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Update from Francesco Noferini: Added Macros to PID methods
[u/mrichter/AliRoot.git] / PWGCF / FLOW / macros / AddTaskFlowCentralityPIDQC.C
1 /////////////////////////////////////////////////////////////////////////////////////////////\r
2 //\r
3 // AddTask* macro for flow analysis\r
4 // Creates a Flow Event task and adds it to the analysis manager.\r
5 // Sets the cuts using the correction framework (CORRFW) classes.\r
6 // Also creates Flow Analysis tasks and connects them to the output of the flow event task.\r
7 //\r
8 /////////////////////////////////////////////////////////////////////////////////////////////\r
9 \r
10 void AddTaskFlowCentralityPIDQC( Float_t centrMin=10.,\r
11                                Float_t centrMax=20.,\r
12                                TString fileNameBase="output",\r
13                                Bool_t isPID = kTRUE,\r
14                                AliPID::EParticleType particleType=AliPID::kPion,\r
15                                AliFlowTrackCuts::PIDsource sourcePID = AliFlowTrackCuts::kTOFbayesian,\r
16                                Int_t charge=0,\r
17                                Int_t harmonic=2,\r
18                                Bool_t doQA=kFALSE,\r
19                                TString uniqueStr="" )\r
20 {\r
21   // Define the range for eta subevents (for SP method)\r
22   Double_t minA = -5;\r
23   Double_t maxA = -1.5;\r
24   Double_t minB = 1.5;\r
25   Double_t maxB = 5;\r
26 \r
27   // AFTERBURNER\r
28   Bool_t useAfterBurner=kFALSE;\r
29   Double_t v1=0.0;\r
30   Double_t v2=0.0;\r
31   Double_t v3=0.0;\r
32   Double_t v4=0.0;\r
33   Int_t numberOfTrackClones=0; //non-flow\r
34 \r
35   // Define a range of the detector to exclude\r
36   Bool_t ExcludeRegion = kFALSE;\r
37   Double_t excludeEtaMin = -0.;\r
38   Double_t excludeEtaMax = 0.;\r
39   Double_t excludePhiMin = 0.;\r
40   Double_t excludePhiMax = 0.;\r
41 \r
42   // use physics selection class\r
43   Bool_t  UsePhysicsSelection = kTRUE;\r
44 \r
45   // QA\r
46   Bool_t runQAtask=kFALSE;\r
47   Bool_t FillQAntuple=kFALSE;\r
48   Bool_t DoQAcorrelations=kFALSE;\r
49 \r
50   // RUN SETTINGS\r
51   // Flow analysis method can be:(set to kTRUE or kFALSE)\r
52   Bool_t SP       = kFALSE;  // scalar product method (similar to eventplane method)\r
53   Bool_t QC       = kTRUE;  // cumulants using Q vectors\r
54   \r
55   //these are OBSOLETE, use at own peril\r
56   Bool_t GFC      = kFALSE;  // cumulants based on generating function\r
57   Bool_t MCEP     = kFALSE;  // correlation with Monte Carlo reaction plane\r
58   Bool_t FQD      = kFALSE;  // fit of the distribution of the Q vector (only integrated v)\r
59   Bool_t LYZ1SUM  = kFALSE;  // Lee Yang Zeroes using sum generating function (integrated v)\r
60   Bool_t LYZ1PROD = kFALSE;  // Lee Yang Zeroes using product generating function (integrated v)\r
61   Bool_t LYZ2SUM  = kFALSE; // Lee Yang Zeroes using sum generating function (second pass differential v)\r
62   Bool_t LYZ2PROD = kFALSE; // Lee Yang Zeroes using product generating function (second pass differential v)\r
63   Bool_t LYZEP    = kFALSE; // Lee Yang Zeroes Event plane using sum generating function (gives eventplane + weight)\r
64   Bool_t MH       = kFALSE;  // azimuthal correlators in mixed harmonics  \r
65   Bool_t NL       = kFALSE;  // nested loops (for instance distribution of phi1-phi2 for all distinct pairs)\r
66 \r
67   Bool_t METHODS[] = {SP,LYZ1SUM,LYZ1PROD,LYZ2SUM,LYZ2PROD,LYZEP,GFC,QC,FQD,MCEP,MH,NL};\r
68 \r
69   // Boolean to use/not use weights for the Q vector\r
70   Bool_t WEIGHTS[] = {kFALSE,kFALSE,kFALSE}; //Phi, v'(pt), v'(eta)\r
71 \r
72   // SETTING THE CUTS\r
73 \r
74   //---------Data selection----------\r
75   //kMC, kGlobal, kESD_TPConly, kESD_SPDtracklet\r
76   AliFlowTrackCuts::trackParameterType rptype = AliFlowTrackCuts::kTPCstandalone;\r
77   AliFlowTrackCuts::trackParameterType poitype = AliFlowTrackCuts::kTPCstandalone;\r
78 \r
79   //---------Parameter mixing--------\r
80   //kPure - no mixing, kTrackWithMCkine, kTrackWithMCPID, kTrackWithMCpt\r
81   AliFlowTrackCuts::trackParameterMix rpmix = AliFlowTrackCuts::kPure;\r
82   AliFlowTrackCuts::trackParameterMix poimix = AliFlowTrackCuts::kPure;\r
83 \r
84 \r
85   const char* rptypestr = AliFlowTrackCuts::GetParamTypeName(rptype);\r
86   const char* poitypestr = AliFlowTrackCuts::GetParamTypeName(poitype);\r
87 \r
88   //===========================================================================\r
89   // EVENTS CUTS:\r
90   AliFlowEventCuts* cutsEvent = new AliFlowEventCuts("event cuts");\r
91   cutsEvent->SetCentralityPercentileRange(centrMin,centrMax);\r
92   cutsEvent->SetCentralityPercentileMethod(AliFlowEventCuts::kV0);\r
93   cutsEvent->SetRefMultMethod(AliFlowEventCuts::kV0);\r
94   //cutsEvent->SetCentralityPercentileMethod(AliFlowEventCuts::kSPD1tracklets);\r
95 //  cutsEvent->SetNContributorsRange(2);\r
96   cutsEvent->SetPrimaryVertexZrange(-10.,10.);\r
97   cutsEvent->SetQA(doQA);\r
98   \r
99   // RP TRACK CUTS:\r
100   AliFlowTrackCuts* cutsRP2 = AliFlowTrackCuts::GetStandardVZEROOnlyTrackCuts();\r
101   AliFlowTrackCuts* cutsRP = new AliFlowTrackCuts("TPConlyRP");\r
102   cutsRP->SetParamType(rptype);\r
103   cutsRP->SetParamMix(rpmix);\r
104   cutsRP->SetPtRange(0.2,5.);\r
105   cutsRP->SetEtaRange(-0.8,0.8);\r
106   cutsRP->SetMinNClustersTPC(70);\r
107 //  cutsRP->SetMinChi2PerClusterTPC(0.1);\r
108 //  cutsRP->SetMaxChi2PerClusterTPC(4.0);\r
109   cutsRP->SetMaxDCAToVertexXY(3.0);\r
110   cutsRP->SetMaxDCAToVertexZ(3.0);\r
111   cutsRP->SetAcceptKinkDaughters(kFALSE);\r
112   cutsRP->SetMinimalTPCdedx(10.);\r
113   cutsRP->SetQA(doQA);\r
114 \r
115   // POI TRACK CUTS:\r
116   AliFlowTrackCuts* cutsPOI = new AliFlowTrackCuts("GlobalPOI");\r
117   cutsPOI->SetParamType(poitype);\r
118   cutsPOI->SetParamMix(poimix);\r
119   cutsPOI->SetPtRange(0.0,10.);\r
120   cutsPOI->SetEtaRange(-0.8,0.8);\r
121   //cutsPOI->SetRequireCharge(kTRUE);\r
122   //cutsPOI->SetPID(PdgRP);\r
123   cutsPOI->SetMinNClustersTPC(70);\r
124 //  cutsPOI->SetMinChi2PerClusterTPC(0.1);\r
125 //  cutsPOI->SetMaxChi2PerClusterTPC(4.0);\r
126 //  cutsPOI->SetRequireITSRefit(kTRUE);\r
127 //  cutsPOI->SetRequireTPCRefit(kTRUE);\r
128 //  cutsPOI->SetMinNClustersITS(2);\r
129   //cutsPOI->SetMaxChi2PerClusterITS(1.e+09);\r
130   cutsPOI->SetMaxDCAToVertexXY(3.0);\r
131   cutsPOI->SetMaxDCAToVertexZ(3.0);\r
132   //cutsPOI->SetDCAToVertex2D(kTRUE);\r
133   //cutsPOI->SetMaxNsigmaToVertex(1.e+10);\r
134   //cutsPOI->SetRequireSigmaToVertex(kFALSE);\r
135   cutsPOI->SetAcceptKinkDaughters(kFALSE);\r
136   if(isPID) cutsPOI->SetPID(particleType, sourcePID);\r
137   if (charge!=0) cutsPOI->SetCharge(charge);\r
138   //cutsPOI->SetAllowTOFmismatch(kFALSE);\r
139   cutsPOI->SetRequireStrictTOFTPCagreement(kTRUE);\r
140   //iexample: francesco's tunig TPC Bethe Bloch for data:\r
141   //cutsPOI->GetESDpid().GetTPCResponse().SetBetheBlochParameters(4.36414e-02,1.75977e+01,1.14385e-08,2.27907e+00,3.36699e+00);\r
142   //cutsPOI->GetESDpid().GetTPCResponse().SetMip(49);\r
143   cutsPOI->SetMinimalTPCdedx(10.);\r
144   cutsPOI->SetQA(doQA);\r
145   cutsPOI->SetPriors((centrMin+centrMax)*0.5); // set priors and PID as a function of the centrality\r
146 \r
147   TString outputSlotName("");\r
148   outputSlotName+=uniqueStr;\r
149   outputSlotName+=Form("QC(%i) ",harmonic);\r
150   outputSlotName+=cutsRP->GetName();\r
151   outputSlotName+=" ";\r
152   outputSlotName+=cutsPOI->GetName();\r
153   outputSlotName+=Form(" %.0f-",centrMin);\r
154   outputSlotName+=Form("%.0f ",centrMax);\r
155   if(isPID){\r
156      outputSlotName+=AliFlowTrackCuts::PIDsourceName(sourcePID);\r
157      outputSlotName+=" ";\r
158      outputSlotName+=AliPID::ParticleName(particleType);\r
159   }\r
160   else{\r
161      outputSlotName+="AllCharged";\r
162   }\r
163   if (charge<0) outputSlotName+="-";\r
164   if (charge>0) outputSlotName+="+";\r
165 \r
166   TString fileName(fileNameBase);\r
167   fileName.Append(".root");\r
168 \r
169   Bool_t useWeights  = WEIGHTS[0] || WEIGHTS[1] || WEIGHTS[2];\r
170   if (useWeights) cout<<"Weights are used"<<endl;\r
171   else cout<<"Weights are not used"<<endl;\r
172   \r
173   // Get the pointer to the existing analysis manager via the static access method.\r
174   //==============================================================================\r
175   AliAnalysisManager *mgr = AliAnalysisManager::GetAnalysisManager();\r
176   if (!mgr) {\r
177     Error("AddTaskFlowEvent", "No analysis manager to connect to.");\r
178     return NULL;\r
179   }\r
180   \r
181   // Check the analysis type using the event handlers connected to the analysis\r
182   // manager. The availability of MC handler can also be checked here.\r
183   //==============================================================================\r
184   if (!mgr->GetInputEventHandler()) {\r
185     ::Error("AddTaskFlowEvent", "This task requires an input event handler");\r
186     return NULL;\r
187   }  \r
188 \r
189   // Open external input files\r
190   //===========================================================================\r
191   //weights: \r
192   TFile *weightsFile = NULL;\r
193   TList *weightsList = NULL;\r
194 \r
195   if(useWeights) {\r
196     //open the file with the weights:\r
197     weightsFile = TFile::Open("weights.root","READ");\r
198     if(weightsFile) {\r
199       //access the list which holds the histos with weigths:\r
200       weightsList = (TList*)weightsFile->Get("weights");\r
201     }\r
202     else {\r
203       cout<<" WARNING: the file <weights.root> with weights from the previous run was not available."<<endl;\r
204       break;\r
205     } \r
206   }\r
207   \r
208   //LYZ2\r
209   if (LYZ2SUM || LYZ2PROD) {\r
210     //read the outputfile of the first run\r
211     TString outputFileName = "AnalysisResults1.root";\r
212     TString pwd(gSystem->pwd());\r
213     pwd+="/";\r
214     pwd+=outputFileName.Data();\r
215     TFile *outputFile = NULL;\r
216     if(gSystem->AccessPathName(pwd.Data(),kFileExists)) {\r
217       cout<<"WARNING: You do not have an output file:"<<endl;\r
218       cout<<"         "<<pwd.Data()<<endl;\r
219       exit(0);\r
220     } else { outputFile = TFile::Open(pwd.Data(),"READ");}\r
221     \r
222     if (LYZ2SUM){  \r
223       // read the output directory from LYZ1SUM \r
224       TString inputFileNameLYZ2SUM = "outputLYZ1SUManalysis" ;\r
225       inputFileNameLYZ2SUM += rptypestr;\r
226       cout<<"The input directory is "<<inputFileNameLYZ2SUM.Data()<<endl;\r
227       TFile* fInputFileLYZ2SUM = (TFile*)outputFile->FindObjectAny(inputFileNameLYZ2SUM.Data());\r
228       if(!fInputFileLYZ2SUM || fInputFileLYZ2SUM->IsZombie()) { \r
229         cerr << " ERROR: To run LYZ2SUM you need the output file from LYZ1SUM. This file is not there! Please run LYZ1SUM first." << endl ; \r
230         break;\r
231       }\r
232       else {\r
233         TList* fInputListLYZ2SUM = (TList*)fInputFileLYZ2SUM->Get("LYZ1SUM");\r
234         if (!fInputListLYZ2SUM) {cout<<"list is NULL pointer!"<<endl;}\r
235       }\r
236       cout<<"LYZ2SUM input file/list read..."<<endl;\r
237     }\r
238 \r
239     if (LYZ2PROD){  \r
240       // read the output directory from LYZ1PROD \r
241       TString inputFileNameLYZ2PROD = "outputLYZ1PRODanalysis" ;\r
242       inputFileNameLYZ2PROD += rptypestr;\r
243       cout<<"The input directory is "<<inputFileNameLYZ2PROD.Data()<<endl;\r
244       TFile* fInputFileLYZ2PROD = (TFile*)outputFile->FindObjectAny(inputFileNameLYZ2PROD.Data());\r
245       if(!fInputFileLYZ2PROD || fInputFileLYZ2PROD->IsZombie()) { \r
246         cerr << " ERROR: To run LYZ2PROD you need the output file from LYZ1PROD. This file is not there! Please run LYZ1PROD first." << endl ; \r
247         break;\r
248       }\r
249       else {\r
250         TList* fInputListLYZ2PROD = (TList*)fInputFileLYZ2PROD->Get("LYZ1PROD");\r
251         if (!fInputListLYZ2PROD) {cout<<"list is NULL pointer!"<<endl;}\r
252       }\r
253       cout<<"LYZ2PROD input file/list read..."<<endl;\r
254     }\r
255   }\r
256 \r
257   if (LYZEP) {\r
258     //read the outputfile of the second run\r
259     TString outputFileName = "AnalysisResults2.root";\r
260     TString pwd(gSystem->pwd());\r
261     pwd+="/";\r
262     pwd+=outputFileName.Data();\r
263     TFile *outputFile = NULL;\r
264     if(gSystem->AccessPathName(pwd.Data(),kFileExists)) {\r
265       cout<<"WARNING: You do not have an output file:"<<endl;\r
266       cout<<"         "<<pwd.Data()<<endl;\r
267       exit(0);\r
268     } else {\r
269       outputFile = TFile::Open(pwd.Data(),"READ");\r
270     }\r
271     \r
272     // read the output file from LYZ2SUM\r
273     TString inputFileNameLYZEP = "outputLYZ2SUManalysis" ;\r
274     inputFileNameLYZEP += rptypestr;\r
275     cout<<"The input file is "<<inputFileNameLYZEP.Data()<<endl;\r
276     TFile* fInputFileLYZEP = (TFile*)outputFile->FindObjectAny(inputFileNameLYZEP.Data());\r
277     if(!fInputFileLYZEP || fInputFileLYZEP->IsZombie()) { \r
278       cerr << " ERROR: To run LYZEP you need the output file from LYZ2SUM. This file is not there! Please run LYZ2SUM first." << endl ; \r
279       break;\r
280     }\r
281     else {\r
282       TList* fInputListLYZEP = (TList*)fInputFileLYZEP->Get("LYZ2SUM");\r
283       if (!fInputListLYZEP) {cout<<"list is NULL pointer!"<<endl;}\r
284     }\r
285     cout<<"LYZEP input file/list read..."<<endl;\r
286   }\r
287   \r
288   \r
289   // Create the FMD task and add it to the manager\r
290   //===========================================================================\r
291   if (rptypestr == "FMD") {\r
292     AliFMDAnalysisTaskSE *taskfmd = NULL;\r
293     if (rptypestr == "FMD") {\r
294       taskfmd = new AliFMDAnalysisTaskSE("TaskFMD");\r
295       mgr->AddTask(taskfmd);\r
296       \r
297       AliFMDAnaParameters* pars = AliFMDAnaParameters::Instance();\r
298       pars->Init();\r
299       pars->SetProcessPrimary(kTRUE); //for MC only\r
300       pars->SetProcessHits(kFALSE);\r
301       \r
302       //pars->SetRealData(kTRUE); //for real data\r
303       //pars->SetProcessPrimary(kFALSE); //for real data\r
304     }\r
305   }\r
306   \r
307   // Create the flow event task, add it to the manager.\r
308   //===========================================================================\r
309   AliAnalysisTaskFlowEvent *taskFE = NULL;\r
310 \r
311   if(useAfterBurner)\r
312     { \r
313       taskFE = new AliAnalysisTaskFlowEvent(Form("TaskFlowEvent %s",outputSlotName.Data()),"",doQA,1);\r
314       taskFE->SetFlow(v1,v2,v3,v4); \r
315       taskFE->SetNonFlowNumberOfTrackClones(numberOfTrackClones);\r
316       taskFE->SetAfterburnerOn();\r
317     }\r
318   else {taskFE = new AliAnalysisTaskFlowEvent(Form("TaskFlowEvent %s",outputSlotName.Data()),"",doQA); }\r
319   if (ExcludeRegion) {\r
320     taskFE->DefineDeadZone(excludeEtaMin, excludeEtaMax, excludePhiMin, excludePhiMax); \r
321   }\r
322   taskFE->SetSubeventEtaRange(minA, maxA, minB, maxB);\r
323   if (UsePhysicsSelection) {\r
324     taskFE->SelectCollisionCandidates(AliVEvent::kMB);\r
325     cout<<"Using Physics Selection"<<endl;\r
326   }\r
327   mgr->AddTask(taskFE);\r
328   \r
329   // Pass cuts for RPs and POIs to the task:\r
330   taskFE->SetCutsEvent(cutsEvent);\r
331   taskFE->SetCutsRP(cutsRP);\r
332   taskFE->SetCutsPOI(cutsPOI);\r
333   if (cutsRP->GetParamType()==AliFlowTrackCuts::kV0)\r
334   { \r
335     //TODO: since this is set in a static object all analyses in an analysis train\r
336     //will be affected.\r
337     taskFE->SetHistWeightvsPhiMin(0.);\r
338     taskFE->SetHistWeightvsPhiMax(200.);\r
339   }\r
340 \r
341   // Create the analysis tasks, add them to the manager.\r
342   //===========================================================================\r
343   if (SP){\r
344     AliAnalysisTaskScalarProduct *taskSP = new AliAnalysisTaskScalarProduct(Form("TaskScalarProduct %s",outputSlotName.Data()),WEIGHTS[0]);\r
345     taskSP->SetRelDiffMsub(1.0);\r
346     taskSP->SetApplyCorrectionForNUA(kTRUE);\r
347     mgr->AddTask(taskSP);\r
348   }\r
349   if (LYZ1SUM){\r
350     AliAnalysisTaskLeeYangZeros *taskLYZ1SUM = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosSUM %s",outputSlotName.Data()),kTRUE);\r
351     taskLYZ1SUM->SetFirstRunLYZ(kTRUE);\r
352     taskLYZ1SUM->SetUseSumLYZ(kTRUE);\r
353     mgr->AddTask(taskLYZ1SUM);\r
354   }\r
355   if (LYZ1PROD){\r
356     AliAnalysisTaskLeeYangZeros *taskLYZ1PROD = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosPROD %s",outputSlotName.Data()),kTRUE);\r
357     taskLYZ1PROD->SetFirstRunLYZ(kTRUE);\r
358     taskLYZ1PROD->SetUseSumLYZ(kFALSE);\r
359     mgr->AddTask(taskLYZ1PROD);\r
360   }\r
361   if (LYZ2SUM){\r
362     AliAnalysisTaskLeeYangZeros *taskLYZ2SUM = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosSUM %s",outputSlotName.Data()),kFALSE);\r
363     taskLYZ2SUM->SetFirstRunLYZ(kFALSE);\r
364     taskLYZ2SUM->SetUseSumLYZ(kTRUE);\r
365     mgr->AddTask(taskLYZ2SUM);\r
366   }\r
367   if (LYZ2PROD){\r
368     AliAnalysisTaskLeeYangZeros *taskLYZ2PROD = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosPROD %s",outputSlotName.Data()),kFALSE);\r
369     taskLYZ2PROD->SetFirstRunLYZ(kFALSE);\r
370     taskLYZ2PROD->SetUseSumLYZ(kFALSE);\r
371     mgr->AddTask(taskLYZ2PROD);\r
372   }\r
373   if (LYZEP){\r
374     AliAnalysisTaskLYZEventPlane *taskLYZEP = new AliAnalysisTaskLYZEventPlane(Form("TaskLYZEventPlane %s",outputSlotName.Data()));\r
375     mgr->AddTask(taskLYZEP);\r
376   }\r
377   if (GFC){\r
378     AliAnalysisTaskCumulants *taskGFC = new AliAnalysisTaskCumulants(Form("TaskCumulants %s",outputSlotName.Data()),useWeights);\r
379     taskGFC->SetUsePhiWeights(WEIGHTS[0]); \r
380     taskGFC->SetUsePtWeights(WEIGHTS[1]);\r
381     taskGFC->SetUseEtaWeights(WEIGHTS[2]); \r
382     mgr->AddTask(taskGFC);\r
383   }\r
384   if (QC){\r
385     AliAnalysisTaskQCumulants *taskQC = new AliAnalysisTaskQCumulants(Form("TaskQCumulants %s",outputSlotName.Data()),useWeights);\r
386     taskQC->SetUsePhiWeights(WEIGHTS[0]); \r
387     taskQC->SetUsePtWeights(WEIGHTS[1]);\r
388     taskQC->SetUseEtaWeights(WEIGHTS[2]); \r
389     taskQC->SetCalculateCumulantsVsM(kFALSE);\r
390     taskQC->SetnBinsMult(10000);\r
391     taskQC->SetMinMult(0.);\r
392     taskQC->SetMaxMult(10000.);\r
393     taskQC->SetHarmonic(harmonic);\r
394     taskQC->SetApplyCorrectionForNUA(kFALSE);\r
395     taskQC->SetFillMultipleControlHistograms(kFALSE);     \r
396     mgr->AddTask(taskQC);\r
397   }\r
398   if (FQD){\r
399     AliAnalysisTaskFittingQDistribution *taskFQD = new AliAnalysisTaskFittingQDistribution(Form("TaskFittingQDistribution %s",outputSlotName.Data()),kFALSE);\r
400     taskFQD->SetUsePhiWeights(WEIGHTS[0]); \r
401     taskFQD->SetqMin(0.);\r
402     taskFQD->SetqMax(1000.);\r
403     taskFQD->SetqNbins(10000);\r
404     mgr->AddTask(taskFQD);\r
405   }\r
406   if (MCEP){\r
407     AliAnalysisTaskMCEventPlane *taskMCEP = new AliAnalysisTaskMCEventPlane(Form("TaskMCEventPlane %s",outputSlotName.Data()));\r
408     mgr->AddTask(taskMCEP);\r
409   }\r
410   if (MH){\r
411     AliAnalysisTaskMixedHarmonics *taskMH = new AliAnalysisTaskMixedHarmonics(Form("TaskMixedHarmonics %s",outputSlotName.Data()),useWeights);\r
412     taskMH->SetHarmonic(1); // n in cos[n(phi1+phi2-2phi3)] and cos[n(psi1+psi2-2phi3)]\r
413     taskMH->SetNoOfMultipicityBins(10000);\r
414     taskMH->SetMultipicityBinWidth(1.);\r
415     taskMH->SetMinMultiplicity(1.);\r
416     taskMH->SetCorrectForDetectorEffects(kTRUE);\r
417     taskMH->SetEvaluateDifferential3pCorrelator(kFALSE); // evaluate <<cos[n(psi1+psi2-2phi3)]>> (Remark: two nested loops)    \r
418     taskMH->SetOppositeChargesPOI(kFALSE); // POIs psi1 and psi2 in cos[n(psi1+psi2-2phi3)] will have opposite charges  \r
419     mgr->AddTask(taskMH);\r
420   }  \r
421   if (NL){\r
422     AliAnalysisTaskNestedLoops *taskNL = new AliAnalysisTaskNestedLoops(Form("TaskNestedLoops %s",outputSlotName.Data()),useWeights);\r
423     taskNL->SetHarmonic(1); // n in cos[n(phi1+phi2-2phi3)] and cos[n(psi1+psi2-2phi3)]\r
424     taskNL->SetEvaluateNestedLoopsForRAD(kTRUE); // RAD = Relative Angle Distribution\r
425     taskNL->SetEvaluateNestedLoopsForMH(kTRUE); // evalaute <<cos[n(phi1+phi2-2phi3)]>> (Remark: three nested loops)   \r
426     taskNL->SetEvaluateDifferential3pCorrelator(kFALSE); // evaluate <<cos[n(psi1+psi2-2phi3)]>>  (Remark: three nested loops)   \r
427     taskNL->SetOppositeChargesPOI(kFALSE); // POIs psi1 and psi2 in cos[n(psi1+psi2-2phi3)] will have opposite charges  \r
428     mgr->AddTask(taskNL);\r
429   }\r
430 \r
431   // Create the output container for the data produced by the task\r
432   // Connect to the input and output containers\r
433   //===========================================================================\r
434   AliAnalysisDataContainer *cinput1 = mgr->GetCommonInputContainer();\r
435   \r
436   if (rptypestr == "FMD") {\r
437     AliAnalysisDataContainer *coutputFMD = \r
438       mgr->CreateContainer(Form("BackgroundCorrected %s",outputSlotName.Data()), TList::Class(), AliAnalysisManager::kExchangeContainer);\r
439     //input and output taskFMD     \r
440     mgr->ConnectInput(taskfmd, 0, cinput1);\r
441     mgr->ConnectOutput(taskfmd, 1, coutputFMD);\r
442     //input into taskFE\r
443     mgr->ConnectInput(taskFE,1,coutputFMD);\r
444   }\r
445   \r
446   AliAnalysisDataContainer *coutputFE = \r
447   mgr->CreateContainer(Form("FlowEventSimple %s",outputSlotName.Data()),AliFlowEventSimple::Class(),AliAnalysisManager::kExchangeContainer);\r
448   mgr->ConnectInput(taskFE,0,cinput1); \r
449   mgr->ConnectOutput(taskFE,1,coutputFE);\r
450  \r
451   if (taskFE->GetQAOn())\r
452   {\r
453     TString outputQA = fileName;\r
454     outputQA += ":QA";\r
455     AliAnalysisDataContainer* coutputFEQA = \r
456     mgr->CreateContainer(Form("QA %s",outputSlotName.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputQA);\r
457     mgr->ConnectOutput(taskFE,2,coutputFEQA);\r
458   }\r
459 \r
460   // Create the output containers for the data produced by the analysis tasks\r
461   // Connect to the input and output containers\r
462   //===========================================================================\r
463   if (useWeights) {    \r
464     AliAnalysisDataContainer *cinputWeights = mgr->CreateContainer(Form("Weights %s",outputSlotName.Data()),\r
465                                                                    TList::Class(),AliAnalysisManager::kInputContainer); \r
466   }\r
467 \r
468   if(SP) {\r
469     TString outputSP = fileName;\r
470     outputSP += ":outputSPanalysis";\r
471     outputSP+= rptypestr;\r
472     AliAnalysisDataContainer *coutputSP = mgr->CreateContainer(Form("SP %s",outputSlotName.Data()), \r
473                                                                TList::Class(),AliAnalysisManager::kOutputContainer,outputSP); \r
474     mgr->ConnectInput(taskSP,0,coutputFE); \r
475     mgr->ConnectOutput(taskSP,1,coutputSP); \r
476     if (WEIGHTS[0]) {\r
477       mgr->ConnectInput(taskSP,1,cinputWeights);\r
478       cinputWeights->SetData(weightsList);\r
479     }\r
480   }\r
481   if(LYZ1SUM) {\r
482     TString outputLYZ1SUM = fileName;\r
483     outputLYZ1SUM += ":outputLYZ1SUManalysis";\r
484     outputLYZ1SUM+= rptypestr;\r
485     AliAnalysisDataContainer *coutputLYZ1SUM = mgr->CreateContainer(Form("LYZ1SUM %s",outputSlotName.Data()), \r
486                                                                     TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ1SUM); \r
487     mgr->ConnectInput(taskLYZ1SUM,0,coutputFE);\r
488     mgr->ConnectOutput(taskLYZ1SUM,1,coutputLYZ1SUM);\r
489   }\r
490   if(LYZ1PROD) {\r
491     TString outputLYZ1PROD = fileName;\r
492     outputLYZ1PROD += ":outputLYZ1PRODanalysis";\r
493     outputLYZ1PROD+= rptypestr;\r
494     AliAnalysisDataContainer *coutputLYZ1PROD = mgr->CreateContainer(Form("LYZ1PROD %s",outputSlotName.Data()), \r
495                                                                      TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ1PROD); \r
496     mgr->ConnectInput(taskLYZ1PROD,0,coutputFE); \r
497     mgr->ConnectOutput(taskLYZ1PROD,1,coutputLYZ1PROD);\r
498   }\r
499   if(LYZ2SUM) {\r
500     AliAnalysisDataContainer *cinputLYZ2SUM = mgr->CreateContainer(Form("LYZ2SUMin %s",outputSlotName.Data()),\r
501                                                                    TList::Class(),AliAnalysisManager::kInputContainer);\r
502     TString outputLYZ2SUM = fileName;\r
503     outputLYZ2SUM += ":outputLYZ2SUManalysis";\r
504     outputLYZ2SUM+= rptypestr;\r
505     \r
506     AliAnalysisDataContainer *coutputLYZ2SUM = mgr->CreateContainer(Form("LYZ2SUM %s",outputSlotName.Data()), \r
507                                                                     TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ2SUM); \r
508     mgr->ConnectInput(taskLYZ2SUM,0,coutputFE); \r
509     mgr->ConnectInput(taskLYZ2SUM,1,cinputLYZ2SUM);\r
510     mgr->ConnectOutput(taskLYZ2SUM,1,coutputLYZ2SUM); \r
511     cinputLYZ2SUM->SetData(fInputListLYZ2SUM);\r
512   }\r
513   if(LYZ2PROD) {\r
514     AliAnalysisDataContainer *cinputLYZ2PROD = mgr->CreateContainer(Form("LYZ2PRODin %s",outputSlotName.Data()),\r
515                                                                     TList::Class(),AliAnalysisManager::kInputContainer);\r
516     TString outputLYZ2PROD = fileName;\r
517     outputLYZ2PROD += ":outputLYZ2PRODanalysis";\r
518     outputLYZ2PROD+= rptypestr;\r
519     \r
520     AliAnalysisDataContainer *coutputLYZ2PROD = mgr->CreateContainer(Form("LYZ2PROD %s",outputSlotName.Data()), \r
521                                                                      TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ2PROD); \r
522     mgr->ConnectInput(taskLYZ2PROD,0,coutputFE); \r
523     mgr->ConnectInput(taskLYZ2PROD,1,cinputLYZ2PROD);\r
524     mgr->ConnectOutput(taskLYZ2PROD,1,coutputLYZ2PROD); \r
525     cinputLYZ2PROD->SetData(fInputListLYZ2PROD);\r
526   }\r
527   if(LYZEP) {\r
528     AliAnalysisDataContainer *cinputLYZEP = mgr->CreateContainer(Form("LYZEPin %s",outputSlotName.Data()),\r
529                                                                  TList::Class(),AliAnalysisManager::kInputContainer);\r
530     TString outputLYZEP = fileName;\r
531     outputLYZEP += ":outputLYZEPanalysis";\r
532     outputLYZEP+= rptypestr;\r
533     \r
534     AliAnalysisDataContainer *coutputLYZEP = mgr->CreateContainer(Form("LYZEP %s",outputSlotName.Data()), \r
535                                                                   TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZEP); \r
536     mgr->ConnectInput(taskLYZEP,0,coutputFE); \r
537     mgr->ConnectInput(taskLYZEP,1,cinputLYZEP);\r
538     mgr->ConnectOutput(taskLYZEP,1,coutputLYZEP); \r
539     cinputLYZEP->SetData(fInputListLYZEP);\r
540   }\r
541   if(GFC) {\r
542     TString outputGFC = fileName;\r
543     outputGFC += ":outputGFCanalysis";\r
544     outputGFC+= rptypestr;\r
545     \r
546     AliAnalysisDataContainer *coutputGFC = mgr->CreateContainer(Form("GFC %s",outputSlotName.Data()), \r
547                                                                 TList::Class(),AliAnalysisManager::kOutputContainer,outputGFC); \r
548     mgr->ConnectInput(taskGFC,0,coutputFE); \r
549     mgr->ConnectOutput(taskGFC,1,coutputGFC);\r
550     if (useWeights) {\r
551       mgr->ConnectInput(taskGFC,1,cinputWeights);\r
552       cinputWeights->SetData(weightsList);\r
553     } \r
554   }\r
555   if(QC) {\r
556     TString outputQC = fileName;\r
557     outputQC += ":outputQCanalysis";\r
558     outputQC+= rptypestr;\r
559 \r
560     AliAnalysisDataContainer *coutputQC = mgr->CreateContainer(Form("QC %s",outputSlotName.Data()), \r
561                                                                TList::Class(),AliAnalysisManager::kOutputContainer,outputQC); \r
562     mgr->ConnectInput(taskQC,0,coutputFE); \r
563     mgr->ConnectOutput(taskQC,1,coutputQC);\r
564     if (useWeights) {\r
565       mgr->ConnectInput(taskQC,1,cinputWeights);\r
566       cinputWeights->SetData(weightsList);\r
567     }\r
568   }\r
569   if(FQD) {\r
570     TString outputFQD = fileName;\r
571     outputFQD += ":outputFQDanalysis";\r
572     outputFQD+= rptypestr;\r
573     \r
574     AliAnalysisDataContainer *coutputFQD = mgr->CreateContainer(Form("FQD %s",outputSlotName.Data()), \r
575                                                                 TList::Class(),AliAnalysisManager::kOutputContainer,outputFQD); \r
576     mgr->ConnectInput(taskFQD,0,coutputFE); \r
577     mgr->ConnectOutput(taskFQD,1,coutputFQD);\r
578     if(useWeights) {\r
579       mgr->ConnectInput(taskFQD,1,cinputWeights);\r
580       cinputWeights->SetData(weightsList);\r
581     } \r
582   }\r
583   if(MCEP) {\r
584     TString outputMCEP = fileName;\r
585     outputMCEP += ":outputMCEPanalysis";\r
586     outputMCEP+= rptypestr;\r
587     \r
588     AliAnalysisDataContainer *coutputMCEP = mgr->CreateContainer(Form("MCEP %s",outputSlotName.Data()), \r
589                                                                  TList::Class(),AliAnalysisManager::kOutputContainer,outputMCEP); \r
590     mgr->ConnectInput(taskMCEP,0,coutputFE);\r
591     mgr->ConnectOutput(taskMCEP,1,coutputMCEP); \r
592   }\r
593   if(MH) {\r
594     TString outputMH = fileName;\r
595     outputMH += ":outputMHanalysis";\r
596     outputMH += rptypestr;\r
597         \r
598     AliAnalysisDataContainer *coutputMH = mgr->CreateContainer(Form("MH %s",outputSlotName.Data()), \r
599                                                                TList::Class(),AliAnalysisManager::kOutputContainer,outputMH); \r
600     mgr->ConnectInput(taskMH,0,coutputFE); \r
601     mgr->ConnectOutput(taskMH,1,coutputMH); \r
602     //if (useWeights) {\r
603     //  mgr->ConnectInput(taskMH,1,cinputWeights);\r
604     //  cinputWeights->SetData(weightsList);\r
605     //} \r
606   }\r
607   if(NL) {\r
608     TString outputNL = fileName;\r
609     outputNL += ":outputNLanalysis";\r
610     outputNL += rptypestr;\r
611 \r
612     AliAnalysisDataContainer *coutputNL = mgr->CreateContainer(Form("NL %s",outputSlotName.Data()), \r
613                                                                TList::Class(),AliAnalysisManager::kOutputContainer,outputNL); \r
614     mgr->ConnectInput(taskNL,0,coutputFE);\r
615     mgr->ConnectOutput(taskNL,1,coutputNL);\r
616     //if (useWeights) {\r
617     //  mgr->ConnectInput(taskNL,1,cinputWeights);\r
618     //  cinputWeights->SetData(weightsList);\r
619     //} \r
620   }\r
621 \r
622   ///////////////////////////////////////////////////////////////////////////////////////////\r
623   if (runQAtask)\r
624   {\r
625     AliAnalysisTaskQAflow* taskQAflow = new AliAnalysisTaskQAflow(Form("TaskQAflow %s",outputSlotName.Data()));\r
626     taskQAflow->SetEventCuts(cutsEvent);\r
627     taskQAflow->SetTrackCuts(cutsRP);\r
628     taskQAflow->SetFillNTuple(FillQAntuple);\r
629     taskQAflow->SetDoCorrelations(DoQAcorrelations);\r
630     mgr->AddTask(taskQAflow);\r
631     \r
632     Printf("outputSlotName %s",outputSlotName.Data());\r
633     TString taskQAoutputFileName(fileNameBase);\r
634     taskQAoutputFileName.Append("_QA.root");\r
635     AliAnalysisDataContainer* coutputQAtask = mgr->CreateContainer(Form("flowQA %s",outputSlotName.Data()),\r
636                                               TObjArray::Class(),\r
637                                               AliAnalysisManager::kOutputContainer,\r
638                                               taskQAoutputFileName);\r
639     AliAnalysisDataContainer* coutputQAtaskTree = mgr->CreateContainer(Form("flowQAntuple %s",outputSlotName.Data()),\r
640                                               TNtuple::Class(),\r
641                                               AliAnalysisManager::kOutputContainer,\r
642                                               taskQAoutputFileName);\r
643     mgr->ConnectInput(taskQAflow,0,mgr->GetCommonInputContainer());\r
644     mgr->ConnectInput(taskQAflow,1,coutputFE);\r
645     mgr->ConnectOutput(taskQAflow,1,coutputQAtask);\r
646     if (FillQAntuple) mgr->ConnectOutput(taskQAflow,2,coutputQAtaskTree);\r
647   }\r
648 }\r
649 \r
650 \r
651 \r
652 \r
653 \r