/************************************************************************** * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. * * * * Author: The ALICE Off-line Project. * * Contributors are mentioned in the code where appropriate. * * * * Permission to use, copy, modify and distribute this software and its * * documentation strictly for non-commercial purposes is hereby granted * * without fee, provided that the above copyright notice appears in all * * copies and that both the copyright notice and this permission notice * * appear in the supporting documentation. The authors make no claims * * about the suitability of this software for any purpose. It is * * provided "as is" without express or implied warranty. * **************************************************************************/ /* $Id$ */ #include #include #include #include #include #include #include "AliAnalysisTaskSE.h" #include "AliAnalysisManager.h" #include "AliAnalysisDataSlot.h" #include "AliESDEvent.h" #include "AliESD.h" #include "AliAODEvent.h" #include "AliAODHeader.h" #include "AliAODTracklets.h" #include "AliVEvent.h" #include "AliAODHandler.h" #include "AliAODInputHandler.h" #include "AliMCEventHandler.h" #include "AliInputEventHandler.h" #include "AliMCEvent.h" #include "AliStack.h" #include "AliLog.h" ClassImp(AliAnalysisTaskSE) //////////////////////////////////////////////////////////////////////// AliAODHeader* AliAnalysisTaskSE::fgAODHeader = NULL; TClonesArray* AliAnalysisTaskSE::fgAODTracks = NULL; TClonesArray* AliAnalysisTaskSE::fgAODVertices = NULL; TClonesArray* AliAnalysisTaskSE::fgAODV0s = NULL; TClonesArray* AliAnalysisTaskSE::fgAODPMDClusters = NULL; TClonesArray* AliAnalysisTaskSE::fgAODJets = NULL; TClonesArray* AliAnalysisTaskSE::fgAODFMDClusters = NULL; TClonesArray* AliAnalysisTaskSE::fgAODCaloClusters = NULL; AliAODTracklets* AliAnalysisTaskSE::fgAODTracklets = NULL; AliAnalysisTaskSE::AliAnalysisTaskSE(): AliAnalysisTask(), fDebug(0), fEntry(0), fInputEvent(0x0), fInputHandler(0x0), fOutputAOD(0x0), fMCEvent(0x0), fTreeA(0x0) { // Default constructor } AliAnalysisTaskSE::AliAnalysisTaskSE(const char* name): AliAnalysisTask(name, "AnalysisTaskSE"), fDebug(0), fEntry(0), fInputEvent(0x0), fInputHandler(0x0), fOutputAOD(0x0), fMCEvent(0x0), fTreeA(0x0) { // Default constructor DefineInput (0, TChain::Class()); DefineOutput(0, TTree::Class()); } AliAnalysisTaskSE::AliAnalysisTaskSE(const AliAnalysisTaskSE& obj): AliAnalysisTask(obj), fDebug(0), fEntry(0), fInputEvent(0x0), fInputHandler(0x0), fOutputAOD(0x0), fMCEvent(0x0), fTreeA(0x0) { // Copy constructor fDebug = obj.fDebug; fEntry = obj.fEntry; fInputEvent = obj.fInputEvent; fInputHandler = obj.fInputHandler; fOutputAOD = obj.fOutputAOD; fMCEvent = obj.fMCEvent; fTreeA = obj.fTreeA; printf("Constructor (3) \n"); } AliAnalysisTaskSE& AliAnalysisTaskSE::operator=(const AliAnalysisTaskSE& other) { // Assignment AliAnalysisTask::operator=(other); fDebug = other.fDebug; fEntry = other.fEntry; fInputEvent = other.fInputEvent; fInputHandler = other.fInputHandler; fOutputAOD = other.fOutputAOD; fMCEvent = other.fMCEvent; fTreeA = other.fTreeA; return *this; } void AliAnalysisTaskSE::ConnectInputData(Option_t* /*option*/) { // Connect the input data if (fDebug > 1) printf("AnalysisTaskSE::ConnectInputData() \n"); // // ESD // fInputHandler = (AliInputEventHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetInputEventHandler()); // // Monte Carlo // AliMCEventHandler* mcH = 0; mcH = (AliMCEventHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetMCtruthEventHandler()); if (mcH) fMCEvent = mcH->MCEvent(); if (fInputHandler) { fInputEvent = fInputHandler->GetEvent(); } else if( fMCEvent ) { AliWarning("No Input Event Handler connected, only MC Truth Event Handler") ; } else { AliError("No Input Event Handler connected") ; return ; } } void AliAnalysisTaskSE::CreateOutputObjects() { // Create the output container // // Default AOD if (fDebug > 1) printf("AnalysisTaskSE::CreateOutPutData() \n"); AliAODHandler* handler = (AliAODHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetOutputEventHandler()); // Check if AOD replication has been required if (handler) { fOutputAOD = handler->GetAOD(); fTreeA = handler->GetTree(); if (!(handler->IsStandard())) { if ((handler->NeedsHeaderReplication()) && !(fgAODHeader)) { if (fDebug > 1) AliInfo("Replicating header"); fgAODHeader = new AliAODHeader; handler->AddBranch("AliAODHeader", &fgAODHeader); } if ((handler->NeedsTracksBranchReplication()) && !(fgAODTracks)) { if (fDebug > 1) AliInfo("Replicating track branch\n"); fgAODTracks = new TClonesArray("AliAODTrack",500); fgAODTracks->SetName("tracks"); handler->AddBranch("TClonesArray", &fgAODTracks); } if ((handler->NeedsVerticesBranchReplication()) && !(fgAODVertices)) { if (fDebug > 1) AliInfo("Replicating vertices branch\n"); fgAODVertices = new TClonesArray("AliAODVertex",500); fgAODVertices->SetName("vertices"); handler->AddBranch("TClonesArray", &fgAODVertices); } if ((handler->NeedsV0sBranchReplication()) && !(fgAODV0s)) { if (fDebug > 1) AliInfo("Replicating V0s branch\n"); fgAODV0s = new TClonesArray("AliAODv0",500); fgAODV0s->SetName("v0s"); handler->AddBranch("TClonesArray", &fgAODV0s); } if ((handler->NeedsTrackletsBranchReplication()) && !(fgAODTracklets)) { if (fDebug > 1) AliInfo("Replicating Tracklets branch\n"); fgAODTracklets = new AliAODTracklets("tracklets","tracklets"); handler->AddBranch("AliAODTracklets", &fgAODTracklets); } if ((handler->NeedsPMDClustersBranchReplication()) && !(fgAODPMDClusters)) { if (fDebug > 1) AliInfo("Replicating PMDClusters branch\n"); fgAODPMDClusters = new TClonesArray("AliAODPmdCluster",500); fgAODPMDClusters->SetName("pmdClusters"); handler->AddBranch("TClonesArray", &fgAODPMDClusters); } if ((handler->NeedsJetsBranchReplication()) && !(fgAODJets)) { if (fDebug > 1) AliInfo("Replicating Jets branch\n"); fgAODJets = new TClonesArray("AliAODJet",500); fgAODJets->SetName("jets"); handler->AddBranch("TClonesArray", &fgAODJets); } if ((handler->NeedsFMDClustersBranchReplication()) && !(fgAODFMDClusters)) { AliInfo("Replicating FMDClusters branch\n"); fgAODFMDClusters = new TClonesArray("AliAODFmdCluster",500); fgAODFMDClusters->SetName("fmdClusters"); handler->AddBranch("TClonesArray", &fgAODFMDClusters); } if ((handler->NeedsCaloClustersBranchReplication()) && !(fgAODCaloClusters)) { if (fDebug > 1) AliInfo("Replicating CaloClusters branch\n"); fgAODCaloClusters = new TClonesArray("AliAODCaloCluster",500); fgAODCaloClusters->SetName("caloClusters"); handler->AddBranch("TClonesArray", &fgAODCaloClusters); } } } else { AliWarning("No AOD Event Handler connected.") ; } UserCreateOutputObjects(); } void AliAnalysisTaskSE::Exec(Option_t* option) { // // Exec analysis of one event if (fDebug > 1) AliInfo("AliAnalysisTaskSE::Exec() \n"); if( fInputHandler ) fEntry = fInputHandler->GetReadEntry(); else if( fMCEvent ) fEntry = fMCEvent->Header()->GetEvent(); if ( !((Entry()-1)%100) && fDebug > 0) AliInfo(Form("%s ----> Processing event # %lld", CurrentFileName(), Entry())); AliAODHandler* handler = (AliAODHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetOutputEventHandler()); AliAODInputHandler* aodH = dynamic_cast(fInputHandler); if (handler && aodH) { if (!(handler->IsStandard()) && !(handler->AODIsReplicated())) { if ((handler->NeedsHeaderReplication()) && (fgAODHeader)) { // copy the contents by assigment *fgAODHeader = *(dynamic_cast(InputEvent()->GetHeader())); } if ((handler->NeedsTracksBranchReplication()) && (fgAODTracks)) { TClonesArray* tracks = (dynamic_cast(InputEvent()))->GetTracks(); new (fgAODTracks) TClonesArray(*tracks); } if ((handler->NeedsVerticesBranchReplication()) && (fgAODVertices)) { TClonesArray* vertices = (dynamic_cast(InputEvent()))->GetVertices(); new (fgAODVertices) TClonesArray(*vertices); } if ((handler->NeedsV0sBranchReplication()) && (fgAODV0s)) { TClonesArray* V0s = (dynamic_cast(InputEvent()))->GetV0s(); new (fgAODV0s) TClonesArray(*V0s); } if ((handler->NeedsTrackletsBranchReplication()) && (fgAODTracklets)) { *fgAODTracklets = *(dynamic_cast(InputEvent()))->GetTracklets(); } if ((handler->NeedsPMDClustersBranchReplication()) && (fgAODPMDClusters)) { TClonesArray* PMDClusters = (dynamic_cast(InputEvent()))->GetPmdClusters(); new (fgAODPMDClusters) TClonesArray(*PMDClusters); } if ((handler->NeedsJetsBranchReplication()) && (fgAODJets)) { TClonesArray* Jets = (dynamic_cast(InputEvent()))->GetJets(); new (fgAODJets) TClonesArray(*Jets); } if ((handler->NeedsFMDClustersBranchReplication()) && (fgAODFMDClusters)) { TClonesArray* FMDClusters = (dynamic_cast(InputEvent()))->GetFmdClusters(); new (fgAODFMDClusters) TClonesArray(*FMDClusters); } if ((handler->NeedsCaloClustersBranchReplication()) && (fgAODCaloClusters)) { TClonesArray* CaloClusters = (dynamic_cast(InputEvent()))->GetCaloClusters(); new (fgAODCaloClusters) TClonesArray(*CaloClusters); } // handler->SetAODIsReplicated(); } } // Call the user analysis UserExec(option); // Added protection in case the derived task is not an AOD producer. AliAnalysisDataSlot *out0 = GetOutputSlot(0); if (out0 && out0->IsConnected()) PostData(0, fTreeA); } const char* AliAnalysisTaskSE::CurrentFileName() { // Returns the current file name if( fInputHandler ) return fInputHandler->GetTree()->GetCurrentFile()->GetName(); else if( fMCEvent ) return ((AliMCEventHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetMCtruthEventHandler()))->TreeK()->GetCurrentFile()->GetName(); else return ""; } void AliAnalysisTaskSE::AddAODBranch(const char* cname, void* addobj, const char *fname) { // Add a new branch to the aod tree AliAODHandler* handler = (AliAODHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetOutputEventHandler()); if (handler) { handler->AddBranch(cname, addobj, fname); } } Bool_t AliAnalysisTaskSE::IsStandardAOD() const { // Check if the output AOD handler is configured for standard or delta AOD. // Users should first check that AODEvent() returns non-null. AliAODHandler* handler = (AliAODHandler*) ((AliAnalysisManager::GetAnalysisManager())->GetOutputEventHandler()); if (!handler) { Error("IsStandardAOD", "No AOD handler. Please use AODEvent() to check this first"); return kTRUE; } return handler->IsStandard(); }