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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 | |
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6 | /* $Id$ */ |
7 | |
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8 | //_________________________________________________________________________ |
9 | // RecPoint implementation for PHOS-EMC |
10 | // An EmcRecPoint is a cluster of digits |
11 | // |
12 | //*-- Author: Dmitri Peressounko (RRC KI & SUBATECH) |
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13 | |
14 | // --- ROOT system --- |
15 | |
16 | #include "TObject.h" |
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17 | #include "TArrayI.h" |
18 | |
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19 | // --- Standard library --- |
20 | |
21 | // --- AliRoot header files --- |
22 | |
23 | #include "AliPHOSDigit.h" |
24 | #include "AliPHOSRecPoint.h" |
25 | |
26 | class AliPHOSEmcRecPoint : public AliPHOSRecPoint { |
27 | |
28 | public: |
29 | |
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30 | AliPHOSEmcRecPoint(){ |
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31 | // default ctor |
32 | fEnergyList = 0; |
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33 | } ; |
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34 | AliPHOSEmcRecPoint(Float_t W0, Float_t LocMaxCut) ; |
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35 | AliPHOSEmcRecPoint(const AliPHOSEmcRecPoint & rp) { |
36 | // cpy ctor requested by Coding Convention |
37 | // but not yet needed |
38 | assert(0==1) ; |
39 | } |
40 | |
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41 | virtual ~AliPHOSEmcRecPoint() ; |
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42 | |
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43 | virtual void AddDigit(AliPHOSDigit & digit, Float_t Energy) ; // add a digit to the digits list |
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44 | Int_t Compare(const TObject * obj) const; // method for sorting |
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45 | Float_t CoreEnergy() ; |
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46 | |
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47 | Float_t GetDelta (){ |
48 | // gets the fDelta data member |
49 | return fDelta ; } |
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50 | Float_t GetDispersion() ; // computes the dispersion of the shower |
51 | void GetElipsAxis(Float_t * lambda) ; // computes the axis of shower ellipsoide |
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52 | Float_t * GetEnergiesList(){ |
53 | // gets the list of energies makink this recpoint |
54 | return fEnergyList ;} |
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55 | virtual void ExecuteEvent(Int_t event, Int_t px, Int_t py) ; |
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56 | Float_t GetLocMaxCut () { |
57 | // gets the cut of the local maximum search |
58 | return fLocMaxCut ; } |
59 | Float_t GetLogWeightCut (){ |
60 | // gets the logarythmic weight for the center of gravity calculation |
61 | return fW0 ; } |
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62 | Float_t GetMaximalEnergy(void) ; // get the highest energy in the cluster |
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63 | Int_t GetMaximumMultiplicity() { |
64 | // gets the maximum number of digits allowed |
65 | return fMaxDigit ; } |
66 | Int_t GetMultiplicity(void) const { |
67 | // gets the number of digits making this recpoint |
68 | return fMulDigit ; } |
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69 | Int_t GetMultiplicityAtLevel(const Float_t level) ; // computes multiplicity of digits with energy above relative level |
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70 | Int_t GetNumberOfLocalMax(Int_t * maxAt, Float_t * maxAtEnergy) ; // searches for the local maxima |
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71 | |
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72 | Float_t GetTotalEnergy(void) const { |
73 | // gets the total amplitude of this recpoint (in EMC RecPoint Amp = Energy) |
74 | return fAmp ; } |
75 | void GetLocalPosition(TVector3 &Lpos) ; // computes the position in the PHOS module |
76 | Bool_t IsEmc(void) { |
77 | // true if the recpoint is in EMC |
78 | return kTRUE ; } |
79 | Bool_t IsSortable() const { |
80 | // says that emcrecpoints are sortable objects |
81 | return kTRUE ; } |
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82 | void Print(Option_t * opt = "void") ; |
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83 | |
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84 | AliPHOSEmcRecPoint & operator = (const AliPHOSEmcRecPoint & rvalue) { |
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85 | // assignement operator requested by coding convention |
86 | // but not needed |
87 | assert(0==1) ; |
88 | return *this ; |
89 | } |
90 | |
91 | private: |
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92 | |
93 | Bool_t AreNeighbours(AliPHOSDigit * digit1, AliPHOSDigit * digit2 ) ; |
94 | |
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95 | Float_t fDelta ; // parameter used to sort the clusters |
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96 | Float_t *fEnergyList ; //[fMulDigit] energy of digits |
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97 | Float_t fLocMaxCut ; // minimum energy difference to distinguish two maxima |
98 | Float_t fW0 ; // logarithmic weight factor for center of gravity calculation |
99 | |
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100 | ClassDef(AliPHOSEmcRecPoint,1) // EMC RecPoint (cluster) |
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101 | |
102 | }; |
103 | |
104 | #endif // AliPHOSEMCRECPOINT_H |