source: trunk/MagicSoft/Mars/mcalib/MCalibrationPix.h@ 3125

Last change on this file since 3125 was 3115, checked in by gaug, 21 years ago
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1#ifndef MARS_MCalibrationPix
2#define MARS_MCalibrationPix
3
4#ifndef MARS_MParContainer
5#include "MParContainer.h"
6#endif
7
8#include "MHCalibrationPixel.h"
9
10class MCalibrationPix : public MParContainer
11{
12private:
13
14 static const Float_t gkElectronicPedRms; // The pure electronic component of the RMS
15 static const Float_t gkErrElectronicPedRms; // The error of the pure electronic component of the RMS
16 static const Float_t gkFFactor; // The laboratory F-factor of the PMTs
17 static const Float_t gkFFactorError; // The laboratory F-factor Error of the PMTs
18 static const Float_t gkChargeLimit; // The limit (in units of PedRMS) for acceptance of the fitted mean charge
19 static const Float_t gkChargeErrLimit; // The limit (in units of PedRMS) for acceptance of the fitted charge sigma
20 static const Float_t gkChargeRelErrLimit; // The limit (in units of Error of fitted charge) for acceptance of the fitted mean
21 static const Float_t gkTimeLimit; // The limit (in units of FADC slices) for acceptance of the fitted time
22 static const Float_t gkTimeErrLimit; // The limit (in units of FADC slices) for acceptance of the fitted time sigma
23 static const Float_t gkConvFFactorRelErrorLimit; // The limit (in units of [1]) for acceptance of the rel. error of the conversion factor with the FFactor method
24
25
26 Int_t fPixId; // the pixel Id
27
28 UInt_t fFlags; // Flag for the set Bits
29
30 Float_t fCharge; // The mean reduced charge after the fit
31 Float_t fErrCharge; // The error of reduced mean charge after the fit
32 Float_t fSigmaCharge; // The sigma of the mean charge after the fit
33 Float_t fErrSigmaCharge; // The error of the sigma of the mean charge after the fit
34 Float_t fRSigmaCharge; // The reduced squares of sigmas after the fit
35 Float_t fErrRSigmaCharge; // The reduced squares of sigmas after the fit
36 Float_t fChargeProb; // The probability of the fit function
37
38 Float_t fPed; // The mean pedestal (from MPedestalPix)
39 Float_t fPedRms; // The pedestal RMS (from MPedestalPix)
40 Float_t fErrPedRms; // The error of the pedestal RMS (from MPedestalPix)
41
42 Float_t fAbsTimeMean;
43 Float_t fAbsTimeMeanErr;
44 Float_t fAbsTimeRms;
45
46 Byte_t fTimeFirstHiGain; // The first used FADC slice
47 Byte_t fTimeLastHiGain; // The last used FADC slice
48
49 Byte_t fTimeFirstLoGain; // The first used FADC slice
50 Byte_t fTimeLastLoGain; // The last used FADC slice
51
52 Float_t fPheFFactorMethod; // The number of Phe's calculated (F-factor method)
53 Float_t fPheFFactorMethodError; // The error on the number of Phe's calculated (F-factor method)
54
55 Float_t fMeanConversionFFactorMethod; // The conversion factor to Phe's (F-factor method)
56 Float_t fMeanConversionBlindPixelMethod; // The conversion factor to Ph's (Blind Pixel method)
57 Float_t fMeanConversionPINDiodeMethod; // The conversion factor to Ph's (PIN Diode method)
58 Float_t fMeanConversionCombinedMethod; // The conversion factor to Ph's (all methods combined)
59
60 Float_t fErrorConversionFFactorMethod; // The error of the conversion factor to Phe's (F-factor method)
61 Float_t fErrorConversionBlindPixelMethod; // The error of the conversion factor to Ph's (Blind Pixel method)
62 Float_t fErrorConversionPINDiodeMethod; // The error of the conversion factor to Ph's (PIN Diode method)
63 Float_t fErrorConversionCombinedMethod; // The error of the conversion factor to Ph's (all methods combined)
64
65 Float_t fSigmaConversionFFactorMethod; // The sigma of conversion factor to Phe's (F-factor method)
66 Float_t fSigmaConversionBlindPixelMethod; // The conversion factor to Ph's (Blind Pixel method)
67 Float_t fSigmaConversionPINDiodeMethod; // The conversion factor to Ph's (PIN Diode method)
68 Float_t fSigmaConversionCombinedMethod; // The conversion factor to Ph's (all methods combined)
69
70 Float_t fTotalFFactor; // The F-Factor of the total readout system (Sigma(out)/mean(out)*Mean(in)/sigma(in)
71 Float_t fTotalFFactorError; // The error on the F-Factor of the total readout system
72
73 Float_t fConversionHiLo; // The conversion factor between Hi Gain and Lo Gain
74 Float_t fConversionHiLoError; // The error of the conversion factor between Hi Gain and Lo Gain
75
76 Float_t fNumHiGainSamples;
77 Float_t fNumLoGainSamples;
78
79 Bool_t fFactorCalculated;
80
81 enum { kHiGainSaturation,
82 kExcluded, kExcludeQualityCheck,
83 kChargeValid, kTimeFitValid,
84 kFitted, kOscillating,
85 kBlindPixelMethodValid, kFFactorMethodValid, kPINDiodeMethodValid, kCombinedMethodValid };
86
87 MHCalibrationPixel *fHist; // Pointer to the histograms performing the fits, etc.
88
89 Bool_t CheckChargeValidity();
90 Bool_t CheckTimeFitValidity();
91 Bool_t CalcFFactorMethod();
92
93public:
94
95 MCalibrationPix(const char *name=NULL, const char *title=NULL);
96 ~MCalibrationPix();
97
98 void Clear(Option_t *o="");
99
100 // Getter
101 MHCalibrationPixel *GetHist() const { return fHist; }
102
103 // Charges
104 Float_t GetCharge() const { return fCharge; }
105 Float_t GetErrCharge() const { return fErrCharge; }
106 Float_t GetChargeProb() const { return fChargeProb; }
107 Float_t GetSigmaCharge() const { return fSigmaCharge; }
108 Float_t GetErrSigmaCharge() const { return fErrSigmaCharge; }
109 Float_t GetRSigmaCharge() const { return fRSigmaCharge; }
110 Float_t GetErrRSigmaCharge() const { return fErrRSigmaCharge; }
111
112
113 Float_t GetAbsTimeMean() const { return fAbsTimeMean; }
114 Float_t GetAbsTimeMeanErr() const { return fAbsTimeMeanErr; }
115 Float_t GetAbsTimeRms() const { return fAbsTimeRms; }
116
117 // Conversion Factors
118 Float_t GetConversionHiLo() const { return fConversionHiLo; }
119 Float_t GetConversionHiLoError() const { return fConversionHiLoError; }
120
121 Float_t GetMeanConversionBlindPixelMethod() const { return fMeanConversionBlindPixelMethod ; }
122 Float_t GetErrorConversionBlindPixelMethod() const { return fErrorConversionBlindPixelMethod ; }
123 Float_t GetSigmaConversionBlindPixelMethod() const { return fSigmaConversionBlindPixelMethod ; }
124
125 Float_t GetMeanConversionFFactorMethod();
126 Float_t GetErrorConversionFFactorMethod();
127 Float_t GetSigmaConversionFFactorMethod();
128
129 Float_t GetMeanConversionPINDiodeMethod() const { return fMeanConversionPINDiodeMethod ; }
130 Float_t GetErrorConversionPINDiodeMethod() const { return fErrorConversionPINDiodeMethod ; }
131 Float_t GetSigmaConversionPINDiodeMethod() const { return fSigmaConversionPINDiodeMethod ; }
132
133 Float_t GetMeanConversionCombinedMethod() const { return fMeanConversionCombinedMethod ; }
134 Float_t GetErrorConversionCombinedMethod() const { return fErrorConversionCombinedMethod ; }
135 Float_t GetSigmaConversionCombinedMethod() const { return fSigmaConversionCombinedMethod ; }
136
137 Float_t GetPheFFactorMethod();
138 Float_t GetPheFFactorMethodError();
139
140 Int_t GetPixId() const { return fPixId; }
141
142 Float_t GetPed() const { return fPed; }
143 Float_t GetPedRms() const { return fPedRms; }
144
145 Float_t GetTotalFFactorFFactorMethod();
146 Float_t GetTotalFFactorErrorFFactorMethod();
147
148 Float_t GetTotalFFactorBlindPixelMethod();
149 Float_t GetTotalFFactorErrorBlindPixelMethod();
150
151 Float_t GetTotalFFactorPINDiodeMethod();
152 Float_t GetTotalFFactorErrorPINDiodeMethod();
153
154 Float_t GetTotalFFactorCombinedMethod();
155 Float_t GetTotalFFactorErrorCombinedMethod();
156
157 Bool_t IsExcluded() const;
158 Bool_t IsExcludeQualityCheck() const;
159 Bool_t IsHiGainSaturation() const;
160 Bool_t IsChargeValid() const;
161 Bool_t IsFitted() const;
162 Bool_t IsOscillating();
163 Bool_t IsBlindPixelMethodValid() const;
164 Bool_t IsPINDiodeMethodValid() const;
165 Bool_t IsFFactorMethodValid();
166 Bool_t IsCombinedMethodValid();
167
168 // Setter
169 void SetPedestal(Float_t ped, Float_t pedrms, Float_t higainsamp, Float_t logainsamp);
170 void SetConversionHiLo(Float_t c) { fConversionHiLo = c; }
171 void SetConversionHiLoError(Float_t e) { fConversionHiLoError = e; }
172
173 // Setters for MC
174 void SetConversionFFactorMethod(Float_t c, Float_t err, Float_t sig);
175 void SetConversionBlindPixelMethod(Float_t c, Float_t err, Float_t sig);
176 void SetConversionPINDiodeMethod(Float_t c, Float_t err, Float_t sig);
177 void SetConversionCombinedMethod(Float_t c, Float_t err, Float_t sig);
178
179 // Bit Setters
180 void SetHiGainSaturation(Bool_t b = kTRUE);
181 void SetExcluded(Bool_t b = kTRUE);
182 void SetExcludeQualityCheck(Bool_t b = kTRUE);
183 void SetChargeValid(Bool_t b = kTRUE);
184 void SetFitted(Bool_t b = kTRUE);
185 void SetOscillating(Bool_t b = kTRUE);
186 void SetBlindPixelMethodValid(Bool_t b = kTRUE);
187 void SetFFactorMethodValid(Bool_t b = kTRUE);
188 void SetPINDiodeMethodValid(Bool_t b = kTRUE);
189 void SetAbsTimeBordersHiGain(Byte_t f, Byte_t l);
190 void SetAbsTimeBordersLoGain(Byte_t f, Byte_t l);
191
192 // Fill histos
193 Bool_t FillChargeHiGain(Float_t q) const { return fHist->FillChargeHiGain(q); }
194 Bool_t FillAbsTimeHiGain(Float_t t) const { return fHist->FillAbsTimeHiGain(t); }
195
196 Bool_t FillChargeLoGain(Float_t q) const { return fHist->FillChargeLoGain(q); }
197 Bool_t FillAbsTimeLoGain(Float_t t) const { return fHist->FillAbsTimeLoGain(t); }
198
199 Bool_t FillGraphs(Float_t qhi,Float_t qlo) const { return fHist->FillGraphs(qhi,qlo); }
200
201 void DefinePixId(Int_t i);
202
203 // Fits
204 Bool_t FitCharge();
205
206 // Draws
207 void Draw(Option_t *opt="") { fHist->Draw(opt); }
208 TObject *DrawClone(Option_t *opt="") const { return fHist->DrawClone(opt); }
209
210 // Miscellaneous
211 void ApplyLoGainConversion();
212 void CheckOscillations();
213
214 ClassDef(MCalibrationPix, 1) // Container for Calibration of one pixel
215};
216
217#endif
218
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