| 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 | !   Author(s): Javier Rico 2/2005 <mailto:jrico@ifae.es> | 
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| 18 | ! | 
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| 19 | !   Copyright: MAGIC Software Development, 2000-2005 | 
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| 20 | ! | 
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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 | //  MMcUnfoldCoeffCalc | 
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| 27 | //  Task to compute the coefficients for energy unfolding (to be used | 
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| 28 | //  typically in an iterative process). | 
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| 29 | // | 
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| 30 | //  Input containers: | 
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| 31 | //   MMcEvt | 
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| 32 | //   MMcEvtBasic | 
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| 33 | //   MEnergyEst | 
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| 34 | //   binsTheta  [MBinning] | 
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| 35 | //   binsEnergy [MBinning] | 
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| 36 | // | 
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| 37 | //  Output containers: | 
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| 38 | //   MHMcUnfoldCoeff | 
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| 39 | // | 
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| 40 | //  The binning for energy and theta are looked in the parameter list | 
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| 41 | //  The tentative spectrum MUST be provided using SetSpectrum, otherwise | 
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| 42 | //  it is used for default pow(energy,-1.6) [~Crab at 1 TeV] | 
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| 43 | // | 
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| 44 | //  This task is supposed to be in a two-looped macro/program: | 
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| 45 | //  In the first one MMcEvtBasic is read in order to compute the | 
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| 46 | //  weights to convert from original to tentative spectrum. | 
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| 47 | //  In the second one MMcEvt and MEnergyEst are read and fill the | 
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| 48 | //  MC and estimated energy that are divided in the postprocess to | 
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| 49 | //  compute the coefficients | 
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| 50 | // | 
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| 51 | ////////////////////////////////////////////////////////////////////////////// | 
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| 52 |  | 
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| 53 | #include "TF1.h" | 
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| 54 |  | 
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| 55 | #include "MMcUnfoldCoeffCalc.h" | 
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| 56 | #include "MHMcUnfoldCoeff.h" | 
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| 57 |  | 
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| 58 | #include "MParList.h" | 
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| 59 |  | 
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| 60 | #include "MLog.h" | 
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| 61 | #include "MLogManip.h" | 
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| 62 |  | 
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| 63 | #include "MMcEvt.hxx" | 
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| 64 | #include "MMcEvtBasic.h" | 
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| 65 | #include "MEnergyEst.h" | 
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| 66 |  | 
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| 67 | ClassImp(MMcUnfoldCoeffCalc); | 
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| 68 |  | 
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| 69 | using namespace std; | 
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| 70 |  | 
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| 71 | // ------------------------------------------------------------------------- | 
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| 72 | // | 
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| 73 | //  Constructor | 
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| 74 | // | 
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| 75 | MMcUnfoldCoeffCalc::MMcUnfoldCoeffCalc(const char* name, const char* title) : | 
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| 76 | fSpectrum(NULL) | 
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| 77 | { | 
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| 78 | fName  = name  ? name  : "MMcUnfoldCoeffCalc"; | 
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| 79 | fTitle = title ? title : "Task to calculate the unfolding coefficients"; | 
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| 80 | } | 
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| 81 |  | 
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| 82 | // ------------------------------------------------------------------------- | 
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| 83 | // | 
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| 84 | // PreProcess. | 
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| 85 | // Create MHMcUnfoldCoeff object if necessary. Search for other necessary | 
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| 86 | // containers: if MMcEvt is found, it means we are in the loop over the Events | 
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| 87 | // tree, and so we must fill the histogram MHMcUnfoldCoeff::fHistMcE and | 
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| 88 | // MHMcUnfoldCoeff::fHistEstE (using MHMcUnfoldCoeff::FillSel()). | 
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| 89 | // If MMcEvt is not found, it means that we are in the loop over the | 
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| 90 | // "OriginalMC" tree, containing all the original Corsika events | 
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| 91 | // produced, and hence we must fill the histogram  fHistAll through | 
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| 92 | // MHMcUnfoldCoeff::FillAll() | 
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| 93 | // | 
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| 94 | Int_t MMcUnfoldCoeffCalc::PreProcess (MParList *pList) | 
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| 95 | { | 
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| 96 | fUnfoldCoeff = (MHMcUnfoldCoeff*)pList->FindCreateObj("MHMcUnfoldCoeff"); | 
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| 97 |  | 
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| 98 | if (!fBinsTheta) | 
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| 99 | { | 
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| 100 | fBinsTheta = (MBinning*) pList->FindObject("binsTheta"); | 
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| 101 | if (!fBinsTheta) | 
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| 102 | { | 
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| 103 | *fLog << err << "Coarse Theta binning not found... Aborting." | 
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| 104 | << endl; | 
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| 105 | return kFALSE; | 
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| 106 | } | 
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| 107 | } | 
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| 108 |  | 
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| 109 | if (!fBinsEnergy) | 
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| 110 | { | 
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| 111 | fBinsEnergy = (MBinning*) pList->FindObject("binsEnergy"); | 
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| 112 | if (!fBinsEnergy) | 
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| 113 | { | 
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| 114 | *fLog << err << "Coarse Energy binning not found... Aborting." | 
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| 115 | << endl; | 
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| 116 | return kFALSE; | 
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| 117 | } | 
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| 118 | } | 
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| 119 |  | 
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| 120 | fMcEvt = (MMcEvt*)pList->FindObject("MMcEvt"); | 
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| 121 | if (fMcEvt) | 
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| 122 | { | 
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| 123 | *fLog << inf << "MMcEvt found... Filling MHMcUnfoldCoeff.fHistSel..." << endl; | 
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| 124 |  | 
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| 125 | fEnergyEst =  (MEnergyEst*)pList->FindObject("MEnergyEst"); | 
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| 126 | if(!fEnergyEst) | 
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| 127 | { | 
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| 128 | *fLog << err << "MEnergyEst not found... aborting..." << endl; | 
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| 129 | return kFALSE; | 
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| 130 | } | 
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| 131 |  | 
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| 132 | return kTRUE; | 
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| 133 | } | 
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| 134 |  | 
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| 135 | *fLog << inf << "MMcEvt not found... looking for MMcEvtBasic..." << endl; | 
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| 136 |  | 
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| 137 | fMcEvtBasic = (MMcEvtBasic*) pList->FindObject("MMcEvtBasic"); | 
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| 138 |  | 
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| 139 | if (fMcEvtBasic) | 
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| 140 | { | 
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| 141 | fUnfoldCoeff->SetCoarseBinnings(*fBinsEnergy,*fBinsTheta); | 
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| 142 |  | 
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| 143 | *fLog << inf << "MMcEvtBasic found... Filling MHMcUnfoldCoeff.fHistAll..." << endl; | 
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| 144 | return kTRUE; | 
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| 145 | } | 
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| 146 |  | 
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| 147 | *fLog << err << "MMcEvtBasic not found. Aborting..." << endl; | 
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| 148 |  | 
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| 149 | return kFALSE; | 
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| 150 | } | 
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| 151 |  | 
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| 152 | // ------------------------------------------------------------------------- | 
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| 153 | // | 
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| 154 | // Depending on whether fMcEvt or fMcEvtBasic are available, fill | 
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| 155 | // MHMcUnfoldCoeff::fHistAll, else, if fMcEvt is available, fill | 
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| 156 | // MHMcUnfoldCoeff::fHistMcE and MHMcUnfoldCoeff::fHistEstE | 
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| 157 | // | 
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| 158 | Int_t MMcUnfoldCoeffCalc::Process() | 
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| 159 | { | 
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| 160 | Double_t mcenergy  = fMcEvt ? fMcEvt->GetEnergy() : fMcEvtBasic->GetEnergy(); | 
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| 161 | Double_t estenergy = fEnergyEst ? fEnergyEst->GetEnergy() : 0; | 
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| 162 | Double_t theta  = fMcEvt? fMcEvt->GetTelescopeTheta()*TMath::RadToDeg() : 0; // in deg | 
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| 163 |  | 
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| 164 | if (fMcEvt) | 
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| 165 | fUnfoldCoeff->FillSel(mcenergy, estenergy, theta); | 
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| 166 | else | 
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| 167 | fUnfoldCoeff->FillAll(mcenergy); | 
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| 168 |  | 
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| 169 | return kTRUE; | 
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| 170 | } | 
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| 171 |  | 
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| 172 | // ------------------------------------------------------------------------- | 
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| 173 | // | 
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| 174 | // Postprocess. | 
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| 175 | // If both fHistMcE and fHistEstE are already filled, calculate | 
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| 176 | // the coefficients. | 
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| 177 | // Else it means we still have to run one more loop, and then the | 
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| 178 | // weights are computed | 
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| 179 | // | 
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| 180 | Int_t MMcUnfoldCoeffCalc::PostProcess() | 
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| 181 | { | 
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| 182 | if(((TH2D*)fUnfoldCoeff->GetHistMcE())->GetEntries() > 0  && | 
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| 183 | ((TH2D*)fUnfoldCoeff->GetHistEstE())->GetEntries() > 0) | 
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| 184 | { | 
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| 185 | fUnfoldCoeff->ComputeCoefficients(); | 
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| 186 | return kTRUE; | 
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| 187 | } | 
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| 188 |  | 
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| 189 | if(((TH1D*)fUnfoldCoeff->GetHistAll())->GetEntries() <= 0) | 
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| 190 | { | 
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| 191 | *fLog << err << "Postprocess reached with no histogram computed. Aborting" << endl; | 
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| 192 | return kFALSE; | 
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| 193 | } | 
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| 194 |  | 
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| 195 |  | 
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| 196 | if(fSpectrum) | 
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| 197 | fUnfoldCoeff->ComputeWeights(fSpectrum); | 
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| 198 | else | 
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| 199 | { | 
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| 200 | // default spectrum in case no other one is provided | 
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| 201 | TF1 spectrum("func","pow(x,-1.6)",2.,20000.); | 
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| 202 | fUnfoldCoeff->ComputeWeights(&spectrum); | 
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| 203 | } | 
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| 204 |  | 
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| 205 | return kTRUE; | 
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| 206 | } | 
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