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): Abelardo Moralejo, 12/2003 <mailto:moralejo@pd.infn.it>
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19 | !
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20 | ! Copyright: MAGIC Software Development, 2000-2003
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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 | // MMcCalibrationUpdate
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28 | //
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29 | // This task looks for the ìnformation about FADC pedestals in
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30 | // MMcFadcHeader and translates it to the pedestal mean and rms (in adc counts).
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31 | // If not already existing in the parameter list, an MCalibrationCam object
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32 | // is created, with the conversion factor between photons and ADC counts is
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33 | // set to 1 to allow the analysis to proceed.
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34 | //
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35 | // Then it creates and fills also the MPedPhotCam object containing the pedestal
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36 | // mean and rms in units of photons.
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37 | //
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38 | // Input Containers:
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39 | // MMcFadcHeader
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40 | // MRawRunHeader
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41 | // [MCalibrationChargeCam] (if it existed previously)
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42 | // [MCalibrationQECam] (if it existed previously)
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43 | //
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44 | // Output Containers:
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45 | // MPedPhotCam
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46 | // [MCalibrationChargeCam] (if it did not exist previously)
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47 | // [MCalibrationQECam] (if it did not exist previously)
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48 | //
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49 | /////////////////////////////////////////////////////////////////////////////
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50 | #include "MMcCalibrationUpdate.h"
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51 |
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52 | #include "MParList.h"
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53 |
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54 | #include "MLog.h"
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55 | #include "MLogManip.h"
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56 |
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57 | #include "MCalibrationChargePix.h"
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58 | #include "MCalibrationChargeCam.h"
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59 |
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60 | #include "MCalibrationQEPix.h"
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61 | #include "MCalibrationQECam.h"
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62 |
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63 | #include "MExtractedSignalCam.h"
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64 | #include "MExtractedSignalPix.h"
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65 | #include "MGeomCam.h"
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66 | #include "MPedPhotCam.h"
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67 | #include "MPedPhotPix.h"
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68 |
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69 | #include "MRawRunHeader.h"
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70 | #include "MMcRunHeader.hxx"
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71 | #include "MMcFadcHeader.hxx"
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72 | #include "MMcConfigRunHeader.h"
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73 |
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74 | ClassImp(MMcCalibrationUpdate);
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75 |
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76 | using namespace std;
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77 |
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78 | MMcCalibrationUpdate::MMcCalibrationUpdate(const char *name, const char *title)
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79 | {
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80 | fName = name ? name : "MMcCalibrationUpdate";
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81 | fTitle = title ? title : "Write MC pedestals and conversion factors into MCalibration Container";
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82 |
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83 |
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84 | fAmplitude = -1.;
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85 | fAmplitudeOuter = -1.;
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86 | fConversionHiLo = -1.;
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87 |
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88 | fFillCalibrationCam = kTRUE;
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89 | fOuterPixelsGainScaling = kTRUE;
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90 | }
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91 |
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92 | // --------------------------------------------------------------------------
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93 | //
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94 | // Check for the run type. Return kTRUE if it is a MC run or if there
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95 | // is no MC run header (old camera files) kFALSE in case of a different
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96 | // run type
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97 | //
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98 | Bool_t MMcCalibrationUpdate::CheckRunType(MParList *pList) const
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99 | {
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100 | const MRawRunHeader *run = (MRawRunHeader*)pList->FindObject("MRawRunHeader");
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101 | if (!run)
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102 | {
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103 | *fLog << warn << dbginf << "Warning - cannot check file type, MRawRunHeader not found." << endl;
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104 | return kTRUE;
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105 | }
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106 |
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107 | return run->IsMonteCarloRun();
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108 | }
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109 |
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110 | // --------------------------------------------------------------------------
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111 | //
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112 | // Make sure, that there is an MCalibrationCam Object in the Parameter List.
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113 | //
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114 | Int_t MMcCalibrationUpdate::PreProcess(MParList *pList)
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115 | {
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116 | fCalCam = (MCalibrationChargeCam*) pList->FindObject(AddSerialNumber("MCalibrationChargeCam"));
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117 | fQECam = (MCalibrationQECam*) pList->FindObject(AddSerialNumber("MCalibrationQECam"));
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118 |
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119 | if (!fCalCam || !fQECam)
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120 | {
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121 | fCalCam = (MCalibrationChargeCam*) pList->FindCreateObj(AddSerialNumber("MCalibrationChargeCam"));
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122 | fQECam = (MCalibrationQECam*) pList->FindCreateObj(AddSerialNumber("MCalibrationQECam"));
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123 | if (!fCalCam || !fQECam)
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124 | return kFALSE;
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125 | }
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126 | else
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127 | {
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128 | fFillCalibrationCam = kFALSE;
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129 | *fLog << inf << AddSerialNumber("MCalibrationChargeCam") << " and " <<
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130 | AddSerialNumber("MCalibrationQECam") << " already exist... " << endl;
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131 | }
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132 |
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133 | fPedPhotCam = (MPedPhotCam*) pList->FindCreateObj(AddSerialNumber("MPedPhotCam"));
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134 | if (!fPedPhotCam)
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135 | return kFALSE;
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136 |
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137 | fSignalCam = (MExtractedSignalCam*) pList->FindObject(AddSerialNumber("MExtractedSignalCam"));
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138 | if (!fSignalCam)
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139 | {
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140 | *fLog << err << AddSerialNumber("MExtractedSignalCam") << " not found... aborting." << endl;
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141 | return kFALSE;
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142 | }
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143 |
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144 | return kTRUE;
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145 | }
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146 |
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147 | // --------------------------------------------------------------------------
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148 | //
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149 | // Check for the runtype.
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150 | // Search for MGeomCam and MMcFadcHeader.
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151 | // Fill the MCalibrationCam object.
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152 | //
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153 | Bool_t MMcCalibrationUpdate::ReInit(MParList *pList)
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154 | {
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155 | //
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156 | // If it is no MC file skip this function...
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157 | //
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158 | if (!CheckRunType(pList))
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159 | {
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160 | *fLog << inf << "This is no MC file... skipping." << endl;
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161 | return kTRUE;
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162 | }
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163 |
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164 | //
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165 | // Now check the existence of all necessary containers.
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166 | //
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167 | fGeom = (MGeomCam*) pList->FindObject(AddSerialNumber("MGeomCam"));
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168 | if (!fGeom)
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169 | {
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170 | *fLog << err << AddSerialNumber("MGeomCam") << " not found... aborting." << endl;
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171 | return kFALSE;
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172 | }
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173 |
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174 | fHeaderFadc = (MMcFadcHeader*)pList->FindObject(AddSerialNumber("MMcFadcHeader"));
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175 | if (!fHeaderFadc)
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176 | {
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177 | *fLog << err << AddSerialNumber("MMcFadcHeader") << " not found... aborting." << endl;
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178 | return kFALSE;
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179 | }
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180 |
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181 | MMcRunHeader* mcrunh = (MMcRunHeader*) pList->FindObject("MMcRunHeader");
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182 |
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183 | //
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184 | // Initialize Fadc simulation parameters:
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185 | //
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186 | if (fAmplitude < 0)
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187 | {
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188 | fAmplitude = fHeaderFadc->GetAmplitud();
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189 | if (mcrunh->GetCamVersion() > 60)
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190 | {
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191 | fAmplitudeOuter = fHeaderFadc->GetAmplitudOuter();
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192 | fConversionHiLo = fHeaderFadc->GetLow2HighGain();
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193 | }
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194 | else // old MC files, camera < v0.7
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195 | {
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196 | fAmplitudeOuter = fAmplitude;
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197 | fConversionHiLo = 10; // dummy value
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198 | }
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199 |
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200 | }
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201 | else // Check that following files have all the same FADC parameters
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202 | {
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203 | if ( fabs(fHeaderFadc->GetAmplitud()-fAmplitude) > 1.e-6 )
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204 | {
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205 | *fLog << err << "Parameters of MMcFadcHeader are not the same for all files... aborting." << endl;
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206 | return kFALSE;
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207 | }
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208 |
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209 | if (mcrunh->GetCamVersion() > 60) // old MC files, camera < v0.7
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210 | {
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211 | if( fabs(fHeaderFadc->GetAmplitudOuter()-fAmplitudeOuter) > 1.e-6 ||
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212 | fabs(fConversionHiLo-fHeaderFadc->GetLow2HighGain()) > 1.e-6 )
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213 | {
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214 | *fLog << err << "Parameters of MMcFadcHeader are not the same for all files... aborting." << endl;
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215 | return kFALSE;
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216 | }
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217 | }
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218 | }
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219 |
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220 | //
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221 | // If MCalibrationChargeCam and MCalibrationQECam already existed
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222 | // in the parameter list before MMcCalibrationUpdate::PreProcess was
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223 | // executed (from a previous calibration loop) we must not fill it,
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224 | // hence nothing else has to be done in ReInit:
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225 | //
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226 | if (!fFillCalibrationCam)
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227 | return kTRUE;
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228 |
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229 | // Now check the light collection for inner and outer pixels to
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230 | // calculate the ratio between the two. FIXME! Light collection
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231 | // depends on the incidence angle of the light w.r.t. the camera
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232 | // plane. For the moment we take the ratio for light impinging
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233 | // perpendicular to the camera plane.
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234 | //
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235 | // FIXME! We should look for AddSerialNumber("MMcConfigRunHeader") but
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236 | // for the moment the stereo version of camera does not write one such
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237 | // header per telescope (it should!)
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238 | //
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239 | MMcConfigRunHeader* mcconfig = (MMcConfigRunHeader*) pList->FindObject("MMcConfigRunHeader");
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240 | if (!mcconfig)
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241 | {
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242 | *fLog << err << "MMcConfigRunHeader" << " not found... aborting." << endl;
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243 | return kFALSE;
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244 | }
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245 | TArrayF innerlightcoll = mcconfig->GetLightCollectionFactor();
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246 | TArrayF outerlightcoll = mcconfig->GetLightCollectionFactorOuter();
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247 |
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248 | // In principle outer pixels seem to have a different average light
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249 | // collection efficiency than outer ones. We set here the factor between
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250 | // the two.
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251 |
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252 | fOuterPixelsLightCollection = outerlightcoll[90] / innerlightcoll[90];
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253 | // (at angle = 90 deg)
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254 |
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255 | // Set now the default conversion from ADC counts to "photoelectrons"
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256 | // (in case no previous calibration existed in the parameter list).
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257 | // As default we want 1 photon = 1 inner pixel ADC count
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258 | // (this will make Size to be in ADC counts, which is what we want for
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259 | // the MC calibration loop). To achieve this we set the ADC to
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260 | // photoelectron conversion equal to the QE, which will later make the
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261 | // ADC to photon conversion factor (= ADC2PhotEl/QE) to be = 1.
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262 | //
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263 | fADC2PhElInner = MCalibrationQEPix::gkDefaultAverageQE;
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264 |
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265 | //
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266 | // Set the default ADC to "photoelectrons" conversion factor for outer
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267 | // pixels. One can choose not to apply the known (in MC) gain factor
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268 | // between inner and outer pixels, (in case fOuterPixelsGainScaling = kFALSE),
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269 | // which may be useful for display purposes.
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270 | // If on the contrary we apply the factor, we must take into account the
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271 | // different gains photoelectrons->ADC counts, given in MC by fAmplitude
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272 | // and fAmplitudeOuter. This "default" calibration is such that a shower
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273 | // completely contained in the inner part would have Size in ADC counts,
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274 | // whereas one partially in the outer part would have Size in "equivalent
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275 | // inner ADC counts" : the "same" shower (light density distribution) would
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276 | // have the same Size no matter where in the camera it lies. For this we have
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277 | // also to set later (see below) the right QE for outer pixels, which may
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278 | // be different from that of inner pixels.
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279 | //
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280 |
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281 | if (fOuterPixelsGainScaling)
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282 | fADC2PhElOuter = MCalibrationQEPix::gkDefaultAverageQE
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283 | * (fAmplitude / fAmplitudeOuter);
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284 | else
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285 | fADC2PhElOuter = fADC2PhElInner;
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286 |
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287 |
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288 | Int_t num = fCalCam->GetSize();
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289 |
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290 | fCalCam->SetFFactorMethodValid ( kTRUE );
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291 | fQECam->SetFFactorMethodValid ( kTRUE );
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292 | fQECam->SetBlindPixelMethodValid ( kTRUE );
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293 | fQECam->SetCombinedMethodValid ( kTRUE );
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294 | fQECam->SetPINDiodeMethodValid ( kTRUE );
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295 |
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296 | for (Int_t i=0; i<num; i++)
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297 | {
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298 | MCalibrationChargePix &calpix = (MCalibrationChargePix&)(*fCalCam)[i];
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299 |
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300 | calpix.SetFFactorMethodValid();
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301 |
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302 | calpix.SetConversionHiLo(fConversionHiLo);
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303 | calpix.SetConversionHiLoErr(0.); // FIXME ?
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304 |
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305 | //
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306 | // Write conversion factor ADC to photo-electrons (different for inner
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307 | // and outer pixels).
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308 | //
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309 | Float_t adc2photel = (fGeom->GetPixRatio(i) < fGeom->GetPixRatio(0))?
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310 | fADC2PhElOuter : fADC2PhElInner;
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311 |
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312 |
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313 | calpix.SetMeanConvFADC2Phe(adc2photel);
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314 | calpix.SetMeanConvFADC2PheVar(0.);
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315 | calpix.SetMeanFFactorFADC2Phot(0.); // Not used for now.
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316 |
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317 | }
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318 |
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319 | //
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320 | // Now set the average QE for each type of pixels. Correct outer pixels
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321 | // for different light collection efficiency.
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322 | //
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323 | num = fQECam->GetSize();
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324 | for (Int_t i=0; i<num; i++)
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325 | {
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326 | MCalibrationQEPix &qepix = (MCalibrationQEPix&)(*fQECam)[i];
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327 |
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328 | Float_t avqe = MCalibrationQEPix::gkDefaultAverageQE;
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329 |
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330 | if (fOuterPixelsGainScaling)
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331 | if (fGeom->GetPixRatio(i) < fGeom->GetPixRatio(0))
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332 | avqe = MCalibrationQEPix::gkDefaultAverageQE*fOuterPixelsLightCollection;
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333 |
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334 | qepix.SetAverageQE(avqe);
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335 | }
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336 |
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337 | return kTRUE;
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338 | }
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339 |
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340 |
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341 | // --------------------------------------------------------------------------
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342 | //
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343 | // Fill the MCerPhotPed object
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344 | //
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345 | Int_t MMcCalibrationUpdate::Process()
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346 | {
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347 | const Int_t num = fCalCam->GetSize();
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348 |
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349 | for (Int_t i=0; i<num; i++)
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350 | {
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351 | MExtractedSignalPix &sigpix = (*fSignalCam)[i];
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352 |
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353 | //
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354 | // ped mean and rms per pixel, in ADC counts, according to signal
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355 | // calculation (hi or low gain and number of integrated slices):
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356 | //
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357 | const Float_t pedestmean = sigpix.IsLoGainUsed()?
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358 | fSignalCam->GetNumUsedLoGainFADCSlices()*fHeaderFadc->GetPedestal(i) :
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359 | fSignalCam->GetNumUsedHiGainFADCSlices()*fHeaderFadc->GetPedestal(i);
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360 |
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361 | //
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362 | // In some cases, depending on the camera simulation parameters, one can
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363 | // have very little or no noise in the FADC. In the case the rms of
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364 | // pedestal is zero, the pixel will be cleaned out later in the image
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365 | // cleaning. To avoid this problem,we set a default value of 0.01 ADC
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366 | // counts for the RMS per slice:
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367 | //
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368 | const Double_t used = (Double_t)(sigpix.IsLoGainUsed() ?
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369 | fSignalCam->GetNumUsedLoGainFADCSlices() :
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370 | fSignalCam->GetNumUsedHiGainFADCSlices());
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371 |
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372 | const Float_t rms0 = sigpix.IsLoGainUsed() ?
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373 | fHeaderFadc->GetPedestalRmsLow(i) :
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374 | fHeaderFadc->GetPedestalRmsHigh(i);
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375 |
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376 | const Float_t pedestrms = TMath::Sqrt(used) * (rms0>0 ? rms0 : 0.01);
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377 |
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378 | //
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379 | // Write mean pedestal and pedestal rms per pixel
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380 | // in number of photons:
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381 | //
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382 | MPedPhotPix &pedpix = (*fPedPhotCam)[i];
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383 |
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384 | MCalibrationChargePix &calpix = (MCalibrationChargePix&)(*fCalCam)[i];
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385 | MCalibrationQEPix &qepix = (MCalibrationQEPix&)(*fQECam)[i];
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386 |
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387 | qepix.SetAvNormFFactor(1.);
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388 | // This factor should convert the default average QE to average QE
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389 | // for a spectrum like that of Cherenkov light. See the documentation
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390 | // of MCalibrationQEPix. Here it is 1 because we calibrate using
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391 | // Cherenkov light.
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392 |
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393 | Float_t qe = qepix.GetAverageQE();
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394 | Float_t adc2phot = calpix.GetMeanConvFADC2Phe() / qe;
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395 | Float_t hi2lo = calpix.GetConversionHiLo();
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396 |
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397 | if (sigpix.IsLoGainUsed())
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398 | pedpix.Set(adc2phot*hi2lo*pedestmean, adc2phot*hi2lo*pedestrms);
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399 | else
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400 | pedpix.Set(adc2phot*pedestmean, adc2phot*pedestrms);
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401 |
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402 | }
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403 |
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404 | return kTRUE;
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405 | }
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