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0c22e2ac 1#ifndef ALIRDHFCUTS_H
2#define ALIRDHFCUTS_H
3/* Copyright(c) 1998-2010, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
af5d687e 6/* $Id$ */
7
0c22e2ac 8//***********************************************************
9// Class AliRDHFCuts
10// base class for cuts on AOD reconstructed heavy-flavour decays
11// Author: A.Dainese, andrea.dainese@pd.infn.it
12//***********************************************************
13
14#include <TString.h>
15
16#include "AliAnalysisCuts.h"
17#include "AliESDtrackCuts.h"
18#include "AliAODPidHF.h"
19#include "AliAODEvent.h"
20#include "AliVEvent.h"
21
22class AliAODTrack;
23class AliAODRecoDecayHF;
24class AliESDVertex;
09bfd399 25class TF1;
26class TFormula;
0c22e2ac 27
28class AliRDHFCuts : public AliAnalysisCuts
29{
30 public:
31
5d3cf93b 32 enum ECentrality {kCentOff,kCentV0M,kCentTRK,kCentTKL,kCentCL1,kCentZNA,kCentZPA,kCentV0A,kCentInvalid};
0c22e2ac 33 enum ESelLevel {kAll,kTracks,kPID,kCandidate};
5d3cf93b 34 enum EPileup {kNoPileupSelection,kRejectPileupEvent,kRejectTracksFromPileupVertex,kRejectMVPileupEvent};
0c22e2ac 35 enum ESele {kD0toKpiCuts,kD0toKpiPID,kD0fromDstarCuts,kD0fromDstarPID,kDplusCuts,kDplusPID,kDsCuts,kDsPID,kLcCuts,kLcPID,kDstarCuts,kDstarPID};
5d3cf93b 36 enum ERejBits {kNotSelTrigger,kNoVertex,kTooFewVtxContrib,kZVtxOutFid,kPileup,kOutsideCentrality,kPhysicsSelection,kBadSPDVertex,kZVtxSPDOutFid,kCentralityFlattening,kBadTrackV0Correl};
34595b3c 37 enum EV0sel {kAllV0s = 0, kOnlyOfflineV0s = 1, kOnlyOnTheFlyV0s = 2};
38
0c22e2ac 39 AliRDHFCuts(const Char_t* name="RDHFCuts", const Char_t* title="");
40
41 virtual ~AliRDHFCuts();
42
43 AliRDHFCuts(const AliRDHFCuts& source);
44 AliRDHFCuts& operator=(const AliRDHFCuts& source);
45
46 virtual void SetStandardCutsPP2010() {return;}
47 virtual void SetStandardCutsPbPb2010() {return;}
48 virtual void SetStandardCutsPbPb2011() {return;}
49
50
51 void SetMinCentrality(Float_t minCentrality=0.) {fMinCentrality=minCentrality;}
52 void SetMaxCentrality(Float_t maxCentrality=100.) {fMaxCentrality=maxCentrality;}
53 void SetMinVtxType(Int_t type=3) {fMinVtxType=type;}
5aa726b3 54 void SetUseEventsWithOnlySPDVertex(Bool_t flag=kTRUE){
55 if(flag) fMinVtxType=1;
56 else fMinVtxType=3;
57 }
0c22e2ac 58 void SetMinVtxContr(Int_t contr=1) {fMinVtxContr=contr;}
59 void SetMaxVtxRdChi2(Float_t chi2=1e6) {fMaxVtxRedChi2=chi2;}
60 void SetMaxVtxZ(Float_t z=1e6) {fMaxVtxZ=z;}
61 void SetMinSPDMultiplicity(Int_t mult=0) {fMinSPDMultiplicity=mult;}
62
63 void SetTriggerMask(ULong64_t mask=0) {fTriggerMask=mask;}
95699898 64 void SetUseOnlyOneTrigger(Bool_t onlyOne) {fUseOnlyOneTrigger=onlyOne;}
65 ULong64_t GetTriggerMask() {return fTriggerMask;}
66 Bool_t GetUseOnlyOneTrigger() {return fUseOnlyOneTrigger;}
67
68 void SetUseAnyTrigger() {fTriggerMask=AliVEvent::kAny;}
0c22e2ac 69 void EnableMBTrigger(){
70 fTriggerMask|=AliVEvent::kMB;
71 fUseOnlyOneTrigger=kFALSE;
72 }
73 void ResetMaskAndEnableMBTrigger(){
74 fTriggerMask=AliVEvent::kMB;
75 fUseOnlyOneTrigger=kFALSE;
76 }
77 void SetUseMBTriggerExclusively(){
78 fTriggerMask=AliVEvent::kMB;
79 fUseOnlyOneTrigger=kTRUE;
80 }
81 void EnableCentralTrigger(){
82 fTriggerMask|=AliVEvent::kCentral;
83 fUseOnlyOneTrigger=kFALSE;
84 }
85 void ResetMaskAndEnableCentralTrigger(){
86 fTriggerMask=AliVEvent::kCentral;
87 fUseOnlyOneTrigger=kFALSE;
88 }
89 void SetUseCentralTriggerExclusively(){
90 fTriggerMask=AliVEvent::kCentral;
91 fUseOnlyOneTrigger=kTRUE;
92 }
93 void EnableSemiCentralTrigger(){
94 fTriggerMask|=AliVEvent::kSemiCentral;
95 fUseOnlyOneTrigger=kFALSE;
96 }
97 void ResetMaskAndEnableSemiCentralTrigger(){
98 fTriggerMask=AliVEvent::kSemiCentral;
99 fUseOnlyOneTrigger=kFALSE;
100 }
101 void SetUseSemiCentralTriggerExclusively(){
102 fTriggerMask=AliVEvent::kSemiCentral;
103 fUseOnlyOneTrigger=kTRUE;
104 }
105 void EnableEMCALTrigger(){
106 fTriggerMask|=(AliVEvent::kEMCEJE|AliVEvent::kEMCEGA);
107 fUseOnlyOneTrigger=kFALSE;
108 }
d3202a20 109 void ResetMaskAndEnableEMCALTrigger(){
0c22e2ac 110 fTriggerMask=(AliVEvent::kEMCEJE|AliVEvent::kEMCEGA);
111 fUseOnlyOneTrigger=kFALSE;
112 }
113 void SetUseEMCALTriggerExclusively(){
114 fTriggerMask=(AliVEvent::kEMCEJE|AliVEvent::kEMCEGA);
115 fUseOnlyOneTrigger=kTRUE;
116 }
95699898 117 //
118 // Setters (helpers) for pp 2012 data
f9ef3937 119 void SetUseInt1TriggerPP2012(){
95699898 120 fTriggerMask=AliVEvent::kMB;
121 fTriggerClass[0]="CINT1";
f9ef3937 122 fUseOnlyOneTrigger=kFALSE;
95699898 123 }
f9ef3937 124 void SetUseInt7TriggerPP2012(){
95699898 125 fTriggerMask=AliVEvent::kINT7;
126 fTriggerClass[0]="CINT7";
f9ef3937 127 fUseOnlyOneTrigger=kFALSE;
95699898 128 }
f9ef3937 129 void SetUseInt8TriggerPP2012(){
95699898 130 fTriggerMask=AliVEvent::kINT8;
131 fTriggerClass[0]="CINT8";
f9ef3937 132 fUseOnlyOneTrigger=kFALSE;
95699898 133 }
f9ef3937 134 void SetUseEMCAL7TriggerPP2012(){
95699898 135 fTriggerMask=AliVEvent::kEMC7;
136 fTriggerClass[0]="CEMC7";
f9ef3937 137 fUseOnlyOneTrigger=kFALSE;
95699898 138 }
f9ef3937 139 void SetUseEMCAL8TriggerPP2012(){
95699898 140 fTriggerMask=AliVEvent::kEMC8;
141 fTriggerClass[0]="CEMC8";
f9ef3937 142 fUseOnlyOneTrigger=kFALSE;
95699898 143 }
f9ef3937 144 void SetUseEMCALJET7TriggerPP2012(){
95699898 145 fTriggerMask=AliVEvent::kEMCEJE;
146 fTriggerClass[0]="CEMC7EJE";
f9ef3937 147 fUseOnlyOneTrigger=kFALSE;
95699898 148 }
f9ef3937 149 void SetUseEMCALJET8TriggerPP2012(){
95699898 150 fTriggerMask=AliVEvent::kEMCEJE;
151 fTriggerClass[0]="CEMC8EJE";
f9ef3937 152 fUseOnlyOneTrigger=kFALSE;
95699898 153 }
f9ef3937 154 void SetUseEMCALGA7TriggerPP2012(){
95699898 155 fTriggerMask=AliVEvent::kEMCEGA;
156 fTriggerClass[0]="CEMC7EGA";
f9ef3937 157 fUseOnlyOneTrigger=kFALSE;
95699898 158 }
f9ef3937 159 void SetUseEMCALGA8TriggerPP2012(){
95699898 160 fTriggerMask=AliVEvent::kEMCEGA;
161 fTriggerClass[0]="CEMC8EGA";
f9ef3937 162 fUseOnlyOneTrigger=kFALSE;
95699898 163 }
f9ef3937 164 void SetUseSPI7TriggerPP2012(){
95699898 165 fTriggerMask=AliVEvent::kSPI7;
166 fTriggerClass[0]="CSPI7";
f9ef3937 167 fUseOnlyOneTrigger=kFALSE;
95699898 168 }
f9ef3937 169 void SetUseSPI8TriggerPP2012(){
95699898 170 fTriggerMask=AliVEvent::kSPI;
171 fTriggerClass[0]="CSPI8";
f9ef3937 172 fUseOnlyOneTrigger=kFALSE;
95699898 173 }
f9ef3937 174 void SetUseHighMult7TriggerPP2012(){
95699898 175 fTriggerMask=AliVEvent::kHighMult;
176 fTriggerClass[0]="CSHM7";
f9ef3937 177 fUseOnlyOneTrigger=kFALSE;
95699898 178 }
f9ef3937 179 void SetUseHighMult8TriggerPP2012(){
95699898 180 fTriggerMask=AliVEvent::kHighMult;
181 fTriggerClass[0]="CSHM8";
f9ef3937 182 fUseOnlyOneTrigger=kFALSE;
95699898 183 }
8da55fd2 184
185 void SetMaxDifferenceTRKV0Centraltity(Double_t maxd=5.) {fMaxDiffTRKV0Centr=maxd;}
186 void SetNotUseCutOnTRKVsV0Centraltity() {fMaxDiffTRKV0Centr=-1.;}
851d1cae 187 void SetRemoveTrackletOutliers(Bool_t opt) {fRemoveTrackletOutliers=opt;}
4346ffd2 188 void SetCutOnzVertexSPD(Int_t opt) {
189 if(opt>=0 && opt<=2) fCutOnzVertexSPD=opt;
190 else AliError("Wrong option for cut on zVertexSPD");
191 }
68c15f66 192 void SetTriggerClass(TString trclass0, TString trclass1="") {fTriggerClass[0]=trclass0; fTriggerClass[1]=trclass1;}
851d1cae 193 void ApplySPDDeadPbPb2011(){fApplySPDDeadPbPb2011=kTRUE;}
180a04cb 194 void ApplySPDMisalignedCutPP2012(){fApplySPDMisalignedPP2012=kTRUE;}
0c22e2ac 195 void SetVarsForOpt(Int_t nVars,Bool_t *forOpt);
196 void SetGlobalIndex(){fGlobalIndex=fnVars*fnPtBins;}
197 void SetGlobalIndex(Int_t nVars,Int_t nptBins){fnVars=nVars; fnPtBins=nptBins; SetGlobalIndex();}
198 void SetVarNames(Int_t nVars,TString *varNames,Bool_t *isUpperCut);
199 void SetPtBins(Int_t nPtBinLimits,Float_t *ptBinLimits);
200 void SetCuts(Int_t nVars,Int_t nPtBins,Float_t** cutsRD);
201 void SetCuts(Int_t glIndex, Float_t* cutsRDGlob);
202 void AddTrackCuts(const AliESDtrackCuts *cuts)
203 {delete fTrackCuts; fTrackCuts=new AliESDtrackCuts(*cuts); return;}
204 void SetUsePID(Bool_t flag=kTRUE) {fUsePID=flag; return;}
205 void SetUseAOD049(Bool_t flag=kTRUE) {fUseAOD049=flag; return;}
fdd5a897 206 void SetKinkRejection(Bool_t flag=kTRUE) {fKinkReject=flag; return;}
3e075b37 207 void SetUseTrackSelectionWithFilterBits(Bool_t flag=kTRUE){
208 fUseTrackSelectionWithFilterBits=flag; return;}
0c22e2ac 209 void SetUseCentrality(Int_t flag=1); // see enum below
210 void SetPidHF(AliAODPidHF* pidObj) {
211 if(fPidHF) delete fPidHF;
212 fPidHF=new AliAODPidHF(*pidObj);
213 }
214 void SetRemoveDaughtersFromPrim(Bool_t removeDaughtersPrim) {fRemoveDaughtersFromPrimary=removeDaughtersPrim;}
4bdc0315 215 void SetRecomputePrimaryVertex(Bool_t opt) {fRecomputePrimVertex=opt;}
0c22e2ac 216 void SetMinPtCandidate(Double_t ptCand=-1.) {fMinPtCand=ptCand; return;}
217 void SetMaxPtCandidate(Double_t ptCand=1000.) {fMaxPtCand=ptCand; return;}
af5d687e 218 void SetMaxRapidityCandidate(Double_t ycand) {fMaxRapidityCand=ycand; return;}
0c22e2ac 219 void SetOptPileup(Int_t opt=0){
220 // see enum below
221 fOptPileup=opt;
222 }
db0ff379 223 void SetHistoForCentralityFlattening(TH1F *h,Double_t minCentr,Double_t maxCentr,Double_t centrRef=0.,Int_t switchTRand=0);
0c22e2ac 224 void ConfigurePileupCuts(Int_t minContrib=3, Float_t minDz=0.6){
225 fMinContrPileup=minContrib;
226 fMinDzPileup=minDz;
227 }
09bfd399 228 void SetMinCrossedRowsTPCPtDep(const char *rows="");
229 void SetMinRatioClsOverCrossRowsTPC(Float_t ratio=0.) {fCutRatioClsOverCrossRowsTPC = ratio;}
230 void SetMinRatioSignalNOverCrossRowsTPC(Float_t ratio=0.) {fCutRatioSignalNOverCrossRowsTPC = ratio;}
0c22e2ac 231
232 AliAODPidHF* GetPidHF() const {return fPidHF;}
233 Float_t *GetPtBinLimits() const {return fPtBinLimits;}
234 Int_t GetNPtBins() const {return fnPtBins;}
235 Int_t GetNVars() const {return fnVars;}
236 TString *GetVarNames() const {return fVarNames;}
237 Bool_t *GetVarsForOpt() const {return fVarsForOpt;}
238 Int_t GetNVarsForOpt() const {return fnVarsForOpt;}
239 const Float_t *GetCuts() const {return fCutsRD;}
240 void GetCuts(Float_t**& cutsRD) const;
241 Float_t GetCutValue(Int_t iVar,Int_t iPtBin) const;
242 Double_t GetMaxVtxZ() const {return fMaxVtxZ;}
243 Float_t GetCentrality(AliAODEvent* aodEvent){return GetCentrality(aodEvent,(AliRDHFCuts::ECentrality)fUseCentrality);}
244 Float_t GetCentrality(AliAODEvent* aodEvent, AliRDHFCuts::ECentrality estimator);
245 Bool_t *GetIsUpperCut() const {return fIsUpperCut;}
246 AliESDtrackCuts *GetTrackCuts() const {return fTrackCuts;}
247 virtual AliESDtrackCuts *GetTrackCutsSoftPi() const {return 0;}
e7af8919 248 virtual AliESDtrackCuts *GetTrackCutsV0daughters() const {return 0;}
0c22e2ac 249 virtual void GetCutVarsForOpt(AliAODRecoDecayHF *d,Float_t *vars,Int_t nvars,Int_t *pdgdaughters) = 0;
250 virtual void GetCutVarsForOpt(AliAODRecoDecayHF *d,Float_t *vars,Int_t nvars,Int_t *pdgdaughters,AliAODEvent * /*aod*/)
251 {return GetCutVarsForOpt(d,vars,nvars,pdgdaughters);}
252 Int_t GetGlobalIndex(Int_t iVar,Int_t iPtBin) const;
253 void GetVarPtIndex(Int_t iGlob, Int_t& iVar, Int_t& iPtBin) const;
254 Bool_t GetIsUsePID() const {return fUsePID;}
255 Bool_t GetUseAOD049() const {return fUseAOD049;}
fdd5a897 256 Bool_t GetUseKinkRejection() const {return fKinkReject;}
5aa726b3 257 Bool_t GetUseEventsWithOnlySPDVertex() const{
258 if(fMinVtxType==1 || fMinVtxType==2) return kTRUE;
259 return kFALSE;
260 }
3e075b37 261 Bool_t GetUseTrackSelectionWithFilterBits() const{return fUseTrackSelectionWithFilterBits;}
0c22e2ac 262 Bool_t GetIsPrimaryWithoutDaughters() const {return fRemoveDaughtersFromPrimary;}
263 Bool_t GetOptPileUp() const {return fOptPileup;}
264 Int_t GetUseCentrality() const {return fUseCentrality;}
265 Float_t GetMinCentrality() const {return fMinCentrality;}
266 Float_t GetMaxCentrality() const {return fMaxCentrality;}
267 Double_t GetMinPtCandidate() const {return fMinPtCand;}
268 Double_t GetMaxPtCandidate() const {return fMaxPtCand;}
db0ff379 269 TH1F *GetHistoForCentralityFlattening(){return fHistCentrDistr;}
30399c33 270 void SetUseCentralityFlatteningInMC(Bool_t opt){fUseCentrFlatteningInMC=opt;}
09bfd399 271 const char* GetMinCrossedRowsTPCPtDep() const {return fCutMinCrossedRowsTPCPtDep;}
272 Float_t GetMinRatioClsOverCrossRowsTPC() const {return fCutRatioClsOverCrossRowsTPC;}
273 Float_t GetMinRatioSignalNOverCrossRowsTPC() const {return fCutRatioSignalNOverCrossRowsTPC;}
0c22e2ac 274 Bool_t IsSelected(TObject *obj) {return IsSelected(obj,AliRDHFCuts::kAll);}
275 Bool_t IsSelected(TList *list) {if(!list) return kTRUE; return kFALSE;}
276 Int_t IsEventSelectedInCentrality(AliVEvent *event);
db0ff379 277 Bool_t IsEventSelectedForCentrFlattening(Float_t centvalue);
0c22e2ac 278 Bool_t IsEventSelected(AliVEvent *event);
279 Bool_t AreDaughtersSelected(AliAODRecoDecayHF *rd) const;
280 Bool_t IsDaughterSelected(AliAODTrack *track,const AliESDVertex *primary,AliESDtrackCuts *cuts) const;
281 virtual Int_t IsSelectedPID(AliAODRecoDecayHF * /*rd*/) {return 1;}
0602cf99 282 void SetupPID(AliVEvent *event);
0c22e2ac 283
284 virtual Int_t IsSelected(TObject* obj,Int_t selectionLevel) = 0;
285 virtual Int_t IsSelected(TObject* obj,Int_t selectionLevel,AliAODEvent* /*aod*/)
286 {return IsSelected(obj,selectionLevel);}
287 Int_t PtBin(Double_t pt) const;
04b11915 288 virtual void PrintAll()const;
0c22e2ac 289 void PrintTrigger() const;
290
291 virtual Bool_t IsInFiducialAcceptance(Double_t /*pt*/,Double_t /*y*/) const {return kTRUE;}
292
293 void SetWhyRejection(Int_t why) {fWhyRejection=why; return;}
294 Int_t GetWhyRejection() const {return fWhyRejection;}
295 UInt_t GetEventRejectionBitMap() const {return fEvRejectionBits;}
296 Bool_t IsEventRejectedDueToTrigger() const {
297 return fEvRejectionBits&(1<<kNotSelTrigger);
298 }
299 Bool_t IsEventRejectedDueToNotRecoVertex() const {
300 return fEvRejectionBits&(1<<kNoVertex);
301 }
302 Bool_t IsEventRejectedDueToVertexContributors() const {
303 return fEvRejectionBits&(1<<kTooFewVtxContrib);
304 }
305 Bool_t IsEventRejectedDueToZVertexOutsideFiducialRegion() const {
306 return fEvRejectionBits&(1<<kZVtxOutFid);
307 }
5d3cf93b 308 Bool_t IsEventRejectedDueToPileup() const {
309 return fEvRejectionBits&(1<<kPileup);
0c22e2ac 310 }
311 Bool_t IsEventRejectedDueToCentrality() const {
312 return fEvRejectionBits&(1<<kOutsideCentrality);
313 }
af5d687e 314 Bool_t IsEventRejectedDueToCentralityFlattening() const {
315 return fEvRejectionBits&(1<<kCentralityFlattening);
316 }
8da55fd2 317 Bool_t IsEventRejectedDueToTRKV0CentralityCorrel() const {
318 return fEvRejectionBits&(1<<kBadTrackV0Correl);
319 }
0c22e2ac 320 Bool_t IsEventRejectedDuePhysicsSelection() const {
321 return fEvRejectionBits&(1<<kPhysicsSelection);
322 }
323
324
325 void SetFixRefs(Bool_t fix=kTRUE) {fFixRefs=fix; return;}
326 void SetUsePhysicsSelection(Bool_t use=kTRUE){fUsePhysicsSelection=use; return;}
327 Bool_t GetUsePhysicsSelection() const { return fUsePhysicsSelection; }
328
329
330
331 Bool_t CompareCuts(const AliRDHFCuts *obj) const;
332 void MakeTable()const;
333
334 Int_t GetIsSelectedCuts() const {return fIsSelectedCuts;}
335 Int_t GetIsSelectedPID() const {return fIsSelectedPID;}
336
337 void SetUseMCVertex() { fUseMCVertex=kTRUE; }
338 Bool_t GetUseMCVertex() const { return fUseMCVertex; }
339
340 Bool_t RecalcOwnPrimaryVtx(AliAODRecoDecayHF *d,AliAODEvent *aod) const;
341 Bool_t SetMCPrimaryVtx(AliAODRecoDecayHF *d,AliAODEvent *aod) const;
342 void CleanOwnPrimaryVtx(AliAODRecoDecayHF *d,AliAODEvent *aod,AliAODVertex *origownvtx) const;
343
344 Bool_t CountEventForNormalization() const
345 { if(fWhyRejection==0) {return kTRUE;} else {return kFALSE;} }
346
347 void SetKeepSignalMC() {fKeepSignalMC=kTRUE; return;}
348
349 // Flag and pt-maximum to check if the candidate daughters fulfill the kFirst criteria
350 void SetSelectCandTrackSPDFirst( Bool_t flag, Double_t ptmax )
351 { fIsCandTrackSPDFirst=flag; fMaxPtCandTrackSPDFirst=ptmax; }
352 Bool_t IsSelectCandTrackSPDFirst() const { return fIsCandTrackSPDFirst; }
353 Double_t IsMaxCandTrackSPDFirst() const { return fMaxPtCandTrackSPDFirst; }
354
09bfd399 355 Bool_t CheckPtDepCrossedRows(TString rows,Bool_t print=kFALSE) const;
356
357
0c22e2ac 358
359 protected:
360
361 void SetNPtBins(Int_t nptBins){fnPtBins=nptBins;}
362 void SetNVars(Int_t nVars){fnVars=nVars;}
363
364 Bool_t IsSignalMC(AliAODRecoDecay *d,AliAODEvent *aod,Int_t pdg) const;
4bdc0315 365 Bool_t RecomputePrimaryVertex(AliAODEvent* event) const;
0c22e2ac 366
367 // cuts on the event
368 Int_t fMinVtxType; // 0: not cut; 1: SPDZ; 2: SPD3D; 3: Tracks
369 Int_t fMinVtxContr; // minimum vertex contributors
370 Float_t fMaxVtxRedChi2; // maximum chi2/ndf
371 Float_t fMaxVtxZ; // maximum |z| of primary vertex
372 Int_t fMinSPDMultiplicity; // SPD multiplicity
373 ULong64_t fTriggerMask; // trigger mask
374 Bool_t fUseOnlyOneTrigger; // flag to select one trigger only
68c15f66 375 TString fTriggerClass[2]; // trigger class
0c22e2ac 376 // quality cuts on the daughter tracks
377 AliESDtrackCuts *fTrackCuts; // tracks for daughter tracks (AOD converted to ESD on the flight!)
378 // cuts on the candidate
379 Int_t fnPtBins; // number of pt bins for cuts
380 Int_t fnPtBinLimits; // "number of limits", that is fnPtBins+1
381 Float_t* fPtBinLimits; //[fnPtBinLimits] pt bins
382 Int_t fnVars; // number of cut vars for candidates
383 TString *fVarNames; //[fnVars] names of the variables
384 Int_t fnVarsForOpt; // number of cut vars to be optimized for candidates
385 Bool_t *fVarsForOpt; //[fnVars] kTRUE for vars to be used in optimization
386 Int_t fGlobalIndex; // fnVars*fnPtBins
387 Float_t *fCutsRD; //[fGlobalIndex] the cuts values
388 Bool_t *fIsUpperCut; //[fnVars] use > or < to select
389 Bool_t fUsePID; // enable PID usage (off by default)
390 Bool_t fUseAOD049; // enable AOD049 centrality cleanup
391 AliAODPidHF *fPidHF; // PID for heavy flavours manager
392 Int_t fWhyRejection; // used to code the step at which candidate was rejected
393 UInt_t fEvRejectionBits; //bit map storing the full info about event rejection
394 Bool_t fRemoveDaughtersFromPrimary; // flag to switch on the removal of duaghters from the primary vertex computation
4bdc0315 395 Bool_t fRecomputePrimVertex; // flag to recompute primary vertex
0c22e2ac 396 Bool_t fUseMCVertex; // use MC primary vertex
397 Bool_t fUsePhysicsSelection; // use Physics selection criteria
398 Int_t fOptPileup; // option for pielup selection
399 Int_t fMinContrPileup; // min. n. of tracklets in pileup vertex
400 Float_t fMinDzPileup; // min deltaz between main and pileup vertices
401 Int_t fUseCentrality; // off =0 (default)
402 // 1 = V0
403 // 2 = Tracks
404 // 3 = Tracklets
405 // 4 = SPD clusters outer
406 Float_t fMinCentrality; // minimum centrality for selected events
407 Float_t fMaxCentrality; // maximum centrality for selected events
408 Bool_t fFixRefs; // fix the daughter track references
409 Int_t fIsSelectedCuts; // outcome of cuts selection
410 Int_t fIsSelectedPID; // outcome of PID selection
411 Double_t fMinPtCand; // minimum pt of the candidate
412 Double_t fMaxPtCand; // minimum pt of the candidate
af5d687e 413 Double_t fMaxRapidityCand; // max rapidity of candidate (if !=-999 overrides IsInFiducialAcceptance)
0c22e2ac 414 Bool_t fKeepSignalMC; // IsSelected returns always kTRUE for MC signal
415 Bool_t fIsCandTrackSPDFirst; // flag to select the track kFirst criteria for pt < ptlimit
416 Double_t fMaxPtCandTrackSPDFirst; // maximum pt of the candidate for which to check if the daughters fulfill kFirst criteria
851d1cae 417 Bool_t fApplySPDDeadPbPb2011; // flag to apply SPD dead module map of PbPb2011
180a04cb 418 Bool_t fApplySPDMisalignedPP2012; // flag to apply cut on tracks crossing SPD misaligned modules for PP2012 data
8da55fd2 419 Double_t fMaxDiffTRKV0Centr; // Max. difference between TRK and V0 centrality (remove TPC pileup for PbPb 2011)
851d1cae 420 Bool_t fRemoveTrackletOutliers; // flag to apply cut on tracklets vs. centrality for 2011 data
4346ffd2 421 Int_t fCutOnzVertexSPD; // cut on zSPD vertex to remove outliers in centrality vs. tracklets (0=no cut, 1= cut at 12 cm, 2= cut on difference to z of vtx tracks
fdd5a897 422 Bool_t fKinkReject; // flag to reject kink daughters
3e075b37 423 Bool_t fUseTrackSelectionWithFilterBits; // flag to enable/disable the check on filter bits
30399c33 424 Bool_t fUseCentrFlatteningInMC; // flag for enabling/diabling centrality flattening in MC
db0ff379 425 TH1F *fHistCentrDistr; // histogram with reference centrality distribution for centrality distribution flattening
09bfd399 426 Float_t fCutRatioClsOverCrossRowsTPC; // min. value ratio NTPCClusters/NTPCCrossedRows, cut if !=0
427 Float_t fCutRatioSignalNOverCrossRowsTPC; // min. value ratio TPCPointsUsedForPID/NTPCCrossedRows, cut if !=0
428 TString fCutMinCrossedRowsTPCPtDep; // pT-dep cut in TPC minimum n crossed rows
429 TFormula *f1CutMinNCrossedRowsTPCPtDep; // pT-dep cut in TPC minimum n crossed rows
430
0c22e2ac 431
180a04cb 432 ClassDef(AliRDHFCuts,35); // base class for cuts on AOD reconstructed heavy-flavour decays
0c22e2ac 433};
434
435#endif