| 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, 01/2003 <mailto:wittek@mppmu.mpg.de>
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| 20 | ! Author(s): Thomas Bretz, 04/2003 <mailto:tbretz@astro.uni-wuerzburg.de>
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| 21 | !
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| 22 | ! Copyright: MAGIC Software Development, 2003
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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 | // //
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| 29 | // MSigmabar //
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| 30 | // //
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| 31 | // This is the storage container to hold information about //
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| 32 | // "average" pedestal RMS //
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| 33 | // //
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| 34 | // The "average" pedestal RMS is calculated as //
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| 35 | // <pedRMS> = sqrt( sum_i( (pedRMS_i)^2/area_i ) / no.of pixels ) //
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| 36 | // //
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| 37 | // which is the sqrt of the average (pedRMS^2 per area) //
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| 38 | // //
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| 39 | /////////////////////////////////////////////////////////////////////////////
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| 40 | #include "MSigmabar.h"
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| 41 |
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| 42 | #include <TMath.h>
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| 43 |
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| 44 | #include "MLog.h"
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| 45 | #include "MLogManip.h"
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| 46 |
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| 47 | #include "MParList.h"
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| 48 |
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| 49 | #include "MGeomCam.h"
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| 50 | #include "MGeomPix.h"
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| 51 |
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| 52 | #include "MCerPhotEvt.h"
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| 53 | #include "MCerPhotPix.h"
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| 54 |
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| 55 | #include "MPedPhotCam.h"
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| 56 | #include "MPedPhotPix.h"
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| 57 |
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| 58 | ClassImp(MSigmabar);
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| 59 |
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| 60 | using namespace std;
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| 61 |
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| 62 | // --------------------------------------------------------------------------
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| 63 | //
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| 64 | MSigmabar::MSigmabar(const char *name, const char *title)
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| 65 | {
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| 66 | fName = name ? name : "MSigmabar";
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| 67 | fTitle = title ? title : "Storage container for Sigmabar";
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| 68 | }
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| 69 |
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| 70 | // --------------------------------------------------------------------------
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| 71 | //
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| 72 | MSigmabar::~MSigmabar()
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| 73 | {
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| 74 | // do nothing special.
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| 75 | }
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| 76 |
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| 77 | void MSigmabar::Reset()
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| 78 | {
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| 79 | fSigmabar = -1;
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| 80 | fInnerPixels = -1;
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| 81 | fOuterPixels = -1;
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| 82 | fSigmabarInner = -1;
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| 83 | fSigmabarOuter = -1;
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| 84 |
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| 85 | memset(fSigmabarSector, 0, sizeof(fSigmabarSector));
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| 86 | memset(fSigmabarInnerSector, 0, sizeof(fSigmabarInnerSector));
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| 87 | memset(fSigmabarOuterSector, 0, sizeof(fSigmabarOuterSector));
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| 88 | }
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| 89 |
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| 90 | // --------------------------------------------------------------------------
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| 91 | //
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| 92 | // Actual calculation of sigmabar. This is done for each of the six sectors
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| 93 | // separately due to their possibly different HV behavior. Also inner and
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| 94 | // outer pixels are treated separately.
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| 95 | //
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| 96 | // Preliminary! Works for CT1 test, for real MAGIC crosschecks still have
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| 97 | // to be done. Also implementation details will be updated, like
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| 98 | // determination of sector to which a respective pixel belongs
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| 99 | //
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| 100 | Float_t MSigmabar::Calc(const MGeomCam &geom, const MPedPhotCam &ped,
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| 101 | const MCerPhotEvt &evt)
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| 102 | {
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| 103 | Int_t innerPixels[6];
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| 104 | Int_t outerPixels[6];
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| 105 | Float_t innerSum[6];
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| 106 | Float_t outerSum[6];
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| 107 |
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| 108 | memset(innerPixels, 0, sizeof(innerPixels));
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| 109 | memset(outerPixels, 0, sizeof(outerPixels));
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| 110 | memset(innerSum, 0, sizeof(innerSum));
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| 111 | memset(outerSum, 0, sizeof(outerSum));
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| 112 |
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| 113 | //
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| 114 | // sum up sigma^2/area for each sector,
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| 115 | // separately for inner and outer region;
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| 116 | //
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| 117 | // consider all pixels with Cherenkov photon information
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| 118 | // and require "Used"
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| 119 | //
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| 120 |
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| 121 | const UInt_t npix = evt.GetNumPixels();
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| 122 |
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| 123 | //*fLog << "MSigmabar : npix = " << npix << endl;
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| 124 |
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| 125 | for (UInt_t i=0; i<npix; i++)
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| 126 | {
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| 127 | MCerPhotPix &cerpix = evt.operator[](i);
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| 128 | if (!cerpix.IsPixelUsed())
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| 129 | continue;
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| 130 |
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| 131 | /*
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| 132 | if ( cerpix.GetNumPhotons() == 0 )
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| 133 | {
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| 134 | *fLog << "MSigmabar::Calc(); no.of photons is 0 for used pixel"
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| 135 | << endl;
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| 136 | continue;
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| 137 | }
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| 138 | */
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| 139 |
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| 140 | const Int_t idx = cerpix.GetPixId();
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| 141 | if (idx == 0)
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| 142 | {
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| 143 | //*fLog << "MSigmabar : id = 0; pixel '0' is used, ignore it"
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| 144 | // << endl;
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| 145 | continue;
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| 146 | }
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| 147 |
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| 148 | // ratio is the area of pixel 0
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| 149 | // divided by the area of the current pixel
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| 150 | const Double_t ratio = geom.GetPixRatio(idx);
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| 151 |
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| 152 | //*fLog << "pixel id, ratio = " << idx << ", " << ratio << endl;
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| 153 |
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| 154 | const MGeomPix &gpix = geom[idx];
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| 155 |
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| 156 | // This is wrong : rounding has to be done on positive values
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| 157 | //Int_t sector = (Int_t)(atan2(gpix.GetY(),gpix.GetX())*6
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| 158 | // / (TMath::Pi()*2));
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| 159 | //if (sector<0)
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| 160 | // sector+=6;
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| 161 |
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| 162 | Float_t sectorf = atan2(gpix.GetY(),gpix.GetX()) * 6.0
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| 163 | / (TMath::Pi()*2);
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| 164 | if (sectorf < 0.0)
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| 165 | sectorf += 6.0;
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| 166 | Int_t sector = (Int_t)sectorf;
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| 167 |
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| 168 | // count only those pixels which have a sigma != 0.0
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| 169 | const Float_t sigma = ped[idx].GetRms();
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| 170 |
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| 171 | if ( sigma <= 0 )
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| 172 | continue;
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| 173 |
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| 174 | //if (area < 1.5)
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| 175 | if (ratio > 0.5)
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| 176 | {
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| 177 | innerPixels[sector]++;
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| 178 | innerSum[sector]+= sigma*sigma * ratio;
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| 179 | }
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| 180 | else
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| 181 | {
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| 182 | outerPixels[sector]++;
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| 183 | outerSum[sector]+= sigma*sigma * ratio;
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| 184 | }
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| 185 | }
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| 186 |
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| 187 | fInnerPixels = 0;
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| 188 | fOuterPixels = 0;
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| 189 | Double_t fSumInner = 0;
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| 190 | Double_t fSumOuter = 0;
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| 191 | for (UInt_t i=0; i<6; i++)
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| 192 | {
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| 193 | fSumInner += innerSum[i];
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| 194 | fInnerPixels += innerPixels[i];
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| 195 | fSumOuter += outerSum[i];
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| 196 | fOuterPixels += outerPixels[i];
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| 197 | }
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| 198 |
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| 199 | if (fInnerPixels > 0) fSigmabarInner = sqrt(fSumInner / fInnerPixels);
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| 200 | if (fOuterPixels > 0) fSigmabarOuter = sqrt(fSumOuter / fOuterPixels);
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| 201 |
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| 202 | //
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| 203 | // this is the sqrt of the average sigma^2/area
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| 204 | //
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| 205 | fSigmabar = (fInnerPixels+fOuterPixels)<=0 ? 0:
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| 206 | sqrt( (fSumInner+fSumOuter)/(fInnerPixels+fOuterPixels) );
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| 207 |
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| 208 | for (UInt_t i=0; i<6; i++)
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| 209 | {
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| 210 | const Double_t ip = innerPixels[i];
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| 211 | const Double_t op = outerPixels[i];
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| 212 | const Double_t iss = innerSum[i];
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| 213 | const Double_t oss = outerSum[i];
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| 214 |
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| 215 | const Double_t sum = ip + op;
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| 216 | fSigmabarInnerSector[i] = ip <=0 ? 0 : sqrt(iss/ip);
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| 217 | fSigmabarOuterSector[i] = op <=0 ? 0 : sqrt(oss/op);
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| 218 | fSigmabarSector[i] = sum<=0 ? 0 : sqrt((iss+oss)/sum);
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| 219 | }
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| 220 |
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| 221 | //TString opt = "";
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| 222 | //Print(opt);
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| 223 |
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| 224 | return fSigmabarInner;
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| 225 | }
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| 226 |
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| 227 | // --------------------------------------------------------------------------
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| 228 | //
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| 229 | void MSigmabar::Print(Option_t *) const
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| 230 | {
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| 231 | *fLog << all << endl;
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| 232 | *fLog << "Total number of inner pixels is " << fInnerPixels << endl;
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| 233 | *fLog << "Total number of outer pixels is " << fOuterPixels << endl;
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| 234 | *fLog << endl;
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| 235 |
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| 236 | *fLog << "Sigmabar Overall : " << fSigmabar << " ";
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| 237 | *fLog << " Sectors: ";
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| 238 | for (Int_t i=0;i<6;i++)
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| 239 | *fLog << fSigmabarSector[i] << ", ";
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| 240 | *fLog << endl;
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| 241 |
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| 242 |
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| 243 | *fLog << "Sigmabar Inner : " << fSigmabarInner << " ";
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| 244 | *fLog << " Sectors: ";
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| 245 | for (Int_t i=0;i<6;i++)
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| 246 | *fLog << fSigmabarInnerSector[i] << ", ";
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| 247 | *fLog << endl;
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| 248 |
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| 249 |
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| 250 | *fLog << "Sigmabar Outer : " << fSigmabarOuter << " ";
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| 251 | *fLog << " Sectors: ";
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| 252 | for (Int_t i=0;i<6;i++)
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| 253 | *fLog << fSigmabarOuterSector[i] << ", ";
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| 254 | *fLog << endl;
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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 |
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| 260 |
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| 261 |
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| 262 |
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| 263 |
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| 264 |
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| 265 |
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