| 1 | #include "sopnamsp.h"
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| 2 | #include "sphereecp.h"
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| 3 | #include <math.h>
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| 4 | 
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| 5 | /*!
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| 6 |   \class SOPHYA::SphereECP
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| 7 |   \ingroup SkyMap
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| 8 |   \brief Spherical maps in Equatorial Cylindrical Projection
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| 9 | 
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| 10 |   Class implementing spherical maps, with a pixelisation
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| 11 |   corresponding to the an Equatorial Cylindrical Projection.
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| 12 |   Pixel size varie from equator to poles. The sphere is divided 
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| 13 |   into a number of slices along the parallels. Each slice is subdivided
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| 14 |   into the same number of pixels.
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| 15 |   This class provides the possibility to have partial coverage.
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| 16 |   Can be used for the following types: <br>
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| 17 |   <tt> int_4 , r_4 , r_8 , complex<r_4> , complex<r_8> </tt>
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| 18 | */
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| 19 | 
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| 20 | namespace SOPHYA {
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| 21 | 
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| 22 | //! Default constructor
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| 23 | template <class T>
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| 24 | SphereECP<T>::SphereECP()
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| 25 |   : _pixels()
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| 26 | {
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| 27 |   _partial = false;
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| 28 |   _theta1 = 0.;
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| 29 |   _theta2 = M_PI;
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| 30 |   _phi1 = 0.;
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| 31 |   _phi2 = 2*M_PI;
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| 32 |   _outofmapidx = -99;
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| 33 |   _outofmapnphi = 0;
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| 34 |   _outofmapntet = 0;
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| 35 |   _outofmappix = 0;
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| 36 |   _outofmapval = 0;
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| 37 |   _dtheta = 0.;
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| 38 |   _dphi = 0.;
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| 39 | }
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| 40 | 
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| 41 | /*!
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| 42 |   \brief  Constructor with the pixelisation parameter m
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| 43 |   
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| 44 |   Complete coverage.
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| 45 |   The sphere is divided into \b m slices in theta (0..pi). each slice is divided
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| 46 |   into \b 2m pixels (along phi) 
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| 47 | */
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| 48 | template <class T>
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| 49 | SphereECP<T>::SphereECP(int m)
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| 50 |   : _pixels(2*m,m,0,0,0,true)
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| 51 | {
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| 52 |   _partial = false;
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| 53 |   _theta1 = 0.;
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| 54 |   _theta2 = M_PI;
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| 55 |   _phi1 = 0.;
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| 56 |   _phi2 = 2*M_PI;
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| 57 |   _outofmapidx = -99;
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| 58 |   _outofmapnphi = 0;
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| 59 |   _outofmapntet = 0;
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| 60 |   _outofmappix = 0;
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| 61 |   _outofmapval = 0;
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| 62 |   _dtheta = _dphi = M_PI/m;
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| 63 | }
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| 64 | 
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| 65 | /*! 
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| 66 |   Complete coverage.
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| 67 |   \b ntet slices in theta (0..pi) and \b nphi pixels (along phi) for 
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| 68 |   each slice in theta
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| 69 | */
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| 70 | template <class T>
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| 71 | SphereECP<T>::SphereECP(int ntet, int nphi)
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| 72 |   : _pixels(nphi,ntet,0,0,0,true)
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| 73 | {
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| 74 |   _partial = false;
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| 75 |   _theta1 = 0.;
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| 76 |   _theta2 = M_PI;
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| 77 |   _phi1 = 0.;
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| 78 |   _phi2 = 2*M_PI; 
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| 79 |   _outofmapidx = -99;
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| 80 |   _outofmapnphi = 0;
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| 81 |   _outofmapntet = 0;
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| 82 |   _outofmappix = 0;
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| 83 |   _outofmapval = 0;
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| 84 |   _dtheta = M_PI/ntet;
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| 85 |   _dphi = 2*M_PI/nphi;
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| 86 | }
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| 87 | 
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| 88 | /*! 
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| 89 |   Partial coverage : 
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| 90 |   \b ntet slices in theta , in the range (tet1 .. tet2) and \b nphi pixels (along phi) for 
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| 91 |   each slice in theta in the range (phi1 .. phi2) 
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| 92 | */
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| 93 | template <class T>
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| 94 | SphereECP<T>::SphereECP(r_8 tet1, r_8 tet2, int ntet, r_8 phi1, r_8 phi2, int nphi)
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| 95 |   : _pixels(nphi,ntet,0,0,0,true)
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| 96 | {
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| 97 |   if( (tet1 > M_PI) || (tet1 < 0.) || (tet2 > M_PI) || (tet2 < 0.) || 
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| 98 |       (phi1 < 0.) || (phi1 > 2*M_PI) || (phi1 < 0.) || (phi1 > 2*M_PI) ||
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| 99 |       (tet2 <= tet1) || (phi2 <= phi1) )
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| 100 |     throw  ParmError("SphereECP::SphereECP() Bad range for theta/phi limits");
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| 101 | 
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| 102 |    _partial = true;
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| 103 |   _theta1 = tet1;
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| 104 |   _theta2 = tet2;
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| 105 |   _phi1 = phi1;
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| 106 |   _phi2 = phi2; 
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| 107 |   _outofmapidx = _pixels.Size()+659;
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| 108 |   // Reza, 23 sep 2004 
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| 109 |   // pour des cartes partielles, et des pixels sur la sphere, mais 
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| 110 |   // en dehors de la couverture, on code le numero de tranche en theta, 
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| 111 |   // compte a partir de theta=0,phi=0 +  _outofmapidx
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| 112 |   // theta -> idx =  _outofmapidx + theta/_dtheta*_outofmapnphi +  _outofmapntet
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| 113 |   _outofmapntet = 0;
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| 114 |   _outofmappix = 0;
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| 115 |   _outofmapval = 0;
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| 116 |   _dtheta = (_theta2-_theta1)/ntet;
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| 117 |   _dphi = (_phi2-_phi1)/nphi;
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| 118 | 
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| 119 |   _outofmapntet = M_PI/_dtheta;
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| 120 |   _outofmapnphi = 2*M_PI/_dphi;
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| 121 | }
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| 122 | 
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| 123 | //! Copy constructor - shares the pixel data if \b share=true
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| 124 | template <class T>
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| 125 | SphereECP<T>::SphereECP(const SphereECP<T>& a, bool share)
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| 126 |   : _pixels(a._pixels, share)
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| 127 | {
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| 128 |   _partial = a._partial;
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| 129 |   _theta1 = a._theta1;
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| 130 |   _theta2 = a._theta2;
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| 131 |   _phi1 = a._phi1;
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| 132 |   _phi2 = a._phi2;   
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| 133 |   _outofmapidx = a._outofmapidx;
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| 134 |   _outofmapnphi = a._outofmapnphi;
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| 135 |   _outofmapntet = a._outofmapntet;
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| 136 |   _outofmappix = a._outofmappix;
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| 137 |   _outofmapval = a._outofmapval;
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| 138 |   _dtheta = a._dtheta;
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| 139 |   _dphi = a._dphi;
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| 140 | }
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| 141 | 
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| 142 | //! Copy constructor - shares the pixel data 
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| 143 | template <class T>
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| 144 | SphereECP<T>::SphereECP(const SphereECP<T>& a)
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| 145 |   : _pixels(a._pixels)
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| 146 | {
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| 147 |   _partial = a._partial;
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| 148 |   _theta1 = a._theta1;
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| 149 |   _theta2 = a._theta2;
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| 150 |   _phi1 = a._phi1;
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| 151 |   _phi2 = a._phi2;   
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| 152 |   _outofmapidx = a._outofmapidx;
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| 153 |   _outofmapnphi = a._outofmapnphi;
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| 154 |   _outofmapntet = a._outofmapntet;
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| 155 |   _outofmappix = a._outofmappix;
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| 156 |   _outofmapval = a._outofmapval;
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| 157 |   _dtheta = a._dtheta;
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| 158 |   _dphi = a._dphi;
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| 159 | }
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| 160 | 
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| 161 | template <class T>
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| 162 | SphereECP<T>::~SphereECP()
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| 163 | {
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| 164 | }
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| 165 | 
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| 166 | template <class T>
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| 167 | string SphereECP<T>::TypeOfMap() const
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| 168 | {
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| 169 |   return string("ECP");
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| 170 | }
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| 171 | 
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| 172 | template <class T>
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| 173 | void SphereECP<T>::SetTemp(bool temp) const
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| 174 | {
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| 175 |   _pixels.SetTemp(temp);
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| 176 | }
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| 177 | 
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| 178 | template <class T>
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| 179 | int_4 SphereECP<T>::NbPixels() const
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| 180 | {
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| 181 |   return _pixels.Size();
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| 182 | }
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| 183 | 
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| 184 | template <class T>
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| 185 | T& SphereECP<T>::PixVal(int_4 k)
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| 186 | {
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| 187 |   // On pourrait etre plus strict en demandant aussi k<_outofmapidx+_outofmapnphi*_outofmapntet (Reza 23/09/04)
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| 188 |   if ((_partial) && (k>=_outofmapidx))   return _outofmappix;
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| 189 |   if((k < 0) || (k >= _pixels.Size()) )  
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| 190 |      throw RangeCheckError("SphereECP::PIxVal() Pixel index out of range");
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| 191 |   return _pixels.DataBlock()(k);
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| 192 | }
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| 193 | 
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| 194 | template <class T>
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| 195 | T const& SphereECP<T>::PixVal(int_4 k)  const
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| 196 | {
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| 197 |   // On pourrait etre plus strict en demandant aussi k<_outofmapidx+_outofmapnphi*_outofmapntet (Reza 23/09/04)
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| 198 |   if ((_partial) && (k>=_outofmapidx))   return _outofmapval;
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| 199 |   if((k < 0) || (k >= _pixels.Size()) )  
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| 200 |      throw RangeCheckError("SphereECP::PIxVal() Pixel index out of range");
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| 201 |   //  return _pixels.DataBlock()(k);
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| 202 |   return _pixels.Data()[k];
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| 203 | }
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| 204 | 
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| 205 | template <class T>
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| 206 | bool  SphereECP<T>::ContainsSph(double theta, double phi) const
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| 207 | {
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| 208 |   if (_partial) {
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| 209 |     if ( (theta >= _theta1) && (theta <= _theta2) &&
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| 210 |          (phi >= _phi1) && (phi <= _phi2) )  return true;
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| 211 |     else return false;
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| 212 |   }
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| 213 |   else return false;
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| 214 | }
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| 215 | 
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| 216 | template <class T>
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| 217 | int_4  SphereECP<T>::PixIndexSph(double theta, double phi) const
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| 218 | {
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| 219 |   if((theta > M_PI) || (theta < 0.)) return(-1);
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| 220 |   if((phi < 0.) || (phi > 2*M_PI)) return(-1);
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| 221 |   if (_partial) {
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| 222 |     if ( (theta < _theta1) || (theta > _theta2) ||
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| 223 |          (phi < _phi1) || (phi > _phi2) )  return _outofmapidx+theta/_dtheta*_outofmapnphi+phi/_dphi;
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| 224 |   }
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| 225 |   int_4 it = (theta-_theta1)/_dtheta;
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| 226 |   int_4 jp = (phi-_phi1)/_dphi;
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| 227 |   return (it*_pixels.SizeX()+jp);
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| 228 | }
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| 229 | 
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| 230 | template <class T>
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| 231 | void  SphereECP<T>::PixThetaPhi(int_4 k, double& theta, double& phi) const
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| 232 | {
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| 233 |   if ((_partial) && (k>=_outofmapidx)) {
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| 234 |     theta = (((k-_outofmapidx) / _outofmapnphi)+0.5)*_dtheta;
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| 235 |     phi = (((k-_outofmapidx) % _outofmapnphi)+0.5)*_dphi;;
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| 236 |     return;
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| 237 |   }
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| 238 |   if((k < 0) || (k >= _pixels.Size()) )  
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| 239 |      throw RangeCheckError("SphereECP::PixThetaPhi() Pixel index out of range");
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| 240 | 
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| 241 |   int_4 it = k / _pixels.SizeX();
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| 242 |   int_4 jp = k % _pixels.SizeX();
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| 243 |   theta = _theta1+(it+0.5)*_dtheta;
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| 244 |   phi = _phi1*(jp+0.5)*_dphi;
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| 245 |   return;
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| 246 | }
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| 247 | 
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| 248 | template <class T>
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| 249 | T  SphereECP<T>::SetPixels(T v)
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| 250 | {
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| 251 |   _pixels = v;
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| 252 |   return v;
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| 253 | }
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| 254 | 
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| 255 | template <class T>
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| 256 | double  SphereECP<T>::PixSolAngle(int_4 k) const
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| 257 | {
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| 258 |   if ((_partial) && (k>=_outofmapidx)) {
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| 259 |     double theta = (((k-_outofmapidx) / _outofmapnphi)+0.5)*_dtheta;
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| 260 |     return (_dtheta*_dphi*sin(theta));
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| 261 |   }
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| 262 |   if((k < 0) || (k >= _pixels.Size()) )  
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| 263 |      throw RangeCheckError("SphereECP::PixSolAngle(int_4 k) Pixel index out of range");
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| 264 | 
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| 265 |   int_4 it = k / _pixels.SizeX();
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| 266 |   double theta = _theta1+it*_dtheta;
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| 267 |   return (_dtheta*_dphi*sin(theta));
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| 268 | }
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| 269 | 
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| 270 | template <class T>
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| 271 | int_4  SphereECP<T>::SizeIndex() const
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| 272 | {
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| 273 |   return _pixels.SizeY();
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| 274 | }
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| 275 | 
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| 276 | template <class T>
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| 277 | void  SphereECP<T>::Resize(int_4 m)
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| 278 | {
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| 279 |   if ( (m <= 0) || ( m == _pixels.SizeY()) ) { 
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| 280 |     cout << " SphereECP<T>::Resize(int_4 " << m << ") m<0 ou m=NTheta - Ne fait rien " << endl;
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| 281 |     return;
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| 282 |   }
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| 283 |   int mphi = m;
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| 284 |   if (_pixels.Size() > 0)  mphi = m*_pixels.SizeX()/_pixels.SizeY();
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| 285 |   cout << " SphereECP<T>::Resize(" << m 
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| 286 |        << ") -> _pixels.Resize(" << mphi << "," << m << ")" << endl; 
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| 287 |   sa_size_t sz[5] = {0,0,0,0,0};
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| 288 |   sz[0] = mphi;  sz[1] = m;
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| 289 |   _pixels.ReSize(2,sz);
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| 290 |   _outofmapidx = _pixels.Size()+659;
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| 291 |   _dtheta = (_theta2-_theta1)/m;
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| 292 |   _dphi = (_phi2-_phi1)/mphi;
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| 293 | 
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| 294 |   _outofmapntet = M_PI/_dtheta;
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| 295 |   _outofmapnphi = 2*M_PI/_dphi;
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| 296 |   return;
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| 297 | }
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| 298 | 
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| 299 | template <class T>
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| 300 | uint_4  SphereECP<T>::NbThetaSlices() const
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| 301 | {
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| 302 |   return _pixels.SizeY();
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| 303 | }
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| 304 | 
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| 305 | template <class T>
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| 306 | r_8  SphereECP<T>::ThetaOfSlice(int_4 index) const
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| 307 | {
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| 308 |   if( (index < 0) || (index >= _pixels.SizeY()) )  
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| 309 |      throw RangeCheckError("SphereECP::ThetaOfSlice() theta index out of range");
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| 310 |   return (_theta1 + (index+0.5)*_dtheta);
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| 311 |  
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| 312 | }
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| 313 | 
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| 314 | template <class T>
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| 315 | void  SphereECP<T>::GetThetaSlice(int_4 index,r_8& theta, 
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| 316 |                                   TVector<r_8>& phi, TVector<T>& value) const 
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| 317 | {
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| 318 |   if( (index < 0) || (index >= _pixels.SizeY()) )  
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| 319 |      throw RangeCheckError("SphereECP::GetThetaSlice() index out of range");
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| 320 | 
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| 321 |   theta = _theta1 + (index+0.5)*_dtheta;
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| 322 |   int_4 nphit = 2.*M_PI/_dphi;
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| 323 |   phi.ReSize(nphit); 
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| 324 |   value.ReSize(nphit); 
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| 325 |   int_4 ioff = _phi1/_dphi;
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| 326 |   int_4 i;
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| 327 |   for(i=0; i<ioff; i++) {
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| 328 |     phi(i) = _phi1 + (i-ioff+0.5)*_dphi;
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| 329 |     value(i) = _outofmapval;
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| 330 |   }
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| 331 |   for(i=ioff; i<ioff+_pixels.SizeX(); i++) {
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| 332 |     phi(i) = _phi1 + (i-ioff+0.5)*_dphi;
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| 333 |     value(i) = _pixels(i-ioff,index,0);
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| 334 |   }
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| 335 |   for(i=ioff+_pixels.SizeX(); i<nphit; i++) {
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| 336 |     phi(i) = _phi1 + (i-ioff+0.5)*_dphi;
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| 337 |     value(i) = _outofmapval;
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| 338 |   }
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| 339 |   return;
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| 340 | }
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| 341 | 
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| 342 | template <class T>
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| 343 | void  SphereECP<T>::GetThetaSlice(int_4 index, r_8& theta, r_8& phi0, 
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| 344 |                                   TVector<int_4>& pixidx, TVector<T>& value) const
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| 345 | {
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| 346 |   if( (index < 0) || (index >= _pixels.SizeY()) )  
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| 347 |     throw RangeCheckError("SphereECP::GetThetaSlice() index out of range");
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| 348 |   
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| 349 |   theta = _theta1 + (index+0.5)*_dtheta;
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| 350 |   int_4 ioff = _phi1/_dphi;
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| 351 |   phi0 = _phi1 - (ioff-0.5)*_dphi;
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| 352 | 
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| 353 |   int_4 nphit = 2.*M_PI/_dphi;
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| 354 |   pixidx.ReSize(nphit); 
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| 355 |   value.ReSize(nphit);
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| 356 |  
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| 357 |   int_4 i;
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| 358 |   for(i=0; i<ioff; i++) {
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| 359 |     pixidx(i) = _outofmapidx+theta/_dtheta*_outofmapnphi+phi0/_dphi+i;
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| 360 |     value(i) = _outofmapval;
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| 361 |   }
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| 362 |   for(i=ioff; i<ioff+_pixels.SizeX(); i++) {
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| 363 |     pixidx(i) = index*_pixels.SizeX()+(i-ioff);
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| 364 |     value(i) = _pixels(i-ioff,index,0);
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| 365 |   }
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| 366 |   for(i=ioff+_pixels.SizeX(); i<nphit; i++) {
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| 367 |     pixidx(i) = _outofmapidx+theta/_dtheta*_outofmapnphi+phi0/_dphi+i;
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| 368 |     value(i) = _outofmapval;
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| 369 |   }
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| 370 |   return;
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| 371 | 
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| 372 | }
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| 373 | 
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| 374 | template <class T>
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| 375 | T*  SphereECP<T>::GetThetaSliceDataPtr(int_4 index)
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| 376 | {
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| 377 |   if( (index < 0) || (index >= _pixels.SizeY()) )  
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| 378 |     throw RangeCheckError("SphereECP::GetThetaSliceDataPtr() index out of range");
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| 379 |   int_4 ioff = _phi1/_dphi;
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| 380 |   if (ioff != 0) return NULL;
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| 381 |   return _pixels.Data() + index*_pixels.SizeX();
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| 382 | }
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| 383 | 
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| 384 | template <class T>
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| 385 | void  SphereECP<T>::Show(ostream& os) const
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| 386 | {
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| 387 |   PixelMap<T>::Show(os);
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| 388 |   if (_partial)
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| 389 |     os << "SphereECP<T>::Print() - Partial ECP Map NPhi=" << _pixels.SizeX() 
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| 390 |        << " x NTheta= " <<  _pixels.SizeY() << " SolidAngle=" << PixSolAngle() << "\n"
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| 391 |        << "ThetaLimits= " << _theta1 << " .. " << _theta2 
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| 392 |        << "  PhiLimits= " << _phi1 << " .. " << _phi2 << endl;
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| 393 |   else 
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| 394 |     os << "SphereECP<T>::Print() - Full ECP Map NPhi=" << _pixels.SizeX() 
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| 395 |        << " x NTheta= " <<  _pixels.SizeY() << " SolidAngle=" << PixSolAngle() << endl;
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| 396 | }
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| 397 | 
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| 398 | template <class T>
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| 399 | void  SphereECP<T>::Print(ostream& os) const
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| 400 | {
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| 401 |   Show(os);
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| 402 |   os << _pixels;
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| 403 | }
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| 404 | 
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| 405 | template <class T>
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| 406 | SphereECP<T>&  SphereECP<T>::Set(const SphereECP<T>& a)
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| 407 | {
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| 408 |   _pixels.Set(a._pixels);
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| 409 |   _partial = a._partial;
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| 410 |   _theta1 = a._theta1;
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| 411 |   _theta2 = a._theta2;
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| 412 |   _phi1 = a._phi1;
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| 413 |   _phi2 = a._phi2;   
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| 414 |   _outofmapidx = a._outofmapidx;
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| 415 |   _outofmapnphi = a._outofmapnphi;
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| 416 |   _outofmapntet = a._outofmapntet;
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| 417 |   _outofmappix = a._outofmappix;
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| 418 |   _outofmapval = a._outofmapval;
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| 419 |   _dtheta = a._dtheta;
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| 420 |   _dphi = a._dphi; 
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| 421 |   return *this ;
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| 422 | }
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| 423 | 
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| 424 | template <class T>
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| 425 | SphereECP<T>&  SphereECP<T>::SetCst(T x)
 | 
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| 426 | {
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|---|
| 427 |   _pixels.SetCst(x);
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| 428 |   return *this ;
 | 
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| 429 | }
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| 430 | 
 | 
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| 431 | template <class T>
 | 
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| 432 | SphereECP<T>&  SphereECP<T>::AddCst(T x)
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|---|
| 433 | {
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| 434 |   _pixels += x;
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| 435 |   return *this ;
 | 
|---|
| 436 | }
 | 
|---|
| 437 | 
 | 
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| 438 | template <class T>
 | 
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| 439 | SphereECP<T>&  SphereECP<T>::MulCst(T x)
 | 
|---|
| 440 | {
 | 
|---|
| 441 |   _pixels *= x;
 | 
|---|
| 442 |   return *this ;
 | 
|---|
| 443 | }
 | 
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| 444 | 
 | 
|---|
| 445 | 
 | 
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| 446 | 
 | 
|---|
| 447 | }// Fin du namespace
 | 
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| 448 | 
 | 
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| 449 | 
 | 
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| 450 | #ifdef __CXX_PRAGMA_TEMPLATES__
 | 
|---|
| 451 | #pragma define_template SphereECP<int_4>
 | 
|---|
| 452 | #pragma define_template SphereECP<r_4>
 | 
|---|
| 453 | #pragma define_template SphereECP<r_8>
 | 
|---|
| 454 | #pragma define_template SphereECP< complex<r_4> >
 | 
|---|
| 455 | #pragma define_template SphereECP< complex<r_8> >
 | 
|---|
| 456 | #endif
 | 
|---|
| 457 | #if defined(ANSI_TEMPLATES) || defined(GNU_TEMPLATES)
 | 
|---|
| 458 | namespace SOPHYA {
 | 
|---|
| 459 | template class SphereECP<int_4>;
 | 
|---|
| 460 | template class SphereECP<r_4>;
 | 
|---|
| 461 | template class SphereECP<r_8>;
 | 
|---|
| 462 | template class SphereECP< complex<r_4> >;
 | 
|---|
| 463 | template class SphereECP< complex<r_8> >;
 | 
|---|
| 464 | }
 | 
|---|
| 465 | #endif
 | 
|---|
| 466 | 
 | 
|---|