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1) Adding efficiency correction extraction and weighting for BF analysis 2) update...
[u/mrichter/AliRoot.git] / PWGCF / EBYE / macros / AddTaskBalancePsiCentralityTrain.C
1 // now in options\r
2 //=============================================//\r
3 //const char* centralityEstimator = "V0M";\r
4 //const char* centralityEstimator = "CL1";\r
5 //const char* centralityEstimator = "TRK";\r
6 //=============================================//\r
7 //Bool_t gRunShuffling = kFALSE;\r
8 //Bool_t gRunShuffling = kTRUE;\r
9 //=============================================//\r
10 \r
11 //PID config\r
12 Bool_t kUseNSigmaPID = kFALSE;\r
13 Double_t nSigmaMax = 3.0;\r
14 Bool_t kUseBayesianPID = kTRUE;\r
15 Double_t gMinAcceptedProbability = 0.7;\r
16 \r
17 //_________________________________________________________//\r
18 AliAnalysisTaskBFPsi *AddTaskBalancePsiCentralityTrain(Double_t centrMin=0.,\r
19                                                        Double_t centrMax=100.,\r
20                                                        Bool_t gRunShuffling=kFALSE,\r
21                                                        Bool_t gRunMixing=kTRUE,\r
22                                                        Bool_t gRunMixingWithEventPlane=kFALSE,\r
23                                                        TString centralityEstimator="V0M",\r
24                                                        Double_t vertexZ=10.,\r
25                                                        Double_t DCAxy=-1,\r
26                                                        Double_t DCAz=-1,\r
27                                                        Double_t ptMin=0.3,\r
28                                                        Double_t ptMax=1.5,\r
29                                                        Double_t etaMin=-0.8,\r
30                                                        Double_t etaMax=0.8,\r
31                                                        Double_t maxTPCchi2 = -1, \r
32                                                        Int_t minNClustersTPC = -1,\r
33                                                        Bool_t kUsePID = kFALSE,\r
34                                                        Bool_t bResonancesCut = kTRUE,\r
35                                                        Bool_t bHBTcut = kTRUE,\r
36                                                        Bool_t bConversionCut = kTRUE,\r
37                                                        Bool_t bMomentumDifferenceCut = kTRUE,\r
38                                                        Int_t AODfilterBit = 128,\r
39                                                        Bool_t bCentralTrigger = kFALSE,\r
40                                                        TString fileNameBase="AnalysisResults",\r
41                                                        TString fArgEventClass="Centrality",\r
42                                                        TString analysisTypeUser="AOD",\r
43                                                        Bool_t bVertexBinning=kTRUE) {\r
44   // Creates a balance function analysis task and adds it to the analysis manager.\r
45   // Get the pointer to the existing analysis manager via the static access method.\r
46   TString outputFileName(fileNameBase);\r
47   outputFileName.Append(".root");\r
48 \r
49   //===========================================================================\r
50   AliAnalysisManager *mgr = AliAnalysisManager::GetAnalysisManager();\r
51   if (!mgr) {\r
52     ::Error("AddTaskBF", "No analysis manager to connect to.");\r
53     return NULL;\r
54   }\r
55 \r
56   // Check the analysis type using the event handlers connected to the analysis manager.\r
57   //===========================================================================\r
58   if (!mgr->GetInputEventHandler()) {\r
59     ::Error("AddTaskBF", "This task requires an input event handler");\r
60     return NULL;\r
61   }\r
62   TString analysisType = mgr->GetInputEventHandler()->GetDataType(); // can be "ESD" or "AOD"\r
63   if(dynamic_cast<AliMCEventHandler*> (AliAnalysisManager::GetAnalysisManager()->GetMCtruthEventHandler())) analysisType = "MC";\r
64   \r
65   // to set the analysis type manually\r
66   if(analysisTypeUser != ""){\r
67     analysisType = analysisTypeUser;\r
68     ::Info("AddTaskBF",Form("Analysis Type manually set to %s",analysisType.Data()));\r
69   }\r
70 \r
71   // for local changed BF configuration\r
72   //gROOT->LoadMacro("./configBalanceFunctionPsiAnalysis.C");\r
73   gROOT->LoadMacro("$ALICE_ROOT/PWGCF/EBYE/macros/configBalanceFunctionPsiAnalysis.C");\r
74   AliBalancePsi *bf  = 0;  // Balance Function object\r
75   AliBalancePsi *bfs = 0;  // shuffled Balance function object\r
76   AliBalancePsi *bfm = 0;  // mixing Balance function object\r
77 \r
78   //maximum Delta eta range\r
79   Double_t deltaEtaMax=TMath::Abs(etaMax-etaMin);\r
80 \r
81   if (analysisType=="ESD"){\r
82     bf  = GetBalanceFunctionObject("ESD",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
83     if(gRunShuffling) bfs = GetBalanceFunctionObject("ESD",centralityEstimator,centrMin,centrMax,kTRUE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
84     if(gRunMixing)    bfm = GetBalanceFunctionObject("ESD",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
85   }\r
86   else if (analysisType=="AOD"){\r
87     bf  = GetBalanceFunctionObject("AOD",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
88     if(gRunShuffling) bfs = GetBalanceFunctionObject("AOD",centralityEstimator,centrMin,centrMax,kTRUE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
89     if(gRunMixing)    bfm = GetBalanceFunctionObject("AOD",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
90   }\r
91   else if (analysisType=="MC"){\r
92     bf  = GetBalanceFunctionObject("MC",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
93     if(gRunShuffling) bfs = GetBalanceFunctionObject("MC",centralityEstimator,centrMin,centrMax,kTRUE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
94     if(gRunMixing)    bfm = GetBalanceFunctionObject("MC",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
95   }\r
96   else if (analysisType=="MCAOD"){\r
97     bf  = GetBalanceFunctionObject("MCAOD",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
98     if(gRunShuffling) bfs = GetBalanceFunctionObject("MCAOD",centralityEstimator,centrMin,centrMax,kTRUE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
99     if(gRunMixing)    bfm = GetBalanceFunctionObject("MCAOD",centralityEstimator,centrMin,centrMax,kFALSE,bResonancesCut,bHBTcut,bConversionCut,bMomentumDifferenceCut,fArgEventClass,deltaEtaMax,bVertexBinning);\r
100   }\r
101   else{\r
102     ::Error("AddTaskBF", "analysis type NOT known.");\r
103     return NULL;\r
104   }\r
105 \r
106   // Create the task, add it to manager and configure it.\r
107   //===========================================================================\r
108   AliAnalysisTaskBFPsi *taskBF = new AliAnalysisTaskBFPsi("TaskBFPsi");\r
109   \r
110   //Event characteristics scheme\r
111   taskBF->SetEventClass(fArgEventClass);\r
112  \r
113   //++++++++++++++++++++++\r
114   TString correctionFileName = "$ALICE_ROOT/PWGCF/EBYE/BalanceFunctions/Corrections/CorrectionMaps.root"; //to put the path for the correction maps\r
115   TFile *fCorrectionMatrix  = TFile::Open(correctionFileName.Data());\r
116   if(!fCorrectionMatrix){\r
117     Printf("WARNING CORRECTION histogram file not found");\r
118     return NULL;\r
119   }\r
120   \r
121   taskBF->SetInputCorrection(correctionFileName.Data(),"");\r
122 \r
123   //+++++++++++++++++++++\r
124 \r
125   taskBF->SetAnalysisObject(bf);\r
126   if(gRunShuffling) taskBF->SetShufflingObject(bfs);\r
127   if(gRunMixing){\r
128     taskBF->SetMixingObject(bfm);\r
129     taskBF->SetMixingTracks(50000);\r
130     if(gRunMixingWithEventPlane){\r
131       taskBF->SetMixingWithEventPlane(gRunMixingWithEventPlane);\r
132     }\r
133   }\r
134 \r
135   taskBF->SetCentralityPercentileRange(centrMin,centrMax);\r
136   if(analysisType == "ESD") {\r
137     AliESDtrackCuts *trackCuts = GetTrackCutsObject(ptMin,ptMax,etaMin,etaMax,maxTPCchi2,DCAxy,DCAz,minNClustersTPC);\r
138     taskBF->SetAnalysisCutObject(trackCuts);\r
139     if(kUsePID) {\r
140       if(kUseBayesianPID)\r
141         taskBF->SetUseBayesianPID(gMinAcceptedProbability);\r
142       else if(kUseNSigmaPID)\r
143         taskBF->SetUseNSigmaPID(nSigmaMax);\r
144       taskBF->SetParticleOfInterest(AliAnalysistaskBFPsi::kProton);\r
145       taskBF->SetDetectorUsedForPID(AliAnalysisTaskBFPsi::kTOFpid);\r
146     }\r
147   }\r
148   else if(analysisType == "AOD") {\r
149     // pt and eta cut (pt_min, pt_max, eta_min, eta_max)\r
150     taskBF->SetAODtrackCutBit(AODfilterBit);\r
151     taskBF->SetKinematicsCutsAOD(ptMin,ptMax,etaMin,etaMax);\r
152 \r
153     // set extra DCA cuts (-1 no extra cut)\r
154     taskBF->SetExtraDCACutsAOD(DCAxy,DCAz);\r
155 \r
156     // set extra TPC chi2 / nr of clusters cut\r
157     taskBF->SetExtraTPCCutsAOD(maxTPCchi2, minNClustersTPC);\r
158     \r
159   }\r
160   else if(analysisType == "MC") {\r
161     taskBF->SetKinematicsCutsAOD(ptMin,ptMax,etaMin,etaMax); \r
162     taskBF->SetImpactParameterRange(centrMin,centrMax);\r
163   }\r
164   else if(analysisType == "MCAOD") {\r
165     // pt and eta cut (pt_min, pt_max, eta_min, eta_max)\r
166     taskBF->SetAODtrackCutBit(AODfilterBit);\r
167     taskBF->SetKinematicsCutsAOD(ptMin,ptMax,etaMin,etaMax);    \r
168   }\r
169 \r
170   // offline trigger selection (AliVEvent.h)\r
171   // taskBF->UseOfflineTrigger(); // NOT used (selection is done with the AliAnalysisTaskSE::SelectCollisionCandidates()) \r
172   // with this only selected events are analyzed (first 2 bins in event QA histogram are the same))\r
173   // documentation in https://twiki.cern.ch/twiki/bin/viewauth/ALICE/PWG1EvSelDocumentation\r
174   if(bCentralTrigger) taskBF->SelectCollisionCandidates(AliVEvent::kMB | AliVEvent::kCentral | AliVEvent::kSemiCentral);\r
175   else                taskBF->SelectCollisionCandidates(AliVEvent::kMB);\r
176 \r
177   // centrality estimator (default = V0M)\r
178   taskBF->SetCentralityEstimator(centralityEstimator);\r
179   \r
180   // vertex cut (x,y,z)\r
181   taskBF->SetVertexDiamond(3.,3.,vertexZ);\r
182   \r
183 \r
184 \r
185   //bf->PrintAnalysisSettings();\r
186   mgr->AddTask(taskBF);\r
187   \r
188   // Create ONLY the output containers for the data produced by the task.\r
189   // Get and connect other common input/output containers via the manager as below\r
190   //==============================================================================\r
191   TString outputFileName = AliAnalysisManager::GetCommonFileName();\r
192   outputFileName += ":PWGCFEbyE.outputBalanceFunctionPsiAnalysis";\r
193   AliAnalysisDataContainer *coutQA = mgr->CreateContainer(Form("listQAPsi_%.0f-%.0f_Bit%d_%s",centrMin,centrMax,AODfilterBit,centralityEstimator.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputFileName.Data());\r
194   AliAnalysisDataContainer *coutBF = mgr->CreateContainer(Form("listBFPsi_%.0f-%.0f_Bit%d_%s",centrMin,centrMax,AODfilterBit,centralityEstimator.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputFileName.Data());\r
195   if(gRunShuffling) AliAnalysisDataContainer *coutBFS = mgr->CreateContainer(Form("listBFPsiShuffled_%.0f-%.0f_Bit%d_%s",centrMin,centrMax,AODfilterBit,centralityEstimator.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputFileName.Data());\r
196   if(gRunMixing) AliAnalysisDataContainer *coutBFM = mgr->CreateContainer(Form("listBFPsiMixed_%.0f-%.0f_Bit%d_%s",centrMin,centrMax,AODfilterBit,centralityEstimator.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputFileName.Data());\r
197   if(kUsePID) AliAnalysisDataContainer *coutQAPID = mgr->CreateContainer(Form("listQAPIDPsi_%.0f-%.0f_Bit%d_%s",centrMin,centrMax,AODfilterBit,centralityEstimator.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputFileName.Data());\r
198 \r
199   mgr->ConnectInput(taskBF, 0, mgr->GetCommonInputContainer());\r
200   mgr->ConnectOutput(taskBF, 1, coutQA);\r
201   mgr->ConnectOutput(taskBF, 2, coutBF);\r
202   if(gRunShuffling) mgr->ConnectOutput(taskBF, 3, coutBFS);\r
203   if(gRunMixing) mgr->ConnectOutput(taskBF, 4, coutBFM);\r
204   if(kUsePID && analysisType == "ESD") mgr->ConnectOutput(taskBF, 5, coutQAPID);\r
205 \r
206   return taskBF;\r
207 }\r