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d15a28e7 1#ifndef ALIPHOSEMCRECPOINT_H
2#define ALIPHOSEMCRECPOINT_H
3/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
6ad0bfa0 6/* $Id$ */
7
b2a60966 8//_________________________________________________________________________
9// RecPoint implementation for PHOS-EMC
10// An EmcRecPoint is a cluster of digits
11//
12//*-- Author: Dmitri Peressounko (RRC KI & SUBATECH)
d15a28e7 13
14// --- ROOT system ---
15
7932f811 16//#include "TObject.h"
31aa6d6c 17#include "TArrayI.h"
18
d15a28e7 19// --- Standard library ---
20
21// --- AliRoot header files ---
22
23#include "AliPHOSDigit.h"
24#include "AliPHOSRecPoint.h"
25
26class AliPHOSEmcRecPoint : public AliPHOSRecPoint {
27
28public:
29
7932f811 30 AliPHOSEmcRecPoint() ;
6c370def 31 AliPHOSEmcRecPoint(const AliPHOSEmcRecPoint & rp) {
32 // cpy ctor requested by Coding Convention
33 // but not yet needed
34 assert(0==1) ;
35 }
36
83974468 37 virtual ~AliPHOSEmcRecPoint() ;
b2a60966 38
7932f811 39 virtual void AddDigit(AliPHOSDigit & digit, Float_t Energy) ; // add a digit to the digits list
2a941f4e 40 Int_t Compare(const TObject * obj) const; // method for sorting
7932f811 41
42 virtual void EvalAll(Float_t logWeight,TClonesArray * digits) ;
43 void EvalCoreEnergy(TClonesArray * digits) ;
44 virtual void EvalLocalPosition(Float_t logWeight,TClonesArray * digits) ;// computes the position in the PHOS module
45 virtual void EvalDispersion(Float_t logWeight,TClonesArray * digits) ; // computes the dispersion of the shower
46 virtual void EvalElipsAxis(Float_t logWeight, TClonesArray * digits ); // computes the axis of shower ellipsoide
47 virtual void ExecuteEvent(Int_t event, Int_t px, Int_t py) ;
48
49 Float_t GetCoreEnergy()const {return fCoreEnergy ;}
50 virtual Float_t GetDispersion()const {return fDispersion ;}
51 virtual void GetElipsAxis(Float_t * lambda)const { lambda[0] = fLambda[0] ;
52 lambda[1] = fLambda[1] ; }
53 Float_t * GetEnergiesList() const {return fEnergyList ;} // gets the list of energies making this recpoint
ad8cfaf4 54 Float_t GetMaximalEnergy(void) const ; // get the highest energy in the cluster
55 Int_t GetMaximumMultiplicity() const {return fMaxDigit ;} // gets the maximum number of digits allowed
56 Int_t GetMultiplicity(void) const { return fMulDigit ; } // gets the number of digits making this recpoint
57 Int_t GetMultiplicityAtLevel(const Float_t level) const ; // computes multiplicity of digits with
58 // energy above relative level
7932f811 59 virtual Int_t GetNumberOfLocalMax(Int_t * maxAt, Float_t * maxAtEnergy,
60 Float_t locMaxCut,TClonesArray * digits ) const ;
61 // searches for the local maxima
ad8cfaf4 62 Bool_t IsEmc(void) const { return kTRUE ; } // true if the recpoint is in EMC
63 Bool_t IsSortable() const {return kTRUE ; } // says that emcrecpoints are sortable objects
cf239357 64 void Print(Option_t * opt = "void") ;
d15a28e7 65
c6e196df 66 AliPHOSEmcRecPoint & operator = (const AliPHOSEmcRecPoint & rvalue) {
6c370def 67 // assignement operator requested by coding convention
68 // but not needed
69 assert(0==1) ;
70 return *this ;
71 }
72
7932f811 73 protected:
d15a28e7 74
7932f811 75 virtual Bool_t AreNeighbours(AliPHOSDigit * digit1, AliPHOSDigit * digit2 ) const ;
d15a28e7 76
7932f811 77 Float_t fCoreEnergy ;
78 Float_t fLambda[2] ; //
79 Float_t fDispersion ;
80 Float_t *fEnergyList ; //[fMulDigit] energy of digits
83974468 81
b2a60966 82 ClassDef(AliPHOSEmcRecPoint,1) // EMC RecPoint (cluster)
d15a28e7 83
84};
85
86#endif // AliPHOSEMCRECPOINT_H