1 | /* ======================================================================== *\
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2 | !
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3 | ! *
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4 | ! * This file is part of MARS, the MAGIC Analysis and Reconstruction
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5 | ! * Software. It is distributed to you in the hope that it can be a useful
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6 | ! * and timesaving tool in analysing Data of imaging Cerenkov telescopes.
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7 | ! * It is distributed WITHOUT ANY WARRANTY.
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8 | ! *
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9 | ! * Permission to use, copy, modify and distribute this software and its
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10 | ! * documentation for any purpose is hereby granted without fee,
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11 | ! * provided that the above copyright notice appear in all copies and
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12 | ! * that both that copyright notice and this permission notice appear
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13 | ! * in supporting documentation. It is provided "as is" without express
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14 | ! * or implied warranty.
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15 | ! *
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16 | !
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17 | !
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18 | ! Author(s): Markus Gaug 09/2003 <mailto:markus@ifae.es>
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19 | !
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20 | ! Copyright: MAGIC Software Development, 2000-2001
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21 | !
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22 | !
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23 | \* ======================================================================== */
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24 |
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25 | //////////////////////////////////////////////////////////////////////////////
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26 | //
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27 | // MCalibrationCalc
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28 | //
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29 | // Task to calculate the calibration conversion factors from the FADC
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30 | // time slices. The integrated time slices have to be delivered by an
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31 | // MExtractedSignalCam. The pedestals by an MPedestalCam and possibly
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32 | // arrival times from MArrivalTime
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33 | //
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34 | // The output container MCalibrationCam holds one entry of type MCalibrationPix
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35 | // for every pixel. It is filled in the following way:
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36 | //
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37 | // ProProcess: Search for MPedestalCam, MExtractedSignalCam
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38 | // Initialize MCalibrationCam
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39 | // Initialize MArrivalTime if exists
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40 | // Initialize pulser light wavelength
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41 | //
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42 | // ReInit: MCalibrationCam::InitSize(NumPixels) is called which allocates
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43 | // memory in a TClonesArray of type MCalibrationPix
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44 | // Initialize number of used FADC slices
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45 | // Optionally exclude pixels from calibration
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46 | //
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47 | // Process: Optionally, a cut on cosmics can be performed
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48 | //
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49 | // Every MCalibrationPix holds a histogram class,
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50 | // MHCalibrationPixel which itself hold histograms of type:
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51 | // HCharge(npix) (distribution of summed FADC time slice
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52 | // entries)
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53 | // HTime(npix) (distribution of position of maximum)
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54 | // HChargevsN(npix) (distribution of charges vs. event number.
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55 | //
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56 | // PostProcess: All histograms HCharge(npix) are fitted to a Gaussian
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57 | // All histograms HTime(npix) are fitted to a Gaussian
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58 | // The histogram HBlindPixelCharge (blind pixel) is fitted to
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59 | // a single PhE fit
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60 | //
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61 | // The histograms of the PIN Diode are fitted to Gaussians
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62 | //
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63 | // Fits can be excluded via the commands:
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64 | // MalibrationCam::SkipTimeFits() (skip all time fits)
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65 | // MalibrationCam::SkipBlindPixelFits() (skip all blind
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66 | // pixel fits)
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67 | // MalibrationCam::SkipPinDiodeFits() (skip all PIN Diode
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68 | // fits)
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69 | //
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70 | // Hi-Gain vs. Lo-Gain Calibration (very memory-intensive)
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71 | // can be skipped with the command:
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72 | // MalibrationCam::SkipHiLoGainCalibration()
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73 | //
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74 | // Input Containers:
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75 | // MRawEvtData
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76 | // MPedestalCam
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77 | // MExtractedSignalCam
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78 | //
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79 | // Output Containers:
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80 | // MCalibrationCam
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81 | //
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82 | //////////////////////////////////////////////////////////////////////////////
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83 | #include "MCalibrationCalc.h"
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84 |
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85 | // FXIME: Usage of fstream is a preliminary workaround!
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86 | #include <fstream>
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87 |
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88 | // FXIME: This has to be removed!!!! (YES, WHEN WE HAVE ACCESS TO THE DATABASE!!!!!)
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89 | #include "MCalibrationConfig.h"
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90 |
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91 | #include <TSystem.h>
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92 |
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93 | #include "MLog.h"
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94 | #include "MLogManip.h"
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95 |
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96 | #include "MParList.h"
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97 |
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98 | #include "MGeomCam.h"
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99 | #include "MRawRunHeader.h"
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100 | #include "MRawEvtPixelIter.h"
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101 |
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102 | #include "MPedestalCam.h"
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103 | #include "MPedestalPix.h"
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104 |
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105 | #include "MCalibrationCam.h"
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106 | #include "MCalibrationPix.h"
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107 |
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108 | #include "MExtractedSignalCam.h"
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109 | #include "MExtractedSignalPix.h"
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110 |
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111 | #include "MCalibrationBlindPix.h"
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112 | #include "MCalibrationPINDiode.h"
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113 |
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114 | #include "MArrivalTime.h"
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115 |
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116 | ClassImp(MCalibrationCalc);
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117 |
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118 | using namespace std;
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119 |
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120 | const Int_t MCalibrationCalc::fBlindPixelId = 559;
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121 | const Int_t MCalibrationCalc::fPINDiodeId = 9999;
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122 | const Byte_t MCalibrationCalc::fgSaturationLimit = 254;
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123 | const Byte_t MCalibrationCalc::fgBlindPixelFirst = 3;
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124 | const Byte_t MCalibrationCalc::fgBlindPixelLast = 12;
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125 |
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126 | // --------------------------------------------------------------------------
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127 | //
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128 | // Default constructor.
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129 | //
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130 | MCalibrationCalc::MCalibrationCalc(const char *name, const char *title)
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131 | : fPedestals(NULL), fCalibrations(NULL), fSignals(NULL),
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132 | fRawEvt(NULL), fRunHeader(NULL), fArrivalTime(NULL), fEvtTime(NULL)
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133 | {
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134 |
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135 | fName = name ? name : "MCalibrationCalc";
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136 | fTitle = title ? title : "Task to calculate the calibration constants and MCalibrationCam ";
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137 |
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138 | AddToBranchList("MRawEvtData.fHiGainPixId");
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139 | AddToBranchList("MRawEvtData.fLoGainPixId");
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140 | AddToBranchList("MRawEvtData.fHiGainFadcSamples");
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141 | AddToBranchList("MRawEvtData.fLoGainFadcSamples");
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142 |
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143 | Clear();
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144 | }
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145 |
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146 | void MCalibrationCalc::Clear(const Option_t *o)
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147 | {
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148 |
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149 | SETBIT(fFlags, kUseTimes);
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150 | SETBIT(fFlags, kUseBlindPixelFit);
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151 | SETBIT(fFlags, kUseCosmicsRejection);
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152 | SETBIT(fFlags, kUseQualityChecks);
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153 | SETBIT(fFlags, kHiLoGainCalibration);
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154 |
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155 | CLRBIT(fFlags, kBlindPixelOverFlow);
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156 | CLRBIT(fFlags, kPINDiodeOverFlow);
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157 | CLRBIT(fFlags, kHiGainOverFlow);
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158 | CLRBIT(fFlags, kLoGainOverFlow);
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159 | // As long as we don't have the PIN Diode:
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160 | CLRBIT(fFlags, kUsePinDiodeFit);
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161 |
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162 |
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163 |
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164 | fEvents = 0;
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165 | fCosmics = 0;
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166 |
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167 | fNumHiGainSamples = 0;
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168 | fNumLoGainSamples = 0;
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169 | fConversionHiLo = 0;
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170 | fNumExcludedPixels = 0;
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171 |
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172 | fColor = kECT1;
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173 | }
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174 |
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175 |
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176 | MCalibrationBlindPix *MCalibrationCalc::GetBlindPixel() const
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177 | {
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178 | return fCalibrations->GetBlindPixel();
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179 | }
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180 |
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181 | MCalibrationPINDiode *MCalibrationCalc::GetPINDiode() const
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182 | {
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183 | return fCalibrations->GetPINDiode();
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184 | }
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185 |
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186 | // --------------------------------------------------------------------------
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187 | //
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188 | // The PreProcess searches for the following input containers:
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189 | // - MRawEvtData
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190 | // - MPedestalCam
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191 | //
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192 | // The following output containers are also searched and created if
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193 | // they were not found:
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194 | //
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195 | // - MHCalibrationBlindPixel
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196 | // - MCalibrationCam
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197 | //
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198 | // The following output containers are only searched, but not created
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199 | //
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200 | // - MArrivaltime
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201 | // - MTime
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202 | //
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203 | Int_t MCalibrationCalc::PreProcess(MParList *pList)
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204 | {
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205 |
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206 | fRawEvt = (MRawEvtData*)pList->FindObject("MRawEvtData");
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207 | if (!fRawEvt)
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208 | {
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209 | *fLog << err << dbginf << "MRawEvtData not found... aborting." << endl;
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210 | return kFALSE;
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211 | }
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212 |
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213 | const MRawRunHeader *runheader = (MRawRunHeader*)pList->FindObject("MRawRunHeader");
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214 | if (!runheader)
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215 | *fLog << warn << dbginf << "Warning - cannot check file type, MRawRunHeader not found." << endl;
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216 | else
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217 | if (runheader->GetRunType() == kRTMonteCarlo)
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218 | {
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219 | return kTRUE;
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220 | }
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221 |
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222 | fCalibrations = (MCalibrationCam*)pList->FindCreateObj("MCalibrationCam");
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223 | if (!fCalibrations)
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224 | {
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225 | *fLog << err << dbginf << "MCalibrationCam could not be created ... aborting." << endl;
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226 | return kFALSE;
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227 | }
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228 |
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229 | fArrivalTime = (MArrivalTime*)pList->FindObject("MArrivalTime");
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230 |
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231 | fEvtTime = (MTime*)pList->FindObject("MTime");
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232 |
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233 | switch (fColor)
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234 | {
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235 | case kEBlue:
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236 | fCalibrations->SetColor(MCalibrationCam::kECBlue);
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237 | break;
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238 | case kEGreen:
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239 | fCalibrations->SetColor(MCalibrationCam::kECGreen);
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240 | break;
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241 | case kEUV:
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242 | fCalibrations->SetColor(MCalibrationCam::kECUV);
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243 | break;
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244 | case kECT1:
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245 | fCalibrations->SetColor(MCalibrationCam::kECCT1);
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246 | break;
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247 | default:
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248 | fCalibrations->SetColor(MCalibrationCam::kECCT1);
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249 | }
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250 |
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251 | fPedestals = (MPedestalCam*)pList->FindObject("MPedestalCam");
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252 | if (!fPedestals)
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253 | {
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254 | *fLog << err << dbginf << "Cannot find MPedestalCam ... aborting" << endl;
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255 | return kFALSE;
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256 | }
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257 |
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258 |
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259 | fSignals = (MExtractedSignalCam*)pList->FindObject("MExtractedSignalCam");
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260 | if (!fSignals)
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261 | {
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262 | *fLog << err << dbginf << "Cannot find MExtractedSignalCam ... aborting" << endl;
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263 | return kFALSE;
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264 | }
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265 |
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266 | return kTRUE;
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267 | }
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268 |
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269 |
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270 | // --------------------------------------------------------------------------
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271 | //
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272 | // The ReInit searches for the following input containers:
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273 | // - MRawRunHeader
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274 | //
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275 | Bool_t MCalibrationCalc::ReInit(MParList *pList )
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276 | {
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277 |
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278 | fRunHeader = (MRawRunHeader*)pList->FindObject("MRawRunHeader");
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279 | if (!fRunHeader)
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280 | {
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281 | *fLog << err << dbginf << ": MRawRunHeader not found... aborting." << endl;
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282 | return kFALSE;
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283 | }
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284 |
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285 |
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286 | MGeomCam *cam = (MGeomCam*)pList->FindObject("MGeomCam");
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287 | if (!cam)
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288 | {
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289 | *fLog << err << GetDescriptor() << ": No MGeomCam found... aborting." << endl;
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290 | return kFALSE;
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291 | }
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292 |
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293 | fNumHiGainSamples = fSignals->GetNumUsedHiGainFADCSlices();
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294 | fNumLoGainSamples = fSignals->GetNumUsedLoGainFADCSlices();
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295 | fSqrtHiGainSamples = TMath::Sqrt((Float_t)fNumHiGainSamples);
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296 |
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297 | UInt_t npixels = cam->GetNumPixels();
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298 |
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299 | for (UInt_t i=0; i<npixels; i++)
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300 | {
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301 |
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302 | MCalibrationPix &pix = (*fCalibrations)[i];
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303 | pix.DefinePixId(i);
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304 |
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305 | pix.SetAbsTimeBordersHiGain(fSignals->GetFirstUsedSliceHiGain(),
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306 | fSignals->GetLastUsedSliceHiGain());
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307 | pix.SetAbsTimeBordersLoGain(fSignals->GetFirstUsedSliceLoGain(),
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308 | fSignals->GetLastUsedSliceLoGain());
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309 |
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310 | if (!TESTBIT(fFlags,kUseQualityChecks))
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311 | pix.SetExcludeQualityCheck();
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312 |
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313 | }
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314 |
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315 | //
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316 | // Look for file to exclude pixels from analysis
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317 | //
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318 | if (!fExcludedPixelsFile.IsNull())
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319 | {
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320 |
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321 | fExcludedPixelsFile = gSystem->ExpandPathName(fExcludedPixelsFile.Data());
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322 |
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323 | //
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324 | // Initialize reading the file
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325 | //
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326 | ifstream in(fExcludedPixelsFile.Data(),ios::in);
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327 |
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328 | if (in)
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329 | {
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330 | *fLog << inf << "Use excluded pixels from file: '" << fExcludedPixelsFile.Data() << "'" << endl;
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331 | //
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332 | // Read the file and count the number of entries
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333 | //
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334 | UInt_t pixel = 0;
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335 |
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336 | while (++fNumExcludedPixels)
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337 | {
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338 |
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339 | in >> pixel;
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340 |
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341 | if (!in.good())
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342 | break;
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343 | //
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344 | // Check for out of range
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345 | //
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346 | if (pixel > npixels)
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347 | {
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348 | *fLog << warn << "WARNING: To be excluded pixel: " << pixel
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349 | << " is out of range " << endl;
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350 | continue;
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351 | }
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352 | //
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353 | // Exclude pixel
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354 | //
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355 | MCalibrationPix &pix = (*fCalibrations)[pixel];
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356 | pix.SetExcluded();
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357 |
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358 | *fLog << GetDescriptor() << inf << ": Exclude Pixel: " << pixel << endl;
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359 |
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360 | }
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361 |
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362 | if (--fNumExcludedPixels == 0)
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363 | *fLog << warn << "WARNING: File '" << fExcludedPixelsFile.Data()
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364 | << "'" << " is empty " << endl;
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365 | else
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366 | fCalibrations->SetNumPixelsExcluded(fNumExcludedPixels);
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367 |
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368 | }
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369 | else
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370 | *fLog << warn << dbginf << "Cannot open file '" << fExcludedPixelsFile.Data() << "'" << endl;
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371 | }
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372 |
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373 | return kTRUE;
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374 | }
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375 |
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376 |
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377 | // --------------------------------------------------------------------------
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378 | //
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379 | // Calculate the integral of the FADC time slices and store them as a new
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380 | // pixel in the MCerPhotEvt container.
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381 | //
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382 | Int_t MCalibrationCalc::Process()
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383 | {
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384 |
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385 | //
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386 | // Initialize pointers to blind pixel, PIN Diode and individual pixels
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387 | //
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388 | MCalibrationBlindPix &blindpixel = *(fCalibrations->GetBlindPixel());
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389 | MCalibrationPINDiode &pindiode = *(fCalibrations->GetPINDiode());
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390 |
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391 | MRawEvtPixelIter pixel(fRawEvt);
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392 |
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393 | //
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394 | // Perform cosmics cut
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395 | //
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396 | if (TESTBIT(fFlags,kUseCosmicsRejection))
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397 | {
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398 |
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399 | Int_t cosmicpix = 0;
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400 |
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401 | //
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402 | // Create a first loop to sort out the cosmics ...
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403 | //
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404 | // This is a very primitive check for the number of cosmicpixs
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405 | // The cut will be applied in the fit, but for the blind pixel,
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406 | // we need to remove this event
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407 | //
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408 | // FIXME: In the future need a much more sophisticated one!!!
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409 | //
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410 |
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411 | while (pixel.Next())
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412 | {
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413 |
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414 | const UInt_t pixid = pixel.GetPixelId();
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415 |
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416 | MExtractedSignalPix &sig = (*fSignals)[pixid];
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417 | MPedestalPix &ped = (*fPedestals)[pixid];
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418 | Float_t pedrms = ped.GetPedestalRms()*fSqrtHiGainSamples;
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419 | Float_t sumhi = sig.GetExtractedSignalHiGain();
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420 |
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421 | //
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422 | // We consider a pixel as presumably due to cosmics
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423 | // if its sum of FADC slices is lower than 3 pedestal RMS
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424 | //
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425 | if (sumhi < 3.*pedrms )
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426 | cosmicpix++;
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427 | }
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428 |
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429 | //
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430 | // If the camera contains more than 230
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431 | // (this is the number of outer pixels plus about 50 inner ones)
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432 | // presumed pixels due to cosmics, then the event is discarted.
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433 | // This procedure is more or less equivalent to keeping only events
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434 | // with at least 350 pixels with high signals.
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435 | //
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436 | if (cosmicpix > 230.)
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437 | {
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438 | fCosmics++;
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439 | return kCONTINUE;
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440 | }
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441 |
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442 | pixel.Reset();
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443 | }
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444 |
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445 | fEvents++;
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446 |
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447 | Float_t referencetime = 0.;
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448 |
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449 | //
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450 | // Create a (second) loop to do fill the calibration histograms
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451 | // Search for: a signal in MExtractedSignalCam
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452 | // a time in MArrivalTime.
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453 | // Fill histograms with:
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454 | // charge
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455 | // charge vs. event nr.
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456 | // relative arrival time w.r.t. pixel 1
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457 | //
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458 | while (pixel.Next())
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459 | {
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460 |
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461 | const UInt_t pixid = pixel.GetPixelId();
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462 |
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463 | MCalibrationPix &pix = (*fCalibrations)[pixid];
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464 |
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465 | if (pix.IsExcluded())
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466 | continue;
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467 |
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468 | MExtractedSignalPix &sig = (*fSignals)[pixid];
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469 |
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470 | const Float_t sumhi = sig.GetExtractedSignalHiGain();
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471 | const Float_t sumlo = sig.GetExtractedSignalLoGain();
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472 |
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473 | Float_t abstime = 0.;
|
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474 | Float_t reltime = 0.;
|
---|
475 |
|
---|
476 | if (TESTBIT(fFlags,kUseTimes))
|
---|
477 | {
|
---|
478 |
|
---|
479 | //
|
---|
480 | // Have a look in MArrivalTime,
|
---|
481 | // otherwise search the position of maximum bin
|
---|
482 | // in MRawEvtData
|
---|
483 | //
|
---|
484 | if (fArrivalTime)
|
---|
485 | {
|
---|
486 | abstime = (*fArrivalTime)[pixid];
|
---|
487 | reltime = abstime - (*fArrivalTime)[1];
|
---|
488 | }
|
---|
489 |
|
---|
490 | else
|
---|
491 | {
|
---|
492 | if (pixid == 1)
|
---|
493 | referencetime = (Float_t)pixel.GetIdxMaxHiGainSample();
|
---|
494 |
|
---|
495 | if (sig.IsLoGainUsed())
|
---|
496 | {
|
---|
497 | abstime = (Float_t)pixel.GetIdxMaxLoGainSample();
|
---|
498 | reltime = abstime - referencetime;
|
---|
499 | }
|
---|
500 | else
|
---|
501 | {
|
---|
502 | abstime = (Float_t)pixel.GetIdxMaxHiGainSample();
|
---|
503 | reltime = abstime - referencetime;
|
---|
504 | }
|
---|
505 | }
|
---|
506 | } /* if Use Times */
|
---|
507 |
|
---|
508 | switch(pixid)
|
---|
509 | {
|
---|
510 |
|
---|
511 | case fBlindPixelId:
|
---|
512 |
|
---|
513 | if (TESTBIT(fFlags,kUseBlindPixelFit))
|
---|
514 | {
|
---|
515 |
|
---|
516 | Float_t blindpixelsum = 0.;
|
---|
517 | //
|
---|
518 | // We need a dedicated signal extractor for the blind pixel
|
---|
519 | //
|
---|
520 | MPedestalPix &ped = (*fPedestals)[pixid];
|
---|
521 | if (!CalcSignalBlindPixel(pixel.GetHiGainSamples(), blindpixelsum, ped.GetPedestal()))
|
---|
522 | return kFALSE;
|
---|
523 |
|
---|
524 | if (!blindpixel.FillCharge(blindpixelsum))
|
---|
525 | *fLog << warn <<
|
---|
526 | "Overflow or Underflow occurred filling Blind Pixel sum = " << blindpixelsum << endl;
|
---|
527 |
|
---|
528 | if (TESTBIT(fFlags,kUseTimes))
|
---|
529 | {
|
---|
530 | if (!blindpixel.FillTime(reltime))
|
---|
531 | *fLog << warn <<
|
---|
532 | "Overflow or Underflow occurred filling Blind Pixel time = " << reltime << endl;
|
---|
533 | }
|
---|
534 |
|
---|
535 | if (!TESTBIT(fFlags,kBlindPixelOverFlow))
|
---|
536 | if (!blindpixel.FillRChargevsTime(blindpixelsum,fEvents))
|
---|
537 | {
|
---|
538 | *fLog << warn <<
|
---|
539 | "Overflow or Underflow occurred filling Blind Pixel eventnr = " << fEvents << endl;
|
---|
540 | SETBIT(fFlags,kBlindPixelOverFlow);
|
---|
541 | }
|
---|
542 | } /* if use blind pixel */
|
---|
543 |
|
---|
544 | break;
|
---|
545 |
|
---|
546 | case fPINDiodeId:
|
---|
547 |
|
---|
548 | if (TESTBIT(fFlags,kUsePinDiodeFit))
|
---|
549 | {
|
---|
550 |
|
---|
551 | if (!pindiode.FillCharge(sumhi))
|
---|
552 | *fLog << warn <<
|
---|
553 | "Overflow or Underflow occurred filling PINDiode: sum = " << sumhi << endl;
|
---|
554 |
|
---|
555 | if (TESTBIT(fFlags,kUseTimes))
|
---|
556 | {
|
---|
557 | if (!pindiode.FillAbsTime(abstime))
|
---|
558 | *fLog << warn <<
|
---|
559 | "Overflow or Underflow occurred filling PINDiode abs. time = " << abstime << endl;
|
---|
560 | if (!pindiode.FillRelTime(reltime))
|
---|
561 | *fLog << warn <<
|
---|
562 | "Overflow or Underflow occurred filling PINDiode rel. time = " << reltime << endl;
|
---|
563 | }
|
---|
564 |
|
---|
565 | if (!TESTBIT(fFlags,kPINDiodeOverFlow))
|
---|
566 | if (!pindiode.FillRChargevsTime(sumhi,fEvents))
|
---|
567 | {
|
---|
568 | *fLog << warn
|
---|
569 | << "Overflow or Underflow occurred filling PINDiode: eventnr = "
|
---|
570 | << fEvents << endl;
|
---|
571 | SETBIT(fFlags,kPINDiodeOverFlow);
|
---|
572 | }
|
---|
573 |
|
---|
574 | } /* if use PIN Diode */
|
---|
575 |
|
---|
576 | break;
|
---|
577 |
|
---|
578 | default:
|
---|
579 |
|
---|
580 | if (!TESTBIT(fFlags,kLoGainOverFlow))
|
---|
581 | if (!pix.FillRChargevsTimeLoGain(sumlo,fEvents))
|
---|
582 | {
|
---|
583 | *fLog << warn
|
---|
584 | << "Overflow filling Histogram ChargevsNLoGain eventnr = "
|
---|
585 | << fEvents << endl;
|
---|
586 | SETBIT(fFlags,kLoGainOverFlow);
|
---|
587 | SkipHiLoGainCalibration();
|
---|
588 | }
|
---|
589 |
|
---|
590 | if (!TESTBIT(fFlags,kHiGainOverFlow))
|
---|
591 | if (!pix.FillRChargevsTimeHiGain(sumhi,fEvents))
|
---|
592 | {
|
---|
593 | *fLog << warn
|
---|
594 | << "Overflow filling Histogram ChargevsNHiGain eventnr = "
|
---|
595 | << fEvents << endl;
|
---|
596 | SETBIT(fFlags,kHiGainOverFlow);
|
---|
597 | SkipHiLoGainCalibration();
|
---|
598 | }
|
---|
599 |
|
---|
600 |
|
---|
601 | if (TESTBIT(fFlags,kHiLoGainCalibration))
|
---|
602 | pix.FillChargesInGraph(sumhi,sumlo);
|
---|
603 |
|
---|
604 | if (sig.IsLoGainUsed())
|
---|
605 | {
|
---|
606 |
|
---|
607 | if (!pix.FillChargeLoGain(sumlo))
|
---|
608 | *fLog << warn << "Could not fill Lo Gain Charge of pixel: " << pixid
|
---|
609 | << " signal = " << sumlo << endl;
|
---|
610 |
|
---|
611 | if (TESTBIT(fFlags,kUseTimes))
|
---|
612 | {
|
---|
613 | if (!pix.FillAbsTimeLoGain(abstime))
|
---|
614 | *fLog << warn << "Could not fill Lo Gain Abs. Time of pixel: "
|
---|
615 | << pixid << " time = " << abstime << endl;
|
---|
616 | if (!pix.FillRelTimeLoGain(reltime))
|
---|
617 | *fLog << warn << "Could not fill Lo Gain Rel. Time of pixel: "
|
---|
618 | << pixid << " time = " << reltime << endl;
|
---|
619 | }
|
---|
620 | } /* if (sig.IsLoGainUsed()) */
|
---|
621 | else
|
---|
622 | {
|
---|
623 | if (!pix.FillChargeHiGain(sumhi))
|
---|
624 | *fLog << warn << "Could not fill Hi Gain Charge of pixel: " << pixid
|
---|
625 | << " signal = " << sumhi << endl;
|
---|
626 |
|
---|
627 | if (TESTBIT(fFlags,kUseTimes))
|
---|
628 | {
|
---|
629 | if (!pix.FillAbsTimeHiGain(abstime))
|
---|
630 | *fLog << warn << "Could not fill Hi Gain Abs. Time of pixel: "
|
---|
631 | << pixid << " time = " << abstime << endl;
|
---|
632 | if (!pix.FillRelTimeHiGain(reltime))
|
---|
633 | *fLog << warn << "Could not fill Hi Gain Rel. Time of pixel: "
|
---|
634 | << pixid << " time = " << reltime << endl;
|
---|
635 | }
|
---|
636 | } /* else (sig.IsLoGainUsed()) */
|
---|
637 | break;
|
---|
638 |
|
---|
639 | } /* switch(pixid) */
|
---|
640 |
|
---|
641 | } /* while (pixel.Next()) */
|
---|
642 |
|
---|
643 | return kTRUE;
|
---|
644 | }
|
---|
645 |
|
---|
646 | Int_t MCalibrationCalc::PostProcess()
|
---|
647 | {
|
---|
648 |
|
---|
649 | *fLog << inf << endl;
|
---|
650 |
|
---|
651 | if (fEvents == 0)
|
---|
652 | {
|
---|
653 | *fLog << err << GetDescriptor()
|
---|
654 | << ": This run contains only cosmics or pedestals, "
|
---|
655 | << "cannot find events with more than 350 illuminated pixels. " << endl;
|
---|
656 | return kFALSE;
|
---|
657 | }
|
---|
658 |
|
---|
659 | if (fEvents < fCosmics)
|
---|
660 | *fLog << warn << GetDescriptor()
|
---|
661 | << ": WARNING: Run contains more cosmics or pedestals than calibration events " << endl;
|
---|
662 |
|
---|
663 |
|
---|
664 | *fLog << inf << GetDescriptor() << ": Cut Histogram Edges" << endl;
|
---|
665 |
|
---|
666 | //
|
---|
667 | // Cut edges to make fits and viewing of the hists easier
|
---|
668 | //
|
---|
669 | fCalibrations->CutEdges();
|
---|
670 |
|
---|
671 | //
|
---|
672 | // Fit the blind pixel
|
---|
673 | //
|
---|
674 | if (TESTBIT(fFlags,kUseBlindPixelFit))
|
---|
675 | {
|
---|
676 | //
|
---|
677 | // Get pointer to blind pixel
|
---|
678 | //
|
---|
679 | MCalibrationBlindPix &blindpixel = *(fCalibrations->GetBlindPixel());
|
---|
680 |
|
---|
681 | *fLog << inf << GetDescriptor() << ": Fitting the Blind Pixel" << endl;
|
---|
682 |
|
---|
683 | //
|
---|
684 | // retrieve mean and sigma of the blind pixel pedestal,
|
---|
685 | // so that we can use it for the fit
|
---|
686 | //
|
---|
687 | if (fPedestals->GetHistSize() > fBlindPixelId)
|
---|
688 | {
|
---|
689 | //
|
---|
690 | // retrieve the pedestal pix of the blind pixel
|
---|
691 | //
|
---|
692 | MHPedestalPixel &pedhist = (*fPedestals)(fBlindPixelId);
|
---|
693 | MPedestalPix &pedpix = (*fPedestals)[fBlindPixelId];
|
---|
694 | //
|
---|
695 | // retrieve the histogram containers
|
---|
696 | //
|
---|
697 | MHCalibrationBlindPixel *hist = blindpixel.GetHist();
|
---|
698 | //
|
---|
699 | // Set the corresponding values
|
---|
700 | //
|
---|
701 | const Float_t nslices = (Float_t)(fgBlindPixelLast-fgBlindPixelFirst+1);
|
---|
702 | const Float_t sqrslice = TMath::Sqrt(nslices);
|
---|
703 | const ULong_t nentries = fPedestals->GetTotalEntries();
|
---|
704 |
|
---|
705 | const Float_t peddiff = (pedhist.GetChargeMean()-pedpix.GetPedestal())*nslices;
|
---|
706 |
|
---|
707 | Float_t pederr = pedhist.GetChargeMeanErr()*pedhist.GetChargeMeanErr();
|
---|
708 | pederr += pedpix.GetPedestalRms()*pedpix.GetPedestalRms()/nentries;
|
---|
709 | pederr = TMath::Sqrt(pederr)*sqrslice;
|
---|
710 |
|
---|
711 | //
|
---|
712 | // Fitted sigma: 1. one sqrt(Nr. slices) for the division which is not
|
---|
713 | // not appropriate: sigma(real)/slice = GetSigma*sqrt(nslices)
|
---|
714 | // 2. another sqrt(Nr. slices) to calculate back to number
|
---|
715 | // of slices
|
---|
716 | //
|
---|
717 | const Float_t pedsigma = pedhist.GetChargeSigma()*nslices;
|
---|
718 | const Float_t pedsigmaerr = pedhist.GetChargeSigmaErr()*nslices;
|
---|
719 |
|
---|
720 | hist->SetMeanPedestal(peddiff);
|
---|
721 | hist->SetMeanPedestalErr(pederr);
|
---|
722 | hist->SetSigmaPedestal(pedsigma);
|
---|
723 | hist->SetSigmaPedestalErr(pedsigmaerr);
|
---|
724 | }
|
---|
725 |
|
---|
726 | if (!blindpixel.FitCharge())
|
---|
727 | {
|
---|
728 | *fLog << warn << "Could not fit the blind pixel! " << endl;
|
---|
729 | *fLog << warn << "Setting bit kBlindPixelMethodValid to FALSE in MCalibrationCam" << endl;
|
---|
730 | fCalibrations->SetBlindPixelMethodValid(kFALSE);
|
---|
731 | }
|
---|
732 |
|
---|
733 | fCalibrations->SetBlindPixelMethodValid(kTRUE);
|
---|
734 | blindpixel.DrawClone();
|
---|
735 | }
|
---|
736 | else
|
---|
737 | *fLog << inf << GetDescriptor() << ": Skipping Blind Pixel Fit " << endl;
|
---|
738 |
|
---|
739 |
|
---|
740 | *fLog << inf << GetDescriptor() << ": Fitting the Normal Pixels" << endl;
|
---|
741 |
|
---|
742 | //
|
---|
743 | // loop over the pedestal events and check if we have calibration
|
---|
744 | //
|
---|
745 | for (Int_t pixid=0; pixid<fPedestals->GetSize(); pixid++)
|
---|
746 | {
|
---|
747 |
|
---|
748 | MCalibrationPix &pix = (*fCalibrations)[pixid];
|
---|
749 |
|
---|
750 | //
|
---|
751 | // Check if the pixel has been excluded from the fits
|
---|
752 | //
|
---|
753 | if (pix.IsExcluded())
|
---|
754 | continue;
|
---|
755 |
|
---|
756 | //
|
---|
757 | // get the pedestals
|
---|
758 | //
|
---|
759 | const Float_t ped = (*fPedestals)[pixid].GetPedestal();
|
---|
760 | const Float_t prms = (*fPedestals)[pixid].GetPedestalRms();
|
---|
761 |
|
---|
762 | //
|
---|
763 | // set them in the calibration camera
|
---|
764 | //
|
---|
765 | pix.SetPedestal(ped,prms,(Float_t)fNumHiGainSamples,(Float_t)fNumLoGainSamples);
|
---|
766 |
|
---|
767 | //
|
---|
768 | // perform the Gauss fits to the charges
|
---|
769 | //
|
---|
770 | pix.FitCharge();
|
---|
771 |
|
---|
772 | //
|
---|
773 | // Perform the Gauss fits to the arrival times
|
---|
774 | //
|
---|
775 | if (TESTBIT(fFlags,kUseTimes))
|
---|
776 | pix.FitTime();
|
---|
777 |
|
---|
778 | }
|
---|
779 |
|
---|
780 | if (TESTBIT(fFlags,kUseBlindPixelFit) && fCalibrations->IsBlindPixelMethodValid())
|
---|
781 | {
|
---|
782 |
|
---|
783 | if (!fCalibrations->CalcNumPhotInsidePlexiglass())
|
---|
784 | {
|
---|
785 | *fLog << err
|
---|
786 | << "Could not calculate the number of photons from the blind pixel " << endl;
|
---|
787 | *fLog << err
|
---|
788 | << "You can try to calibrate using the MCalibrationCalc::SkipBlindPixelFit()" << endl;
|
---|
789 | fCalibrations->SetBlindPixelMethodValid(kFALSE);
|
---|
790 | }
|
---|
791 | }
|
---|
792 | else
|
---|
793 | *fLog << inf << GetDescriptor() << ": Skipping Blind Pixel Calibration! " << endl;
|
---|
794 |
|
---|
795 |
|
---|
796 | if (TESTBIT(fFlags,kUsePinDiodeFit) && fCalibrations->IsPINDiodeMethodValid())
|
---|
797 | {
|
---|
798 |
|
---|
799 | if (!fCalibrations->CalcNumPhotInsidePlexiglass())
|
---|
800 | {
|
---|
801 | *fLog << err
|
---|
802 | << "Could not calculate the number of photons from the blind pixel " << endl;
|
---|
803 | *fLog << err
|
---|
804 | << "You can try to calibrate using the MCalibrationCalc::SkipPINDiodeFit()" << endl;
|
---|
805 | fCalibrations->SetPINDiodeMethodValid(kFALSE);
|
---|
806 | }
|
---|
807 | }
|
---|
808 | else
|
---|
809 | *fLog << inf << GetDescriptor() << ": Skipping PIN Diode Calibration! " << endl;
|
---|
810 |
|
---|
811 | fCalibrations->SetReadyToSave();
|
---|
812 |
|
---|
813 | if (GetNumExecutions()==0)
|
---|
814 | return kTRUE;
|
---|
815 |
|
---|
816 | *fLog << inf << endl;
|
---|
817 | *fLog << dec << setfill(' ') << fCosmics << " Events presumably cosmics" << endl;
|
---|
818 |
|
---|
819 | return kTRUE;
|
---|
820 | }
|
---|
821 |
|
---|
822 | Bool_t MCalibrationCalc::CalcSignalBlindPixel(Byte_t *ptr, Float_t &signal, const Float_t ped) const
|
---|
823 | {
|
---|
824 |
|
---|
825 | Byte_t *start = ptr + fgBlindPixelFirst;
|
---|
826 | Byte_t *end = ptr + fgBlindPixelLast;
|
---|
827 |
|
---|
828 | Byte_t sum = 0;
|
---|
829 | Int_t sat = 0;
|
---|
830 |
|
---|
831 | ptr = start;
|
---|
832 |
|
---|
833 | while (ptr<end)
|
---|
834 | {
|
---|
835 | sum += *ptr;
|
---|
836 |
|
---|
837 | if (*ptr++ >= fgSaturationLimit)
|
---|
838 | sat++;
|
---|
839 | }
|
---|
840 |
|
---|
841 | if (sat)
|
---|
842 | {
|
---|
843 | *fLog << err << "HI Gain Saturation occurred in the blind pixel! "
|
---|
844 | << " Do not know yet how to treat this ... aborting " << endl;
|
---|
845 | return kFALSE;
|
---|
846 | }
|
---|
847 |
|
---|
848 | signal = (Float_t)sum - ped*(Float_t)(fgBlindPixelLast-fgBlindPixelFirst+1);
|
---|
849 |
|
---|
850 | return kTRUE;
|
---|
851 | }
|
---|