48 |
void Clear(Option_t *option){Clear();}; |
void Clear(Option_t *option){Clear();}; |
49 |
void Delete(){Clear();}; |
void Delete(){Clear();}; |
50 |
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51 |
Float_t GetSignal(Int_t, Float_t); ///< cluster signal |
Float_t GetSignal(Int_t, Float_t, Bool_t); ///< cluster signal |
52 |
Float_t GetSignal(Float_t cut) { return GetSignal( (Int_t)0, cut); }; |
Float_t GetSignal(Float_t cut) { return GetSignal( 0, cut, false); }; |
53 |
Float_t GetSignal(Int_t nstrip) { return GetSignal( nstrip, (Float_t)(-1000) ); }; |
Float_t GetSignal(Int_t nstrip, Bool_t force) { return GetSignal( nstrip, -1000., force ); }; |
54 |
Float_t GetSignal() { return GetSignal( (Int_t)0,(Float_t)INC_CUT); }; |
Float_t GetSignal(Int_t nstrip) { return GetSignal( nstrip, -1000., false ); }; |
55 |
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Float_t GetSignal() { return GetSignal( 0,(Float_t)INC_CUT, false); }; |
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57 |
Float_t GetSignalToNoise(Int_t,Float_t); ///< cluster signal/noise |
Float_t GetSignalToNoise(Int_t,Float_t); ///< cluster signal/noise |
58 |
Float_t GetSignalToNoise(Float_t cut) { return GetSignalToNoise( (Int_t)0, cut); }; |
Float_t GetSignalToNoise(Float_t cut) { return GetSignalToNoise( 0, cut); }; |
59 |
Float_t GetSignalToNoise(Int_t nstrip) { return GetSignalToNoise( nstrip, (Float_t)(-1000) ); }; |
Float_t GetSignalToNoise(Int_t nstrip) { return GetSignalToNoise( nstrip,-1000. ); }; |
60 |
Float_t GetSignalToNoise() { return GetSignalToNoise( (Int_t)0, (Float_t)INC_CUT); }; |
Float_t GetSignalToNoise() { return GetSignalToNoise( 0, (Float_t)INC_CUT); }; |
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63 |
Int_t GetMultiplicity(Float_t); ///< cluster multiplicity |
Int_t GetMultiplicity(Float_t); ///< cluster multiplicity |
69 |
Float_t GetCOG(Int_t); |
Float_t GetCOG(Int_t); |
70 |
Float_t GetCOG(Float_t angle); |
Float_t GetCOG(Float_t angle); |
71 |
Float_t GetCOG(){ return GetCOG(0); }; |
Float_t GetCOG(){ return GetCOG(0); }; |
72 |
Float_t GetETA(Int_t,float); |
Float_t GetETA(Int_t,float,bool); |
73 |
Float_t GetETA(float angle){ return GetETA(0,angle); }; |
// Float_t GetETA(float angle){ return GetETA(0,angle); }; |
74 |
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Float_t GetPositionPU(float); |
75 |
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Int_t GetPFAstrips(float angle); |
76 |
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77 |
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78 |
Bool_t IsBad(Int_t); ///< bad-cluster flag |
Bool_t IsBad(Int_t); ///< bad-cluster flag |
79 |
Bool_t IsSaturated(Int_t); ///< saturated-cluster flag |
Bool_t IsSaturated(Int_t); ///< saturated-cluster flag |
80 |
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149 |
/* int LoadVKMaskParam(){return LoadVKMaskParam("");}; */ |
/* int LoadVKMaskParam(){return LoadVKMaskParam("");}; */ |
150 |
/* int LoadParams(); */ |
/* int LoadParams(); */ |
151 |
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152 |
int ProcessEvent(int); |
// int ProcessEvent(int); |
153 |
int ProcessEvent(){return ProcessEvent(0);}; |
// int ProcessEvent(){return ProcessEvent();}; |
154 |
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int ProcessEvent(); |
155 |
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156 |
int GetPfaNbinsAngle(); |
// spostati in TrkParams |
157 |
int GetPfaNbinsETA(); |
/* int GetPfaNbinsAngle(); */ |
158 |
int GetPfaNbinsCharge(){return 0;}; |
/* int GetPfaNbinsETA(); */ |
159 |
float* GetPfaCoord(TString pfa, int nview, int nladder, int nang); |
/* int GetPfaNbinsCharge(){return 0;}; */ |
160 |
float* GetPfaAbs(TString pfa, int nang); |
/* float* GetPfaCoord(TString pfa, int nview, int nladder, int nang); */ |
161 |
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/* float* GetPfaAbs(TString pfa, int nang); */ |
162 |
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163 |
void StatusDump(int view); |
void StatusDump(int view); |
164 |
Bool_t StatusCheck(int view, int flagmask); |
Bool_t StatusCheck(int view, int flagmask); |
165 |
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166 |
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167 |
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void SetPFA(int pfaid){ sw_.pfaid = pfaid; }; |
168 |
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int GetPFA(){ return sw_.pfaid; }; |
169 |
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170 |
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171 |
ClassDef(TrkLevel1,2); |
ClassDef(TrkLevel1,2); |
172 |
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