| 1 | /*
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| 2 | - Test des divers calcul de ligne de base pour la couleur 0
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| 3 |                            (la couleur 1 n'est pas traitee)
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| 4 | */
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| 5 | #include "sopnamsp.h"
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| 6 | #include "machdefs.h"
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| 7 | #include <stdlib.h>
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| 8 | #include <math.h>
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| 9 | #include <stdio.h>
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| 10 | #include <string.h>
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| 11 | 
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| 12 | #include "fsvcache.h"
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| 13 | #include "nbmath.h"
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| 14 | #include "fmath.h"
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| 15 | #include "filtccd.h"
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| 16 | #include "fsvst.h"
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| 17 | #include "nbsread.h"
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| 18 | #include "nbgene.h"
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| 19 | 
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| 20 | #include "ntuple.h"
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| 21 | 
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| 22 | void FILL_USER(void);
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| 23 | 
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| 24 | #define N 5
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| 25 | 
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| 26 | float *TimeU,*FluxU,*FluxFlU,*eFluxU,*eFluxFlU,*FluxUnoA,*AmpliU;
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| 27 | int_4 npt_;
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| 28 | 
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| 29 | POutPersist *pos_ = NULL;
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| 30 | NTuple *ntbase = NULL;
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| 31 | 
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| 32 | /*==========================================================================*/
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| 33 | void UINIT(void)
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| 34 | {
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| 35 |  pos_ = new POutPersist("nbsread_base.ppf");
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| 36 | }
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| 37 | 
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| 38 | /*===========================================================================*/
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| 39 | #define NXNT 28
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| 40 | void UINITCCD(void)
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| 41 | {
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| 42 | int_4 n;
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| 43 | n = ( nmesure[0] > 0 ) ? nmesure[0] : 1 ;
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| 44 | TimeU     = (float*) malloc((size_t) n*sizeof(float));
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| 45 | FluxU     = (float*) malloc((size_t) n*sizeof(float));
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| 46 | eFluxU    = (float*) malloc((size_t) n*sizeof(float));
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| 47 | FluxFlU   = (float*) malloc((size_t) n*sizeof(float));
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| 48 | eFluxFlU  = (float*) malloc((size_t) n*sizeof(float));
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| 49 | FluxUnoA  = (float*) malloc((size_t) n*sizeof(float));
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| 50 | AmpliU    = (float*) malloc((size_t) n*sizeof(float));
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| 51 | 
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| 52 | // Create NTuple
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| 53 | char *nament[NXNT] = {
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| 54 |       "et","xref","flr","dm1","dm21","xp","yp","npt"
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| 55 |      ,"mean","sig","sigi"
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| 56 |      ,"meanB","sigB"
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| 57 |      ,"meanS","sigS","rcS"
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| 58 |      ,"meanSs","sigSs","rcSs"
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| 59 |      ,"meanP","rcP"
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| 60 |      ,"meanPs","rcPs"
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| 61 |      ,"u0","t0","tau","a0","npta"
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| 62 | };
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| 63 | if(ntbase == NULL) delete ntbase;
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| 64 | ntbase = new NTuple(NXNT,nament);
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| 65 | 
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| 66 | }
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| 67 | 
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| 68 | /*=========================================================================*/
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| 69 | void UDATCLEAN(int coul)
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| 70 | /* pour tuer une photo selon des criteres utilisateur, mettre date a GRAND2 */
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| 71 | {
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| 72 | int_4 ic = coul-1;
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| 73 | if(nmes[ic]<=0) return;
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| 74 | for(int i=0;i<nmes[ic];i++) {
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| 75 |   if(date[ic][i]<0.)  date[ic][i] = GRAND2;
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| 76 |   if(timeu[ic][i].FgCalib<=0) date[ic][i] = GRAND2;
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| 77 | }
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| 78 | }
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| 79 | 
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| 80 | /*=========================================================================*/
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| 81 | void UEVT(void)
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| 82 | {
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| 83 | int i,n,rc,nptas;
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| 84 | float mean,sigmaI,sigma,most;
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| 85 | float xnt[NXNT];
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| 86 | 
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| 87 | /* association rouge-bleu existante et correcte */
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| 88 | if(staru[0].NumEt <= 0 ) return;
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| 89 | if(staru[0].FluxRef<= 0.) return;
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| 90 | for(i=0;i<NXNT;i++) xnt[i] = -9999.;
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| 91 | 
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| 92 | FILL_USER();
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| 93 | 
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| 94 | if( iet[0]%50 == 0 )
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| 95 |   printf("UEVT: et=[%7d,%7d] pt nmesure=[%5d] npt=[%5d]\n"
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| 96 |         ,iet[0],iet[1],nmesure[0],npt_);
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| 97 | 
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| 98 | /* on remplit le ntuple de selection */
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| 99 | xnt[0]=  iet[0];
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| 100 | xnt[1]=  staru[0].XRef;
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| 101 | xnt[2] = staru[0].FluxRef;
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| 102 | xnt[3] = staru[0].DisMin;
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| 103 | xnt[4] = staru[0].DisM2;
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| 104 | xnt[5] = staru[0].XPos;
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| 105 | xnt[6] = staru[0].YPos;
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| 106 | xnt[7] = npt_;
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| 107 | 
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| 108 | /****************** Filtre Median *******************************/
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| 109 | n = npt_;
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| 110 | rc = FiltMed(FluxU,eFluxU,FluxFlU,eFluxFlU,n);
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| 111 | if(rc<0) for(i=0;i<npt_;i++) {FluxFlU[i]=FluxU[i]; eFluxFlU[i]=eFluxU[i];}
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| 112 | 
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| 113 | /****************** Moyenne non amplifiee *******************************/
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| 114 | n = npt_;
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| 115 | rc = MeanLine(FluxUnoA,eFluxU,&n,2,4.,&mean,&sigma);
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| 116 | if(rc==0) {
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| 117 |   xnt[8] = mean;
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| 118 |   xnt[9] = sigma;
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| 119 | }
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| 120 | 
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| 121 | /*********************** Calcul du sigma interne ***************************/
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| 122 | nptas = 0;
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| 123 | n = npt_;
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| 124 | sigmaI = SigmaInt(TimeU,FluxU,eFluxU,&n,4.);
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| 125 | if(sigmaI>0) {
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| 126 |   xnt[10] = sigmaI;
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| 127 | }
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| 128 | if(sigmaI>0 && mean>0) {
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| 129 |   for(i=0;i<npt_;i++) if(eFluxU[i]>0 && (AmpliU[i]-1.)*mean<sigmaI) nptas++;
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| 130 | }
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| 131 | 
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| 132 | /****************** Calcul de la base sur donnees filtrees ************/
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| 133 | n = npt_; rc=-1;
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| 134 | if(sigmaI>0) rc = BaseLine(FluxFlU,eFluxFlU,&n,4.,sigmaI,&mean,&sigma,&most);
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| 135 | if(rc>=0) {
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| 136 |   xnt[11] = most;
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| 137 |   xnt[12] = sigma;
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| 138 | }
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| 139 | 
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| 140 | rc = BaseLineS(FluxU,eFluxU,npt_,N,&mean,&sigma);
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| 141 | if(rc>0) {
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| 142 |   xnt[13] = mean;
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| 143 |   xnt[14] = sigma;
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| 144 |   xnt[15] = rc;
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| 145 | }
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| 146 | 
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| 147 | rc = BaseLineS(FluxU,eFluxU,npt_,-N,&mean,&sigma);
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| 148 | if(rc>0) {
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| 149 |   xnt[16] = mean;
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| 150 |   xnt[17] = sigma;
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| 151 |   xnt[18] = rc;
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| 152 | }
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| 153 | 
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| 154 | rc = BaseLineP(FluxU,eFluxU,npt_,N,&mean);
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| 155 | if(rc>0) {
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| 156 |   xnt[19] = mean;
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| 157 |   xnt[20] = rc;
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| 158 | }
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| 159 | 
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| 160 | rc = BaseLineP(FluxU,eFluxU,npt_,-N,&mean);
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| 161 | if(rc>0) {
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| 162 |   xnt[21] = mean;
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| 163 |   xnt[22] = rc;
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| 164 | }
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| 165 | 
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| 166 | xnt[23] = mc.U0Sim;
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| 167 | xnt[24] = mc.T0Sim;
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| 168 | xnt[25] = mc.TauSim;
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| 169 | xnt[26] = mc.A0Max;
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| 170 | xnt[27] = nptas;
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| 171 |  
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| 172 | ntbase->Fill(xnt);
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| 173 | 
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| 174 | }
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| 175 | 
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| 176 | /*=========================================================================*/
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| 177 | void UENDCCD(void)
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| 178 | {
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| 179 | free(TimeU); free(FluxU); free(eFluxU); free(FluxUnoA);
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| 180 | free(FluxFlU); free(eFluxFlU); free(AmpliU);
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| 181 | 
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| 182 | if(ntbase->NEntry()>0) pos_->PutObject(*ntbase,"ntbase");
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| 183 | if(ntbase!=NULL) delete ntbase; ntbase = NULL;
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| 184 | }
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| 185 | 
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| 186 | /*=========================================================================*/
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| 187 | void UEND(void)
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| 188 | {
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| 189 |  if(pos_!=NULL) delete pos_; pos_ = NULL;
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| 190 | }
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| 191 | 
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| 192 | /*=========================================================================*/
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| 193 | void FILL_USER(void)
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| 194 | {
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| 195 | int i,j;
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| 196 | double Flux,FluxB,Xi2,ErrFlux;
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| 197 | 
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| 198 | npt_=0;
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| 199 | for(i=0;i<nmesure[0];i++) {
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| 200 |   j = indexu[0][i];
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| 201 |   FluxB   = mesu[0][j].FluxB;
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| 202 |   Flux    = mesu[0][j].Flux;
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| 203 |   ErrFlux = mesu[0][j].ErrFlux;
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| 204 |   Xi2     = mesu[0][j].Xi2;
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| 205 |   if( ErrFlux<0. ) ErrFlux *= -1.;
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| 206 |   if( Xi2<=0. || ErrFlux==0. ) continue;
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| 207 |   TimeU[npt_] = date[0][j];
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| 208 |   FluxUnoA[npt_] = Flux;
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| 209 |   if(mc.montecar > 0) Flux *= ampli[0][j];
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| 210 |   AmpliU[npt_] = ampli[0][j];
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| 211 |   FluxU[npt_] = Flux;
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| 212 |   eFluxU[npt_] = ErrFlux;
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| 213 |   npt_++;
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| 214 | }
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| 215 | 
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| 216 | }
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