[3756] | 1 | #include "machdefs.h"
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| 2 | #include "sopnamsp.h"
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| 3 | #include <iostream>
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| 4 | #include <string>
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| 5 | #include <math.h>
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| 6 |
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| 7 | #include <typeinfo>
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| 8 |
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| 9 | #include "mdish.h"
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| 10 | #include "specpk.h"
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[3792] | 11 | #include "interfconfigs.h"
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| 12 |
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[3756] | 13 | #include "histinit.h"
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| 14 | // #include "fiosinit.h"
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| 15 | // #include "fitsioserver.h"
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| 16 |
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| 17 | #include "randr48.h"
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| 18 |
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| 19 | #include "timing.h"
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| 20 | #include "ctimer.h"
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| 21 |
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| 22 | typedef DR48RandGen RandomGenerator ;
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| 23 |
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| 24 | // ---------------------------------------------------------------------
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| 25 | // Test main program for computing interferometer noise power spectrum
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| 26 | // R. Ansari - Avril 2010
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| 27 | // ---------------------------------------------------------------------
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| 28 |
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| 29 | class PkNoiseCalculator
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| 30 | {
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| 31 | public:
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| 32 | PkNoiseCalculator(Four3DPk& pk3, Four2DResponse& rep,
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| 33 | double s2cut=100., int ngen=1, const char* tit="PkNoise")
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| 34 | : pkn3d(pk3), frep(rep), S2CUT(s2cut), NGEN(ngen), title(tit)
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| 35 | { }
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| 36 | inline void SetS2Cut(double s2cut=100.)
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| 37 | { S2CUT=s2cut; }
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| 38 | HProf Compute()
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| 39 | {
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| 40 | Timer tm(title.c_str());
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| 41 | tm.Nop();
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| 42 | HProf hnd;
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| 43 | cout << "PkNoiseCalculator::Compute() " << title << " NGEN=" << NGEN << " S2CUT=" << S2CUT << endl;
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| 44 | for(int igen=0; igen<NGEN; igen++) {
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| 45 | pkn3d.ComputeNoiseFourierAmp(frep);
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| 46 | if (igen==0) hnd = pkn3d.ComputePk(S2CUT);
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| 47 | else pkn3d.ComputePkCumul(hnd,S2CUT);
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| 48 | }
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| 49 | return hnd;
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| 50 | }
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| 51 |
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| 52 | Four3DPk& pkn3d;
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| 53 | Four2DResponse& frep;
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| 54 | double S2CUT;
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| 55 | int NGEN;
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| 56 | string title;
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| 57 | };
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| 58 |
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[3769] | 59 |
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| 60 |
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| 61 | //-------------------------------------------------------------------------
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| 62 | // ------------------ MAIN PROGRAM ------------------------------
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| 63 | //-------------------------------------------------------------------------
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[3756] | 64 | int main(int narg, const char* arg[])
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| 65 | {
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| 66 | if ((narg>1)&&(strcmp(arg[1],"-h")==0)) {
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| 67 | cout<< " Usage: pknoise [OutPPFName NGen S2Cut Lambda] " << endl;
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| 68 | cout<< " Default: OutPPFName=pknoise.ppf, NGen=1 " << endl;
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| 69 | cout<< " S2CUT=0. , Lambda=0.357 \n" << endl;
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| 70 |
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| 71 | return 1;
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| 72 | }
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| 73 | cout << " ==== pknoise.cc program , test of SpectralShape and MassDist2D classes ==== " << endl;
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| 74 | // make sure SOPHYA modules are initialized
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| 75 | SophyaInit();
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| 76 | // FitsIOServerInit();
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| 77 | InitTim();
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| 78 | //--- decoding command line arguments
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| 79 | string outfile = "pknoise.ppf";
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| 80 | if (narg>1) outfile = arg[1];
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| 81 | if (outfile==".") outfile = "pknoise.ppf";
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| 82 | int NMAX = 1;
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| 83 | if (narg>2) NMAX = atoi(arg[2]);
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| 84 | double SCut=0.;
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| 85 | if (narg>3) SCut = atof(arg[3]);
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| 86 | double LAMBDA=0.357 ; // 21 cm at z=0.7
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| 87 | if (narg>4) LAMBDA = atof(arg[4]);
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| 88 |
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| 89 | //-- end command line arguments
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| 90 |
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| 91 | int rc = 1;
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| 92 | try { // exception handling try bloc at top level
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| 93 | cout << "0/ pknoise.cc: Executing, output file= " << outfile << endl;
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| 94 | POutPersist po(outfile);
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| 95 | cout << " 1.a/ Instanciating object type SpectralShape " << endl;
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| 96 | SpectralShape spec(2);
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| 97 | cout << " 1.b/ Wrinting spectral shape vector (name= Pk) to output PPF " << endl;
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| 98 | Histo hpk = spec.GetPk(1024);
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| 99 | po << PPFNameTag("Pk") << hpk;
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| 100 |
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| 101 | double D = 100.;
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| 102 | double lambda = LAMBDA;
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| 103 | double Dol = D/lambda;
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| 104 | cout << " 2.a/ Instanciating Four2DResponse(1/2/3...) " << endl;
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| 105 | Four2DResponse dishg(1,Dol,Dol);
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| 106 | Four2DResponse dish(2,Dol,Dol);
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| 107 | Four2DResponse dish2(2,Dol*2.,Dol*2.);
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| 108 | Four2DResponse dishsq(3,Dol,Dol/5.);
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| 109 | cout << " 2.b/ Writing Four2DResponse Histo2D to output ppf " << endl;
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| 110 | Histo2D hdg = dishg.GetResponse();
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| 111 | Histo2D hd = dish.GetResponse();
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| 112 | Histo2D hd2 = dish2.GetResponse();
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| 113 | Histo2D hdsq = dishsq.GetResponse();
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| 114 | po << PPFNameTag("dishg") << hdg;
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| 115 | po << PPFNameTag("dish") << hd;
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| 116 | po << PPFNameTag("dish2") << hd2;
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| 117 | po << PPFNameTag("dishsq") << hdsq;
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| 118 |
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| 119 | cout << " 2.c/ Creating MultiDish Filled Array " << endl;
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| 120 | double Ddish = 5.;
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| 121 | double Ddish2 = 7.5;
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| 122 | double Eta=0.95;
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| 123 | int cnt=0;
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[3769] | 124 | vector<Dish> vdplein = CreateFilledSqConfig(20, Ddish, Eta);
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| 125 | vector<Dish> vdpl64 = CreateFilledSqConfig(8, Ddish, Eta);
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[3756] | 126 |
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[3769] | 127 | vector<Dish> vdsparse = CreateConfigA(Ddish, Eta);
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| 128 | vector<Dish> vdsparseD7 = CreateConfigA(Ddish2, Eta);
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| 129 | // vector<Dish> vdsparseB = CreateConfigB(Ddish, Eta);
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| 130 | vector<Dish> vdsparseB = CreateConfigB(Ddish, Eta);
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| 131 | vector<Dish> vdsparseC = CreateConfigC(Ddish, Eta);
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[3756] | 132 |
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| 133 |
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| 134 | double cylW=12.; // Largeur des cylindres
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| 135 | double cylRL=0.5; // Longeur des elements de reception le long du cylindre
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[3769] | 136 | double etaW=0.95; // Efficacite de couverture en largeur
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| 137 | double etaRL=0.9; // Efficacite de couverture le long du cylindre
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| 138 | vector<Dish> vcylplein = CreateFilledCylConfig(8, 192, cylW, cylRL, etaW, etaRL, true);
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| 139 | vector<Dish> vcylplP = CreateFilledCylConfig(8, 192, cylW, cylRL, etaW, etaRL, false);
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| 140 |
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| 141 | cylW=10.;
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| 142 | cylRL=0.5;
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| 143 | vector<Dish> v3cyl = CreateFilledCylConfig(3, 128, cylW, cylRL, etaW, etaRL, true);
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| 144 | vector<Dish> v3cylP = CreateFilledCylConfig(3, 128, cylW, cylRL, etaW, etaRL, false);
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| 145 | cylW=25.;
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| 146 | cylRL=0.5;
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| 147 | etaW=0.3;
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| 148 | etaRL=0.9;
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| 149 | vector<Dish> v2cyl = CreateFilledCylConfig(2, 32, cylW, cylRL, etaW, etaRL, true);
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| 150 | vector<Dish> v2cylP = CreateFilledCylConfig(2, 32, cylW, cylRL, etaW, etaRL, false);
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| 151 |
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[3756] | 152 | double LMAX = D;
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| 153 | bool fgnoauto = true;
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[3769] | 154 | int NRX=100;
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| 155 | int NRY=100;
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[3756] | 156 |
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| 157 | MultiDish mdfill(lambda, LMAX, vdplein, fgnoauto);
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| 158 | mdfill.SetRespHisNBins(NRX,NRY);
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| 159 | Histo2D hrfill = mdfill.GetResponse();
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| 160 | PrtTim("Apres mdfill.GetResponse()");
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| 161 |
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[3769] | 162 | MultiDish mdfill64(lambda, LMAX, vdpl64, fgnoauto);
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| 163 | mdfill64.SetRespHisNBins(NRX,NRY);
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| 164 | {
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| 165 | Histo2D hpos=mdfill64.PosDist(10,10,10.*Ddish);
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| 166 | po << PPFNameTag("posf64") << hpos;
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| 167 | }
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| 168 | Histo2D hrf64 = mdfill64.GetResponse();
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| 169 | PrtTim("Apres mdfill64.GetResponse()");
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| 170 |
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[3756] | 171 | MultiDish mdsparse(lambda, LMAX, vdsparse, fgnoauto);
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[3769] | 172 | mdsparse.SetThetaPhiRange(M_PI/6.,12, M_PI/6., 12);
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[3756] | 173 | mdsparse.SetRespHisNBins(NRX,NRY);
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[3769] | 174 | {
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| 175 | Histo2D hpos=mdsparse.PosDist(22,22,22.*Ddish);;
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| 176 | po << PPFNameTag("posspA") << hpos;
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| 177 | }
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[3756] | 178 | Histo2D hrsp = mdsparse.GetResponse();
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| 179 | PrtTim("Apres mdsparse.GetResponse()");
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| 180 |
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[3769] | 181 | /*
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[3756] | 182 | MultiDish mdsparseD7(lambda, LMAX, vdsparseD7, fgnoauto);
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| 183 | mdsparseD7.SetThetaPhiRange(M_PI/4.,16, M_PI/4., 16);
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| 184 | mdsparseD7.SetRespHisNBins(NRX,NRY);
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| 185 | Histo2D hrspd7 = mdsparseD7.GetResponse();
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| 186 | PrtTim("Apres mdsparseD7.GetResponse()");
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[3769] | 187 | */
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| 188 | MultiDish mdsparseB(lambda, LMAX, vdsparseB, fgnoauto);
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| 189 | mdsparseB.SetThetaPhiRange(M_PI/6.,12, M_PI/6., 12);
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| 190 | mdsparseB.SetRespHisNBins(NRX,NRY);
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| 191 | {
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| 192 | Histo2D hpos=mdsparseB.PosDist(15,15,15.*Ddish);
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| 193 | po << PPFNameTag("posspB") << hpos;
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| 194 | }
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| 195 | Histo2D hrspB = mdsparseB.GetResponse();
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| 196 | PrtTim("Apres mdsparseB.GetResponse()");
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| 197 |
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| 198 | MultiDish mdsparseC(lambda, LMAX, vdsparseC, fgnoauto);
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| 199 | mdsparseC.SetThetaPhiRange(M_PI/6.,12, M_PI/6., 12);
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| 200 | mdsparseC.SetRespHisNBins(NRX,NRY);
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| 201 | {
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| 202 | Histo2D hpos=mdsparseC.PosDist(20,20,20.*Ddish);
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| 203 | po << PPFNameTag("posspC") << hpos;
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| 204 | }
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| 205 | Histo2D hrspC = mdsparseC.GetResponse();
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| 206 | PrtTim("Apres mdsparseC.GetResponse()");
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| 207 |
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| 208 | MultiDish mdsparseBfp(lambda, LMAX, vdsparseB, fgnoauto);
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| 209 | mdsparseBfp.SetRespHisNBins(NRX,NRY);
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| 210 | Histo2D hrspBfp = mdsparseBfp.GetResponse();
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| 211 | PrtTim("Apres mdsparseBfp.GetResponse()");
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| 212 |
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| 213 |
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[3756] | 214 | MultiDish mcylfill(lambda, LMAX, vcylplein, fgnoauto);
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| 215 | mcylfill.SetRespHisNBins(NRX,NRY);
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| 216 | Histo2D hfcyl = mcylfill.GetResponse();
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| 217 | PrtTim("Apres mcylfill.GetResponse()");
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| 218 | MultiDish mcylfillP(lambda, LMAX, vcylplP, fgnoauto);
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| 219 | mcylfillP.SetRespHisNBins(NRX,NRY);
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| 220 | Histo2D hfcylP = mcylfillP.GetResponse();
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[3769] | 221 | PrtTim("Apres mcylfillP.GetResponse()");
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[3756] | 222 |
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[3769] | 223 | MultiDish md3cyl(lambda, LMAX, v3cyl, fgnoauto);
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| 224 | md3cyl.SetRespHisNBins(NRX,NRY);
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| 225 | Histo2D h3cyl = md3cyl.GetResponse();
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| 226 | PrtTim("Apres md3cyl.GetResponse()");
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| 227 | MultiDish md3cylP(lambda, LMAX, v3cylP, fgnoauto);
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| 228 | md3cylP.SetRespHisNBins(NRX,NRY);
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| 229 | Histo2D h3cylP = md3cylP.GetResponse();
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| 230 | PrtTim("Apres md3cylP.GetResponse()");
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| 231 |
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[3756] | 232 | MultiDish md2cyl(lambda, LMAX, v2cyl, fgnoauto);
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| 233 | md2cyl.SetRespHisNBins(NRX,NRY);
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| 234 | Histo2D h2cyl = md2cyl.GetResponse();
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[3769] | 235 | PrtTim("Apres md2cyl.GetResponse()");
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[3756] | 236 | MultiDish md2cylP(lambda, LMAX, v2cylP, fgnoauto);
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| 237 | md2cylP.SetRespHisNBins(NRX,NRY);
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| 238 | Histo2D h2cylP = md2cylP.GetResponse();
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[3769] | 239 | PrtTim("Apres md2cylP.GetResponse()");
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[3756] | 240 |
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| 241 | po << PPFNameTag("mfill") << hrfill;
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[3769] | 242 | po << PPFNameTag("mfill64") << hrf64;
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[3756] | 243 | po << PPFNameTag("mspars") << hrsp;
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[3769] | 244 | // po << PPFNameTag("msparsd7") << hrspd7;
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| 245 | po << PPFNameTag("msparsB") << hrspB;
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| 246 | po << PPFNameTag("msparsC") << hrspC;
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| 247 | po << PPFNameTag("msparsBfp") << hrspBfp;
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[3756] | 248 | po << PPFNameTag("mcylf") << hfcyl;
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[3769] | 249 | po << PPFNameTag("m3cyl") << h3cyl;
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[3756] | 250 | po << PPFNameTag("m2cyl") << h2cyl;
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| 251 | po << PPFNameTag("mcylfP") << hfcylP;
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[3769] | 252 | po << PPFNameTag("m3cylP") << h3cylP;
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[3756] | 253 | po << PPFNameTag("m2cylP") << h2cylP;
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| 254 |
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| 255 | PrtTim("Done computing multi-dish response");
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| 256 |
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| 257 |
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| 258 | Four2DRespTable mdf(hrfill, Dol);
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[3769] | 259 | Four2DRespTable mdf64(hrf64, Dol);
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[3756] | 260 | Four2DRespTable mds(hrsp, Dol);
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[3769] | 261 | // Four2DRespTable mdsfp(hrspfp, Dol);
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| 262 | // Four2DRespTable mdsd7(hrspd7, Dol);
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| 263 | Four2DRespTable mdsB(hrspB, Dol);
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| 264 | Four2DRespTable mdsC(hrspC, Dol);
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| 265 | Four2DRespTable mdsBfp(hrspBfp, Dol);
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[3756] | 266 |
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| 267 | Four2DRespTable mcylf(hfcyl, Dol);
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[3769] | 268 | Four2DRespTable m3cyl(h3cyl, Dol);
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[3756] | 269 | Four2DRespTable m2cyl(h2cyl, Dol);
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| 270 | Four2DRespTable mcylfP(hfcylP, Dol);
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[3769] | 271 | Four2DRespTable m3cylP(h3cylP, Dol);
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[3756] | 272 | Four2DRespTable m2cylP(h2cylP, Dol);
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| 273 |
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| 274 |
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| 275 | cout << " 3.a/ Instanciating object type Four3DPk " << endl;
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| 276 | RandomGenerator rg;
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| 277 | Four3DPk m3d(rg);
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| 278 | m3d.SetCellSize(2.*DeuxPI, 2.*DeuxPI, 2.*DeuxPI);
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| 279 | cout << " 3.b/ call ComputeFourierAmp() NGEN=" << NMAX << endl;
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| 280 | HProf hrpk;
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| 281 | for(int igen=0; igen<NMAX; igen++) {
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| 282 | m3d.ComputeFourierAmp(spec);
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| 283 | if (igen==0) hrpk = m3d.ComputePk();
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| 284 | else m3d.ComputePkCumul(hrpk);
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| 285 | }
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| 286 | PrtTim("md.ComputeFourierAmp() done");
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| 287 | po << PPFNameTag("recPk") << hrpk;
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| 288 |
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| 289 | cout << " 4/ Computing Noise P(k) using PkNoiseCalculator ..." << endl;
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[3769] | 290 | #define NCONFIG 14
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| 291 | Four2DResponse* f2rep[NCONFIG]={&dish, &dish2, &mdf, &mdf64, &mds, &mdsB, &mdsC, &mdsBfp,
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| 292 | &mcylf, &mcylfP, &m3cyl, &m3cylP, &m2cyl, &m2cylP};
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| 293 | const char* tits[NCONFIG]={"Dish100m", "Dish200m","F20x20Dish5m","F8x8Dish5m",
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| 294 | "S68Dish5m","S72Dish5m","S129CDish5m","S72BDish5mFP",
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| 295 | "F8Cyl","F8CylP","F3Cyl","F3CylP","BiCyl","BiCylP"};
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| 296 | const char* tags[NCONFIG]={"noiseD", "noiseD2","noisemdf","noisemdf64","noisemds",
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| 297 | "noisemdsB","noisemdsC","noisemdsBfp",
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| 298 | "noisefcyl","noisefcylP","noise3cyl","noise3cylP", "noise2cyl","noise2cylP"};
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[3756] | 299 | vector<int> nbdishes;
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| 300 | nbdishes.push_back(1);
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| 301 | nbdishes.push_back(1);
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| 302 | nbdishes.push_back(vdplein.size());
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[3769] | 303 | nbdishes.push_back(vdpl64.size());
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[3756] | 304 | nbdishes.push_back(vdsparse.size());
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[3769] | 305 | // nbdishes.push_back(vdsparse.size());
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| 306 | nbdishes.push_back(vdsparseB.size());
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| 307 | nbdishes.push_back(vdsparseC.size());
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| 308 | nbdishes.push_back(vdsparseB.size());
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[3756] | 309 | nbdishes.push_back(vcylplein.size());
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| 310 | nbdishes.push_back(vcylplP.size());
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[3769] | 311 | nbdishes.push_back(v3cyl.size());
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| 312 | nbdishes.push_back(v3cylP.size());
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[3756] | 313 | nbdishes.push_back(v2cyl.size());
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| 314 | nbdishes.push_back(v2cylP.size());
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| 315 |
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| 316 | for(int lc=0; lc<NCONFIG; lc++) {
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| 317 | PkNoiseCalculator pkn(m3d, *(f2rep[lc]), SCut/(double)nbdishes[lc], NMAX, tits[lc]);
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| 318 | HProf hpn = pkn.Compute();
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| 319 | po << PPFNameTag(tags[lc]) << hpn;
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| 320 | }
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| 321 | rc = 0;
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| 322 | } // End of try bloc
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| 323 | catch (PThrowable & exc) { // catching SOPHYA exceptions
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| 324 | cerr << " pknoise.cc: Catched Exception (PThrowable)" << (string)typeid(exc).name()
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| 325 | << "\n...exc.Msg= " << exc.Msg() << endl;
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| 326 | rc = 99;
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| 327 | }
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| 328 | catch (std::exception & e) { // catching standard C++ exceptions
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| 329 | cerr << " pknoise.cc: Catched std::exception " << " - what()= " << e.what() << endl;
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| 330 | rc = 98;
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| 331 | }
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| 332 | catch (...) { // catching other exceptions
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| 333 | cerr << " pknoise.cc: some other exception (...) was caught ! " << endl;
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| 334 | rc = 97;
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| 335 | }
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| 336 | PrtTim("End-pknoise");
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| 337 | cout << " ==== End of pknoise.cc program Rc= " << rc << endl;
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| 338 | return rc;
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| 339 | }
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| 340 |
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| 341 |
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