17 AliCFTaskVertexingHF *
AddTaskCFVertexingHF(
const char* cutFile =
"./D0toKpiCuts.root",
TString cutObjectName=
"D0toKpiCutsStandard",
TString suffix=
"",
Int_t configuration =
AliCFTaskVertexingHF::kCheetah,
Bool_t isKeepDfromB=kFALSE,
Bool_t isKeepDfromBOnly=kFALSE,
Int_t pdgCode = 421,
Char_t isSign = 2,
Bool_t useWeight=kFALSE,
Bool_t useFlatPtWeight=kFALSE,
Bool_t useZWeight=kFALSE,
Bool_t useNchWeight=kFALSE,
Bool_t useNtrkWeight=kFALSE,
Bool_t isFinePtBin=kFALSE,
TString estimatorFilename=
"",
Int_t multiplicityEstimator =
AliCFTaskVertexingHF::kNtrk10,
Bool_t isPPData=kFALSE,
Bool_t isPPbData=kFALSE,
Double_t refMult = 9.26,
Bool_t isFineNtrkBin=kFALSE)
71 printf(
"Adding CF task using cuts from file %s\n",cutFile);
73 printf(
"The configuration is set to be SLOW --> all the variables will be used to fill the CF\n");
76 printf(
"The configuration is set to be FAST --> using only pt, y, ct, phi, zvtx, centrality, fake, multiplicity to fill the CF\n");
79 printf(
"The configuration is set to be FAST --> using only pt, y, centrality, multiplicity to fill the CF\n");
82 printf(
"The configuration is set to be for ESE analysis --> using pt, y, centrality, multiplicity, local multiplicity and q2 to fill the CF\n");
85 printf(
"The configuration is not defined! returning\n");
96 if (isSign == 0 && pdgCode < 0){
97 Printf(
"ERROR:Error setting PDG code (%d) and sign (0 --> D0 only): they are not compatible, returning",pdgCode);
100 else if (isSign == 1 && pdgCode > 0){
101 Printf(
"ERROR:Error setting PDG code (%d) and sign (1 --> D0bar only): they are not compatible, returning",pdgCode);
104 else if (isSign > 2 || isSign < 0){
105 Printf(
"ERROR:Sign not valid (%d, possible values are 0, 1, 2), returning",isSign);
109 TFile* fileCuts = TFile::Open(cutFile);
110 if(!fileCuts || (fileCuts && !fileCuts->IsOpen())){
111 Printf(
"ERROR: Wrong cut file");
119 if(isKeepDfromBOnly) isKeepDfromB =
true;
141 Info(
"AliCFTaskVertexingHF",
"SETUP CONTAINER");
142 const Double_t phimax = 2*TMath::Pi();
146 const Int_t nbiny = 24 ;
147 const Int_t nbincosThetaStar = 42 ;
148 const Int_t nbincT = 15 ;
149 const Int_t nbindca = 20 ;
150 const Int_t nbind0xd0 = 90 ;
151 const Int_t nbinpointing = 50 ;
152 const Int_t nbinphi = 18 ;
153 const Int_t nbinzvtx = 30 ;
154 const Int_t nbincent = 28;
155 const Int_t nbincent_0_10 = 4;
156 const Int_t nbincent_10_60 = 20;
157 const Int_t nbincent_60_100 = 4;
158 const Int_t nbinfake = 3;
159 const Int_t nbinpointingXY = 50;
160 const Int_t nbinnormDecayLXY = 20;
162 const Int_t nbinmult_0_20 = 20;
163 const Int_t nbinmult_20_50 = 15;
164 const Int_t nbinmult_50_80 = 10;
165 const Int_t nbinmult_80_100 = 4;
166 const Int_t nbinmult_100_400 = 6;
167 if(isPPbData) nbinmult += nbinmult_100_400;
171 const Int_t nvarTot = 16 ;
176 const UInt_t icosThetaStar = 2;
182 const UInt_t ipointing = 8;
187 const UInt_t ipointingXY = 13;
188 const UInt_t inormDecayLXY = 14;
275 for (
Int_t ibin0 = 0 ; ibin0<iBin[ipT]+1; ibin0++){
276 binLimpT[ibin0] = (
Double_t)floatbinLimpT[ibin0];
277 binLimpTpi[ibin0] = (
Double_t)floatbinLimpT[ibin0];
278 binLimpTk[ibin0] = (
Double_t)floatbinLimpT[ibin0];
280 for(
Int_t i=0; i<=nbinpt; i++) printf(
"binLimpT[%d]=%f\n",i,binLimpT[i]);
282 printf(
"pT: nbin (from cuts file) = %d\n",nbinpt);
287 for (
Int_t ibin0 = 0 ; ibin0<400+1; ibin0++){
288 binLimpTFine[ibin0] = 0.1*ibin0;
290 printf(
"pT: nbins fine = 400\n");
295 Int_t nbinmultTmp=nbinmult;
297 Int_t nbinLimmultFine=100;
298 if(isPPbData) nbinLimmultFine = 200;
299 const UInt_t nbinMultFine = nbinLimmultFine;
300 binLimmultFine =
new Double_t[nbinMultFine+1];
301 for (
Int_t ibin0 = 0 ; ibin0<nbinMultFine+1; ibin0++){
302 binLimmultFine[ibin0] = ibin0;
304 nbinmultTmp=nbinLimmultFine;
306 const Int_t nbinmultTot=nbinmultTmp;
311 iBin[icosThetaStar]=nbincosThetaStar;
314 iBin[id0xd0]=nbind0xd0;
315 iBin[ipointing]=nbinpointing;
317 iBin[izvtx]=nbinzvtx;
318 iBin[icent]=nbincent;
319 iBin[ifake]=nbinfake;
320 iBin[ipointingXY]=nbinpointingXY;
321 iBin[inormDecayLXY]=nbinnormDecayLXY;
322 iBin[imult]=nbinmultTot;
362 for(
Int_t i=0; i<=nbinzvtx; i++) {
368 if (binLimcent[nbincent_0_10] != centmin_10_60) {
369 Error(
"AliCFHeavyFlavourTaskMultiVarMultiStep",
"Calculated bin lim for cent - 1st range - differs from expected!\n");
372 if (binLimcent[nbincent_0_10+nbincent_10_60] != centmin_60_100) {
373 Error(
"AliCFHeavyFlavourTaskMultiVarMultiStep",
"Calculated bin lim for cent - 2st range - differs from expected!\n");
375 for(
Int_t i=0; i<=nbincent_60_100; i++) binLimcent[i+nbincent_0_10+nbincent_10_60]=(
Double_t)centmin_60_100 + (centmax_60_100-
centmin_60_100)/nbincent_60_100*(
Double_t)i ;
378 for(
Int_t i=0; i<=nbinfake; i++) {
390 if (binLimmult[nbinmult_0_20] != multmin_20_50) {
391 Error(
"AliCFHeavyFlavourTaskMultiVarMultiStep",
"Calculated bin lim for mult - 1st range - differs from expected!\n");
394 if (binLimmult[nbinmult_0_20+nbinmult_20_50] != multmin_50_80) {
395 Error(
"AliCFHeavyFlavourTaskMultiVarMultiStep",
"Calculated bin lim for mult - 2nd range - differs from expected!\n");
397 for(
Int_t i=0; i<=nbinmult_50_80; i++) binLimmult[i+nbinmult_0_20+nbinmult_20_50]=(
Double_t)multmin_50_80 + (multmax_50_80-
multmin_50_80)/nbinmult_50_80*(
Double_t)i ;
398 if (binLimmult[nbinmult_0_20+nbinmult_20_50+nbinmult_50_80] != multmin_80_100) {
399 Error(
"AliCFHeavyFlavourTaskMultiVarMultiStep",
"Calculated bin lim for mult - 2nd range - differs from expected!\n");
401 for(
Int_t i=0; i<=nbinmult_80_100; i++) binLimmult[i+nbinmult_0_20+nbinmult_20_50+nbinmult_50_80]=(
Double_t)multmin_80_100 + (multmax_80_100-
multmin_80_100)/nbinmult_80_100*(
Double_t)i ;
402 if (binLimmult[nbinmult_0_20+nbinmult_20_50+nbinmult_50_80+nbinmult_80_100] != multmin_100_400) {
403 Error(
"AliCFHeavyFlavourTaskMultiVarMultiStep",
"Calculated bin lim for mult - 2nd range - differs from expected!\n");
407 for(
Int_t i=0; i<=nbinmult_100_400; i++) binLimmult[i+nbinmult_0_20+nbinmult_20_50+nbinmult_50_80+nbinmult_80_100]=(
Double_t)multmin_100_400 + (multmax_100_400-
multmin_100_400)/nbinmult_100_400*(
Double_t)i ;
411 Int_t items = nbinmult_0_20+nbinmult_20_50+nbinmult_50_80+nbinmult_80_100;
412 if(isPPbData) items = nbinmult_0_20+nbinmult_20_50+nbinmult_50_80+nbinmult_80_100+nbinmult_100_400;
413 for(
Int_t i=0; i<=items; i++) binLimmult[i]*= 68./12.;
419 nameContainer=
"CFHFccontainer0";
421 else if(isKeepDfromBOnly){
422 nameContainer=
"CFHFccontainer0DfromB";
425 nameContainer=
"CFHFccontainer0allD";
430 AliCFContainer* container;
433 container =
new AliCFContainer(nameContainer,
"container for tracks",nstep,nvarTot,iBin);
436 if(isFinePtBin) container -> SetBinLimits(ipT,binLimpTFine);
437 else container -> SetBinLimits(ipT,binLimpT);
439 container -> SetBinLimits(iy,binLimy);
441 container -> SetBinLimits(icosThetaStar,binLimcosThetaStar);
443 container -> SetBinLimits(ipTpi,binLimpTpi);
445 container -> SetBinLimits(ipTk,binLimpTk);
447 container -> SetBinLimits(icT,binLimcT);
449 container -> SetBinLimits(idca,binLimdca);
451 container -> SetBinLimits(id0xd0,binLimd0xd0);
452 printf(
"pointing\n");
453 container -> SetBinLimits(ipointing,binLimpointing);
455 container -> SetBinLimits(iphi,binLimphi);
457 container -> SetBinLimits(izvtx,binLimzvtx);
459 container -> SetBinLimits(icent,binLimcent);
461 container -> SetBinLimits(ifake,binLimfake);
462 printf(
"pointingXY\n");
463 container -> SetBinLimits(ipointingXY,binLimpointingXY);
464 printf(
"normDecayLXY\n");
465 container -> SetBinLimits(inormDecayLXY,binLimnormDecayLXY);
466 printf(
"multiplicity\n");
467 if(isFineNtrkBin) container -> SetBinLimits(imult,binLimmultFine);
468 else container -> SetBinLimits(imult,binLimmult);
470 container -> SetVarTitle(ipT,
"pt");
471 container -> SetVarTitle(iy,
"y");
472 container -> SetVarTitle(icosThetaStar,
"cosThetaStar");
473 container -> SetVarTitle(ipTpi,
"ptpi");
474 container -> SetVarTitle(ipTk,
"ptK");
475 container -> SetVarTitle(icT,
"ct");
476 container -> SetVarTitle(idca,
"dca");
477 container -> SetVarTitle(id0xd0,
"d0xd0");
478 container -> SetVarTitle(ipointing,
"pointing");
479 container -> SetVarTitle(iphi,
"phi");
480 container -> SetVarTitle(izvtx,
"zvtx");
481 container -> SetVarTitle(icent,
"centrality");
482 container -> SetVarTitle(ifake,
"fake");
483 container -> SetVarTitle(ipointingXY,
"piointingXY");
484 container -> SetVarTitle(inormDecayLXY,
"normDecayLXY");
485 container -> SetVarTitle(imult,
"multiplicity");
489 const Int_t nvar = 8;
494 const UInt_t iphiFast = 3;
495 const UInt_t izvtxFast = 4;
496 const UInt_t icentFast = 5;
497 const UInt_t ifakeFast = 6;
498 const UInt_t imultFast = 7;
500 Int_t iBinFast[nvar];
501 iBinFast[ipTFast] = iBin[ipT];
502 iBinFast[iyFast] = iBin[iy];
503 iBinFast[icTFast] = iBin[icT];
504 iBinFast[iphiFast] = iBin[iphi];
505 iBinFast[izvtxFast] = iBin[izvtx];
506 iBinFast[icentFast] = iBin[icent];
507 iBinFast[ifakeFast] = iBin[ifake];
508 iBinFast[imultFast] = iBin[imult];
510 container =
new AliCFContainer(nameContainer,
"container for tracks",nstep,nvar,iBinFast);
512 if(isFinePtBin) container -> SetBinLimits(ipTFast,binLimpTFine);
513 else container -> SetBinLimits(ipTFast,binLimpT);
515 container -> SetBinLimits(iyFast,binLimy);
517 container -> SetBinLimits(icTFast,binLimcT);
519 container -> SetBinLimits(iphiFast,binLimphi);
521 container -> SetBinLimits(izvtxFast,binLimzvtx);
522 printf(
"centrality\n");
523 container -> SetBinLimits(icentFast,binLimcent);
525 container -> SetBinLimits(ifakeFast,binLimfake);
526 printf(
"multiplicity\n");
527 if(isFineNtrkBin) container -> SetBinLimits(imultFast,binLimmultFine);
528 else container -> SetBinLimits(imultFast,binLimmult);
530 container -> SetVarTitle(ipTFast,
"pt");
531 container -> SetVarTitle(iyFast,
"y");
532 container -> SetVarTitle(icTFast,
"ct");
533 container -> SetVarTitle(iphiFast,
"phi");
534 container -> SetVarTitle(izvtxFast,
"zvtx");
535 container -> SetVarTitle(icentFast,
"centrality");
536 container -> SetVarTitle(ifakeFast,
"fake");
537 container -> SetVarTitle(imultFast,
"multiplicity");
541 const Int_t nvar = 4;
543 const UInt_t ipTSuperFast = 0;
544 const UInt_t iySuperFast = 1;
545 const UInt_t icentSuperFast = 2;
546 const UInt_t imultSuperFast = 3;
548 Int_t iBinSuperFast[nvar];
549 iBinSuperFast[ipTSuperFast] = iBin[ipT];
550 iBinSuperFast[iySuperFast] = iBin[iy];
551 iBinSuperFast[icentSuperFast] = iBin[icent];
552 iBinSuperFast[imultSuperFast] = iBin[imult];
554 container =
new AliCFContainer(nameContainer,
"container for tracks",nstep,nvar,iBinSuperFast);
556 if(isFinePtBin) container -> SetBinLimits(ipTSuperFast,binLimpTFine);
557 else container -> SetBinLimits(ipTSuperFast,binLimpT);
559 container -> SetBinLimits(iySuperFast,binLimy);
560 printf(
"centrality\n");
561 container -> SetBinLimits(icentSuperFast,binLimcent);
562 printf(
"multiplicity\n");
563 if(isFineNtrkBin) container -> SetBinLimits(imultSuperFast,binLimmultFine);
564 else container -> SetBinLimits(imultSuperFast,binLimmult);
566 container -> SetVarTitle(ipTSuperFast,
"pt");
567 container -> SetVarTitle(iySuperFast,
"y");
568 container -> SetVarTitle(icentSuperFast,
"centrality");
569 container -> SetVarTitle(imultSuperFast,
"multiplicity");
573 const Int_t nvar = 6;
577 const UInt_t icentESE = 2;
578 const UInt_t imultESE = 3;
579 const UInt_t ilocalmultESE = 4;
582 const Int_t iBinESE[nvar] = {iBin[ipT],iBin[iy],100,50,50,100};
584 Double_t binLimcentESE[iBinESE[icentESE]+1];
585 for(
Int_t iCent=0; iCent<iBinESE[icentESE]+1; iCent++) {
586 binLimcentESE[iCent] = iCent;
588 Double_t binLimmultESE[iBinESE[imultESE]+1];
589 for(
Int_t iMult=0; iMult<iBinESE[imultESE]+1; iMult++) {
590 binLimmultESE[iMult] = -0.5+iMult*5000./iBinESE[imultESE];
592 Double_t binLimlocalmultESE[iBinESE[ilocalmultESE]+1];
593 for(
Int_t iLocalMult=0; iLocalMult<iBinESE[ilocalmultESE]+1; iLocalMult++) {
594 binLimlocalmultESE[iLocalMult] = -0.5+iLocalMult*200./iBinESE[ilocalmultESE];
596 Double_t binLimq2ESE[iBinESE[iq2ESE]+1];
597 for(
Int_t iq2=0; iq2<iBinESE[iq2ESE]+1; iq2++) {
598 binLimq2ESE[iq2] = iq2*5./iBinESE[iq2ESE];
601 container =
new AliCFContainer(nameContainer,
"container for tracks",nstep,nvar,iBinESE);
603 container -> SetBinLimits(ipTESE,binLimpT);
605 container -> SetBinLimits(iyESE,binLimy);
606 printf(
"centrality\n");
607 container -> SetBinLimits(icentESE,binLimcentESE);
608 printf(
"multiplicity\n");
609 container -> SetBinLimits(imultESE,binLimmultESE);
610 printf(
"local multiplicity\n");
611 container -> SetBinLimits(ilocalmultESE,binLimlocalmultESE);
613 container -> SetBinLimits(iq2ESE,binLimq2ESE);
615 container -> SetVarTitle(ipTESE,
"pt");
616 container -> SetVarTitle(iyESE,
"y");
617 container -> SetVarTitle(icentESE,
"centrality");
618 container -> SetVarTitle(imultESE,
"multiplicity");
619 container -> SetVarTitle(ilocalmultESE,
"local multiplicity");
620 container -> SetVarTitle(iq2ESE,
"q2");
623 container -> SetStepTitle(0,
"MCLimAcc");
624 container -> SetStepTitle(1,
"MC");
625 container -> SetStepTitle(2,
"MCAcc");
626 container -> SetStepTitle(3,
"RecoVertex");
627 container -> SetStepTitle(4,
"RecoRefit");
628 container -> SetStepTitle(5,
"Reco");
629 container -> SetStepTitle(6,
"RecoAcc");
630 container -> SetStepTitle(7,
"RecoITSCluster");
631 container -> SetStepTitle(8,
"RecoCuts");
632 container -> SetStepTitle(9,
"RecoPID");
639 AliCFTrackKineCuts *mcKineCuts =
new AliCFTrackKineCuts(
"mcKineCuts",
"MC-level kinematic cuts");
642 AliCFParticleGenCuts* mcGenCuts =
new AliCFParticleGenCuts(
"mcGenCuts",
"MC particle generation cuts");
643 Bool_t useAbsolute = kTRUE;
645 useAbsolute = kFALSE;
647 mcGenCuts->SetRequirePdgCode(pdgCode, useAbsolute);
648 mcGenCuts->SetAODMC(1);
651 AliCFAcceptanceCuts* accCuts =
new AliCFAcceptanceCuts(
"accCuts",
"Acceptance cuts");
652 AliCFTrackKineCuts *kineAccCuts =
new AliCFTrackKineCuts(
"kineAccCuts",
"Kine-Acceptance cuts");
653 kineAccCuts->SetPtRange(ptmin,ptmax);
654 kineAccCuts->SetEtaRange(etamin,etamax);
657 AliCFTrackKineCuts *recKineCuts =
new AliCFTrackKineCuts(
"recKineCuts",
"rec-level kine cuts");
659 AliCFTrackQualityCuts *recQualityCuts =
new AliCFTrackQualityCuts(
"recQualityCuts",
"rec-level quality cuts");
661 AliCFTrackIsPrimaryCuts *recIsPrimaryCuts =
new AliCFTrackIsPrimaryCuts(
"recIsPrimaryCuts",
"rec-level isPrimary cuts");
663 printf(
"CREATE MC KINE CUTS\n");
665 mcList->AddLast(mcKineCuts);
666 mcList->AddLast(mcGenCuts);
668 printf(
"CREATE ACCEPTANCE CUTS\n");
670 accList->AddLast(kineAccCuts);
672 printf(
"CREATE RECONSTRUCTION CUTS\n");
674 recList->AddLast(recKineCuts);
675 recList->AddLast(recQualityCuts);
676 recList->AddLast(recIsPrimaryCuts);
681 printf(
"CREATE INTERFACE AND CUTS\n");
682 AliCFManager* man =
new AliCFManager() ;
683 man->SetParticleContainer(container);
684 man->SetParticleCutsList(0 , mcList);
685 man->SetParticleCutsList(1 , mcList);
686 man->SetParticleCutsList(2 , accList);
687 man->SetParticleCutsList(3 , emptyList);
688 man->SetParticleCutsList(4 , emptyList);
689 man->SetParticleCutsList(5 , emptyList);
690 man->SetParticleCutsList(6 , emptyList);
691 man->SetParticleCutsList(7 , emptyList);
692 man->SetParticleCutsList(8 , emptyList);
693 man->SetParticleCutsList(9 , emptyList);
699 ::Error(
"AddTaskCompareHF",
"No analysis manager to connect to.");
703 printf(
"CREATE TASK\n");
722 if (isKeepDfromB && !isKeepDfromBOnly) task->
SetDselection(2);
723 if (isKeepDfromB && isKeepDfromBOnly) task->
SetDselection(1);
725 TF1* funcWeight = 0x0;
727 funcWeight = (TF1*)fileCuts->Get(
"funcWeight");
728 if (funcWeight == 0x0){
729 Printf(
"FONLL Weights will be used");
733 Printf(
"User-defined Weights will be used.");
737 if(useNchWeight || useNtrkWeight){
740 if(isPPbData) hNchPrimaries = (TH1F*)fileCuts->Get(
"hNtrUnCorrEvWithCandWeight");
741 else hNchPrimaries = (TH1F*)fileCuts->Get(
"hGenPrimaryParticlesInelGt0");
742 hNchMeasured = (TH1F*)fileCuts->Get(
"hNchMeasured");
748 Printf(
"FATAL: Histogram for multiplicity weights not found");
759 if(estimatorFilename.EqualTo(
"") ) {
760 printf(
"Estimator file not provided, multiplicity corrected histograms will not be filled\n");
764 TFile* fileEstimator=TFile::Open(estimatorFilename.Data());
766 Printf(
"FATAL: File with multiplicity estimator not found");
774 const Char_t* periodNames[2] = {
"LHC13b",
"LHC13c"};
775 TProfile* multEstimatorAvg[2];
776 for(
Int_t ip=0; ip<2; ip++) {
777 multEstimatorAvg[ip] = (TProfile*)(fileEstimator->Get(Form(
"SPDmult10_%s",periodNames[ip]))->Clone(Form(
"SPDmult10_%s_clone",periodNames[ip])));
778 if (!multEstimatorAvg[ip]) {
779 Printf(
"FATAL: Multiplicity estimator for %s not found! Please check your estimator file",periodNames[ip]);
787 const Char_t* periodNames[4] = {
"LHC10b",
"LHC10c",
"LHC10d",
"LHC10e"};
788 TProfile* multEstimatorAvg[4];
789 for(
Int_t ip=0; ip<4; ip++) {
790 multEstimatorAvg[ip] = (TProfile*)(fileEstimator->Get(Form(
"SPDmult10_%s",periodNames[ip]))->Clone(Form(
"SPDmult10_%s_clone",periodNames[ip])));
791 if (!multEstimatorAvg[ip]) {
792 Printf(
"FATAL: Multiplicity estimator for %s not found! Please check your estimator file",periodNames[ip]);
805 Printf(
"***************** CONTAINER SETTINGS *****************");
811 if(funcWeight) Printf(
"User-defined Weight function");
812 else Printf(
"FONLL will be used for the weights");
821 Printf(
"***************END CONTAINER SETTINGS *****************\n");
827 Bool_t AcceptanceUnf = kTRUE;
841 nameCorr=
"CFHFcorr0";
843 else if(isKeepDfromBOnly){
844 nameCorr=
"CFHFcorr0KeepDfromBOnly";
847 nameCorr=
"CFHFcorr0allD";
852 THnSparseD* correlation =
new THnSparseD(nameCorr,
"THnSparse with correlations",4,thnDim);
857 binEdges[0]= binLimpT;
858 if(isFinePtBin) binEdges[0] = binLimpTFine;
859 binEdges[1]= binLimy;
861 correlation->SetBinEdges(0,binEdges[0]);
862 correlation->SetBinEdges(2,binEdges[0]);
864 correlation->SetBinEdges(1,binEdges[1]);
865 correlation->SetBinEdges(3,binEdges[1]);
867 correlation->Sumw2();
877 AliAnalysisDataContainer *cinput0 = mgr->GetCommonInputContainer();
881 TString outputfile = AliAnalysisManager::GetCommonFileName();
882 TString output1name=
"", output2name=
"", output3name=
"",output4name=
"", output5name=
"";
883 output2name=nameContainer;
884 output3name=nameCorr;
886 output5name=
"coutProf";
888 outputfile +=
":PWG3_D2H_CFtaskD0toKpi";
889 output1name=
"CFHFchist0";
890 output3name+=
"_cOnly";
891 output4name+=
"_cOnly";
892 output5name+=
"_cOnly";
894 else if(isKeepDfromBOnly){
895 outputfile +=
":PWG3_D2H_CFtaskD0toKpiKeepDfromBOnly";
896 output1name=
"CFHFchist0DfromB";
897 output3name+=
"_bOnly";
898 output4name+=
"_bOnly";
899 output5name+=
"_bOnly";
902 outputfile +=
":PWG3_D2H_CFtaskD0toKpiKeepDfromB";
903 output1name=
"CFHFchist0allD";
916 AliAnalysisDataContainer *coutput1 = mgr->CreateContainer(output1name, TH1I::Class(),AliAnalysisManager::kOutputContainer,outputfile.Data());
918 AliAnalysisDataContainer *coutput2 = mgr->CreateContainer(output2name, AliCFContainer::Class(),AliAnalysisManager::kOutputContainer,outputfile.Data());
920 AliAnalysisDataContainer *coutput3 = mgr->CreateContainer(output3name, THnSparseD::Class(),AliAnalysisManager::kOutputContainer,outputfile.Data());
922 AliAnalysisDataContainer *coutput4 = mgr->CreateContainer(output4name, AliRDHFCuts::Class(),AliAnalysisManager::kOutputContainer, outputfile.Data());
924 AliAnalysisDataContainer *coutput5 = mgr->CreateContainer(output5name, TList::Class(),AliAnalysisManager::kOutputContainer, outputfile.Data());
929 mgr->ConnectInput(task,0,mgr->GetCommonInputContainer());
930 mgr->ConnectOutput(task,1,coutput1);
931 mgr->ConnectOutput(task,2,coutput2);
932 mgr->ConnectOutput(task,3,coutput3);
933 mgr->ConnectOutput(task,4,coutput4);
934 mgr->ConnectOutput(task,5,coutput5);
Bool_t GetCentralitySelection()
const Float_t multmax_50_80
void SetWeightFunction(TF1 *func)
void SetRejectCandidateIfNotFromQuark(Bool_t opt)
void SetMultiplVsZProfileLHC10e(TProfile *hprof)
void SetCFManager(AliCFManager *io)
CORRECTION FRAMEWORK RELATED FUNCTIONS.
const Float_t multmin_0_20
fast configuration, only a subset of variables
const Float_t multmin_100_400
void SetDecayChannel(Int_t decayChannel)
Bool_t GetRejectCandidateIfNotFromQuark()
const Int_t mintrackrefsITS
void SetFillFromGenerated(Bool_t flag)
get corr manager
void SetUseNchTrackletsWeight(Bool_t useWeight=kTRUE)
void SetUseMCVertex(Bool_t opt)
void SetMCNchHisto(TH1F *h)
slow configuration, all variables
const Float_t multmax_0_20
const Float_t centmin_10_60
super fast configuration, only (pt,y,centrality)
const Int_t minITSClusters
const Float_t centmin_0_10
const Int_t mintrackrefsTPC
void SetMeasuredNchHisto(TH1F *h)
void SetIsPPData(Bool_t flag)
const Float_t normDecLXYmax
const Int_t minclustersTPC
void SetIsPPbData(Bool_t flag)
const Float_t multmin_80_100
const Float_t multmax_80_100
const Float_t normDecLXYmin
void SetCentralitySelection(Bool_t centSelec=kTRUE)
const Float_t multmin_20_50
const Float_t centmax_60_100
void SetReferenceMultiplcity(Double_t rmu)
void SetUseWeight(Bool_t useWeight)
void SetUseZvtxCorrectedNtrkEstimator(Bool_t flag)
const Float_t multmin_50_80
void SetConfiguration(Int_t configuration)
void SetDselection(UShort_t originDselection)
const Float_t multmax_100_400
Float_t * GetPtBinLimits() const
const Float_t centmax_0_10
void SetUseNchWeight(Bool_t useWeight)
void SetUseFlatPtWeight(Bool_t useWeight)
const Float_t multmax_20_50
void SetCorrelationMatrix(THnSparse *h)
UNFOLDING.
void SetMultiplVsZProfileLHC10b(TProfile *hprof)
void SetMultiplVsZProfileLHC10d(TProfile *hprof)
void SetSign(Char_t isSign)
const Float_t centmin_60_100
Bool_t GetUseNchWeight() const
Bool_t GetUseWeight() const
void SetMultiplicityEstimator(Int_t value)
void SetMultiplVsZProfileLHC13b(TProfile *hprof)
Bool_t GetFillFromGenerated() const
void SetMultiplVsZProfileLHC13c(TProfile *hprof)
AliCFTaskVertexingHF * AddTaskCFVertexingHF(const char *cutFile="./D0toKpiCuts.root", TString cutObjectName="D0toKpiCutsStandard", TString suffix="", Int_t configuration=AliCFTaskVertexingHF::kCheetah, Bool_t isKeepDfromB=kFALSE, Bool_t isKeepDfromBOnly=kFALSE, Int_t pdgCode=421, Char_t isSign=2, Bool_t useWeight=kFALSE, Bool_t useFlatPtWeight=kFALSE, Bool_t useZWeight=kFALSE, Bool_t useNchWeight=kFALSE, Bool_t useNtrkWeight=kFALSE, Bool_t isFinePtBin=kFALSE, TString estimatorFilename="", Int_t multiplicityEstimator=AliCFTaskVertexingHF::kNtrk10, Bool_t isPPData=kFALSE, Bool_t isPPbData=kFALSE, Double_t refMult=9.26, Bool_t isFineNtrkBin=kFALSE)
void SetFakeSelection(Int_t fakeSel=0)
void SetUseZWeight(Bool_t useWeight)
const Float_t centmax_10_60
void SetMultiplVsZProfileLHC10c(TProfile *hprof)