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fb65de21 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//
18// Check basic detector results at ESD level
19// - Geometrical efficiency
20// - Tracking efficiency
21// - PID efficiency
22// - Refit efficiency
23//
24// Author
25// Alex Bercuci <A.Bercuci@gsi.de>
26//
27//////////////////////////////////////////////////////
28
29#include <TClonesArray.h>
30#include <TCanvas.h>
31#include <TObjArray.h>
32#include <TPad.h>
33#include <TLegend.h>
34#include <TLatex.h>
35#include <TLine.h>
36#include <TF1.h>
7698e7a4 37#include <TH1D.h>
38#include <TH2D.h>
39#include <TH3D.h>
fb65de21 40#include <TH2I.h>
41#include <TH2F.h>
42#include <TH3S.h>
43#include <TH3F.h>
44#include <TProfile2D.h>
45#include <TProfile.h>
46#include <TGraphErrors.h>
47#include <TGraphAsymmErrors.h>
48#include <TFile.h>
49#include <TTree.h>
50#include <TROOT.h>
51#include <TChain.h>
52#include <TParticle.h>
53#include <TTimeStamp.h>
7698e7a4 54#include <TRandom.h>
fb65de21 55
56#include "AliLog.h"
57#include "AliAnalysisManager.h"
7698e7a4 58#include "AliAnalysisCuts.h"
fb65de21 59#include "AliESDEvent.h"
60#include "AliESDkink.h"
61#include "AliMCEvent.h"
62#include "AliESDInputHandler.h"
63#include "AliMCEventHandler.h"
64#include "AliESDpid.h"
65
66#include "AliESDtrack.h"
67#include "AliMCParticle.h"
68#include "AliPID.h"
69#include "AliStack.h"
70#include "AliTrackReference.h"
2bf6d80c 71//#include "AliESDCentrality.h"
72#include "AliMultiplicity.h"
7698e7a4 73#include "AliCFContainer.h"
fb65de21 74
75#include "AliTRDcheckESD.h"
2bf6d80c 76#include <iostream>
77using namespace std;
fb65de21 78
79ClassImp(AliTRDcheckESD)
80
81const Float_t AliTRDcheckESD::fgkxTPC = 290.;
82const Float_t AliTRDcheckESD::fgkxTOF = 365.;
83const UChar_t AliTRDcheckESD::fgkNgraph[AliTRDcheckESD::kNrefs] ={
848, 4, 2, 20};
85FILE* AliTRDcheckESD::fgFile = NULL;
86
87const Float_t AliTRDcheckESD::fgkEvVertexZ = 15.;
88const Int_t AliTRDcheckESD::fgkEvVertexN = 1;
89const Float_t AliTRDcheckESD::fgkTrkDCAxy = 40.;
90const Float_t AliTRDcheckESD::fgkTrkDCAz = 15.;
91const Int_t AliTRDcheckESD::fgkNclTPC = 100;
92const Float_t AliTRDcheckESD::fgkPt = 0.2;
93const Float_t AliTRDcheckESD::fgkEta = 0.9;
94const Float_t AliTRDcheckESD::fgkQs = 0.002;
95
96//____________________________________________________________________
97AliTRDcheckESD::AliTRDcheckESD():
98 AliAnalysisTaskSE()
99 ,fStatus(0)
100 ,fNRefFigures(0)
101 ,fESD(NULL)
102 ,fMC(NULL)
103 ,fESDpid(new AliESDpid)
104 ,fHistos(NULL)
105 ,fResults(NULL)
7698e7a4 106 ,fCfContainer(NULL)
107 ,fReferenceTrackFilter(NULL)
fb65de21 108{
109 //
110 // Default constructor
111 //
112 SetNameTitle("TRDcheckESD", "Check TRD @ ESD level");
113 SetMC(kTRUE);
114}
115
116//____________________________________________________________________
117AliTRDcheckESD::AliTRDcheckESD(char* name):
118 AliAnalysisTaskSE(name)
119 ,fStatus(0)
120 ,fNRefFigures(0)
121 ,fESD(NULL)
122 ,fMC(NULL)
123 ,fESDpid(new AliESDpid)
124 ,fHistos(NULL)
125 ,fResults(NULL)
7698e7a4 126 ,fCfContainer(NULL)
127 ,fReferenceTrackFilter(NULL)
fb65de21 128{
129 //
130 // Default constructor
131 //
132 SetMC(kTRUE);
133 SetTitle("Check TRD @ ESD level");
134 DefineOutput(1, TObjArray::Class());
135}
136
137//____________________________________________________________________
138AliTRDcheckESD::~AliTRDcheckESD()
139{
140// Destructor
141 if(fHistos){
2bf6d80c 142 //fHistos->Delete();
fb65de21 143 delete fHistos;
144 }
145 if(fResults){
146 fResults->Delete();
147 delete fResults;
148 }
149}
150
151//____________________________________________________________________
152void AliTRDcheckESD::UserCreateOutputObjects()
153{
154 //
155 // Create Output Containers (TObjectArray containing 1D histograms)
156 //
157 Histos();
158 PostData(1, fHistos);
159}
160
7698e7a4 161//____________________________________________________________________
33d501fa 162void AliTRDcheckESD::MakeSummaryFromCF(Double_t* trendValues, Bool_t useIsolatedBC, Bool_t cutTOFbc){
7698e7a4 163 //
164 // Draw summary plots for the ESDcheck task using the CF container
165 //
166
33d501fa 167 cout << "Make summary from CF" << endl;
7698e7a4 168 TCanvas *cOut=0x0;
33d501fa 169 if(gROOT->FindObject("trackingSummary")) delete gROOT->FindObject("trackingSummary");
7698e7a4 170 cOut = new TCanvas("trackingSummary", "Tracking summary for the ESD task", 1600, 1200);
171 cOut->cd();
33d501fa 172 PlotTrackingSummaryFromCF(0, trendValues, useIsolatedBC, cutTOFbc);
7698e7a4 173 cOut->SaveAs("trackingSummary.gif");
174
33d501fa 175 if(gROOT->FindObject("pidSummary")) delete gROOT->FindObject("pidSummary");
7698e7a4 176 cOut = new TCanvas("pidSummary", "PID summary for the ESD task", 1600, 1200);
177 cOut->cd();
178 //GetRefFigure(6);
33d501fa 179 PlotPidSummaryFromCF(0, trendValues, useIsolatedBC, cutTOFbc);
7698e7a4 180 cOut->SaveAs("pidSummary.gif");
181
33d501fa 182 if(gROOT->FindObject("centSummary")) delete gROOT->FindObject("centSummary");
7698e7a4 183 cOut = new TCanvas("centSummary", "Centrality summary for the ESD task", 1600, 1200);
184 cOut->cd();
185 //GetRefFigure(7);
33d501fa 186 PlotCentSummaryFromCF(trendValues, useIsolatedBC, cutTOFbc);
7698e7a4 187 cOut->SaveAs("centSummary.gif");
188
189}
190
191
fb65de21 192//____________________________________________________________________
33d501fa 193void AliTRDcheckESD::MakeSummary(Double_t* trendValues){
fb65de21 194 //
195 // Draw summary plots for the ESDcheck task
196 //
33d501fa 197 // Old method to draw summary pictures from histograms. Use the MakeSummaryFromCF() when CF container is present
2bf6d80c 198
33d501fa 199 cout << "Make summary" << endl;
200 TCanvas *cTracking=0x0;
201 if(gROOT->FindObject("trackingSummary")) delete gROOT->FindObject("trackingSummary");
202 cTracking = new TCanvas("trackingSummary", "Tracking summary for the ESD task", 1600, 1200);
203 cTracking->cd();
204 //GetRefFigure(5);
205 if(PlotTrackingSummary(0, trendValues))
206 cTracking->SaveAs("trackingSummary.gif");
2bf6d80c 207
33d501fa 208 TCanvas* cPid = 0x0;
209 if(gROOT->FindObject("pidSummary")) delete gROOT->FindObject("pidSummary");
210 cPid = new TCanvas("pidSummary", "PID summary for the ESD task", 1600, 1200);
211 cPid->cd();
212 //GetRefFigure(6);
213 if(PlotPidSummary(0, trendValues))
214 cPid->SaveAs("pidSummary.gif");
2bf6d80c 215
33d501fa 216 TCanvas* cCent=0x0;
217 if(gROOT->FindObject("centSummary")) delete gROOT->FindObject("centSummary");
218 cCent = new TCanvas("centSummary", "Centrality summary for the ESD task", 1600, 1200);
219 cCent->cd();
220 //GetRefFigure(7);
221 if(PlotCentSummary(trendValues))
222 cCent->SaveAs("centSummary.gif");
fb65de21 223}
224
225//____________________________________________________________________
226Bool_t AliTRDcheckESD::GetRefFigure(Int_t ifig)
227{
228 //
229 // Produce reference Plots during PostProcessing
230 //
231 if(ifig>=fNRefFigures){
232 AliWarning(Form("Ref plot %d not available. Valid only up to %d", ifig, fNRefFigures));
233 return kFALSE;
234 }
235 if(!gPad){
236 AliWarning("Please provide a canvas to draw results.");
237 return kFALSE;
238 } else {
239 gPad->SetLogx(0);gPad->SetLogy(0);
240 gPad->SetMargin(0.125, 0.015, 0.1, 0.015);
241 }
242
243 const Char_t *title[20];
fb65de21 244 TH1 *hF(NULL);
fb65de21 245 if((hF=(TH1S*)gROOT->FindObject("hFcheckESD"))) delete hF;
246 TLegend *leg(NULL);
247 TList *l(NULL); TVirtualPad *pad(NULL);
248 TGraphErrors *g(NULL);TGraphAsymmErrors *ga(NULL);
249 TObjArray *arr(NULL);
fb65de21 250 TLatex *lat=new TLatex();
251 lat->SetTextSize(0.07);
252 lat->SetTextColor(2);
253 TLine line;
254 TTimeStamp now;
fb65de21 255 switch(ifig){
256 case kNCl: // number of clusters/track
257 if(!(arr = (TObjArray*)fResults->At(kNCl))) return kFALSE;
258
259 leg = new TLegend(.83, .7, .99, .96);
260 leg->SetHeader("Species");
261 leg->SetBorderSize(0); leg->SetFillStyle(0);
2bf6d80c 262 for(Int_t ig(0); ig<fgkNgraph[kNCl-1]; ig++){
fb65de21 263 if(!(g = (TGraphErrors*)arr->At(ig))) return kFALSE;
264 if(!g->GetN()) continue;
265 g->Draw(ig?"pc":"apc"); leg->AddEntry(g, g->GetTitle(), "pl");
266 if(ig) continue;
267 hF=g->GetHistogram();
268 hF->SetXTitle("no of clusters");
269 hF->SetYTitle("entries");
270 hF->GetYaxis()->CenterTitle(1);
271 hF->GetYaxis()->SetTitleOffset(1.2);
272 hF->SetMinimum(5);
273 }
274 leg->Draw(); gPad->SetLogy();
275 break;
276 case kTRDstat: // Efficiency
277 if(!(arr = (TObjArray*)fResults->At(kTRDstat))) return kFALSE;
278 leg = new TLegend(.62, .77, .98, .98);
279 leg->SetHeader("TRD Efficiency");
280 leg->SetBorderSize(0); leg->SetFillStyle(0);
281 title[0] = "Geometrical (TRDin/TPCout)";
282 title[1] = "Tracking (TRDout/TRDin)";
283 title[2] = "PID (TRDpid/TRDin)";
284 title[3] = "Refit (TRDrefit/TRDin)";
285 hF = new TH1S("hFcheckESD", ";p [GeV/c];Efficiency", 10, 0.1, 10.);
286 hF->SetMaximum(1.4);
287 hF->GetXaxis()->SetMoreLogLabels();
288 hF->GetYaxis()->CenterTitle(1);
289 hF->Draw("p");
2bf6d80c 290 for(Int_t ig(0); ig<fgkNgraph[kTRDstat-1]; ig++){
fb65de21 291 if(!(g = (TGraphErrors*)arr->At(ig))) return kFALSE;
292 g->Draw("pl"); leg->AddEntry(g, title[ig], "pl");
293 //PutTrendValue(name[id], g->GetMean(2));
294 //PutTrendValue(Form("%sRMS", name[id]), g->GetRMS(2));
295 }
296 leg->Draw(); gPad->SetLogx();
297 break;
298 case kTRDmom: // Energy loss
299 if(!(arr = (TObjArray*)fResults->At(kTRDmom))) return kFALSE;
300 leg = new TLegend(.65, .7, .95, .99);
301 leg->SetHeader("Energy Loss");
302 leg->SetBorderSize(1); leg->SetFillColor(0);
303 title[0] = "Max & 90% quantile";
304 title[1] = "Mean & 60% quantile";
305 hF = new TH1S("hFcheckESD", ";layer;#Delta E", 6, -0.5, 5.5);
306 hF->SetMaximum(1.3);hF->SetMinimum(-.3);
307 hF->Draw("p");
2bf6d80c 308 for(Int_t ig(0); ig<fgkNgraph[kTRDmom-1]; ig++){
fb65de21 309 if(!(ga = (TGraphAsymmErrors*)arr->At(ig))) return kFALSE;
310 ga->Draw("pl"); leg->AddEntry(ga, title[ig], "pl");
311 //PutTrendValue(name[id], g->GetMean(2));
312 //PutTrendValue(Form("%sRMS", name[id]), g->GetRMS(2));
313 }
314 leg->Draw();gPad->SetLogx(kFALSE);
315 break;
316 case kPtRes: // Pt resolution @ vertex
317 if(!(arr = (TObjArray*)fResults->At(kPtRes))) return kFALSE;
318 gPad->Divide(2, 1, 1.e-5, 1.e-5); l=gPad->GetListOfPrimitives();
319 pad = ((TVirtualPad*)l->At(0)); pad->cd(); pad->SetLogx();
320 pad->SetMargin(0.1, 0.022, 0.1, 0.023);
321 hF = new TH1S("hFcheckESD", "ITS+TPC+TRD;p_{t} [GeV/c];#Delta p_{t} / p_{t} [%]", 10, 0.2, 10.);
322 hF->SetMaximum(10.);hF->SetMinimum(-3.);
323 hF->GetXaxis()->SetMoreLogLabels();
324 hF->GetXaxis()->SetTitleOffset(1.2);
325 hF->GetYaxis()->CenterTitle();
326 hF->Draw("p");
2bf6d80c 327 //for(Int_t ig(0); ig<fgkNgraph[kPtRes-1]/2; ig++){
fb65de21 328 for(Int_t ig(2); ig<6; ig++){
329 if(!(g = (TGraphErrors*)arr->At(ig))) continue;
330 if(!g->GetN()) continue;
331 g->Draw("pl");
332 //PutTrendValue(name[id], g->GetMean(2));
333 //PutTrendValue(Form("%sRMS", name[id]), g->GetRMS(2));
334 }
335 pad = ((TVirtualPad*)l->At(1)); pad->cd(); pad->SetLogx();
336 pad->SetMargin(0.1, 0.22, 0.1, 0.023);
337 hF = (TH1*)hF->Clone("hFcheckESD1");
338 hF->SetTitle("ITS+TPC");
339 hF->SetMaximum(10.);hF->SetMinimum(-3.);
340 hF->Draw("p");
341 leg = new TLegend(.78, .1, .99, .98);
342 leg->SetHeader("P_{t} @ DCA");
343 leg->SetBorderSize(1); leg->SetFillColor(0);
344 leg->SetTextAlign(22);
345 leg->SetTextFont(12);
346 leg->SetTextSize(0.03813559);
347 {
348 Int_t nPlots(0);
2bf6d80c 349 //for(Int_t ig(fgkNgraph[kPtRes-1]/2); ig<fgkNgraph[kPtRes-1]; ig++){
fb65de21 350 for(Int_t ig(12); ig<16; ig++){
351 if(!(g = (TGraphErrors*)arr->At(ig))) continue;
352 if(!g->GetN()) continue;
353 nPlots++;
354 g->Draw("pl"); leg->AddEntry(g, g->GetTitle(), "pl");
355 //PutTrendValue(name[id], g->GetMean(2));
356 //PutTrendValue(Form("%sRMS", name[id]), g->GetRMS(2));
357 }
358 if(nPlots) leg->Draw();
359 }
360 break;
2bf6d80c 361 case 5: // plot a 3x3 canvas with tracking related histograms
362 PlotTrackingSummary(0);
363 break;
fb65de21 364
2bf6d80c 365 case 6: // plot a 3x3 canvas with PID related histograms
366 PlotPidSummary(0);
fb65de21 367 break;
2bf6d80c 368
369 case 7: // plot a 3x3 canvas with centrality dependence histograms
370 PlotCentSummary();
371 break;
372
fb65de21 373 }
374 return kTRUE;
375}
376
377//____________________________________________________________________
378void AliTRDcheckESD::UserExec(Option_t *){
379 //
380 // Run the Analysis
381 //
382 fESD = dynamic_cast<AliESDEvent*>(InputEvent());
383 fMC = MCEvent();
384
385 if(!fESD){
386 AliError("ESD event missing.");
387 return;
388 }
389
390 // Get MC information if available
391 AliStack * fStack = NULL;
392 if(HasMC()){
393 if(!fMC){
394 AliWarning("MC event missing");
395 SetMC(kFALSE);
396 } else {
397 if(!(fStack = fMC->Stack())){
398 AliWarning("MC stack missing");
399 SetMC(kFALSE);
400 }
401 }
402 }
403 TH1 *h(NULL);
404
7698e7a4 405 Double_t values[kNTrdCfVariables]; // array where the CF container variables are stored
406 values[kEventVtxZ] = fESD->GetPrimaryVertex()->GetZv();
407 values[kEventBC] = fESD->GetBunchCrossNumber();
408
2bf6d80c 409 const AliMultiplicity* mult=fESD->GetMultiplicity();
410 Double_t itsNTracklets = mult->GetNumberOfTracklets();
2bf6d80c 411 if(itsNTracklets<1) return;
7698e7a4 412 Int_t multLimits[6] = {0, 700, 1400, 2100, 2800, 3500};
2bf6d80c 413 Int_t centralityClass = 0;
7698e7a4 414 for(Int_t iCent=0; iCent<5; ++iCent) {
415 if(itsNTracklets>=multLimits[iCent] && itsNTracklets<multLimits[iCent+1])
416 centralityClass=iCent+1;
2bf6d80c 417 }
7698e7a4 418 values[kEventMult] = itsNTracklets;
2bf6d80c 419 if(centralityClass == 0) return;
7698e7a4 420
fb65de21 421 AliESDtrack *esdTrack(NULL);
422 for(Int_t itrk = 0; itrk < fESD->GetNumberOfTracks(); itrk++){
423 esdTrack = fESD->GetTrack(itrk);
7698e7a4 424 if(!fReferenceTrackFilter->IsSelected(esdTrack)) continue;
fb65de21 425
7698e7a4 426 ULong_t status = esdTrack->GetStatus(); //PrintStatus(status);
427
fb65de21 428 // pid quality
429 Bool_t kBarrel = Bool_t(status & AliESDtrack::kTRDin);
430
fb65de21 431 // find position and momentum of the track at entrance in TRD
432 Double_t localCoord[3] = {0., 0., 0.};
433 Bool_t localCoordGood = esdTrack->GetXYZAt(298., fESD->GetMagneticField(), localCoord);
fb65de21 434 Double_t localMom[3] = {0., 0., 0.};
435 Bool_t localMomGood = esdTrack->GetPxPyPzAt(298., fESD->GetMagneticField(), localMom);
7698e7a4 436 //Double_t localPhi = (localMomGood ? TMath::ATan2(localMom[1], localMom[0]) : 0.0);
fb65de21 437 Double_t localSagitaPhi = (localCoordGood ? TMath::ATan2(localCoord[1], localCoord[0]) : 0.0);
438
7698e7a4 439 values[kTrackTOFdeltaBC] = esdTrack->GetTOFDeltaBC();
33d501fa 440 values[kTrackTOFBC] = esdTrack->GetTOFBunchCrossing(fESD->GetMagneticField());
441 Float_t dcaXY=0.0; Float_t dcaZ=0.0;
442 esdTrack->GetImpactParameters(dcaXY, dcaZ);
443 values[kTrackDCAxy] = dcaXY;
444 values[kTrackDCAz] = dcaZ;
7698e7a4 445 values[kTrackCharge] = esdTrack->Charge();
446 values[kTrackPhi] = localSagitaPhi;
447 values[kTrackEta] = esdTrack->Eta();
448 values[kTrackPt] = esdTrack->Pt();
449 values[kTrackP] = esdTrack->P();
450 values[kTrackTrdTracklets] = esdTrack->GetTRDntracklets();
451 values[kTrackTrdClusters] = esdTrack->GetTRDncls();
452 for(Int_t i=0; i<6; ++i) values[kTrackQtot+i] = 0.0;
fb65de21 453
7698e7a4 454 if(localCoordGood && localMomGood) fCfContainer->Fill(values, 0); // fill the TPC reference step
455
fb65de21 456 // TRD reference tracks
7698e7a4 457 if(esdTrack->GetTRDntracklets()>=1) {
fb65de21 458 // (slicePH,sliceNo) distribution and Qtot from slices
459 for(Int_t iPlane=0; iPlane<6; iPlane++) {
2bf6d80c 460 Float_t qtot=esdTrack->GetTRDslice(iPlane, 0);
7698e7a4 461 for(Int_t iSlice=0; iSlice<8; iSlice++) {
fb65de21 462 if(esdTrack->GetTRDslice(iPlane, iSlice)>20.) {
463 h = (TH2F*)fHistos->At(kPHSlice); h->Fill(iSlice, esdTrack->GetTRDslice(iPlane, iSlice));
2bf6d80c 464 h = (TH2F*)fHistos->At(kPHSlice+centralityClass); h->Fill(iSlice, esdTrack->GetTRDslice(iPlane, iSlice));
fb65de21 465 }
fb65de21 466 }
7698e7a4 467 values[kTrackQtot+iPlane] = fgkQs*qtot;
468 }
469
470 if(localCoordGood && localMomGood) {
471 fCfContainer->Fill(values, 1);
472 if(Bool_t(status & AliESDtrack::kTOFpid)) fCfContainer->Fill(values, 2);
fb65de21 473 }
fb65de21 474 } // end if nTRDtrkl>=1
475
476 // look at external track param
477 const AliExternalTrackParam *op = esdTrack->GetOuterParam();
478 const AliExternalTrackParam *ip = esdTrack->GetInnerParam();
479
7698e7a4 480 Double_t pt(0.), pt0(0.), ptTRD(0.);
fb65de21 481 // read MC info if available
482 Bool_t kFOUND(kFALSE), kPhysPrim(kFALSE);
483 AliMCParticle *mcParticle(NULL);
484 if(HasMC()){
485 AliTrackReference *ref(NULL);
486 Int_t fLabel(esdTrack->GetLabel());
487 Int_t fIdx(TMath::Abs(fLabel));
7fe4e88b 488 if(!fStack || fIdx > fStack->GetNtrack()) continue;
fb65de21 489
490 // read MC particle
491 if(!(mcParticle = (AliMCParticle*) fMC->GetTrack(fIdx))) {
492 AliWarning(Form("MC particle missing. Label[ %d].", fLabel));
493 continue;
494 }
7698e7a4 495
496 pt = esdTrack->Pt();
fb65de21 497 pt0 = mcParticle->Pt();
7698e7a4 498 //Double_t eta0 = mcParticle->Eta();
499 //Double_t phi0 = mcParticle->Phi();
fb65de21 500 kPhysPrim = fMC->IsPhysicalPrimary(fIdx);
501
502 // read track references
503 Int_t nRefs = mcParticle->GetNumberOfTrackReferences();
504 if(!nRefs){
505 AliWarning(Form("No TR found for track @ Label[%d].", fLabel));
506 continue;
507 }
508 Int_t iref = 0;
509 while(iref<nRefs){
510 ref = mcParticle->GetTrackReference(iref);
511 if(ref->LocalX() > fgkxTPC) break;
512 ref=NULL; iref++;
513 }
514 if(ref){
515 if(ref->LocalX() > fgkxTOF){ // track skipping TRD fiducial volume
516 ref = mcParticle->GetTrackReference(TMath::Max(iref-1, 0));
517 }
518 } else { // track stopped in TPC
519 ref = mcParticle->GetTrackReference(TMath::Max(iref-1, 0));
520 }
521 ptTRD = ref->Pt();kFOUND=kTRUE;
522 } else { // use reconstructed values
523 if(op){
524 Double_t x(op->GetX());
525 if(x<fgkxTOF && x>fgkxTPC){
526 ptTRD=op->Pt();
527 kFOUND=kTRUE;
528 }
529 }
530
531 if(!kFOUND && ip){
532 ptTRD=ip->Pt();
533 kFOUND=kTRUE;
534 }
535 } // end if(HasMC())
536
537 if(kFOUND){
538 h = (TH2I*)fHistos->At(kTRDstat);
539 if(status & AliESDtrack::kTPCout) h->Fill(ptTRD, kTPCout);
540 if(status & AliESDtrack::kTRDin) h->Fill(ptTRD, kTRDin);
541 if(kBarrel && (status & AliESDtrack::kTRDout)) h->Fill(ptTRD, kTRDout);
542 if(kBarrel && (status & AliESDtrack::kTRDpid)) h->Fill(ptTRD, kTRDpid);
543 if(kBarrel && (status & AliESDtrack::kTRDrefit)) h->Fill(ptTRD, kTRDref);
544 }
545 Int_t idx(HasMC() ? Pdg2Idx(TMath::Abs(mcParticle->PdgCode())): 0)
546 ,sgn(esdTrack->Charge()<0?0:1);
547 if(kBarrel && kPhysPrim) {
548 TH3 *h3 = (TH3S*)fHistos->At(kPtRes);
549 Int_t offset = (status & AliESDtrack::kTRDrefit) ? 0 : 10;
550 h3->Fill(pt0, 1.e2*(pt/pt0-1.),
551 offset + 2*idx + sgn);
552 }
7698e7a4 553 ((TH1*)fHistos->At(kNCl))->Fill(esdTrack->GetTRDncls(), 2*idx + sgn);
fb65de21 554 if(ip){
555 h = (TH2I*)fHistos->At(kTRDmom);
556 Float_t pTRD(0.);
557 for(Int_t ily=6; ily--;){
558 if((pTRD=esdTrack->GetTRDmomentum(ily))<0.) continue;
559 h->Fill(ip->GetP()-pTRD, ily);
560 }
561 }
562 } // end loop over tracks
563
564 // fill the number of tracks histograms
7698e7a4 565 //h = (TH1I*)fHistos->At(kNTracksAcc);
566 //h->Fill(nTracksAcc);
567 //h = (TH1I*)fHistos->At(kNTracksTPC);
568 //h->Fill(nTracksTPC);
569 PostData(1, fHistos);
fb65de21 570}
571
572//____________________________________________________________________
573TObjArray* AliTRDcheckESD::Histos()
574{
575// Retrieve histograms array if already build or build it
576
577 if(fHistos) return fHistos;
578
7698e7a4 579 fHistos = new TObjArray(kNhistos+1);
246fe7f7 580 fHistos->SetOwner(kTRUE);
fb65de21 581
582 TH1 *h = NULL;
583
584 // clusters per track
585 const Int_t kNpt(30);
586 Float_t pt(0.2);
587 Float_t binsPt[kNpt+1];
588 for(Int_t i=0;i<kNpt+1; i++,pt+=(TMath::Exp(i*i*.001)-1.)) binsPt[i]=pt;
589 if(!(h = (TH2S*)gROOT->FindObject("hNCl"))){
590 h = new TH2S("hNCl", "Clusters per TRD track;N_{cl}^{TRD};SPECIES;entries", 60, 0., 180., 10, -0.5, 9.5);
591 TAxis *ay(h->GetYaxis());
592 ay->SetLabelOffset(0.015);
593 for(Int_t i(0); i<AliPID::kSPECIES; i++){
594 ay->SetBinLabel(2*i+1, Form("%s^{-}", AliPID::ParticleLatexName(i)));
595 ay->SetBinLabel(2*i+2, Form("%s^{+}", AliPID::ParticleLatexName(i)));
596 }
597 } else h->Reset();
598 fHistos->AddAt(h, kNCl); fNRefFigures++;
599
600 // status bits histogram
601 const Int_t kNbits(5);
602 Float_t bits(.5);
603 Float_t binsBits[kNbits+1];
604 for(Int_t i=0; i<kNbits+1; i++,bits+=1.) binsBits[i]=bits;
605 if(!(h = (TH2I*)gROOT->FindObject("hTRDstat"))){
606 h = new TH2I("hTRDstat", "TRD status bits;p_{t} @ TRD [GeV/c];status;entries", kNpt, binsPt, kNbits, binsBits);
607 TAxis *ay(h->GetYaxis());
608 ay->SetBinLabel(1, "kTPCout");
609 ay->SetBinLabel(2, "kTRDin");
610 ay->SetBinLabel(3, "kTRDout");
611 ay->SetBinLabel(4, "kTRDpid");
612 ay->SetBinLabel(5, "kTRDrefit");
613 } else h->Reset();
614 fHistos->AddAt(h, kTRDstat);
615
616 // energy loss
617 if(!(h = (TH2I*)gROOT->FindObject("hTRDmom"))){
618 h = new TH2I("hTRDmom", "TRD energy loss;p_{inner} - p_{ly} [GeV/c];ly;entries", 100, -1., 2., 6, -0.5, 5.5);
619 } else h->Reset();
620 fHistos->AddAt(h, kTRDmom);
621 //if(!HasMC()) return fHistos;
622
623 // pt resolution
624 const Int_t kNdpt(100), kNspec(4*AliPID::kSPECIES);
625 Float_t dpt(-3.), spec(-0.5);
626 Float_t binsDPt[kNdpt+1], binsSpec[kNspec+1];
627 for(Int_t i=0; i<kNdpt+1; i++,dpt+=6.e-2) binsDPt[i]=dpt;
628 for(Int_t i=0; i<kNspec+1; i++,spec+=1.) binsSpec[i]=spec;
629 if(!(h = (TH3S*)gROOT->FindObject("hPtRes"))){
630 h = new TH3S("hPtRes", "P_{t} resolution @ DCA;p_{t}^{MC} [GeV/c];#Delta p_{t}/p_{t}^{MC} [%];SPECIES", kNpt, binsPt, kNdpt, binsDPt, kNspec, binsSpec);
631 TAxis *az(h->GetZaxis());
632 az->SetLabelOffset(0.015);
633 for(Int_t i(0); i<AliPID::kSPECIES; i++){
634 az->SetBinLabel(2*i+1, Form("%s^{-}", AliPID::ParticleLatexName(i)));
635 az->SetBinLabel(2*i+2, Form("%s^{+}", AliPID::ParticleLatexName(i)));
636 az->SetBinLabel(10+2*i+1, Form("%s^{-}", AliPID::ParticleLatexName(i)));
637 az->SetBinLabel(10+2*i+2, Form("%s^{+}", AliPID::ParticleLatexName(i)));
638 }
639 } else h->Reset();
640 fHistos->AddAt(h, kPtRes);
641
642 // TPC event vertex distribution
643 if(!(h = (TH1F*)gROOT->FindObject("hTPCVertex"))){
644 h = new TH1F("hTPCVertex", "Event vertex Z coord. from TPC tracks", 100, -25., 25.);
645 } else h->Reset();
646 fHistos->AddAt(h, kTPCVertex);
647
648 // Event vertex
649 if(!(h = (TH1F*)gROOT->FindObject("hEventVertex"))){
650 h = new TH1F("hEventVertex", "Event vertex Z coord.", 100, -25., 25.);
651 } else h->Reset();
652 fHistos->AddAt(h, kEventVertex);
653
654 // Number of all tracks
655 if(!(h = (TH1I*)gROOT->FindObject("hNTracksAll"))){
656 h = new TH1I("hNTracksAll", "Number of tracks per event, event vertex cuts", 5000, 0, 5000);
657 } else h->Reset();
658 fHistos->AddAt(h, kNTracksAll);
659
660 // Number of tracks in acceptance and DCA cut
661 if(!(h = (TH1I*)gROOT->FindObject("hNTracksAcc"))){
662 h = new TH1I("hNTracksAcc", Form("Number of tracks per event, |#eta|<%.1f, |DCAxy|<%.1f, |DCAz|<%.1f",
663 fgkEta, fgkTrkDCAxy, fgkTrkDCAz), 5000, 0, 5000);
664 } else h->Reset();
665 fHistos->AddAt(h, kNTracksAcc);
666
667 // Number of tracks in TPC (Ncls>10)
668 if(!(h = (TH1I*)gROOT->FindObject("hNTracksTPC"))){
669 h = new TH1I("hNTracksTPC", Form("Number of tracks per event, |#eta|<%.1f, pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
670 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 5000, 0, 5000);
671 } else h->Reset();
672 fHistos->AddAt(h, kNTracksTPC);
673
674 // Distribution of DCA-xy
675 if(!(h = (TH1F*)gROOT->FindObject("hDCAxy"))){
676 h = new TH1F("hDCAxy", "Distribution of transverse DCA", 100, -100., 100.);
677 } else h->Reset();
678 fHistos->AddAt(h, kDCAxy);
679
680 // Distribution of DCA-z
681 if(!(h = (TH1F*)gROOT->FindObject("hDCAz"))){
682 h = new TH1F("hDCAz", "Distribution of longitudinal DCA", 100, -100., 100.);
683 } else h->Reset();
684 fHistos->AddAt(h, kDCAz);
685
7698e7a4 686 Double_t binPtLimits[33] = {0.0, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9,
fb65de21 687 1.0, 1.1, 1.2, 1.3, 1.4,
688 1.6, 1.8, 2.0, 2.2, 2.4, 2.6, 2.8, 3.0,
689 3.4, 3.8, 4.2, 4.6, 5.0, 6.0, 7.0, 8.0, 9.0, 10.0};
690 // Pt distributions
691 if(!(h = (TH1F*)gROOT->FindObject("hPt1"))){
692 h = new TH1F("hPt1", Form("dN/dpt, |#eta|<%.1f and pt>%.1f", fgkEta, fgkPt), 32, binPtLimits);
693 } else h->Reset();
694 fHistos->AddAt(h, kPt1);
695
696 if(!(h = (TH1F*)gROOT->FindObject("hPt2"))){
697 h = new TH1F("hPt2", Form("dN/dpt, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f",
698 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz), 32, binPtLimits);
699 } else h->Reset();
700 fHistos->AddAt(h, kPt2);
701
702 if(!(h = (TH1F*)gROOT->FindObject("hPt3pos"))){
703 h = new TH1F("hPt3pos", Form("dN/dpt (positives), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
704 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 32, binPtLimits);
705 } else h->Reset();
706 fHistos->AddAt(h, kPt3pos);
707
708 if(!(h = (TH1F*)gROOT->FindObject("hPt3neg"))){
709 h = new TH1F("hPt3neg", Form("dN/dpt (negatives), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
710 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 32, binPtLimits);
711 } else h->Reset();
712 fHistos->AddAt(h, kPt3neg);
713
714 if(!(h = (TH1F*)gROOT->FindObject("hPt4pos"))){
715 h = new TH1F("hPt4pos", Form("dN/dpt (positives), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq 1",
716 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 32, binPtLimits);
717 } else h->Reset();
718 fHistos->AddAt(h, kPt4pos);
719
720 if(!(h = (TH1F*)gROOT->FindObject("hPt4neg"))){
721 h = new TH1F("hPt4pos", Form("dN/dpt (negatives), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq 1",
722 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 32, binPtLimits);
723 } else h->Reset();
724 fHistos->AddAt(h, kPt4neg);
725
726 // theta distribution of TRD tracks
727 if(!(h = (TH1F*)gROOT->FindObject("hTheta"))){
728 h = new TH1F("hTheta", Form("dN/d#theta, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq 1",
729 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 220,.5,2.7);
730 } else h->Reset();
731 fHistos->AddAt(h, kTheta);
732
733 // phi distribution of TRD tracks
734 if(!(h = (TH1F*)gROOT->FindObject("hPhi"))){
735 h = new TH1F("hPhi", Form("dN/d#varphi, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq 1",
736 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 157,0,6.28);
737 } else h->Reset();
738 fHistos->AddAt(h, kPhi);
739
740 // TPC cluster distribution
741 if(!(h = (TH1F*)gROOT->FindObject("hNTPCCl"))){
742 h = new TH1I("hNTPCCl", Form("Number of TPC clusters/track, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f",
743 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz), 160, 0, 160);
744 } else h->Reset();
745 fHistos->AddAt(h, kNTPCCl);
746
747 if(!(h = (TH1I*)gROOT->FindObject("hNTPCCl2"))){
748 h = new TH1F("hNTPCCl2", Form("Number of TPC clusters/track, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, pt>1.0 GeV/c",
749 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz), 160, 0, 160);
750 } else h->Reset();
751 fHistos->AddAt(h, kNTPCCl2);
752
753 // dE/dx vs P for TPC reference tracks
754 if(!(h = (TH2F*)gROOT->FindObject("hTPCDedx"))){
755 h = new TH2F("hTPCDedx", Form("TPC dE/dx vs P, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
2bf6d80c 756 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, 0.1,10.1, 150, 0, 150.);
fb65de21 757 } else h->Reset();
758 fHistos->AddAt(h, kTPCDedx);
759
760 // eta,phi distribution of TPC reference tracks
761 if(!(h = (TH2F*)gROOT->FindObject("hEtaPhi"))){
762 h = new TH2F("hEtaPhi", Form("TPC (#eta,#varphi), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
763 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 50, -1, 1, 157, 0, 6.28);
764 } else h->Reset();
765 fHistos->AddAt(h, kEtaPhi);
766
767 // Nclusters vs eta distribution for TPC tracks
768 if(!(h = (TH2F*)gROOT->FindObject("hEtaNclsTPC"))){
769 h = new TH2F("hEtaNclsTPC", Form("TPC Nclusters vs. #eta, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f",
770 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz), 50, -1, 1, 160, 0, 160.);
771 } else h->Reset();
772 fHistos->AddAt(h, kEtaNclsTPC);
773
774 // Nclusters vs phi distribution for TPC reference tracks
775 if(!(h = (TH2F*)gROOT->FindObject("hPhiNclsTPC"))){
776 h = new TH2F("hPhiNclsTPC", Form("TPC Nclusters vs. #varphi, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f",
777 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz), 157, 0, 6.28, 160, 0, 160.);
778 } else h->Reset();
779 fHistos->AddAt(h, kPhiNclsTPC);
2bf6d80c 780
781 // SPD multiplicity distribution
782 if(!(h = (TH1F*)gROOT->FindObject("hSPDMult"))){
783 h = new TH1F("hSPDMult", "SPD multiplicity", 10000, -0.5, 9999.5);
784 } else h->Reset();
785 fHistos->AddAt(h, kSPDMult);
786
fb65de21 787 // Ntracklets/track vs P for TRD reference tracks
788 Double_t binsP[19] = {0.0, 0.2, 0.4, 0.6, 0.8, 1.0, 1.2, 1.4, 1.7, 2.0,
789 2.5, 3.0, 3.5, 4.0, 5.0, 6.0, 7.0, 9.0, 12.0};
2bf6d80c 790 for(Int_t iCent=0; iCent<=5; ++iCent) {
791 if(!(h = (TH2F*)gROOT->FindObject(Form("hNTrackletsTRD_cent%d",iCent+1)))){
792 h = new TH2F(Form("hNTrackletsTRD_cent%d",iCent+1), Form("TRD Ntracklets/track vs. P, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
793 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 18, binsP, 7, -0.5, 6.5);
794 } else h->Reset();
795 fHistos->AddAt(h, kNTrackletsTRD+iCent);
796 }
fb65de21 797
798 // Nclusters/track vs P for TRD reference tracks
2bf6d80c 799 for(Int_t iCent=0; iCent<=5; ++iCent) {
800 if(!(h = (TH2F*)gROOT->FindObject(Form("hNClsTrackTRD_cent%d",iCent+1)))){
801 h = new TH2F(Form("hNClsTrackTRD_cent%d",iCent+1), Form("TRD Nclusters/track vs. P, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
802 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 18, binsP, 300, 0., 300.);
803 } else h->Reset();
804 fHistos->AddAt(h, kNClsTrackTRD+iCent);
805 }
806
fb65de21 807 // <PH> vs slice number for TRD reference tracklets
2bf6d80c 808 for(Int_t iCent=0; iCent<=5; ++iCent) {
809 if(!(h = (TH2F*)gROOT->FindObject(Form("hPHSlice_cent%d",iCent+1)))){
810 h = new TH2F(Form("hPHSlice_cent%d",iCent+1), Form("<PH> vs sliceNo, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
811 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 8, -0.5, 7.5, 200, 0., 2000.);
812 } else h->Reset();
813 fHistos->AddAt(h, kPHSlice+iCent);
814 }
fb65de21 815
816 // <PH> vs slice number for TRD reference tracklets, from TPC pions
2bf6d80c 817 for(Int_t iCent=0; iCent<=5; ++iCent) {
818 if(!(h = (TH2F*)gROOT->FindObject(Form("hPHSliceTPCpions_cent%d",iCent+1)))){
819 h = new TH2F(Form("hPHSliceTPCpions_cent%d",iCent+1), Form("<PH> vs sliceNo, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, TPC pions",
820 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 8, -0.5, 7.5, 100, 0., 2000.);
821 } else h->Reset();
822 fHistos->AddAt(h, kPHSliceTPCpions+iCent);
823 }
fb65de21 824
825 // TPC dE/dx vs P for TRD reference tracks, pions
2bf6d80c 826 for(Int_t iCent=0; iCent<=5; ++iCent) {
827 if(!(h = (TH2F*)gROOT->FindObject(Form("hTPCdedxPions_cent%d",iCent+1)))){
828 h = new TH2F(Form("hTPCdedxPions_cent%d",iCent+1), Form("TPC dE/dx vs P, TPC pions, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
829 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, 0.1,10.1, 100, 0,100.);
830 } else h->Reset();
831 fHistos->AddAt(h, kTPCdedxPions+iCent);
832 }
fb65de21 833
834 // <PH> vs slice number for TRD reference tracklets, from TPC electrons
2bf6d80c 835 for(Int_t iCent=0; iCent<=5; ++iCent) {
836 if(!(h = (TH2F*)gROOT->FindObject(Form("hPHSliceTPCelectrons_cent%d",iCent+1)))){
837 h = new TH2F(Form("hPHSliceTPCelectrons_cent%d",iCent+1), Form("<PH> vs sliceNo, centrality %d,|#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, TPC electrons",
838 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 8, -0.5, 7.5, 100, 0., 2000.);
839 } else h->Reset();
840 fHistos->AddAt(h, kPHSliceTPCelectrons+iCent);
841 }
fb65de21 842
843 // TPC dE/dx vs P for TRD reference tracks, electrons
2bf6d80c 844 for(Int_t iCent=0; iCent<=5; ++iCent) {
845 if(!(h = (TH2F*)gROOT->FindObject(Form("hTPCdedxElectrons_cent%d",iCent+1)))){
846 h = new TH2F(Form("hTPCdedxElectrons_cent%d",iCent+1), Form("TPC dE/dx vs P, TPC electrons, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
847 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, 0.1,10.1, 100, 0,100.);
848 } else h->Reset();
849 fHistos->AddAt(h, kTPCdedxElectrons+iCent);
850 }
851
fb65de21 852 // Qtot vs P for TRD reference tracklets
2bf6d80c 853 for(Int_t iCent=0; iCent<=5; ++iCent) {
854 if(!(h = (TH2F*)gROOT->FindObject(Form("hQtotP_cent%d",iCent+1)))){
855 h = new TH2F(Form("hQtotP_cent%d",iCent+1), Form("Qtot(from slices) vs P, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
856 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 18, binsP, 400, 0., 20);
857 } else h->Reset();
858 fHistos->AddAt(h, kQtotP+iCent);
859 }
fb65de21 860
861 // (X,Y,momentum) distribution after AliESDtrack::PropagateTo(r=300.)
862 if(!(h = (TH3F*)gROOT->FindObject("hPropagXYvsP"))){
863 h = new TH3F("hPropagXYvsP", Form("(x,y) vs P after AliESDtrack::PropagateTo(r=300.), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
864 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100,-500,500, 100,-500,500, 10, 0.,10.);
865 } else h->Reset();
866 fHistos->AddAt(h, kPropagXYvsP);
867
868 // (R,Z,momentum) distribution after AliESDtrack::PropagateTo(r=300.)
869 if(!(h = (TH3F*)gROOT->FindObject("hPropagRZvsP"))){
870 h = new TH3F("hPropagRZvsP", Form("(r,z) vs P after AliESDtrack::PropagateTo(r=300.), |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
871 fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100,-350., 350., 100,0.,500., 10, 0.,10.);
872 } else h->Reset();
873 fHistos->AddAt(h, kPropagRZvsP);
874
7698e7a4 875 Double_t etaBinLimits[101];
fb65de21 876 for(Int_t i=0; i<101; i++) etaBinLimits[i] = -1.0 + i*2.0/100.;
7698e7a4 877 Double_t phiBinLimits[151];
fb65de21 878 for(Int_t i=0; i<151; i++) phiBinLimits[i] = -1.1*TMath::Pi() + i*2.2*TMath::Pi()/150.;
879 // (eta,detector phi,P) distribution of reference TPC positive tracks
2bf6d80c 880 for(Int_t iCent=0; iCent<=5; ++iCent) {
881 if(!(h = (TH3F*)gROOT->FindObject(Form("hTPCRefTracksPos_cent%d",iCent+1)))){
882 h = new TH3F(Form("hTPCRefTracksPos_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TPC positive reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
883 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
884 } else h->Reset();
885 fHistos->AddAt(h, kTPCRefTracksPos+iCent);
886 }
fb65de21 887
888 // (eta,detector phi,P) distribution of reference TPC negative tracks
2bf6d80c 889 for(Int_t iCent=0; iCent<=5; ++iCent) {
890 if(!(h = (TH3F*)gROOT->FindObject(Form("hTPCRefTracksNeg_cent%d",iCent+1)))){
891 h = new TH3F(Form("hTPCRefTracksNeg_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TPC negative reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d",
892 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
893 } else h->Reset();
894 fHistos->AddAt(h, kTPCRefTracksNeg+iCent);
895 }
fb65de21 896
897 // (eta,detector phi,P) distribution of reference TRD positive tracks
2bf6d80c 898 for(Int_t iCent=0; iCent<=5; ++iCent) {
899 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksPos_cent%d",iCent+1)))){
900 h = new TH3F(Form("hTRDRefTracksPos_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD positive reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
901 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
902 } else h->Reset();
903 fHistos->AddAt(h, kTRDRefTracksPos+iCent);
904 }
fb65de21 905
906 // (eta,detector phi,P) distribution of reference TRD negative tracks
2bf6d80c 907 for(Int_t iCent=0; iCent<=5; ++iCent) {
908 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksNeg_cent%d",iCent+1)))){
909 h = new TH3F(Form("hTRDRefTracksNeg_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD negative reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
910 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
911 } else h->Reset();
912 fHistos->AddAt(h, kTRDRefTracksNeg+iCent);
913 }
914
915 // (eta,detector phi,P) distribution of reference TRD positive tracks with 4 tracklets
916 for(Int_t iCent=0; iCent<=5; ++iCent) {
917 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksPos4_cent%d",iCent+1)))){
918 h = new TH3F(Form("hTRDRefTracksPos4_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD positive reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
919 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
920 } else h->Reset();
921 fHistos->AddAt(h, kTRDRefTracksPos4+iCent);
922 }
923
924 // (eta,detector phi,P) distribution of reference TRD positive tracks with 5 tracklets
925 for(Int_t iCent=0; iCent<=5; ++iCent) {
926 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksPos5_cent%d",iCent+1)))){
927 h = new TH3F(Form("hTRDRefTracksPos5_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD positive reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
928 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
929 } else h->Reset();
930 fHistos->AddAt(h, kTRDRefTracksPos5+iCent);
931 }
932
933 // (eta,detector phi,P) distribution of reference TRD positive tracks with 6 tracklets
934 for(Int_t iCent=0; iCent<=5; ++iCent) {
935 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksPos6_cent%d",iCent+1)))){
936 h = new TH3F(Form("hTRDRefTracksPos6_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD positive reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
937 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
938 } else h->Reset();
939 fHistos->AddAt(h, kTRDRefTracksPos6+iCent);
940 }
fb65de21 941
2bf6d80c 942 // (eta,detector phi,P) distribution of reference TRD negative tracks with 4 tracklets
943 for(Int_t iCent=0; iCent<=5; ++iCent) {
944 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksNeg4_cent%d",iCent+1)))){
945 h = new TH3F(Form("hTRDRefTracksNeg4_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD negative reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
946 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
947 } else h->Reset();
948 fHistos->AddAt(h, kTRDRefTracksNeg4+iCent);
949 }
950
951 // (eta,detector phi,P) distribution of reference TRD negative tracks with 5 tracklets
952 for(Int_t iCent=0; iCent<=5; ++iCent) {
953 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksNeg5_cent%d",iCent+1)))){
954 h = new TH3F(Form("hTRDRefTracksNeg5_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD negative reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
955 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
956 } else h->Reset();
957 fHistos->AddAt(h, kTRDRefTracksNeg5+iCent);
958 }
959
960 // (eta,detector phi,P) distribution of reference TRD negative tracks with 6 tracklets
961 for(Int_t iCent=0; iCent<=5; ++iCent) {
962 if(!(h = (TH3F*)gROOT->FindObject(Form("hTRDRefTracksNeg6_cent%d",iCent+1)))){
963 h = new TH3F(Form("hTRDRefTracksNeg6_cent%d",iCent+1), Form("(#eta,detector #varphi,p) for TRD negative reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
964 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, etaBinLimits, 150, phiBinLimits, 32, binPtLimits);
965 } else h->Reset();
966 fHistos->AddAt(h, kTRDRefTracksNeg6+iCent);
967 }
968
969
fb65de21 970 // (eta,detector phi) profile of average number of TRD tracklets/track
2bf6d80c 971 for(Int_t iCent=0; iCent<=5; ++iCent) {
972 if(!(h = (TProfile2D*)gROOT->FindObject(Form("hTRDEtaPhiAvNtrkl_cent%d",iCent+1)))){
973 h = new TProfile2D(Form("hTRDEtaPhiAvNtrkl_cent%d",iCent+1), Form("<Ntracklets/track> vs (#eta,detector #varphi) for TRD reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
974 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, -1.0, 1.0, 150, -1.1*TMath::Pi(), 1.1*TMath::Pi());
975 } else h->Reset();
976 fHistos->AddAt(h, kTRDEtaPhiAvNtrkl+iCent);
977 }
fb65de21 978
979 // (eta,delta phi) profile of average number of TRD tracklets/track
2bf6d80c 980 for(Int_t iCent=0; iCent<=5; ++iCent) {
981 if(!(h = (TProfile2D*)gROOT->FindObject(Form("hTRDEtaDeltaPhiAvNtrkl_cent%d",iCent+1)))){
982 h = new TProfile2D(Form("hTRDEtaDeltaPhiAvNtrkl_cent%d",iCent+1), Form("<Ntracklets/track> vs (#eta, #Delta#varphi) for TRD reference tracks, centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
983 iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, -1.0, 1.0, 50, -0.4*TMath::Pi(), 0.4*TMath::Pi());
fb65de21 984 } else h->Reset();
2bf6d80c 985 fHistos->AddAt(h, kTRDEtaDeltaPhiAvNtrkl+iCent);
986 }
987
988 // (eta, detector phi) profile of average tracklet Qtot from slices
989 for(Int_t iCent=0; iCent<=5; ++iCent) {
990 for(Int_t iLayer=0;iLayer<6;iLayer++) {
991 if(!(h = (TProfile2D*)gROOT->FindObject(Form("hTRDEtaPhiAvQtot_Layer%d_cent%d",iLayer,iCent+1)))) {
992 h = new TProfile2D(Form("hTRDEtaPhiAvQtot_Layer%d_cent%d",iLayer,iCent+1),
993 Form("<Q_{tot}> vs (#eta, detector #varphi) for TRD reference tracks (layer %d), centrality %d, |#eta|<%.1f and pt>%.1f, |DCAxy|<%.1f, |DCAz|<%.1f, TPC nclusters>%d, nTRDtracklets#geq1",
994 iLayer, iCent+1, fgkEta, fgkPt, fgkTrkDCAxy, fgkTrkDCAz, fgkNclTPC), 100, -1.0, 1.0, 150, -1.1*TMath::Pi(), 1.1*TMath::Pi());
995 } else h->Reset();
996 fHistos->AddAt(h, kTRDEtaPhiAvQtot+iCent*6+iLayer);
997 }
fb65de21 998 }
999
7698e7a4 1000 // create a CF container and add it to the list of histograms
1001 Int_t nbinsCf[kNTrdCfVariables];
1002 for(Int_t i=0;i<kNTrdCfVariables;++i) nbinsCf[i]=0;
1003 nbinsCf[kEventVtxZ] = 12;
1004 nbinsCf[kEventMult] = 5;
1005 nbinsCf[kEventBC] = 3500;
1006 nbinsCf[kTrackTOFdeltaBC] = 2001;
33d501fa 1007 nbinsCf[kTrackTOFBC] = 201;
1008 nbinsCf[kTrackDCAxy] = 26;
1009 nbinsCf[kTrackDCAz] = 101;
7698e7a4 1010 nbinsCf[kTrackCharge] = 2;
1011 nbinsCf[kTrackPhi] = 150;
1012 nbinsCf[kTrackEta] = 100;
1013 nbinsCf[kTrackPt] = 32;
1014 nbinsCf[kTrackP] = 18;
1015 nbinsCf[kTrackTrdTracklets] = 7;
1016 nbinsCf[kTrackTrdClusters] = 200;
1017 for(Int_t i=0;i<6;++i) nbinsCf[kTrackQtot+i] = 100;
1018 Double_t evVtxLims[2] = {-12.,+12.};
1019 Double_t evMultLims[6] = {0.0, 700., 1400., 2100., 2800., 3500.};
1020 Double_t evBCLims[2] = {-0.5, +3499.5};
1021 Double_t trkTOFdeltaBClims[2] = {-1000.5, 1000.5};
33d501fa 1022 Double_t trkTOFBClims[2] = {-100.5, 100.5};
1023 Double_t trkDCAxyLims[27] = {-50.0, -40.0, -30.0, -25.0, -20.0,
1024 -15.0, -10.0, -8.0, -6.0, -4.0,
1025 -3.0, -2.0, -1.0, 0.0, +1.0,
1026 +2.0, +3.0, +4.0, +6.0, +8.0,
1027 +10.0, +15.0, +20.0, +25.0, +30.0,
1028 +40.0, +50.0};
1029 Double_t trkDCAzLims[2] = {-50.5, +50.5};
7698e7a4 1030 Double_t trkChargeLims[2] = {-1.5, +1.5};
1031 Double_t trkPhiLims[2] = {-1.1*TMath::Pi(), +1.1*TMath::Pi()};
1032 Double_t trkEtaLims[2] = {-1.0, +1.0};
1033 Double_t trkPtLims[33] = {0.0, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9,
1034 1.0, 1.1, 1.2, 1.3, 1.4, 1.6, 1.8, 2.0, 2.2, 2.4,
1035 2.6, 2.8, 3.0, 3.4, 3.8, 4.2, 4.6, 5.0, 6.0, 7.0, 8.0, 9.0, 10.0};
1036 Double_t trkPLims[19] = {0.0, 0.2, 0.4, 0.6, 0.8, 1.0, 1.2, 1.4, 1.7, 2.0,
1037 2.5, 3.0, 3.5, 4.0, 5.0, 6.0, 7.0, 9.0, 12.0};
1038 Double_t trkTrdNLims[2] = {-0.5, 6.5};
1039 Double_t trkTrdNclsLims[2] = {-0.5, 199.5};
1040 Double_t trkQtotLims[2] = {0.0, 20.};
1041 fCfContainer = new AliCFContainer("TrdCfContainer", "TRD ESD CF container", 3, kNTrdCfVariables, nbinsCf);
1042 fCfContainer->SetBinLimits(kEventVtxZ, evVtxLims[0], evVtxLims[1]);
1043 fCfContainer->SetBinLimits(kEventMult, evMultLims);
1044 fCfContainer->SetBinLimits(kEventBC, evBCLims[0], evBCLims[1]);
1045 fCfContainer->SetBinLimits(kTrackTOFdeltaBC, trkTOFdeltaBClims[0], trkTOFdeltaBClims[1]);
33d501fa 1046 fCfContainer->SetBinLimits(kTrackTOFBC, trkTOFBClims[0], trkTOFBClims[1]);
1047 fCfContainer->SetBinLimits(kTrackDCAxy, trkDCAxyLims);
1048 fCfContainer->SetBinLimits(kTrackDCAz, trkDCAzLims[0], trkDCAzLims[1]);
7698e7a4 1049 fCfContainer->SetBinLimits(kTrackCharge, trkChargeLims[0], trkChargeLims[1]);
1050 fCfContainer->SetBinLimits(kTrackPhi, trkPhiLims[0], trkPhiLims[1]);
1051 fCfContainer->SetBinLimits(kTrackEta, trkEtaLims[0], trkEtaLims[1]);
1052 fCfContainer->SetBinLimits(kTrackPt, trkPtLims);
1053 fCfContainer->SetBinLimits(kTrackP, trkPLims);
1054 fCfContainer->SetBinLimits(kTrackTrdTracklets, trkTrdNLims[0], trkTrdNLims[1]);
1055 fCfContainer->SetBinLimits(kTrackTrdClusters, trkTrdNclsLims[0], trkTrdNclsLims[1]);
1056 for(Int_t i=0; i<6; ++i) fCfContainer->SetBinLimits(kTrackQtot+i, trkQtotLims[0], trkQtotLims[1]);
1057 fCfContainer->SetVarTitle(kEventVtxZ, "vtxZ");
1058 fCfContainer->SetVarTitle(kEventMult, "multiplicity");
1059 fCfContainer->SetVarTitle(kEventBC, "BC");
1060 fCfContainer->SetVarTitle(kTrackTOFdeltaBC, "TOFdeltaBC");
33d501fa 1061 fCfContainer->SetVarTitle(kTrackTOFBC, "TOFBC");
1062 fCfContainer->SetVarTitle(kTrackDCAxy, "DCAxy");
1063 fCfContainer->SetVarTitle(kTrackDCAz, "DCAz");
7698e7a4 1064 fCfContainer->SetVarTitle(kTrackCharge, "charge");
1065 fCfContainer->SetVarTitle(kTrackPhi, "phi");
1066 fCfContainer->SetVarTitle(kTrackEta, "eta");
1067 fCfContainer->SetVarTitle(kTrackPt, "pt");
1068 fCfContainer->SetVarTitle(kTrackP, "P");
1069 fCfContainer->SetVarTitle(kTrackTrdTracklets, "tracklets");
1070 fCfContainer->SetVarTitle(kTrackTrdClusters, "clusters");
1071 for(Int_t i=0; i<6; ++i) fCfContainer->SetVarTitle(kTrackQtot+i, Form("Qtot%d",i));
1072
1073 fCfContainer->SetStepTitle(0, "TPC reference");
1074 fCfContainer->SetStepTitle(1, "TRD");
1075 fCfContainer->SetStepTitle(2, "TOF");
1076
1077 fHistos->AddAt(fCfContainer, kNhistos);
1078
fb65de21 1079 return fHistos;
1080}
1081
1082//____________________________________________________________________
1083Bool_t AliTRDcheckESD::Load(const Char_t *file, const Char_t *dir, const Char_t *name)
1084{
1085// Load data from performance file
1086
1087 if(!TFile::Open(file)){
1088 AliWarning(Form("Couldn't open file %s.", file));
1089 return kFALSE;
1090 }
1091 if(dir){
1092 if(!gFile->cd(dir)){
1093 AliWarning(Form("Couldn't cd to %s in %s.", dir, file));
1094 return kFALSE;
1095 }
1096 }
1097 TObjArray *o(NULL);
1098 const Char_t *tn=(name ? name : GetName());
1099 if(!(o = (TObjArray*)gDirectory->Get(tn))){
1100 AliWarning(Form("Missing histogram container %s.", tn));
1101 return kFALSE;
1102 }
1103 fHistos = (TObjArray*)o->Clone(GetName());
7698e7a4 1104 fCfContainer = (AliCFContainer*)fHistos->At(fHistos->GetEntries());
fb65de21 1105 gFile->Close();
1106 return kTRUE;
1107}
1108
1109//_______________________________________________________
1110Bool_t AliTRDcheckESD::PutTrendValue(const Char_t *name, Double_t val)
1111{
1112// Dump trending value to default file
1113
1114 if(!fgFile){
1115 fgFile = fopen("TRD.Performance.txt", "at");
1116 }
1117 fprintf(fgFile, "%s_%s %f\n", GetName(), name, val);
1118 return kTRUE;
1119}
1120
1121//____________________________________________________________________
1122void AliTRDcheckESD::Terminate(Option_t *)
1123{
2bf6d80c 1124 // Steer post-processing
fb65de21 1125 if(!fHistos){
1126 fHistos = dynamic_cast<TObjArray *>(GetOutputData(1));
1127 if(!fHistos){
1128 AliError("Histogram container not found in output");
1129 return;
1130 }
1131 }
1132
2bf6d80c 1133 // fNRefFigures = 15;
1134 // return;
1135
fb65de21 1136 const Char_t *name[kNrefs] = {
1137 "Ncl", "Eff", "Eloss", "PtResDCA"
1138 };
2bf6d80c 1139
fb65de21 1140 TObjArray *arr(NULL); TGraph *g(NULL);
1141 if(!fResults){
1142 fResults = new TObjArray(kNrefs);
1143 fResults->SetOwner();
1144 fResults->SetName("results");
1145 for(Int_t iref(0); iref<kNrefs; iref++){
1146 fResults->AddAt(arr = new TObjArray(fgkNgraph[iref]), iref);
1147 arr->SetName(name[iref]); arr->SetOwner();
2bf6d80c 1148 switch(iref+1){
fb65de21 1149 case kNCl:
2bf6d80c 1150 for(Int_t ig(0); ig<fgkNgraph[iref]; ig++){
fb65de21 1151 arr->AddAt(g = new TGraphErrors(), ig);
1152 g->SetLineColor(ig+1);
1153 g->SetMarkerColor(ig+1);
1154 g->SetMarkerStyle(ig+20);
1155 g->SetName(Form("s%d", ig));
1156 switch(ig){
1157 case 0: g->SetTitle("ALL"); break;
1158 case 1: g->SetTitle("NEG"); break;
1159 case 2: g->SetTitle("POS"); break;
1160 default: g->SetTitle(AliPID::ParticleLatexName(ig-3)); break;
1161 };
1162 }
1163 break;
1164 case kTRDmom:
2bf6d80c 1165 for(Int_t ig(0); ig<fgkNgraph[iref]; ig++){
fb65de21 1166 arr->AddAt(g = new TGraphAsymmErrors(), ig);
1167 g->SetLineColor(ig+1);
1168 g->SetMarkerColor(ig+1);
1169 g->SetMarkerStyle(ig+20);
1170 }
1171 break;
1172 case kPtRes:
2bf6d80c 1173 for(Int_t idx(0); idx<AliPID::kSPECIES; idx++){
fb65de21 1174 Int_t ig(2*idx);
1175 arr->AddAt(g = new TGraphErrors(), ig);
1176 g->SetLineColor(kRed-idx);
1177 g->SetMarkerColor(kRed-idx);
1178 g->SetMarkerStyle(20+idx);
1179 g->SetNameTitle(Form("s%d", ig), Form("res %s", AliPID::ParticleLatexName(idx)));
1180 arr->AddAt(g = new TGraphErrors(), ig+1);
1181 g->SetLineColor(kBlue-idx);
1182 g->SetMarkerColor(kBlue-idx);
1183 g->SetMarkerStyle(20+idx);
1184 g->SetNameTitle(Form("m%d", ig+1), Form("sys %s", AliPID::ParticleLatexName(idx)));
1185
1186 ig+=10;
1187 arr->AddAt(g = new TGraphErrors(), ig);
1188 g->SetLineColor(kRed-idx);
1189 g->SetMarkerColor(kRed-idx);
1190 g->SetMarkerStyle(20+idx);
1191 g->SetNameTitle(Form("s%d", ig), Form("sigma %s", AliPID::ParticleLatexName(idx)));
1192 arr->AddAt(g = new TGraphErrors(), ig+1);
1193 g->SetLineColor(kBlue-idx);
1194 g->SetMarkerColor(kBlue-idx);
1195 g->SetMarkerStyle(20+idx);
1196 g->SetNameTitle(Form("m%d", ig+1), Form("mean %s", AliPID::ParticleLatexName(idx)));
1197 }
1198 break;
1199 default:
2bf6d80c 1200 for(Int_t ig(0); ig<fgkNgraph[iref]; ig++){
fb65de21 1201 arr->AddAt(g = new TGraphErrors(), ig);
1202 g->SetLineColor(ig+1);
1203 g->SetMarkerColor(ig+1);
1204 g->SetMarkerStyle(ig+20);
1205 }
1206 break;
1207 }
1208 }
1209 }
1210 TH1 *h1[2] = {NULL, NULL};
1211 TH2I *h2(NULL);
1212 TAxis *ax(NULL);
1213
1214 // No of clusters
1215 if(!(h2 = (TH2I*)fHistos->At(kNCl))) return;
1216 ax = h2->GetXaxis();
1217 arr = (TObjArray*)fResults->At(kNCl);
2bf6d80c 1218
fb65de21 1219 // All tracks
1220 h1[0] = h2->ProjectionX("Ncl_px");
1221 TGraphErrors *ge=(TGraphErrors*)arr->At(0);
1222 for(Int_t ib=2; ib<=ax->GetNbins(); ib++){
1223 ge->SetPoint(ib-2, ax->GetBinCenter(ib), h1[0]->GetBinContent(ib));
1224 }
2bf6d80c 1225
fb65de21 1226 // All charged tracks
1227 TH1 *hNclCh[2] = {(TH1D*)h1[0]->Clone("NEG"), (TH1D*)h1[0]->Clone("POS")};
1228 hNclCh[0]->Reset();hNclCh[1]->Reset();
1229 for(Int_t is(1); is<=AliPID::kSPECIES; is++){
1230 hNclCh[0]->Add(h2->ProjectionX("Ncl_px", 2*is-1, 2*is-1)); // neg
1231 hNclCh[1]->Add(h2->ProjectionX("Ncl_px", 2*is, 2*is)); // pos
1232 }
1233 if(Int_t(hNclCh[0]->GetEntries())){
1234 ge=(TGraphErrors*)arr->At(1);
1235 for(Int_t ib=2; ib<=ax->GetNbins(); ib++){
1236 ge->SetPoint(ib-2, ax->GetBinCenter(ib), hNclCh[0]->GetBinContent(ib));
1237 }
1238 }
2bf6d80c 1239
fb65de21 1240 if(Int_t(hNclCh[1]->GetEntries())){
1241 ge=(TGraphErrors*)arr->At(2);
1242 for(Int_t ib=2; ib<=ax->GetNbins(); ib++){
1243 ge->SetPoint(ib-2, ax->GetBinCenter(ib), hNclCh[1]->GetBinContent(ib));
1244 }
1245 }
1246 // Species wise
1247 for(Int_t is(1); is<=AliPID::kSPECIES; is++){
1248 h1[0] = h2->ProjectionX("Ncl_px", 2*is-1, 2*is);
1249 if(!Int_t(h1[0]->GetEntries())) continue;
1250 ge=(TGraphErrors*)arr->At(2+is);
1251 for(Int_t ib=2; ib<=ax->GetNbins(); ib++){
1252 ge->SetPoint(ib-2, ax->GetBinCenter(ib), h1[0]->GetBinContent(ib));
1253 }
1254 }
2bf6d80c 1255
fb65de21 1256 fNRefFigures = 1;
1257
1258 // EFFICIENCY
1259 // geometrical efficiency
1260 if(!(h2 = (TH2I*)fHistos->At(kTRDstat))) return;
2bf6d80c 1261 arr = (TObjArray*)fResults->At(kTRDstat-1);
fb65de21 1262 h1[0] = h2->ProjectionX("checkESDx0", kTPCout, kTPCout);
1263 h1[1] = h2->ProjectionX("checkESDx1", kTRDin, kTRDin);
1264 Process(h1, (TGraphErrors*)arr->At(0));
1265 delete h1[0];delete h1[1];
1266 // tracking efficiency
1267 h1[0] = h2->ProjectionX("checkESDx0", kTRDin, kTRDin);
1268 h1[1] = h2->ProjectionX("checkESDx1", kTRDout, kTRDout);
1269 Process(h1, (TGraphErrors*)arr->At(1));
1270 delete h1[1];
1271 // PID efficiency
1272 h1[1] = h2->ProjectionX("checkESDx1", kTRDpid, kTRDpid);
1273 Process(h1, (TGraphErrors*)arr->At(2));
1274 delete h1[1];
1275 // Refit efficiency
1276 h1[1] = h2->ProjectionX("checkESDx1", kTRDref, kTRDref);
1277 Process(h1, (TGraphErrors*)arr->At(3));
1278 delete h1[1];
1279 fNRefFigures++;
1280
1281 // ENERGY LOSS
1282 if(!(h2 = dynamic_cast<TH2I*>(fHistos->At(kTRDmom)))) return;
2bf6d80c 1283 arr = (TObjArray*)fResults->At(kTRDmom-1);
fb65de21 1284 TGraphAsymmErrors *g06 = (TGraphAsymmErrors*)arr->At(0), *g09 = (TGraphAsymmErrors*)arr->At(1);
1285 ax=h2->GetXaxis();
1286 const Int_t nq(4);
1287 const Double_t xq[nq] = {0.05, 0.2, 0.8, 0.95};
1288 Double_t yq[nq];
1289 for(Int_t ily=6; ily--;){
1290 h1[0] = h2->ProjectionX("checkESDp0", ily+1, ily+1);
1291 h1[0]->GetQuantiles(nq,yq,xq);
1292 g06->SetPoint(ily, Float_t(ily), ax->GetBinCenter(h1[0]->GetMaximumBin()));
1293 g06->SetPointError(ily, 0., 0., TMath::Abs(yq[0]), yq[3]);
1294 g09->SetPoint(ily, Float_t(ily), h1[0]->GetMean());
1295 g09->SetPointError(ily, 0., 0., TMath::Abs(yq[1]), yq[2]);
1296
1297 //printf(" max[%f] mean[%f] q[%f %f %f %f]\n", ax->GetBinCenter(h1[0]->GetMaximumBin()), h1[0]->GetMean(), yq[0], yq[1], yq[2], yq[3]);
1298 delete h1[0];
1299 }
1300 fNRefFigures++;
1301// if(!HasMC()) return;
1302
1303 // Pt RESOLUTION @ DCA
1304 TH3S* h3(NULL); TGraphErrors *gg[2] = {NULL,NULL};
1305 if(!(h3 = dynamic_cast<TH3S*>(fHistos->At(kPtRes)))) return;
2bf6d80c 1306 arr = (TObjArray*)fResults->At(kPtRes-1);
fb65de21 1307 TAxis *az(h3->GetZaxis());
1308 for(Int_t i(0); i<AliPID::kSPECIES; i++){
1309 Int_t idx(2*i);
1310 az->SetRange(idx+1, idx+2);
1311 gg[1] = (TGraphErrors*)arr->At(idx);
1312 gg[0] = (TGraphErrors*)arr->At(idx+1);
1313 Process2D((TH2*)h3->Project3D("yx"), gg);
1314
1315 idx+=10;
1316 az->SetRange(idx+1, idx+2);
1317 gg[1] = (TGraphErrors*)arr->At(idx);
1318 gg[0] = (TGraphErrors*)arr->At(idx+1);
1319 Process2D((TH2*)h3->Project3D("yx"), gg);
1320 }
1321 fNRefFigures++;
1322
fb65de21 1323 fNRefFigures++;
2bf6d80c 1324 // 3x3 tracking summary canvases for every centrality class
1325 fNRefFigures++;
1326 // 3x3 PID summary canvases for every centrality class
fb65de21 1327 fNRefFigures++;
2bf6d80c 1328 // 3x3 for centrality dependent pictures
fb65de21 1329 fNRefFigures++;
33d501fa 1330
1331 //DoTrending();
fb65de21 1332}
1333
1334//____________________________________________________________________
1335Int_t AliTRDcheckESD::Pdg2Idx(Int_t pdg) const
1336{
1337 //
1338 // Helper function converting PDG code into AliPID index
1339 //
1340 switch(pdg){
1341 case kElectron:
1342 case kPositron: return AliPID::kElectron;
1343 case kMuonPlus:
1344 case kMuonMinus: return AliPID::kMuon;
1345 case kPiPlus:
1346 case kPiMinus: return AliPID::kPion;
1347 case kKPlus:
1348 case kKMinus: return AliPID::kKaon;
1349 case kProton:
1350 case kProtonBar: return AliPID::kProton;
1351 }
1352 return -1;
1353}
1354
1355//____________________________________________________________________
1356void AliTRDcheckESD::Process(TH1 **h1, TGraphErrors *g)
1357{
1358// Generic function to process one reference plot
1359
1360 Int_t n1 = 0, n2 = 0, ip=0;
1361 Double_t eff = 0.;
1362
1363 TAxis *ax = h1[0]->GetXaxis();
1364 for(Int_t ib=1; ib<=ax->GetNbins(); ib++){
1365 if(!(n1 = (Int_t)h1[0]->GetBinContent(ib))) continue;
1366 n2 = (Int_t)h1[1]->GetBinContent(ib);
1367 eff = n2/Float_t(n1);
1368
1369 ip=g->GetN();
1370 g->SetPoint(ip, ax->GetBinCenter(ib), eff);
1371 g->SetPointError(ip, 0., n2 ? eff*TMath::Sqrt(1./n1+1./n2) : 0.);
1372 }
1373}
1374//________________________________________________________
1375void AliTRDcheckESD::Process2D(TH2 * const h2, TGraphErrors **g)
1376{
1377 //
1378 // Do the processing
1379 //
1380
1381 Int_t n = 0;
1382 if((n=g[0]->GetN())) for(;n--;) g[0]->RemovePoint(n);
1383 if((n=g[1]->GetN())) for(;n--;) g[1]->RemovePoint(n);
1384 TF1 f("fg", "gaus", -3.,3.);
1385 for(Int_t ibin = 1; ibin <= h2->GetNbinsX(); ibin++){
1386 Double_t x = h2->GetXaxis()->GetBinCenter(ibin);
1387 TH1D *h = h2->ProjectionY("py", ibin, ibin);
1388 if(h->GetEntries()<100) continue;
1389 //AdjustF1(h, f);
1390
1391 h->Fit(&f, "QN");
1392 Int_t ip = g[0]->GetN();
1393 g[0]->SetPoint(ip, x, f.GetParameter(1));
1394 g[0]->SetPointError(ip, 0., f.GetParError(1));
1395 g[1]->SetPoint(ip, x, f.GetParameter(2));
1396 g[1]->SetPointError(ip, 0., f.GetParError(2));
1397 }
1398 return;
1399}
1400//____________________________________________________________________
1401void AliTRDcheckESD::PrintStatus(ULong_t status)
1402{
1403// Dump track status to stdout
1404
1405 printf("ITS[i(%d) o(%d) r(%d)] TPC[i(%d) o(%d) r(%d) p(%d)] TRD[i(%d) o(%d) r(%d) p(%d) s(%d)] HMPID[o(%d) p(%d)]\n"
1406 ,Bool_t(status & AliESDtrack::kITSin)
1407 ,Bool_t(status & AliESDtrack::kITSout)
1408 ,Bool_t(status & AliESDtrack::kITSrefit)
1409 ,Bool_t(status & AliESDtrack::kTPCin)
1410 ,Bool_t(status & AliESDtrack::kTPCout)
1411 ,Bool_t(status & AliESDtrack::kTPCrefit)
1412 ,Bool_t(status & AliESDtrack::kTPCpid)
1413 ,Bool_t(status & AliESDtrack::kTRDin)
1414 ,Bool_t(status & AliESDtrack::kTRDout)
1415 ,Bool_t(status & AliESDtrack::kTRDrefit)
1416 ,Bool_t(status & AliESDtrack::kTRDpid)
1417 ,Bool_t(status & AliESDtrack::kTRDStop)
1418 ,Bool_t(status & AliESDtrack::kHMPIDout)
1419 ,Bool_t(status & AliESDtrack::kHMPIDpid)
1420 );
1421}
1422
1423//____________________________________________________________________
7698e7a4 1424TH1D* AliTRDcheckESD::Proj2D(TH2* hist) {
fb65de21 1425 //
1426 // project the PH vs Slice 2D-histo into a 1D histo
1427 //
7698e7a4 1428 /*TH1D* hProjection = new TH1F("hProjection","", hist->GetXaxis()->GetXbins()->GetSize()-1,
1429 hist->GetXaxis()->GetXbins()->GetArray());*/
1430 TH1D* hProjection = (TH1D*)hist->ProjectionX(Form("hProjection_%f", gRandom->Rndm()));
1431 hProjection->Reset();
1432 //cout << "Proj2D: nbins = " << hist->GetXaxis()->GetXbins()->GetSize()-1 << endl;
fb65de21 1433 TF1* fitLandau = new TF1("landauFunc","landau",0.,2000.);
1434 TH1D *hD;
1435 for(Int_t iBin=1;iBin<=hist->GetXaxis()->GetNbins();iBin++) {
1436 if(gROOT->FindObject("projection"))
1437 delete gROOT->FindObject("projection");
1438 hD = (TH1D*)hist->ProjectionY("projection",iBin,iBin);
2bf6d80c 1439 hD->Rebin(4);
1440 if(hD->Integral()>10) {
fb65de21 1441 fitLandau->SetParameter(1, hD->GetBinCenter(hD->GetMaximumBin()));
7698e7a4 1442 fitLandau->SetParLimits(1, 0.2*hD->GetBinCenter(hD->GetMaximumBin()), 3.0*hD->GetBinCenter(hD->GetMaximumBin()));
2bf6d80c 1443 fitLandau->SetParameter(0, 1000.);
7698e7a4 1444 fitLandau->SetParLimits(0, 1., 10000000.);
1445 fitLandau->SetParameter(2, 0.5*hD->GetBinCenter(hD->GetMaximumBin()));
1446 fitLandau->SetParLimits(2, 0.01*hD->GetBinCenter(hD->GetMaximumBin()), 1.0*hD->GetBinCenter(hD->GetMaximumBin()));
1447 hD->Fit(fitLandau, "Q0", "", hD->GetXaxis()->GetXmin(), hD->GetXaxis()->GetXmax());
1448 hD->Fit(fitLandau, "Q0", "", hD->GetXaxis()->GetXmin(), hD->GetXaxis()->GetXmax());
fb65de21 1449 hProjection->SetBinContent(iBin, fitLandau->GetParameter(1));
7698e7a4 1450 hProjection->SetBinError(iBin, fitLandau->GetParameter(2));
fb65de21 1451 }
1452 else{
1453 hProjection->SetBinContent(iBin, 0);
1454 hProjection->SetBinError(iBin, 0);
1455 }
1456 }
1457 return hProjection;
1458}
1459
1460//____________________________________________________________________
7698e7a4 1461TH2F* AliTRDcheckESD::Proj3D(TH3* hist, TH2* accMap, Int_t zbinLow, Int_t zbinHigh, Float_t &entries) {
fb65de21 1462 //
1463 // Project a 3D histogram to a 2D histogram in the Z axis interval [zbinLow,zbinHigh]
1464 // Return the 2D histogram and also the number of entries into this projection (entries)
1465
1466 Int_t nBinsX = hist->GetXaxis()->GetNbins(); // X and Y axis bins are assumed to be all equal
1467 Float_t minX = hist->GetXaxis()->GetXmin();
1468 Float_t maxX = hist->GetXaxis()->GetXmax();
1469 Int_t nBinsY = hist->GetYaxis()->GetNbins();
1470 Float_t minY = hist->GetYaxis()->GetXmin();
1471 Float_t maxY = hist->GetYaxis()->GetXmax();
1472 Int_t nBinsZ = hist->GetZaxis()->GetNbins(); // Z axis bins (pt) might have different widths
fb65de21 1473
1474 TH2F* projHisto = (TH2F*)gROOT->FindObject("projHisto");
1475 if(projHisto)
1476 projHisto->Reset();
1477 else
1478 projHisto = new TH2F("projHisto", "projection", nBinsX, minX, maxX, nBinsY, minY, maxY);
1479
fb65de21 1480 for(Int_t iZ=1; iZ<=nBinsZ; iZ++) {
1481 if(iZ<zbinLow) continue;
1482 if(iZ>zbinHigh) continue;
1483 for(Int_t iX=1; iX<=nBinsX; iX++) {
1484 for(Int_t iY=1; iY<=nBinsY; iY++) {
7698e7a4 1485 if(accMap) {
1486 if(accMap->GetBinContent(iX,iY)>0.1)
1487 projHisto->SetBinContent(iX, iY, projHisto->GetBinContent(iX, iY)+hist->GetBinContent(iX,iY,iZ));
1488 }
1489 else // no acc. cut
1490 projHisto->SetBinContent(iX, iY, projHisto->GetBinContent(iX, iY)+hist->GetBinContent(iX,iY,iZ));
1491 // count only the entries which are inside the acceptance map
1492 if(accMap) {
1493 if(accMap->GetBinContent(iX,iY)>0.1)
1494 entries+=hist->GetBinContent(iX,iY,iZ);
1495 }
1496 else // no acc. cut
1497 entries+=hist->GetBinContent(iX,iY,iZ);
fb65de21 1498 }
1499 }
1500 }
1501 return projHisto;
1502}
7698e7a4 1503
1504//____________________________________________________________________
1505void AliTRDcheckESD::CheckActiveSM(TH1D* phiProj, Bool_t activeSM[18]) {
1506 //
1507 // Check the active super-modules
1508 //
1509 Double_t entries[18] = {0.0};
1510 Double_t smPhiLimits[19];
1511 for(Int_t ism=0; ism<=18; ++ism) smPhiLimits[ism] = -TMath::Pi() + (2.0*TMath::Pi()/18.0)*ism;
1512 for(Int_t phiBin=1; phiBin<=phiProj->GetXaxis()->GetNbins(); ++phiBin) {
1513 Double_t phi = phiProj->GetBinCenter(phiBin);
1514 Int_t sm = -1;
1515 for(Int_t ism=0; ism<18; ++ism)
1516 if(phi>=smPhiLimits[ism] && phi<smPhiLimits[ism+1]) sm = ism;
1517 if(sm==-1) continue;
1518 entries[sm] += phiProj->GetBinContent(phiBin);
1519 }
1520 Double_t avEntries = Double_t(phiProj->Integral())/18.0;
1521 for(Int_t ism=0; ism<18; ++ism)
1522 if(entries[ism]>0.5*avEntries) activeSM[ism] = kTRUE;
1523}
1524
fb65de21 1525//____________________________________________________________________
7698e7a4 1526TH1F* AliTRDcheckESD::EfficiencyTRD(TH3* tpc3D, TH3* trd3D, Bool_t useAcceptance) {
fb65de21 1527 //
1528 // Calculate the TRD-TPC matching efficiency as function of pt
1529 //
7698e7a4 1530
3fb80f44 1531 if(!tpc3D || !trd3D) return NULL;
fb65de21 1532 Int_t nBinsZ = trd3D->GetZaxis()->GetNbins();
7698e7a4 1533 // project everything on the eta-phi map to obtain an acceptance map
fb65de21 1534 Float_t nada = 0.;
33d501fa 1535 TH2F *trdAcc = (useAcceptance ? (TH2F*)Proj3D(trd3D, 0x0, 1, nBinsZ, nada)->Clone(Form("trdAcc%f", gRandom->Rndm())) : 0x0);
1536 TH1D *phiProj = (trdAcc ? trdAcc->ProjectionY(Form("phiProj%f", gRandom->Rndm())) : 0x0);
7698e7a4 1537
1538 // prepare the acceptance map
1539 Bool_t activeSM[18] = {kFALSE};
1540 Double_t smPhiLimits[19];
1541 for(Int_t ism=0; ism<=18; ++ism) smPhiLimits[ism] = -TMath::Pi() + (2.0*TMath::Pi()/18.0)*ism;
1542 if(phiProj) {
1543 CheckActiveSM(phiProj, activeSM); // get the active SMs
1544 trdAcc->Reset();
1545 // Put 1 entry in every bin which belongs to an active SM
1546 for(Int_t iY=1; iY<=trdAcc->GetYaxis()->GetNbins(); ++iY) {
1547 Double_t phi = trdAcc->GetYaxis()->GetBinCenter(iY);
1548 Bool_t isActive = kFALSE;
1549 for(Int_t ism=0; ism<18; ++ism) {
1550 if(phi>=smPhiLimits[ism] && phi<smPhiLimits[ism+1] && activeSM[ism]) {
1551 isActive = kTRUE;
1552 }
1553 }
1554 if(!isActive) continue;
1555 for(Int_t iX=1; iX<=trdAcc->GetXaxis()->GetNbins(); ++iX)
1556 if(trdAcc->GetXaxis()->GetBinCenter(iX)>=-0.85 && trdAcc->GetXaxis()->GetBinCenter(iX)<=0.85) trdAcc->SetBinContent(iX, iY, 1.0);
1557 } // end for over Y(phi) bins
1558 } // end if phiProj
1559
fb65de21 1560 // get the bin limits from the Z axis of 3D histos
1561 Float_t *ptBinLimits = new Float_t[nBinsZ+1];
1562 for(Int_t i=1; i<=nBinsZ; i++) {
1563 ptBinLimits[i-1] = trd3D->GetZaxis()->GetBinLowEdge(i);
1564 }
1565 ptBinLimits[nBinsZ] = trd3D->GetZaxis()->GetBinUpEdge(nBinsZ);
7698e7a4 1566
33d501fa 1567 TH1F *efficiency = new TH1F(Form("eff%d", Int_t(1000000.0*gRandom->Rndm())), "TRD-TPC matching efficiency", nBinsZ, ptBinLimits);
7698e7a4 1568
fb65de21 1569 // loop over Z bins
33d501fa 1570 Bool_t effGood = kFALSE;
fb65de21 1571 for(Int_t i=1; i<=nBinsZ; i++) {
1572 Float_t tpcEntries = 0.0; Float_t trdEntries = 0.0;
1573 Proj3D(tpc3D, trdAcc, i, i, tpcEntries);
1574 Proj3D(trd3D, trdAcc, i, i, trdEntries);
1575 Float_t ratio = 0;
1576 if(tpcEntries>0) ratio = trdEntries/tpcEntries;
1577 Float_t error = 0;
2bf6d80c 1578 if(tpcEntries>0 && trdEntries>0 && (tpcEntries-trdEntries)>=0.0)
1579 error = TMath::Sqrt(trdEntries*(tpcEntries-trdEntries)/tpcEntries/tpcEntries/tpcEntries);
33d501fa 1580 if(ratio>0.001) {
fb65de21 1581 efficiency->SetBinContent(i,ratio);
1582 efficiency->SetBinError(i,error);
33d501fa 1583 effGood = kTRUE;
fb65de21 1584 }
1585 } // end loop over Z bins
33d501fa 1586 if(!effGood) return 0x0;
fb65de21 1587
fb65de21 1588 return efficiency;
1589}
2bf6d80c 1590
7698e7a4 1591//__________________________________________________________________________________________________
33d501fa 1592void AliTRDcheckESD::PlotCentSummaryFromCF(Double_t* trendValues, Bool_t useIsolatedBC, Bool_t cutTOFbc) {
7698e7a4 1593 //
1594 // Make the centrality summary figure from the CF container
1595 //
1596 if(!fCfContainer) return;
1597
33d501fa 1598 trendValues = trendValues;
1599
7698e7a4 1600 TLatex* lat=new TLatex();
1601 lat->SetTextSize(0.06);
1602 lat->SetTextColor(2);
1603
1604 gPad->SetTopMargin(0.05); gPad->SetBottomMargin(0.001); gPad->SetLeftMargin(0.001); gPad->SetRightMargin(0.001);
1605 gPad->Divide(3,3,0.,0.);
1606 TList* l=gPad->GetListOfPrimitives();
1607 TVirtualPad* pad=0x0;
1608
33d501fa 1609 fCfContainer->SetRangeUser(kTrackDCAxy, -0.999, +0.999);
1610 fCfContainer->SetRangeUser(kTrackDCAz, -3.0, +3.0);
1611 if(cutTOFbc) fCfContainer->SetRangeUser(kTrackTOFBC, 0.0, 0.0);
1612
1613 // find all the isolated bunch crossings with entries
1614 Bool_t isIsolated[3500];
1615 TH1D* tempTH1D = (TH1D*)fCfContainer->Project(0, kEventBC);
1616 FindIsolatedBCs(tempTH1D, isIsolated); delete tempTH1D;
1617 Int_t nIsolatedBC = 0;
1618 for(Int_t ibc=0; ibc<3500; ++ibc)
1619 if(isIsolated[ibc]) nIsolatedBC++;
1620
1621 if(gROOT->FindObject("rangeEffPt")) delete gROOT->FindObject("rangeEffPt");
1622 TH2F* rangeEffPt=new TH2F("rangeEffPt", "",10,0.,10.,10,0.,1.3);
1623 rangeEffPt->SetStats(kFALSE);
1624 SetStyle(rangeEffPt->GetXaxis(), "p_{T} [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
1625 SetStyle(rangeEffPt->GetYaxis(), "efficiency", 0.07, 0.8, kTRUE, 0.05);
1626
7698e7a4 1627 Int_t padsForEffs[5] = {0,3,6,1,4};
1628 for(Int_t iCent=1; iCent<6; ++iCent) {
1629 pad = ((TVirtualPad*)l->At(padsForEffs[iCent-1])); pad->cd();
1630 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02); pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
1631 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 1632 rangeEffPt->Draw();
1633 TLine line;
1634 line.SetLineStyle(2);
1635 line.SetLineWidth(2);
1636 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 0.7, rangeEffPt->GetXaxis()->GetXmax(), 0.7);
1637 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 0.9, rangeEffPt->GetXaxis()->GetXmax(), 0.9);
7698e7a4 1638
1639 fCfContainer->SetRangeUser(kEventMult, Double_t(iCent), Double_t(iCent), kTRUE);
1640 fCfContainer->SetRangeUser(kTrackCharge, +1.0, +1.0); // positive charges
1641 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
33d501fa 1642
7698e7a4 1643 TH3D* h3PosTPC = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
33d501fa 1644 if(h3PosTPC->GetEntries()<10) {
1645 delete h3PosTPC;
1646 continue;
1647 }
7698e7a4 1648 TH3D* h3PosTRDall = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1649 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0); // >= 4 TRD tracklets
1650 TH3D* h3PosTRDtrk4 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1651 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0); // >= 5 TRD tracklets
1652 TH3D* h3PosTRDtrk5 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1653 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0); // >= 6 TRD tracklets
1654 TH3D* h3PosTRDtrk6 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1655
1656 fCfContainer->SetRangeUser(kTrackCharge, -1.0, -1.0); // negative charges
1657 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0); // >= 0 TRD tracklets
1658 TH3D* h3NegTPC = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
1659 TH3D* h3NegTRDall = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1660 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0); // 4 TRD tracklets
1661 TH3D* h3NegTRDtrk4 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1662 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0); // 5 TRD tracklets
1663 TH3D* h3NegTRDtrk5 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1664 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0); // 6 TRD tracklets
1665 TH3D* h3NegTRDtrk6 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1666
7698e7a4 1667 TH1F* hEffPosAll = EfficiencyTRD(h3PosTPC, h3PosTRDall, kTRUE);
1668 TH1F* hEffPosTrk4 = EfficiencyTRD(h3PosTPC, h3PosTRDtrk4, kTRUE);
1669 TH1F* hEffPosTrk5 = EfficiencyTRD(h3PosTPC, h3PosTRDtrk5, kTRUE);
1670 TH1F* hEffPosTrk6 = EfficiencyTRD(h3PosTPC, h3PosTRDtrk6, kTRUE);
1671 TH1F* hEffNegAll = EfficiencyTRD(h3NegTPC, h3NegTRDall, kTRUE);
1672 TH1F* hEffNegTrk4 = EfficiencyTRD(h3NegTPC, h3NegTRDtrk4, kTRUE);
1673 TH1F* hEffNegTrk5 = EfficiencyTRD(h3NegTPC, h3NegTRDtrk5, kTRUE);
1674 TH1F* hEffNegTrk6 = EfficiencyTRD(h3NegTPC, h3NegTRDtrk6, kTRUE);
1675
33d501fa 1676 delete h3PosTPC; delete h3NegTPC;
1677 delete h3PosTRDall; delete h3PosTRDtrk4; delete h3PosTRDtrk5; delete h3PosTRDtrk6;
1678 delete h3NegTRDall; delete h3NegTRDtrk4; delete h3NegTRDtrk5; delete h3NegTRDtrk6;
7698e7a4 1679
33d501fa 1680 // get matching efficiencies for isolated bunches
1681 TH3D* h3TPCrefPos_IsolatedBC=0x0; TH3D* h3TPCrefNeg_IsolatedBC=0x0;
1682 TH3D* h3TRDrefPosAll_IsolatedBC=0x0; TH3D* h3TRDrefPosTrk4_IsolatedBC=0x0; TH3D* h3TRDrefPosTrk5_IsolatedBC=0x0; TH3D* h3TRDrefPosTrk6_IsolatedBC=0x0;
1683 TH3D* h3TRDrefNegAll_IsolatedBC=0x0; TH3D* h3TRDrefNegTrk4_IsolatedBC=0x0; TH3D* h3TRDrefNegTrk5_IsolatedBC=0x0; TH3D* h3TRDrefNegTrk6_IsolatedBC=0x0;
1684 for(Int_t ibc=0; ibc<3500; ++ibc) {
1685 if(!isIsolated[ibc]) continue;
1686 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
1687
1688 TH3D* tempTH3D;
1689 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
1690 fCfContainer->SetRangeUser(kTrackCharge, +1.0, +1.0); // positive charges
1691 tempTH3D = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
1692 if(!h3TPCrefPos_IsolatedBC) h3TPCrefPos_IsolatedBC = tempTH3D;
1693 else {h3TPCrefPos_IsolatedBC->Add(tempTH3D); delete tempTH3D;};
1694 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1695 if(!h3TRDrefPosAll_IsolatedBC) h3TRDrefPosAll_IsolatedBC = tempTH3D;
1696 else {h3TRDrefPosAll_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1697 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0);
1698 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1699 if(!h3TRDrefPosTrk4_IsolatedBC) h3TRDrefPosTrk4_IsolatedBC = tempTH3D;
1700 else {h3TRDrefPosTrk4_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1701 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0);
1702 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1703 if(!h3TRDrefPosTrk5_IsolatedBC) h3TRDrefPosTrk5_IsolatedBC = tempTH3D;
1704 else {h3TRDrefPosTrk5_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1705 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0);
1706 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1707 if(!h3TRDrefPosTrk6_IsolatedBC) h3TRDrefPosTrk6_IsolatedBC = tempTH3D;
1708 else {h3TRDrefPosTrk6_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1709
1710 fCfContainer->SetRangeUser(kTrackCharge, -1.0, -1.0); // negative charges
1711 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
1712 tempTH3D = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
1713 if(!h3TPCrefNeg_IsolatedBC) h3TPCrefNeg_IsolatedBC = tempTH3D;
1714 else {h3TPCrefNeg_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1715 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1716 if(!h3TRDrefNegAll_IsolatedBC) h3TRDrefNegAll_IsolatedBC = tempTH3D;
1717 else {h3TRDrefNegAll_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1718 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0);
1719 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1720 if(!h3TRDrefNegTrk4_IsolatedBC) h3TRDrefNegTrk4_IsolatedBC = tempTH3D;
1721 else {h3TRDrefNegTrk4_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1722 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0);
1723 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1724 if(!h3TRDrefNegTrk5_IsolatedBC) h3TRDrefNegTrk5_IsolatedBC = tempTH3D;
1725 else {h3TRDrefNegTrk5_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1726 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0);
1727 tempTH3D = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
1728 if(!h3TRDrefNegTrk6_IsolatedBC) h3TRDrefNegTrk6_IsolatedBC = tempTH3D;
1729 else {h3TRDrefNegTrk6_IsolatedBC->Add(tempTH3D); delete tempTH3D;}
1730 }
1731 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0);
1732 fCfContainer->SetRangeUser(kTrackCharge, -1.0, +1.0);
1733 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
1734
1735 TH1F* hEffPosAll_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosAll_IsolatedBC, kTRUE);
1736 TH1F* hEffPosTrk4_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosTrk4_IsolatedBC, kTRUE);
1737 TH1F* hEffPosTrk5_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosTrk5_IsolatedBC, kTRUE);
1738 TH1F* hEffPosTrk6_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosTrk6_IsolatedBC, kTRUE);
1739 TH1F* hEffNegAll_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegAll_IsolatedBC, kTRUE);
1740 TH1F* hEffNegTrk4_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegTrk4_IsolatedBC, kTRUE);
1741 TH1F* hEffNegTrk5_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegTrk5_IsolatedBC, kTRUE);
1742 TH1F* hEffNegTrk6_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegTrk6_IsolatedBC, kTRUE);
7698e7a4 1743
33d501fa 1744 if(h3TPCrefPos_IsolatedBC) delete h3TPCrefPos_IsolatedBC;
1745 if(h3TPCrefNeg_IsolatedBC) delete h3TPCrefNeg_IsolatedBC;
1746 if(h3TRDrefPosAll_IsolatedBC) delete h3TRDrefPosAll_IsolatedBC;
1747 if(h3TRDrefPosTrk4_IsolatedBC) delete h3TRDrefPosTrk4_IsolatedBC;
1748 if(h3TRDrefPosTrk5_IsolatedBC) delete h3TRDrefPosTrk5_IsolatedBC;
1749 if(h3TRDrefPosTrk6_IsolatedBC) delete h3TRDrefPosTrk6_IsolatedBC;
1750 if(h3TRDrefNegAll_IsolatedBC) delete h3TRDrefNegAll_IsolatedBC;
1751 if(h3TRDrefNegTrk4_IsolatedBC) delete h3TRDrefNegTrk4_IsolatedBC;
1752 if(h3TRDrefNegTrk5_IsolatedBC) delete h3TRDrefNegTrk5_IsolatedBC;
1753 if(h3TRDrefNegTrk6_IsolatedBC) delete h3TRDrefNegTrk6_IsolatedBC;
1754
1755 if(!useIsolatedBC) {
1756 SetStyle(hEffPosAll, 1, kRed, 1, 24, kRed, 1);
1757 SetStyle(hEffPosTrk4, 1, kRed, 1, 25, kRed, 1);
1758 SetStyle(hEffPosTrk5, 1, kRed, 1, 26, kRed, 1);
1759 SetStyle(hEffPosTrk6, 1, kRed, 1, 27, kRed, 1);
1760 SetStyle(hEffNegAll, 1, kBlue, 1, 24, kBlue, 1);
1761 SetStyle(hEffNegTrk4, 1, kBlue, 1, 25, kBlue, 1);
1762 SetStyle(hEffNegTrk5, 1, kBlue, 1, 26, kBlue, 1);
1763 SetStyle(hEffNegTrk6, 1, kBlue, 1, 27, kBlue, 1);
1764 hEffPosAll->Draw("same");
1765 hEffNegAll->Draw("same");
1766 hEffPosTrk4->Draw("same");
1767 hEffNegTrk4->Draw("same");
1768 hEffPosTrk5->Draw("same");
1769 hEffNegTrk5->Draw("same");
1770 hEffPosTrk6->Draw("same");
1771 hEffNegTrk6->Draw("same");
1772 }
1773 else {
1774 if(nIsolatedBC>0) {
1775 SetStyle(hEffPosAll_IsolatedBC, 1, kRed, 1, 24, kRed, 1);
1776 SetStyle(hEffPosTrk4_IsolatedBC, 1, kRed, 1, 25, kRed, 1);
1777 SetStyle(hEffPosTrk5_IsolatedBC, 1, kRed, 1, 26, kRed, 1);
1778 SetStyle(hEffPosTrk6_IsolatedBC, 1, kRed, 1, 27, kRed, 1);
1779 SetStyle(hEffNegAll_IsolatedBC, 1, kBlue, 1, 24, kBlue, 1);
1780 SetStyle(hEffNegTrk4_IsolatedBC, 1, kBlue, 1, 25, kBlue, 1);
1781 SetStyle(hEffNegTrk5_IsolatedBC, 1, kBlue, 1, 26, kBlue, 1);
1782 SetStyle(hEffNegTrk6_IsolatedBC, 1, kBlue, 1, 27, kBlue, 1);
1783 hEffPosAll_IsolatedBC->Draw("same");
1784 hEffNegAll_IsolatedBC->Draw("same");
1785 hEffPosTrk4_IsolatedBC->Draw("same");
1786 hEffNegTrk4_IsolatedBC->Draw("same");
1787 hEffPosTrk5_IsolatedBC->Draw("same");
1788 hEffNegTrk5_IsolatedBC->Draw("same");
1789 hEffPosTrk6_IsolatedBC->Draw("same");
1790 hEffNegTrk6_IsolatedBC->Draw("same");
1791 }
1792 }
1793
7698e7a4 1794 TLegend* leg=new TLegend(0.18, 0.7, 0.77, 0.89);
1795 if(iCent==1) {
1796 leg->SetFillColor(0);
1797 leg->SetNColumns(2);
1798 leg->SetMargin(0.1);
1799 leg->SetBorderSize(0);
33d501fa 1800 if(useIsolatedBC) {
1801 leg->SetHeader("Isolated bunch crossings");
1802 if(nIsolatedBC) {
1803 leg->AddEntry(hEffPosAll_IsolatedBC, "pos. (#geq 1 tracklet)", "p");
1804 leg->AddEntry(hEffNegAll_IsolatedBC, "neg. (#geq 1 tracklet)", "p");
1805 leg->AddEntry(hEffPosTrk4_IsolatedBC, "pos. (4 tracklets)", "p");
1806 leg->AddEntry(hEffNegTrk4_IsolatedBC, "neg. (4 tracklets)", "p");
1807 leg->AddEntry(hEffPosTrk5_IsolatedBC, "pos. (5 tracklets)", "p");
1808 leg->AddEntry(hEffNegTrk5_IsolatedBC, "neg. (5 tracklets)", "p");
1809 leg->AddEntry(hEffPosTrk6_IsolatedBC, "pos. (6 tracklets)", "p");
1810 leg->AddEntry(hEffNegTrk6_IsolatedBC, "neg. (6 tracklets)", "p");
1811 }
1812 }
1813 else {
1814 leg->SetHeader("All bunch crossings");
1815 leg->AddEntry(hEffPosAll, "pos. (#geq 1 tracklet)", "p");
1816 leg->AddEntry(hEffNegAll, "neg. (#geq 1 tracklet)", "p");
1817 leg->AddEntry(hEffPosTrk4, "pos. (4 tracklets)", "p");
1818 leg->AddEntry(hEffNegTrk4, "neg. (4 tracklets)", "p");
1819 leg->AddEntry(hEffPosTrk5, "pos. (5 tracklets)", "p");
1820 leg->AddEntry(hEffNegTrk5, "neg. (5 tracklets)", "p");
1821 leg->AddEntry(hEffPosTrk6, "pos. (6 tracklets)", "p");
1822 leg->AddEntry(hEffNegTrk6, "neg. (6 tracklets)", "p");
1823 }
7698e7a4 1824 leg->Draw();
1825 }
1826 lat->DrawLatex(0.2, 1.32, Form("Centrality class %d", iCent));
1827 } // end for loop over multiplicity classes
1828
1829 // Reset the modified user ranges of the CF container
33d501fa 1830 fCfContainer->SetRangeUser(kEventMult, 0, 6, kTRUE);
7698e7a4 1831 fCfContainer->SetRangeUser(kTrackCharge, -1.0, +1.0);
1832 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
1833
1834 // Cluster distributions in all multiplicity classes
1835 pad = ((TVirtualPad*)l->At(2)); pad->cd();
1836 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
1837 pad->SetTopMargin(0.02); pad->SetBottomMargin(0.15);
1838 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 1839 if(gROOT->FindObject("rangeNcls")) delete gROOT->FindObject("rangeNcls");
1840 TH2F* rangeNcls = new TH2F("rangeNcls", "", 10, 0.0, 199.9, 10, 0.0, 1.199);
1841 SetStyle(rangeNcls->GetXaxis(), "# TRD clusters", 0.07, 0.8, kTRUE, 0.05);
1842 SetStyle(rangeNcls->GetYaxis(), "entries (a.u.)", 0.07, 0.8, kTRUE, 0.05);
1843 rangeNcls->SetStats(kFALSE);
1844 rangeNcls->Draw();
1845
1846 TH1D* hNcls[6]={0x0};
1847 TLegend* legCls=new TLegend(0.7, 0.75, 0.97, 0.97);
7698e7a4 1848 legCls->SetBorderSize(0);
1849 legCls->SetFillColor(0);
1850 legCls->SetMargin(0.15);
1851 for(Int_t iCent=0; iCent<6; ++iCent) {
1852 if(iCent>0)
1853 fCfContainer->SetRangeUser(kEventMult, Double_t(iCent), Double_t(iCent), kTRUE);
33d501fa 1854 if(!useIsolatedBC) hNcls[iCent] = (TH1D*)fCfContainer->Project(1, kTrackTrdClusters);
1855 else{
1856 for(Int_t ibc=0; ibc<3500; ++ibc) {
1857 if(!isIsolated[ibc]) continue;
1858 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
1859 tempTH1D = (TH1D*)fCfContainer->Project(1, kTrackTrdClusters);
1860 if(!hNcls[iCent]) hNcls[iCent] = tempTH1D;
1861 else {hNcls[iCent]->Add(tempTH1D); delete tempTH1D;}
1862 }
1863 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0);
1864 }
1865 if(!hNcls[iCent]) continue;
7698e7a4 1866 hNcls[iCent]->SetLineColor(iCent<4 ? iCent+1 : iCent+2);
1867 Double_t maximum = hNcls[iCent]->GetMaximum();
1868 if(maximum>1.0)
1869 hNcls[iCent]->Scale(1.0/maximum);
7698e7a4 1870 hNcls[iCent]->SetStats(kFALSE);
1871 hNcls[iCent]->SetTitle("");
33d501fa 1872 hNcls[iCent]->SetLineWidth(2);
7698e7a4 1873
1874 if(hNcls[iCent]->Integral()>0.01) {
33d501fa 1875 hNcls[iCent]->Draw("same");
7698e7a4 1876 legCls->AddEntry(hNcls[iCent], (iCent==0 ? "all centralities" : Form("centrality class %d", iCent)), "l");
1877 }
1878 }
33d501fa 1879 if(useIsolatedBC) legCls->SetHeader("Isolated bunch crossings");
1880 else legCls->SetHeader("All bunch crossings");
7698e7a4 1881 legCls->Draw();
33d501fa 1882 fCfContainer->SetRangeUser(kEventMult, 0.0, 6.0, kTRUE);
7698e7a4 1883
1884 // Qtot vs P
1885 pad = ((TVirtualPad*)l->At(5)); pad->cd();
1886 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
1887 pad->SetTopMargin(0.02); pad->SetBottomMargin(0.15);
1888 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 1889 if(gROOT->FindObject("rangeQtot")) delete gROOT->FindObject("rangeQtot");
1890 TH2F* rangeQtot = new TH2F("rangeQtot", "", 10, 0.0, 9.999, 10, 0.0, 1.199);
1891 SetStyle(rangeQtot->GetXaxis(), "Q_{tot} (a.u.)", 0.07, 0.8, kTRUE, 0.05);
1892 SetStyle(rangeQtot->GetYaxis(), "entries (a.u.)", 0.07, 0.8, kTRUE, 0.05);
1893 rangeQtot->SetStats(kFALSE);
1894 rangeQtot->Draw();
1895
1896 TH1D* hQtot[6]={0x0};
1897 TLegend* leg2=new TLegend(0.6, 0.7, 0.9, 0.97);
7698e7a4 1898 leg2->SetFillColor(0);
1899 leg2->SetBorderSize(0);
1900 for(Int_t iCent=0; iCent<6; ++iCent) {
1901 if(iCent>0)
1902 fCfContainer->SetRangeUser(kEventMult, Double_t(iCent), Double_t(iCent), kTRUE);
33d501fa 1903 if(useIsolatedBC) {
1904 for(Int_t ibc=0; ibc<3500; ++ibc) {
1905 if(!isIsolated[ibc]) continue;
1906 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
1907 for(Int_t il=0; il<6; ++il) {
1908 tempTH1D = (TH1D*)fCfContainer->Project(1, kTrackQtot+il);
1909 if(!hQtot[iCent] && il==0) hQtot[iCent] = tempTH1D;
1910 else {hQtot[iCent]->Add(tempTH1D); delete tempTH1D;}
1911 }
1912 }
1913 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0);
7698e7a4 1914 }
33d501fa 1915 else {
1916 for(Int_t il=0; il<6; ++il) {
1917 tempTH1D = (TH1D*)fCfContainer->Project(1, kTrackQtot+il);
1918 if(il==0) hQtot[iCent] = tempTH1D;
1919 else hQtot[iCent]->Add(tempTH1D);
1920 }
1921 } // end if(useIsolatedBC)
7698e7a4 1922
33d501fa 1923 if(!hQtot[iCent]) continue;
7698e7a4 1924 hQtot[iCent]->SetBinContent(1, 0);
1925 Double_t maximum = hQtot[iCent]->GetMaximum();
1926 if(maximum>1.0)
1927 hQtot[iCent]->Scale(1.0/maximum);
1928 hQtot[iCent]->SetLineColor(iCent<4 ? iCent+1 : iCent+2);
7698e7a4 1929 hQtot[iCent]->SetStats(kFALSE);
1930 hQtot[iCent]->SetTitle("");
33d501fa 1931 hQtot[iCent]->SetLineWidth(2);
7698e7a4 1932 if(hQtot[iCent]->Integral()>0.01) {
1933 hQtot[iCent]->Draw(iCent==0 ? "" : "same");
1934 leg2->AddEntry(hQtot[iCent], (iCent==0 ? "all centralities" : Form("centrality class %d", iCent)), "l");
1935 }
1936 }
33d501fa 1937 if(useIsolatedBC) leg2->SetHeader("Isolated bunch crossings");
1938 else leg2->SetHeader("All bunch crossings");
7698e7a4 1939 leg2->Draw();
1940 fCfContainer->SetRangeUser(kEventMult, 0.0, 5.0, kTRUE);
33d501fa 1941 if(cutTOFbc) fCfContainer->SetRangeUser(kTrackTOFBC, -1000.0, +1000.0); // reset the cut on TOFbc
7698e7a4 1942}
1943
1944
2bf6d80c 1945//_________________________________________________________________
33d501fa 1946void AliTRDcheckESD::PlotTrackingSummaryFromCF(Int_t centralityClass, Double_t* trendValues, Bool_t useIsolatedBC, Bool_t cutTOFbc) {
2bf6d80c 1947
33d501fa 1948 if(!fCfContainer) return;
1949
7698e7a4 1950 TLatex *lat=new TLatex();
2bf6d80c 1951 lat->SetTextSize(0.06);
1952 lat->SetTextColor(2);
7698e7a4 1953
1954 gPad->SetTopMargin(0.05); gPad->SetBottomMargin(0.001);
1955 gPad->SetLeftMargin(0.001); gPad->SetRightMargin(0.001);
1956 gPad->Divide(3,3,0.,0.);
1957 TList* l=gPad->GetListOfPrimitives();
1958
1959 // eta-phi distr. for positive TPC tracks
1960 TVirtualPad* pad = ((TVirtualPad*)l->At(0)); pad->cd();
1961 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
1962 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
1963 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 1964
1965 fCfContainer->SetRangeUser(kTrackDCAxy, -0.999, +0.999);
1966 fCfContainer->SetRangeUser(kTrackDCAz, -3.0, +3.0);
1967 if(cutTOFbc) fCfContainer->SetRangeUser(kTrackTOFBC, 0.0, 0.0);
1968
1969 // find all the isolated bunch crossings with entries
1970 Bool_t isIsolated[3500];
1971 TH1D* tempTH1D = (TH1D*)fCfContainer->Project(0, kEventBC);
1972 FindIsolatedBCs(tempTH1D, isIsolated); delete tempTH1D;
1973 Int_t nIsolatedBC = 0;
1974 for(Int_t ibc=0; ibc<3500; ++ibc)
1975 if(isIsolated[ibc]) nIsolatedBC++;
7698e7a4 1976
1977 if(centralityClass>0) // select the multiplicity class
1978 fCfContainer->SetRangeUser(kEventMult, Double_t(centralityClass), Double_t(centralityClass), kTRUE);
33d501fa 1979
1980 TH2D* hTPCrefPos = 0x0; TH2D* hTRDrefPos = 0x0; TH2D* hTOFrefPos = 0x0;
1981 TH2D* hTPCrefNeg = 0x0; TH2D* hTRDrefNeg = 0x0; TH2D* hTOFrefNeg = 0x0;
1982 if(!useIsolatedBC) {
1983 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
1984 fCfContainer->SetRangeUser(kTrackCharge, +1.0, +1.0); // positive charges
1985 hTPCrefPos = (TH2D*)fCfContainer->Project(0, kTrackEta, kTrackPhi);
1986 hTRDrefPos = (TH2D*)fCfContainer->Project(1, kTrackEta, kTrackPhi);
1987 hTOFrefPos = (TH2D*)fCfContainer->Project(2, kTrackEta, kTrackPhi);
1988 fCfContainer->SetRangeUser(kTrackCharge, -1.0, -1.0); // negative charges
1989 hTPCrefNeg = (TH2D*)fCfContainer->Project(0, kTrackEta, kTrackPhi);
1990 hTRDrefNeg = (TH2D*)fCfContainer->Project(1, kTrackEta, kTrackPhi);
1991 hTOFrefNeg = (TH2D*)fCfContainer->Project(2, kTrackEta, kTrackPhi);
1992 fCfContainer->SetRangeUser(kTrackCharge, -1.0, +1.0); // reset charge cut
1993 }
1994
1995 TH2D* hTPCrefPos_IsolatedBC=0x0; TH2D* hTPCrefNeg_IsolatedBC=0x0;
1996 TH2D* hTRDrefPos_IsolatedBC=0x0; TH2D* hTRDrefNeg_IsolatedBC=0x0;
1997 TH2D* hTOFrefPos_IsolatedBC=0x0; TH2D* hTOFrefNeg_IsolatedBC=0x0;
1998 if(useIsolatedBC) {
1999 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
2000 for(Int_t ibc=0; ibc<3500; ++ibc) {
2001 if(!isIsolated[ibc]) continue;
2002 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2003 fCfContainer->SetRangeUser(kTrackCharge, +1.0, +1.0); // positive charges
2004 TH2D* tempTH2D;
2005 tempTH2D = (TH2D*)fCfContainer->Project(0, kTrackEta, kTrackPhi);
2006 if(!hTPCrefPos_IsolatedBC) hTPCrefPos_IsolatedBC = tempTH2D;
2007 else {hTPCrefPos_IsolatedBC->Add(tempTH2D); delete tempTH2D;}
2008 tempTH2D = (TH2D*)fCfContainer->Project(1, kTrackEta, kTrackPhi);
2009 if(!hTRDrefPos_IsolatedBC) hTRDrefPos_IsolatedBC = tempTH2D;
2010 else {hTRDrefPos_IsolatedBC->Add(tempTH2D); delete tempTH2D;}
2011 tempTH2D = (TH2D*)fCfContainer->Project(2, kTrackEta, kTrackPhi);
2012 if(!hTOFrefPos_IsolatedBC) hTOFrefPos_IsolatedBC = tempTH2D;
2013 else {hTOFrefPos_IsolatedBC->Add(tempTH2D); delete tempTH2D;}
2014 fCfContainer->SetRangeUser(kTrackCharge, -1.0, -1.0); // negative charges
2015 tempTH2D = (TH2D*)fCfContainer->Project(0, kTrackEta, kTrackPhi);
2016 if(!hTPCrefNeg_IsolatedBC) hTPCrefNeg_IsolatedBC = tempTH2D;
2017 else {hTPCrefNeg_IsolatedBC->Add(tempTH2D); delete tempTH2D;}
2018 tempTH2D = (TH2D*)fCfContainer->Project(1, kTrackEta, kTrackPhi);
2019 if(!hTRDrefNeg_IsolatedBC) hTRDrefNeg_IsolatedBC = tempTH2D;
2020 else {hTRDrefNeg_IsolatedBC->Add(tempTH2D); delete tempTH2D;}
2021 tempTH2D = (TH2D*)fCfContainer->Project(2, kTrackEta, kTrackPhi);
2022 if(!hTOFrefNeg_IsolatedBC) hTOFrefNeg_IsolatedBC = tempTH2D;
2023 else {hTOFrefNeg_IsolatedBC->Add(tempTH2D); delete tempTH2D;}
2024 }
2025 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.); // reset the BC range
2026 fCfContainer->SetRangeUser(kTrackCharge, -1.0, +1.0); // reset charge cut
2027 }
2028
2029 if(gROOT->FindObject("rangeEtaPhi")) delete gROOT->FindObject("rangeEtaPhi");
2030 TH2F* rangeEtaPhi = new TH2F("rangeEtaPhi", "", 10, -0.99, +0.99, 10, -3.4, +3.4);
2031 SetStyle(rangeEtaPhi->GetXaxis(), "#eta", 0.07, 0.8, kTRUE, 0.05);
2032 SetStyle(rangeEtaPhi->GetYaxis(), "detector #varphi", 0.07, 0.8, kTRUE, 0.05);
2033 rangeEtaPhi->SetStats(kFALSE);
7698e7a4 2034
2035 //----------------------------------------------
2036 // eta-phi efficiency for positive TRD tracks
2037 pad = ((TVirtualPad*)l->At(0)); pad->cd();
2038 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2039 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2040 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2041 rangeEtaPhi->Draw();
2042
2043 if(useIsolatedBC) {
2044 if(nIsolatedBC>0) {
2045 TH2D* hTRDeffPos_IsolatedBC = (TH2D*)hTRDrefPos_IsolatedBC->Clone("hTRDeffPos_IsolatedBC");
2046 hTRDeffPos_IsolatedBC->Reset();
2047 hTRDeffPos_IsolatedBC->SetStats(kFALSE);
2048 hTRDeffPos_IsolatedBC->Divide(hTRDrefPos_IsolatedBC, hTPCrefPos_IsolatedBC);
2049 hTRDeffPos_IsolatedBC->SetMaximum(1.0);
2050 hTRDeffPos_IsolatedBC->Draw("samecolz");
2051 }
2052 }
2053 else {
2054 TH2D* hTRDeffPos = (TH2D*)hTRDrefPos->Clone("hTRDeffPos");
2055 hTRDeffPos->Reset();
2056 hTRDeffPos->SetStats(kFALSE);
2057 hTRDeffPos->Divide(hTRDrefPos, hTPCrefPos);
2058 hTRDeffPos->SetMaximum(1.0);
2059 hTRDeffPos->Draw("samecolz");
2060 }
7698e7a4 2061 lat->DrawLatex(-0.9, 3.6, "TPC-TRD matching for positive tracks");
2062 DrawTRDGrid();
2063
2064 //----------------------------------------------
2065 // eta-phi efficiency for negative TRD tracks
2066 pad = ((TVirtualPad*)l->At(3)); pad->cd();
2067 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2068 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2069 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2070 rangeEtaPhi->Draw();
2071
2072 if(useIsolatedBC) {
2073 if(nIsolatedBC>0) {
2074 TH2D* hTRDeffNeg_IsolatedBC = (TH2D*)hTRDrefNeg_IsolatedBC->Clone("hTRDeffNeg_IsolatedBC");
2075 hTRDeffNeg_IsolatedBC->Reset();
2076 hTRDeffNeg_IsolatedBC->SetStats(kFALSE);
2077 hTRDeffNeg_IsolatedBC->Divide(hTRDrefNeg_IsolatedBC, hTPCrefNeg_IsolatedBC);
2078 hTRDeffNeg_IsolatedBC->SetMaximum(1.0);
2079 hTRDeffNeg_IsolatedBC->Draw("samecolz");
2080 }
2081 }
2082 else {
2083 TH2D* hTRDeffNeg = (TH2D*)hTRDrefNeg->Clone("hTRDeffNeg");
2084 hTRDeffNeg->Reset();
2085 hTRDeffNeg->SetStats(kFALSE);
2086 hTRDeffNeg->Divide(hTRDrefNeg, hTPCrefNeg);
2087 hTRDeffNeg->SetMaximum(1.0);
2088 hTRDeffNeg->Draw("samecolz");
2089 }
7698e7a4 2090 lat->DrawLatex(-0.9, 3.6, "TPC-TRD matching for negative tracks");
33d501fa 2091 DrawTRDGrid();
7698e7a4 2092
2093 //----------------------------------------------
2094 // eta-phi TRD-TOF matching efficiency for positive tracks
2095 pad = ((TVirtualPad*)l->At(1)); pad->cd();
2096 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2097 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2098 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2099 rangeEtaPhi->Draw();
2100
2101 if(useIsolatedBC) {
2102 if(nIsolatedBC>0) {
2103 TH2D* hTOFeffPos_IsolatedBC = (TH2D*)hTOFrefPos_IsolatedBC->Clone("hTOFeffPos_IsolatedBC");
2104 hTOFeffPos_IsolatedBC->Reset();
2105 hTOFeffPos_IsolatedBC->SetStats(kFALSE);
2106 hTOFeffPos_IsolatedBC->Divide(hTOFrefPos_IsolatedBC, hTRDrefPos_IsolatedBC);
2107 hTOFeffPos_IsolatedBC->SetMaximum(1.0);
2108 hTOFeffPos_IsolatedBC->Draw("samecolz");
2109 }
2110 }
2111 else {
2112 TH2D* hTOFeffPos = (TH2D*)hTOFrefPos->Clone("hTOFeffPos");
2113 hTOFeffPos->Reset();
2114 hTOFeffPos->SetStats(kFALSE);
2115 hTOFeffPos->Divide(hTOFrefPos, hTRDrefPos);
2116 hTOFeffPos->SetMaximum(1.0);
2117 hTOFeffPos->Draw("samecolz");
2118 }
7698e7a4 2119 lat->DrawLatex(-0.9, 3.6, "TRD-TOF matching for positive tracks");
2120 DrawTRDGrid();
2121
2122 //----------------------------------------------
2123 // eta-phi TRD-TOF matching efficiency for negative tracks
2124 pad = ((TVirtualPad*)l->At(4)); pad->cd();
2125 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2126 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2127 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2128 rangeEtaPhi->Draw();
2129
2130 if(useIsolatedBC) {
2131 if(nIsolatedBC) {
2132 TH2D* hTOFeffNeg_IsolatedBC = (TH2D*)hTOFrefNeg_IsolatedBC->Clone("hTOFeffNeg_IsolatedBC");
2133 hTOFeffNeg_IsolatedBC->Reset();
2134 hTOFeffNeg_IsolatedBC->SetStats(kFALSE);
2135 hTOFeffNeg_IsolatedBC->Divide(hTOFrefNeg_IsolatedBC, hTRDrefNeg_IsolatedBC);
2136 hTOFeffNeg_IsolatedBC->SetMaximum(1.0);
2137 hTOFeffNeg_IsolatedBC->Draw("samecolz");
2138 }
2139 }
2140 else {
2141 TH2D* hTOFeffNeg = (TH2D*)hTOFrefNeg->Clone("hTOFeffNeg");
2142 hTOFeffNeg->Reset();
2143 hTOFeffNeg->SetStats(kFALSE);
2144 hTOFeffNeg->Divide(hTOFrefNeg, hTRDrefNeg);
2145 hTOFeffNeg->SetMaximum(1.0);
2146 hTOFeffNeg->Draw("samecolz");
2147 }
7698e7a4 2148 lat->DrawLatex(-0.9, 3.6, "TRD-TOF matching for negative tracks");
2149 DrawTRDGrid();
2150
33d501fa 2151 if(hTRDrefPos) delete hTRDrefPos; if(hTPCrefPos) delete hTPCrefPos; if(hTOFrefPos) delete hTOFrefPos;
2152 if(hTRDrefNeg) delete hTRDrefNeg; if(hTPCrefNeg) delete hTPCrefNeg; if(hTOFrefNeg) delete hTOFrefNeg;
2153 if(hTRDrefPos_IsolatedBC) delete hTRDrefPos_IsolatedBC; if(hTPCrefPos_IsolatedBC) delete hTPCrefPos_IsolatedBC; if(hTOFrefPos_IsolatedBC) delete hTOFrefPos_IsolatedBC;
2154 if(hTRDrefNeg_IsolatedBC) delete hTRDrefNeg_IsolatedBC; if(hTPCrefNeg_IsolatedBC) delete hTPCrefNeg_IsolatedBC; if(hTOFrefNeg_IsolatedBC) delete hTOFrefNeg_IsolatedBC;
2155
2156 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
7698e7a4 2157 fCfContainer->SetRangeUser(kTrackCharge, +1.0, +1.0); // positive charges
2158 TH3D* h3TPCrefPos = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
2159 TH3D* h3TRDrefPosAll = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2160 TH3D* h3TOFrefPosAll = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2161 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0);
2162 TH3D* h3TRDrefPosTrk4 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2163 TH3D* h3TOFrefPosTrk4 = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2164 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0);
2165 TH3D* h3TRDrefPosTrk5 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2166 TH3D* h3TOFrefPosTrk5 = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2167 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0);
2168 TH3D* h3TRDrefPosTrk6 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2169 TH3D* h3TOFrefPosTrk6 = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2170
2171 fCfContainer->SetRangeUser(kTrackCharge, -1.0, -1.0); // negative charges
2172 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
2173 TH3D* h3TPCrefNeg = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
2174 TH3D* h3TRDrefNegAll = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2175 TH3D* h3TOFrefNegAll = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2176 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0);
2177 TH3D* h3TRDrefNegTrk4 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2178 TH3D* h3TOFrefNegTrk4 = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2179 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0);
2180 TH3D* h3TRDrefNegTrk5 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2181 TH3D* h3TOFrefNegTrk5 = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2182 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0);
2183 TH3D* h3TRDrefNegTrk6 = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2184 TH3D* h3TOFrefNegTrk6 = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
7698e7a4 2185 fCfContainer->SetRangeUser(kTrackCharge, -1.0, +1.0);
2186 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
2187
2188 TH1F* hTRDEffPtPosAll = EfficiencyTRD(h3TPCrefPos, h3TRDrefPosAll, kTRUE);
2189 TH1F* hTRDEffPtNegAll = EfficiencyTRD(h3TPCrefNeg, h3TRDrefNegAll, kTRUE);
2190 TH1F* hTRDEffPtPosTrk4 = EfficiencyTRD(h3TPCrefPos, h3TRDrefPosTrk4, kTRUE);
2191 TH1F* hTRDEffPtNegTrk4 = EfficiencyTRD(h3TPCrefNeg, h3TRDrefNegTrk4, kTRUE);
2192 TH1F* hTRDEffPtPosTrk5 = EfficiencyTRD(h3TPCrefPos, h3TRDrefPosTrk5, kTRUE);
2193 TH1F* hTRDEffPtNegTrk5 = EfficiencyTRD(h3TPCrefNeg, h3TRDrefNegTrk5, kTRUE);
2194 TH1F* hTRDEffPtPosTrk6 = EfficiencyTRD(h3TPCrefPos, h3TRDrefPosTrk6, kTRUE);
2195 TH1F* hTRDEffPtNegTrk6 = EfficiencyTRD(h3TPCrefNeg, h3TRDrefNegTrk6, kTRUE);
2196
2197 TH1F* hTOFEffPtPosAll = EfficiencyTRD(h3TRDrefPosAll, h3TOFrefPosAll, kFALSE);
2198 TH1F* hTOFEffPtNegAll = EfficiencyTRD(h3TRDrefNegAll, h3TOFrefNegAll, kFALSE);
2199 TH1F* hTOFEffPtPosTrk4 = EfficiencyTRD(h3TRDrefPosTrk4, h3TOFrefPosTrk4, kFALSE);
2200 TH1F* hTOFEffPtNegTrk4 = EfficiencyTRD(h3TRDrefNegTrk4, h3TOFrefNegTrk4, kFALSE);
2201 TH1F* hTOFEffPtPosTrk5 = EfficiencyTRD(h3TRDrefPosTrk5, h3TOFrefPosTrk5, kFALSE);
2202 TH1F* hTOFEffPtNegTrk5 = EfficiencyTRD(h3TRDrefNegTrk5, h3TOFrefNegTrk5, kFALSE);
2203 TH1F* hTOFEffPtPosTrk6 = EfficiencyTRD(h3TRDrefPosTrk6, h3TOFrefPosTrk6, kFALSE);
2204 TH1F* hTOFEffPtNegTrk6 = EfficiencyTRD(h3TRDrefNegTrk6, h3TOFrefNegTrk6, kFALSE);
2205
33d501fa 2206 delete h3TPCrefPos; delete h3TPCrefNeg;
2207 delete h3TRDrefPosAll; delete h3TRDrefPosTrk4; delete h3TRDrefPosTrk5; delete h3TRDrefPosTrk6;
2208 delete h3TRDrefNegAll; delete h3TRDrefNegTrk4; delete h3TRDrefNegTrk5; delete h3TRDrefNegTrk6;
2209 delete h3TOFrefPosAll; delete h3TOFrefPosTrk4; delete h3TOFrefPosTrk5; delete h3TOFrefPosTrk6;
2210 delete h3TOFrefNegAll; delete h3TOFrefNegTrk4; delete h3TOFrefNegTrk5; delete h3TOFrefNegTrk6;
2211
2212 TF1* funcConst = new TF1("constFunc", "[0]", 1.0, 3.0);
2213 if(trendValues && hTRDEffPtPosAll && hTRDEffPtPosAll->Integral()>0.1) {
2214 hTRDEffPtPosAll->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2215 trendValues[0] = funcConst->GetParameter(0);
2216 trendValues[1] = funcConst->GetParError(0);
2217 }
2218 if(trendValues && hTRDEffPtNegAll && hTRDEffPtNegAll->Integral()>0.1) {
2219 hTRDEffPtNegAll->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2220 trendValues[2] = funcConst->GetParameter(0);
2221 trendValues[3] = funcConst->GetParError(0);
2222 }
2223 if(trendValues && hTOFEffPtPosAll && hTOFEffPtPosAll->Integral()>0.1) {
2224 hTOFEffPtPosAll->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2225 trendValues[4] = funcConst->GetParameter(0);
2226 trendValues[5] = funcConst->GetParError(0);
2227 }
2228 if(trendValues && hTOFEffPtNegAll && hTOFEffPtNegAll->Integral()>0.1) {
2229 hTOFEffPtNegAll->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2230 trendValues[6] = funcConst->GetParameter(0);
2231 trendValues[7] = funcConst->GetParError(0);
2232 }
2233
2234 // get matching efficiencies for isolated bunches
2235 TH3D* h3TPCrefPos_IsolatedBC=0x0; TH3D* h3TPCrefNeg_IsolatedBC=0x0;
2236 TH3D* h3TRDrefPosAll_IsolatedBC=0x0; TH3D* h3TRDrefPosTrk4_IsolatedBC=0x0; TH3D* h3TRDrefPosTrk5_IsolatedBC=0x0; TH3D* h3TRDrefPosTrk6_IsolatedBC=0x0;
2237 TH3D* h3TRDrefNegAll_IsolatedBC=0x0; TH3D* h3TRDrefNegTrk4_IsolatedBC=0x0; TH3D* h3TRDrefNegTrk5_IsolatedBC=0x0; TH3D* h3TRDrefNegTrk6_IsolatedBC=0x0;
2238 TH3D* h3TOFrefPosAll_IsolatedBC=0x0; TH3D* h3TOFrefPosTrk4_IsolatedBC=0x0; TH3D* h3TOFrefPosTrk5_IsolatedBC=0x0; TH3D* h3TOFrefPosTrk6_IsolatedBC=0x0;
2239 TH3D* h3TOFrefNegAll_IsolatedBC=0x0; TH3D* h3TOFrefNegTrk4_IsolatedBC=0x0; TH3D* h3TOFrefNegTrk5_IsolatedBC=0x0; TH3D* h3TOFrefNegTrk6_IsolatedBC=0x0;
2240 for(Int_t ibc=0; ibc<3500; ++ibc) {
2241 if(!isIsolated[ibc]) continue;
2242 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2243
2244 TH3D* temp;
2245 fCfContainer->SetRangeUser(kTrackCharge, +1.0, +1.0); // positive charges
2246 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
2247 temp = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
2248 if(!h3TPCrefPos_IsolatedBC) h3TPCrefPos_IsolatedBC = temp;
2249 else {h3TPCrefPos_IsolatedBC->Add(temp); delete temp;}
2250 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2251 if(!h3TRDrefPosAll_IsolatedBC) h3TRDrefPosAll_IsolatedBC = temp;
2252 else {h3TRDrefPosAll_IsolatedBC->Add(temp); delete temp;}
2253 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2254 if(!h3TOFrefPosAll_IsolatedBC) h3TOFrefPosAll_IsolatedBC = temp;
2255 else {h3TOFrefPosAll_IsolatedBC->Add(temp); delete temp;}
2256 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0);
2257 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2258 if(!h3TRDrefPosTrk4_IsolatedBC) h3TRDrefPosTrk4_IsolatedBC = temp;
2259 else {h3TRDrefPosTrk4_IsolatedBC->Add(temp); delete temp;}
2260 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2261 if(!h3TOFrefPosTrk4_IsolatedBC) h3TOFrefPosTrk4_IsolatedBC = temp;
2262 else {h3TOFrefPosTrk4_IsolatedBC->Add(temp); delete temp;}
2263 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0);
2264 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2265 if(!h3TRDrefPosTrk5_IsolatedBC) h3TRDrefPosTrk5_IsolatedBC = temp;
2266 else {h3TRDrefPosTrk5_IsolatedBC->Add(temp); delete temp;}
2267 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2268 if(!h3TOFrefPosTrk5_IsolatedBC) h3TOFrefPosTrk5_IsolatedBC = temp;
2269 else {h3TOFrefPosTrk5_IsolatedBC->Add(temp); delete temp;}
2270 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0);
2271 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2272 if(!h3TRDrefPosTrk6_IsolatedBC) h3TRDrefPosTrk6_IsolatedBC = temp;
2273 else {h3TRDrefPosTrk6_IsolatedBC->Add(temp); delete temp;}
2274 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2275 if(!h3TOFrefPosTrk6_IsolatedBC) h3TOFrefPosTrk6_IsolatedBC = temp;
2276 else {h3TOFrefPosTrk6_IsolatedBC->Add(temp); delete temp;}
2277
2278 fCfContainer->SetRangeUser(kTrackCharge, -1.0, -1.0); // negative charges
2279 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
2280 temp = (TH3D*)fCfContainer->Project(0, kTrackEta, kTrackPhi, kTrackPt);
2281 if(!h3TPCrefNeg_IsolatedBC) h3TPCrefNeg_IsolatedBC = temp;
2282 else {h3TPCrefNeg_IsolatedBC->Add(temp); delete temp;}
2283 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2284 if(!h3TRDrefNegAll_IsolatedBC) h3TRDrefNegAll_IsolatedBC = temp;
2285 else {h3TRDrefNegAll_IsolatedBC->Add(temp); delete temp;}
2286 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2287 if(!h3TOFrefNegAll_IsolatedBC) h3TOFrefNegAll_IsolatedBC = temp;
2288 else {h3TOFrefNegAll_IsolatedBC->Add(temp); delete temp;}
2289 fCfContainer->SetRangeUser(kTrackTrdTracklets, 4.0, 4.0);
2290 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2291 if(!h3TRDrefNegTrk4_IsolatedBC) h3TRDrefNegTrk4_IsolatedBC = temp;
2292 else {h3TRDrefNegTrk4_IsolatedBC->Add(temp); delete temp;}
2293 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2294 if(!h3TOFrefNegTrk4_IsolatedBC) h3TOFrefNegTrk4_IsolatedBC = temp;
2295 else {h3TOFrefNegTrk4_IsolatedBC->Add(temp); delete temp;}
2296 fCfContainer->SetRangeUser(kTrackTrdTracklets, 5.0, 5.0);
2297 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2298 if(!h3TRDrefNegTrk5_IsolatedBC) h3TRDrefNegTrk5_IsolatedBC = temp;
2299 else {h3TRDrefNegTrk5_IsolatedBC->Add(temp); delete temp;}
2300 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2301 if(!h3TOFrefNegTrk5_IsolatedBC) h3TOFrefNegTrk5_IsolatedBC = temp;
2302 else {h3TOFrefNegTrk5_IsolatedBC->Add(temp); delete temp;}
2303 fCfContainer->SetRangeUser(kTrackTrdTracklets, 6.0, 6.0);
2304 temp = (TH3D*)fCfContainer->Project(1, kTrackEta, kTrackPhi, kTrackPt);
2305 if(!h3TRDrefNegTrk6_IsolatedBC) h3TRDrefNegTrk6_IsolatedBC = temp;
2306 else {h3TRDrefNegTrk6_IsolatedBC->Add(temp); delete temp;}
2307 temp = (TH3D*)fCfContainer->Project(2, kTrackEta, kTrackPhi, kTrackPt);
2308 if(!h3TOFrefNegTrk6_IsolatedBC) h3TOFrefNegTrk6_IsolatedBC = temp;
2309 else {h3TOFrefNegTrk6_IsolatedBC->Add(temp); delete temp;}
2310 }
2311 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0);
2312 fCfContainer->SetRangeUser(kTrackCharge, -1.0, +1.0);
2313 fCfContainer->SetRangeUser(kTrackTrdTracklets, 0.0, 6.0);
2314
2315 TH1F* hTRDEffPtPosAll_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosAll_IsolatedBC, kTRUE);
2316 TH1F* hTRDEffPtNegAll_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegAll_IsolatedBC, kTRUE);
2317 TH1F* hTRDEffPtPosTrk4_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosTrk4_IsolatedBC, kTRUE);
2318 TH1F* hTRDEffPtNegTrk4_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegTrk4_IsolatedBC, kTRUE);
2319 TH1F* hTRDEffPtPosTrk5_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosTrk5_IsolatedBC, kTRUE);
2320 TH1F* hTRDEffPtNegTrk5_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegTrk5_IsolatedBC, kTRUE);
2321 TH1F* hTRDEffPtPosTrk6_IsolatedBC = EfficiencyTRD(h3TPCrefPos_IsolatedBC, h3TRDrefPosTrk6_IsolatedBC, kTRUE);
2322 TH1F* hTRDEffPtNegTrk6_IsolatedBC = EfficiencyTRD(h3TPCrefNeg_IsolatedBC, h3TRDrefNegTrk6_IsolatedBC, kTRUE);
2323
2324 TH1F* hTOFEffPtPosAll_IsolatedBC = EfficiencyTRD(h3TRDrefPosAll_IsolatedBC, h3TOFrefPosAll_IsolatedBC, kFALSE);
2325 TH1F* hTOFEffPtNegAll_IsolatedBC = EfficiencyTRD(h3TRDrefNegAll_IsolatedBC, h3TOFrefNegAll_IsolatedBC, kFALSE);
2326 TH1F* hTOFEffPtPosTrk4_IsolatedBC = EfficiencyTRD(h3TRDrefPosTrk4_IsolatedBC, h3TOFrefPosTrk4_IsolatedBC, kFALSE);
2327 TH1F* hTOFEffPtNegTrk4_IsolatedBC = EfficiencyTRD(h3TRDrefNegTrk4_IsolatedBC, h3TOFrefNegTrk4_IsolatedBC, kFALSE);
2328 TH1F* hTOFEffPtPosTrk5_IsolatedBC = EfficiencyTRD(h3TRDrefPosTrk5_IsolatedBC, h3TOFrefPosTrk5_IsolatedBC, kFALSE);
2329 TH1F* hTOFEffPtNegTrk5_IsolatedBC = EfficiencyTRD(h3TRDrefNegTrk5_IsolatedBC, h3TOFrefNegTrk5_IsolatedBC, kFALSE);
2330 TH1F* hTOFEffPtPosTrk6_IsolatedBC = EfficiencyTRD(h3TRDrefPosTrk6_IsolatedBC, h3TOFrefPosTrk6_IsolatedBC, kFALSE);
2331 TH1F* hTOFEffPtNegTrk6_IsolatedBC = EfficiencyTRD(h3TRDrefNegTrk6_IsolatedBC, h3TOFrefNegTrk6_IsolatedBC, kFALSE);
2332
2333 if(h3TPCrefPos_IsolatedBC) delete h3TPCrefPos_IsolatedBC; if(h3TPCrefNeg_IsolatedBC) delete h3TPCrefNeg_IsolatedBC;
2334 if(h3TRDrefPosAll_IsolatedBC) delete h3TRDrefPosAll_IsolatedBC; if(h3TRDrefPosTrk4_IsolatedBC) delete h3TRDrefPosTrk4_IsolatedBC;
2335 if(h3TRDrefPosTrk5_IsolatedBC) delete h3TRDrefPosTrk5_IsolatedBC; if(h3TRDrefPosTrk6_IsolatedBC) delete h3TRDrefPosTrk6_IsolatedBC;
2336 if(h3TRDrefNegAll_IsolatedBC) delete h3TRDrefNegAll_IsolatedBC; if(h3TRDrefNegTrk4_IsolatedBC) delete h3TRDrefNegTrk4_IsolatedBC;
2337 if(h3TRDrefNegTrk5_IsolatedBC) delete h3TRDrefNegTrk5_IsolatedBC; if(h3TRDrefNegTrk6_IsolatedBC) delete h3TRDrefNegTrk6_IsolatedBC;
2338 if(h3TOFrefPosAll_IsolatedBC) delete h3TOFrefPosAll_IsolatedBC; if(h3TOFrefPosTrk4_IsolatedBC) delete h3TOFrefPosTrk4_IsolatedBC;
2339 if(h3TOFrefPosTrk5_IsolatedBC) delete h3TOFrefPosTrk5_IsolatedBC; if(h3TOFrefPosTrk6_IsolatedBC) delete h3TOFrefPosTrk6_IsolatedBC;
2340 if(h3TOFrefNegAll_IsolatedBC) delete h3TOFrefNegAll_IsolatedBC; if(h3TOFrefNegTrk4_IsolatedBC) delete h3TOFrefNegTrk4_IsolatedBC;
2341 if(h3TOFrefNegTrk5_IsolatedBC) delete h3TOFrefNegTrk5_IsolatedBC; if(h3TOFrefNegTrk6_IsolatedBC) delete h3TOFrefNegTrk6_IsolatedBC;
2342
2343 if(trendValues && hTRDEffPtPosAll_IsolatedBC && hTRDEffPtPosAll_IsolatedBC->Integral()>0.1) {
2344 hTRDEffPtPosAll_IsolatedBC->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2345 trendValues[18] = funcConst->GetParameter(0);
2346 trendValues[19] = funcConst->GetParError(0);
2347 }
2348 if(trendValues && hTRDEffPtNegAll_IsolatedBC && hTRDEffPtNegAll_IsolatedBC->Integral()>0.1) {
2349 hTRDEffPtNegAll_IsolatedBC->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2350 trendValues[20] = funcConst->GetParameter(0);
2351 trendValues[21] = funcConst->GetParError(0);
2352 }
2353 if(trendValues && hTOFEffPtPosAll_IsolatedBC && hTOFEffPtPosAll_IsolatedBC->Integral()>0.1) {
2354 hTOFEffPtPosAll_IsolatedBC->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2355 trendValues[22] = funcConst->GetParameter(0);
2356 trendValues[23] = funcConst->GetParError(0);
2357 }
2358 if(trendValues && hTOFEffPtNegAll_IsolatedBC && hTOFEffPtNegAll_IsolatedBC->Integral()>0.1) {
2359 hTOFEffPtNegAll_IsolatedBC->Fit(funcConst, "Q0ME", "goff", 1.0, 3.0);
2360 trendValues[24] = funcConst->GetParameter(0);
2361 trendValues[25] = funcConst->GetParError(0);
2362 }
7698e7a4 2363
2364 //---------------------------------------------------------
2365 // TPC-TRD matching efficiency vs pt
2366 pad = ((TVirtualPad*)l->At(6)); pad->cd();
2367 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
2368 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2369 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
2370
33d501fa 2371 if(gROOT->FindObject("rangeEffPt2")) delete gROOT->FindObject("rangeEffPt2");
2372 TH2F* rangeEffPt=new TH2F("rangeEffPt2", "",10,0.,10.,10,0.,1.4);
2373 rangeEffPt->SetStats(kFALSE);
2374 SetStyle(rangeEffPt->GetXaxis(), "p_{T} [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
2375 SetStyle(rangeEffPt->GetYaxis(), "efficiency", 0.07, 0.8, kTRUE, 0.05);
2376 rangeEffPt->Draw();
2377 lat->DrawLatex(0.2, 1.42, "TPC-TRD matching efficiency");
7698e7a4 2378 //++++++++++++++++++
2379 TLine line;
2380 line.SetLineStyle(2);
2381 line.SetLineWidth(2);
33d501fa 2382 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 0.7, rangeEffPt->GetXaxis()->GetXmax(), 0.7);
2383 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 0.9, rangeEffPt->GetXaxis()->GetXmax(), 0.9);
7698e7a4 2384 TLegend* leg=new TLegend(0.2, 0.7, 0.7, 0.89);
2385 leg->SetNColumns(2);
2386 leg->SetMargin(0.15);
2387 leg->SetBorderSize(0);
2388 leg->SetFillColor(0);
2389
33d501fa 2390 if(!useIsolatedBC) {
2391 SetStyle(hTRDEffPtPosAll, 1, kRed, 1, 24, kRed, 1);
2392 SetStyle(hTRDEffPtNegAll, 1, kBlue, 1, 24, kBlue, 1);
2393 SetStyle(hTRDEffPtPosTrk4, 1, kRed, 1, 25, kRed, 1);
2394 SetStyle(hTRDEffPtNegTrk4, 1, kBlue, 1, 25, kBlue, 1);
2395 SetStyle(hTRDEffPtPosTrk5, 1, kRed, 1, 26, kRed, 1);
2396 SetStyle(hTRDEffPtNegTrk5, 1, kBlue, 1, 26, kBlue, 1);
2397 SetStyle(hTRDEffPtPosTrk6, 1, kRed, 1, 27, kRed, 1);
2398 SetStyle(hTRDEffPtNegTrk6, 1, kBlue, 1, 27, kBlue, 1);
2399 leg->SetHeader("All bunch crossings");
2400 hTRDEffPtPosAll->Draw("same"); leg->AddEntry(hTRDEffPtPosAll, "pos. (#geq 1 tracklet)", "p");
2401 hTRDEffPtNegAll->Draw("same"); leg->AddEntry(hTRDEffPtNegAll, "neg. (#geq 1 tracklet)", "p");
2402 hTRDEffPtPosTrk4->Draw("same"); leg->AddEntry(hTRDEffPtPosTrk4, "pos. (4 tracklets)", "p");
2403 hTRDEffPtNegTrk4->Draw("same"); leg->AddEntry(hTRDEffPtNegTrk4, "neg. (4 tracklets)", "p");
2404 hTRDEffPtPosTrk5->Draw("same"); leg->AddEntry(hTRDEffPtPosTrk5, "pos. (5 tracklets)", "p");
2405 hTRDEffPtNegTrk5->Draw("same"); leg->AddEntry(hTRDEffPtNegTrk5, "neg. (5 tracklets)", "p");
2406 hTRDEffPtPosTrk6->Draw("same"); leg->AddEntry(hTRDEffPtPosTrk6, "pos. (6 tracklets)", "p");
2407 hTRDEffPtNegTrk6->Draw("same"); leg->AddEntry(hTRDEffPtNegTrk6, "neg. (6 tracklets)", "p");
2408 }
2409 else {
2410 if(nIsolatedBC>0) {
2411 SetStyle(hTRDEffPtPosAll_IsolatedBC, 1, kRed, 1, 24, kRed, 1);
2412 SetStyle(hTRDEffPtNegAll_IsolatedBC, 1, kBlue, 1, 24, kBlue, 1);
2413 SetStyle(hTRDEffPtPosTrk4_IsolatedBC, 1, kRed, 1, 25, kRed, 1);
2414 SetStyle(hTRDEffPtNegTrk4_IsolatedBC, 1, kBlue, 1, 25, kBlue, 1);
2415 SetStyle(hTRDEffPtPosTrk5_IsolatedBC, 1, kRed, 1, 26, kRed, 1);
2416 SetStyle(hTRDEffPtNegTrk5_IsolatedBC, 1, kBlue, 1, 26, kBlue, 1);
2417 SetStyle(hTRDEffPtPosTrk6_IsolatedBC, 1, kRed, 1, 27, kRed, 1);
2418 SetStyle(hTRDEffPtNegTrk6_IsolatedBC, 1, kBlue, 1, 27, kBlue, 1);
2419 leg->SetHeader("Isolated bunch crossings");
2420 hTRDEffPtPosAll_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtPosAll_IsolatedBC, "pos. (#geq 1 tracklet)", "p");
2421 hTRDEffPtNegAll_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtNegAll_IsolatedBC, "neg. (#geq 1 tracklet)", "p");
2422 hTRDEffPtPosTrk4_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtPosTrk4_IsolatedBC, "pos. (4 tracklets)", "p");
2423 hTRDEffPtNegTrk4_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtNegTrk4_IsolatedBC, "neg. (4 tracklets)", "p");
2424 hTRDEffPtPosTrk5_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtPosTrk5_IsolatedBC, "pos. (5 tracklets)", "p");
2425 hTRDEffPtNegTrk5_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtNegTrk5_IsolatedBC, "neg. (5 tracklets)", "p");
2426 hTRDEffPtPosTrk6_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtPosTrk6_IsolatedBC, "pos. (6 tracklets)", "p");
2427 hTRDEffPtNegTrk6_IsolatedBC->Draw("same"); leg->AddEntry(hTRDEffPtNegTrk6_IsolatedBC, "neg. (6 tracklets)", "p");
2428 }
2429 }
7698e7a4 2430
33d501fa 2431 leg->Draw();
7698e7a4 2432
2433 //---------------------------------------------------------
2434 // TRD-TOF matching efficiency vs pt
2435 pad = ((TVirtualPad*)l->At(7)); pad->cd();
2436 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
2437 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2438 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
2439
33d501fa 2440 rangeEffPt->Draw();
2441 lat->DrawLatex(0.2, 1.42, "TRD-TOF matching efficiency");
2442
2443 if(!useIsolatedBC) {
2444 SetStyle(hTOFEffPtPosAll, 1, kRed, 1, 24, kRed, 1);
2445 SetStyle(hTOFEffPtPosTrk4, 1, kRed, 1, 25, kRed, 1);
2446 SetStyle(hTOFEffPtPosTrk5, 1, kRed, 1, 26, kRed, 1);
2447 SetStyle(hTOFEffPtPosTrk6, 1, kRed, 1, 27, kRed, 1);
2448 SetStyle(hTOFEffPtNegAll, 1, kBlue, 1, 24, kBlue, 1);
2449 SetStyle(hTOFEffPtNegTrk4, 1, kBlue, 1, 25, kBlue, 1);
2450 SetStyle(hTOFEffPtNegTrk5, 1, kBlue, 1, 26, kBlue, 1);
2451 SetStyle(hTOFEffPtNegTrk6, 1, kBlue, 1, 27, kBlue, 1);
2452 hTOFEffPtPosAll->Draw("same");
2453 hTOFEffPtPosTrk4->Draw("same");
2454 hTOFEffPtPosTrk5->Draw("same");
2455 hTOFEffPtPosTrk6->Draw("same");
2456 hTOFEffPtNegAll->Draw("same");
2457 hTOFEffPtNegTrk4->Draw("same");
2458 hTOFEffPtNegTrk5->Draw("same");
2459 hTOFEffPtNegTrk6->Draw("same");
2460 }
2461 else {
2462 if(nIsolatedBC>0) {
2463 SetStyle(hTOFEffPtPosAll_IsolatedBC, 1, kRed, 1, 24, kRed, 1);
2464 SetStyle(hTOFEffPtPosTrk4_IsolatedBC, 1, kRed, 1, 25, kRed, 1);
2465 SetStyle(hTOFEffPtPosTrk5_IsolatedBC, 1, kRed, 1, 26, kRed, 1);
2466 SetStyle(hTOFEffPtPosTrk6_IsolatedBC, 1, kRed, 1, 27, kRed, 1);
2467 SetStyle(hTOFEffPtNegAll_IsolatedBC, 1, kBlue, 1, 24, kBlue, 1);
2468 SetStyle(hTOFEffPtNegTrk4_IsolatedBC, 1, kBlue, 1, 25, kBlue, 1);
2469 SetStyle(hTOFEffPtNegTrk5_IsolatedBC, 1, kBlue, 1, 26, kBlue, 1);
2470 SetStyle(hTOFEffPtNegTrk6_IsolatedBC, 1, kBlue, 1, 27, kBlue, 1);
2471 hTOFEffPtPosAll_IsolatedBC->Draw("same");
2472 hTOFEffPtPosTrk4_IsolatedBC->Draw("same");
2473 hTOFEffPtPosTrk5_IsolatedBC->Draw("same");
2474 hTOFEffPtPosTrk6_IsolatedBC->Draw("same");
2475 hTOFEffPtNegAll_IsolatedBC->Draw("same");
2476 hTOFEffPtNegTrk4_IsolatedBC->Draw("same");
2477 hTOFEffPtNegTrk5_IsolatedBC->Draw("same");
2478 hTOFEffPtNegTrk6_IsolatedBC->Draw("same");
2479 }
2480 }
2481
7698e7a4 2482 //-----------------------------------------------------
2483 // <ntracklets> vs (phi,eta)
2484 pad = ((TVirtualPad*)l->At(2)); pad->cd();
2485 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2486 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2487 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
2488
33d501fa 2489 rangeEtaPhi->Draw();
2490 lat->DrawLatex(-0.9, 3.6, "TRD <N_{tracklets}>");
2491
7698e7a4 2492 TH3D* hNtracklets = (TH3D*)fCfContainer->Project(1, kTrackPhi, kTrackEta, kTrackTrdTracklets);
33d501fa 2493 TH3D* hNtracklets_IsolatedBC=0x0;
2494 for(Int_t ibc=0; ibc<3500; ++ibc) {
2495 if(!isIsolated[ibc]) continue;
2496 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2497 TH3D* temp = (TH3D*)fCfContainer->Project(1, kTrackPhi, kTrackEta, kTrackTrdTracklets);
2498 if(!hNtracklets_IsolatedBC) hNtracklets_IsolatedBC = temp;
2499 else {hNtracklets_IsolatedBC->Add(temp); delete temp;}
2500 }
2501 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0); // reset the BC range
2502
2503 TProfile2D* hNtrackletsProf=0x0;
2504 if(useIsolatedBC) {
2505 if(nIsolatedBC>0)
2506 hNtrackletsProf = hNtracklets_IsolatedBC->Project3DProfile();
2507 }
2508 else hNtrackletsProf = hNtracklets->Project3DProfile();
2509 delete hNtracklets; if(hNtracklets_IsolatedBC) delete hNtracklets_IsolatedBC;
7698e7a4 2510 if(hNtrackletsProf) {
2511 hNtrackletsProf->SetStats(kFALSE);
7698e7a4 2512 hNtrackletsProf->SetMinimum(0.);
2513 hNtrackletsProf->SetMaximum(6.);
33d501fa 2514 hNtrackletsProf->Draw("samecolz");
7698e7a4 2515 DrawTRDGrid();
2516 }
2517
33d501fa 2518 // calculate the trend value for tracklets/track
2519 TH2D* hNtrackletsVsP = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackTrdTracklets);
2520 if(trendValues && hNtrackletsVsP && hNtrackletsVsP->GetEntries()>0.1) {
2521 TProfile* hNtrackletsVsPprof = hNtrackletsVsP->ProfileX("hNtrackletsVsPprof");
2522 hNtrackletsVsPprof->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
2523 trendValues[8] = funcConst->GetParameter(0);
2524 trendValues[9] = funcConst->GetParError(0);
2525 delete hNtrackletsVsP;
2526 }
2527 TH2D* hNtrackletsVsP_IsolatedBC=0x0;
2528 for(Int_t ibc=0; ibc<3500; ++ibc) {
2529 if(!isIsolated[ibc]) continue;
2530 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2531 TH2D* temp = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackTrdTracklets);
2532 if(!hNtrackletsVsP_IsolatedBC) hNtrackletsVsP_IsolatedBC = temp;
2533 else {hNtrackletsVsP_IsolatedBC->Add(temp); delete temp;}
2534 }
2535 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0); // reset the BC range
2536 if(trendValues && hNtrackletsVsP_IsolatedBC && hNtrackletsVsP_IsolatedBC->GetEntries()>0.1) {
2537 TProfile* hNtrackletsVsPprof_IsolatedBC = hNtrackletsVsP_IsolatedBC->ProfileX("hNtrackletsVsPprof_IsolatedBC");
2538 hNtrackletsVsPprof_IsolatedBC->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
2539 trendValues[26] = funcConst->GetParameter(0);
2540 trendValues[27] = funcConst->GetParError(0);
2541 delete hNtrackletsVsPprof_IsolatedBC;
2542 }
2543
7698e7a4 2544 //--------------------------------------------------------------
2545 // Nclusters per TRD track vs momentum
2546 pad = ((TVirtualPad*)l->At(5)); pad->cd();
2547 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.12);
2548 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2549 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
2550 pad->SetLogz();
2551
33d501fa 2552 if(gROOT->FindObject("rangeNclsP")) delete gROOT->FindObject("rangeNclsP");
2553 TH2F* rangeNclsP = new TH2F("rangeNclsP", "", 10, 0.0, 11.99, 10, 0.0, 199.0);
2554 SetStyle(rangeNclsP->GetXaxis(), "p [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
2555 SetStyle(rangeNclsP->GetYaxis(), "#clusters", 0.07, 0.8, kTRUE, 0.05);
2556 rangeNclsP->SetStats(kFALSE);
2557 rangeNclsP->Draw();
2558 lat->DrawLatex(1.0, 205., "TRD Clusters / track");
2559
7698e7a4 2560 TH2D* hNclsVsP = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackTrdClusters);
33d501fa 2561 TH2D* hNclsVsP_IsolatedBC=0x0;
2562 for(Int_t ibc=0; ibc<3500; ++ibc) {
2563 if(!isIsolated[ibc]) continue;
2564 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2565 TH2D* temp = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackTrdClusters);
2566 if(!hNclsVsP_IsolatedBC) hNclsVsP_IsolatedBC = temp;
2567 else {hNclsVsP_IsolatedBC->Add(temp); delete temp;}
2568 }
2569 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0); // reset the BC range
7698e7a4 2570
33d501fa 2571 if(useIsolatedBC && hNclsVsP_IsolatedBC) {
2572 hNclsVsP_IsolatedBC->SetStats(kFALSE);
2573 hNclsVsP_IsolatedBC->Draw("samecolz");
2574 }
2575 if(!useIsolatedBC && hNclsVsP) {
7698e7a4 2576 hNclsVsP->SetStats(kFALSE);
33d501fa 2577 hNclsVsP->Draw("samecolz");
7698e7a4 2578 }
33d501fa 2579
2580 if(trendValues && hNclsVsP && hNclsVsP->GetEntries()>10) {
2581 TProfile* hNclsVsPprof = hNclsVsP->ProfileX("hNclsVsPprof");
2582 hNclsVsPprof->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
2583 trendValues[10] = funcConst->GetParameter(0);
2584 trendValues[11] = funcConst->GetParError(0);
2585 }
2586 if(trendValues && hNclsVsP_IsolatedBC && hNclsVsP_IsolatedBC->GetEntries()>10) {
2587 TProfile* hNclsVsPprof_IsolatedBC = hNclsVsP_IsolatedBC->ProfileX("hNclsVsPprof_IsolateBC");
2588 hNclsVsPprof_IsolatedBC->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
2589 trendValues[28] = funcConst->GetParameter(0);
2590 trendValues[29] = funcConst->GetParError(0);
2591 }
2592
7698e7a4 2593 //--------------------------------------------------------------
2594 // TRD-TPC and TOF-TRD matching efficiency vs bunch crossing
2595 pad = ((TVirtualPad*)l->At(8)); pad->cd();
2596 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
2597 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2598 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
2599
2600 TH1D* phiProj = (TH1D*)fCfContainer->Project(1, kTrackPhi);
2601 Double_t smPhiLimits[19];
2602 Bool_t activeSM[18] = {kFALSE};
2603 for(Int_t ism=0; ism<=18; ++ism) smPhiLimits[ism] = -TMath::Pi() + (2.0*TMath::Pi()/18.0)*ism;
2604 CheckActiveSM(phiProj, activeSM);
2605 for(Int_t ism=0; ism<18; ++ism) cout << "sm " << ism << " is active : " << (activeSM[ism] ? "yes" : "no") << endl;
2606
2607 fCfContainer->SetRangeUser(kTrackPt, 1.01, 2.99); // 1.0 < pt < 3.0 GeV/c
2608 TH2D* hTPCPhiBC = (TH2D*)fCfContainer->Project(0, kEventBC, kTrackPhi);
2609 TH2D* hTRDPhiBC = (TH2D*)fCfContainer->Project(1, kEventBC, kTrackPhi);
2610 TH2D* hTOFPhiBC = (TH2D*)fCfContainer->Project(2, kEventBC, kTrackPhi);
2611 TH1D* projectionBC = (TH1D*)fCfContainer->Project(0, kEventBC);
2612 fCfContainer->SetRangeUser(kTrackPt, 0.0, 100.0); // reset the pt range
2613 TH1D* hTRDEffBC = new TH1D("hTRDEffBC", "", hTPCPhiBC->GetXaxis()->GetNbins(), hTPCPhiBC->GetXaxis()->GetXmin(), hTPCPhiBC->GetXaxis()->GetXmax());
2614 TH1D* hTOFEffBC = new TH1D("hTOFEffBC", "", hTPCPhiBC->GetXaxis()->GetNbins(), hTPCPhiBC->GetXaxis()->GetXmin(), hTPCPhiBC->GetXaxis()->GetXmax());
2615
2616 for(Int_t bcBin=1; bcBin<=hTPCPhiBC->GetXaxis()->GetNbins(); ++bcBin) {
2617 if(projectionBC->GetBinContent(bcBin)<0.1) continue;
2618 Double_t tpcEntries = 0.0; Double_t trdEntries = 0.0; Double_t tofEntries = 0.0;
2619 for(Int_t phiBin=1; phiBin<=hTPCPhiBC->GetYaxis()->GetNbins(); ++phiBin) {
2620 Double_t phi = hTPCPhiBC->GetYaxis()->GetBinCenter(phiBin);
2621 for(Int_t ism=0; ism<18; ++ism) {
2622 if(phi>=smPhiLimits[ism] && phi<smPhiLimits[ism+1] && activeSM[ism]) {
2623 tpcEntries += hTPCPhiBC->GetBinContent(bcBin, phiBin);
2624 trdEntries += hTRDPhiBC->GetBinContent(bcBin, phiBin);
2625 tofEntries += hTOFPhiBC->GetBinContent(bcBin, phiBin);
2626 }
2627 } // end loop over super-modules
2628 } // end loop over phi bins
2629 hTRDEffBC->SetBinContent(bcBin, (tpcEntries>0.01 ? trdEntries/tpcEntries : 0.0));
2630 if(tpcEntries>0.01 && trdEntries>0.01 && (tpcEntries-trdEntries)>=0.01)
2631 hTRDEffBC->SetBinError(bcBin, TMath::Sqrt(trdEntries*(tpcEntries-trdEntries)/tpcEntries/tpcEntries/tpcEntries));
2632 hTOFEffBC->SetBinContent(bcBin, (trdEntries>0.01 ? tofEntries/trdEntries : 0.0));
2633 if(trdEntries>0.01 && tofEntries>0.01 && (trdEntries-tofEntries)>=0.01)
2634 hTOFEffBC->SetBinError(bcBin, TMath::Sqrt(tofEntries*(trdEntries-tofEntries)/trdEntries/trdEntries/trdEntries));
2635 } // end loop over BC bins
33d501fa 2636 delete hTPCPhiBC; delete hTRDPhiBC; delete hTOFPhiBC;
2637 delete projectionBC;
2638
2639 if(gROOT->FindObject("rangeBC")) delete gROOT->FindObject("rangeBC");
2640 TH2F* rangeBC = new TH2F("rangeBC", "", 10, -0.5, 3499.5, 10, 0.0, 1.4);
2641 rangeBC->SetStats(kFALSE);
2642 SetStyle(rangeBC->GetXaxis(), "Bunch crossing", 0.07, 0.8, kTRUE, 0.05);
2643 SetStyle(rangeBC->GetYaxis(), "efficiency", 0.07, 0.8, kTRUE, 0.05);
2644 rangeBC->Draw();
7698e7a4 2645
2646 TLegend* legBC=new TLegend(0.8, 0.7, 0.95, 0.89);
2647 legBC->SetBorderSize(0);
2648 legBC->SetMargin(0.15);
2649 legBC->SetFillColor(0);
2650 if(hTRDEffBC) {
2651 hTRDEffBC->SetStats(kFALSE);
4114abc1 2652 SetStyle(hTRDEffBC, 1, kRed, 2, 24, kRed, 1); legBC->AddEntry(hTRDEffBC, "TPC-TRD", "p");
2653 SetStyle(hTOFEffBC, 1, kBlue, 2, 24, kBlue, 1); legBC->AddEntry(hTOFEffBC, "TRD-TOF", "p");
33d501fa 2654 hTRDEffBC->Draw("same");
7698e7a4 2655 hTOFEffBC->Draw("same");
2656 legBC->Draw();
33d501fa 2657 lat->DrawLatex(200., 1.42, "Matching efficiency at 1<p_{T}<3 GeV/c");
7698e7a4 2658 }
2659
2660 // reset the user range on the event multiplicity
2661 fCfContainer->SetRangeUser(kEventMult, 0.0, 6.0, kTRUE);
33d501fa 2662 if(cutTOFbc) fCfContainer->SetRangeUser(kTrackTOFBC, -1000.0, +1000.0); // reset the cut on TOFbc
2663
2664 delete funcConst;
7698e7a4 2665}
2666
2bf6d80c 2667
7698e7a4 2668//_________________________________________________________________
33d501fa 2669void AliTRDcheckESD::PlotPidSummaryFromCF(Int_t centralityClass, Double_t* trendValues, Bool_t useIsolatedBC, Bool_t cutTOFbc) {
7698e7a4 2670
33d501fa 2671 if(!fCfContainer) return;
2672
7698e7a4 2673 TLatex *lat=new TLatex();
2674 lat->SetTextSize(0.07);
2675 lat->SetTextColor(2);
2bf6d80c 2676 gPad->SetTopMargin(0.05); gPad->SetBottomMargin(0.001);
2677 gPad->SetLeftMargin(0.001); gPad->SetRightMargin(0.001);
2678 gPad->Divide(3,3,0.,0.);
2679 TList* l=gPad->GetListOfPrimitives();
7698e7a4 2680
33d501fa 2681 fCfContainer->SetRangeUser(kTrackDCAxy, -0.999, +0.999);
2682 fCfContainer->SetRangeUser(kTrackDCAz, -3.0, +3.0);
2683 if(cutTOFbc) fCfContainer->SetRangeUser(kTrackTOFBC, 0.0, 0.0);
2684
2685 // find all the isolated bunch crossings with entries
2686 Bool_t isIsolated[3500];
2687 TH1D* tempTH1D = (TH1D*)fCfContainer->Project(0, kEventBC);
2688 FindIsolatedBCs(tempTH1D, isIsolated); delete tempTH1D;
2689 Int_t nIsolatedBC = 0;
2690 for(Int_t ibc=0; ibc<3500; ++ibc)
2691 if(isIsolated[ibc]) nIsolatedBC++;
2692
7698e7a4 2693 if(centralityClass>0) // select the multiplicity class
2694 fCfContainer->SetRangeUser(kEventMult, Double_t(centralityClass), Double_t(centralityClass), kTRUE);
2695
33d501fa 2696 if(gROOT->FindObject("rangeEtaPhi2")) delete gROOT->FindObject("rangeEtaPhi2");
2697 TH2F* rangeEtaPhi = new TH2F("rangeEtaPhi2", "", 10, -0.99, +0.99, 10, -3.4, +3.4);
2698 SetStyle(rangeEtaPhi->GetXaxis(), "#eta", 0.07, 0.8, kTRUE, 0.05);
2699 SetStyle(rangeEtaPhi->GetYaxis(), "detector #varphi", 0.07, 0.8, kTRUE, 0.05);
2700 rangeEtaPhi->SetStats(kFALSE);
2701
7698e7a4 2702 // eta-phi distr. for <Qtot> in layer 0
2703 TVirtualPad* pad;
2704 TProfile2D* hProf2D;
2705 for(Int_t iLayer=0; iLayer<6; ++iLayer) {
2706 pad = ((TVirtualPad*)l->At((iLayer<3 ? iLayer*3 : (iLayer-3)*3+1))); pad->cd();
2707 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2708 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2709 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2710 rangeEtaPhi->Draw();
7698e7a4 2711
33d501fa 2712 TH3D* hQtotEtaPhi=0x0;
2713 if(useIsolatedBC) {
2714 for(Int_t ibc=0; ibc<3500; ++ibc) {
2715 if(!isIsolated[ibc]) continue;
2716 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2717 TH3D* temp = (TH3D*)fCfContainer->Project(1, kTrackPhi, kTrackEta, kTrackQtot+iLayer);
2718 if(!hQtotEtaPhi) hQtotEtaPhi = temp;
2719 else {hQtotEtaPhi->Add(temp); delete temp;}
2720 }
2721 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0);
2722 }
2723 else hQtotEtaPhi = (TH3D*)fCfContainer->Project(1, kTrackPhi, kTrackEta, kTrackQtot+iLayer);
2724 hProf2D = (hQtotEtaPhi ? hQtotEtaPhi->Project3DProfile() : 0x0);
2725 if(hQtotEtaPhi) delete hQtotEtaPhi;
7698e7a4 2726
33d501fa 2727 if(hProf2D) {
2728 hProf2D->SetStats(kFALSE);
2729 hProf2D->SetMinimum(0.);
2730 hProf2D->SetMaximum(4.);
2731 hProf2D->Draw("samecolz");
2732 }
7698e7a4 2733 lat->DrawLatex(-0.9, 3.6, Form("TRD <Q_{tot}> Layer %d", iLayer));
2734 DrawTRDGrid();
2735 }
2736
2737 // PH versus slice number
2738 pad = ((TVirtualPad*)l->At(2)); pad->cd();
2739 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2740 pad->SetTopMargin(0.03); pad->SetBottomMargin(0.15);
2741 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2742
2743 if(gROOT->FindObject("rangePHslice")) delete gROOT->FindObject("rangePHslice");
2744 TH2F* rangePHslice=new TH2F("rangePHslice", "", 8, -0.5, 7.5, 10, 0.0, 2000.);
2745 rangePHslice->SetStats(kFALSE);
2746 SetStyle(rangePHslice->GetXaxis(), "slice", 0.07, 0.8, kTRUE, 0.05);
2747 SetStyle(rangePHslice->GetYaxis(), "PH", 0.07, 0.8, kTRUE, 0.05);
2748 rangePHslice->Draw();
2749
2750 TF1* funcPol1 = new TF1("funcPol1", "[0]+[1]*x", 2.9, 6.4);
2751
7698e7a4 2752 TH2F* h2F;
2753 TH1D* hF;
2754 if((h2F = dynamic_cast<TH2F*>(fHistos->At(kPHSlice+centralityClass)))) {
2755 hF = Proj2D(h2F);
2756 h2F->SetStats(kFALSE);
33d501fa 2757 h2F->Draw("samecolz");
2758 if(trendValues) {
2759 hF->Fit(funcPol1, "QME0", "goff", 2.9, 6.4);
2760 trendValues[12] = funcPol1->GetParameter(0); // PH plateau
2761 trendValues[13] = funcPol1->GetParError(0); // PH plateau
2762 trendValues[14] = funcPol1->GetParameter(1); // PH slope
2763 trendValues[15] = funcPol1->GetParError(1); // PH slope
2764 }
7698e7a4 2765 hF->SetLineWidth(2);
2766 hF->SetLineStyle(2);
2767 hF->Draw("same");
2768 }
33d501fa 2769 delete funcPol1;
2770
7698e7a4 2771 // Qtot vs P
2772 pad = ((TVirtualPad*)l->At(5)); pad->cd();
2773 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
2774 pad->SetTopMargin(0.03); pad->SetBottomMargin(0.15);
2775 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
2776 pad->SetLogz();
7698e7a4 2777
33d501fa 2778 if(gROOT->FindObject("rangeQtotP")) delete gROOT->FindObject("rangeQtotP");
2779 TH2F* rangeQtotP = new TH2F("rangeQtotP", "", 10, 0.0, 11.99, 10, 0.0, 11.99);
2780 SetStyle(rangeQtotP->GetXaxis(), "P [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
2781 SetStyle(rangeQtotP->GetYaxis(), "Q_{tot}", 0.07, 0.8, kTRUE, 0.05);
2782 rangeQtotP->SetStats(kFALSE);
2783 rangeQtotP->Draw();
2784
2785 TH2D* hQtotP_IsolatedBC = 0x0;
2786 for(Int_t ibc=0; ibc<3500; ++ibc) {
2787 if(!isIsolated[ibc]) continue;
2788 fCfContainer->SetRangeUser(kEventBC, Double_t(ibc), Double_t(ibc));
2789 TH2D* temp = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackQtot);
2790 if(!hQtotP_IsolatedBC) hQtotP_IsolatedBC = temp;
2791 else {hQtotP_IsolatedBC->Add(temp); delete temp;}
2792 for(Int_t il=1; il<6; ++il) {
2793 temp = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackQtot+il);
2794 hQtotP_IsolatedBC->Add(temp); delete temp;
2795 }
2796 }
2797 fCfContainer->SetRangeUser(kEventBC, 0.0, 3500.0);
2798
2799 TH2D* temp = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackQtot);
2800 TH2D* hQtotP = temp;
2801 for(Int_t il=1; il<6; ++il) {
2802 temp = (TH2D*)fCfContainer->Project(1, kTrackP, kTrackQtot+il);
2803 hQtotP->Add(temp); delete temp;
2804 }
2805
2806 if(hQtotP_IsolatedBC)
2807 for(Int_t i=1; i<=hQtotP_IsolatedBC->GetXaxis()->GetNbins(); ++i)
2808 hQtotP_IsolatedBC->SetBinContent(i, 1, 0.0);
2809 TH1D* hQtotProj_IsolatedBC = (hQtotP_IsolatedBC ? Proj2D(hQtotP_IsolatedBC) : 0x0);
2810 if(hQtotProj_IsolatedBC) SetStyle(hQtotProj_IsolatedBC, 2, kBlue, 2, 1, kBlue, 1);
2811 if(trendValues && hQtotProj_IsolatedBC && hQtotProj_IsolatedBC->GetEntries()>2) {
2812 trendValues[30] = hQtotProj_IsolatedBC->GetBinContent(hQtotProj_IsolatedBC->FindBin(1.0)); // Landau MPV at 1GeV/c
2813 trendValues[31] = hQtotProj_IsolatedBC->GetBinError(hQtotProj_IsolatedBC->FindBin(1.0)); // Landau width at 1 GeV/c
2814 }
2815 if(hQtotP)
2816 for(Int_t i=1; i<=hQtotP->GetXaxis()->GetNbins(); ++i)
2817 hQtotP->SetBinContent(i, 1, 0.0);
2818 TH1D* hQtotProj = (hQtotP ? Proj2D(hQtotP) : 0x0);
2819 if(hQtotProj) SetStyle(hQtotProj, 2, kBlue, 2, 1, kBlue, 1);
2820 if(trendValues && hQtotProj && hQtotProj->GetEntries()>2) {
2821 trendValues[16] = hQtotProj->GetBinContent(hQtotProj->FindBin(1.0)); // Landau MPV at 1GeV/c
2822 trendValues[17] = hQtotProj->GetBinError(hQtotProj->FindBin(1.0)); // Landau width at 1 GeV/c
2823 }
2824 if(useIsolatedBC && hQtotP_IsolatedBC) {
2825 hQtotP_IsolatedBC->SetStats(kFALSE);
2826 for(Int_t i=1; i<=hQtotP_IsolatedBC->GetXaxis()->GetNbins(); ++i) hQtotP_IsolatedBC->SetBinContent(i, 1, 0.0);
2827 hQtotP_IsolatedBC->Draw("samecolz");
2828 hQtotProj_IsolatedBC->Draw("same");
2829 }
2830 if(!useIsolatedBC && hQtotP) {
7698e7a4 2831 hQtotP->SetStats(kFALSE);
33d501fa 2832 hQtotP->Draw("samecolz");
7698e7a4 2833 hQtotProj->Draw("same");
2834 }
2835
7698e7a4 2836 // reset the user range on the event multiplicity
2837 fCfContainer->SetRangeUser(kEventMult, 0.0, 6.0, kTRUE);
33d501fa 2838 if(cutTOFbc) fCfContainer->SetRangeUser(kTrackTOFBC, -1000.0, +1000.0); // reset the cut on TOFbc
7698e7a4 2839}
2840
2841
2842//_________________________________________________________________
33d501fa 2843Bool_t AliTRDcheckESD::PlotCentSummary(Double_t* trendValues) {
7698e7a4 2844
33d501fa 2845 Bool_t isGoodForSaving=kFALSE;
2846
2847 trendValues = trendValues;
2848
7698e7a4 2849 TLatex* lat=new TLatex();
2850 lat->SetTextSize(0.06);
2851 lat->SetTextColor(2);
2852
33d501fa 2853 gPad->SetTopMargin(0.05); gPad->SetBottomMargin(0.001);
2854 gPad->SetLeftMargin(0.001); gPad->SetRightMargin(0.001);
7698e7a4 2855 gPad->Divide(3,3,0.,0.);
2856 TList* l=gPad->GetListOfPrimitives();
33d501fa 2857
2858 TPad* pad=0x0;
2bf6d80c 2859
33d501fa 2860 if(gROOT->FindObject("rangeEffPt")) delete gROOT->FindObject("rangeEffPt");
2861 TH2F* rangeEffPt=new TH2F("rangeEffPt", "",10,0.,10.,10,0.,1.4);
2862 rangeEffPt->SetStats(kFALSE);
2863 SetStyle(rangeEffPt->GetXaxis(), "p_{T} [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
2864 SetStyle(rangeEffPt->GetYaxis(), "efficiency", 0.07, 0.8, kTRUE, 0.05);
2865
6475ec36 2866 TH3F *h3(NULL), *h3p(NULL), *h3n(NULL);
2bf6d80c 2867 Int_t padsForEffs[5] = {0,3,6,1,4};
2868 for(Int_t iCent=1; iCent<6; ++iCent) {
2869 // TPC-TRD matching efficiencies
33d501fa 2870 pad = ((TPad*)l->At(padsForEffs[iCent-1])); pad->cd();
2871 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02); pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2bf6d80c 2872 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
7698e7a4 2873
6475ec36 2874 if(!(h3p = dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksPos+iCent)))) continue;
2875 if(!(h3n = dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksNeg+iCent)))) continue;
2876 // =============================================
2877 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos+iCent)))) continue;
2878 TH1F* hFeffP = EfficiencyTRD(h3p, h3, kTRUE);
2879 //
2880 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg+iCent)))) continue;
2881 TH1F* hFeffN = EfficiencyTRD(h3n, h3, kTRUE);
2882 // =============================================
2883 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos4+iCent)))) continue;
2884 TH1F* hFeffP4 = EfficiencyTRD(h3p, h3, kTRUE);
2885 //
2886 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg4+iCent)))) continue;
2887 TH1F* hFeffN4 = EfficiencyTRD(h3n, h3, kTRUE);
2888 // =============================================
2889 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos5+iCent)))) continue;
2890 TH1F* hFeffP5 = EfficiencyTRD(h3p, h3, kTRUE);
2891 //
2892 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg5+iCent)))) continue;
2893 TH1F* hFeffN5 = EfficiencyTRD(h3n, h3, kTRUE);
2894 // =============================================
2895 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos6+iCent)))) continue;
2896 TH1F* hFeffP6 = EfficiencyTRD(h3p, h3, kTRUE);
2897 //
2898 if(!(h3 = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg6+iCent)))) continue;
2899 TH1F* hFeffN6 = EfficiencyTRD(h3n, h3, kTRUE);
2bf6d80c 2900
33d501fa 2901 rangeEffPt->Draw();
2902
2bf6d80c 2903 TLine line;
2904 line.SetLineStyle(2);
2905 line.SetLineWidth(2);
33d501fa 2906 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 0.7, rangeEffPt->GetXaxis()->GetXmax(), 0.7);
2907 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 0.9, rangeEffPt->GetXaxis()->GetXmax(), 0.9);
2bf6d80c 2908 line.SetLineStyle(1);
2909 line.SetLineWidth(1);
33d501fa 2910 line.DrawLine(rangeEffPt->GetXaxis()->GetXmin(), 1.0, rangeEffPt->GetXaxis()->GetXmax(), 1.0);
2911 if(hFeffP) SetStyle(hFeffP, 1, kRed, 1, 24, kRed, 1);
2912 if(hFeffP4) SetStyle(hFeffP4, 1, kRed, 1, 25, kRed, 1);
2913 if(hFeffP5) SetStyle(hFeffP5, 1, kRed, 1, 26, kRed, 1);
2914 if(hFeffP6) SetStyle(hFeffP6, 1, kRed, 1, 27, kRed, 1);
2915 if(hFeffN) SetStyle(hFeffN, 1, kBlue, 1, 24, kBlue, 1);
2916 if(hFeffN4) SetStyle(hFeffN4, 1, kBlue, 1, 25, kBlue, 1);
2917 if(hFeffN5) SetStyle(hFeffN5, 1, kBlue, 1, 26, kBlue, 1);
2918 if(hFeffN6) SetStyle(hFeffN6, 1, kBlue, 1, 27, kBlue, 1);
2bf6d80c 2919
33d501fa 2920 TLegend* leg=new TLegend(0.16, 0.7, 0.61, 0.89);
2bf6d80c 2921 leg->SetFillColor(0);
33d501fa 2922 leg->SetNColumns(2);
2923 leg->SetTextSize(0.039);
2924 leg->SetMargin(0.1);
2925 if(hFeffP && hFeffP->Integral()>0.001) {
2926 isGoodForSaving = kTRUE;
2927 hFeffP->Draw("same");
2928 leg->AddEntry(hFeffP, "pos. (#geq 1 trcklt)", "p");
2929 }
2930 if(hFeffN && hFeffN->Integral()>0.001) {
2931 isGoodForSaving = kTRUE;
2932 hFeffN->Draw("same");
2933 leg->AddEntry(hFeffN, "neg. (#geq 1 trcklt)", "p");
2934 }
2935 if(hFeffP4 && hFeffP4->Integral()>0.001) {
2936 isGoodForSaving = kTRUE;
2937 hFeffP4->Draw("same");
2938 leg->AddEntry(hFeffP4, "pos. (4 trcklts)", "p");
2939 }
2940 if(hFeffN4 && hFeffN4->Integral()>0.001) {
2941 isGoodForSaving = kTRUE;
2942 hFeffN4->Draw("same");
2943 leg->AddEntry(hFeffN4, "neg. (4 trcklts)", "p");
2944 }
2945 if(hFeffP5 && hFeffP5->Integral()>0.001) {
2946 isGoodForSaving = kTRUE;
2947 hFeffP5->Draw("same");
2948 leg->AddEntry(hFeffP5, "pos. (5 trcklts)", "p");
2949 }
2950 if(hFeffN5 && hFeffN5->Integral()>0.001) {
2951 isGoodForSaving = kTRUE;
2952 hFeffN5->Draw("same");
2953 leg->AddEntry(hFeffN5, "neg. (5 trcklts)", "p");
2954 }
2955 if(hFeffP6 && hFeffP6->Integral()>0.001) {
2956 isGoodForSaving = kTRUE;
2957 hFeffP6->Draw("same");
2958 leg->AddEntry(hFeffP6, "pos. (6 trcklts)", "p");
2959 }
2960 if(hFeffN6 && hFeffN6->Integral()>0.001) {
2961 isGoodForSaving = kTRUE;
2962 hFeffN6->Draw("same");
2963 leg->AddEntry(hFeffN6, "neg. (6 trklts)", "p");
2964 }
2bf6d80c 2965
33d501fa 2966 if(isGoodForSaving) {
2967 if(iCent==1) leg->Draw();
2968 lat->DrawLatex(5.6, 1.3, Form("Centrality class %d", iCent));
2969 lat->DrawLatex(0.5, 1.42, "TPC-TRD matching efficiency");
2970 }
2971 } // end loop over multiplicity intervals
2bf6d80c 2972
33d501fa 2973 // Number of clusters per TRD track
2974 pad = ((TPad*)l->At(2)); pad->cd();
2bf6d80c 2975 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
2976 pad->SetTopMargin(0.02); pad->SetBottomMargin(0.15);
2977 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 2978 if(gROOT->FindObject("rangeNcls")) delete gROOT->FindObject("rangeNcls");
2979 TH2F* rangeNcls = new TH2F("rangeNcls", "", 10, 0.0, 199.9, 10, 0.0, 1.199);
2980 SetStyle(rangeNcls->GetXaxis(), "# TRD clusters", 0.07, 0.8, kTRUE, 0.05);
2981 SetStyle(rangeNcls->GetYaxis(), "entries (a.u.)", 0.07, 0.8, kTRUE, 0.05);
2982 rangeNcls->SetStats(kFALSE);
2983 rangeNcls->Draw();
2984
2bf6d80c 2985 TH2F* h2F[6]; TH1D* proj[6];
2986 TLegend* leg=new TLegend(0.2, 0.7, 0.5, 0.95);
2987 leg->SetFillColor(0);
33d501fa 2988 Bool_t isGood=kFALSE;
2bf6d80c 2989 for(Int_t iCent=0; iCent<6; ++iCent) {
2990 h2F[iCent] = dynamic_cast<TH2F*>(fHistos->At(kNClsTrackTRD+iCent));
33d501fa 2991 proj[iCent] = (h2F[iCent] && h2F[iCent]->GetEntries()>10 ? h2F[iCent]->ProjectionY(Form("projCent%d",iCent)) : 0x0);
2992 if(proj[iCent]) {
2993 proj[iCent]->SetLineColor(iCent<4 ? iCent+1 : iCent+2);
2994 Double_t maximum = proj[iCent]->GetMaximum();
2995 if(maximum>1.0)
2996 proj[iCent]->Scale(1.0/maximum);
2997 proj[iCent]->SetStats(kFALSE);
2998 proj[iCent]->Draw("same");
2999 leg->AddEntry(proj[iCent], (iCent==0 ? "all centralities" : Form("centrality class %d", iCent)), "l");
3000 isGood = kTRUE;
3001 }
2bf6d80c 3002 }
33d501fa 3003 if(isGood) leg->Draw();
3004 isGoodForSaving = isGoodForSaving || isGood;
3005
2bf6d80c 3006 // Qtot vs P
33d501fa 3007 pad = ((TPad*)l->At(5)); pad->cd();
2bf6d80c 3008 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
3009 pad->SetTopMargin(0.02); pad->SetBottomMargin(0.15);
3010 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3011 if(gROOT->FindObject("rangeQtot")) delete gROOT->FindObject("rangeQtot");
3012 TH2F* rangeQtot = new TH2F("rangeQtot", "", 10, 0.0, 9.999, 10, 0.0, 1.199);
3013 SetStyle(rangeQtot->GetXaxis(), "Q_{tot} (a.u.)", 0.07, 0.8, kTRUE, 0.05);
3014 SetStyle(rangeQtot->GetYaxis(), "entries (a.u.)", 0.07, 0.8, kTRUE, 0.05);
3015 rangeQtot->SetStats(kFALSE);
3016 rangeQtot->Draw();
3017
2bf6d80c 3018 TH1D* projQ[6];
3019 TLegend* leg2=new TLegend(0.6, 0.7, 0.9, 0.95);
3020 leg2->SetFillColor(0);
33d501fa 3021 isGood = kFALSE;
2bf6d80c 3022 for(Int_t iCent=0; iCent<6; ++iCent) {
3023 h2F[iCent] = dynamic_cast<TH2F*>(fHistos->At(kQtotP+iCent));
33d501fa 3024 projQ[iCent] = (h2F[iCent] && h2F[iCent]->GetEntries()>10 ? h2F[iCent]->ProjectionY(Form("projQCent%d",iCent)) : 0x0);
3025 if(projQ[iCent]) {
3026 projQ[iCent]->SetLineColor(iCent<4 ? iCent+1 : iCent+2);
3027 Double_t maximum = projQ[iCent]->GetMaximum();
3028 if(maximum>1.0)
3029 projQ[iCent]->Scale(1.0/maximum);
3030 projQ[iCent]->SetStats(kFALSE);
3031 projQ[iCent]->Draw("same");
3032 leg2->AddEntry(projQ[iCent], (iCent==0 ? "all centralities" : Form("centrality class %d", iCent)), "l");
3033 isGood = kTRUE;
3034 }
2bf6d80c 3035 }
33d501fa 3036 if(isGood) leg2->Draw();
3037 isGoodForSaving = isGoodForSaving || isGood;
3038 return isGoodForSaving;
2bf6d80c 3039}
3040
3041
3042//_________________________________________________________________
33d501fa 3043Bool_t AliTRDcheckESD::PlotTrackingSummary(Int_t centralityClass, Double_t* trendValues) {
2bf6d80c 3044
33d501fa 3045 Bool_t isGoodForSaving=kFALSE;
3046
2bf6d80c 3047 TLatex *lat=new TLatex();
3048 lat->SetTextSize(0.07);
3049 lat->SetTextColor(2);
3050 gPad->SetTopMargin(0.05); gPad->SetBottomMargin(0.001);
3051 gPad->SetLeftMargin(0.001); gPad->SetRightMargin(0.001);
3052 gPad->Divide(3,3,0.,0.);
3053 TList* l=gPad->GetListOfPrimitives();
3054 // eta-phi distr. for positive TPC tracks
3055 TVirtualPad* pad = ((TVirtualPad*)l->At(0)); pad->cd();
3056 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3057 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3058 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3059 if(gROOT->FindObject("rangeEtaPhi")) delete gROOT->FindObject("rangeEtaPhi");
3060 TH2F* rangeEtaPhi = new TH2F("rangeEtaPhi", "", 10, -0.99, +0.99, 10, -3.4, +3.4);
3061 SetStyle(rangeEtaPhi->GetXaxis(), "#eta", 0.07, 0.8, kTRUE, 0.05);
3062 SetStyle(rangeEtaPhi->GetYaxis(), "detector #varphi", 0.07, 0.8, kTRUE, 0.05);
3063 rangeEtaPhi->SetStats(kFALSE);
3064 rangeEtaPhi->Draw();
3065 lat->DrawLatex(-0.9, 3.6, "TPC positive ref. tracks");
3066
2bf6d80c 3067 TH3F* h3F = dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksPos+centralityClass));
33d501fa 3068 TH2F* h2FtpcP = 0x0;
2bf6d80c 3069 Float_t nada=0.0;
33d501fa 3070 if(h3F && h3F->GetEntries()>10) {
3071 h2FtpcP = (TH2F*)Proj3D((TH3F*)h3F, 0x0, 1, h3F->GetZaxis()->GetNbins(), nada)->Clone();
3072 h2FtpcP->SetStats(kFALSE);
3073 h2FtpcP->Draw("samecolz"); isGoodForSaving = kTRUE;
3074 isGoodForSaving = kTRUE;
3075 }
2bf6d80c 3076 //-----------------
3077 // eta-phi distr. for negative TPC tracks
3078 pad = ((TVirtualPad*)l->At(1)); pad->cd();
3079 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3080 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3081 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3082 rangeEtaPhi->Draw();
2bf6d80c 3083 lat->DrawLatex(-0.9, 3.6, "TPC negative ref. tracks");
33d501fa 3084
3085 h3F = dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksNeg+centralityClass));
3086 TH2F* h2FtpcN = 0x0;
3087 if(h3F && h3F->GetEntries()>10) {
3088 h2FtpcN = (TH2F*)Proj3D((TH3F*)h3F, 0x0, 1, h3F->GetZaxis()->GetNbins(), nada)->Clone();
3089 h2FtpcN->SetStats(kFALSE);
3090 h2FtpcN->Draw("samecolz");
3091 isGoodForSaving = kTRUE;
3092 }
2bf6d80c 3093 //----------------------------------------------
3094 // eta-phi distr. for positive TRD tracks
3095 pad = ((TVirtualPad*)l->At(3)); pad->cd();
3096 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3097 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3098 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3099 rangeEtaPhi->Draw();
2bf6d80c 3100 lat->DrawLatex(-0.9, 3.6, "TRD positive ref. tracks");
33d501fa 3101
3102 h3F = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos+centralityClass));
3103 TH2F* h2FtrdP = 0x0;
3104 if(h3F && h3F->GetEntries()>10) {
3105 h2FtrdP = (TH2F*)Proj3D((TH3F*)h3F, 0x0, 1, h3F->GetZaxis()->GetNbins(), nada)->Clone();
3106 h2FtrdP->SetStats(kFALSE);
3107 h2FtrdP->SetMaximum((h2FtpcP ? h2FtpcP->GetMaximum() : h2FtrdP->GetMaximum()));
3108 h2FtrdP->Draw("samecolz");
3109 isGoodForSaving=kTRUE;
3110 }
2bf6d80c 3111 //--------------------------------------------
3112 // eta-phi distr. for negative TRD tracks
3113 pad = ((TVirtualPad*)l->At(4)); pad->cd();
3114 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3115 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3116 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3117 rangeEtaPhi->Draw();
2bf6d80c 3118 lat->DrawLatex(-0.9, 3.6, "TRD negative ref. tracks");
33d501fa 3119
3120 h3F = dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg+centralityClass));
3121 TH2F* h2FtrdN = 0x0;
3122 if(h3F && h3F->GetEntries()>10) {
3123 h2FtrdN = (TH2F*)Proj3D((TH3F*)h3F, 0x0, 1, h3F->GetZaxis()->GetNbins(), nada)->Clone();
3124 h2FtrdN->SetStats(kFALSE);
3125 h2FtrdN->SetMaximum(h2FtpcN ? h2FtpcN->GetMaximum() : h2FtrdN->GetMaximum());
3126 h2FtrdN->Draw("samecolz");
3127 isGoodForSaving=kTRUE;
3128 }
2bf6d80c 3129 //----------------------------------------------
3130 // eta-phi efficiency for positive TRD tracks
3131 pad = ((TVirtualPad*)l->At(6)); pad->cd();
3132 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3133 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3134 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3135 rangeEtaPhi->Draw();
2bf6d80c 3136 lat->DrawLatex(-0.9, 3.6, "Efficiency positive tracks");
33d501fa 3137
3138 TH2F* h2Feff = (h2FtrdP ? (TH2F*)h2FtrdP->Clone("h2FeffPos") : 0x0);
3139 if(h2Feff) {
3140 h2Feff->Reset();
3141 h2Feff->SetStats(kFALSE);
3142 h2Feff->Divide(h2FtrdP, h2FtpcP);
3143 h2Feff->SetMaximum(1.0);
3144 if(h2Feff->GetEntries()>1) { h2Feff->Draw("samecolz"); isGoodForSaving=kTRUE; }
3145 }
2bf6d80c 3146 //-------------------------------------------------
3147 // eta-phi efficiency for negative TRD tracks
3148 pad = ((TVirtualPad*)l->At(7)); pad->cd();
3149 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3150 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3151 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3152 rangeEtaPhi->Draw();
2bf6d80c 3153 lat->DrawLatex(-0.9, 3.6, "Efficiency negative tracks");
33d501fa 3154
3155 h2Feff = (h2FtrdN ? (TH2F*)h2FtrdN->Clone("h2FeffNeg") : 0x0);
3156 if(h2Feff) {
3157 h2Feff->Reset();
3158 h2Feff->SetStats(kFALSE);
3159 h2Feff->Divide(h2FtrdN, h2FtpcN);
3160 h2Feff->SetMaximum(1.0);
3161 if(h2Feff->GetEntries()>0.1) { h2Feff->Draw("samecolz"); isGoodForSaving=kTRUE; }
3162 }
2bf6d80c 3163 //-----------------------------------------------------
3164 // <ntracklets> vs (phi,eta)
3165 pad = ((TVirtualPad*)l->At(2)); pad->cd();
3166 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3167 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3168 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3169 rangeEtaPhi->Draw();
3170 lat->DrawLatex(-0.9, 3.6, "TRD <N_{tracklets}>");
3171
2bf6d80c 3172 TProfile2D* hProf2D;
3173 if((hProf2D = dynamic_cast<TProfile2D*>(fHistos->At(kTRDEtaPhiAvNtrkl+centralityClass)))) {
33d501fa 3174 if(hProf2D->GetEntries()>10) {
3175 hProf2D->SetStats(kFALSE);
3176 hProf2D->SetMinimum(0.);
3177 hProf2D->SetMaximum(6.);
3178 if(hProf2D->GetEntries()>1) { hProf2D->Draw("samecolz"); isGoodForSaving = kTRUE; }
3179 }
2bf6d80c 3180 }
3181 //---------------------------------------------------------
3182 // TPC-TRD matching efficiency vs pt
3183 pad = ((TVirtualPad*)l->At(5)); pad->cd();
3184 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.02);
33d501fa 3185 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2bf6d80c 3186 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
3187 TH1F* hFeffP = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksPos+centralityClass)),
3fb80f44 3188 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos+centralityClass)), kTRUE);
2bf6d80c 3189 TH1F* hFeffN = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksNeg+centralityClass)),
3fb80f44 3190 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg+centralityClass)), kTRUE);
2bf6d80c 3191 TH1F* hFeffP4 = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksPos+centralityClass)),
3fb80f44 3192 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos4+centralityClass)), kTRUE);
2bf6d80c 3193 TH1F* hFeffN4 = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksNeg+centralityClass)),
3fb80f44 3194 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg4+centralityClass)), kTRUE);
2bf6d80c 3195 TH1F* hFeffP5 = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksPos+centralityClass)),
3fb80f44 3196 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos5+centralityClass)), kTRUE);
2bf6d80c 3197 TH1F* hFeffN5 = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksNeg+centralityClass)),
3fb80f44 3198 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg5+centralityClass)), kTRUE);
2bf6d80c 3199 TH1F* hFeffP6 = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksPos+centralityClass)),
3fb80f44 3200 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksPos6+centralityClass)), kTRUE);
2bf6d80c 3201 TH1F* hFeffN6 = EfficiencyTRD(dynamic_cast<TH3F*>(fHistos->At(kTPCRefTracksNeg+centralityClass)),
3fb80f44 3202 dynamic_cast<TH3F*>(fHistos->At(kTRDRefTracksNeg6+centralityClass)), kTRUE);
2bf6d80c 3203
33d501fa 3204 TF1* funcConst = new TF1("funcConst", "[0]", 1.0, 3.0);
3205
3206 if(gROOT->FindObject("rangeEffPt2")) delete gROOT->FindObject("rangeEffPt2");
3207 TH2F* rangeEffPt2=new TH2F("rangeEffPt2", "",10,0.,10.,10,0.,1.4);
3208 rangeEffPt2->SetStats(kFALSE);
3209 SetStyle(rangeEffPt2->GetXaxis(), "p_{T} [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
3210 SetStyle(rangeEffPt2->GetYaxis(), "efficiency", 0.07, 0.8, kTRUE, 0.05);
3211 rangeEffPt2->Draw();
3212 lat->DrawLatex(0.5, 1.42, "TRD-TPC matching efficiency");
3fb80f44 3213 //++++++++++++++++++
2bf6d80c 3214 TLine line;
3215 line.SetLineStyle(2);
3216 line.SetLineWidth(2);
33d501fa 3217 line.DrawLine(rangeEffPt2->GetXaxis()->GetXmin(), 0.7, rangeEffPt2->GetXaxis()->GetXmax(), 0.7);
3218 line.DrawLine(rangeEffPt2->GetXaxis()->GetXmin(), 0.9, rangeEffPt2->GetXaxis()->GetXmax(), 0.9);
2bf6d80c 3219 line.SetLineStyle(1);
3220 line.SetLineWidth(1);
33d501fa 3221 line.DrawLine(rangeEffPt2->GetXaxis()->GetXmin(), 1.0, rangeEffPt2->GetXaxis()->GetXmax(), 1.0);
3222 TLegend* leg=new TLegend(0.2, 0.7, 0.6, 0.89);
3223 leg->SetNColumns(2);
2bf6d80c 3224 leg->SetFillColor(0);
3fb80f44 3225 if(hFeffP){
3226 hFeffP->SetMarkerStyle(24);
3227 hFeffP->SetMarkerColor(2);
3228 hFeffP->SetLineColor(2);
33d501fa 3229 if(trendValues && hFeffP->GetEntries()>1) {
3230 hFeffP->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
3231 trendValues[0] = funcConst->GetParameter(0);
3232 trendValues[1] = funcConst->GetParError(0);
3233 }
3234 if(hFeffP->Integral()>0.001) {
3235 hFeffP->Draw("same");
3236 leg->AddEntry(hFeffP, "positives (#geq 1 tracklet)", "p");
3237 }
3fb80f44 3238 }
3239 if(hFeffN){
3240 hFeffN->SetMarkerStyle(24);
3241 hFeffN->SetMarkerColor(4);
3242 hFeffN->SetLineColor(4);
33d501fa 3243 if(trendValues && hFeffN->GetEntries()>1) {
3244 hFeffN->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
3245 trendValues[2] = funcConst->GetParameter(0);
3246 trendValues[3] = funcConst->GetParError(0);
3247 }
3248 if(hFeffN->Integral()>0.001) {
3249 hFeffN->Draw("same");
3250 leg->AddEntry(hFeffN, "negatives (#geq 1 tracklet)", "p");
3251 }
3252 }
3253 if(hFeffP4){
3254 hFeffP4->SetMarkerStyle(25);
3255 hFeffP4->SetMarkerColor(2);
3256 hFeffP4->SetLineColor(2);
3257 if(hFeffP4->Integral()>0.001) {
3258 hFeffP4->Draw("same");
3259 leg->AddEntry(hFeffP4, "positives (4 tracklets)", "p");
3260 }
3fb80f44 3261 }
3262 if(hFeffN4){
3263 hFeffN4->SetMarkerStyle(25);
3264 hFeffN4->SetMarkerColor(4);
3265 hFeffN4->SetLineColor(4);
33d501fa 3266 if(hFeffN4->Integral()>0.001) {
3267 hFeffN4->Draw("same");
3268 leg->AddEntry(hFeffN4, "negatives (4 tracklets)", "p");
3269 }
3270 }
3271 if(hFeffP5){
3272 hFeffP5->SetMarkerStyle(26);
3273 hFeffP5->SetMarkerColor(2);
3274 hFeffP5->SetLineColor(2);
3275 if(hFeffP5->Integral()>0.001) {
3276 hFeffP5->Draw("same");
3277 leg->AddEntry(hFeffP5, "positives (5 tracklets)", "p");
3278 }
3fb80f44 3279 }
3280 if(hFeffN5){
3281 hFeffN5->SetMarkerStyle(26);
3282 hFeffN5->SetMarkerColor(4);
3283 hFeffN5->SetLineColor(4);
33d501fa 3284 if(hFeffN5->Integral()>0.001) {
3285 hFeffN5->Draw("same");
3286 leg->AddEntry(hFeffN5, "negatives (5 tracklets)", "p");
3287 }
3288 }
3289 if(hFeffP6){
3290 hFeffP6->SetMarkerStyle(27);
3291 hFeffP6->SetMarkerColor(2);
3292 hFeffP6->SetLineColor(2);
3293 if(hFeffP6->Integral()>0.001) {
3294 hFeffP6->Draw("same");
3295 leg->AddEntry(hFeffP6, "positives (6 tracklets)", "p");
3296 }
3fb80f44 3297 }
3298 if(hFeffN6){
3299 hFeffN6->SetMarkerStyle(27);
3300 hFeffN6->SetMarkerColor(4);
3301 hFeffN6->SetLineColor(4);
33d501fa 3302 if(hFeffN6->Integral()>0.001) {
3303 hFeffN6->Draw("same");
3304 leg->AddEntry(hFeffN6, "negatives (6 tracklets)", "p");
3305 }
3fb80f44 3306 }
2bf6d80c 3307 leg->Draw();
3308
3309 //--------------------------------------------------------------
3310 // Nclusters per TRD track
3311 pad = ((TVirtualPad*)l->At(8)); pad->cd();
3312 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.12);
33d501fa 3313 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
2bf6d80c 3314 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
3315 pad->SetLogz();
33d501fa 3316 if(gROOT->FindObject("rangeNclsP")) delete gROOT->FindObject("rangeNclsP");
3317 TH2F* rangeNclsP = new TH2F("rangeNclsP", "", 10, 0.0, 11.99, 10, 0.0, 199.0);
3318 SetStyle(rangeNclsP->GetXaxis(), "p [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
3319 SetStyle(rangeNclsP->GetYaxis(), "#clusters", 0.07, 0.8, kTRUE, 0.05);
3320 rangeNclsP->SetStats(kFALSE);
3321 rangeNclsP->Draw();
3322 lat->DrawLatex(1.0, 205., "TRD Clusters / track");
3323
3324 TH2F* hNclsVsP=0x0;
3325 if((hNclsVsP = dynamic_cast<TH2F*>(fHistos->At(kNClsTrackTRD+centralityClass)))) {
3326 hNclsVsP->SetStats(kFALSE);
3327 if(hNclsVsP->GetEntries()>10) {
3328 hNclsVsP->Draw("samecolz"); isGoodForSaving=kTRUE;
3329 if(trendValues) {
3330 TProfile* h2FProf = hNclsVsP->ProfileX("nclsVsPprof");
3331 h2FProf->Fit(funcConst, "QME0", "goff", 1.0, 3.0);
3332 trendValues[4] = funcConst->GetParameter(0);
3333 trendValues[5] = funcConst->GetParError(0);
3334 }
3335 }
2bf6d80c 3336 }
33d501fa 3337
3338 delete funcConst;
3339 return isGoodForSaving;
2bf6d80c 3340}
3341
3342
3343//_________________________________________________________________
33d501fa 3344Bool_t AliTRDcheckESD::PlotPidSummary(Int_t centralityClass, Double_t* trendValues) {
2bf6d80c 3345
33d501fa 3346 Bool_t isGoodForSaving=kFALSE;
3347
2bf6d80c 3348 TLatex *lat=new TLatex();
3349 lat->SetTextSize(0.07);
3350 lat->SetTextColor(2);
3351 gPad->SetTopMargin(0.05); gPad->SetBottomMargin(0.001);
3352 gPad->SetLeftMargin(0.001); gPad->SetRightMargin(0.001);
3353 gPad->Divide(3,3,0.,0.);
3354 TList* l=gPad->GetListOfPrimitives();
3355 // eta-phi distr. for <Qtot> in layer 0
3356 TVirtualPad* pad;
3357 TProfile2D* hProf2D;
33d501fa 3358 if(gROOT->FindObject("rangeEtaPhi2")) delete gROOT->FindObject("rangeEtaPhi2");
3359 TH2F* rangeEtaPhi = new TH2F("rangeEtaPhi2", "", 10, -0.99, +0.99, 10, -3.4, +3.4);
3360 SetStyle(rangeEtaPhi->GetXaxis(), "#eta", 0.07, 0.8, kTRUE, 0.05);
3361 SetStyle(rangeEtaPhi->GetYaxis(), "detector #varphi", 0.07, 0.8, kTRUE, 0.05);
3362 rangeEtaPhi->SetStats(kFALSE);
3363
2bf6d80c 3364 for(Int_t iLayer=0; iLayer<6; ++iLayer) {
3365 pad = ((TVirtualPad*)l->At((iLayer<3 ? iLayer*3 : (iLayer-3)*3+1))); pad->cd();
3366 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3367 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3368 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3369 rangeEtaPhi->Draw();
2bf6d80c 3370 lat->DrawLatex(-0.9, 3.6, Form("TRD <Q_{tot}> Layer %d", iLayer));
33d501fa 3371
3372 if(!(hProf2D = dynamic_cast<TProfile2D*>(fHistos->At(kTRDEtaPhiAvQtot+6*centralityClass+iLayer)))) continue;
3373 if(hProf2D && hProf2D->GetEntries()>10) {
3374 hProf2D->SetStats(kFALSE);
3375 hProf2D->SetMinimum(0.);
3376 hProf2D->SetMaximum(4.);
3377 if(hProf2D->GetEntries()>10) { hProf2D->Draw("samecolz"); isGoodForSaving=kTRUE; }
3378 }
2bf6d80c 3379 }
3380
3381 // PH versus slice number
3382 pad = ((TVirtualPad*)l->At(2)); pad->cd();
3383 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3384 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3385 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
33d501fa 3386 if(gROOT->FindObject("rangePHslice")) delete gROOT->FindObject("rangePHslice");
3387 TH2F* rangePHslice = new TH2F("rangePHslice", "", 10, -0.5, 7.5, 10, 0.0, 2000.0);
3388 SetStyle(rangePHslice->GetXaxis(), "slice", 0.07, 0.8, kTRUE, 0.05);
3389 SetStyle(rangePHslice->GetYaxis(), "PH", 0.07, 0.8, kTRUE, 0.05);
3390 rangePHslice->SetStats(kFALSE);
3391 rangePHslice->Draw();
3392
3393 TF1* funcPol1 = new TF1("funcPol1", "[0]+[1]*x", 2.9, 6.4);
3394
2bf6d80c 3395 TH2F* h2F;
7698e7a4 3396 TH1D* hF;
2bf6d80c 3397 if((h2F = dynamic_cast<TH2F*>(fHistos->At(kPHSlice+centralityClass)))) {
33d501fa 3398 if(h2F && h2F->GetEntries()>10) {
3399 hF = Proj2D(h2F);
3400 h2F->SetStats(kFALSE);
3401 h2F->Draw("samecolz");
3402 isGoodForSaving=kTRUE;
3403 if(trendValues) {
3404 hF->Fit(funcPol1, "QME0", "goff", 2.9, 6.4);
3405 trendValues[6] = funcPol1->GetParameter(0);
3406 trendValues[7] = funcPol1->GetParError(0);
3407 trendValues[8] = funcPol1->GetParameter(1);
3408 trendValues[9] = funcPol1->GetParError(1);
3409 }
3410 hF->SetLineWidth(2);
3411 hF->Draw("same");
3412 }
2bf6d80c 3413 }
33d501fa 3414 delete funcPol1;
2bf6d80c 3415
3416 // Qtot vs P
3417 pad = ((TVirtualPad*)l->At(5)); pad->cd();
3418 pad->SetLeftMargin(0.15); pad->SetRightMargin(0.1);
3419 pad->SetTopMargin(0.1); pad->SetBottomMargin(0.15);
3420 pad->SetGridx(kFALSE); pad->SetGridy(kFALSE);
3421 pad->SetLogz();
33d501fa 3422 if(gROOT->FindObject("rangeQtotP")) delete gROOT->FindObject("rangeQtotP");
3423 TH2F* rangeQtotP = new TH2F("rangeQtotP", "", 10, 0.0, 11.99, 10, 0.0, 11.99);
3424 SetStyle(rangeQtotP->GetXaxis(), "P [GeV/c]", 0.07, 0.8, kTRUE, 0.05);
3425 SetStyle(rangeQtotP->GetYaxis(), "Q_{tot}", 0.07, 0.8, kTRUE, 0.05);
3426 rangeQtotP->SetStats(kFALSE);
3427 rangeQtotP->Draw();
3428
2bf6d80c 3429 if((h2F = dynamic_cast<TH2F*>(fHistos->At(kQtotP+centralityClass)))) {
33d501fa 3430 if(h2F && h2F->GetEntries()>10) {
3431 h2F->SetStats(kFALSE);
3432 h2F->Draw("samecolz");
3433 isGoodForSaving=kTRUE;
3434 hF = Proj2D(h2F);
3435 hF->SetLineWidth(2);
3436 hF->Draw("same");
3437 if(trendValues) {
3438 trendValues[10] = hF->GetBinContent(hF->FindBin(1.0));
3439 trendValues[11] = hF->GetBinError(hF->FindBin(1.0));
3440 }
2bf6d80c 3441 }
33d501fa 3442 }
3443 return isGoodForSaving;
2bf6d80c 3444}
7698e7a4 3445
7698e7a4 3446//__________________________________________________________________________________________________
3447void AliTRDcheckESD::DrawTRDGrid() {
3448 //
3449 // Draw a grid of lines showing the TRD supermodule and stack structure in (eta,phi) coordinates.
3450 // The canvas on which to draw must already exist.
3451 //
3452 TLine line;
3453 line.SetLineColor(2);
4114abc1 3454 line.SetLineWidth(1);
7698e7a4 3455 line.SetLineStyle(2);
3456 for(Int_t i=0; i<=9; ++i) {
3457 line.DrawLine(-1.0, 2.0*TMath::Pi()/18.0*i, +1.0, 2.0*TMath::Pi()/18.0*i);
3458 line.DrawLine(-1.0, -2.0*TMath::Pi()/18.0*i, +1.0, -2.0*TMath::Pi()/18.0*i);
3459 }
3460 line.DrawLine(-0.85, -3.2, -0.85, +3.2);
3461 line.DrawLine(-0.54, -3.2, -0.54, +3.2);
3462 line.DrawLine(-0.16, -3.2, -0.16, +3.2);
3463 line.DrawLine(+0.16, -3.2, +0.16, +3.2);
3464 line.DrawLine(+0.54, -3.2, +0.54, +3.2);
3465 line.DrawLine(+0.85, -3.2, +0.85, +3.2);
3466}
3467
3468//_________________________________________________________________
3469void AliTRDcheckESD::SetStyle(TH1* hist,
33d501fa 3470 Int_t lineStyle, Int_t lineColor, Int_t lineWidth,
4114abc1 3471 Int_t markerStyle, Int_t markerColor, Int_t markerSize) {
7698e7a4 3472 //
3473 // Set style settings for histograms
3474 //
3475 hist->SetLineStyle(lineStyle);
3476 hist->SetLineColor(lineColor);
3477 hist->SetLineWidth(lineWidth);
3478 hist->SetMarkerStyle(markerStyle);
3479 hist->SetMarkerColor(markerColor);
3480 hist->SetMarkerSize(markerSize);
3481}
33d501fa 3482
3483//____________________________________________________________________
3484void AliTRDcheckESD::SetStyle(TAxis* axis, const Char_t* title, Float_t titleSize, Float_t titleOffset, Bool_t centerTitle,
3485 Float_t labelSize) {
3486 //
3487 // Set style settings for axes
3488 //
3489 axis->SetTitle(title);
3490 axis->SetTitleSize(titleSize);
3491 axis->SetTitleOffset(titleOffset);
3492 axis->CenterTitle(centerTitle);
3493 axis->SetLabelSize(labelSize);
3494}
3495
3496//____________________________________________________________________
3497void AliTRDcheckESD::FindIsolatedBCs(TH1D* bcHist, Bool_t isIsolated[3500]) {
3498 //
3499 // Find the isolated bunch crossings
3500 //
3501 Int_t isolationSize = 10; // number of free bunches in both directions
3502 for(Int_t bcBin=1; bcBin<=bcHist->GetXaxis()->GetNbins(); ++bcBin) {
3503 Int_t bc = TMath::Nint(bcHist->GetBinCenter(bcBin));
3504 if(bc<-0.001 || bc>3499.01) {
3505 isIsolated[bc] = kFALSE;
3506 continue;
3507 }
3508 Double_t entries = bcHist->GetBinContent(bcBin);
3509 if(entries<0.001) {
3510 isIsolated[bc] = kFALSE;
3511 continue; // no entries
3512 }
3513
3514 // check isolation
3515 isIsolated[bc] = kTRUE;
3516 for(Int_t ibc = TMath::Max(1,bcBin-isolationSize); ibc <= TMath::Min(3499, bcBin+isolationSize); ++ibc) {
3517 if(ibc==bcBin) continue;
3518 if(bcHist->GetBinContent(ibc)>0.01) {
3519 isIsolated[bc] = kFALSE;
3520 break;
3521 }
3522 }
3523 } // end loop over BC bins
3524
3525 cout << "Isolated bunches: " << endl;
3526 for(Int_t ibc=0; ibc<3500; ++ibc)
3527 if(isIsolated[ibc]) cout << "BC #" << ibc << endl;
3528}