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[u/mrichter/AliRoot.git] / PWGCF / FLOW / macros / AddTaskFlowCentralityPIDMH.C
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6ed94626 1/////////////////////////////////////////////////////////////////////////////////////////////
2//
3// AddTask* macro for flow analysis
4// Creates a Flow Event task and adds it to the analysis manager.
5// Sets the cuts using the correction framework (CORRFW) classes.
6// Also creates Flow Analysis tasks and connects them to the output of the flow event task.
7//
8/////////////////////////////////////////////////////////////////////////////////////////////
9
10void AddTaskFlowCentralityPIDMH(Int_t centralitysel = AliVEvent::kMB | AliVEvent::kCentral | AliVEvent::kSemiCentral,
11 Float_t centrMin=10.,
12 Float_t centrMax=20.,
13 Bool_t isPID = kTRUE,
14 AliPID::EParticleType particleType=AliPID::kPion,
15 AliFlowTrackCuts::PIDsource sourcePID = AliFlowTrackCuts::kTOFbayesian,
16 Int_t chargeRP=0,
17 Int_t chargePOI=0,
18 Int_t aodBit=1,
19 Int_t harmonic=2,
20 Bool_t doQA=kFALSE,
21 TString uniqueStr="",
22 TString fileNameBase="output") {
23 // Define the range for eta subevents (for SP method)
24 Double_t minA = -5;
25 Double_t maxA = -1.5;
26 Double_t minB = 1.5;
27 Double_t maxB = 5;
28
29 Float_t etamin=-0.8;
30 Float_t etamax=0.8;
31
32 // AFTERBURNER
33 Bool_t useAfterBurner=kFALSE;
34 Double_t v1=0.0;
35 Double_t v2=0.0;
36 Double_t v3=0.0;
37 Double_t v4=0.0;
38 Int_t numberOfTrackClones=0; //non-flow
39
40 // Define a range of the detector to exclude
41 Bool_t ExcludeRegion = kFALSE;
42 Double_t excludeEtaMin = -0.;
43 Double_t excludeEtaMax = 0.;
44 Double_t excludePhiMin = 0.;
45 Double_t excludePhiMax = 0.;
46
47 // use physics selection class
48 Bool_t UsePhysicsSelection = kFALSE;
49
50 // QA
51 Bool_t runQAtask=kFALSE;
52 Bool_t FillQAntuple=kFALSE;
53 Bool_t DoQAcorrelations=kFALSE;
54
55 // RUN SETTINGS
56 // Flow analysis method can be:(set to kTRUE or kFALSE)
57 Bool_t SP = kTRUE; // scalar product method (similar to eventplane method)
58 Bool_t QC = kTRUE; // cumulants using Q vectors
59
60 //these are OBSOLETE, use at own peril
61 Bool_t GFC = kFALSE; // cumulants based on generating function
62 Bool_t MCEP = kFALSE; // correlation with Monte Carlo reaction plane
63 Bool_t FQD = kFALSE; // fit of the distribution of the Q vector (only integrated v)
64 Bool_t LYZ1SUM = kFALSE; // Lee Yang Zeroes using sum generating function (integrated v)
65 Bool_t LYZ1PROD = kFALSE; // Lee Yang Zeroes using product generating function (integrated v)
66 Bool_t LYZ2SUM = kFALSE; // Lee Yang Zeroes using sum generating function (second pass differential v)
67 Bool_t LYZ2PROD = kFALSE; // Lee Yang Zeroes using product generating function (second pass differential v)
68 Bool_t LYZEP = kFALSE; // Lee Yang Zeroes Event plane using sum generating function (gives eventplane + weight)
69 Bool_t MH = kTRUE; // azimuthal correlators in mixed harmonics
70 Bool_t NL = kFALSE; // nested loops (for instance distribution of phi1-phi2 for all distinct pairs)
71
72 Bool_t METHODS[] = {SP,LYZ1SUM,LYZ1PROD,LYZ2SUM,LYZ2PROD,LYZEP,GFC,QC,FQD,MCEP,MH,NL};
73
74 // Boolean to use/not use weights for the Q vector
75 Bool_t WEIGHTS[] = {kFALSE,kFALSE,kFALSE}; //Phi, v'(pt), v'(eta)
76
77 // SETTING THE CUTS
78
79 //---------Data selection----------
80 //kMC, kGlobal, kESD_TPConly, kESD_SPDtracklet
81 AliFlowTrackCuts::trackParameterType rptype = AliFlowTrackCuts::kTPCstandalone;
82 AliFlowTrackCuts::trackParameterType poitype = AliFlowTrackCuts::kTPCstandalone;
83
84 //---------Parameter mixing--------
85 //kPure - no mixing, kTrackWithMCkine, kTrackWithMCPID, kTrackWithMCpt
86 AliFlowTrackCuts::trackParameterMix rpmix = AliFlowTrackCuts::kPure;
87 AliFlowTrackCuts::trackParameterMix poimix = AliFlowTrackCuts::kPure;
88
89
90 const char* rptypestr = AliFlowTrackCuts::GetParamTypeName(rptype);
91 const char* poitypestr = AliFlowTrackCuts::GetParamTypeName(poitype);
92
93 //===========================================================================
94 // EVENTS CUTS:
95 AliFlowEventCuts* cutsEvent = new AliFlowEventCuts("event cuts");
96 cutsEvent->SetCentralityPercentileRange(centrMin,centrMax);
97 cutsEvent->SetCentralityPercentileMethod(AliFlowEventCuts::kV0);
98// cutsEvent->SetRefMultMethod(AliFlowEventCuts::kV0);
99 //cutsEvent->SetCentralityPercentileMethod(AliFlowEventCuts::kSPD1tracklets);
100// cutsEvent->SetNContributorsRange(2);
101 cutsEvent->SetPrimaryVertexZrange(-10.,10.);
102 cutsEvent->SetQA(doQA);
103 cutsEvent->SetCutTPCmultiplicityOutliers();
104
105 // RP TRACK CUTS:
106 //AliFlowTrackCuts* cutsRP2 = AliFlowTrackCuts::GetStandardVZEROOnlyTrackCuts();
107 AliFlowTrackCuts* cutsRP = new AliFlowTrackCuts("TPConlyRP");
108 cutsRP->SetParamType(rptype);
109 cutsRP->SetParamMix(rpmix);
110 cutsRP->SetPtRange(0.2,5.);
111 cutsRP->SetEtaRange(etamin,etamax);
112 cutsRP->SetMinNClustersTPC(70);
113 cutsRP->SetMaxDCAToVertexXY(3.0);
114 cutsRP->SetMaxDCAToVertexZ(3.0);
115 cutsRP->SetAcceptKinkDaughters(kFALSE);
116 cutsRP->SetMinimalTPCdedx(10.);
117 if (chargeRP!=0) cutsRP->SetCharge(chargeRP);
118 cutsRP->SetAODfilterBit(aodBit);
119 cutsRP->SetQA(doQA);
120
121 // POI TRACK CUTS:
122 AliFlowTrackCuts* cutsPOI = new AliFlowTrackCuts("TPConlyPOI");
123 cutsPOI->GetBayesianResponse()->ForceOldDedx(); // for 2010 data to use old TPC PID Response instead of the official one
124 cutsPOI->SetParamType(poitype);
125 cutsPOI->SetParamMix(poimix);
126 cutsPOI->SetPtRange(0.2,5.);
127 cutsPOI->SetEtaRange(etamin,etamax);
128 cutsPOI->SetMinNClustersTPC(70);
129 cutsPOI->SetMaxDCAToVertexXY(3.0);
130 cutsPOI->SetMaxDCAToVertexZ(3.0);
131 cutsPOI->SetAcceptKinkDaughters(kFALSE);
132 if(isPID) {
133 cutsPOI->SetPID(particleType, sourcePID);
134 cutsPOI->SetRequireStrictTOFTPCagreement(kTRUE);
135 }
136 if (chargePOI!=0) cutsPOI->SetCharge(chargePOI);
137 //cutsPOI->SetAllowTOFmismatch(kFALSE);
138 //iexample: francesco's tunig TPC Bethe Bloch for data:
139 //cutsPOI->GetESDpid().GetTPCResponse().SetBetheBlochParameters(4.36414e-02,1.75977e+01,1.14385e-08,2.27907e+00,3.36699e+00);
140 //cutsPOI->GetESDpid().GetTPCResponse().SetMip(49);
141 cutsPOI->SetMinimalTPCdedx(10.);
142 cutsPOI->SetAODfilterBit(aodBit);
143 cutsPOI->SetQA(doQA);
144 cutsPOI->SetPriors((centrMin+centrMax)*0.5); // set priors and PID as a function of the centrality
145
146 TString outputSlotName = uniqueStr;
147 outputSlotName+=Form("_%.0f-",centrMin);
148 outputSlotName+=Form("%.0f",centrMax);
149 if(isPID){
150 outputSlotName+=AliFlowTrackCuts::PIDsourceName(sourcePID);
151 outputSlotName+="_";
152 outputSlotName+=AliPID::ParticleName(particleType);
153 }
154 else {
155 outputSlotName+="AllCharged";
156 }
157 if (chargePOI<0) outputSlotName+="-";
158 if (chargePOI>0) outputSlotName+="+";
159
160 TString fileName(fileNameBase);
161 fileName.Append(".root");
162
163 Bool_t useWeights = WEIGHTS[0] || WEIGHTS[1] || WEIGHTS[2];
164 if (useWeights) cout<<"Weights are used"<<endl;
165 else cout<<"Weights are not used"<<endl;
166
167 // Get the pointer to the existing analysis manager via the static access method.
168 //==============================================================================
169 AliAnalysisManager *mgr = AliAnalysisManager::GetAnalysisManager();
170 if (!mgr) {
171 Error("AddTaskFlowEvent", "No analysis manager to connect to.");
172 return NULL;
173 }
174
175 // Check the analysis type using the event handlers connected to the analysis
176 // manager. The availability of MC handler can also be checked here.
177 //==============================================================================
178 if (!mgr->GetInputEventHandler()) {
179 ::Error("AddTaskFlowEvent", "This task requires an input event handler");
180 return NULL;
181 }
182
183 // Open external input files
184 //===========================================================================
185 //weights:
186 TFile *weightsFile = NULL;
187 TList *weightsList = NULL;
188
189 if(useWeights) {
190 //open the file with the weights:
191 weightsFile = TFile::Open("weights.root","READ");
192 if(weightsFile) {
193 //access the list which holds the histos with weigths:
194 weightsList = (TList*)weightsFile->Get("weights");
195 }
196 else {
197 cout<<" WARNING: the file <weights.root> with weights from the previous run was not available."<<endl;
198 break;
199 }
200 }
201
202 //LYZ2
203 if (LYZ2SUM || LYZ2PROD) {
204 //read the outputfile of the first run
205 TString outputFileName = "AnalysisResults1.root";
206 TString pwd(gSystem->pwd());
207 pwd+="/";
208 pwd+=outputFileName.Data();
209 TFile *outputFile = NULL;
210 if(gSystem->AccessPathName(pwd.Data(),kFileExists)) {
211 cout<<"WARNING: You do not have an output file:"<<endl;
212 cout<<" "<<pwd.Data()<<endl;
213 exit(0);
214 } else { outputFile = TFile::Open(pwd.Data(),"READ");}
215
216 if (LYZ2SUM){
217 // read the output directory from LYZ1SUM
218 TString inputFileNameLYZ2SUM = "outputLYZ1SUManalysis" ;
219 inputFileNameLYZ2SUM += rptypestr;
220 cout<<"The input directory is "<<inputFileNameLYZ2SUM.Data()<<endl;
221 TFile* fInputFileLYZ2SUM = (TFile*)outputFile->FindObjectAny(inputFileNameLYZ2SUM.Data());
222 if(!fInputFileLYZ2SUM || fInputFileLYZ2SUM->IsZombie()) {
223 cerr << " ERROR: To run LYZ2SUM you need the output file from LYZ1SUM. This file is not there! Please run LYZ1SUM first." << endl ;
224 break;
225 }
226 else {
227 TList* fInputListLYZ2SUM = (TList*)fInputFileLYZ2SUM->Get("LYZ1SUM");
228 if (!fInputListLYZ2SUM) {cout<<"list is NULL pointer!"<<endl;}
229 }
230 cout<<"LYZ2SUM input file/list read..."<<endl;
231 }
232
233 if (LYZ2PROD){
234 // read the output directory from LYZ1PROD
235 TString inputFileNameLYZ2PROD = "outputLYZ1PRODanalysis" ;
236 inputFileNameLYZ2PROD += rptypestr;
237 cout<<"The input directory is "<<inputFileNameLYZ2PROD.Data()<<endl;
238 TFile* fInputFileLYZ2PROD = (TFile*)outputFile->FindObjectAny(inputFileNameLYZ2PROD.Data());
239 if(!fInputFileLYZ2PROD || fInputFileLYZ2PROD->IsZombie()) {
240 cerr << " ERROR: To run LYZ2PROD you need the output file from LYZ1PROD. This file is not there! Please run LYZ1PROD first." << endl ;
241 break;
242 }
243 else {
244 TList* fInputListLYZ2PROD = (TList*)fInputFileLYZ2PROD->Get("LYZ1PROD");
245 if (!fInputListLYZ2PROD) {cout<<"list is NULL pointer!"<<endl;}
246 }
247 cout<<"LYZ2PROD input file/list read..."<<endl;
248 }
249 }
250
251 if (LYZEP) {
252 //read the outputfile of the second run
253 TString outputFileName = "AnalysisResults2.root";
254 TString pwd(gSystem->pwd());
255 pwd+="/";
256 pwd+=outputFileName.Data();
257 TFile *outputFile = NULL;
258 if(gSystem->AccessPathName(pwd.Data(),kFileExists)) {
259 cout<<"WARNING: You do not have an output file:"<<endl;
260 cout<<" "<<pwd.Data()<<endl;
261 exit(0);
262 } else {
263 outputFile = TFile::Open(pwd.Data(),"READ");
264 }
265
266 // read the output file from LYZ2SUM
267 TString inputFileNameLYZEP = "outputLYZ2SUManalysis" ;
268 inputFileNameLYZEP += rptypestr;
269 cout<<"The input file is "<<inputFileNameLYZEP.Data()<<endl;
270 TFile* fInputFileLYZEP = (TFile*)outputFile->FindObjectAny(inputFileNameLYZEP.Data());
271 if(!fInputFileLYZEP || fInputFileLYZEP->IsZombie()) {
272 cerr << " ERROR: To run LYZEP you need the output file from LYZ2SUM. This file is not there! Please run LYZ2SUM first." << endl ;
273 break;
274 }
275 else {
276 TList* fInputListLYZEP = (TList*)fInputFileLYZEP->Get("LYZ2SUM");
277 if (!fInputListLYZEP) {cout<<"list is NULL pointer!"<<endl;}
278 }
279 cout<<"LYZEP input file/list read..."<<endl;
280 }
281
282
283 // Create the FMD task and add it to the manager
284 //===========================================================================
285 if (rptypestr == "FMD") {
286 AliFMDAnalysisTaskSE *taskfmd = NULL;
287 if (rptypestr == "FMD") {
288 taskfmd = new AliFMDAnalysisTaskSE("TaskFMD");
289 taskfmd->SelectCollisionCandidates(centralitysel);
290 mgr->AddTask(taskfmd);
291
292 AliFMDAnaParameters* pars = AliFMDAnaParameters::Instance();
293 pars->Init();
294 pars->SetProcessPrimary(kTRUE); //for MC only
295 pars->SetProcessHits(kFALSE);
296
297 //pars->SetRealData(kTRUE); //for real data
298 //pars->SetProcessPrimary(kFALSE); //for real data
299 }
300 }
301
302 // Create the flow event task, add it to the manager.
303 //===========================================================================
304 AliAnalysisTaskFlowEvent *taskFE = NULL;
305
306 if(useAfterBurner)
307 {
308 taskFE = new AliAnalysisTaskFlowEvent(Form("TaskFlowEvent %s",outputSlotName.Data()),"",doQA,1);
309 taskFE->SetFlow(v1,v2,v3,v4);
310 taskFE->SetNonFlowNumberOfTrackClones(numberOfTrackClones);
311 taskFE->SetAfterburnerOn();
312 taskFE->SelectCollisionCandidates(centralitysel);
313 }
314 else {taskFE = new AliAnalysisTaskFlowEvent(Form("TaskFlowEvent %s",outputSlotName.Data()),"",doQA);
315 taskFE->SelectCollisionCandidates(centralitysel);}
316 if (ExcludeRegion) {
317 taskFE->DefineDeadZone(excludeEtaMin, excludeEtaMax, excludePhiMin, excludePhiMax);
318 }
319 taskFE->SetSubeventEtaRange(minA, maxA, minB, maxB);
320 if (UsePhysicsSelection) {
321 taskFE->SelectCollisionCandidates(AliVEvent::kMB | AliVEvent::kCentral | AliVEvent::kSemiCentral);
322 cout<<"Using Physics Selection"<<endl;
323 }
324 mgr->AddTask(taskFE);
325
326 // Pass cuts for RPs and POIs to the task:
327 taskFE->SetCutsEvent(cutsEvent);
328 taskFE->SetCutsRP(cutsRP);
329 taskFE->SetCutsPOI(cutsPOI);
330 if (cutsRP->GetParamType()==AliFlowTrackCuts::kV0)
331 {
332 //TODO: since this is set in a static object all analyses in an analysis train
333 //will be affected.
334 taskFE->SetHistWeightvsPhiMin(0.);
335 taskFE->SetHistWeightvsPhiMax(200.);
336 }
337
338 // Create the analysis tasks, add them to the manager.
339 //===========================================================================
340 if (SP){
341 AliAnalysisTaskScalarProduct *taskSP = new AliAnalysisTaskScalarProduct(Form("TaskScalarProduct %s",outputSlotName.Data()),WEIGHTS[0]);
342 taskSP->SelectCollisionCandidates(centralitysel);
343 taskSP->SetRelDiffMsub(1.0);
344 taskSP->SetApplyCorrectionForNUA(kTRUE);
345 mgr->AddTask(taskSP);
346 }
347 if (LYZ1SUM){
348 AliAnalysisTaskLeeYangZeros *taskLYZ1SUM = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosSUM %s",outputSlotName.Data()),kTRUE);
349 taskLYZ1SUM->SelectCollisionCandidates(centralitysel);
350 taskLYZ1SUM->SetFirstRunLYZ(kTRUE);
351 taskLYZ1SUM->SetUseSumLYZ(kTRUE);
352 mgr->AddTask(taskLYZ1SUM);
353 }
354 if (LYZ1PROD){
355 AliAnalysisTaskLeeYangZeros *taskLYZ1PROD = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosPROD %s",outputSlotName.Data()),kTRUE);
356 taskLYZ1PROD->SelectCollisionCandidates(centralitysel);
357 taskLYZ1PROD->SetFirstRunLYZ(kTRUE);
358 taskLYZ1PROD->SetUseSumLYZ(kFALSE);
359 mgr->AddTask(taskLYZ1PROD);
360 }
361 if (LYZ2SUM){
362 AliAnalysisTaskLeeYangZeros *taskLYZ2SUM = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosSUM %s",outputSlotName.Data()),kFALSE);
363 taskLYZ2SUM->SelectCollisionCandidates(centralitysel);
364 taskLYZ2SUM->SetFirstRunLYZ(kFALSE);
365 taskLYZ2SUM->SetUseSumLYZ(kTRUE);
366 mgr->AddTask(taskLYZ2SUM);
367 }
368 if (LYZ2PROD){
369 AliAnalysisTaskLeeYangZeros *taskLYZ2PROD = new AliAnalysisTaskLeeYangZeros(Form("TaskLeeYangZerosPROD %s",outputSlotName.Data()),kFALSE);
370 taskLYZ2PROD->SelectCollisionCandidates(centralitysel);
371 taskLYZ2PROD->SetFirstRunLYZ(kFALSE);
372 taskLYZ2PROD->SetUseSumLYZ(kFALSE);
373 mgr->AddTask(taskLYZ2PROD);
374 }
375 if (LYZEP){
376 AliAnalysisTaskLYZEventPlane *taskLYZEP = new AliAnalysisTaskLYZEventPlane(Form("TaskLYZEventPlane %s",outputSlotName.Data()));
377 taskLYZEP->SelectCollisionCandidates(centralitysel);
378 mgr->AddTask(taskLYZEP);
379 }
380 if (GFC){
381 AliAnalysisTaskCumulants *taskGFC = new AliAnalysisTaskCumulants(Form("TaskCumulants %s",outputSlotName.Data()),useWeights);
382 taskGFC->SelectCollisionCandidates(centralitysel);
383 taskGFC->SetUsePhiWeights(WEIGHTS[0]);
384 taskGFC->SetUsePtWeights(WEIGHTS[1]);
385 taskGFC->SetUseEtaWeights(WEIGHTS[2]);
386 mgr->AddTask(taskGFC);
387 }
388 if (QC){
389 AliAnalysisTaskQCumulants *taskQC = new AliAnalysisTaskQCumulants(Form("TaskQCumulants %s",outputSlotName.Data()),useWeights);
390 taskQC->SelectCollisionCandidates(centralitysel);
391 taskQC->SetUsePhiWeights(WEIGHTS[0]);
392 taskQC->SetUsePtWeights(WEIGHTS[1]);
393 taskQC->SetUseEtaWeights(WEIGHTS[2]);
394 taskQC->SetCalculateCumulantsVsM(kFALSE);
395 taskQC->SetnBinsMult(10000);
396 taskQC->SetMinMult(0.);
397 taskQC->SetMaxMult(10000.);
398 taskQC->SetHarmonic(harmonic);
399 taskQC->SetApplyCorrectionForNUA(kFALSE);
400 taskQC->SetFillMultipleControlHistograms(kFALSE);
401 mgr->AddTask(taskQC);
402 }
403 if (FQD){
404 AliAnalysisTaskFittingQDistribution *taskFQD = new AliAnalysisTaskFittingQDistribution(Form("TaskFittingQDistribution %s",outputSlotName.Data()),kFALSE);
405 taskFQD->SelectCollisionCandidates(centralitysel);
406 taskFQD->SetUsePhiWeights(WEIGHTS[0]);
407 taskFQD->SetqMin(0.);
408 taskFQD->SetqMax(1000.);
409 taskFQD->SetqNbins(10000);
410 mgr->AddTask(taskFQD);
411 }
412 if (MCEP){
413 AliAnalysisTaskMCEventPlane *taskMCEP = new AliAnalysisTaskMCEventPlane(Form("TaskMCEventPlane %s",outputSlotName.Data()));
414 taskMCEP->SelectCollisionCandidates(centralitysel);
415 mgr->AddTask(taskMCEP);
416 }
417 if (MH){
418 AliAnalysisTaskMixedHarmonics *taskMH = new AliAnalysisTaskMixedHarmonics(Form("TaskMixedHarmonics %s",outputSlotName.Data()),useWeights);
419 taskMH->SelectCollisionCandidates(centralitysel);
420 taskMH->SetHarmonic(1); // n in cos[n(phi1+phi2-2phi3)] and cos[n(psi1+psi2-2phi3)]
421 taskMH->SetNoOfMultipicityBins(10000);
422 taskMH->SetMultipicityBinWidth(1.);
423 taskMH->SetMinMultiplicity(1.);
424 taskMH->SetCorrectForDetectorEffects(kTRUE);
425 taskMH->SetEvaluateDifferential3pCorrelator(kTRUE); // evaluate <<cos[n(psi1+psi2-2phi3)]>> (Remark: two nested loops)
426 if(chargePOI == 0)
427 taskMH->SetOppositeChargesPOI(kTRUE);
428 else
429 taskMH->SetOppositeChargesPOI(kFALSE); // POIs psi1 and psi2 in cos[n(psi1+psi2-2phi3)] will have opposite charges
430 mgr->AddTask(taskMH);
431 }
432 if (NL){
433 AliAnalysisTaskNestedLoops *taskNL = new AliAnalysisTaskNestedLoops(Form("TaskNestedLoops %s",outputSlotName.Data()),useWeights);
434 taskNL->SelectCollisionCandidates(centralitysel);
435 taskNL->SetHarmonic(1); // n in cos[n(phi1+phi2-2phi3)] and cos[n(psi1+psi2-2phi3)]
436 taskNL->SetEvaluateNestedLoopsForRAD(kTRUE); // RAD = Relative Angle Distribution
437 taskNL->SetEvaluateNestedLoopsForMH(kTRUE); // evalaute <<cos[n(phi1+phi2-2phi3)]>> (Remark: three nested loops)
438 taskNL->SetEvaluateDifferential3pCorrelator(kFALSE); // evaluate <<cos[n(psi1+psi2-2phi3)]>> (Remark: three nested loops)
439 taskNL->SetOppositeChargesPOI(kFALSE); // POIs psi1 and psi2 in cos[n(psi1+psi2-2phi3)] will have opposite charges
440 mgr->AddTask(taskNL);
441 }
442
443 // Create the output container for the data produced by the task
444 // Connect to the input and output containers
445 //===========================================================================
446 AliAnalysisDataContainer *cinput1 = mgr->GetCommonInputContainer();
447
448 if (rptypestr == "FMD") {
449 AliAnalysisDataContainer *coutputFMD =
450 mgr->CreateContainer(Form("BackgroundCorrected %s",outputSlotName.Data()), TList::Class(), AliAnalysisManager::kExchangeContainer);
451 //input and output taskFMD
452 mgr->ConnectInput(taskfmd, 0, cinput1);
453 mgr->ConnectOutput(taskfmd, 1, coutputFMD);
454 //input into taskFE
455 mgr->ConnectInput(taskFE,1,coutputFMD);
456 }
457
458 AliAnalysisDataContainer *coutputFE =
459 mgr->CreateContainer(Form("FlowEventSimple %s",outputSlotName.Data()),AliFlowEventSimple::Class(),AliAnalysisManager::kExchangeContainer);
460 mgr->ConnectInput(taskFE,0,cinput1);
461 mgr->ConnectOutput(taskFE,1,coutputFE);
462
463 if (taskFE->GetQAOn())
464 {
465 TString outputQA = fileName;
466 outputQA += ":QA";
467 AliAnalysisDataContainer* coutputFEQA =
468 mgr->CreateContainer(Form("QA %s",outputSlotName.Data()), TList::Class(),AliAnalysisManager::kOutputContainer,outputQA);
469 mgr->ConnectOutput(taskFE,2,coutputFEQA);
470 }
471
472 // Create the output containers for the data produced by the analysis tasks
473 // Connect to the input and output containers
474 //===========================================================================
475 if (useWeights) {
476 AliAnalysisDataContainer *cinputWeights = mgr->CreateContainer(Form("Weights %s",outputSlotName.Data()),
477 TList::Class(),AliAnalysisManager::kInputContainer);
478 }
479
480 if(SP) {
481 TString outputSP = fileName;
482 outputSP += ":outputSPanalysis";
483 //outputSP+= rptypestr;
484 AliAnalysisDataContainer *coutputSP = mgr->CreateContainer(Form("cobjSP_%s",outputSlotName.Data()),
485 TList::Class(),AliAnalysisManager::kOutputContainer,outputSP);
486 mgr->ConnectInput(taskSP,0,coutputFE);
487 mgr->ConnectOutput(taskSP,1,coutputSP);
488 if (WEIGHTS[0]) {
489 mgr->ConnectInput(taskSP,1,cinputWeights);
490 cinputWeights->SetData(weightsList);
491 }
492 }
493 if(LYZ1SUM) {
494 TString outputLYZ1SUM = fileName;
495 outputLYZ1SUM += ":outputLYZ1SUManalysis";
496 outputLYZ1SUM+= rptypestr;
497 AliAnalysisDataContainer *coutputLYZ1SUM = mgr->CreateContainer(Form("LYZ1SUM %s",outputSlotName.Data()),
498 TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ1SUM);
499 mgr->ConnectInput(taskLYZ1SUM,0,coutputFE);
500 mgr->ConnectOutput(taskLYZ1SUM,1,coutputLYZ1SUM);
501 }
502 if(LYZ1PROD) {
503 TString outputLYZ1PROD = fileName;
504 outputLYZ1PROD += ":outputLYZ1PRODanalysis";
505 outputLYZ1PROD+= rptypestr;
506 AliAnalysisDataContainer *coutputLYZ1PROD = mgr->CreateContainer(Form("LYZ1PROD %s",outputSlotName.Data()),
507 TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ1PROD);
508 mgr->ConnectInput(taskLYZ1PROD,0,coutputFE);
509 mgr->ConnectOutput(taskLYZ1PROD,1,coutputLYZ1PROD);
510 }
511 if(LYZ2SUM) {
512 AliAnalysisDataContainer *cinputLYZ2SUM = mgr->CreateContainer(Form("LYZ2SUMin %s",outputSlotName.Data()),
513 TList::Class(),AliAnalysisManager::kInputContainer);
514 TString outputLYZ2SUM = fileName;
515 outputLYZ2SUM += ":outputLYZ2SUManalysis";
516 outputLYZ2SUM+= rptypestr;
517
518 AliAnalysisDataContainer *coutputLYZ2SUM = mgr->CreateContainer(Form("LYZ2SUM %s",outputSlotName.Data()),
519 TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ2SUM);
520 mgr->ConnectInput(taskLYZ2SUM,0,coutputFE);
521 mgr->ConnectInput(taskLYZ2SUM,1,cinputLYZ2SUM);
522 mgr->ConnectOutput(taskLYZ2SUM,1,coutputLYZ2SUM);
523 cinputLYZ2SUM->SetData(fInputListLYZ2SUM);
524 }
525 if(LYZ2PROD) {
526 AliAnalysisDataContainer *cinputLYZ2PROD = mgr->CreateContainer(Form("LYZ2PRODin %s",outputSlotName.Data()),
527 TList::Class(),AliAnalysisManager::kInputContainer);
528 TString outputLYZ2PROD = fileName;
529 outputLYZ2PROD += ":outputLYZ2PRODanalysis";
530 outputLYZ2PROD+= rptypestr;
531
532 AliAnalysisDataContainer *coutputLYZ2PROD = mgr->CreateContainer(Form("LYZ2PROD %s",outputSlotName.Data()),
533 TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZ2PROD);
534 mgr->ConnectInput(taskLYZ2PROD,0,coutputFE);
535 mgr->ConnectInput(taskLYZ2PROD,1,cinputLYZ2PROD);
536 mgr->ConnectOutput(taskLYZ2PROD,1,coutputLYZ2PROD);
537 cinputLYZ2PROD->SetData(fInputListLYZ2PROD);
538 }
539 if(LYZEP) {
540 AliAnalysisDataContainer *cinputLYZEP = mgr->CreateContainer(Form("LYZEPin %s",outputSlotName.Data()),
541 TList::Class(),AliAnalysisManager::kInputContainer);
542 TString outputLYZEP = fileName;
543 outputLYZEP += ":outputLYZEPanalysis";
544 outputLYZEP+= rptypestr;
545
546 AliAnalysisDataContainer *coutputLYZEP = mgr->CreateContainer(Form("LYZEP %s",outputSlotName.Data()),
547 TList::Class(),AliAnalysisManager::kOutputContainer,outputLYZEP);
548 mgr->ConnectInput(taskLYZEP,0,coutputFE);
549 mgr->ConnectInput(taskLYZEP,1,cinputLYZEP);
550 mgr->ConnectOutput(taskLYZEP,1,coutputLYZEP);
551 cinputLYZEP->SetData(fInputListLYZEP);
552 }
553 if(GFC) {
554 TString outputGFC = fileName;
555 outputGFC += ":outputGFCanalysis";
556 outputGFC+= rptypestr;
557
558 AliAnalysisDataContainer *coutputGFC = mgr->CreateContainer(Form("GFC %s",outputSlotName.Data()),
559 TList::Class(),AliAnalysisManager::kOutputContainer,outputGFC);
560 mgr->ConnectInput(taskGFC,0,coutputFE);
561 mgr->ConnectOutput(taskGFC,1,coutputGFC);
562 if (useWeights) {
563 mgr->ConnectInput(taskGFC,1,cinputWeights);
564 cinputWeights->SetData(weightsList);
565 }
566 }
567 if(QC) {
568 TString outputQC = fileName;
569 outputQC += ":outputQCanalysis";
570 //outputQC+= rptypestr;
571
572 AliAnalysisDataContainer *coutputQC = mgr->CreateContainer(Form("cobjQC_%s",outputSlotName.Data()),
573 TList::Class(),AliAnalysisManager::kOutputContainer,outputQC);
574 mgr->ConnectInput(taskQC,0,coutputFE);
575 mgr->ConnectOutput(taskQC,1,coutputQC);
576 if (useWeights) {
577 mgr->ConnectInput(taskQC,1,cinputWeights);
578 cinputWeights->SetData(weightsList);
579 }
580 }
581 if(FQD) {
582 TString outputFQD = fileName;
583 outputFQD += ":outputFQDanalysis";
584 outputFQD+= rptypestr;
585
586 AliAnalysisDataContainer *coutputFQD = mgr->CreateContainer(Form("FQD %s",outputSlotName.Data()),
587 TList::Class(),AliAnalysisManager::kOutputContainer,outputFQD);
588 mgr->ConnectInput(taskFQD,0,coutputFE);
589 mgr->ConnectOutput(taskFQD,1,coutputFQD);
590 if(useWeights) {
591 mgr->ConnectInput(taskFQD,1,cinputWeights);
592 cinputWeights->SetData(weightsList);
593 }
594 }
595 if(MCEP) {
596 TString outputMCEP = fileName;
597 outputMCEP += ":outputMCEPanalysis";
598 outputMCEP+= rptypestr;
599
600 AliAnalysisDataContainer *coutputMCEP = mgr->CreateContainer(Form("MCEP %s",outputSlotName.Data()),
601 TList::Class(),AliAnalysisManager::kOutputContainer,outputMCEP);
602 mgr->ConnectInput(taskMCEP,0,coutputFE);
603 mgr->ConnectOutput(taskMCEP,1,coutputMCEP);
604 }
605 if(MH) {
606 TString outputMH = fileName;
607 outputMH += ":outputMHanalysis";
608 //outputMH += rptypestr;
609
610 AliAnalysisDataContainer *coutputMH = mgr->CreateContainer(Form("cobjMH_%s",outputSlotName.Data()),
611 TList::Class(),AliAnalysisManager::kOutputContainer,outputMH);
612 mgr->ConnectInput(taskMH,0,coutputFE);
613 mgr->ConnectOutput(taskMH,1,coutputMH);
614 //if (useWeights) {
615 // mgr->ConnectInput(taskMH,1,cinputWeights);
616 // cinputWeights->SetData(weightsList);
617 //}
618 }
619 if(NL) {
620 TString outputNL = fileName;
621 outputNL += ":outputNLanalysis";
622 outputNL += rptypestr;
623
624 AliAnalysisDataContainer *coutputNL = mgr->CreateContainer(Form("NL %s",outputSlotName.Data()),
625 TList::Class(),AliAnalysisManager::kOutputContainer,outputNL);
626 mgr->ConnectInput(taskNL,0,coutputFE);
627 mgr->ConnectOutput(taskNL,1,coutputNL);
628 //if (useWeights) {
629 // mgr->ConnectInput(taskNL,1,cinputWeights);
630 // cinputWeights->SetData(weightsList);
631 //}
632 }
633
634 ///////////////////////////////////////////////////////////////////////////////////////////
635 if (runQAtask)
636 {
637 AliAnalysisTaskQAflow* taskQAflow = new AliAnalysisTaskQAflow(Form("TaskQAflow %s",outputSlotName.Data()));
638 taskQAflow->SelectCollisionCandidates(centralitysel);
639 taskQAflow->SetEventCuts(cutsEvent);
640 taskQAflow->SetTrackCuts(cutsRP);
641 taskQAflow->SetFillNTuple(FillQAntuple);
642 taskQAflow->SetDoCorrelations(DoQAcorrelations);
643 mgr->AddTask(taskQAflow);
644
645 Printf("outputSlotName %s",outputSlotName.Data());
646 TString taskQAoutputFileName(fileNameBase);
647 taskQAoutputFileName.Append("_QA.root");
648 AliAnalysisDataContainer* coutputQAtask = mgr->CreateContainer(Form("flowQA %s",outputSlotName.Data()),
649 TObjArray::Class(),
650 AliAnalysisManager::kOutputContainer,
651 taskQAoutputFileName);
652 AliAnalysisDataContainer* coutputQAtaskTree = mgr->CreateContainer(Form("flowQAntuple %s",outputSlotName.Data()),
653 TNtuple::Class(),
654 AliAnalysisManager::kOutputContainer,
655 taskQAoutputFileName);
656 mgr->ConnectInput(taskQAflow,0,mgr->GetCommonInputContainer());
657 mgr->ConnectInput(taskQAflow,1,coutputFE);
658 mgr->ConnectOutput(taskQAflow,1,coutputQAtask);
659 if (FillQAntuple) mgr->ConnectOutput(taskQAflow,2,coutputQAtaskTree);
660 }
661}
662
663
664
665
666