1 | #ifndef MARS_MExtractBlindPixel
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2 | #define MARS_MExtractBlindPixel
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3 |
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4 | #ifndef MARS_MExtractor
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5 | #include "MExtractor.h"
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6 | #endif
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7 |
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8 | #ifndef MARS_MArrayI
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9 | #include "MArrayI.h"
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10 | #endif
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11 | #ifndef MARS_MArrayF
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12 | #include "MArrayF.h"
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13 | #endif
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14 |
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15 | class MCalibrationBlindCam;
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16 | class MExtractedSignalBlindPixel;
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17 |
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18 | class MExtractBlindPixel : public MExtractor
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19 | {
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20 | private:
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21 |
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22 | static const UInt_t fgBlindPixelIdx; //! Default blind pixels index before modification run
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23 | static const Byte_t fgHiGainFirst; //! Default First FADC slice Hi-Gain Signal (currently set to: 10 )
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24 | static const Byte_t fgHiGainLast; //! Default Last FADC slice Hi-Gain Signal (currently set to: 29 )
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25 | static const Byte_t fgLoGainFirst; //! Default First FADC slice Filter (currently set to: 0 )
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26 | static const Byte_t fgLoGainLast; //! Default Last FADC slice Filter (currently set to: 6 )
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27 | static const Int_t fgNSBFilterLimit; //! Default for fNSBFilterLimit
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28 | static const Float_t fgResolution; //! Default for fResolution (currently set to: 0.003)
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29 | static const Float_t gkOverflow; //! Default sum to assign overflow in case of saturation
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30 |
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31 | MExtractedSignalBlindPixel *fBlindPixel; // Extracted signal of the Blind Pixel
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32 |
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33 | // Byte_t fHiLoFirst; // If not zero, start extraction from fHiLoFirst slice of Low-Gain
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34 | // Byte_t fHiLoLast;
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35 |
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36 | // MArrayF fHiGainSignal; //! Need fast access to the signals in a float way
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37 | MArrayF fHiGainFirstDeriv; //! First derivative at intersection
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38 | MArrayF fHiGainSecondDeriv; //! Second derivative at intersection
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39 |
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40 | Float_t fResolution; // The time resolution in FADC units
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41 | MArrayI fBlindPixelIdx; // Array holding the IDs of the blind pixel(s)
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42 | Int_t fNSBFilterLimit; // Limit of sum of FADC slices for filter part
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43 |
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44 | Byte_t fExtractionType; // What extraction type has been chosen?
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45 | Byte_t fDataType; // What data container type is needed?
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46 | // Int_t fNumBlindPixels; // Current number of blind pixels
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47 |
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48 | public:
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49 | enum ExtractionType_t { kAmplitude, kIntegral, kFilter };
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50 | enum DataType_t { kRawEvt, kRawEvt2 };
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51 |
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52 | private:
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53 | Float_t FindAmplitude(Int_t idx, Int_t numsat) const;
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54 | // void FindIntegral (Byte_t *firstused, Byte_t *lowgain, Float_t &sum, Byte_t &sat);
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55 | // void FindSignalFilter(Byte_t *ptr, Int_t range, Int_t &sum, Byte_t &sat) const;
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56 |
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57 | Int_t PreProcess(MParList *pList);
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58 | Bool_t ReInit(MParList *pList);
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59 | Int_t Process();
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60 |
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61 | public:
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62 |
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63 | MExtractBlindPixel(const char *name=NULL, const char *title=NULL);
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64 |
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65 | void Clear( const Option_t *o ="");
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66 |
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67 | // Getters
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68 | Bool_t IsExtractionType ( const ExtractionType_t typ );
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69 | Bool_t IsDataType ( const DataType_t typ );
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70 |
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71 | // Setters
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72 | /*
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73 | void SetBlindPixelIdx( const Int_t idx=fgBlindPixelIdx, const UInt_t nr=0 )
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74 | {
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75 | if (nr>=fBlindPixelIdx.GetSize())
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76 | fBlindPixelIdx.Set(nr+1);
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77 | fBlindPixelIdx[nr] = idx;
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78 | }
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79 | */
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80 |
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81 | void SetBlindPixels(const MCalibrationBlindCam &cam);
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82 |
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83 | void SetExtractionType( const ExtractionType_t typ=kAmplitude );
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84 | void SetDataType ( const DataType_t typ=kRawEvt );
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85 | void SetNSBFilterLimit( const Int_t lim=fgNSBFilterLimit ) { fNSBFilterLimit = lim; }
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86 |
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87 | // void SetNumBlindPixels( const Int_t num=1 ) { fNumBlindPixels = num; }
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88 |
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89 | void SetRange ( const UShort_t hifirst=0, const UShort_t hilast=0,
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90 | const Int_t lofirst=0, const Byte_t lolast=0 );
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91 | void SetResolution ( const Float_t f=fgResolution ) { fResolution = f; }
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92 |
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93 | ClassDef(MExtractBlindPixel, 0) // Signal Extractor for the Blind Pixel
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94 | };
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95 |
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96 | #endif
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97 |
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