| [658] | 1 | #include "machdefs.h"
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 | 2 | #include <math.h>
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 | 3 | #include <complex>
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 | 4 | 
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 | 5 | #include "pexceptions.h"
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 | 6 | #include "spheregorski.h"
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 | 7 | #include "strutil.h"
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 | 8 | 
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 | 9 | extern "C" 
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 | 10 | {
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 | 11 | #include <stdio.h>
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 | 12 | #include <stdlib.h>
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 | 13 | #include <unistd.h>
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 | 14 | }
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 | 15 |       
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 | 16 | 
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 | 17 | //*******************************************************************
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 | 18 | // Class PIXELS_XY 
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 | 19 | // Construction des tableaux necessaires a la traduction des indices RING en 
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 | 20 | // indices NESTED (ou l'inverse)
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 | 21 | //*******************************************************************
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 | 22 | 
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 | 23 | PIXELS_XY::PIXELS_XY()
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 | 24 | {
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 | 25 |   pix2x_.ReSize(1024);
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 | 26 |   pix2x_.Reset();
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 | 27 |   pix2y_.ReSize(1024);
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 | 28 |   pix2y_.Reset();
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 | 29 |   x2pix_.ReSize(128);
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 | 30 |   x2pix_.Reset();
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 | 31 |   y2pix_.ReSize(128);
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 | 32 |   y2pix_.Reset();
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 | 33 |   mk_pix2xy(); 
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 | 34 |   mk_xy2pix(); 
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 | 35 | }
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 | 36 | 
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 | 37 | PIXELS_XY& PIXELS_XY::instance()
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 | 38 | {
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 | 39 |   static PIXELS_XY single;
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 | 40 |   return (single);
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 | 41 | }
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 | 42 | 
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 | 43 | void PIXELS_XY::mk_pix2xy() 
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 | 44 | {
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 | 45 |   /*
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 | 46 |     ==================================================
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 | 47 |     subroutine mk_pix2xy
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 | 48 |     ==================================================
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 | 49 |     c     constructs the array giving x and y in the face from pixel number
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 | 50 |     c     for the nested (quad-cube like) ordering of pixels
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 | 51 |     c
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 | 52 |     c     the bits corresponding to x and y are interleaved in the pixel number
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 | 53 |     c     one breaks up the pixel number by even and odd bits
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 | 54 |     ==================================================
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 | 55 |   */
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 | 56 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
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 | 57 |   //  (16/12/98)
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 | 58 | 
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 | 59 |   int kpix, jpix, IX, IY, IP, ID;
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 | 60 |   
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 | 61 |   for(kpix = 0; kpix < 1024; kpix++) 
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 | 62 |     {
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 | 63 |       jpix = kpix;
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 | 64 |       IX = 0;
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 | 65 |       IY = 0;
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 | 66 |       IP = 1 ;//  ! bit position (in x and y)
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 | 67 |       while( jpix!=0 )
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 | 68 |         { // ! go through all the bits
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 | 69 |           ID=jpix%2;//  ! bit value (in kpix), goes in ix
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 | 70 |           jpix = jpix/2;
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 | 71 |           IX = ID*IP+IX;
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 | 72 |       
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 | 73 |           ID=jpix%2;//  ! bit value (in kpix), goes in iy
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 | 74 |           jpix = jpix/2;
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 | 75 |           IY = ID*IP+IY;
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 | 76 |      
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 | 77 |           IP = 2*IP;//        ! next bit (in x and y)
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 | 78 |         }
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 | 79 |       pix2x_(kpix) = IX;//     ! in 0,31
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 | 80 |       pix2y_(kpix) = IY;//     ! in 0,31
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 | 81 |     }
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 | 82 | }
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 | 83 | 
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 | 84 | void PIXELS_XY::mk_xy2pix() 
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 | 85 | {
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 | 86 |   /*
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 | 87 |     =================================================
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 | 88 |     subroutine mk_xy2pix
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 | 89 |     =================================================
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 | 90 |     c     sets the array giving the number of the pixel lying in (x,y)
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 | 91 |     c     x and y are in {1,128}
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 | 92 |     c     the pixel number is in {0,128**2-1}
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 | 93 |     c
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 | 94 |     c     if  i-1 = sum_p=0  b_p * 2^p
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 | 95 |     c     then ix = sum_p=0  b_p * 4^p
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 | 96 |     c          iy = 2*ix
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 | 97 |     c     ix + iy in {0, 128**2 -1}
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 | 98 |     =================================================
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 | 99 |   */
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 | 100 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
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 | 101 |   //  (16/12/98)
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 | 102 | 
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 | 103 |   int K,IP,I,J,ID;
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 | 104 |   for(I = 1; I <= 128; I++) 
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 | 105 |     {
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 | 106 |       J  = I-1;//            !pixel numbers
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 | 107 |       K  = 0;//
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 | 108 |       IP = 1;//
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 | 109 |       truc : if( J==0 ) 
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 | 110 |         {
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 | 111 |           x2pix_(I-1) = K;
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 | 112 |           y2pix_(I-1) = 2*K;
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 | 113 |         }
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 | 114 |       else 
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 | 115 |         {
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 | 116 |           ID = (int)fmod(J,2);
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 | 117 |           J  = J/2;
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 | 118 |           K  = IP*ID+K;
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 | 119 |           IP = IP*4;
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 | 120 |           goto truc;
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 | 121 |         }
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 | 122 |     }     
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 | 123 | }
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 | 124 | 
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 | 125 | //*******************************************************************
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 | 126 | //++ 
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 | 127 | // Class        SphereGorski
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 | 128 | //
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 | 129 | // include      spheregorski.h strutil.h
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 | 130 | //
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 | 131 | //    Pixelisation Gorski  
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 | 132 | //
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 | 133 | //
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 | 134 | //|    -----------------------------------------------------------------------
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 | 135 | //|     version 0.8.2  Aug97 TAC  Eric Hivon, Kris Gorski
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 | 136 | //|    -----------------------------------------------------------------------
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 | 137 | //
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 | 138 | //    the sphere is split in 12 diamond-faces containing nside**2 pixels each
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 | 139 | //
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 | 140 | //    the numbering of the pixels (in the nested scheme) is similar to
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 | 141 | //    quad-cube
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 | 142 | //    In each face the first pixel is in the lowest corner of the diamond
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 | 143 | //
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 | 144 | //    the faces are                    (x,y) coordinate on each face
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 | 145 | //|        .   .   .   .   <--- North Pole
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 | 146 | //|       / \ / \ / \ / \                          ^        ^     
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 | 147 | //|      . 0 . 1 . 2 . 3 . <--- z = 2/3             \      /      
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 | 148 | //|       \ / \ / \ / \ /                        y   \    /  x   
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 | 149 | //|      4 . 5 . 6 . 7 . 4 <--- equator               \  /                     
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 | 150 | //|       / \ / \ / \ / \                              \/        
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 | 151 | //|      . 8 . 9 .10 .11 . <--- z = -2/3              (0,0) : lowest corner  
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 | 152 | //|       \ / \ / \ / \ /                                  
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 | 153 | //|        .   .   .   .   <--- South Pole
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 | 154 | //|
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 | 155 | //    phi:0               2Pi                                 
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 | 156 | //
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 | 157 | //    in the ring scheme pixels are numbered along the parallels
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 | 158 | //    the first parallel is the one closest to the north pole and so on
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 | 159 | //    on each parallel, pixels are numbered starting from the one closest
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 | 160 | //    to phi = 0
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 | 161 | //
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 | 162 | //    nside MUST be a power of 2 (<= 8192)
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 | 163 | //--
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 | 164 | //++
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 | 165 | //
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 | 166 | // Links        Parents
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 | 167 | //
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 | 168 | //    SphericalMap 
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 | 169 | //-- 
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 | 170 | 
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 | 171 | /* --Methode-- */
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 | 172 | //++
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 | 173 | // Titre        Constructors
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 | 174 | //--
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 | 175 | //++
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 | 176 | 
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 | 177 | template<class T>
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 | 178 | SphereGorski<T>::SphereGorski()
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 | 179 | 
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 | 180 | //--
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 | 181 | {
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 | 182 |   InitNul();
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 | 183 |   pixels_.Reset();
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 | 184 | }
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 | 185 | 
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 | 186 | //++
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 | 187 | template<class T>
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 | 188 | SphereGorski<T>::SphereGorski(int m)
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 | 189 | 
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 | 190 | //    m is the "nside" of the Gorski algorithm
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 | 191 | //
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 | 192 | //    The total number of pixels will be Npix =  12*nside**2
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 | 193 | //
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 | 194 | //    nside MUST be a power of 2 (<= 8192)
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 | 195 | //--
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 | 196 | {
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 | 197 | 
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 | 198 |   if(m <= 0 || m > 8192) 
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 | 199 |     {
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 | 200 |       cout << "SphereGorski : m hors bornes [0,8192], m= " << m << endl;
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 | 201 |       throw RangeCheckError("SphereGorski<T>::SphereGorski() - Out of bound nside (< 8192)!");
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 | 202 |     }
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 | 203 |   // verifier que m est une puissance de deux 
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 | 204 |   int x= m;
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 | 205 |   while(x%2 == 0) x/=2;
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 | 206 |   if(x != 1) 
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 | 207 |     {  
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 | 208 |       cout<<"SphereGorski: m doit etre une puissance de deux, m= "<<m<<endl;
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 | 209 |       throw ParmError("SphereGorski<T>::SphereGorski() - nside != 2^n !");
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 | 210 |     }
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 | 211 |   InitNul();
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 | 212 |   Pixelize(m);
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 | 213 | }
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 | 214 | //++
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 | 215 | template<class T>
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 | 216 | SphereGorski<T>::SphereGorski(const SphereGorski<T>& s, bool share)
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 | 217 |   : pixels_(s.pixels_, share)
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 | 218 | //    copy constructor
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 | 219 | //--
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 | 220 | {
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 | 221 |   cout << " constructeur de recopie " << endl;
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 | 222 |   if(s.mInfo_) mInfo_= new DVList(*s.mInfo_);
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 | 223 | 
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 | 224 |   nSide_= s.nSide_;
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 | 225 |   nPix_ = s.nPix_;
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 | 226 |   omeg_ = s.omeg_;
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 | 227 | }
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 | 228 | 
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 | 229 | //++
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 | 230 | // Titre        Destructor
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 | 231 | //--
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 | 232 | //++
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 | 233 | template<class T>
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 | 234 | SphereGorski<T>::~SphereGorski()
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 | 235 | 
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 | 236 | //--
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 | 237 | {
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 | 238 | //  InitNul();  - Non , le destructeur ne doit pas mettre les pixels a zero !
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 | 239 | //              Reza 20/11/99
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 | 240 | }
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 | 241 | 
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 | 242 | //++
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 | 243 | // Titre        Public Methods
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 | 244 | //--
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 | 245 | 
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 | 246 | //++
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 | 247 | template<class T>
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 | 248 | void SphereGorski<T>::Resize(int m)
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 | 249 | 
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 | 250 | //    m is the "nside" of the Gorski algorithm
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 | 251 | //
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 | 252 | //    The total number of pixels will be Npix =  12*nside**2
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 | 253 | //
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 | 254 | //    nside MUST be a power of 2 (<= 8192)
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 | 255 | //--
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 | 256 | {
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 | 257 |   if (m<=0 || m> 8192) {
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 | 258 |     cout << "SphereGorski : m hors bornes [0,8192], m= " << m << endl;
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 | 259 |     exit(1);
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 | 260 |   }
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 | 261 |   // verifier que m est une puissance de deux 
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 | 262 |   int x= m;
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 | 263 |   while (x%2==0) x/=2;
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 | 264 |   if(x != 1) 
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 | 265 |     {  
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 | 266 |       cout<<"SphereGorski: m doit etre une puissance de deux, m= "<<m<<endl;
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 | 267 |       exit(1);
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 | 268 |     }
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 | 269 |   InitNul();
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 | 270 |   Pixelize(m);
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 | 271 | }
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 | 272 | 
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 | 273 | template<class T>
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 | 274 | void  SphereGorski<T>::Pixelize( int m) 
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 | 275 | 
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 | 276 | //    prépare la pixelisation Gorski (m a la même signification 
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 | 277 | //    que pour le constructeur)
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 | 278 | //
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 | 279 | //    
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 | 280 | {
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 | 281 |   // On memorise les arguments d'appel
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 | 282 |   nSide_= m;  
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 | 283 | 
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 | 284 |   // Nombre total de pixels sur la sphere entiere
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 | 285 |   nPix_= 12*nSide_*nSide_;
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 | 286 | 
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 | 287 |   // pour le moment les tableaux qui suivent seront ranges dans l'ordre 
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 | 288 |   // de l'indexation GORSKY "RING"
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 | 289 |   // on pourra ulterieurement changer de strategie et tirer profit
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 | 290 |   // de la dualite d'indexation GORSKY (RING et NEST) : tout dependra 
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 | 291 |   // de pourquoi c'est faire
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 | 292 | 
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 | 293 |   // Creation et initialisation du vecteur des contenus des pixels 
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 | 294 |   pixels_.ReSize(nPix_);
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 | 295 |   pixels_.Reset();
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 | 296 | 
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 | 297 |   // solid angle per pixel   
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 | 298 |   omeg_= 4.0*Pi/nPix_;
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 | 299 | }
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 | 300 | 
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 | 301 | template<class T>
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 | 302 | void SphereGorski<T>::InitNul()
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 | 303 | //
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 | 304 | //    initialise à zéro les variables de classe 
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 | 305 | {
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 | 306 |   nSide_= 0;
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 | 307 |   nPix_ = 0;
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 | 308 |   omeg_ = 0.;
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 | 309 | //  pixels_.Reset();  -  Il ne faut pas mettre les pixels a zero si share !
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 | 310 | }
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 | 311 | 
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 | 312 | /* --Methode-- */
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 | 313 | //++
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 | 314 | template<class T>
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 | 315 | int SphereGorski<T>::NbPixels() const
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 | 316 | 
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 | 317 | //    Retourne le nombre de pixels du découpage
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 | 318 | //--
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 | 319 | {  
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 | 320 |   return(nPix_);
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 | 321 | }
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 | 322 | 
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 | 323 | //++
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 | 324 | template<class T>
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 | 325 | int SphereGorski<T>::NbThetaSlices() const 
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 | 326 | 
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 | 327 | //    Return number of slices in theta direction on the  sphere
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 | 328 | //--
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 | 329 | {
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 | 330 |   return int(4*nSide_-1);
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 | 331 | }
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 | 332 | 
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 | 333 | //++
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 | 334 | template<class T>
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 | 335 | void SphereGorski<T>::GetThetaSlice(int index,double& theta,TVector<double>& phi,TVector<T>& value) const 
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 | 336 | 
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 | 337 | //    For a theta-slice with index 'index', return : 
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 | 338 | //
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 | 339 | //    the corresponding "theta" 
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 | 340 | //
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 | 341 | //    a vector containing the phi's of the pixels of the slice
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 | 342 | //
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 | 343 | //    a vector containing the corresponding values of pixels 
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 | 344 | //
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 | 345 | //--
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 | 346 | {
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 | 347 |   cout << "entree GetThetaSlice, couche no " << index << endl;
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 | 348 | 
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 | 349 |   if (index<0 || index > NbThetaSlices()) 
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 | 350 |     {
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 | 351 |       // THROW(out_of_range("SphereGorski::PIxVal Pixel index out of range")); 
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 | 352 |       cout << " SphereGorski::GetThetaSlice : exceptions  a mettre en place" <<endl;
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 | 353 |       THROW(rangeCheckErr);
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 | 354 |     }
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 | 355 | 
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 | 356 |   int iring= 0;
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 | 357 |   int lring  = 0;
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 | 358 |   if(index < nSide_-1) 
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 | 359 |     {
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 | 360 |       iring= 2*index*(index+1);
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 | 361 |       lring= 4*(index+1);
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 | 362 |     }
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 | 363 |   else if(index < 3*nSide_) 
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 | 364 |     {
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 | 365 |       iring= 2*nSide_*(2*index-nSide_+1);
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 | 366 |       lring= 4*nSide_;
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 | 367 |     }
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 | 368 |   else
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 | 369 |     {
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 | 370 |       int nc= 4*nSide_-1-index;
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 | 371 |       iring = nPix_-2*nc*(nc+1);
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 | 372 |       lring = 4*nc;
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 | 373 |     }
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 | 374 | 
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 | 375 |   phi.ReSize(lring);
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 | 376 |   value.ReSize(lring);
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 | 377 |   double TH= 0.;
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 | 378 |   double FI= 0.;
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 | 379 |   for(int kk = 0; kk < lring;kk++) 
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 | 380 |     {
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 | 381 |       PixThetaPhi(kk+iring,TH,FI);
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 | 382 |       phi(kk)= FI;
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 | 383 |       value(kk)= PixVal(kk+iring);
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 | 384 |     }
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 | 385 |   theta= TH;
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 | 386 | }
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 | 387 | 
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 | 388 | /* --Methode-- */
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 | 389 | //++
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 | 390 | template<class T>
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 | 391 | T& SphereGorski<T>::PixVal(int k)
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 | 392 | 
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 | 393 | //    Return value of  pixel with "RING" index k 
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 | 394 | //--
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 | 395 | {
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 | 396 |   if((k < 0) || (k >= nPix_)) 
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 | 397 |     {
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 | 398 |       // THROW(out_of_range("SphereGorski::PIxVal Pixel index out of range")); 
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 | 399 |       cout << " SphereGorski::PIxVal : exceptions  a mettre en place" <<endl;
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 | 400 |       THROW(rangeCheckErr);
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 | 401 |     }
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 | 402 |   return pixels_(k);
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 | 403 | }
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 | 404 | 
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 | 405 | /* --Methode-- */
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 | 406 | //++
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 | 407 | template<class T>
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 | 408 | T const& SphereGorski<T>::PixVal(int k) const
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 | 409 | 
 | 
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 | 410 | //    Return value of  pixel with "RING" index k 
 | 
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 | 411 | //--
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 | 412 | {
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 | 413 |   if((k < 0) || (k >= nPix_)) 
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 | 414 |     {
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 | 415 |       //THROW(out_of_range("SphereGorski::PIxVal Pixel index out of range")); 
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 | 416 |       cout << " SphereGorski::PIxVal : exceptions  a mettre en place" <<endl;
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 | 417 |       THROW(rangeCheckErr);
 | 
|---|
 | 418 |     }
 | 
|---|
 | 419 |   return *(pixels_.Data()+k);
 | 
|---|
 | 420 | }
 | 
|---|
 | 421 | 
 | 
|---|
 | 422 | //++
 | 
|---|
 | 423 | template<class T>
 | 
|---|
 | 424 | T& SphereGorski<T>::PixValNest(int k)
 | 
|---|
 | 425 | 
 | 
|---|
 | 426 | //    Return value of  pixel with "NESTED" index k 
 | 
|---|
 | 427 | //--
 | 
|---|
 | 428 | {
 | 
|---|
 | 429 |   if((k < 0) || (k >= nPix_)) 
 | 
|---|
 | 430 |     { 
 | 
|---|
 | 431 |       //THROW(out_of_range("SphereGorski::PIxValNest Pixel index out of range")); 
 | 
|---|
 | 432 |       cout<<" SphereGorski::PIxValNest : exceptions a mettre en place" <<endl;
 | 
|---|
 | 433 |       THROW(rangeCheckErr);
 | 
|---|
 | 434 |     }
 | 
|---|
 | 435 |   return pixels_(nest2ring(nSide_,k));
 | 
|---|
 | 436 | }
 | 
|---|
 | 437 | //++
 | 
|---|
 | 438 | 
 | 
|---|
 | 439 | template<class T>
 | 
|---|
 | 440 | T const& SphereGorski<T>::PixValNest(int k) const
 | 
|---|
 | 441 | 
 | 
|---|
 | 442 | //    Return value of  pixel with "NESTED" index k 
 | 
|---|
 | 443 | //--
 | 
|---|
 | 444 | {
 | 
|---|
 | 445 |   if((k < 0) || (k >= nPix_)) 
 | 
|---|
 | 446 |     { 
 | 
|---|
 | 447 |       //THROW(out_of_range("SphereGorski::PIxValNest Pixel index out of range")); 
 | 
|---|
 | 448 |       cout<<" SphereGorski::PIxValNest : exceptions a mettre en place" <<endl;
 | 
|---|
 | 449 |       THROW(rangeCheckErr);
 | 
|---|
 | 450 |   }
 | 
|---|
 | 451 |   int pix= nest2ring(nSide_,k);
 | 
|---|
 | 452 |   return *(pixels_.Data()+pix);
 | 
|---|
 | 453 | }
 | 
|---|
 | 454 | 
 | 
|---|
 | 455 | /* --Methode-- */
 | 
|---|
 | 456 | //++
 | 
|---|
 | 457 | template<class T>
 | 
|---|
 | 458 | bool SphereGorski<T>::ContainsSph(double theta, double phi) const
 | 
|---|
 | 459 | //--
 | 
|---|
 | 460 | {
 | 
|---|
 | 461 | return(true);
 | 
|---|
 | 462 | }
 | 
|---|
 | 463 | 
 | 
|---|
 | 464 | /* --Methode-- */
 | 
|---|
 | 465 | //++
 | 
|---|
 | 466 | template<class T>
 | 
|---|
 | 467 | int SphereGorski<T>::PixIndexSph(double theta,double phi) const
 | 
|---|
 | 468 | 
 | 
|---|
 | 469 | //    Return "RING" index of the pixel corresponding to 
 | 
|---|
 | 470 | //    direction (theta, phi).
 | 
|---|
 | 471 | //--
 | 
|---|
 | 472 | {
 | 
|---|
 | 473 |   return ang2pix_ring(nSide_,theta,phi);
 | 
|---|
 | 474 | }
 | 
|---|
 | 475 | 
 | 
|---|
 | 476 | //++
 | 
|---|
 | 477 | template<class T>
 | 
|---|
 | 478 | int SphereGorski<T>::PixIndexSphNest(double theta,double  phi) const
 | 
|---|
 | 479 | 
 | 
|---|
 | 480 | //    Return "NESTED" index of the pixel corresponding to 
 | 
|---|
 | 481 | //    direction (theta, phi).
 | 
|---|
 | 482 | //--
 | 
|---|
 | 483 | {
 | 
|---|
 | 484 |   return ang2pix_nest(nSide_,theta,phi);
 | 
|---|
 | 485 | }
 | 
|---|
 | 486 | 
 | 
|---|
 | 487 | 
 | 
|---|
 | 488 | /* --Methode-- */
 | 
|---|
 | 489 | //++
 | 
|---|
 | 490 | template<class T>
 | 
|---|
 | 491 | void SphereGorski<T>::PixThetaPhi(int k,double& theta,double& phi) const
 | 
|---|
 | 492 | 
 | 
|---|
 | 493 | //   Return (theta,phi) coordinates of middle of  pixel with "RING" index k
 | 
|---|
 | 494 | //--
 | 
|---|
 | 495 | {
 | 
|---|
 | 496 |   pix2ang_ring(nSide_,k,theta,phi);
 | 
|---|
 | 497 | }
 | 
|---|
 | 498 | 
 | 
|---|
 | 499 | template <class T>
 | 
|---|
 | 500 | T SphereGorski<T>::SetPixels(T v)
 | 
|---|
 | 501 | {
 | 
|---|
 | 502 | pixels_.Reset(v);
 | 
|---|
 | 503 | return(v);
 | 
|---|
 | 504 | }
 | 
|---|
 | 505 | 
 | 
|---|
 | 506 | //++
 | 
|---|
 | 507 | template<class T>
 | 
|---|
 | 508 | double SphereGorski<T>::PixSolAngle(int dummy) const
 | 
|---|
 | 509 | //    Pixel Solid angle  (steradians)
 | 
|---|
 | 510 | //    All the pixels have the same solid angle. The dummy argument is
 | 
|---|
 | 511 | //    for compatibility with eventual pixelizations which would not 
 | 
|---|
 | 512 | //    fulfil this requirement.
 | 
|---|
 | 513 | //--
 | 
|---|
 | 514 | {
 | 
|---|
 | 515 |   return omeg_;
 | 
|---|
 | 516 | }
 | 
|---|
 | 517 | 
 | 
|---|
 | 518 | //++
 | 
|---|
 | 519 | template<class T>
 | 
|---|
 | 520 | void SphereGorski<T>::PixThetaPhiNest(int k,double& theta,double& phi) const
 | 
|---|
 | 521 | 
 | 
|---|
 | 522 | //   Return (theta,phi) coordinates of middle of  pixel with "NESTED" index k
 | 
|---|
 | 523 | //--
 | 
|---|
 | 524 | {   
 | 
|---|
 | 525 |   pix2ang_nest(nSide_,k,theta,phi);
 | 
|---|
 | 526 | }
 | 
|---|
 | 527 | 
 | 
|---|
 | 528 | //++
 | 
|---|
 | 529 | template<class T>
 | 
|---|
 | 530 | int SphereGorski<T>::NestToRing(int k) const
 | 
|---|
 | 531 | 
 | 
|---|
 | 532 | //    translation from NESTED index  into RING index 
 | 
|---|
 | 533 | //
 | 
|---|
 | 534 | //--
 | 
|---|
 | 535 | {
 | 
|---|
 | 536 |   return  nest2ring(nSide_,k);
 | 
|---|
 | 537 | }
 | 
|---|
 | 538 | 
 | 
|---|
 | 539 | //++
 | 
|---|
 | 540 | template<class T>
 | 
|---|
 | 541 | int SphereGorski<T>::RingToNest(int k) const
 | 
|---|
 | 542 | //
 | 
|---|
 | 543 | //    translation from  RING index  into NESTED index 
 | 
|---|
 | 544 | //
 | 
|---|
 | 545 | //--
 | 
|---|
 | 546 | {
 | 
|---|
 | 547 |   return  ring2nest(nSide_,k);
 | 
|---|
 | 548 | }
 | 
|---|
 | 549 | 
 | 
|---|
 | 550 | 
 | 
|---|
 | 551 | template<class T>
 | 
|---|
 | 552 | int SphereGorski<T>::nest2ring(int nside, int ipnest) const 
 | 
|---|
 | 553 | {
 | 
|---|
 | 554 |   /*
 | 
|---|
 | 555 |     ====================================================
 | 
|---|
 | 556 |     subroutine nest2ring(nside, ipnest, ipring)
 | 
|---|
 | 557 |     ====================================================
 | 
|---|
 | 558 |     c     conversion from NESTED to RING pixel number
 | 
|---|
 | 559 |     ====================================================
 | 
|---|
 | 560 |   */
 | 
|---|
 | 561 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
 | 
|---|
 | 562 |   //  (16/12/98)
 | 
|---|
 | 563 |   
 | 
|---|
 | 564 |   const PIXELS_XY& PXY= PIXELS_XY::instance();
 | 
|---|
 | 565 | 
 | 
|---|
 | 566 |   int npix, npface, face_num, ncap, n_before;
 | 
|---|
 | 567 |   int ipf, ip_low, ip_trunc, ip_med, ip_hi;
 | 
|---|
 | 568 |   int ix, iy, jrt, jr, nr, jpt, jp, kshift, nl4;
 | 
|---|
 | 569 |   int ns_max=8192;
 | 
|---|
 | 570 |   int jrll[12]={2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4};
 | 
|---|
 | 571 |   int jpll[12]={1, 3, 5, 7, 0, 2, 4, 6, 1, 3, 5, 7};
 | 
|---|
 | 572 |   
 | 
|---|
 | 573 |   if(  nside<1 ||  nside>ns_max ) {
 | 
|---|
 | 574 |     cout << "nside out of range" << endl;
 | 
|---|
 | 575 |     exit(0);
 | 
|---|
 | 576 |   }
 | 
|---|
 | 577 |   npix = 12 *  nside* nside;
 | 
|---|
 | 578 |   if( ipnest<0 || ipnest>npix-1 ) {
 | 
|---|
 | 579 |     cout << "ipnest out of range" << endl;
 | 
|---|
 | 580 |     exit(0);
 | 
|---|
 | 581 |   }
 | 
|---|
 | 582 | 
 | 
|---|
 | 583 |   ncap  = 2* nside*( nside-1);// ! number of points in the North Polar cap
 | 
|---|
 | 584 |   nl4   = 4* nside;
 | 
|---|
 | 585 |   
 | 
|---|
 | 586 |   //c     finds the face, and the number in the face
 | 
|---|
 | 587 |   npface =  nside* nside;
 | 
|---|
 | 588 |   //cccccc      ip = ipnest - 1         ! in {0,npix-1}
 | 
|---|
 | 589 |   
 | 
|---|
 | 590 |   face_num = ipnest/npface;//  ! face number in {0,11}
 | 
|---|
 | 591 |   ipf =ipnest%npface;//  ! pixel number in the face {0,npface-1}
 | 
|---|
 | 592 |   //c     finds the x,y on the face (starting from the lowest corner)
 | 
|---|
 | 593 |   //c     from the pixel number
 | 
|---|
 | 594 |   ip_low=ipf%1024;                //   ! content of the last 10 bits
 | 
|---|
 | 595 |   ip_trunc =   ipf/1024;         //    ! truncation of the last 10 bits
 | 
|---|
 | 596 |   ip_med=ip_trunc%1024;         //     ! content of the next 10 bits
 | 
|---|
 | 597 |   ip_hi  =     ip_trunc/1024;//   ! content of the high weight 10 bits
 | 
|---|
 | 598 |   
 | 
|---|
 | 599 |   ix = 1024*PXY.pix2x_(ip_hi)+32*PXY.pix2x_(ip_med)+PXY.pix2x_(ip_low);
 | 
|---|
 | 600 |   iy = 1024*PXY.pix2y_(ip_hi)+32*PXY.pix2y_(ip_med)+PXY.pix2y_(ip_low);
 | 
|---|
 | 601 |   
 | 
|---|
 | 602 |   //c     transforms this in (horizontal, vertical) coordinates
 | 
|---|
 | 603 |   jrt = ix + iy;//  ! 'vertical' in {0,2*(nside-1)}
 | 
|---|
 | 604 |   jpt = ix - iy;//  ! 'horizontal' in {-nside+1,nside-1}
 | 
|---|
 | 605 |   
 | 
|---|
 | 606 |   //c     computes the z coordinate on the sphere
 | 
|---|
 | 607 |   //      jr =  jrll[face_num+1]*nside - jrt - 1;//   ! ring number in {1,4*nside-1}
 | 
|---|
 | 608 |   jr =  jrll[face_num]*nside - jrt - 1;
 | 
|---|
 | 609 |   nr = nside;//                  ! equatorial region (the most frequent)
 | 
|---|
 | 610 |   n_before = ncap + nl4 * (jr - nside);
 | 
|---|
 | 611 |   kshift=(jr - nside)%2;
 | 
|---|
 | 612 |   if( jr<nside ) {//then     ! north pole region
 | 
|---|
 | 613 |     nr = jr;
 | 
|---|
 | 614 |     n_before = 2 * nr * (nr - 1);
 | 
|---|
 | 615 |     kshift = 0;
 | 
|---|
 | 616 |   }
 | 
|---|
 | 617 |   else if( jr>3*nside ) {//then ! south pole region
 | 
|---|
 | 618 |     nr = nl4 - jr;
 | 
|---|
 | 619 |     n_before = npix - 2 * (nr + 1) * nr;
 | 
|---|
 | 620 |     kshift = 0;
 | 
|---|
 | 621 |   }
 | 
|---|
 | 622 |   
 | 
|---|
 | 623 |   //c     computes the phi coordinate on the sphere, in [0,2Pi]
 | 
|---|
 | 624 |   jp = (jpll[face_num]*nr + jpt + 1 + kshift)/2;//  ! 'phi' number in the ring in {1,4*nr}
 | 
|---|
 | 625 |   
 | 
|---|
 | 626 |   if( jp>nl4 ) jp = jp - nl4;
 | 
|---|
 | 627 |   if( jp<1 )   jp = jp + nl4;
 | 
|---|
 | 628 |   
 | 
|---|
 | 629 |   int aux=n_before + jp - 1;
 | 
|---|
 | 630 |   return (n_before + jp - 1);// ! in {0, npix-1}
 | 
|---|
 | 631 | }
 | 
|---|
 | 632 | 
 | 
|---|
 | 633 | template<class T>
 | 
|---|
 | 634 | int SphereGorski<T>::ring2nest(int nside, int ipring) const 
 | 
|---|
 | 635 | {
 | 
|---|
 | 636 |   /*
 | 
|---|
 | 637 |     ==================================================
 | 
|---|
 | 638 |     subroutine ring2nest(nside, ipring, ipnest)
 | 
|---|
 | 639 |     ==================================================
 | 
|---|
 | 640 |     c     conversion from RING to NESTED pixel number
 | 
|---|
 | 641 |     ==================================================
 | 
|---|
 | 642 |   */
 | 
|---|
 | 643 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
 | 
|---|
 | 644 |   //  (16/12/98)
 | 
|---|
 | 645 | 
 | 
|---|
 | 646 |   const PIXELS_XY& PXY= PIXELS_XY::instance();
 | 
|---|
 | 647 | 
 | 
|---|
 | 648 |   double fihip, hip;
 | 
|---|
 | 649 |   int npix, nl2, nl4, ncap, ip, iphi, ipt, ipring1;
 | 
|---|
 | 650 |   int     kshift, face_num, nr;
 | 
|---|
 | 651 |   int irn, ire, irm, irs, irt, ifm , ifp;
 | 
|---|
 | 652 |   int ix, iy, ix_low, ix_hi, iy_low, iy_hi, ipf;
 | 
|---|
 | 653 |   int ns_max(8192);
 | 
|---|
 | 654 |   
 | 
|---|
 | 655 |   // coordinate of the lowest corner of each face
 | 
|---|
 | 656 |   int jrll[12]={2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4};// ! in unit of nside
 | 
|---|
 | 657 |   int jpll[12]={1, 3, 5, 7, 0, 2, 4, 6, 1, 3, 5, 7};//! in unit of nside/2
 | 
|---|
 | 658 |   
 | 
|---|
 | 659 |   if( nside<1 || nside>ns_max ) {
 | 
|---|
 | 660 |     cout << "nside out of range" << endl;
 | 
|---|
 | 661 |     exit(0);
 | 
|---|
 | 662 |   }
 | 
|---|
 | 663 |   npix = 12 * nside*nside;
 | 
|---|
 | 664 |   if( ipring<0 || ipring>npix-1 ) {
 | 
|---|
 | 665 |     cout << "ipring out of range" << endl;
 | 
|---|
 | 666 |     exit(0);
 | 
|---|
 | 667 |   }
 | 
|---|
 | 668 |   
 | 
|---|
 | 669 |   nl2 = 2*nside;
 | 
|---|
 | 670 |   nl4 = 4*nside;
 | 
|---|
 | 671 |   npix = 12*nside*nside;//      ! total number of points
 | 
|---|
 | 672 |   ncap = 2*nside*(nside-1);// ! points in each polar cap, =0 for nside =1
 | 
|---|
 | 673 |   ipring1 = ipring + 1;
 | 
|---|
 | 674 |   
 | 
|---|
 | 675 |   //c     finds the ring number, the position of the ring and the face number
 | 
|---|
 | 676 |   if( ipring1<=ncap ) {//then
 | 
|---|
 | 677 |     
 | 
|---|
 | 678 |     hip   = ipring1/2.;
 | 
|---|
 | 679 |     fihip = (int)floor ( hip );
 | 
|---|
 | 680 |     irn   = (int)floor( sqrt( hip - sqrt(fihip) ) ) + 1;// ! counted from North pole
 | 
|---|
 | 681 |     iphi  = ipring1 - 2*irn*(irn - 1);
 | 
|---|
 | 682 |     
 | 
|---|
 | 683 |     kshift = 0;
 | 
|---|
 | 684 |     nr = irn   ;//               ! 1/4 of the number of points on the current ring
 | 
|---|
 | 685 |     face_num = (iphi-1) / irn;// ! in {0,3}
 | 
|---|
 | 686 |   }
 | 
|---|
 | 687 |   else if( ipring1<=nl2*(5*nside+1) ) {//then
 | 
|---|
 | 688 |     
 | 
|---|
 | 689 |     ip    = ipring1 - ncap - 1;
 | 
|---|
 | 690 |     irn   = (int)floor( ip / nl4 ) + nside;//               ! counted from North pole
 | 
|---|
 | 691 |     iphi  = (int)fmod(ip,nl4) + 1;
 | 
|---|
 | 692 |     
 | 
|---|
 | 693 |     kshift  = (int)fmod(irn+nside,2);//  ! 1 if irn+nside is odd, 0 otherwise
 | 
|---|
 | 694 |     nr = nside;
 | 
|---|
 | 695 |     ire =  irn - nside + 1;// ! in {1, 2*nside +1}
 | 
|---|
 | 696 |     irm =  nl2 + 2 - ire;
 | 
|---|
 | 697 |     ifm = (iphi - ire/2 + nside -1) / nside;// ! face boundary
 | 
|---|
 | 698 |     ifp = (iphi - irm/2 + nside -1) / nside;
 | 
|---|
 | 699 |     if( ifp==ifm ) {//then          ! faces 4 to 7
 | 
|---|
 | 700 |       face_num = (int)fmod(ifp,4) + 4;
 | 
|---|
 | 701 |     }
 | 
|---|
 | 702 |     else if( ifp + 1==ifm ) {//then ! (half-)faces 0 to 3
 | 
|---|
 | 703 |       face_num = ifp;
 | 
|---|
 | 704 |     }
 | 
|---|
 | 705 |     else if( ifp - 1==ifm ) {//then ! (half-)faces 8 to 11
 | 
|---|
 | 706 |       face_num = ifp + 7;
 | 
|---|
 | 707 |     }
 | 
|---|
 | 708 |   }
 | 
|---|
 | 709 |   else {
 | 
|---|
 | 710 |     
 | 
|---|
 | 711 |     ip    = npix - ipring1 + 1;
 | 
|---|
 | 712 |     hip   = ip/2.;
 | 
|---|
 | 713 |     fihip = floor ( hip );
 | 
|---|
 | 714 |     irs   = (int)floor( sqrt( hip - sqrt(fihip) ) ) + 1;//  ! counted from South pole
 | 
|---|
 | 715 |     iphi  = 4*irs + 1 - (ip - 2*irs*(irs-1));
 | 
|---|
 | 716 |     
 | 
|---|
 | 717 |     kshift = 0;
 | 
|---|
 | 718 |     nr = irs;
 | 
|---|
 | 719 |     irn   = nl4 - irs;
 | 
|---|
 | 720 |     face_num = (iphi-1) / irs + 8;// ! in {8,11}
 | 
|---|
 | 721 |   }
 | 
|---|
 | 722 |   
 | 
|---|
 | 723 |   //c     finds the (x,y) on the face
 | 
|---|
 | 724 |   irt =   irn  - jrll[face_num]*nside + 1;//       ! in {-nside+1,0}
 | 
|---|
 | 725 |   ipt = 2*iphi - jpll[face_num]*nr - kshift - 1;// ! in {-nside+1,nside-1}
 | 
|---|
 | 726 | 
 | 
|---|
 | 727 | 
 | 
|---|
 | 728 |   if( ipt>=nl2 ) ipt = ipt - 8*nside;// ! for the face #4
 | 
|---|
 | 729 |   
 | 
|---|
 | 730 |   ix =  (ipt - irt ) / 2;
 | 
|---|
 | 731 |   iy = -(ipt + irt ) / 2;
 | 
|---|
 | 732 |   
 | 
|---|
 | 733 |   ix_low = (int)fmod(ix,128);
 | 
|---|
 | 734 |   ix_hi  = ix/128;
 | 
|---|
 | 735 |   iy_low = (int)fmod(iy,128);
 | 
|---|
 | 736 |   iy_hi  = iy/128;
 | 
|---|
 | 737 |   ipf=(PXY.x2pix_(ix_hi)+PXY.y2pix_(iy_hi))*(128*128)+(PXY.x2pix_(ix_low)+PXY.y2pix_(iy_low));
 | 
|---|
 | 738 | 
 | 
|---|
 | 739 |   return (ipf + face_num* nside *nside);//   ! in {0, 12*nside**2 - 1}
 | 
|---|
 | 740 | }
 | 
|---|
 | 741 | 
 | 
|---|
 | 742 | template<class T>
 | 
|---|
 | 743 | int SphereGorski<T>::ang2pix_ring(int nside, double theta, double phi) const 
 | 
|---|
 | 744 | {
 | 
|---|
 | 745 |   /*
 | 
|---|
 | 746 |     ==================================================
 | 
|---|
 | 747 |     c     gives the pixel number ipix (RING) 
 | 
|---|
 | 748 |     c     corresponding to angles theta and phi
 | 
|---|
 | 749 |     c==================================================
 | 
|---|
 | 750 |   */
 | 
|---|
 | 751 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
 | 
|---|
 | 752 |   //  (16/12/98)
 | 
|---|
 | 753 | 
 | 
|---|
 | 754 |   int nl2, nl4, ncap, npix, jp, jm, ipix1;
 | 
|---|
 | 755 |   double  z, za, tt, tp, tmp;
 | 
|---|
 | 756 |   int ir, ip, kshift;
 | 
|---|
 | 757 | 
 | 
|---|
 | 758 |   double piover2(Pi/2.);
 | 
|---|
 | 759 |   double twopi(2.*Pi);
 | 
|---|
 | 760 |   double z0(2./3.);
 | 
|---|
 | 761 |   int ns_max(8192);
 | 
|---|
 | 762 | 
 | 
|---|
 | 763 |   if( nside<1 || nside>ns_max ) {
 | 
|---|
 | 764 |     cout << "nside out of range" << endl;
 | 
|---|
 | 765 |     exit(0);
 | 
|---|
 | 766 |   }
 | 
|---|
 | 767 | 
 | 
|---|
 | 768 |   if( theta<0. || theta>Pi) {
 | 
|---|
 | 769 |     cout << "theta out of range" << endl;
 | 
|---|
 | 770 |     exit(0);
 | 
|---|
 | 771 |   }
 | 
|---|
 | 772 | 
 | 
|---|
 | 773 |   z = cos(theta);
 | 
|---|
 | 774 |   za = fabs(z);
 | 
|---|
 | 775 |   if( phi >= twopi)  phi = phi - twopi;
 | 
|---|
 | 776 |   if (phi < 0.)     phi = phi + twopi;
 | 
|---|
 | 777 |   tt = phi / piover2;//  ! in [0,4)
 | 
|---|
 | 778 | 
 | 
|---|
 | 779 |   nl2 = 2*nside;
 | 
|---|
 | 780 |   nl4 = 4*nside;
 | 
|---|
 | 781 |   ncap  = nl2*(nside-1);// ! number of pixels in the north polar cap
 | 
|---|
 | 782 |   npix  = 12*nside*nside;
 | 
|---|
 | 783 | 
 | 
|---|
 | 784 |   if( za <= z0 ) {
 | 
|---|
 | 785 |     
 | 
|---|
 | 786 |     jp = (int)floor(nside*(0.5 + tt - z*0.75));// ! index of  ascending edge line 
 | 
|---|
 | 787 |     jm = (int)floor(nside*(0.5 + tt + z*0.75));// ! index of descending edge line
 | 
|---|
 | 788 | 
 | 
|---|
 | 789 |     ir = nside + 1 + jp - jm;// ! in {1,2n+1} (ring number counted from z=2/3)
 | 
|---|
 | 790 |     kshift = 0;
 | 
|---|
 | 791 |     if (fmod(ir,2)==0.) kshift = 1;// ! kshift=1 if ir even, 0 otherwise
 | 
|---|
 | 792 |     
 | 
|---|
 | 793 |     ip = (int)floor( ( jp+jm - nside + kshift + 1 ) / 2 ) + 1;// ! in {1,4n}
 | 
|---|
 | 794 |     if( ip>nl4 ) ip = ip - nl4;
 | 
|---|
 | 795 |     
 | 
|---|
 | 796 |     ipix1 = ncap + nl4*(ir-1) + ip ;
 | 
|---|
 | 797 |   }
 | 
|---|
 | 798 |   else {
 | 
|---|
 | 799 | 
 | 
|---|
 | 800 |     tp = tt - floor(tt);//      !MOD(tt,1.d0)
 | 
|---|
 | 801 |     tmp = sqrt( 3.*(1. - za) );
 | 
|---|
 | 802 | 
 | 
|---|
 | 803 |     jp = (int)floor( nside * tp * tmp );// ! increasing edge line index
 | 
|---|
 | 804 |     jm = (int)floor( nside * (1. - tp) * tmp );// ! decreasing edge line index
 | 
|---|
 | 805 | 
 | 
|---|
 | 806 |     ir = jp + jm + 1;//        ! ring number counted from the closest pole
 | 
|---|
 | 807 |     ip = (int)floor( tt * ir ) + 1;// ! in {1,4*ir}
 | 
|---|
 | 808 |     if( ip>4*ir ) ip = ip - 4*ir;
 | 
|---|
 | 809 |       
 | 
|---|
 | 810 |     ipix1 = 2*ir*(ir-1) + ip;
 | 
|---|
 | 811 |       if( z<=0. ) {
 | 
|---|
 | 812 |         ipix1 = npix - 2*ir*(ir+1) + ip;
 | 
|---|
 | 813 |       }
 | 
|---|
 | 814 |   }
 | 
|---|
 | 815 |     return (ipix1 - 1);// ! in {0, npix-1}
 | 
|---|
 | 816 | }
 | 
|---|
 | 817 | 
 | 
|---|
 | 818 | template<class T>
 | 
|---|
 | 819 | int SphereGorski<T>::ang2pix_nest(int nside, double theta, double phi) const 
 | 
|---|
 | 820 | {
 | 
|---|
 | 821 |   /*
 | 
|---|
 | 822 |     ==================================================
 | 
|---|
 | 823 |     subroutine ang2pix_nest(nside, theta, phi, ipix)
 | 
|---|
 | 824 |     ==================================================
 | 
|---|
 | 825 |     c     gives the pixel number ipix (NESTED) 
 | 
|---|
 | 826 |     c     corresponding to angles theta and phi
 | 
|---|
 | 827 |     c
 | 
|---|
 | 828 |     c     the computation is made to the highest resolution available (nside=8192)
 | 
|---|
 | 829 |     c     and then degraded to that required (by integer division)
 | 
|---|
 | 830 |     c     this doesn't cost more, and it makes sure 
 | 
|---|
 | 831 |     c     that the treatement of round-off will be consistent 
 | 
|---|
 | 832 |     c     for every resolution
 | 
|---|
 | 833 |     ==================================================
 | 
|---|
 | 834 |   */
 | 
|---|
 | 835 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
 | 
|---|
 | 836 |   //  (16/12/98)
 | 
|---|
 | 837 |   
 | 
|---|
 | 838 |   const PIXELS_XY& PXY= PIXELS_XY::instance();
 | 
|---|
 | 839 | 
 | 
|---|
 | 840 |   double    z, za, z0, tt, tp, tmp;
 | 
|---|
 | 841 |   int face_num,jp,jm;
 | 
|---|
 | 842 |   int ifp, ifm;
 | 
|---|
 | 843 |   int  ix, iy, ix_low, ix_hi, iy_low, iy_hi, ipf, ntt;
 | 
|---|
 | 844 |   double piover2(Pi/2.), twopi(2.*Pi);
 | 
|---|
 | 845 |   int ns_max(8192);
 | 
|---|
 | 846 |   
 | 
|---|
 | 847 |   if( nside<1 || nside>ns_max ) {
 | 
|---|
 | 848 |     cout << "nside out of range" << endl;
 | 
|---|
 | 849 |     exit(0);
 | 
|---|
 | 850 |   }
 | 
|---|
 | 851 |   if( theta<0 || theta>Pi ) {
 | 
|---|
 | 852 |     cout << "theta out of range" << endl;
 | 
|---|
 | 853 |     exit(0);
 | 
|---|
 | 854 |   }
 | 
|---|
 | 855 |   z  = cos(theta);
 | 
|---|
 | 856 |   za = fabs(z);
 | 
|---|
 | 857 |   z0 = 2./3.;
 | 
|---|
 | 858 |   if( phi>=twopi ) phi = phi - twopi;
 | 
|---|
 | 859 |   if( phi<0. )    phi = phi + twopi;
 | 
|---|
 | 860 |   tt = phi / piover2;// ! in [0,4[
 | 
|---|
 | 861 |   if( za<=z0 ) { // then ! equatorial region
 | 
|---|
 | 862 |     
 | 
|---|
 | 863 |     //(the index of edge lines increase when the longitude=phi goes up)
 | 
|---|
 | 864 |     jp = (int)floor(ns_max*(0.5 + tt - z*0.75));// !  ascending edge line index
 | 
|---|
 | 865 |     jm = (int)floor(ns_max*(0.5 + tt + z*0.75));// ! descending edge line index
 | 
|---|
 | 866 |     
 | 
|---|
 | 867 |     //c        finds the face
 | 
|---|
 | 868 |     ifp = jp / ns_max;//  ! in {0,4}
 | 
|---|
 | 869 |     ifm = jm / ns_max;
 | 
|---|
 | 870 |     if( ifp==ifm ) face_num = (int)fmod(ifp,4) + 4; //then  ! faces 4 to 7
 | 
|---|
 | 871 |     else if( ifp<ifm ) face_num = (int)fmod(ifp,4); // (half-)faces 0 to 3
 | 
|---|
 | 872 |     else face_num = (int)fmod(ifm,4) + 8;//! (half-)faces 8 to 11
 | 
|---|
 | 873 |     
 | 
|---|
 | 874 |     ix = (int)fmod(jm, ns_max);
 | 
|---|
 | 875 |     iy = ns_max - (int)fmod(jp, ns_max) - 1;
 | 
|---|
 | 876 |   }
 | 
|---|
 | 877 |   else { //! polar region, za > 2/3
 | 
|---|
 | 878 |     
 | 
|---|
 | 879 |     ntt = (int)floor(tt);
 | 
|---|
 | 880 |     if( ntt>=4 ) ntt = 3;
 | 
|---|
 | 881 |     tp = tt - ntt;
 | 
|---|
 | 882 |     tmp = sqrt( 3.*(1. - za) );//  ! in ]0,1]
 | 
|---|
 | 883 |     
 | 
|---|
 | 884 |     //(the index of edge lines increase when distance from the closest pole goes up)
 | 
|---|
 | 885 |     jp = (int)floor(ns_max*tp*tmp); // ! line going toward the pole as phi increases
 | 
|---|
 | 886 |     jm = (int)floor(ns_max*(1.-tp)*tmp); // ! that one goes away of the closest pole
 | 
|---|
 | 887 |     jp = (int)min(ns_max-1, jp);// ! for points too close to the boundary
 | 
|---|
 | 888 |     jm = (int)min(ns_max-1, jm);
 | 
|---|
 | 889 |     
 | 
|---|
 | 890 |     // finds the face and pixel's (x,y)
 | 
|---|
 | 891 |     if( z>=0 ) {
 | 
|---|
 | 892 |       face_num = ntt;//  ! in {0,3}
 | 
|---|
 | 893 |       ix = ns_max - jm - 1;
 | 
|---|
 | 894 |       iy = ns_max - jp - 1;
 | 
|---|
 | 895 |     }
 | 
|---|
 | 896 |     else {
 | 
|---|
 | 897 |       face_num = ntt + 8;// ! in {8,11}
 | 
|---|
 | 898 |       ix =  jp;
 | 
|---|
 | 899 |       iy =  jm;
 | 
|---|
 | 900 |     }
 | 
|---|
 | 901 |   }
 | 
|---|
 | 902 |   
 | 
|---|
 | 903 |   ix_low = (int)fmod(ix,128);
 | 
|---|
 | 904 |   ix_hi  =     ix/128;
 | 
|---|
 | 905 |   iy_low = (int)fmod(iy,128);
 | 
|---|
 | 906 |   iy_hi  =     iy/128;
 | 
|---|
 | 907 |   ipf= (PXY.x2pix_(ix_hi)+PXY.y2pix_(iy_hi))*(128*128)+(PXY.x2pix_(ix_low)+PXY.y2pix_(iy_low));
 | 
|---|
 | 908 |   //  ipf = ipf / pow(ns_max/nside,2.);//  ! in {0, nside**2 - 1}
 | 
|---|
 | 909 |   //  return ( ipf + face_num*pow(nside,2));//    ! in {0, 12*nside**2 - 1}
 | 
|---|
 | 910 |   // $CHECK$  Reza 25/10/99 , pow remplace par *
 | 
|---|
 | 911 |   ipf = ipf / ((ns_max/nside)*(ns_max/nside));
 | 
|---|
 | 912 |   return (ipf + face_num*nside*nside);
 | 
|---|
 | 913 | }
 | 
|---|
 | 914 | 
 | 
|---|
 | 915 | template<class T>
 | 
|---|
 | 916 | void SphereGorski<T>::pix2ang_ring(int nside,int ipix,double& theta,double& phi) const {
 | 
|---|
 | 917 |   /*
 | 
|---|
 | 918 |     ===================================================
 | 
|---|
 | 919 |     c     gives theta and phi corresponding to pixel ipix (RING) 
 | 
|---|
 | 920 |     c     for a parameter nside
 | 
|---|
 | 921 |     ===================================================
 | 
|---|
 | 922 |   */
 | 
|---|
 | 923 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
 | 
|---|
 | 924 |   //  (16/12/98)
 | 
|---|
 | 925 |   
 | 
|---|
 | 926 |   int nl2, nl4, npix, ncap, iring, iphi, ip, ipix1;
 | 
|---|
 | 927 |   double  fact1, fact2, fodd, hip, fihip;
 | 
|---|
 | 928 |   
 | 
|---|
 | 929 |   int ns_max(8192);
 | 
|---|
 | 930 |   
 | 
|---|
 | 931 |   if( nside<1 || nside>ns_max ) {
 | 
|---|
 | 932 |     cout << "nside out of range" << endl;
 | 
|---|
 | 933 |     exit(0);
 | 
|---|
 | 934 |   }
 | 
|---|
 | 935 |   npix = 12*nside*nside;      // ! total number of points
 | 
|---|
 | 936 |   if( ipix<0 || ipix>npix-1 ) {
 | 
|---|
 | 937 |     cout << "ipix out of range" << endl;
 | 
|---|
 | 938 |     exit(0);
 | 
|---|
 | 939 |   }
 | 
|---|
 | 940 |   
 | 
|---|
 | 941 |   ipix1 = ipix + 1; // in {1, npix}
 | 
|---|
 | 942 |   nl2 = 2*nside;
 | 
|---|
 | 943 |   nl4 = 4*nside;
 | 
|---|
 | 944 |   ncap = 2*nside*(nside-1);// ! points in each polar cap, =0 for nside =1
 | 
|---|
 | 945 |   fact1 = 1.5*nside;
 | 
|---|
 | 946 |   fact2 = 3.0*nside*nside;
 | 
|---|
 | 947 |   
 | 
|---|
 | 948 |   if( ipix1 <= ncap ) {  //! North Polar cap -------------
 | 
|---|
 | 949 |     
 | 
|---|
 | 950 |     hip   = ipix1/2.;
 | 
|---|
 | 951 |     fihip = floor(hip);
 | 
|---|
 | 952 |     iring = (int)floor( sqrt( hip - sqrt(fihip) ) ) + 1;// ! counted from North pole
 | 
|---|
 | 953 |     iphi  = ipix1 - 2*iring*(iring - 1);
 | 
|---|
 | 954 |     
 | 
|---|
 | 955 |     theta = acos( 1. - iring*iring / fact2 );
 | 
|---|
 | 956 |     phi   = (1.*iphi - 0.5) * Pi/(2.*iring);
 | 
|---|
 | 957 |     //    cout << theta << " " << phi << endl;
 | 
|---|
 | 958 |   }
 | 
|---|
 | 959 |   else if( ipix1 <= nl2*(5*nside+1) ) {//then ! Equatorial region ------
 | 
|---|
 | 960 |     
 | 
|---|
 | 961 |     ip    = ipix1 - ncap - 1;
 | 
|---|
 | 962 |     iring = (int)floor( ip / nl4 ) + nside;// ! counted from North pole
 | 
|---|
 | 963 |     iphi  = (int)fmod(ip,nl4) + 1;
 | 
|---|
 | 964 |     
 | 
|---|
 | 965 |     fodd  = 0.5 * (1 + fmod((double)(iring+nside),2));//  ! 1 if iring+nside is odd, 1/2 otherwise
 | 
|---|
 | 966 |     theta = acos( (nl2 - iring) / fact1 );
 | 
|---|
 | 967 |     phi   = (1.*iphi - fodd) * Pi /(2.*nside);
 | 
|---|
 | 968 |   }
 | 
|---|
 | 969 |   else {//! South Polar cap -----------------------------------
 | 
|---|
 | 970 |     
 | 
|---|
 | 971 |     ip    = npix - ipix1 + 1;
 | 
|---|
 | 972 |     hip   = ip/2.;
 | 
|---|
 | 973 |     fihip = 1.*hip;
 | 
|---|
 | 974 |     iring = (int)floor( sqrt( hip - sqrt(fihip) ) ) + 1;//     ! counted from South pole
 | 
|---|
 | 975 |     iphi  = (int)(4.*iring + 1 - (ip - 2.*iring*(iring-1)));
 | 
|---|
 | 976 |     
 | 
|---|
 | 977 |     theta = acos( -1. + iring*iring / fact2 );
 | 
|---|
 | 978 |     phi   = (1.*iphi - 0.5) * Pi/(2.*iring);
 | 
|---|
 | 979 |     //    cout << theta << " " << phi << endl;
 | 
|---|
 | 980 |   }
 | 
|---|
 | 981 | }
 | 
|---|
 | 982 | 
 | 
|---|
 | 983 | template<class T>
 | 
|---|
 | 984 | void SphereGorski<T>::pix2ang_nest(int nside,int ipix,double& theta,double& phi) const {
 | 
|---|
 | 985 |   /*
 | 
|---|
 | 986 |     ==================================================
 | 
|---|
 | 987 |     subroutine pix2ang_nest(nside, ipix, theta, phi)
 | 
|---|
 | 988 |     ==================================================
 | 
|---|
 | 989 |     c     gives theta and phi corresponding to pixel ipix (NESTED) 
 | 
|---|
 | 990 |     c     for a parameter nside
 | 
|---|
 | 991 |     ==================================================
 | 
|---|
 | 992 |   */
 | 
|---|
 | 993 |   // tranlated from FORTRAN (Gorski) to C, by B. Revenu, revised Guy Le Meur
 | 
|---|
 | 994 |   //  (16/12/98)
 | 
|---|
 | 995 | 
 | 
|---|
 | 996 |   const PIXELS_XY& PXY= PIXELS_XY::instance();
 | 
|---|
 | 997 |     
 | 
|---|
 | 998 |   int npix, npface, face_num;
 | 
|---|
 | 999 |   int ipf, ip_low, ip_trunc, ip_med, ip_hi;
 | 
|---|
 | 1000 |   int ix, iy, jrt, jr, nr, jpt, jp, kshift, nl4;
 | 
|---|
 | 1001 |   double z, fn, fact1, fact2;
 | 
|---|
 | 1002 |   double piover2(Pi/2.);
 | 
|---|
 | 1003 |   int ns_max(8192);
 | 
|---|
 | 1004 |           
 | 
|---|
 | 1005 |   // ! coordinate of the lowest corner of each face
 | 
|---|
 | 1006 |   int jrll[12]={2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4};//! in unit of nside
 | 
|---|
 | 1007 |   int jpll[12]={1, 3, 5, 7, 0, 2, 4, 6, 1, 3, 5, 7};// ! in unit of nside/2
 | 
|---|
 | 1008 |   
 | 
|---|
 | 1009 |   if( nside<1 || nside>ns_max ) {
 | 
|---|
 | 1010 |     cout << "nside out of range" << endl;
 | 
|---|
 | 1011 |     exit(0);
 | 
|---|
 | 1012 |   }
 | 
|---|
 | 1013 |   npix = 12 * nside*nside;
 | 
|---|
 | 1014 |   if( ipix<0 || ipix>npix-1 ) {
 | 
|---|
 | 1015 |     cout << "ipix out of range" << endl;
 | 
|---|
 | 1016 |     exit(0);
 | 
|---|
 | 1017 |   }
 | 
|---|
 | 1018 |   
 | 
|---|
 | 1019 |   fn = 1.*nside;
 | 
|---|
 | 1020 |   fact1 = 1./(3.*fn*fn);
 | 
|---|
 | 1021 |   fact2 = 2./(3.*fn);
 | 
|---|
 | 1022 |   nl4   = 4*nside;
 | 
|---|
 | 1023 | 
 | 
|---|
 | 1024 |   //c     finds the face, and the number in the face
 | 
|---|
 | 1025 |   npface = nside*nside;
 | 
|---|
 | 1026 |   
 | 
|---|
 | 1027 |   face_num = ipix/npface;//  ! face number in {0,11}
 | 
|---|
 | 1028 |   ipf = (int)fmod(ipix,npface);//  ! pixel number in the face {0,npface-1}
 | 
|---|
 | 1029 |   
 | 
|---|
 | 1030 |   //c     finds the x,y on the face (starting from the lowest corner)
 | 
|---|
 | 1031 |   //c     from the pixel number
 | 
|---|
 | 1032 |   ip_low = (int)fmod(ipf,1024);//       ! content of the last 10 bits
 | 
|---|
 | 1033 |   ip_trunc =   ipf/1024 ;//       ! truncation of the last 10 bits
 | 
|---|
 | 1034 |   ip_med = (int)fmod(ip_trunc,1024);//  ! content of the next 10 bits
 | 
|---|
 | 1035 |   ip_hi  =     ip_trunc/1024   ;//! content of the high weight 10 bits
 | 
|---|
 | 1036 |   
 | 
|---|
 | 1037 |   ix = 1024*PXY.pix2x_(ip_hi)+32*PXY.pix2x_(ip_med)+PXY.pix2x_(ip_low);
 | 
|---|
 | 1038 |   iy = 1024*PXY.pix2y_(ip_hi)+32*PXY.pix2y_(ip_med)+PXY.pix2y_(ip_low);
 | 
|---|
 | 1039 |   
 | 
|---|
 | 1040 |   //c     transforms this in (horizontal, vertical) coordinates
 | 
|---|
 | 1041 |   jrt = ix + iy;//  ! 'vertical' in {0,2*(nside-1)}
 | 
|---|
 | 1042 |   jpt = ix - iy;//  ! 'horizontal' in {-nside+1,nside-1}
 | 
|---|
 | 1043 |   
 | 
|---|
 | 1044 |   //c     computes the z coordinate on the sphere
 | 
|---|
 | 1045 |   //      jr =  jrll[face_num+1]*nside - jrt - 1;//   ! ring number in {1,4*nside-1}
 | 
|---|
 | 1046 |   jr =  jrll[face_num]*nside - jrt - 1;
 | 
|---|
 | 1047 |   nr = nside;//                  ! equatorial region (the most frequent)
 | 
|---|
 | 1048 |   z  = (2*nside-jr)*fact2;
 | 
|---|
 | 1049 |   kshift = (int)fmod(jr - nside, 2);
 | 
|---|
 | 1050 |   if( jr<nside ) { //then     ! north pole region
 | 
|---|
 | 1051 |     nr = jr;
 | 
|---|
 | 1052 |     z = 1. - nr*nr*fact1;
 | 
|---|
 | 1053 |     kshift = 0;
 | 
|---|
 | 1054 |   }
 | 
|---|
 | 1055 |   else {
 | 
|---|
 | 1056 |     if( jr>3*nside ) {// then ! south pole region
 | 
|---|
 | 1057 |       nr = nl4 - jr;
 | 
|---|
 | 1058 |       z = - 1. + nr*nr*fact1;
 | 
|---|
 | 1059 |       kshift = 0;
 | 
|---|
 | 1060 |     }
 | 
|---|
 | 1061 |   }
 | 
|---|
 | 1062 |   theta = acos(z);
 | 
|---|
 | 1063 |   
 | 
|---|
 | 1064 |   //c     computes the phi coordinate on the sphere, in [0,2Pi]
 | 
|---|
 | 1065 |   //      jp = (jpll[face_num+1]*nr + jpt + 1 + kshift)/2;//  ! 'phi' number in the ring in {1,4*nr}
 | 
|---|
 | 1066 |   jp = (jpll[face_num]*nr + jpt + 1 + kshift)/2;
 | 
|---|
 | 1067 |   if( jp>nl4 ) jp = jp - nl4;
 | 
|---|
 | 1068 |   if( jp<1 )   jp = jp + nl4;
 | 
|---|
 | 1069 |   phi = (jp - (kshift+1)*0.5) * (piover2 / nr);
 | 
|---|
 | 1070 | }
 | 
|---|
 | 1071 | 
 | 
|---|
 | 1072 | 
 | 
|---|
 | 1073 | 
 | 
|---|
 | 1074 | template <class T>
 | 
|---|
 | 1075 | void SphereGorski<T>::print(ostream& os) const
 | 
|---|
 | 1076 | {
 | 
|---|
 | 1077 |   if(mInfo_) os << "  DVList Info= " << *mInfo_ << endl;
 | 
|---|
 | 1078 |   //
 | 
|---|
 | 1079 |   os << " nSide_ = " << nSide_  << endl;
 | 
|---|
 | 1080 |   os << " nPix_   = " << nPix_   << endl;
 | 
|---|
 | 1081 |   os << " omeg_ = " << omeg_   << endl;
 | 
|---|
 | 1082 | 
 | 
|---|
 | 1083 |   os << " content of pixels : ";
 | 
|---|
 | 1084 |   for(int i=0; i < nPix_; i++)
 | 
|---|
 | 1085 |     {
 | 
|---|
 | 1086 |       if(i%5 == 0) os << endl;
 | 
|---|
 | 1087 |       os <<  pixels_(i) <<", ";
 | 
|---|
 | 1088 |     }
 | 
|---|
 | 1089 |   os << endl;
 | 
|---|
 | 1090 | 
 | 
|---|
 | 1091 |   os << endl;
 | 
|---|
 | 1092 |   //const PIXELS_XY& PXY= PIXELS_XY::instance();
 | 
|---|
 | 1093 | 
 | 
|---|
 | 1094 |   //os << endl;  os << " contenu des tableaux conversions "<<endl;
 | 
|---|
 | 1095 |   //for(int i=0; i < 5; i++)
 | 
|---|
 | 1096 |   //  {
 | 
|---|
 | 1097 |   //   os<<PXY.pix2x_(i)<<", "<<PXY.pix2y_(i)<<", "<<PXY.x2pix_(i)<<", "<<PXY.y2pix_(i)<<endl;
 | 
|---|
 | 1098 |   // }
 | 
|---|
 | 1099 |   os << endl;
 | 
|---|
 | 1100 | 
 | 
|---|
 | 1101 | }
 | 
|---|
 | 1102 | 
 | 
|---|
 | 1103 | //*******************************************************************
 | 
|---|
 | 1104 | // Class FIO_SphereGorski<T>
 | 
|---|
 | 1105 | //  Les objets delegues pour la gestion de persistance 
 | 
|---|
 | 1106 | //*******************************************************************
 | 
|---|
 | 1107 | 
 | 
|---|
 | 1108 | template <class T>
 | 
|---|
 | 1109 | FIO_SphereGorski<T>::FIO_SphereGorski()
 | 
|---|
 | 1110 | {
 | 
|---|
 | 1111 |   dobj= new SphereGorski<T>;
 | 
|---|
 | 1112 |   ownobj= true;
 | 
|---|
 | 1113 | }
 | 
|---|
 | 1114 | 
 | 
|---|
 | 1115 | template <class T>
 | 
|---|
 | 1116 | FIO_SphereGorski<T>::FIO_SphereGorski(string const& filename)
 | 
|---|
 | 1117 | {
 | 
|---|
 | 1118 |   dobj= new SphereGorski<T>;
 | 
|---|
 | 1119 |   dobj->DataBlock().SetTemp(true);
 | 
|---|
 | 1120 |   ownobj= true;
 | 
|---|
 | 1121 |   Read(filename);
 | 
|---|
 | 1122 | }
 | 
|---|
 | 1123 | 
 | 
|---|
 | 1124 | template <class T>
 | 
|---|
 | 1125 | FIO_SphereGorski<T>::FIO_SphereGorski(const SphereGorski<T>& obj)
 | 
|---|
 | 1126 | {
 | 
|---|
 | 1127 |   dobj= new SphereGorski<T>(obj, true);
 | 
|---|
 | 1128 |   dobj->DataBlock().SetTemp(true);
 | 
|---|
 | 1129 |   ownobj= true;
 | 
|---|
 | 1130 | }
 | 
|---|
 | 1131 | 
 | 
|---|
 | 1132 | template <class T>
 | 
|---|
 | 1133 | FIO_SphereGorski<T>::FIO_SphereGorski(SphereGorski<T>* obj)
 | 
|---|
 | 1134 | {
 | 
|---|
 | 1135 |   dobj= obj;
 | 
|---|
 | 1136 |   ownobj= false;
 | 
|---|
 | 1137 | }
 | 
|---|
 | 1138 | 
 | 
|---|
 | 1139 | template <class T>
 | 
|---|
 | 1140 | FIO_SphereGorski<T>::~FIO_SphereGorski()
 | 
|---|
 | 1141 | {
 | 
|---|
 | 1142 |   if (ownobj && dobj) delete dobj;
 | 
|---|
 | 1143 | }
 | 
|---|
 | 1144 | 
 | 
|---|
 | 1145 | template <class T>
 | 
|---|
 | 1146 | AnyDataObj* FIO_SphereGorski<T>::DataObj()
 | 
|---|
 | 1147 | {
 | 
|---|
 | 1148 |   return(dobj);
 | 
|---|
 | 1149 | }
 | 
|---|
 | 1150 | 
 | 
|---|
 | 1151 | template <class T>
 | 
|---|
 | 1152 | void FIO_SphereGorski<T>::ReadSelf(PInPersist& is)
 | 
|---|
 | 1153 | {
 | 
|---|
 | 1154 | 
 | 
|---|
 | 1155 |   if(dobj == NULL) 
 | 
|---|
 | 1156 |     {
 | 
|---|
 | 1157 |       dobj= new SphereGorski<T>;
 | 
|---|
 | 1158 |       dobj->DataBlock().SetTemp(true);
 | 
|---|
 | 1159 |       ownobj= true;      
 | 
|---|
 | 1160 |     }
 | 
|---|
 | 1161 | 
 | 
|---|
 | 1162 | // Let's Read the SphereCoordSys object  -- ATTENTIOn - $CHECK$
 | 
|---|
 | 1163 |   SphereCoordSys* cs = dynamic_cast<SphereCoordSys*>(is.ReadObject());
 | 
|---|
 | 1164 |   dobj->SetCoordSys(cs);
 | 
|---|
 | 1165 | 
 | 
|---|
 | 1166 |   // Pour savoir s'il y avait un DVList Info associe
 | 
|---|
 | 1167 |   char strg[256];
 | 
|---|
 | 1168 |   is.GetLine(strg, 255);
 | 
|---|
 | 1169 |   bool hadinfo= false;
 | 
|---|
 | 1170 |   if(strncmp(strg+strlen(strg)-7, "HasInfo", 7) == 0)  hadinfo= true;
 | 
|---|
 | 1171 |   if(hadinfo) 
 | 
|---|
 | 1172 |     {    // Lecture eventuelle du DVList Info
 | 
|---|
 | 1173 |       is >> dobj->Info(); 
 | 
|---|
 | 1174 |     }
 | 
|---|
 | 1175 | 
 | 
|---|
 | 1176 |   int nSide;
 | 
|---|
 | 1177 |   is.GetI4(nSide);
 | 
|---|
 | 1178 |   dobj->setSizeIndex(nSide);
 | 
|---|
 | 1179 | 
 | 
|---|
 | 1180 |   int nPix;
 | 
|---|
 | 1181 |   is.GetI4(nPix);
 | 
|---|
 | 1182 |   dobj->setNbPixels(nPix);
 | 
|---|
 | 1183 | 
 | 
|---|
 | 1184 |   double Omega;
 | 
|---|
 | 1185 |   is.GetR8(Omega);
 | 
|---|
 | 1186 |   dobj->setPixSolAngle(Omega);
 | 
|---|
 | 1187 | 
 | 
|---|
 | 1188 | // On lit le DataBlock;
 | 
|---|
 | 1189 |   is >> dobj->DataBlock();
 | 
|---|
 | 1190 | }
 | 
|---|
 | 1191 | 
 | 
|---|
 | 1192 | template <class T>
 | 
|---|
 | 1193 | void FIO_SphereGorski<T>::WriteSelf(POutPersist& os) const
 | 
|---|
 | 1194 | {
 | 
|---|
 | 1195 | 
 | 
|---|
 | 1196 |   if(dobj == NULL) 
 | 
|---|
 | 1197 |     {
 | 
|---|
 | 1198 |       cout << " WriteSelf:: dobj= null " << endl;
 | 
|---|
 | 1199 |       return;
 | 
|---|
 | 1200 |     }
 | 
|---|
 | 1201 | 
 | 
|---|
 | 1202 | // Let's write the SphereCoordSys object
 | 
|---|
 | 1203 |   dobj->GetCoordSys()->Write(os);
 | 
|---|
 | 1204 | 
 | 
|---|
 | 1205 |   char strg[256];
 | 
|---|
 | 1206 |   int nSide= dobj->SizeIndex();
 | 
|---|
 | 1207 |   int nPix = dobj->NbPixels();
 | 
|---|
 | 1208 |  
 | 
|---|
 | 1209 |   if(dobj->ptrInfo()) 
 | 
|---|
 | 1210 |     {
 | 
|---|
 | 1211 |       sprintf(strg,"SphereGorski: NSide=%6d  NPix=%9d HasInfo",nSide,nPix);
 | 
|---|
 | 1212 |       os.PutLine(strg);
 | 
|---|
 | 1213 |       os << dobj->Info();
 | 
|---|
 | 1214 |     }
 | 
|---|
 | 1215 |   else 
 | 
|---|
 | 1216 |     { 
 | 
|---|
 | 1217 |       sprintf(strg,"SphereGorski: NSide=%6d  NPix=%9d ",nSide,nPix);
 | 
|---|
 | 1218 |       os.PutLine(strg);  
 | 
|---|
 | 1219 |     }
 | 
|---|
 | 1220 | 
 | 
|---|
 | 1221 |   os.PutI4(nSide);
 | 
|---|
 | 1222 |   os.PutI4(nPix);
 | 
|---|
 | 1223 |   os.PutR8(dobj->PixSolAngle(0));
 | 
|---|
 | 1224 | // On ecrit le dataBlock 
 | 
|---|
 | 1225 |   os << dobj->DataBlock();
 | 
|---|
 | 1226 | }
 | 
|---|
 | 1227 | 
 | 
|---|
 | 1228 | #ifdef __CXX_PRAGMA_TEMPLATES__
 | 
|---|
 | 1229 | #pragma define_template SphereGorski<double>
 | 
|---|
 | 1230 | #pragma define_template SphereGorski<float>
 | 
|---|
 | 1231 | #pragma define_template SphereGorski< complex<float> >
 | 
|---|
 | 1232 | #pragma define_template SphereGorski< complex<double> >
 | 
|---|
 | 1233 | #pragma define_template FIO_SphereGorski<double>
 | 
|---|
 | 1234 | #pragma define_template FIO_SphereGorski<float>
 | 
|---|
 | 1235 | #pragma define_template FIO_SphereGorski< complex<float> >
 | 
|---|
 | 1236 | #pragma define_template FIO_SphereGorski< complex<double> >
 | 
|---|
 | 1237 | #endif
 | 
|---|
 | 1238 | #if defined(ANSI_TEMPLATES) || defined(GNU_TEMPLATES)
 | 
|---|
 | 1239 | template class SphereGorski<double>;
 | 
|---|
 | 1240 | template class SphereGorski<float>;
 | 
|---|
 | 1241 | template class SphereGorski< complex<float> >;
 | 
|---|
 | 1242 | template class SphereGorski< complex<double> >;
 | 
|---|
 | 1243 | template class FIO_SphereGorski<double>;
 | 
|---|
 | 1244 | template class FIO_SphereGorski<float>;
 | 
|---|
 | 1245 | template class FIO_SphereGorski< complex<float> >;
 | 
|---|
 | 1246 | template class FIO_SphereGorski< complex<double> >;
 | 
|---|
 | 1247 | #endif
 | 
|---|
 | 1248 | 
 | 
|---|