SetMarkerStyle(25);
1384 TGraph * grfFitCosmic = fFitCosmic->MakeGraph(fGraphCosmic->GetX()[0],fGraphCosmic->GetX()[fGraphCosmic->GetN()-1],50000,0);
1385 if (grfFitCosmic) {
1386 for(Int_t i=0; i < grfFitCosmic->GetN(); i++) {
1387 grfFitCosmic->GetY()[i] *= FPtoMIPratio;
1388 }
1389 for(Int_t i=0; i < fGraphCosmic->GetN(); i++) {
1390 fGraphCosmic->GetY()[i] *= FPtoMIPratio;
1391 }
1392 }
0bc13e06 1393 fGraphCosmic->Draw("lp");
1394 if (grfFitCosmic) {
1395 grfFitCosmic->SetLineColor(2);
1396 grfFitCosmic->Draw("lu");
1397 }
56b51ad9 1398 fGainArray->AddLast(gainHistoCosmic);
1399 //fGainArray->AddLast(canvasCosmic->Clone());
1400 delete canvasCosmic;
da268e11 1401 }
1402 if (fFitMIP) {
1403 TCanvas * canvasMIP = new TCanvas("gain MIP", "time dependent gain QA histogram MIP");
1404 canvasMIP->cd();
1405 TH2D * gainHistoMIP = fGainMIP->GetHistGainTime()->Projection(0,1);
1406 gainHistoMIP->SetName("GainHistoCosmic");
1407 gainHistoMIP->SetDirectory(0);
1408 gainHistoMIP->GetXaxis()->SetTimeDisplay(kTRUE);
1409 gainHistoMIP->GetXaxis()->SetTimeFormat("#splitline{%d/%m}{%H:%M}");
1410 gainHistoMIP->Draw("colz");
1411 fGraphMIP->SetMarkerStyle(25);
1412 fGraphMIP->Draw("lp");
1413 TGraph * grfFitMIP = fFitMIP->MakeGraph(fGraphMIP->GetX()[0],fGraphMIP->GetX()[fGraphMIP->GetN()-1],50000,0);
1414 grfFitMIP->SetLineColor(2);
1415 grfFitMIP->Draw("lu");
1416 fGainArray->AddLast(gainHistoMIP);
68d461b2 1417 //fGainArray->AddLast(canvasMIP->Clone());
da268e11 1418 delete canvasMIP;
1419 }
1420}
1421
f3023796 1422void AliTPCPreprocessorOffline::MakeFitTime(){
1423 //
3db6421b 1424 // make aligment fit - store results in the file
f3023796 1425 //
1426 const Int_t kMinEntries=1000;
1427 MakeChainTime();
1428 MakePrimitivesTime();
1429 if (!fAlignTree) return;
1430 if (fAlignTree->GetEntries()<kMinEntries) return;
1431 fAlignTree->SetAlias("ptype","type");
1432 fAlignTree->SetAlias("hasITS","(1+0)");
1433 fAlignTree->SetAlias("dITS","1-2*(refX<40)");
1434 fAlignTree->SetAlias("isITS","refX>10");
1435 fAlignTree->SetAlias("isVertex","refX<10");
1436 //
1437 Int_t npointsMax=30000000;
1438 TStatToolkit toolkit;
1439 Double_t chi2=0;
1440 Int_t npoints=0;
1441 TVectorD param;
1442 TMatrixD covar;
1443
1444 TString fstringFast="";
1445 fstringFast+="FExBTwistX++";
1446 fstringFast+="FExBTwistY++";
1447 fstringFast+="FAlignRot0D++";
1448 fstringFast+="FAlignTrans0D++";
1449 fstringFast+="FAlignTrans1D++";
1450 //
1451 fstringFast+="hasITS*FAlignTrans0++";
1452 fstringFast+="hasITS*FAlignTrans1++";
1453 fstringFast+="hasITS*FAlignRot0++";
1454 fstringFast+="hasITS*FAlignRot1++";
1455 fstringFast+="hasITS*FAlignRot2++";
1456 //
1457 fstringFast+="dITS*FAlignTrans0++";
1458 fstringFast+="dITS*FAlignTrans1++";
1459 fstringFast+="dITS*FAlignRot0++";
1460 fstringFast+="dITS*FAlignRot1++";
1461 fstringFast+="dITS*FAlignRot2++";
1462
39c42ea2 1463 TCut cutFit="entries>10&&abs(mean)>0.00001&&rms>0";
f3023796 1464 fAlignTree->SetAlias("err","rms");
1465
1466 TString *strDeltaITS = TStatToolkit::FitPlaneConstrain(fAlignTree,"mean:err", fstringFast.Data(),cutFit, chi2,npoints,param,covar,-1,0, npointsMax, 1);
09d5920f 1467 TObjArray* tokArr = strDeltaITS->Tokenize("++");
1468 tokArr->Print();
1469 delete tokArr;
f3023796 1470 fAlignTree->SetAlias("fitYFast",strDeltaITS->Data());
1471 //
1472 TVectorD paramC= param;
1473 TMatrixD covarC= covar;
1474 TStatToolkit::Constrain1D(fstringFast,"Trans0D",paramC,covarC,0, 0.1);
1475 TStatToolkit::Constrain1D(fstringFast,"Trans1D",paramC,covarC,0, 0.1);
1476 TStatToolkit::Constrain1D(fstringFast,"TwistX",paramC,covarC,0, 0.1);
1477 TStatToolkit::Constrain1D(fstringFast,"TwistY",paramC,covarC,0, 0.1);
1478 TString strFitConst=TStatToolkit::MakeFitString(fstringFast, paramC,covar);
1479 fAlignTree->SetAlias("fitYFastC",strFitConst.Data());
1480 CreateAlignTime(fstringFast,paramC);
1481
1482
1483}
1484
1485
1486void AliTPCPreprocessorOffline::MakeChainTime(){
3db6421b 1487 //
1488 //
f3023796 1489 //
3dcbe287 1490 TFile f("CalibObjects.root");
3db6421b 1491
f3023796 1492 // const char *cdtype[7]={"ITS","TRD","Vertex","TOF","TPC","TPC0","TPC1"};
1493 //const char *cptype[5]={"dy","dz","dsnp","dtheta","d1pt"};
1494 const char * hname[5]={"dy","dz","dsnp","dtheta","d1pt"};
1495 Int_t run=0;
27c79aef 1496 AliTPCcalibTime *calibTime = 0;
08669268 1497 TObject* obj = dynamic_cast<TObject*>(f.Get("TPCCalib"));
1498 TObjArray * array = dynamic_cast<TObjArray*>(obj);
1499 TDirectory * dir = dynamic_cast<TDirectory*>(obj);
1500 if (dir) {
1501 calibTime = dynamic_cast<AliTPCcalibTime*>(dir->Get("calibTime"));
1502 }
1503 else if (array){
27c79aef 1504 calibTime = (AliTPCcalibTime *)array->FindObject("calibTime");
1505 } else {
1506 calibTime = (AliTPCcalibTime*)f.Get("calibTime");
1507 }
f3023796 1508 if (!calibTime) return;
3db6421b 1509 AliTPCCorrectionFit::CreateAlignMaps(AliTracker::GetBz(), run);
f3023796 1510 TTreeSRedirector *pcstream = new TTreeSRedirector("meanITSVertex.root");
0bc13e06 1511 //
f3023796 1512 Int_t ihis=0;
1513 THnSparse *his = calibTime->GetResHistoTPCITS(ihis);
1514 if (his){
1515 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1516 his->GetAxis(2)->SetRange(0,1000000);
1517 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1518 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("ITS%s",hname[ihis]),run,85.,ihis,3);
f3023796 1519 }
0bc13e06 1520 ihis=1;
1521 his = calibTime->GetResHistoTPCITS(ihis);
1522 if (his){
1523 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1524 his->GetAxis(2)->SetRange(0,1000000);
1525 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1526 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("ITS%s",hname[ihis]),run,85.,ihis,3);
0bc13e06 1527 }
f3023796 1528 ihis=2;
1529 his = calibTime->GetResHistoTPCITS(ihis);
1530 if (his){
1531 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1532 his->GetAxis(2)->SetRange(0,1000000);
1533 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1534 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("ITS%s",hname[ihis]),run,85.,ihis,3);
f3023796 1535 }
1536 ihis=0;
1537 his = calibTime->GetResHistoTPCvertex(ihis);
1538 if (his){
1539 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1540 his->GetAxis(2)->SetRange(0,1000000);
1541 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1542 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("Vertex%s",hname[ihis]),run,0.,ihis,3);
f3023796 1543 }
1544 ihis=2;
1545 his = calibTime->GetResHistoTPCvertex(ihis);
1546 if (his){
1547 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1548 his->GetAxis(2)->SetRange(0,1000000);
1549 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1550 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("Vertex%s",hname[ihis]),run,0.,ihis,3);
f3023796 1551
0bc13e06 1552 }
1553 ihis=1;
1554 his = calibTime->GetResHistoTPCvertex(ihis);
1555 if (his){
1556 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1557 his->GetAxis(2)->SetRange(0,1000000);
1558 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1559 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("Vertex%s",hname[ihis]),run,0.,ihis,3);
0bc13e06 1560
1561 }
1562 ihis=0;
1563 his = calibTime->GetResHistoTPCTOF(ihis);
1564 if (his){
1565 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1566 his->GetAxis(2)->SetRange(0,1000000);
1567 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1568 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("TOF%s",hname[ihis]),run,0.,ihis,3);
0bc13e06 1569
1570 }
1571 ihis=0;
1572 his = calibTime->GetResHistoTPCTRD(ihis);
1573 if (his){
1574 his->GetAxis(1)->SetRangeUser(-1.1,1.1);
1575 his->GetAxis(2)->SetRange(0,1000000);
1576 his->GetAxis(3)->SetRangeUser(-0.35,0.35);
39c42ea2 1577 AliTPCCorrection::MakeDistortionMap(his,pcstream, Form("TRD%s",hname[ihis]),run,0.,ihis,3);
0bc13e06 1578
f3023796 1579 }
1580 delete pcstream;
1581}
1582
1583
1584Double_t AliTPCPreprocessorOffline::EvalAt(Double_t phi, Double_t refX, Double_t theta, Int_t corr, Int_t ptype){
1585 //
1586 //
1587 //
1588 Double_t sector = 9*phi/TMath::Pi();
1589 if (sector<0) sector+=18;
1590 Double_t y85=AliTPCCorrection::GetCorrSector(sector,85,theta,1,corr);
1591 Double_t y245=AliTPCCorrection::GetCorrSector(sector,245,theta,1,corr);
1592 if (ptype==0) return y85+(y245-y85)*(refX-85.)/(245.-85.);
1593 if (ptype==2) return (y245-y85)/(245.-85.);
1594 return 0;
1595}
1596
1597
39c42ea2 1598Double_t AliTPCPreprocessorOffline::EvalAtPar(Double_t phi0, Double_t snp, Double_t refX, Double_t theta, Int_t corr, Int_t ptype, Int_t nsteps){
1599 //
1600 // Fit the distortion along the line with the parabolic model
1601 // Parameters:
1602 // phi0 - phi at the entrance of the TPC
1603 // snp - local inclination angle at the entrance of the TPC
1604 // refX - ref X where the distortion is evanluated
1605 // theta
1606 //
1607 static TLinearFitter fitter(3,"pol2");
1608 fitter.ClearPoints();
1609 if (nsteps<3) nsteps=3;
1610 Double_t deltaX=(245-85)/(nsteps);
1611 for (Int_t istep=0; istep<(nsteps+1); istep++){
1612 //
1613 Double_t localX =85.+deltaX*istep;
1614 Double_t localPhi=phi0+deltaX*snp*istep;
1615 Double_t sector = 9*localPhi/TMath::Pi();
1616 if (sector<0) sector+=18;
1617 Double_t y=AliTPCCorrection::GetCorrSector(sector,localX,theta,1,corr);
1618 Double_t dlocalX=AliTPCCorrection::GetCorrSector(sector,localX,theta,0,corr);
1619 Double_t x[1]={localX-dlocalX};
1620 fitter.AddPoint(x,y);
1621 }
1622 fitter.Eval();
1623 Double_t par[3];
1624 par[0]=fitter.GetParameter(0);
1625 par[1]=fitter.GetParameter(1);
1626 par[2]=fitter.GetParameter(2);
1627
1628 if (ptype==0) return par[0]+par[1]*refX+par[2]*refX*refX;
1629 if (ptype==2) return par[1]+2*par[2]*refX;
1630 if (ptype==4) return par[2];
1631 return 0;
1632}
1633
1634
1635
1636
1637
f3023796 1638
1639void AliTPCPreprocessorOffline::MakePrimitivesTime(){
1640 //
1641 // Create primitive transformation to fit
1642 //
1643 fAlignTree=new TChain("fit","fit");
1644 fAlignTree->AddFile("meanITSVertex.root",10000000,"ITSdy");
1645 fAlignTree->AddFile("meanITSVertex.root",10000000,"ITSdsnp");
1646 fAlignTree->AddFile("meanITSVertex.root",10000000,"Vertexdy");
1647 fAlignTree->AddFile("meanITSVertex.root",10000000,"Vertexdsnp");
1648 //
1649 AliTPCParam *param= AliTPCcalibDB::Instance()->GetParameters();
1650 Double_t bzField=AliTrackerBase::GetBz();
1651 Double_t vdrift = param->GetDriftV()/1000000.; // [cm/us] // From dataBase: to be updated: per second (ideally)
1652 Double_t ezField = 400; // [V/cm] // to be updated: never (hopefully)
1653 Double_t wtP = -10.0 * (bzField) * vdrift / ezField ;
1654 AliTPCExBTwist *fitExBTwistX= new AliTPCExBTwist;
1655 AliTPCExBTwist *fitExBTwistY= new AliTPCExBTwist;
1656 AliTPCCalibGlobalMisalignment *trans0 =new AliTPCCalibGlobalMisalignment;
1657 AliTPCCalibGlobalMisalignment *trans1 =new AliTPCCalibGlobalMisalignment;
1658 AliTPCCalibGlobalMisalignment *trans0D =new AliTPCCalibGlobalMisalignment;
1659 AliTPCCalibGlobalMisalignment *trans1D =new AliTPCCalibGlobalMisalignment;
1660 AliTPCCalibGlobalMisalignment *rot0 =new AliTPCCalibGlobalMisalignment;
1661 AliTPCCalibGlobalMisalignment *rot1 =new AliTPCCalibGlobalMisalignment;
1662 AliTPCCalibGlobalMisalignment *rot2 =new AliTPCCalibGlobalMisalignment;
1663 AliTPCCalibGlobalMisalignment *rot3 =new AliTPCCalibGlobalMisalignment;
1664 //
1665 //
1666 fitExBTwistX->SetXTwist(0.001);
1667 fitExBTwistX->SetOmegaTauT1T2(wtP,1,1);
1668 //
1669 fitExBTwistY->SetYTwist(0.001);
1670 fitExBTwistY->SetOmegaTauT1T2(wtP,1,1);
1671 //
1672 TGeoHMatrix *matrixRot = new TGeoHMatrix;
1673 TGeoHMatrix *matrixX = new TGeoHMatrix;
1674 TGeoHMatrix *matrixY = new TGeoHMatrix;
1675 matrixX->SetDx(0.1);
1676 matrixY->SetDy(0.1);
1677 Double_t rotAngles0[9]={0};
1678 Double_t rotAngles1[9]={0};
1679 Double_t rotAngles2[9]={0};
1680 //
1681 Double_t rotAngles3[9]={0};
1682
1683 rotAngles0[0]=1; rotAngles0[4]=1; rotAngles0[8]=1;
1684 rotAngles1[0]=1; rotAngles1[4]=1; rotAngles1[8]=1;
1685 rotAngles2[0]=1; rotAngles2[4]=1; rotAngles2[8]=1;
1686 rotAngles3[0]=1; rotAngles3[4]=1; rotAngles3[8]=1;
1687
1688 rotAngles0[1]=-0.001;rotAngles0[3]=0.001;
1689 rotAngles1[5]=-0.001;rotAngles1[7]=0.001;
1690 rotAngles2[2]=0.001;rotAngles2[6]=-0.001;
1691 rotAngles3[1]=0.001;rotAngles3[3]=-0.001;
1692 matrixRot->SetRotation(rotAngles0);
1693 rot0->SetAlignGlobal(matrixRot);
1694 matrixRot->SetRotation(rotAngles1);
1695 rot1->SetAlignGlobal(matrixRot);
1696 matrixRot->SetRotation(rotAngles2);
1697 rot2->SetAlignGlobal(matrixRot);
1698 matrixRot->SetRotation(rotAngles3);
1699 rot3->SetAlignGlobalDelta(matrixRot);
1700 //
1701 trans0->SetAlignGlobal(matrixX);
1702 trans1->SetAlignGlobal(matrixY);
1703 trans0D->SetAlignGlobalDelta(matrixX);
1704 trans1D->SetAlignGlobalDelta(matrixY);
1705 fitExBTwistX->Init();
1706 fitExBTwistY->Init();
1707 //
1708 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(fitExBTwistX->Clone()),100);
1709 fitExBTwistY->AddVisualCorrection((AliTPCExBTwist*)(fitExBTwistY->Clone()),101);
1710 //
1711 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(rot0->Clone()),102);
1712 fitExBTwistY->AddVisualCorrection((AliTPCExBTwist*)(rot1->Clone()),103);
1713 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(rot2->Clone()),104);
1714 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(rot3->Clone()),105);
1715
1716 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(trans0->Clone()),106);
1717 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(trans1->Clone()),107);
1718 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(trans0D->Clone()),108);
1719 fitExBTwistX->AddVisualCorrection((AliTPCExBTwist*)(trans1D->Clone()),109);
1720 //
1721 fAlignTree->SetAlias("FExBTwistX", "AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,100,ptype)+0");
1722 fAlignTree->SetAlias("FExBTwistY","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,101,ptype)+0");
1723 fAlignTree->SetAlias("FAlignRot0","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,102,ptype)+0");
1724 fAlignTree->SetAlias("FAlignRot0D","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,105,ptype)+0");
1725 fAlignTree->SetAlias("FAlignRot1","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,103,ptype)+0");
1726 fAlignTree->SetAlias("FAlignRot2","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,104,ptype)+0");
1727 fAlignTree->SetAlias("FAlignTrans0","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,106,ptype)+0");
1728 fAlignTree->SetAlias("FAlignTrans1","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,107,ptype)+0");
1729 fAlignTree->SetAlias("FAlignTrans0D","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,108,ptype)+0");
1730 fAlignTree->SetAlias("FAlignTrans1D","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,109,ptype)+0");
1731 //
1732 // test fast function
1733 //
1734// fAlignTree->Draw("FExBTwistX:ExBTwistX","isITS&&ptype==0&&abs(snp)<0.05","");
1735// fAlignTree->Draw("FExBTwistY:ExBTwistY","isITS&&ptype==0&&abs(snp)<0.05","");
1736// fAlignTree->Draw("FAlignRot0:alignRot0","isITS&&ptype==0&&abs(snp)<0.05","");
1737// fAlignTree->Draw("FAlignRot1:alignRot1","isITS&&ptype==0&&abs(snp)<0.05","");
1738// fAlignTree->Draw("FAlignRot2:alignRot2","isITS&&ptype==0&&abs(snp)<0.05","");
1739// //
1740// fAlignTree->Draw("FAlignTrans0:alignTrans0","isITS&&ptype==0&&abs(snp)<0.05","");
1741// fAlignTree->Draw("FAlignTrans1:alignTrans1","isITS&&ptype==0&&abs(snp)<0.05","");
1742
1743}
1744
1745
1746void AliTPCPreprocessorOffline::CreateAlignTime(TString fstring, TVectorD paramC){
1747 //
1748 //
1749 //
1750 //
1751 TGeoHMatrix *matrixDelta = new TGeoHMatrix;
1752 TGeoHMatrix *matrixGlobal = new TGeoHMatrix;
1753 Double_t rAngles[9];
1754 Int_t index=0;
1755 //
1756 index=TStatToolkit::GetFitIndex(fstring,"FAlignTrans0D");
1757 if (index>=0) matrixDelta->SetDx(paramC[index+1]*0.1);
1758 index=TStatToolkit::GetFitIndex(fstring,"FAlignTrans1D");
1759 if (index>=0) matrixDelta->SetDy(paramC[index+1]*0.1);
1760 rAngles[0]=1; rAngles[4]=1; rAngles[8]=1;
1761 index=TStatToolkit::GetFitIndex(fstring,"FAlignRot0D");
1762 rAngles[1]=-paramC[index+1]*0.001; rAngles[3]=paramC[index+1]*0.001;
1763 rAngles[5]=0; rAngles[7] =0;
1764 rAngles[2]=0; rAngles[6] =0;
1765 matrixDelta->SetRotation(rAngles);
1766 //
1767 //
1768 //
1769 index=TStatToolkit::GetFitIndex(fstring,"hasITS*FAlignTrans0");
1770 if (index>=0) matrixGlobal->SetDx(paramC[index+1]*0.1);
1771 index=TStatToolkit::GetFitIndex(fstring,"hasITS*FAlignTrans1");
1772 if (index>=0) matrixGlobal->SetDy(paramC[index+1]*0.1);
1773 rAngles[0]=1; rAngles[4]=1; rAngles[8]=1;
1774 index=TStatToolkit::GetFitIndex(fstring,"hasITS*FAlignRot0");
1775 rAngles[1]=-paramC[index+1]*0.001; rAngles[3]=paramC[index+1]*0.001;
1776 index=TStatToolkit::GetFitIndex(fstring,"hasITS*FAlignRot1");
1777 rAngles[5]=-paramC[index+1]*0.001; rAngles[7]=paramC[index+1]*0.001;
1778 index=TStatToolkit::GetFitIndex(fstring,"hasITS*FAlignRot2");
1779 rAngles[2]=paramC[index+1]*0.001; rAngles[6] =-paramC[index+1]*0.001;
1780 matrixGlobal->SetRotation(rAngles);
1781 //
0bc13e06 1782 AliTPCCalibGlobalMisalignment *fitAlignTime =0;
f3023796 1783 fitAlignTime =new AliTPCCalibGlobalMisalignment;
1784 fitAlignTime->SetName("FitAlignTime");
1785 fitAlignTime->SetTitle("FitAlignTime");
1786 fitAlignTime->SetAlignGlobalDelta(matrixDelta);
1787 fitAlignTime->SetAlignGlobal(matrixGlobal);
1788 //
1789 AliTPCExBTwist * fitExBTwist= new AliTPCExBTwist;
1790 Int_t indexX=TStatToolkit::GetFitIndex(fstring,"ExBTwistX");
1791 Int_t indexY=TStatToolkit::GetFitIndex(fstring,"ExBTwistY");
1792 fitExBTwist->SetXTwist(0.001*paramC[indexX+1]); // 1 mrad twist in x
1793 fitExBTwist->SetYTwist(0.001*paramC[indexY+1]); // 1 mrad twist in x
1794 fitExBTwist->SetName("FitExBTwistTime");
1795 fitExBTwist->SetTitle("FitExBTwistTime");
1796 AliTPCParam *param= AliTPCcalibDB::Instance()->GetParameters();
1797 Double_t bzField=AliTrackerBase::GetBz();
1798 Double_t vdrift = param->GetDriftV()/1000000.; // [cm/us] // From dataBase: to be updated: per second (ideally)
1799
1800 Double_t ezField = 400; // [V/cm] // to be updated: never (hopefully)
1801 Double_t wt = -10.0 * (bzField) * vdrift / ezField ;
1802 //
1803 fitExBTwist->SetOmegaTauT1T2(wt,1,1);
1804 fitExBTwist->Init();
1805
1806 AliTPCComposedCorrection *corrTime = new AliTPCComposedCorrection;
1807 TObjArray *arr = new TObjArray;
1808 corrTime->SetCorrections(arr);
1809
1810 corrTime->GetCorrections()->Add(fitExBTwist);
1811 corrTime->GetCorrections()->Add(fitAlignTime);
1812 corrTime->SetName("FitCorrectionTime");
1813 corrTime->SetTitle("FitCorrectionTime");
1814
1815 fitExBTwist->AddVisualCorrection((AliTPCExBTwist*)(fitExBTwist->Clone()),1001);
1816 fitAlignTime->AddVisualCorrection((AliTPCExBTwist*)(fitAlignTime->Clone()),1002);
1817 fitAlignTime->AddVisualCorrection((AliTPCExBTwist*)(corrTime->Clone()),1003);
1818
1819
1820 fAlignTree->SetAlias("ExBTwistTime","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,1001,ptype)+0");
1821 fAlignTree->SetAlias("AlignTime","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,1002,ptype)+0");
1822 fAlignTree->SetAlias("FitCorrectionTime","AliTPCPreprocessorOffline::EvalAt(phi,refX,theta,1003,ptype)+0");
1823
1824
1825 TFile *f = new TFile("fitITSVertex.root","update");
1826 corrTime->Write("FitCorrectionTime");
1827 f->Close();
1828}
1829
3f76dadb 1830//_____________________________________________________________________________
1831Int_t AliTPCPreprocessorOffline::GetStatus()
1832{
1833 //get the calibration status
1834 // 0 means OK
1835 // positive numbers invalidate for unknown reasons.
1836 // negative numbers invalidate with a known reason (e.g. low statistics).
1837 // the returned integer has one bit set for every component that failed.
1838
1839 Bool_t enoughStatistics = (fNtracksVdrift>fMinTracksVdrift && fNeventsVdrift>fMinEventsVdrift);
1840
1841 if (!enoughStatistics)
1842 {
1843 fCalibrationStatus=-TMath::Abs(fCalibrationStatus);
1844 }
1845
1846 return fCalibrationStatus;
1847}
a3d990c6 1848
1849/*
1850 Short sequence to acces the calbration entry:
1851 TFile *f = TFile::Open("CalibObjects.root");
1852 AliTPCcalibGainMult * fGainMult = (AliTPCcalibGainMult *)f->Get("TPCCalib/calibGainMult");
1853
1854
1855*/