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- added new task for pi0 reconstruction using purely calorimeter clusters
[u/mrichter/AliRoot.git] / PWGGA / GammaConv / macros / AddTask_GammaConvCalo_pPb.C
1 void AddTask_GammaConvCalo_pPb(  Int_t trainConfig = 1,  //change different set of cuts
2                               Bool_t isMC   = kFALSE, //run MC
3                               Int_t enableQAMesonTask = 0, //enable QA in AliAnalysisTaskGammaConvV1
4                               Int_t enableQAPhotonTask = 0, // enable additional QA task
5                               TString fileNameInputForWeighting = "MCSpectraInput.root", // path to file for weigting input
6                               Int_t doWeightingPart = 0,  //enable Weighting
7                               TString generatorName = "DPMJET",
8                               TString cutnumberAODBranch = "8000000060084000001500000" // cutnumber for AOD branch
9                                                         ) {
10
11         // ================= Load Librariers =================================
12         gSystem->Load("libCore.so");  
13         gSystem->Load("libTree.so");
14         gSystem->Load("libGeom.so");
15         gSystem->Load("libVMC.so");
16         gSystem->Load("libPhysics.so");
17         gSystem->Load("libMinuit");
18         gSystem->Load("libSTEERBase");
19         gSystem->Load("libESD");
20         gSystem->Load("libAOD");
21         gSystem->Load("libANALYSIS");
22         gSystem->Load("libANALYSISalice");  
23         gSystem->Load("libPWGGAGammaConv.so");
24         gSystem->Load("libCDB.so");
25         gSystem->Load("libSTEER.so");
26         gSystem->Load("libSTEERBase.so");
27         gSystem->Load("libTENDER.so");
28         gSystem->Load("libTENDERSupplies.so");
29                 
30         Int_t isHeavyIon = 2;
31         
32         // ================== GetAnalysisManager ===============================
33         AliAnalysisManager *mgr = AliAnalysisManager::GetAnalysisManager();
34         if (!mgr) {
35                 Error(Form("AddTask_GammaConvV1_%i",trainConfig), "No analysis manager found.");
36                 return ;
37         }
38
39         // ================== GetInputEventHandler =============================
40         AliVEventHandler *inputHandler=mgr->GetInputEventHandler();
41         
42         //========= Add PID Reponse to ANALYSIS manager ====
43         if(!(AliPIDResponse*)mgr->GetTask("PIDResponseTask")){
44                 gROOT->LoadMacro("$ALICE_ROOT/ANALYSIS/macros/AddTaskPIDResponse.C");
45                 AddTaskPIDResponse(isMC);
46         }
47         
48         Printf("here \n");
49         
50         //=========  Set Cutnumber for V0Reader ================================
51         TString cutnumberPhoton = "060084001001500000000";
52         TString cutnumberEvent = "8000000";
53         Bool_t doEtaShift = kFALSE;
54         AliAnalysisDataContainer *cinput = mgr->GetCommonInputContainer();
55
56         //========= Add V0 Reader to  ANALYSIS manager if not yet existent =====
57         if( !(AliV0ReaderV1*)mgr->GetTask("V0ReaderV1") ){
58                 AliV0ReaderV1 *fV0ReaderV1 = new AliV0ReaderV1("V0ReaderV1");
59                 
60                 fV0ReaderV1->SetUseOwnXYZCalculation(kTRUE);
61                 fV0ReaderV1->SetCreateAODs(kFALSE);// AOD Output
62                 fV0ReaderV1->SetUseAODConversionPhoton(kTRUE);
63
64                 if (!mgr) {
65                         Error("AddTask_V0ReaderV1", "No analysis manager found.");
66                         return;
67                 }
68
69                 AliConvEventCuts *fEventCuts=NULL;
70                 if(cutnumberEvent!=""){
71                         fEventCuts= new AliConvEventCuts(cutnumberEvent.Data(),cutnumberEvent.Data());
72                         fEventCuts->SetPreSelectionCutFlag(kTRUE);
73                         if(fEventCuts->InitializeCutsFromCutString(cutnumberEvent.Data())){
74                                 fEventCuts->DoEtaShift(doEtaShift);
75                                 fV0ReaderV1->SetEventCuts(fEventCuts);
76                                 fEventCuts->SetFillCutHistograms("",kTRUE);
77                         }
78                 }
79
80                 // Set AnalysisCut Number
81                 AliConversionPhotonCuts *fCuts=NULL;
82                 if(cutnumberPhoton!=""){
83                         fCuts= new AliConversionPhotonCuts(cutnumberPhoton.Data(),cutnumberPhoton.Data());
84                         fCuts->SetPreSelectionCutFlag(kTRUE);
85                         fCuts->SetIsHeavyIon(isHeavyIon);
86                         if(fCuts->InitializeCutsFromCutString(cutnumberPhoton.Data())){
87                                 fV0ReaderV1->SetConversionCuts(fCuts);
88                                 fCuts->SetFillCutHistograms("",kTRUE);
89                         }
90                 }
91                 if(inputHandler->IsA()==AliAODInputHandler::Class()){
92                 // AOD mode
93                         fV0ReaderV1->SetDeltaAODBranchName(Form("GammaConv_%s_gamma",cutnumberAODBranch.Data()));
94                 }
95                 fV0ReaderV1->Init();
96
97                 AliLog::SetGlobalLogLevel(AliLog::kFatal);
98
99                 //connect input V0Reader
100                 mgr->AddTask(fV0ReaderV1);
101                 mgr->ConnectInput(fV0ReaderV1,0,cinput);
102
103         }
104
105         //================================================
106         //========= Add task to the ANALYSIS manager =====
107         //================================================
108         AliAnalysisTaskGammaConvCalo *task=NULL;
109         task= new AliAnalysisTaskGammaConvCalo(Form("GammaConvCalo_%i",trainConfig));
110         task->SetIsHeavyIon(isHeavyIon);
111         task->SetIsMC(isMC);
112         // Cut Numbers to use in Analysis
113         Int_t numberOfCuts = 2;
114         if (trainConfig==3 || trainConfig==5  ){ numberOfCuts =6;}
115         if (trainConfig==6   ){ numberOfCuts =5;}
116         
117         TString *eventCutArray = new TString[numberOfCuts];
118         TString *photonCutArray = new TString[numberOfCuts];
119         TString *clusterCutArray = new TString[numberOfCuts];
120         TString *mesonCutArray = new TString[numberOfCuts];
121
122         // cluster cuts
123         // 0 "ClusterType",  1 "EtaMin", 2 "EtaMax", 3 "PhiMin", 4 "PhiMax", 5 "DistanceToBadChannel", 6 "Timing", 7 "TrackMatching", 8 "ExoticCell",
124         // 9 "MinEnergy", 10 "MinNCells", 11 "MinM02", 12 "MaxM02", 13 "MinM20", 14 "MaxM20", 15 "MaximumDispersion", 16 "NLM"
125         
126         if (trainConfig == 1){ 
127                 eventCutArray[ 0] = "8000001"; photonCutArray[ 0] = "002092970028250400000"; clusterCutArray[0] = "10000040022030000"; mesonCutArray[0] = "01525065000000"; //standart cut, kINT7 // EMCAL clusters
128                 eventCutArray[ 1] = "8005201"; photonCutArray[ 1] = "002092970028250400000"; clusterCutArray[1] = "10000040022030000"; mesonCutArray[1] = "01525065000000"; //standard cut, kEMC7 // EMCAL clusters
129         } else if (trainConfig == 2) {  
130                 eventCutArray[ 0] = "8000001"; photonCutArray[ 0] = "002092970028250400000"; clusterCutArray[0] = "20000030022000000"; mesonCutArray[0] = "01525065000000"; //standart cut, kINT7 // PHOS clusters
131                 eventCutArray[ 1] = "8006201"; photonCutArray[ 1] = "002092970028250400000"; clusterCutArray[1] = "20000030022000000"; mesonCutArray[1] = "01525065000000"; //standard cut, kPHI7       // PHOS clusters        
132         } else if (trainConfig == 3){ 
133                 eventCutArray[ 0] = "8008101"; photonCutArray[ 0] = "002092970028250400000"; clusterCutArray[0] = "10000040022030000"; mesonCutArray[0] = "01525065000000"; //standart cut, kEMCEGA based on INT7 // EMCAL clusters
134                 eventCutArray[ 1] = "8008301"; photonCutArray[ 1] = "002092970028250400000"; clusterCutArray[1] = "10000040022030000"; mesonCutArray[1] = "01525065000000"; //standard cut, kEMCEG1 based on INT7 // EMCAL clusters
135                 eventCutArray[ 2] = "8008501"; photonCutArray[ 2] = "002092970028250400000"; clusterCutArray[2] = "10000040022030000"; mesonCutArray[2] = "01525065000000"; //standard cut, kEMCEG2 based on INT7 // EMCAL clusters
136                 eventCutArray[ 3] = "8009101"; photonCutArray[ 3] = "002092970028250400000"; clusterCutArray[3] = "10000040022030000"; mesonCutArray[3] = "01525065000000"; //standard cut, kEMCEJE based on INT7 // EMCAL clusters
137                 eventCutArray[ 4] = "8009301"; photonCutArray[ 4] = "002092970028250400000"; clusterCutArray[4] = "10000040022030000"; mesonCutArray[4] = "01525065000000"; //standard cut, kEMCEJ1 based on INT7 // EMCAL clusters
138                 eventCutArray[ 5] = "8009501"; photonCutArray[ 5] = "002092970028250400000"; clusterCutArray[5] = "10000040022030000"; mesonCutArray[5] = "01525065000000"; //standard cut, kEMCEG2 based on INT7 // EMCAL clusters
139         } else if (trainConfig == 4){ 
140                 eventCutArray[ 0] = "8000001"; photonCutArray[ 0] = "002092970028250400000"; clusterCutArray[0] = "10000040052030000"; mesonCutArray[0] = "01525065000000"; //standart cut, kINT7 // EMCAL clusters
141                 eventCutArray[ 1] = "8005201"; photonCutArray[ 1] = "002092970028250400000"; clusterCutArray[1] = "10000040052030000"; mesonCutArray[1] = "01525065000000"; //standard cut, kEMC7 // EMCAL clusters     
142         } else if (trainConfig == 5){ 
143                 eventCutArray[ 0] = "8008101"; photonCutArray[ 0] = "002092970028250400000"; clusterCutArray[0] = "10000040052030000"; mesonCutArray[0] = "01525065000000"; //standart cut, kEMCEGA based on INT7 // EMCAL clusters
144                 eventCutArray[ 1] = "8008301"; photonCutArray[ 1] = "002092970028250400000"; clusterCutArray[1] = "10000040052030000"; mesonCutArray[1] = "01525065000000"; //standard cut, kEMCEG1 based on INT7 // EMCAL clusters
145                 eventCutArray[ 2] = "8008501"; photonCutArray[ 2] = "002092970028250400000"; clusterCutArray[2] = "10000040052030000"; mesonCutArray[2] = "01525065000000"; //standard cut, kEMCEG2 based on INT7 // EMCAL clusters
146                 eventCutArray[ 3] = "8009101"; photonCutArray[ 3] = "002092970028250400000"; clusterCutArray[3] = "10000040052030000"; mesonCutArray[3] = "01525065000000"; //standard cut, kEMCEJE based on INT7 // EMCAL clusters
147                 eventCutArray[ 4] = "8009301"; photonCutArray[ 4] = "002092970028250400000"; clusterCutArray[4] = "10000040052030000"; mesonCutArray[4] = "01525065000000"; //standard cut, kEMCEJ1 based on INT7 // EMCAL clusters
148                 eventCutArray[ 5] = "8009501"; photonCutArray[ 5] = "002092970028250400000"; clusterCutArray[5] = "10000040052030000"; mesonCutArray[5] = "01525065000000"; //standard cut, kEMCEG2 based on INT7 // EMCAL clusters             
149         } else if (trainConfig == 6){ 
150                 eventCutArray[ 0] = "8000001"; photonCutArray[ 0] = "002092970028250400000"; clusterCutArray[0] = "10000043052030000"; mesonCutArray[0] = "01525065000000"; //standart cut, kINT7 // EMCAL clusters
151                 eventCutArray[ 1] = "8000001"; photonCutArray[ 1] = "002092970028250400000"; clusterCutArray[1] = "10000044052030000"; mesonCutArray[1] = "01525065000000"; //standard cut, kEMC7 // EMCAL clusters     
152                 eventCutArray[ 2] = "8000001"; photonCutArray[ 2] = "002092970028250400000"; clusterCutArray[2] = "10000045052030000"; mesonCutArray[2] = "01525065000000"; //standard cut, kEMC7 // EMCAL clusters     
153                 eventCutArray[ 3] = "8000001"; photonCutArray[ 3] = "002092970028250400000"; clusterCutArray[3] = "10000046052030000"; mesonCutArray[3] = "01525065000000"; //standard cut, kEMC7 // EMCAL clusters     
154                 eventCutArray[ 4] = "8000001"; photonCutArray[ 4] = "002092970028250400000"; clusterCutArray[4] = "10000047052030000"; mesonCutArray[4] = "01525065000000"; //standard cut, kEMC7 // EMCAL clusters     
155         } else {
156                 Error(Form("GammaConvCalo_%i",trainConfig), "wrong trainConfig variable no cuts have been specified for the configuration");
157                 return;
158         }
159
160         TList *EventCutList = new TList();
161         TList *ConvCutList = new TList();
162         TList *ClusterCutList = new TList();
163         TList *MesonCutList = new TList();
164
165         TList *HeaderList = new TList();
166         if (doWeightingPart==1) {
167                 TObjString *Header1 = new TObjString("pi0_1");
168                 HeaderList->Add(Header1);
169         }
170         if (doWeightingPart==2){
171                 TObjString *Header3 = new TObjString("eta_2");
172                 HeaderList->Add(Header3);
173         }
174         if (doWeightingPart==3) {
175                 TObjString *Header1 = new TObjString("pi0_1");
176                 HeaderList->Add(Header1);
177                 TObjString *Header3 = new TObjString("eta_2");
178                 HeaderList->Add(Header3);
179         }
180
181         EventCutList->SetOwner(kTRUE);
182         AliConvEventCuts **analysisEventCuts = new AliConvEventCuts*[numberOfCuts];
183         ConvCutList->SetOwner(kTRUE);
184         AliConversionPhotonCuts **analysisCuts = new AliConversionPhotonCuts*[numberOfCuts];
185         ClusterCutList->SetOwner(kTRUE);
186         AliCaloPhotonCuts **analysisClusterCuts = new AliCaloPhotonCuts*[numberOfCuts];
187         MesonCutList->SetOwner(kTRUE);
188         AliConversionMesonCuts **analysisMesonCuts = new AliConversionMesonCuts*[numberOfCuts];
189
190         for(Int_t i = 0; i<numberOfCuts; i++){
191                 analysisEventCuts[i] = new AliConvEventCuts();   
192                 analysisEventCuts[i]->InitializeCutsFromCutString(eventCutArray[i].Data());
193                 EventCutList->Add(analysisEventCuts[i]);
194                 analysisEventCuts[i]->SetFillCutHistograms("",kFALSE);
195                 
196                 analysisCuts[i] = new AliConversionPhotonCuts();
197                 analysisCuts[i]->InitializeCutsFromCutString(photonCutArray[i].Data());
198                 analysisCuts[i]->SetIsHeavyIon(isHeavyIon);
199                 ConvCutList->Add(analysisCuts[i]);
200                 analysisCuts[i]->SetFillCutHistograms("",kFALSE);
201         
202                 analysisClusterCuts[i] = new AliCaloPhotonCuts();
203                 analysisClusterCuts[i]->InitializeCutsFromCutString(clusterCutArray[i].Data());
204                 ClusterCutList->Add(analysisClusterCuts[i]);
205                 analysisClusterCuts[i]->SetFillCutHistograms("");
206                 
207                 analysisMesonCuts[i] = new AliConversionMesonCuts();
208                 analysisMesonCuts[i]->InitializeCutsFromCutString(mesonCutArray[i].Data());
209                 MesonCutList->Add(analysisMesonCuts[i]);
210                 analysisMesonCuts[i]->SetFillCutHistograms("");
211                 analysisEventCuts[i]->SetAcceptedHeader(HeaderList);
212         }
213
214         task->SetEventCutList(numberOfCuts,EventCutList);
215         task->SetConversionCutList(numberOfCuts,ConvCutList);
216         task->SetCaloCutList(numberOfCuts,ClusterCutList);
217         task->SetMesonCutList(numberOfCuts,MesonCutList);
218         task->SetMoveParticleAccordingToVertex(kTRUE);
219         task->SetDoMesonAnalysis(kTRUE);
220         task->SetDoMesonQA(enableQAMesonTask); //Attention new switch for Pi0 QA
221         task->SetDoPhotonQA(enableQAPhotonTask);  //Attention new switch small for Photon QA
222         task->SetDoClusterQA(1);  //Attention new switch small for Cluster QA
223
224         //connect containers
225         AliAnalysisDataContainer *coutput =
226                 mgr->CreateContainer(Form("GammaConvCalo_%i",trainConfig), TList::Class(),
227                                                         AliAnalysisManager::kOutputContainer,Form("GammaConvCalo_%i.root",trainConfig));
228
229         mgr->AddTask(task);
230         mgr->ConnectInput(task,0,cinput);
231         mgr->ConnectOutput(task,1,coutput);
232
233         return;
234
235 }