191 lines
5.9 KiB
C++
191 lines
5.9 KiB
C++
//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// Rich advanced example for Geant4
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// RichTbAnalysisManager.hh for Rich of LHCb
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// History:
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// Created: Sajan Easo (Sajan.Easo@cern.ch)
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// Revision and changes: Patricia Mendez (Patricia.Mendez@cern.ch)
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/////////////////////////////////////////////////////////////////////////////
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#ifndef RichTbAnalysisManager_h
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#define RichTbAnalysisManager_h 1
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#include "globals.hh"
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#include <vector>
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#include "G4ThreeVector.hh"
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#ifdef G4ANALYSIS_USE
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#include "AIDA/AIDA.h"
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#endif
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#include "RichTbAnalysisMessenger.hh"
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class G4Step;
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#ifdef G4ANALYSIS_USE
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namespace AIDA{
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class IAnalysisFactory;
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class IHistogramFactory;
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class ITree;
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class ITupleFactory;
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class ITuple;
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}
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#endif
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class G4Run;
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class G4Event;
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class G4Step;
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class G4Timer;
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class G4SteppingManager;
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class RichTbRunConfig;
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class RichTbAnalysisManager{
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public:
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RichTbAnalysisManager();
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virtual ~RichTbAnalysisManager();
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#ifdef G4ANALYSIS_USE
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void book();
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void finish();
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static RichTbAnalysisManager* getInstance();
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void SetOutputFileName(G4String);
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#endif
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void BeginOfRunAnalysis();
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void EndOfRunAnalysis();
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void BeginOfEventAnalysis(const G4Event*);
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void EndOfEventAnalysis(const G4Event*);
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void StepAnalysis(const G4SteppingManager* );
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void bumpNumPhotonsBeforeAerogel() { NumPhotBeforeAerogel++ ; }
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G4int getNumPhotBeforeAerogel() {return NumPhotBeforeAerogel; }
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void bumpNumPhotonsAfterFilter(){ NumPhotAfterFilter++ ; }
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G4int getNumPhotAfterFilter() {return NumPhotAfterFilter ; }
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void bumpNumPhotonsBeforeFilter(){ NumPhotBeforeFilter++ ; }
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G4int getNumPhotBeforeFilter() {return NumPhotBeforeFilter ; }
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void bumpNumPhotonsBeforeMirror(){ NumPhotBeforeMirror++ ; }
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G4int getNumPhotBeforeMirror() {return NumPhotBeforeMirror ; }
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void bumpNumPhotonsAfterMirror(){ NumPhotAfterMirror++ ; }
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G4int getNumPhotAfterMirror() {return NumPhotAfterMirror ; }
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void bumpNumPhotonsAtHpd1Input(){ NumPhotAtHpd1Input++ ; }
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G4int getNumPhotAtHpd1Input() {return NumPhotAtHpd1Input ; }
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void bumpNumPhotonsAtHpd2Input(){ NumPhotAtHpd2Input++ ; }
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G4int getNumPhotAtHpd2Input() {return NumPhotAtHpd2Input ; }
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void bumpNumPhotonsAtHpd3Input(){ NumPhotAtHpd3Input++ ; }
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G4int getNumPhotAtHpd3Input() {return NumPhotAtHpd3Input ; }
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void bumpNumPhotonsAtHpd4Input(){ NumPhotAtHpd4Input++ ; }
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G4int getNumPhotAtHpd4Input() {return NumPhotAtHpd4Input ; }
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void bumpNumHitInSi(){ NumHitInSi++ ; }
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G4int getNumHitInSi() {return NumHitInSi ; }
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G4double getMeanHXCoord() {return MeanHXCoord ; }
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G4double getMeanHYCoord() {return MeanHYCoord ; }
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G4double getNumHXCoord() {return NumHXCoord ; }
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G4double getNumHYCoord() {return NumHYCoord ; }
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void setMeanHXCoord(G4double cx );
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void setMeanHYCoord(G4double cy );
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public:
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G4String outputFileName;
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static RichTbAnalysisManager* instance;
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#ifdef G4ANALYSIS_USE
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RichTbAnalysisMessenger* analisysMessenger;
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AIDA::IAnalysisFactory* analysisFactory;
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AIDA::ITree* tree;
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AIDA::IHistogramFactory* histogramFactory;
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AIDA::IHistogram1D* getfhistoNPhotG() {return fhistoNrPhotG;}
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AIDA::IHistogram1D* getfhistoNBeforeMirror() {return fhistoNBeforeMirror;}
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AIDA::IHistogram1D* getfhistoWBeforeMirror() {return fhistoWBeforeMirror;}
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AIDA::IHistogram1D* getfhistoWAfterMirror() {return fhistoWAfterMirror;}
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AIDA::IHistogram1D* getfhistoCkvProdSmall() {return fhistoCkvProdSmall;}
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AIDA::IHistogram1D* getfhistoEmisZ() {return fhistoEmisZ;}
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AIDA::IHistogram1D* getfhistoCkvRadius() {return fhistoCkvRadius; }
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#endif
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public:
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#ifdef G4ANALYSIS_USE
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AIDA::IHistogram1D* fhistoNrPhotG;
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AIDA::IHistogram1D* fhistoNBeforeMirror;
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AIDA::IHistogram1D* fhistoWBeforeMirror;
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AIDA::IHistogram1D* fhistoWAfterMirror;
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AIDA::IHistogram1D* fhistoCkvProdSmall;
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AIDA::IHistogram1D* fhistoEmisZ;
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AIDA::IHistogram1D* fhistoCkvRadius;
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#endif
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G4Timer* iTimer;
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G4int NumPhotBeforeAerogel;
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G4int NumPhotBeforeMirror;
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G4int NumPhotBeforeFilter;
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G4int NumPhotAfterFilter;
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G4int NumPhotAtHpd1Input;
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G4int NumPhotAtHpd2Input;
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G4int NumPhotAtHpd3Input;
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G4int NumPhotAtHpd4Input;
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G4int NumPhotAfterMirror;
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G4int NumHitTotInHpd1;
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G4int NumHitTotInHpd2;
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G4int NumHitTotInHpd3;
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G4int NumHitTotInHpd4;
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G4int NumHitInSi;
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RichTbRunConfig* rConfig;
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G4double MeanHXCoord;
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G4double MeanHYCoord;
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G4double NumHXCoord;
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G4double NumHYCoord;
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};
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#endif
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