| 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): Thomas Bretz, 4/2014 <mailto:tbretz@phys.ethz.ch>
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| 19 | !
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| 20 | ! Copyright: MAGIC Software Development, 2014
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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 | // MImgCleanTime
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| 28 | //
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| 29 | // Input Containers:
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| 30 | // MGeomCam
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| 31 | // MSignalCam
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| 32 | //
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| 33 | // Output Containers:
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| 34 | // MSignalCam
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| 35 | //
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| 36 | /////////////////////////////////////////////////////////////////////////////
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| 37 | #include "MImgCleanTime.h"
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| 38 |
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| 39 | #include <TEnv.h>
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| 40 |
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| 41 | #include "MLog.h"
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| 42 | #include "MLogManip.h"
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| 43 |
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| 44 | #include "MParList.h"
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| 45 |
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| 46 | #include "MGeomPix.h"
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| 47 | #include "MGeomCam.h"
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| 48 |
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| 49 | #include "MSignalPix.h"
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| 50 | #include "MSignalCam.h"
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| 51 |
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| 52 | ClassImp(MImgCleanTime);
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| 53 |
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| 54 | using namespace std;
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| 55 |
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| 56 | // --------------------------------------------------------------------------
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| 57 | //
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| 58 | // Default constructor. Here you can specify the cleaning method and levels.
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| 59 | // If you don't specify them the 'common standard' values 3.0 and 2.5 (sigma
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| 60 | // above mean) are used.
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| 61 | // Here you can also specify how many rings around the core pixels you want
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| 62 | // to analyze (with the fixed lvl2). The default value for "rings" is 1.
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| 63 | //
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| 64 | MImgCleanTime::MImgCleanTime(const char *name, const char *title)
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| 65 | : fCam(0), fEvt(0), fMinCount(0), fMinSize(25), fDeltaT(2.5*17.5*0.1111),
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| 66 | fNameSignalCam("MSignalCam")
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| 67 | {
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| 68 | fName = name ? name : "MImgCleanTime";
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| 69 | fTitle = title ? title : "Task to perform image cleaning";
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| 70 | }
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| 71 |
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| 72 | // --------------------------------------------------------------------------
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| 73 | //
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| 74 | // Check if MEvtHeader exists in the Parameter list already.
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| 75 | // if not create one and add them to the list
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| 76 | //
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| 77 | Int_t MImgCleanTime::PreProcess (MParList *pList)
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| 78 | {
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| 79 | fCam = (MGeomCam*)pList->FindObject("MGeomCam");
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| 80 | if (!fCam)
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| 81 | {
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| 82 | *fLog << err << "MGeomCam not found (no geometry information available)... aborting." << endl;
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| 83 | return kFALSE;
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| 84 | }
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| 85 | fEvt = (MSignalCam*)pList->FindObject(fNameSignalCam, "MSignalCam");
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| 86 | if (!fEvt)
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| 87 | {
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| 88 | *fLog << err << fNameSignalCam << " [MSignalCam] not found... aborting." << endl;
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| 89 | return kFALSE;
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| 90 | }
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| 91 |
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| 92 | return kTRUE;
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| 93 | }
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| 94 |
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| 95 | Island MImgCleanTime::CalcIsland(MSignalPix &pix1, const MGeom &gpix1, const uint16_t &island1)
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| 96 | {
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| 97 | pix1.SetIdxIsland(island1);
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| 98 |
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| 99 | const Float_t time1 = pix1.GetArrivalTime();
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| 100 |
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| 101 | Island island(pix1.GetNumPhotons(), time1);
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| 102 |
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| 103 | for (UInt_t i=0; i<gpix1.GetNumNeighbors(); i++)
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| 104 | {
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| 105 | const Int_t idx2 = gpix1.GetNeighbor(i);
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| 106 |
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| 107 | MSignalPix &pix2 = (*fEvt)[idx2];
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| 108 |
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| 109 | const Int_t island2 = pix2.GetIdxIsland();
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| 110 | if (island2>=0)
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| 111 | {
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| 112 | if (island1==island2)
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| 113 | continue;
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| 114 |
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| 115 | // The entries are sorted naturally, therefore
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| 116 | // there is no need to check the whole array
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| 117 | const auto it = fContacts.rbegin();
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| 118 | if (it==fContacts.rend() ||
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| 119 | (it->first!=island1 && it->second!=island2))
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| 120 | fContacts.emplace_back(island1, island2);
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| 121 |
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| 122 | continue;
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| 123 | }
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| 124 |
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| 125 | const Float_t time2 = pix2.GetArrivalTime();
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| 126 | if (fabs(time2-time1)<fDeltaT) // FIXME: Scale with distance?
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| 127 | island += CalcIsland(pix2, (*fCam)[idx2], island1);
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| 128 | }
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| 129 |
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| 130 | return island;
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| 131 | }
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| 132 |
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| 133 | // --------------------------------------------------------------------------
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| 134 | //
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| 135 | // Cleans the image.
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| 136 | //
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| 137 | Int_t MImgCleanTime::Process()
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| 138 | {
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| 139 | // The assumption is that all pixels contain valid data
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| 140 | const UInt_t npix = fEvt->GetNumPixels();
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| 141 | for (UInt_t i=0; i<npix; i++)
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| 142 | {
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| 143 | MSignalPix &pix = (*fEvt)[i];
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| 144 | pix.SetPixelUnused();
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| 145 | pix.SetPixelCore(kFALSE);
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| 146 | pix.SetIdxIsland(-1);
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| 147 | }
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| 148 |
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| 149 | // Contains the id of the island for each pixel
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| 150 | fIslands.clear();
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| 151 | fContacts.clear();
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| 152 |
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| 153 | // Start with island idx==0
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| 154 | UShort_t idx = 0;
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| 155 | for (UInt_t i=0; i<npix; i++)
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| 156 | {
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| 157 | MSignalPix &spix = (*fEvt)[i];
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| 158 |
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| 159 | // The following might be much more efficient and faster
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| 160 | // if we omit small counted and sized islands already,
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| 161 | // but what is the disadvantage?
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| 162 | if (spix.GetIdxIsland()<0)
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| 163 | fIslands.emplace_back(CalcIsland(spix, (*fCam)[i], idx++));
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| 164 | }
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| 165 |
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| 166 | fLut.resize(fIslands.size());
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| 167 | for (UInt_t i=0; i<fLut.size(); i++)
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| 168 | fLut[i] = i;
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| 169 |
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| 170 | // Unify touching islands if their arrival time ranges overlap
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| 171 | for (auto it=fContacts.begin(); it!=fContacts.end(); it++)
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| 172 | {
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| 173 | const uint16_t &idx1 = fLut[it->first];
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| 174 | const uint16_t &idx2 = fLut[it->second];
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| 175 | if (idx1==idx2)
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| 176 | continue;
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| 177 |
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| 178 | Island &I1 = fIslands[idx1];
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| 179 | const Island &I2 = fIslands[idx2];
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| 180 |
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| 181 | // FIXME: Put a limit on count? Put a limit on size?
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| 182 | // The ideal cut would be to allow that a single
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| 183 | // pixel still can connect two clusters
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| 184 | if (I1.count==1 || I1.count==1)
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| 185 | continue;
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| 186 |
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| 187 | if (I1.max<I2.min || I2.max<I1.min)
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| 188 | continue;
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| 189 |
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| 190 | // Combine both islands
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| 191 | I1 += I2;
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| 192 |
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| 193 | // Remove idx2 from the list
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| 194 | for (auto is=fLut.begin(); is!=fLut.end(); is++)
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| 195 | if (*is==idx2)
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| 196 | *is=idx1;
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| 197 |
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| 198 | // Erase entry form contact list
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| 199 | fContacts.erase(it);
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| 200 |
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| 201 | // Start over again
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| 202 | it = fContacts.begin();
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| 203 | }
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| 204 |
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| 205 | uint16_t num_islands = 0;
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| 206 | double size_main = 0;
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| 207 | double size_tot = 0;
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| 208 |
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| 209 | vector<bool> used(fIslands.size());
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| 210 | for (UInt_t i=0; i<npix; i++)
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| 211 | {
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| 212 | MSignalPix &pix = (*fEvt)[i];
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| 213 |
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| 214 | // At the end every pixel has an island assigned
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| 215 | const Short_t ii = fLut[pix.GetIdxIsland()];
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| 216 |
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| 217 | const Island &island = fIslands[ii];
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| 218 |
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| 219 | if (island.count<=fMinCount || island.size<=fMinSize)
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| 220 | continue;
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| 221 |
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| 222 | if (!used[ii])
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| 223 | {
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| 224 | used[ii] = true;
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| 225 | num_islands++;
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| 226 |
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| 227 | size_tot += island.size;
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| 228 | if (island.size>size_main)
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| 229 | size_main = island.size;
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| 230 | }
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| 231 |
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| 232 | pix.SetPixelUsed();
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| 233 | pix.SetPixelCore();
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| 234 | }
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| 235 |
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| 236 | fEvt->SetIslandInfo(num_islands, size_main, size_tot-size_main);
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| 237 |
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| 238 | return kTRUE;
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| 239 | }
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| 240 |
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| 241 | // --------------------------------------------------------------------------
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| 242 | //
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| 243 | Int_t MImgCleanTime::ReadEnv(const TEnv &env, TString prefix, Bool_t print)
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| 244 | {
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| 245 | Bool_t rc = kFALSE;
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| 246 | if (IsEnvDefined(env, prefix, "MinSize", print))
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| 247 | {
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| 248 | rc = kTRUE;
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| 249 | SetMinSize(GetEnvValue(env, prefix, "MinSize", fMinSize));
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| 250 | }
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| 251 | if (IsEnvDefined(env, prefix, "MinCount", print))
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| 252 | {
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| 253 | rc = kTRUE;
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| 254 | SetMinSize(GetEnvValue(env, prefix, "MinCount", (Int_t)fMinCount));
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| 255 | }
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| 256 | if (IsEnvDefined(env, prefix, "DeltaT", print))
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| 257 | {
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| 258 | rc = kTRUE;
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| 259 | SetMinSize(GetEnvValue(env, prefix, "DeltaT", fDeltaT));
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| 260 | }
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| 261 |
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| 262 | return rc;
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| 263 | }
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