[591] | 1 | #include <iostream.h>
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| 2 | #include <math.h>
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[857] | 3 | #include "sambainit.h"
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| 4 | #include "skymap.h"
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[591] | 5 |
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| 6 | #include "tod.h"
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| 7 | #include "fitsioserver.h"
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| 8 | #include "nbrandom.h"
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| 9 |
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| 10 | #include "timing.h"
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| 11 |
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| 12 | template <class T>
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| 13 | void MeanSig(PixelMap<T> const & map, double& gmoy, double& gsig)
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| 14 | {
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| 15 | gmoy=0.;
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| 16 | gsig = 0.;
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| 17 | double valok;
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| 18 | for(int k=0; k<map.NbPixels(); k++) {
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| 19 | valok = map(k);
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| 20 | gmoy += valok; gsig += valok*valok;
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| 21 | }
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| 22 | gmoy /= (double)map.NbPixels();
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| 23 | gsig = gsig/(double)map.NbPixels() - gmoy*gmoy;
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| 24 | if (gsig >= 0.) gsig = sqrt(gsig);
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| 25 | }
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| 26 |
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| 27 | template <class T>
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| 28 | void Project_Mol(PixelMap<T> const & map, TMatrix<T> & mtx, T defval=-999.)
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| 29 | {
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| 30 | r_8 xa, yd, teta,phi, facteur;
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| 31 | int_4 l,c,k;
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| 32 | int_4 nl = mtx.NRows();
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| 33 | int_4 nc = mtx.NCols();
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[819] | 34 | mtx = defval; // On met tout a defval
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[591] | 35 | cout << " NRows= " << nl << " NCols= " << nc << endl;
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| 36 | for(l=0; l<nl; l++) {
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| 37 | yd = (r_8)(l+0.5)/(r_8)nl-0.5;
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| 38 | facteur=2.*M_PI/sin(acos((double)yd*2));
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| 39 | teta = (yd+0.5)*Pi;
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| 40 | // teta = (0.5-yd)*M_PI;
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| 41 | for(c=0; c<nc; c++) {
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| 42 | xa = (r_8)(c+0.5)/(r_8)nc-0.5;
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| 43 | phi = xa*facteur+M_PI;
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| 44 | if ( (phi <= 2*M_PI) && (phi >= 0.) ) {
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| 45 | k = map.PixIndexSph(teta, phi);
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| 46 | mtx(l,c) = map(k);
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| 47 | }
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| 48 | }
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| 49 | }
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| 50 |
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| 51 | }
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| 52 | template <class T>
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| 53 | void Project_Mol_Old(PixelMap<T> const & map, ImageR4 & img, float defval=-999.)
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| 54 | {
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| 55 | r_8 xa, yd, teta,phi, facteur;
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| 56 | int_4 i,j,k,n;
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| 57 | printf("Xsize= %d Ysize= %d NPix= %d\n",img.XSize(),img.YSize(),img.XSize()*img.YSize() );
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| 58 | n = 0;
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[606] | 59 | img.Zero();
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[591] | 60 | for(j=0; j<img.YSize(); j++) {
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| 61 | yd = (r_4)(j+0.5)/(r_4)img.YSize()-0.5;
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| 62 | facteur=2.*M_PI/sin(acos((double)yd*2));
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| 63 | teta = (yd+0.5)*M_PI;
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| 64 | // teta = (0.5-yd)*M_PI;
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| 65 | for(i=0; i<img.XSize(); i++) {
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| 66 | xa = (r_4)(i+0.5)/(r_4)img.XSize()-0.5;
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| 67 | phi = xa*facteur+M_PI;
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| 68 | if ( (phi <= 2*M_PI) && (phi >= 0.) ) {
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| 69 | k = map.PixIndexSph(teta, phi);
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| 70 | img(i,j) = map(k);
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| 71 | // if (n<20) {
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| 72 | // printf("i,j= %d %d -> %g %g -> k=%d -> val= %g \n",
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| 73 | // i,j,teta,phi,k,map(k)); n++; }
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| 74 | }
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| 75 | }
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| 76 | }
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| 77 |
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| 78 | }
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| 79 |
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| 80 | int main(int narg, char* arg[])
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| 81 | {
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| 82 | double teta,phi;
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| 83 | double gmoy=0., gsig=0.;
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| 84 |
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[768] | 85 | SophyaInit();
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[591] | 86 | InitTim(); // Initializing the CPU timer
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| 87 | if ((narg > 1) && (strcmp(arg[1],"-h") == 0) ) {
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[857] | 88 | cout << " tspm [HEALPix_M=32] : HEALPix Spherical Map Test " << endl;
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[591] | 89 | exit(0);
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| 90 | }
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| 91 |
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| 92 | int m=32;
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| 93 | if (narg >1) m = atoi(arg[1]);
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[857] | 94 | cout << " ===== HEALPix Spherical Map Test M= " << m << endl;
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[591] | 95 |
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| 96 | POutPersist s("spheres.ppf");
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| 97 | string nomobj;
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| 98 |
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| 99 | {
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[857] | 100 | SphereHEALPix<double> sph(m);
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[591] | 101 |
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| 102 | cout << "Filling spherical map NPixels= " << sph.NbPixels() << endl;
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| 103 | for (int j=0;j<sph.NbPixels();j++)
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| 104 | {
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| 105 | sph.PixThetaPhi(j,teta,phi);
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| 106 | sph(j)= 0.2* cos(3.*teta)*sin(8*phi);
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| 107 | }
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| 108 | PrtTim("End of Fill ");
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| 109 |
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| 110 | {
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[857] | 111 | FIO_SphereHEALPix<double> fiog(&sph) ;
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[591] | 112 | nomobj = "sphg1";
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| 113 | fiog.Write(s, nomobj);
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[857] | 114 | cout << "SphMap SphereHEALPix<double> written to POutPersist with name " << nomobj << endl;
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[591] | 115 | }
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| 116 |
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[606] | 117 | FitsIoServer fios;
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[591] | 118 | // On projete dans un fichier FITS
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| 119 | fios.sinus_picture_projection(sph, "gsin1.fits");
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| 120 | fios.save(sph, "sph1.fits");
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| 121 |
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| 122 | TMatrix<double> mtx(3*m, 6*m);
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| 123 | Project_Mol(sph, mtx);
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| 124 | fios.save(mtx, "mtx1.fits");
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| 125 |
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| 126 | cout << " Project_Mol_Old(sph, img) " << endl;
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| 127 | ImageR4 img(6*m, 3*m);
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| 128 | Project_Mol_Old(sph, img);
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| 129 | img.CheckDyn();
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| 130 | cout << img;
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| 131 | fios.save(img, "img1.fits");
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| 132 | cout << " Apres writeFits " << endl;
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| 133 | img.CheckDyn();
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| 134 | cout << img;
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| 135 | /*
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| 136 | ImageR4 imgr;
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| 137 | fios.load(imgr, "img1.fits");
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| 138 | cout << " Apres readFits " << endl;
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| 139 | imgr.CheckDyn();
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| 140 | cout << imgr;
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| 141 | */
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| 142 |
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| 143 | // Computing mean and sigma on the sphere
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| 144 | MeanSig(sph, gmoy, gsig);
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| 145 | cout << "SphMap Mean= " << gmoy << " Sigma = " << gsig << endl;
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| 146 | PrtTim("End of Mean-Sig ");
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| 147 | }
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[606] | 148 |
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[591] | 149 | {
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[857] | 150 | SphereHEALPix<float> sph(m);
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[591] | 151 |
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| 152 | cout << "Filling spherical map2 NPixels= " << sph.NbPixels() << endl;
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| 153 | for (int j=0;j<sph.NbPixels();j++)
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| 154 | {
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| 155 | sph.PixThetaPhi(j,teta,phi);
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| 156 | if (teta < 0.3) sph(j) = 30.;
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| 157 | else if ((teta>1.4) && (teta<1.6) ) sph(j) = 20.;
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| 158 | else {
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| 159 | if (phi < 2.) sph(j) = 2.;
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| 160 | else if (phi > 3.) sph(j) = 5.;
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| 161 | else sph(j) = 0.;
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| 162 | }
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| 163 | }
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| 164 | PrtTim("End of Fill2 ");
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| 165 |
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| 166 | {
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[857] | 167 | FIO_SphereHEALPix<float> fiog(&sph) ;
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[591] | 168 | nomobj = "sphg2";
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| 169 | fiog.Write(s, nomobj);
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[857] | 170 | cout << "SphMap SphereHEALPix<float> written to POutPersist with name " << nomobj << endl;
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[591] | 171 | }
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| 172 |
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| 173 |
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| 174 | // On projete dans un fichier FITS
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| 175 | FitsIoServer fios;
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[606] | 176 | {
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[857] | 177 | cout << "Test of Write/Read SphereHEALPix<float> to FITS (sphg_r4.fits) " << endl;
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[606] | 178 | fios.save(sph, "sphg_r4.fits");
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| 179 |
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[857] | 180 | SphereHEALPix<float> sphr(4);
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[606] | 181 | fios.load(sphr, "sphg_r4.fits", 2);
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[857] | 182 | cout << " Read from file - SphereHEALPix<float> NPixels= " << sphr.NbPixels() << endl;
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[606] | 183 | int ndiff = 0;
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| 184 | for(int k=0; k<sphr.NbPixels(); k++) {
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| 185 | if ( sphr(k) != sph(k) ) {
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| 186 | ndiff++;
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| 187 | if (ndiff < 20) cout << "!!!Diff: K= " << k << " SPHR= " << sphr(k) << " SPH= " << sph(k) << endl;
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| 188 | }
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| 189 | }
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| 190 | cout << " ReadFrom FITS NDiff = " << ndiff << " (should be zero = 0) " << endl;
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| 191 |
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| 192 | }
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| 193 |
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| 194 |
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[591] | 195 | fios.sinus_picture_projection(sph, "gsin2.fits");
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| 196 | fios.save(sph, "sph2.fits");
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| 197 |
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[606] | 198 | TMatrix<float> mtx(3*m, 6*m);
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[591] | 199 | Project_Mol(sph, mtx);
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| 200 | fios.save(mtx, "mtx2.fits");
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| 201 |
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| 202 |
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| 203 | cout << " Project_Mol_Old(sph, img) " << endl;
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| 204 | ImageR4 img(6*m, 3*m);
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| 205 | Project_Mol_Old(sph, img);
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| 206 | img.CheckDyn();
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| 207 | cout << img;
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| 208 | fios.save(img, "img2.fits");
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| 209 | cout << " Apres writeFits " << endl;
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| 210 | img.CheckDyn();
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| 211 | cout << img;
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| 212 |
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| 213 | // Computing mean and sigma on the sphere
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| 214 | MeanSig(sph, gmoy, gsig);
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| 215 | cout << "SphMap2 Mean= " << gmoy << " Sigma = " << gsig << endl;
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| 216 | PrtTim("End of Mean-Sig2 ");
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| 217 | }
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| 218 |
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| 219 | {
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| 220 | SphereThetaPhi< complex<float> > sphc(m*10);
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| 221 |
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| 222 | cout << "Filling spherical map3 SphereThetaPhi(complex) NPixels= " << sphc.NbPixels() << endl;
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| 223 | for (int j=0;j<sphc.NbPixels();j++)
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| 224 | {
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| 225 | sphc.PixThetaPhi(j,teta,phi);
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| 226 | if (teta < 0.3) sphc(j) = (30., drandpm1()*3.);
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| 227 | else if ((teta>1.4) && (teta<1.6) ) sphc(j) = (20., NorRand());
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| 228 | else {
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| 229 | if (phi < 2.) sphc(j) = 2.;
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| 230 | else if (phi > 3.) sphc(j) = 5.;
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| 231 | else sphc(j) = 0.;
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| 232 | }
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| 233 | }
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| 234 | PrtTim("End of Fill2 ");
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| 235 |
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| 236 | {
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| 237 | FIO_SphereThetaPhi< complex<float> > fio(&sphc) ;
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| 238 | nomobj = "sphtp";
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| 239 | fio.Write(s, nomobj);
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| 240 | cout << "SphMap written to POutPersist with name " << nomobj << endl;
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| 241 | }
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| 242 | }
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| 243 | cout << " ===== Fin de TSPM2_Test ======== " << endl;
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| 244 | return 0;
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| 245 | }
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