| 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): Robert Wagner, 10/2002 <mailto:magicsoft@rwagner.de> | 
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| 19 | !   Author(s): Wolfgang Wittek, 02/2003 <mailto:wittek@mppmu.mpg.de> | 
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| 20 | ! | 
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| 21 | !   Copyright: MAGIC Software Development, 2000-2003 | 
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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 | // | 
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| 28 | //  MCT1PadSchweizer | 
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| 29 | // | 
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| 30 | //  This task applies padding such that for a given pixel and for a given | 
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| 31 | //  Theta bin the resulting distribution of the pedestal sigma is identical | 
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| 32 | //  to the distributions given by fHSigmaPixTheta and fHDiffPixTheta. | 
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| 33 | // | 
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| 34 | //  The number of photons, its error and the pedestal sigmas are altered. | 
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| 35 | //  On average, the number of photons added is zero. | 
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| 36 | // | 
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| 37 | //  The formulas used can be found in Thomas Schweizer's Thesis, | 
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| 38 | //                                    Section 2.2.1 | 
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| 39 | // | 
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| 40 | //  There are 2 options for the padding : | 
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| 41 | // | 
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| 42 | //  1) fPadFlag = 1 : | 
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| 43 | //     Generate first a Sigmabar using the 2D-histogram Sigmabar vs. Theta | 
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| 44 | //     (fHSigmaTheta). Then generate a pedestal sigma for each pixel using | 
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| 45 | //     the 3D-histogram Theta, pixel no., Sigma^2-Sigmabar^2 | 
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| 46 | //     (fHDiffPixTheta). | 
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| 47 | // | 
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| 48 | //     This is the preferred option as it takes into account the | 
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| 49 | //     correlations between the Sigma of a pixel and Sigmabar. | 
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| 50 | // | 
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| 51 | //  2) fPadFlag = 2 : | 
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| 52 | //     Generate a pedestal sigma for each pixel using the 3D-histogram | 
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| 53 | //     Theta, pixel no., Sigma (fHSigmaPixTheta). | 
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| 54 | // | 
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| 55 | // | 
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| 56 | //  The padding has to be done before the image cleaning because the | 
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| 57 | //  image cleaning depends on the pedestal sigmas. | 
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| 58 | // | 
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| 59 | //  For random numbers gRandom is used. | 
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| 60 | // | 
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| 61 | //  This implementation has been tested for CT1 data. For MAGIC some | 
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| 62 | //  modifications are necessary. | 
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| 63 | // | 
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| 64 | ///////////////////////////////////////////////////////////////////////////// | 
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| 65 | #include "MCT1PadSchweizer.h" | 
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| 66 |  | 
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| 67 | #include <stdio.h> | 
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| 68 |  | 
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| 69 | #include <TH1.h> | 
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| 70 | #include <TH2.h> | 
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| 71 | #include <TH3.h> | 
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| 72 | #include <TRandom.h> | 
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| 73 | #include <TCanvas.h> | 
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| 74 |  | 
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| 75 | #include "MBinning.h" | 
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| 76 | #include "MSigmabar.h" | 
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| 77 | #include "MMcEvt.hxx" | 
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| 78 | #include "MLog.h" | 
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| 79 | #include "MLogManip.h" | 
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| 80 | #include "MParList.h" | 
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| 81 | #include "MGeomCam.h" | 
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| 82 |  | 
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| 83 | #include "MCerPhotPix.h" | 
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| 84 | #include "MCerPhotEvt.h" | 
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| 85 |  | 
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| 86 | #include "MPedPhotCam.h" | 
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| 87 | #include "MPedPhotPix.h" | 
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| 88 |  | 
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| 89 | #include "MBlindPixels.h" | 
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| 90 |  | 
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| 91 | ClassImp(MCT1PadSchweizer); | 
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| 92 |  | 
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| 93 | using namespace std; | 
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| 94 |  | 
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| 95 | // -------------------------------------------------------------------------- | 
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| 96 | // | 
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| 97 | // Default constructor. | 
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| 98 | // | 
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| 99 | MCT1PadSchweizer::MCT1PadSchweizer(const char *name, const char *title) | 
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| 100 | { | 
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| 101 | fName  = name  ? name  : "MCT1PadSchweizer"; | 
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| 102 | fTitle = title ? title : "Task for the padding (Schweizer)"; | 
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| 103 |  | 
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| 104 | fHSigmaTheta    = NULL; | 
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| 105 | fHSigmaPixTheta = NULL; | 
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| 106 | fHDiffPixTheta  = NULL; | 
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| 107 | fHBlindPixIdTheta = NULL; | 
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| 108 | fHBlindPixNTheta  = NULL; | 
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| 109 |  | 
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| 110 | fHSigmaPedestal = NULL; | 
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| 111 | fHPhotons       = NULL; | 
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| 112 | fHNSB           = NULL; | 
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| 113 | } | 
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| 114 |  | 
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| 115 | // -------------------------------------------------------------------------- | 
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| 116 | // | 
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| 117 | // Destructor. | 
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| 118 | // | 
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| 119 | MCT1PadSchweizer::~MCT1PadSchweizer() | 
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| 120 | { | 
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| 121 | if (fHSigmaPedestal != NULL) delete fHSigmaPedestal; | 
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| 122 | if (fHPhotons != NULL)       delete fHPhotons; | 
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| 123 | if (fHNSB != NULL)           delete fHNSB; | 
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| 124 | } | 
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| 125 |  | 
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| 126 | // -------------------------------------------------------------------------- | 
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| 127 | // | 
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| 128 | // Set the references to the histograms to be used in the padding | 
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| 129 | // | 
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| 130 | // fHSigmaTheta    2D-histogram  (Theta, sigmabar) | 
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| 131 | // fHSigmaPixTheta 3D-hiostogram (Theta, pixel, sigma) | 
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| 132 | // fHDiffPixTheta  3D-histogram  (Theta, pixel, sigma^2-sigmabar^2) | 
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| 133 | // fHBlindPixIdTheta 2D-histogram  (Theta, blind pixel Id) | 
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| 134 | // fHBlindPixNTheta  2D-histogram  (Theta, no.of blind pixels ) | 
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| 135 | // | 
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| 136 | // | 
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| 137 | void MCT1PadSchweizer::SetHistograms(TH2D *hist2, TH3D *hist3, TH3D *hist3Diff, | 
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| 138 | TH2D *hist2Pix, TH2D *hist2PixN) | 
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| 139 | { | 
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| 140 | fHSigmaTheta    = hist2; | 
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| 141 | fHSigmaPixTheta = hist3; | 
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| 142 | fHDiffPixTheta  = hist3Diff; | 
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| 143 | fHBlindPixIdTheta = hist2Pix; | 
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| 144 | fHBlindPixNTheta  = hist2PixN; | 
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| 145 |  | 
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| 146 | fHSigmaTheta->SetDirectory(NULL); | 
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| 147 | fHSigmaPixTheta->SetDirectory(NULL); | 
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| 148 | fHDiffPixTheta->SetDirectory(NULL); | 
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| 149 | fHBlindPixIdTheta->SetDirectory(NULL); | 
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| 150 | fHBlindPixNTheta->SetDirectory(NULL); | 
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| 151 |  | 
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| 152 | Print(); | 
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| 153 | } | 
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| 154 |  | 
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| 155 | // -------------------------------------------------------------------------- | 
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| 156 | // | 
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| 157 | // Set the option for the padding | 
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| 158 | // | 
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| 159 | //  There are 2 options for the padding : | 
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| 160 | // | 
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| 161 | //  1) fPadFlag = 1 : | 
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| 162 | //     Generate first a Sigmabar using the 2D-histogram Sigmabar vs. Theta | 
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| 163 | //     (fHSigmaTheta). Then generate a pedestal sigma for each pixel using | 
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| 164 | //     the 3D-histogram Theta, pixel no., Sigma^2-Sigmabar^2 | 
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| 165 | //     (fHDiffPixTheta). | 
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| 166 | // | 
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| 167 | //     This is the preferred option as it takes into account the | 
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| 168 | //     correlations between the Sigma of a pixel and Sigmabar. | 
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| 169 | // | 
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| 170 | //  2) fPadFlag = 2 : | 
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| 171 | //     Generate a pedestal sigma for each pixel using the 3D-histogram | 
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| 172 | //     Theta, pixel no., Sigma (fHSigmaPixTheta). | 
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| 173 | // | 
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| 174 | void MCT1PadSchweizer::SetPadFlag(Int_t padflag) | 
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| 175 | { | 
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| 176 | fPadFlag = padflag; | 
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| 177 | *fLog << "MCT1PadSchweizer::SetPadFlag(); choose option " << fPadFlag << endl; | 
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| 178 | } | 
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| 179 |  | 
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| 180 | // -------------------------------------------------------------------------- | 
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| 181 | // | 
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| 182 | //  Set the pointers and prepare the histograms | 
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| 183 | // | 
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| 184 | Int_t MCT1PadSchweizer::PreProcess(MParList *pList) | 
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| 185 | { | 
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| 186 | if ( !fHSigmaTheta  || !fHSigmaPixTheta  || !fHDiffPixTheta  || | 
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| 187 | !fHBlindPixIdTheta  ||  !fHBlindPixNTheta) | 
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| 188 | { | 
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| 189 | *fLog << err << "At least one of the histograms needed for the padding is not defined ... aborting." << endl; | 
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| 190 | return kFALSE; | 
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| 191 | } | 
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| 192 |  | 
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| 193 | fMcEvt = (MMcEvt*)pList->FindObject("MMcEvt"); | 
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| 194 | if (!fMcEvt) | 
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| 195 | { | 
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| 196 | *fLog << err << dbginf << "MMcEvt not found... aborting." << endl; | 
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| 197 | return kFALSE; | 
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| 198 | } | 
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| 199 |  | 
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| 200 | fPed = (MPedPhotCam*)pList->FindObject("MPedPhotCam"); | 
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| 201 | if (!fPed) | 
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| 202 | { | 
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| 203 | *fLog << err << "MPedPhotCam not found... aborting." << endl; | 
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| 204 | return kFALSE; | 
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| 205 | } | 
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| 206 |  | 
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| 207 | fCam = (MGeomCam*)pList->FindObject("MGeomCam"); | 
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| 208 | if (!fCam) | 
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| 209 | { | 
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| 210 | *fLog << err << "MGeomCam not found (no geometry information available)... aborting." << endl; | 
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| 211 | return kFALSE; | 
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| 212 | } | 
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| 213 |  | 
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| 214 | fEvt = (MCerPhotEvt*)pList->FindObject("MCerPhotEvt"); | 
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| 215 | if (!fEvt) | 
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| 216 | { | 
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| 217 | *fLog << err << "MCerPhotEvt not found... aborting." << endl; | 
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| 218 | return kFALSE; | 
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| 219 | } | 
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| 220 |  | 
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| 221 | fSigmabar = (MSigmabar*)pList->FindCreateObj("MSigmabar"); | 
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| 222 | if (!fSigmabar) | 
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| 223 | { | 
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| 224 | *fLog << err << "MSigmabar not found... aborting." << endl; | 
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| 225 | return kFALSE; | 
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| 226 | } | 
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| 227 |  | 
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| 228 | fBlinds = (MBlindPixels*)pList->FindCreateObj("MBlindPixels"); | 
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| 229 | if (!fBlinds) | 
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| 230 | { | 
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| 231 | *fLog << err << "MBlindPixels not found... aborting." << endl; | 
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| 232 | return kFALSE; | 
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| 233 | } | 
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| 234 |  | 
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| 235 |  | 
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| 236 | //-------------------------------------------------------------------- | 
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| 237 | // histograms for checking the padding | 
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| 238 | // | 
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| 239 | // plot pedestal sigmas | 
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| 240 | fHSigmaPedestal = new TH2D("SigPed","Sigma: after vs. before padding", | 
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| 241 | 100, 0.0, 5.0, 100, 0.0, 5.0); | 
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| 242 | fHSigmaPedestal->SetXTitle("Pedestal sigma before padding"); | 
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| 243 | fHSigmaPedestal->SetYTitle("Pedestal sigma after padding"); | 
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| 244 |  | 
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| 245 | // plot no.of photons (before vs. after padding) | 
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| 246 | fHPhotons = new TH2D("Photons","Photons: after vs.before padding", | 
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| 247 | 100, -10.0, 90.0, 100, -10, 90); | 
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| 248 | fHPhotons->SetXTitle("no.of photons before padding"); | 
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| 249 | fHPhotons->SetYTitle("no.of photons after padding"); | 
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| 250 |  | 
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| 251 | // plot of added NSB | 
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| 252 | fHNSB = new TH1D("NSB","Distribution of added NSB", 100, -10.0, 10.0); | 
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| 253 | fHNSB->SetXTitle("no.of added NSB photons"); | 
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| 254 | fHNSB->SetYTitle("no.of pixels"); | 
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| 255 |  | 
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| 256 |  | 
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| 257 | //-------------------------------------------------------------------- | 
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| 258 |  | 
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| 259 | memset(fErrors, 0, sizeof(fErrors)); | 
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| 260 |  | 
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| 261 | return kTRUE; | 
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| 262 | } | 
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| 263 |  | 
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| 264 | // -------------------------------------------------------------------------- | 
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| 265 | // | 
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| 266 | // Do the Padding | 
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| 267 | // idealy the events to be padded should have been generated without NSB | 
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| 268 | // | 
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| 269 | Int_t MCT1PadSchweizer::Process() | 
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| 270 | { | 
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| 271 | //*fLog << "Entry MCT1PadSchweizer::Process();" << endl; | 
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| 272 |  | 
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| 273 | //------------------------------------------------ | 
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| 274 | // add pixels to MCerPhotEvt which are not yet in; | 
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| 275 | // set their numnber of photons equal to zero | 
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| 276 |  | 
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| 277 | UInt_t imaxnumpix = fCam->GetNumPixels(); | 
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| 278 |  | 
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| 279 | for (UInt_t i=0; i<imaxnumpix; i++) | 
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| 280 | { | 
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| 281 | Bool_t alreadythere = kFALSE; | 
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| 282 | UInt_t npix = fEvt->GetNumPixels(); | 
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| 283 | for (UInt_t j=0; j<npix; j++) | 
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| 284 | { | 
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| 285 | MCerPhotPix &pix = (*fEvt)[j]; | 
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| 286 | UInt_t id = pix.GetPixId(); | 
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| 287 | if (i==id) | 
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| 288 | { | 
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| 289 | alreadythere = kTRUE; | 
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| 290 | break; | 
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| 291 | } | 
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| 292 | } | 
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| 293 | if (alreadythere) | 
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| 294 | continue; | 
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| 295 |  | 
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| 296 | fEvt->AddPixel(i, 0.0, (*fPed)[i].GetRms()); | 
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| 297 | } | 
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| 298 |  | 
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| 299 |  | 
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| 300 |  | 
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| 301 | //----------------------------------------- | 
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| 302 | Int_t rc=0; | 
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| 303 |  | 
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| 304 | const UInt_t npix = fEvt->GetNumPixels(); | 
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| 305 |  | 
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| 306 | //fSigmabar->Calc(*fCam, *fPed, *fEvt); | 
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| 307 | //*fLog << "before padding : " << endl; | 
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| 308 | //fSigmabar->Print(""); | 
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| 309 |  | 
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| 310 |  | 
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| 311 | //$$$$$$$$$$$$$$$$$$$$$$$$$$ | 
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| 312 | // to simulate the situation that before the padding the NSB and | 
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| 313 | // electronic noise are zero : set Sigma = 0 for all pixels | 
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| 314 | //for (UInt_t i=0; i<npix; i++) | 
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| 315 | //{ | 
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| 316 | //  MCerPhotPix &pix = fEvt->operator[](i); | 
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| 317 | //  Int_t j = pix.GetPixId(); | 
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| 318 |  | 
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| 319 | //  MPedPhotPix &ppix = fPed->operator[](j); | 
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| 320 | //  ppix.SetRms(0.0); | 
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| 321 | //} | 
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| 322 | //$$$$$$$$$$$$$$$$$$$$$$$$$$ | 
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| 323 |  | 
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| 324 | //------------------------------------------- | 
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| 325 | // Calculate average sigma of the event | 
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| 326 | // | 
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| 327 | Double_t sigbarold = fSigmabar->Calc(*fCam, *fPed, *fEvt); | 
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| 328 | Double_t sigbarold2 = sigbarold*sigbarold; | 
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| 329 | //fSigmabar->Print(""); | 
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| 330 |  | 
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| 331 | if (sigbarold > 0) | 
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| 332 | { | 
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| 333 | //*fLog << "MCT1PadSchweizer::Process(); sigmabar of event to be padded is > 0 : " | 
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| 334 | //      << sigbarold << ". Stop event loop " << endl; | 
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| 335 | // input data should have sigmabar = 0; stop event loop | 
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| 336 |  | 
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| 337 | rc = 1; | 
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| 338 | fErrors[rc]++; | 
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| 339 | return kCONTINUE; | 
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| 340 | } | 
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| 341 |  | 
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| 342 | const Double_t theta = kRad2Deg*fMcEvt->GetTelescopeTheta(); | 
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| 343 | // *fLog << "theta = " << theta << endl; | 
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| 344 |  | 
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| 345 |  | 
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| 346 | //------------------------------------------- | 
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| 347 | // for the current theta, | 
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| 348 | // generate blind pixels according to the histograms | 
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| 349 | //          fHBlindPixNTheta and fHBlindPixIDTheta | 
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| 350 | // | 
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| 351 |  | 
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| 352 |  | 
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| 353 | Int_t binPix = fHBlindPixNTheta->GetXaxis()->FindBin(theta); | 
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| 354 |  | 
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| 355 | if ( binPix < 1  ||  binPix > fHBlindPixNTheta->GetNbinsX() ) | 
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| 356 | { | 
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| 357 | //*fLog << "MCT1PadSchweizer::Process(); binNumber out of range : theta, binPix = " | 
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| 358 | //      << theta << ",  " << binPix << ";  Skip event " << endl; | 
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| 359 | // event cannot be padded; skip event | 
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| 360 |  | 
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| 361 | rc = 2; | 
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| 362 | fErrors[rc]++; | 
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| 363 | return kCONTINUE; | 
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| 364 | } | 
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| 365 |  | 
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| 366 | // numBlind is the number of blind pixels in this event | 
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| 367 | TH1D *nblind; | 
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| 368 | UInt_t numBlind; | 
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| 369 |  | 
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| 370 | nblind = fHBlindPixNTheta->ProjectionY("", binPix, binPix, ""); | 
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| 371 | if ( nblind->GetEntries() == 0.0 ) | 
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| 372 | { | 
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| 373 | *fLog << "MCT1PadSchweizer::Process(); projection for Theta bin " | 
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| 374 | << binPix << " has no entries; Skip event " << endl; | 
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| 375 | // event cannot be padded; skip event | 
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| 376 | delete nblind; | 
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| 377 |  | 
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| 378 | rc = 7; | 
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| 379 | fErrors[rc]++; | 
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| 380 | return kCONTINUE; | 
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| 381 | } | 
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| 382 | else | 
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| 383 | { | 
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| 384 | numBlind = (Int_t) (nblind->GetRandom()+0.5); | 
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| 385 | } | 
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| 386 | delete nblind; | 
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| 387 |  | 
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| 388 |  | 
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| 389 | // throw the Id of numBlind different pixels in this event | 
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| 390 | TH1D *hblind; | 
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| 391 | UInt_t idBlind; | 
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| 392 | UInt_t listId[npix]; | 
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| 393 | UInt_t nlist = 0; | 
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| 394 | Bool_t equal; | 
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| 395 |  | 
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| 396 | hblind = fHBlindPixIdTheta->ProjectionY("", binPix, binPix, ""); | 
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| 397 | if ( hblind->GetEntries() > 0.0 ) | 
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| 398 | for (UInt_t i=0; i<numBlind; i++) | 
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| 399 | { | 
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| 400 | while(1) | 
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| 401 | { | 
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| 402 | idBlind = (Int_t) (hblind->GetRandom()+0.5); | 
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| 403 | equal = kFALSE; | 
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| 404 | for (UInt_t j=0; j<nlist; j++) | 
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| 405 | if (idBlind == listId[j]) | 
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| 406 | { | 
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| 407 | equal = kTRUE; | 
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| 408 | break; | 
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| 409 | } | 
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| 410 | if (!equal) break; | 
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| 411 | } | 
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| 412 | listId[nlist] = idBlind; | 
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| 413 | nlist++; | 
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| 414 |  | 
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| 415 | fBlinds->SetPixelBlind(idBlind); | 
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| 416 | //*fLog << "idBlind = " << idBlind << endl; | 
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| 417 | } | 
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| 418 | fBlinds->SetReadyToSave(); | 
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| 419 |  | 
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| 420 | delete hblind; | 
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| 421 |  | 
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| 422 |  | 
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| 423 | //------------------------------------------- | 
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| 424 | // for the current theta, | 
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| 425 | // generate a sigmabar according to the histogram fHSigmaTheta | 
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| 426 | // | 
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| 427 | Double_t sigmabar=0; | 
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| 428 | Int_t binNumber = fHSigmaTheta->GetXaxis()->FindBin(theta); | 
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| 429 |  | 
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| 430 | if (binPix != binNumber) | 
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| 431 | { | 
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| 432 | cout << "The binnings of the 2 histograms are not identical; aborting" | 
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| 433 | << endl; | 
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| 434 | return kERROR; | 
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| 435 | } | 
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| 436 |  | 
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| 437 | TH1D *hsigma; | 
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| 438 |  | 
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| 439 | hsigma = fHSigmaTheta->ProjectionY("", binNumber, binNumber, ""); | 
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| 440 | if ( hsigma->GetEntries() == 0.0 ) | 
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| 441 | { | 
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| 442 | *fLog << "MCT1PadSchweizer::Process(); projection for Theta bin " | 
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| 443 | << binNumber << " has no entries; Skip event " << endl; | 
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| 444 | // event cannot be padded; skip event | 
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| 445 | delete hsigma; | 
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| 446 |  | 
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| 447 | rc = 3; | 
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| 448 | fErrors[rc]++; | 
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| 449 | return kCONTINUE; | 
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| 450 | } | 
|---|
| 451 | else | 
|---|
| 452 | { | 
|---|
| 453 | sigmabar = hsigma->GetRandom(); | 
|---|
| 454 | //*fLog << "Theta, bin number = " << theta << ",  " << binNumber      //      << ",  sigmabar = " << sigmabar << endl | 
|---|
| 455 | } | 
|---|
| 456 | delete hsigma; | 
|---|
| 457 |  | 
|---|
| 458 | const Double_t sigmabar2 = sigmabar*sigmabar; | 
|---|
| 459 |  | 
|---|
| 460 | //------------------------------------------- | 
|---|
| 461 |  | 
|---|
| 462 | //*fLog << "MCT1PadSchweizer::Process(); sigbarold, sigmabar = " | 
|---|
| 463 | //      << sigbarold << ",  "<< sigmabar << endl; | 
|---|
| 464 |  | 
|---|
| 465 | // Skip event if target sigmabar is <= sigbarold | 
|---|
| 466 | if (sigmabar <= sigbarold) | 
|---|
| 467 | { | 
|---|
| 468 | *fLog << "MCT1PadSchweizer::Process(); target sigmabar is less than sigbarold : " | 
|---|
| 469 | << sigmabar << ",  " << sigbarold << ",   Skip event" << endl; | 
|---|
| 470 |  | 
|---|
| 471 | rc = 4; | 
|---|
| 472 | fErrors[rc]++; | 
|---|
| 473 | return kCONTINUE; | 
|---|
| 474 | } | 
|---|
| 475 |  | 
|---|
| 476 |  | 
|---|
| 477 | //------------------------------------------- | 
|---|
| 478 | // | 
|---|
| 479 | // Calculate average number of NSB photons to be added (lambdabar) | 
|---|
| 480 | // from the value of sigmabar, | 
|---|
| 481 | //  - making assumptions about the average electronic noise (elNoise2) and | 
|---|
| 482 | //  - using a fixed value (F2excess)  for the excess noise factor | 
|---|
| 483 |  | 
|---|
| 484 | Double_t elNoise2;         // [photons] | 
|---|
| 485 | Double_t F2excess  = 1.3; | 
|---|
| 486 | Double_t lambdabar;        // [photons] | 
|---|
| 487 |  | 
|---|
| 488 |  | 
|---|
| 489 |  | 
|---|
| 490 | Int_t binTheta = fHDiffPixTheta->GetXaxis()->FindBin(theta); | 
|---|
| 491 | if (binTheta != binNumber) | 
|---|
| 492 | { | 
|---|
| 493 | cout << "The binnings of the 2 histograms are not identical; aborting" | 
|---|
| 494 | << endl; | 
|---|
| 495 | return kERROR; | 
|---|
| 496 | } | 
|---|
| 497 |  | 
|---|
| 498 | // Get RMS of (Sigma^2-sigmabar^2) in this Theta bin. | 
|---|
| 499 | // The average electronic noise (to be added) has to be well above this RMS, | 
|---|
| 500 | // otherwise the electronic noise of an individual pixel (elNoise2Pix) | 
|---|
| 501 | // may become negative | 
|---|
| 502 |  | 
|---|
| 503 | TH1D *hnoise = fHDiffPixTheta->ProjectionZ("", binTheta, binTheta, | 
|---|
| 504 | 0, 9999, ""); | 
|---|
| 505 | Double_t RMS = hnoise->GetRMS(1); | 
|---|
| 506 | delete hnoise; | 
|---|
| 507 |  | 
|---|
| 508 | elNoise2 = TMath::Min(RMS,  sigmabar2 - sigbarold2); | 
|---|
| 509 | //*fLog << "elNoise2 = " << elNoise2 << endl; | 
|---|
| 510 |  | 
|---|
| 511 | lambdabar = (sigmabar2 - sigbarold2 - elNoise2) / F2excess;     // [photons] | 
|---|
| 512 |  | 
|---|
| 513 | // This value of lambdabar is the same for all pixels; | 
|---|
| 514 | // note that lambdabar is normalized to the area of pixel 0 | 
|---|
| 515 |  | 
|---|
| 516 | //----------   start loop over pixels   --------------------------------- | 
|---|
| 517 | // do the padding for each pixel | 
|---|
| 518 | // | 
|---|
| 519 | // pad only pixels   - which are used (before image cleaning) | 
|---|
| 520 | // | 
|---|
| 521 | Double_t sig         = 0; | 
|---|
| 522 | Double_t sigma2      = 0; | 
|---|
| 523 | Double_t diff        = 0; | 
|---|
| 524 | Double_t addSig2     = 0; | 
|---|
| 525 | Double_t elNoise2Pix = 0; | 
|---|
| 526 |  | 
|---|
| 527 |  | 
|---|
| 528 | for (UInt_t i=0; i<npix; i++) | 
|---|
| 529 | { | 
|---|
| 530 | MCerPhotPix &pix = (*fEvt)[i]; | 
|---|
| 531 | if ( !pix.IsPixelUsed() ) | 
|---|
| 532 | continue; | 
|---|
| 533 |  | 
|---|
| 534 | //if ( pix.GetNumPhotons() == 0.0) | 
|---|
| 535 | //{ | 
|---|
| 536 | //  *fLog << "MCT1PadSchweizer::Process(); no.of photons is 0 for used pixel" | 
|---|
| 537 | //        << endl; | 
|---|
| 538 | //  continue; | 
|---|
| 539 | //} | 
|---|
| 540 |  | 
|---|
| 541 | Int_t j = pix.GetPixId(); | 
|---|
| 542 |  | 
|---|
| 543 | // GetPixRatio returns (area of pixel 0 / area of current pixel) | 
|---|
| 544 | Double_t ratioArea = 1.0 / fCam->GetPixRatio(j); | 
|---|
| 545 |  | 
|---|
| 546 | MPedPhotPix &ppix = (*fPed)[j]; | 
|---|
| 547 | Double_t oldsigma = ppix.GetRms(); | 
|---|
| 548 | Double_t oldsigma2 = oldsigma*oldsigma; | 
|---|
| 549 |  | 
|---|
| 550 | //--------------------------------- | 
|---|
| 551 | // throw the Sigma for this pixel | 
|---|
| 552 | // | 
|---|
| 553 | Int_t binPixel = fHDiffPixTheta->GetYaxis()->FindBin( (Double_t)j ); | 
|---|
| 554 |  | 
|---|
| 555 | Int_t count; | 
|---|
| 556 | Bool_t ok; | 
|---|
| 557 |  | 
|---|
| 558 | TH1D *hdiff; | 
|---|
| 559 | TH1D *hsig; | 
|---|
| 560 |  | 
|---|
| 561 | switch (fPadFlag) | 
|---|
| 562 | { | 
|---|
| 563 | case 1 : | 
|---|
| 564 | // throw the Sigma for this pixel from the distribution fHDiffPixTheta | 
|---|
| 565 |  | 
|---|
| 566 | hdiff = fHDiffPixTheta->ProjectionZ("", binTheta, binTheta, | 
|---|
| 567 | binPixel, binPixel, ""); | 
|---|
| 568 | if ( hdiff->GetEntries() == 0 ) | 
|---|
| 569 | { | 
|---|
| 570 | *fLog << "MCT1PadSchweizer::Process(); projection for Theta bin " | 
|---|
| 571 | << binTheta << "  and pixel bin " << binPixel | 
|---|
| 572 | << " has no entries;  aborting " << endl; | 
|---|
| 573 | delete hdiff; | 
|---|
| 574 |  | 
|---|
| 575 | rc = 5; | 
|---|
| 576 | fErrors[rc]++; | 
|---|
| 577 | return kCONTINUE; | 
|---|
| 578 | } | 
|---|
| 579 |  | 
|---|
| 580 | count = 0; | 
|---|
| 581 | ok = kFALSE; | 
|---|
| 582 | for (Int_t m=0; m<20; m++) | 
|---|
| 583 | { | 
|---|
| 584 | count += 1; | 
|---|
| 585 | diff = hdiff->GetRandom(); | 
|---|
| 586 | // the following condition ensures that elNoise2Pix > 0.0 | 
|---|
| 587 |  | 
|---|
| 588 | if ( (diff + sigmabar2 - oldsigma2/ratioArea | 
|---|
| 589 | - lambdabar*F2excess) > 0.0 ) | 
|---|
| 590 | { | 
|---|
| 591 | ok = kTRUE; | 
|---|
| 592 | break; | 
|---|
| 593 | } | 
|---|
| 594 | } | 
|---|
| 595 | if (!ok) | 
|---|
| 596 | { | 
|---|
| 597 |  | 
|---|
| 598 | *fLog << "theta, j, count, sigmabar, diff = " << theta << ",  " | 
|---|
| 599 | << j << ",  " << count << ",  " << sigmabar << ",  " | 
|---|
| 600 | << diff << endl; | 
|---|
| 601 | diff = lambdabar*F2excess + oldsigma2/ratioArea - sigmabar2; | 
|---|
| 602 | } | 
|---|
| 603 | delete hdiff; | 
|---|
| 604 | sigma2 = diff + sigmabar2; | 
|---|
| 605 | break; | 
|---|
| 606 |  | 
|---|
| 607 | case 2 : | 
|---|
| 608 | // throw the Sigma for this pixel from the distribution fHSigmaPixTheta | 
|---|
| 609 |  | 
|---|
| 610 | hsig = fHSigmaPixTheta->ProjectionZ("", binTheta, binTheta, | 
|---|
| 611 | binPixel, binPixel, ""); | 
|---|
| 612 | if ( hsig->GetEntries() == 0 ) | 
|---|
| 613 | { | 
|---|
| 614 | *fLog << "MCT1PadSchweizer::Process(); projection for Theta bin " | 
|---|
| 615 | << binTheta << "  and pixel bin " << binPixel | 
|---|
| 616 | << " has no entries;  aborting " << endl; | 
|---|
| 617 | delete hsig; | 
|---|
| 618 |  | 
|---|
| 619 | rc = 6; | 
|---|
| 620 | fErrors[rc]++; | 
|---|
| 621 | return kCONTINUE; | 
|---|
| 622 | } | 
|---|
| 623 |  | 
|---|
| 624 | count = 0; | 
|---|
| 625 | ok = kFALSE; | 
|---|
| 626 | for (Int_t m=0; m<20; m++) | 
|---|
| 627 | { | 
|---|
| 628 | count += 1; | 
|---|
| 629 |  | 
|---|
| 630 | sig = hsig->GetRandom(); | 
|---|
| 631 | sigma2 = sig*sig/ratioArea; | 
|---|
| 632 | // the following condition ensures that elNoise2Pix > 0.0 | 
|---|
| 633 |  | 
|---|
| 634 | if ( (sigma2-oldsigma2/ratioArea-lambdabar*F2excess) > 0.0 ) | 
|---|
| 635 | { | 
|---|
| 636 | ok = kTRUE; | 
|---|
| 637 | break; | 
|---|
| 638 | } | 
|---|
| 639 | } | 
|---|
| 640 | if (!ok) | 
|---|
| 641 | { | 
|---|
| 642 |  | 
|---|
| 643 | *fLog << "theta, j, count, sigmabar, sig = " << theta << ",  " | 
|---|
| 644 | << j << ",  " << count << ",  " << sigmabar << ",  " | 
|---|
| 645 | << sig << endl; | 
|---|
| 646 | sigma2 = lambdabar*F2excess + oldsigma2/ratioArea; | 
|---|
| 647 | } | 
|---|
| 648 | delete hsig; | 
|---|
| 649 | break; | 
|---|
| 650 | } | 
|---|
| 651 |  | 
|---|
| 652 | //--------------------------------- | 
|---|
| 653 | // get the additional sigma^2 for this pixel (due to the padding) | 
|---|
| 654 |  | 
|---|
| 655 | addSig2 = sigma2*ratioArea - oldsigma2; | 
|---|
| 656 |  | 
|---|
| 657 |  | 
|---|
| 658 | //--------------------------------- | 
|---|
| 659 | // get the additional electronic noise for this pixel | 
|---|
| 660 |  | 
|---|
| 661 | elNoise2Pix = addSig2 - lambdabar*F2excess*ratioArea; | 
|---|
| 662 |  | 
|---|
| 663 |  | 
|---|
| 664 | //--------------------------------- | 
|---|
| 665 | // throw actual number of additional NSB photons (NSB) | 
|---|
| 666 | //       and its RMS (sigmaNSB) | 
|---|
| 667 |  | 
|---|
| 668 | Double_t NSB0 = gRandom->Poisson(lambdabar*ratioArea); | 
|---|
| 669 | Double_t arg  = NSB0*(F2excess-1.0) + elNoise2Pix; | 
|---|
| 670 | Double_t sigmaNSB0; | 
|---|
| 671 |  | 
|---|
| 672 | if (arg >= 0) | 
|---|
| 673 | { | 
|---|
| 674 | sigmaNSB0 = sqrt( arg ); | 
|---|
| 675 | } | 
|---|
| 676 | else | 
|---|
| 677 | { | 
|---|
| 678 | *fLog << "MCT1PadSchweizer::Process(); argument of sqrt < 0 : " | 
|---|
| 679 | << arg << endl; | 
|---|
| 680 | sigmaNSB0 = 0.0000001; | 
|---|
| 681 | } | 
|---|
| 682 |  | 
|---|
| 683 |  | 
|---|
| 684 | //--------------------------------- | 
|---|
| 685 | // smear NSB0 according to sigmaNSB0 | 
|---|
| 686 | // and subtract lambdabar because of AC coupling | 
|---|
| 687 |  | 
|---|
| 688 | Double_t NSB = gRandom->Gaus(NSB0, sigmaNSB0) - lambdabar*ratioArea; | 
|---|
| 689 |  | 
|---|
| 690 | //--------------------------------- | 
|---|
| 691 |  | 
|---|
| 692 | // add additional NSB to the number of photons | 
|---|
| 693 | Double_t oldphotons = pix.GetNumPhotons(); | 
|---|
| 694 | Double_t newphotons = oldphotons + NSB; | 
|---|
| 695 | pix.SetNumPhotons(newphotons); | 
|---|
| 696 |  | 
|---|
| 697 |  | 
|---|
| 698 | fHNSB->Fill( NSB/sqrt(ratioArea) ); | 
|---|
| 699 | fHPhotons->Fill( oldphotons/sqrt(ratioArea), newphotons/sqrt(ratioArea) ); | 
|---|
| 700 |  | 
|---|
| 701 |  | 
|---|
| 702 | // error: add sigma of padded noise quadratically | 
|---|
| 703 | Double_t olderror = pix.GetErrorPhot(); | 
|---|
| 704 | Double_t newerror = sqrt(olderror*olderror + addSig2); | 
|---|
| 705 | pix.SetErrorPhot(newerror); | 
|---|
| 706 |  | 
|---|
| 707 |  | 
|---|
| 708 | Double_t newsigma = sqrt(oldsigma2 + addSig2); | 
|---|
| 709 | ppix.SetRms(newsigma); | 
|---|
| 710 |  | 
|---|
| 711 | fHSigmaPedestal->Fill(oldsigma, newsigma); | 
|---|
| 712 | } | 
|---|
| 713 | //----------   end of loop over pixels   --------------------------------- | 
|---|
| 714 |  | 
|---|
| 715 | // Calculate sigmabar again and crosscheck | 
|---|
| 716 |  | 
|---|
| 717 |  | 
|---|
| 718 | //fSigmabar->Calc(*fCam, *fPed, *fEvt); | 
|---|
| 719 | //*fLog << "after padding : " << endl; | 
|---|
| 720 | //fSigmabar->Print(""); | 
|---|
| 721 |  | 
|---|
| 722 |  | 
|---|
| 723 | //*fLog << "Exit MCT1PadSchweizer::Process();" << endl; | 
|---|
| 724 |  | 
|---|
| 725 | rc = 0; | 
|---|
| 726 | fErrors[rc]++; | 
|---|
| 727 |  | 
|---|
| 728 | return kTRUE; | 
|---|
| 729 |  | 
|---|
| 730 | } | 
|---|
| 731 |  | 
|---|
| 732 | // -------------------------------------------------------------------------- | 
|---|
| 733 | // | 
|---|
| 734 | // | 
|---|
| 735 | Int_t MCT1PadSchweizer::PostProcess() | 
|---|
| 736 | { | 
|---|
| 737 | if (GetNumExecutions() != 0) | 
|---|
| 738 | { | 
|---|
| 739 |  | 
|---|
| 740 | *fLog << inf << endl; | 
|---|
| 741 | *fLog << GetDescriptor() << " execution statistics:" << endl; | 
|---|
| 742 | *fLog << dec << setfill(' '); | 
|---|
| 743 | *fLog << " " << setw(7) << fErrors[1] << " (" << setw(3) | 
|---|
| 744 | << (int)(fErrors[1]*100/GetNumExecutions()) | 
|---|
| 745 | << "%) Evts skipped due to: Sigmabar_old > 0" << endl; | 
|---|
| 746 |  | 
|---|
| 747 | *fLog << " " << setw(7) << fErrors[2] << " (" << setw(3) | 
|---|
| 748 | << (int)(fErrors[2]*100/GetNumExecutions()) | 
|---|
| 749 | << "%) Evts skipped due to: Zenith angle out of range" << endl; | 
|---|
| 750 |  | 
|---|
| 751 | *fLog << " " << setw(7) << fErrors[3] << " (" << setw(3) | 
|---|
| 752 | << (int)(fErrors[3]*100/GetNumExecutions()) | 
|---|
| 753 | << "%) Evts skipped due to: No data for generating Sigmabar" << endl; | 
|---|
| 754 |  | 
|---|
| 755 | *fLog << " " << setw(7) << fErrors[4] << " (" << setw(3) | 
|---|
| 756 | << (int)(fErrors[4]*100/GetNumExecutions()) | 
|---|
| 757 | << "%) Evts skipped due to: Target sigma <= Sigmabar_old" << endl; | 
|---|
| 758 |  | 
|---|
| 759 | *fLog << " " << setw(7) << fErrors[5] << " (" << setw(3) | 
|---|
| 760 | << (int)(fErrors[5]*100/GetNumExecutions()) | 
|---|
| 761 | << "%) Evts skipped due to: No data for generating Sigma^2-Sigmabar^2" << endl; | 
|---|
| 762 |  | 
|---|
| 763 | *fLog << " " << setw(7) << fErrors[6] << " (" << setw(3) | 
|---|
| 764 | << (int)(fErrors[6]*100/GetNumExecutions()) | 
|---|
| 765 | << "%) Evts skipped due to: No data for generating Sigma" << endl; | 
|---|
| 766 |  | 
|---|
| 767 | *fLog << " " << setw(7) << fErrors[7] << " (" << setw(3) | 
|---|
| 768 | << (int)(fErrors[7]*100/GetNumExecutions()) | 
|---|
| 769 | << "%) Evts skipped due to: No data for generating Blind pixels" << endl; | 
|---|
| 770 |  | 
|---|
| 771 | *fLog << " " << fErrors[0] << " (" | 
|---|
| 772 | << (int)(fErrors[0]*100/GetNumExecutions()) | 
|---|
| 773 | << "%) Evts survived the padding!" << endl; | 
|---|
| 774 | *fLog << endl; | 
|---|
| 775 |  | 
|---|
| 776 | } | 
|---|
| 777 |  | 
|---|
| 778 | //--------------------------------------------------------------- | 
|---|
| 779 | TCanvas &c = *(MH::MakeDefCanvas("PadSchweizer", "", 900, 1200)); | 
|---|
| 780 | c.Divide(3, 4); | 
|---|
| 781 | gROOT->SetSelectedPad(NULL); | 
|---|
| 782 |  | 
|---|
| 783 | c.cd(1); | 
|---|
| 784 | fHNSB->SetDirectory(NULL); | 
|---|
| 785 | fHNSB->DrawCopy(); | 
|---|
| 786 | fHNSB->SetBit(kCanDelete); | 
|---|
| 787 |  | 
|---|
| 788 | c.cd(2); | 
|---|
| 789 | fHSigmaPedestal->SetDirectory(NULL); | 
|---|
| 790 | fHSigmaPedestal->DrawCopy(); | 
|---|
| 791 | fHSigmaPedestal->SetBit(kCanDelete); | 
|---|
| 792 |  | 
|---|
| 793 | c.cd(3); | 
|---|
| 794 | fHPhotons->SetDirectory(NULL); | 
|---|
| 795 | fHPhotons->DrawCopy(); | 
|---|
| 796 | fHPhotons->SetBit(kCanDelete); | 
|---|
| 797 |  | 
|---|
| 798 | //-------------------------------------------------------------------- | 
|---|
| 799 |  | 
|---|
| 800 |  | 
|---|
| 801 | c.cd(4); | 
|---|
| 802 | fHSigmaTheta->SetDirectory(NULL); | 
|---|
| 803 | fHSigmaTheta->SetTitle("(Input) 2D : Sigmabar, \\Theta"); | 
|---|
| 804 | fHSigmaTheta->DrawCopy(); | 
|---|
| 805 | fHSigmaTheta->SetBit(kCanDelete); | 
|---|
| 806 |  | 
|---|
| 807 | //-------------------------------------------------------------------- | 
|---|
| 808 |  | 
|---|
| 809 |  | 
|---|
| 810 | c.cd(7); | 
|---|
| 811 | fHBlindPixNTheta->SetDirectory(NULL); | 
|---|
| 812 | fHBlindPixNTheta->SetTitle("(Input) 2D : no.of blind pixels, \\Theta"); | 
|---|
| 813 | fHBlindPixNTheta->DrawCopy(); | 
|---|
| 814 | fHBlindPixNTheta->SetBit(kCanDelete); | 
|---|
| 815 |  | 
|---|
| 816 | //-------------------------------------------------------------------- | 
|---|
| 817 |  | 
|---|
| 818 |  | 
|---|
| 819 | c.cd(10); | 
|---|
| 820 | fHBlindPixIdTheta->SetDirectory(NULL); | 
|---|
| 821 | fHBlindPixIdTheta->SetTitle("(Input) 2D : blind pixel Id, \\Theta"); | 
|---|
| 822 | fHBlindPixIdTheta->DrawCopy(); | 
|---|
| 823 | fHBlindPixIdTheta->SetBit(kCanDelete); | 
|---|
| 824 |  | 
|---|
| 825 |  | 
|---|
| 826 | //-------------------------------------------------------------------- | 
|---|
| 827 | // draw the 3D histogram (input): Theta, pixel, Sigma^2-Sigmabar^2 | 
|---|
| 828 |  | 
|---|
| 829 | c.cd(5); | 
|---|
| 830 | TH2D *l1; | 
|---|
| 831 | l1 = (TH2D*) ((TH3*)fHDiffPixTheta)->Project3D("zx"); | 
|---|
| 832 | l1->SetDirectory(NULL); | 
|---|
| 833 | l1->SetTitle("(Input) Sigma^2-Sigmabar^2 vs. \\Theta (all pixels)"); | 
|---|
| 834 | l1->SetXTitle("\\Theta [\\circ]"); | 
|---|
| 835 | l1->SetYTitle("Sigma^2-Sigmabar^2"); | 
|---|
| 836 |  | 
|---|
| 837 | l1->DrawCopy("box"); | 
|---|
| 838 | l1->SetBit(kCanDelete);; | 
|---|
| 839 |  | 
|---|
| 840 | c.cd(8); | 
|---|
| 841 | TH2D *l2; | 
|---|
| 842 | l2 = (TH2D*) ((TH3*)fHDiffPixTheta)->Project3D("zy"); | 
|---|
| 843 | l2->SetDirectory(NULL); | 
|---|
| 844 | l2->SetTitle("(Input) Sigma^2-Sigmabar^2 vs. pixel number (all \\Theta)"); | 
|---|
| 845 | l2->SetXTitle("pixel"); | 
|---|
| 846 | l2->SetYTitle("Sigma^2-Sigmabar^2"); | 
|---|
| 847 |  | 
|---|
| 848 | l2->DrawCopy("box"); | 
|---|
| 849 | l2->SetBit(kCanDelete);; | 
|---|
| 850 |  | 
|---|
| 851 | //-------------------------------------------------------------------- | 
|---|
| 852 | // draw the 3D histogram (input): Theta, pixel, Sigma | 
|---|
| 853 |  | 
|---|
| 854 | c.cd(6); | 
|---|
| 855 | TH2D *k1; | 
|---|
| 856 | k1 = (TH2D*) ((TH3*)fHSigmaPixTheta)->Project3D("zx"); | 
|---|
| 857 | k1->SetDirectory(NULL); | 
|---|
| 858 | k1->SetTitle("(Input) Sigma vs. \\Theta (all pixels)"); | 
|---|
| 859 | k1->SetXTitle("\\Theta [\\circ]"); | 
|---|
| 860 | k1->SetYTitle("Sigma"); | 
|---|
| 861 |  | 
|---|
| 862 | k1->DrawCopy("box"); | 
|---|
| 863 | k1->SetBit(kCanDelete); | 
|---|
| 864 |  | 
|---|
| 865 | c.cd(9); | 
|---|
| 866 | TH2D *k2; | 
|---|
| 867 | k2 = (TH2D*) ((TH3*)fHSigmaPixTheta)->Project3D("zy"); | 
|---|
| 868 | k2->SetDirectory(NULL); | 
|---|
| 869 | k2->SetTitle("(Input) Sigma vs. pixel number (all \\Theta)"); | 
|---|
| 870 | k2->SetXTitle("pixel"); | 
|---|
| 871 | k2->SetYTitle("Sigma"); | 
|---|
| 872 |  | 
|---|
| 873 | k2->DrawCopy("box"); | 
|---|
| 874 | k2->SetBit(kCanDelete);; | 
|---|
| 875 |  | 
|---|
| 876 |  | 
|---|
| 877 | //-------------------------------------------------------------------- | 
|---|
| 878 |  | 
|---|
| 879 |  | 
|---|
| 880 | return kTRUE; | 
|---|
| 881 | } | 
|---|
| 882 |  | 
|---|
| 883 | // -------------------------------------------------------------------------- | 
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| 884 |  | 
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| 886 |  | 
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| 887 |  | 
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| 888 |  | 
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| 889 |  | 
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| 890 |  | 
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| 891 |  | 
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| 892 |  | 
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| 893 |  | 
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| 894 |  | 
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| 895 |  | 
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| 896 |  | 
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| 897 |  | 
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