| 1 | // Utilisation de SOPHYA pour faciliter les tests ...
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| 2 | #include "sopnamsp.h"
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| 3 | #include "machdefs.h"
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| 4 | 
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| 5 | /* ------------------------------------------------------------------ 
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| 6 |    Programme de calcul de spectre moyenne a partir des fichiers fits  
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| 7 |    d'acquisition de BAORadio - donnees brutes ou fft 
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| 8 |    R. Ansari, C. Magneville
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| 9 |    V1 : Juillet 2008  , V2 : Avril 2009
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| 10 |    ------------------------------------------------------------------ */
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| 11 | 
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| 12 | // include standard c/c++
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| 13 | #include <math.h>
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| 14 | #include <stdio.h>
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| 15 | 
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| 16 | #include <iostream>
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| 17 | #include <string>
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| 18 | 
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| 19 | #include "pexceptions.h"
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| 20 | #include "tvector.h"
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| 21 | #include "fioarr.h"
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| 22 | #include "tarrinit.h" 
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| 23 | #include "timestamp.h"
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| 24 | #include "fftpserver.h"
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| 25 | #include "fftwserver.h"
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| 26 | 
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| 27 | #include "FFTW/fftw3.h"
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| 28 | 
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| 29 | // include sophya mesure ressource CPU/memoire ...
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| 30 | #include "resusage.h"
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| 31 | #include "ctimer.h"
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| 32 | #include "timing.h"
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| 33 | 
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| 34 | 
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| 35 | // include mini-fits lib , et structure paquet BAORadio
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| 36 | #include "minifits.h"
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| 37 | #include "brpaqu.h"
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| 38 | 
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| 39 | 
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| 40 | // Definition de type pour les tableaux de float 
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| 41 | #define DTF  r_4 
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| 42 | 
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| 43 | //---- Declaration des fonctions de calcul ----
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| 44 | // Fonction d'analyse 1ere version, pas d'entete ds le fichier, 1 voie
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| 45 | int ana_data_0(vector<string>& infiles, string& outfile);
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| 46 | // Fonction d'analyse 2eme version , 1 voie / paquet
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| 47 | int ana_data_1(vector<string>& infiles, string& oufile, bool fgnotrl=false);
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| 48 | // Fonction d'analyse 2eme version , 2 voies / paquet
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| 49 | int ana_data_2(vector<string>& infiles, string& oufile, bool fgnotrl=false);
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| 50 | // Fonction d'analyse 2eme version , 2 voies / paquet
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| 51 | int ana_data_fft_2(vector<string>& infiles, string& oufile, bool fgnotrl=false);
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| 52 | 
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| 53 | //----------------------------------------------------
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| 54 | //----------------------------------------------------
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| 55 | int main(int narg, char* arg[])
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| 56 | {
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| 57 |   if (narg < 4) {
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| 58 |     cout << " ---Mean spectrum computation from BAORadio FITS files" << endl;
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| 59 |     cout << " Usage: mfits2spec ACT OutPPF file1 [file2 file3 ...] " << endl;
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| 60 |     cout << "  Or :  mfits2spec ACT OutPPF -infits DirName Imin Imax " << endl;
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| 61 |     cout << " ACT=-0,-1,-2,-fft2 , -1nt -2nt -fft2nt \n" 
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| 62 |          << "   -0: Nancay-July2008 \n" 
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| 63 |          << "   -1,-2 :  Raw data  1 ou 2 channels / packet(or frame) \n" 
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| 64 |          << "   -fft2 :  FFT data 2 channels / packet \n"
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| 65 |          << "   nt : (-1nt -2nt -fft2nt) fits files without frame trailer " << endl;
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| 66 |     cout << " OutPPF : Output PPF file name " << endl;  
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| 67 |     cout << " file1,file2 ... : Input FITS files " << endl;  
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| 68 |     cout << " -infiles DirName Imin Imax : Input fits directory and sequence numbers \n" 
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| 69 |          << "    FileNames=DirName/signalII.fits Imin<=II<=Imax " << endl;  
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| 70 |     return 1;
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| 71 |   }
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| 72 | 
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| 73 |   TArrayInitiator  _inia;
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| 74 | 
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| 75 |   int rc = 0;
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| 76 |   try {
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| 77 |     string act = arg[1];
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| 78 |     string outppf = arg[2];
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| 79 |     vector<string> infiles;
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| 80 |     if (strcmp(arg[3],"-infits")==0) {
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| 81 |       if (narg<7)  { 
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| 82 |         cout << " mfits2spec/Error arguments - type mfits2spec for help" << endl;
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| 83 |         return 2;
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| 84 |       }
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| 85 |       char nbuff[1024];
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| 86 |       char* dirname = arg[4]; 
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| 87 |       int imin = atoi(arg[5]);
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| 88 |       int imax = atoi(arg[6]);
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| 89 |       for(int ii=imin; ii<=imax; ii++) {
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| 90 |         sprintf(nbuff,"%s/signal%d.fits",dirname,ii);
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| 91 |         infiles.push_back(nbuff);
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| 92 |       }
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| 93 |     }
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| 94 |     else // Liste de noms de fichiers fournis directement 
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| 95 |       for(int i=3; i<narg; i++) infiles.push_back(arg[i]);
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| 96 | 
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| 97 |     cout << " ---------- mfits2spec.cc Start - ACT= " << act << " ------------- " << endl;
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| 98 |     ResourceUsage resu;
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| 99 |     bool fgnotrl=false;   // fichier fits avec Trailer de frame (> mai 2009)
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| 100 |     if ((act=="-1nt")||(act=="-2nt")||(act=="-fft2nt")) fgnotrl=true;  // fichier fits SANS trailer 
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| 101 | 
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| 102 |     if (act == "-0") ana_data_0(infiles, outppf);
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| 103 |     else if ((act == "-1")||(act=="-1nt")) ana_data_1(infiles, outppf, fgnotrl);
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| 104 |     else if ((act == "-2")||(act=="-2nt")) ana_data_2(infiles, outppf, fgnotrl);
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| 105 |     else if ((act == "-fft2")||(act=="-fft2nt")) ana_data_fft_2(infiles, outppf, fgnotrl);
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| 106 |     else cout << " mfits2spec.cc / Bad argument ACT=" << act << " -> exit" << endl;
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| 107 |     cout << resu ; 
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| 108 |   }
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| 109 |   catch (MiniFITSException& exc) {
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| 110 |     cerr << " mfits2spec.cc catched MiniFITSException " << exc.Msg() << endl;
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| 111 |     rc = 77;
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| 112 |   }  
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| 113 |   catch (std::exception& sex) {
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| 114 |     cerr << "\n mfits2spec.cc std::exception :" 
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| 115 |          << (string)typeid(sex).name() << "\n msg= " 
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| 116 |          << sex.what() << endl;
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| 117 |     rc = 78;
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| 118 |   }
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| 119 |   catch (...) {
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| 120 |     cerr << " mfits2spec.cc catched unknown (...) exception  " << endl; 
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| 121 |     rc = 79; 
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| 122 |   } 
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| 123 | 
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| 124 |   cout << ">>>> mfits2spec.cc ------- FIN ----------- RC=" << rc << endl;
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| 125 |   return rc;
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| 126 | 
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| 127 | }
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| 128 | 
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| 129 | inline DTF Zmod2(complex<DTF> z) 
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| 130 | { return (z.real()*z.real()+z.imag()*z.imag()); }
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| 131 | 
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| 132 | /*--Nouvelle-Fonction--*/
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| 133 | int ana_data_0(vector<string>& infiles, string& outfile)
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| 134 | // Calcul spectre moyen 1 voie, donnees brutes, Donnees Juillet 2008 
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| 135 | {
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| 136 |   TVector<float> spectre;
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| 137 |   sa_size_t nzm = 0;   // Nb de spectres moyennes
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| 138 |   for(int ifile=0; ifile<infiles.size(); ifile++) {
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| 139 |     string ffname = infiles[ifile];
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| 140 | // -------------- Lecture de bytes      
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| 141 |     cout << ifile <<"-Ouverture/lecture fichier " << ffname << endl;
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| 142 |     MiniFITSFile mff(ffname, MF_Read);
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| 143 |     cout << "... Type=" << mff.DataTypeToString() << " NAxis1=" << mff.NAxis1() 
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| 144 |          << " NAxis2=" << mff.NAxis2() << endl;
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| 145 |     if (mff.DataType() != MF_Byte) {
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| 146 |       cout << " PB : DataType!=MF_Byte --> skipping " << endl;
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| 147 |     }
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| 148 |     size_t sx = mff.NAxis1(); 
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| 149 |     size_t sy = mff.NAxis2();
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| 150 | 
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| 151 |     Byte* data = new Byte[sx];
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| 152 |     TVector<DTF> vx(sx);
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| 153 |     TVector< complex<DTF> > cfour;
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| 154 |     FFTPackServer ffts;
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| 155 |       
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| 156 |     for(int j=0; j<sy; j++) {
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| 157 |       mff.ReadB(data, sx, j*sx);
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| 158 |       // On convertit en float 
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| 159 |       for(sa_size_t ix=0; ix<vx.Size(); ix++)  vx(ix) = (DTF)(data[ix]);
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| 160 |       // On fait le FFT
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| 161 |       ffts.FFTForward(vx, cfour);
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| 162 |       if (!spectre.IsAllocated())  spectre.SetSize(cfour.Size());
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| 163 |         
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| 164 |       // On cumule les modules carres
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| 165 |       for(sa_size_t jf=1; jf<spectre.Size(); jf++) 
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| 166 |         spectre(jf) += Zmod2(cfour(jf)); 
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| 167 |       nzm++;
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| 168 | 
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| 169 | //      cout << " j=" << j << " data[0...3]=" << (int)data[0] << " , " 
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| 170 | //           << (int)data[1] << " , " <<  (int)data[2] << endl;
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| 171 |       }
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| 172 |     cout << "---- FIN lecture " << ffname << endl;      
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| 173 |     delete[] data;
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| 174 |   }   
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| 175 |   cout << "---- Ecriture spectre moyenne ds " << outfile << endl;      
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| 176 |   spectre /= (DTF)(nzm);
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| 177 |   POutPersist po(outfile);
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| 178 |   po << spectre;
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| 179 |   return 0;
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| 180 | }
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| 181 | 
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| 182 | /*--Nouvelle-Fonction--*/
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| 183 | int ana_data_1(vector<string>& infiles, string& outfile, bool fgnotrl)
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| 184 | // Calcul spectre moyen 1 voie, donnees brutes  
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| 185 | {
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| 186 |   TVector<float> spectre;
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| 187 |   float freq0 = 0;  
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| 188 |   int paqsz = 0;
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| 189 |   int nfileok=0;
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| 190 |   sa_size_t nzm = 0;   // Nb de spectres moyennes
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| 191 |   Byte* data = NULL;
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| 192 |   FFTPackServer ffts;
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| 193 | 
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| 194 |   Timer tm("ana_data_1");
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| 195 |   size_t totnbytesrd = 0;
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| 196 | 
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| 197 |   for(int ifile=0; ifile<infiles.size(); ifile++) {
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| 198 |     string ffname = infiles[ifile];
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| 199 | // -------------- Lecture de bytes      
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| 200 |     cout << "ana_data_1[" << ifile <<"]Ouverture/lecture fichier " << ffname << endl;
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| 201 |     MiniFITSFile mff(ffname, MF_Read);
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| 202 |     cout << "... Type=" << mff.DataTypeToString() << " NAxis1=" << mff.NAxis1() 
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| 203 |          << " NAxis2=" << mff.NAxis2() << endl;
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| 204 |     if (mff.DataType() != MF_Byte) {
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| 205 |       cout << " PB : DataType!=MF_Byte --> skipping " << endl;
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| 206 |       continue;
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| 207 |     }
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| 208 | // Les fichier FITS contiennent l'entet (24 bytes), mais pas le trailer (16 bytes) si fgnotrl=true
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| 209 |     int incpaqsz=0;
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| 210 |     if (fgnotrl) {
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| 211 |       incpaqsz=16;
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| 212 |       cout << " Warning : FITS files without frame trailers ..." << endl;
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| 213 |     }
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| 214 |     if (paqsz == 0)  {  // premier passage, on fixe la taille de paquet et on alloue le buffer
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| 215 |       paqsz = mff.NAxis1()+incpaqsz;
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| 216 |       data = new Byte[paqsz];
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| 217 |       for(int ib=0; ib<paqsz; ib++) data[ib]=0;
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| 218 |     }
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| 219 |     else {
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| 220 |       if (paqsz != mff.NAxis1()+incpaqsz) {
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| 221 |       cout << " PB : paqsz=" << paqsz << " != mff.NAxis1()+" << incpaqsz << " --> skipping " << endl;
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| 222 |       continue;
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| 223 |       }
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| 224 |     }
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| 225 |     size_t sx = mff.NAxis1(); 
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| 226 |     size_t sy = mff.NAxis2();
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| 227 |     BRPaquet paq(NULL, data, paqsz);
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| 228 |     TVector<DTF> vx(paq.DataSize());
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| 229 |     TVector< complex<DTF> > cfour;
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| 230 |       
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| 231 |     for(int j=0; j<sy; j++) {
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| 232 |       mff.ReadB(data, sx, j*sx);
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| 233 |       // On convertit en float 
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| 234 |       for(sa_size_t ix=0; ix<vx.Size(); ix++)  vx(ix) = (DTF)(paq.Data1()[ix])-127.5;
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| 235 |       // On fait le FFT
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| 236 |       ffts.FFTForward(vx, cfour);
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| 237 |       if (!spectre.IsAllocated())  spectre.SetSize(cfour.Size());
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| 238 |         
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| 239 |       // On cumule les modules carres  - en sautant la frequence zero 
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| 240 |       for(sa_size_t jf=1; jf<spectre.Size(); jf++) 
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| 241 |         spectre(jf) += Zmod2(cfour(jf)); 
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| 242 |       nzm++;  freq0 += cfour(0).real();
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| 243 |       }
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| 244 |     nfileok++;   
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| 245 |     size_t nbytesrd = sx*sy;
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| 246 |     totnbytesrd += nbytesrd;
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| 247 |     tm.Split();
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| 248 |     cout << "---- FIN lecture " << ffname << " NFileOK=" << nfileok << endl; 
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| 249 |     cout << "  TotalDiskRead= " << totnbytesrd/(1024*1024) << " MBytes Disk-Read rate= " 
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| 250 |          << (double)(nbytesrd)/(1024.*1024.)/tm.PartialCPUTime() << " MB/s" << endl;    
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| 251 |   }   
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| 252 |   if (data) delete[] data;
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| 253 |   if (nzm <= 0) {
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| 254 |     cout << " ana_data_1/ERROR : nzm=" << nzm << " spectres moyennes !" << endl;
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| 255 |     return nzm;
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| 256 |   } 
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| 257 |   cout << "---- Ecriture spectre moyenne ds " << outfile  << endl;      
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| 258 |   spectre /= (DTF)(nzm);
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| 259 |   spectre.Info().Comment() = " SpectreMoyenne (Moyenne module^2) ";
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| 260 |   spectre.Info()["NMOY"] = nzm; // Nombre de spectres moyennes
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| 261 |   spectre.Info()["Freq0"] = freq0;
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| 262 |   POutPersist po(outfile);
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| 263 |   po << PPFNameTag("specV1") << spectre;
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| 264 |   return nfileok;
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| 265 | }
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| 266 | 
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| 267 | /*--Nouvelle-Fonction--*/
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| 268 | int ana_data_2(vector<string>& infiles, string& outfile, bool fgnotrl)
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| 269 | // Calcul spectres moyens 2 voies, donnees brutes  
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| 270 | {
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| 271 |   TVector<float> specV1, specV2;
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| 272 |   TVector< complex<float> > cxspecV12;
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| 273 |   float freq0v1 = 0;  
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| 274 |   float freq0v2 = 0;  
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| 275 |   int paqsz = 0;
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| 276 |   int nfileok=0;
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| 277 |   sa_size_t nzm = 0;   // Nb de spectres moyennes
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| 278 |   Byte* data = NULL;
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| 279 |   FFTPackServer ffts;
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| 280 | 
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| 281 |   Timer tm("ana_data_2");
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| 282 |   size_t totnbytesrd = 0;
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| 283 | 
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| 284 |   for(int ifile=0; ifile<infiles.size(); ifile++) {
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| 285 |     string ffname = infiles[ifile];
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| 286 | // -------------- Lecture de bytes      
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| 287 |     cout << "ana_data_2[" << ifile <<"]Ouverture/lecture fichier " << ffname << endl;
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| 288 |     MiniFITSFile mff(ffname, MF_Read);
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| 289 |     cout << "... Type=" << mff.DataTypeToString() << " NAxis1=" << mff.NAxis1() 
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| 290 |          << " NAxis2=" << mff.NAxis2() << endl;
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| 291 |     if (mff.DataType() != MF_Byte) {
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| 292 |       cout << " PB : DataType!=MF_Byte --> skipping " << endl;
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| 293 |       continue;
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| 294 |     }
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| 295 | // Les fichier FITS contiennent l'entet (24 bytes), mais pas le trailer (16 bytes) si fgnotrl=true
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| 296 |     int incpaqsz=0;
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| 297 |     if (fgnotrl) {
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| 298 |       incpaqsz=16;
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| 299 |       cout << " Warning : FITS files without frame trailers ..." << endl;
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| 300 |     }
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| 301 |     if (paqsz == 0)  {  // premier passage, on fixe la taille de paquet et on alloue le buffer
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| 302 |       paqsz = mff.NAxis1()+incpaqsz;
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| 303 |       cout << " ana_data_2/ Allocating data , PaqSz=" << paqsz << endl;
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| 304 |       data = new Byte[paqsz];
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| 305 |       for(int ib=0; ib<paqsz; ib++) data[ib]=0;
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| 306 |     }
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| 307 |     else {
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| 308 |       if (paqsz != mff.NAxis1()+incpaqsz) {
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| 309 |       cout << " PB : paqsz=" << paqsz << " != mff.NAxis1()+" << incpaqsz << " --> skipping " << endl;
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| 310 |       continue;
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| 311 |       }
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| 312 |     }
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| 313 |     size_t sx = mff.NAxis1(); 
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| 314 |     size_t sy = mff.NAxis2();
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| 315 |     BRPaquet paq(NULL, data, paqsz);
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| 316 |     TVector<DTF> vx1(paq.DataSize()/2);
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| 317 |     TVector<DTF> vx2(paq.DataSize()/2);
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| 318 |     TVector< complex<DTF> > cfour1,cfour2;
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| 319 |       
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| 320 |     for(int j=0; j<sy; j++) {
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| 321 |       mff.ReadB(data, sx, j*sx);
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| 322 |      // if (j%50 == 0) cout << " *DBG* mff.ReadB() , j=" << j << endl;
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| 323 |      // On convertit en float 
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| 324 |       for(sa_size_t ix=0; ix<vx1.Size(); ix++)  vx1(ix) = (DTF)(paq.Data1()[ix])-127.5;
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| 325 |       for(sa_size_t ix=0; ix<vx2.Size(); ix++)  vx2(ix) = (DTF)(paq.Data2()[ix])-127.5;
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| 326 |       // On fait le FFT
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| 327 |       ffts.FFTForward(vx1, cfour1);
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| 328 |       ffts.FFTForward(vx2, cfour2);
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| 329 |       if (!specV1.IsAllocated())  specV1.SetSize(cfour1.Size());
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| 330 |       if (!specV2.IsAllocated())  specV2.SetSize(cfour2.Size());
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| 331 |       if (!cxspecV12.IsAllocated())  cxspecV12.SetSize(cfour1.Size());
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| 332 |         
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| 333 |       // On cumule les modules carres  - en sautant la frequence zero 
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| 334 |       for(sa_size_t jf=1; jf<specV1.Size(); jf++) {
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| 335 |         specV1(jf) += Zmod2(cfour1(jf)); 
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| 336 |         specV2(jf) += Zmod2(cfour2(jf)); 
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| 337 |         cxspecV12(jf) += cfour1(jf)*cfour2(jf);
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| 338 |       }
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| 339 |       nzm++;  freq0v1 += cfour1(0).real();  freq0v2 += cfour2(0).real(); 
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| 340 |       }
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| 341 |     nfileok++;
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| 342 |     size_t nbytesrd = sx*sy;
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| 343 |     totnbytesrd += nbytesrd;
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| 344 |     tm.Split();
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| 345 |     cout << "---- FIN lecture " << ffname << " NFileOK=" << nfileok << endl; 
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| 346 |     cout << "  TotalDiskRead= " << totnbytesrd/(1024*1024) << " MBytes Disk-Read rate= " 
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| 347 |          << (double)(nbytesrd)/(1024.*1024.)/tm.PartialCPUTime() << " MB/s" << endl;    
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| 348 |   }  
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| 349 |   if (data) delete[] data;
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| 350 |   if (nzm <= 0) {
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| 351 |     cout << " ana_data_2/ERROR : nzm=" << nzm << " spectres moyennes !" << endl;
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| 352 |     return nzm;
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| 353 |   } 
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| 354 |   cout << "---- Ecriture spectre moyenne ds " << outfile  << endl;      
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| 355 |   specV1 /= (DTF)(nzm);
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| 356 |   specV2 /= (DTF)(nzm);
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| 357 |   cxspecV12 /= complex<DTF>((DTF)(nzm),0.);
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| 358 |   specV1.Info().Comment() = " SpectreMoyenne (Moyenne module^2) - Raw-Voie 1 (/2)";
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| 359 |   specV2.Info().Comment() = " SpectreMoyenne (Moyenne module^2) - Raw-Voie 2 (/2)";
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| 360 |   specV1.Info()["NMOY"] = specV2.Info()["NMOY"] = nzm; // Nombre de spectres moyennes
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| 361 |   specV1.Info()["Freq0"] = freq0v1;
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| 362 |   specV2.Info()["Freq0"] = freq0v2;
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| 363 |   POutPersist po(outfile);
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| 364 |   po << PPFNameTag("specV1") << specV1;
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| 365 |   po << PPFNameTag("specV2") << specV2;
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| 366 |   po << PPFNameTag("cxspecV12") << cxspecV12;
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| 367 |   return 0;
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| 368 | }
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| 369 | 
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| 370 | 
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| 371 | inline DTF Zmod2TwoByte(TwoByteComplex z) 
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| 372 | { return (z.realD()*z.realD()+z.imagD()*z.imagD()); }
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| 373 | 
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| 374 | /*--Nouvelle-Fonction--*/
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| 375 | int ana_data_fft_2(vector<string>& infiles, string& outfile, bool fgnotrl)
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| 376 | // Calcul spectres moyens 2 voies, donnees brutes  
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| 377 | {
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| 378 |   TVector<float> specV1, specV2;
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| 379 |   TVector< complex<float> > cxspecV12;
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| 380 |   float freq0v1 = 0;  
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| 381 |   float freq0v2 = 0;  
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| 382 |   int paqsz = 0;
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| 383 |   int nfileok=0;
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| 384 |   sa_size_t nzm = 0;   // Nb de spectres moyennes
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| 385 |   Byte* data = NULL;
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| 386 | 
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| 387 |   Timer tm("ana_data_fft_2");
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| 388 |   size_t totnbytesrd = 0;
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| 389 | 
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| 390 |   for(int ifile=0; ifile<infiles.size(); ifile++) {
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| 391 |     string ffname = infiles[ifile];
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| 392 | // -------------- Lecture de bytes      
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| 393 |     cout << "ana_data_fft_2[" << ifile <<"]Ouverture/lecture fichier " << ffname << endl;
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| 394 |     MiniFITSFile mff(ffname, MF_Read);
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| 395 |     cout << "... Type=" << mff.DataTypeToString() << " NAxis1=" << mff.NAxis1() 
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| 396 |          << " NAxis2=" << mff.NAxis2() << endl;
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| 397 |     if (mff.DataType() != MF_Byte) {
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| 398 |       cout << " PB : DataType!=MF_Byte --> skipping " << endl;
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| 399 |       continue;
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| 400 |     }
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| 401 | // Les fichier FITS contiennent l'entet (24 bytes), mais pas le trailer (16 bytes) si fgnotrl=true
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| 402 |     int incpaqsz=0;
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| 403 |     if (fgnotrl) {
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| 404 |       incpaqsz=16;
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| 405 |       cout << " Warning : FITS files without frame trailers ..." << endl;
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| 406 |     }
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| 407 |     if (paqsz == 0)  {  // premier passage, on fixe la taille de paquet et on alloue le buffer
 | 
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| 408 |       paqsz = mff.NAxis1()+incpaqsz;
 | 
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| 409 |       cout << " ana_data_fft_2/ Allocating data , PaqSz=" << paqsz << endl;
 | 
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| 410 |       data = new Byte[paqsz];
 | 
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| 411 |       for(int ib=0; ib<paqsz; ib++) data[ib]=0;
 | 
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| 412 |     }
 | 
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| 413 |     else {
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| 414 |       if (paqsz != mff.NAxis1()+incpaqsz) {
 | 
|---|
| 415 |       cout << " PB : paqsz=" << paqsz << " != mff.NAxis1()+" << incpaqsz << " --> skipping " << endl;
 | 
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| 416 |       continue;
 | 
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| 417 |       }
 | 
|---|
| 418 |     }
 | 
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| 419 |     size_t sx = mff.NAxis1(); 
 | 
|---|
| 420 |     size_t sy = mff.NAxis2();
 | 
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| 421 |     BRPaquet paq(NULL, data, paqsz);
 | 
|---|
| 422 |     TVector<DTF> vx1(paq.DataSize()/2);
 | 
|---|
| 423 |     TVector<DTF> vx2(paq.DataSize()/2);
 | 
|---|
| 424 |     TVector< complex<DTF> > cfour1,cfour2;
 | 
|---|
| 425 | 
 | 
|---|
| 426 |     if (!specV1.IsAllocated())  specV1.SetSize(paq.DataSize()/4+1);
 | 
|---|
| 427 |     if (!specV2.IsAllocated())  specV2.SetSize(paq.DataSize()/4+1);
 | 
|---|
| 428 |     if (!cxspecV12.IsAllocated())  cxspecV12.SetSize(paq.DataSize()/4+1);
 | 
|---|
| 429 |       
 | 
|---|
| 430 |     for(int j=0; j<sy; j++) {
 | 
|---|
| 431 |       mff.ReadB(data, sx, j*sx);
 | 
|---|
| 432 | 
 | 
|---|
| 433 |       TwoByteComplex* zz1 = (TwoByteComplex*)paq.Data1();
 | 
|---|
| 434 |       TwoByteComplex* zz2 = (TwoByteComplex*)paq.Data2();
 | 
|---|
| 435 |       // Composante continue, partie reelle uniquement
 | 
|---|
| 436 |       specV1(0) += zz1[0].realD()*zz1[0].realD();  
 | 
|---|
| 437 |       specV2(0) += zz2[0].realD()*zz2[0].realD();  
 | 
|---|
| 438 |       cxspecV12(0) += zz1[0].realD()*zz2[0].realD();
 | 
|---|
| 439 | 
 | 
|---|
| 440 |       for(sa_size_t jf=1; jf<specV1.Size()-1; jf++)  { 
 | 
|---|
| 441 |         specV1(jf) += Zmod2TwoByte(zz1[jf]);
 | 
|---|
| 442 |         specV2(jf) += Zmod2TwoByte(zz2[jf]);
 | 
|---|
| 443 |         cxspecV12(jf) += (DTF)(zz1[jf].realD()*zz2[jf].realD()+zz1[jf].imagD()*zz2[jf].imagD());
 | 
|---|
| 444 |       }
 | 
|---|
| 445 |       // Freq. Nyquist a N/2  
 | 
|---|
| 446 |       specV1(specV1.Size()-1) += zz1[0].imagD()*zz1[0].imagD();  // Freq. Nyquist a N/2 
 | 
|---|
| 447 |       specV2(specV2.Size()-1) += zz2[0].imagD()*zz2[0].imagD();  // Freq. Nyquist a N/2 
 | 
|---|
| 448 |       cxspecV12(cxspecV12.Size()-1) += zz1[0].imagD()*zz2[0].imagD();
 | 
|---|
| 449 | 
 | 
|---|
| 450 |       nzm++;  freq0v1 += zz1[0].realD();  freq0v2 += zz2[0].realD();
 | 
|---|
| 451 |       }
 | 
|---|
| 452 |     nfileok++;
 | 
|---|
| 453 |     size_t nbytesrd = sx*sy;
 | 
|---|
| 454 |     totnbytesrd += nbytesrd;
 | 
|---|
| 455 |     tm.Split();
 | 
|---|
| 456 |     cout << "---- FIN lecture " << ffname << " NFileOK=" << nfileok << endl; 
 | 
|---|
| 457 |     cout << "  TotalDiskRead= " << totnbytesrd/(1024*1024) << " MBytes Disk-Read rate= " 
 | 
|---|
| 458 |          << (double)(nbytesrd)/(1024.*1024.)/tm.PartialCPUTime() << " MB/s" << endl;    
 | 
|---|
| 459 |   }  
 | 
|---|
| 460 |   if (data) delete[] data;
 | 
|---|
| 461 |   if (nzm <= 0) {
 | 
|---|
| 462 |     cout << " ana_data_fft_2/ERROR : nzm=" << nzm << " spectres moyennes !" << endl;
 | 
|---|
| 463 |     return nzm;
 | 
|---|
| 464 |   } 
 | 
|---|
| 465 |   cout << "---- Ecriture spectre moyenne ds " << outfile  << endl;      
 | 
|---|
| 466 |   specV1 /= (DTF)(nzm);
 | 
|---|
| 467 |   specV2 /= (DTF)(nzm);
 | 
|---|
| 468 |   cxspecV12 /= complex<DTF>((DTF)(nzm),0.);
 | 
|---|
| 469 |   specV1.Info().Comment() = " SpectreMoyenne (Moyenne module^2) - FFT-Voie 1 (/2)";
 | 
|---|
| 470 |   specV2.Info().Comment() = " SpectreMoyenne (Moyenne module^2) - FFT-Voie 2 (/2)";
 | 
|---|
| 471 |   specV1.Info()["NMOY"] = specV2.Info()["NMOY"] = nzm; // Nombre de spectres moyennes
 | 
|---|
| 472 |   specV1.Info()["Freq0"] = freq0v1;
 | 
|---|
| 473 |   specV2.Info()["Freq0"] = freq0v2;
 | 
|---|
| 474 |   POutPersist po(outfile);
 | 
|---|
| 475 |   po << PPFNameTag("specV1") << specV1;
 | 
|---|
| 476 |   po << PPFNameTag("specV2") << specV2;
 | 
|---|
| 477 |   po << PPFNameTag("cxspecV12") << cxspecV12;
 | 
|---|
| 478 |   return 0;
 | 
|---|
| 479 | } | 
|---|