1 | #ifndef MARS_MPedestalPix
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2 | #define MARS_MPedestalPix
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3 |
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4 | #ifndef MARS_MParContainer
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5 | #include "MParContainer.h"
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6 | #endif
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7 |
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8 | class MPedestalPix : public MParContainer
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9 | {
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10 | private:
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11 | Float_t fPedestal; // mean value of pedestal (PMT offset)
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12 | Float_t fPedestalRms; // root mean square / sigma / standard deviation of pedestal
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13 | Float_t fPedestalABoffset; // the difference between odd slice pedestal mean and total mean
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14 | UInt_t fNumEvents; // number of times, the Process was executed (to estimate the error of pedestal)
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15 |
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16 | public:
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17 | MPedestalPix();
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18 |
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19 | void Clear(Option_t *o="");
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20 | void Copy(TObject &object) const;
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21 |
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22 | // Using histograms
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23 | void InitUseHists();
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24 |
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25 | // Setters
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26 | void SetPedestal(const Float_t f) { fPedestal = f; }
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27 | void SetPedestalRms(const Float_t f) { fPedestalRms = f; }
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28 | void SetPedestalABoffset(const Float_t f) { fPedestalABoffset = f; }
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29 | void SetNumEvents(const UInt_t n) { fNumEvents = n; }
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30 |
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31 | void Set(const Float_t m, const Float_t r, const Float_t offs=0, const UInt_t n=0);
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32 |
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33 | // Getters
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34 | Float_t GetPedestal() const { return fPedestal; }
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35 | Float_t GetPedestalRms() const { return fPedestalRms; }
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36 | Float_t GetPedestalABoffset() const { return fPedestalABoffset; }
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37 | Float_t GetPedestalError() const { return fNumEvents>0 ? fPedestalRms/TMath::Sqrt((Float_t)fNumEvents) : 0; }
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38 | Float_t GetPedestalRmsError() const { return fNumEvents>0 ? fPedestalRms/TMath::Sqrt((Float_t)fNumEvents*2) : 0; }
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39 |
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40 | UInt_t GetNumEvents() const { return fNumEvents; }
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41 |
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42 | Bool_t IsValid() const;
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43 |
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44 | ClassDef(MPedestalPix, 3) // Storage Container for Pedestal information of one pixel
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45 | };
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46 |
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47 | #endif
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