| [658] | 1 | #ifndef SPHEREGORSKI_SEEN
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 | 2 | #define SPHEREGORSKI_SEEN
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 | 3 | 
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 | 4 | #include "sphericalmap.h"
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 | 5 | #include "tvector.h"
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 | 6 | #include "ndatablock.h"
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 | 7 | 
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 | 8 | #include "anydataobj.h"
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 | 9 | #include "ppersist.h"
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 | 10 | 
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 | 11 | 
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 | 12 | // ***************** CLASSE SphereGorski *****************************
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 | 13 | 
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 | 14 | //!  class SphereGorski
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 | 15 | /*!
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 | 16 |    Pixelisation Gorski  
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 | 17 | 
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 | 18 | 
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 | 19 |     -----------------------------------------------------------------------
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 | 20 |      version 0.8.2  Aug97 TAC  Eric Hivon, Kris Gorski
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 | 21 |     -----------------------------------------------------------------------
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 | 22 | 
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 | 23 |     the sphere is split in 12 diamond-faces containing nside**2 pixels each
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 | 24 | 
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 | 25 |     the numbering of the pixels (in the nested scheme) is similar to
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 | 26 |     quad-cube
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 | 27 |     In each face the first pixel is in the lowest corner of the diamond
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 | 28 | 
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 | 29 |     the faces are                    (x,y) coordinate on each face
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 | 30 | \verbatim
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 | 31 |         .   .   .   .   <--- North Pole
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 | 32 |        / \ / \ / \ / \                          ^        ^     
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 | 33 |       . 0 . 1 . 2 . 3 . <--- z = 2/3             \      / 
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 | 34 |        \ / \ / \ / \ /                        y   \    /  x  
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 | 35 |       4 . 5 . 6 . 7 . 4 <--- equator               \  /      
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 | 36 |        / \ / \ / \ / \                              \/      
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 | 37 |       . 8 . 9 .10 .11 . <--- z = -2/3              (0,0) : lowest corner 
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 | 38 |        \ / \ / \ / \ /      
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 | 39 |         .   .   .   .   <--- South Pole
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 | 40 | \endverbatim
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 | 41 |     phi:0               2Pi                                 
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 | 42 | 
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 | 43 |    in the ring scheme pixels are numbered along the parallels
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 | 44 |    the first parallel is the one closest to the north pole and so on  
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 | 45 |    on each parallel, pixels are numbered starting from the one closest
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 | 46 |     to phi = 0
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 | 47 | 
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 | 48 |     nside MUST be a power of 2 (<= 8192)
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 | 49 | 
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 | 50 | */
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 | 51 | 
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 | 52 | template<class T>
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 | 53 | class SphereGorski : public SphericalMap<T>
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 | 54 | {
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 | 55 | 
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 | 56 | public :
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 | 57 | 
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 | 58 | SphereGorski();
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 | 59 | /*!    
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 | 60 |   m is the "nside" of the Gorski algorithm
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 | 61 | 
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 | 62 |   The total number of pixels will be Npix =  12*nside**2
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 | 63 | 
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 | 64 |   nside MUST be a power of 2 (<= 8192)
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 | 65 | */
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 | 66 | SphereGorski(int m);
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 | 67 | SphereGorski(const SphereGorski<T>& s, bool share=false);
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 | 68 | //!     Destructor
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 | 69 | virtual ~SphereGorski();
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 | 70 | 
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 | 71 | // ------------------ Definition of PixelMap abstract methods
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 | 72 | 
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 | 73 | /* Nombre de pixels du decoupage */
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 | 74 | /*!    Return number of  pixels of the  splitting */
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 | 75 | virtual int NbPixels() const;
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 | 76 | inline void setNbPixels(int n) {nPix_= n;}
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 | 77 | 
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 | 78 | /* Valeur du contenu du pixel d'indice "RING" k  */
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 | 79 | /*!    Return value of  pixel with "RING" index k */
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 | 80 | virtual T& PixVal(int k);
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 | 81 | virtual T const& PixVal(int k) const;
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 | 82 | 
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 | 83 | /* Nombre de tranches en theta */ 
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 | 84 | /*!    Return number of slices in theta direction on the  sphere */
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 | 85 | int NbThetaSlices() const;
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 | 86 | /*!   For a theta-slice with index 'index', return : 
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 | 87 | 
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 | 88 |    the corresponding "theta" 
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 | 89 | 
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 | 90 |     a vector containing the phi's of the pixels of the slice
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 | 91 | 
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 | 92 |     a vector containing the corresponding values of pixels 
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 | 93 | */
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 | 94 | void GetThetaSlice(int index,double& theta,TVector<double>& phi,TVector<T>& value) const;
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 | 95 | 
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 | 96 | /* Return true if teta,phi in map  */
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 | 97 | virtual bool ContainsSph(double theta, double phi) const;
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 | 98 | /* Indice "RING" du pixel vers lequel pointe une direction definie par 
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 | 99 | ses  coordonnees spheriques */                                    
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 | 100 | /*!  Return "RING" index of the pixel corresponding to direction (theta, phi).
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 | 101 |  */
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 | 102 | virtual int PixIndexSph(double theta,double phi) const;
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 | 103 | 
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 | 104 | /* Coordonnees spheriques du milieu du pixel d'indice "RING" k   */
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 | 105 | virtual void PixThetaPhi(int k,double& theta,double& phi) const;
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 | 106 | 
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 | 107 | /*! Set all pixels to value v */
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 | 108 | virtual T SetPixels(T v);
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 | 109 | 
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 | 110 | /* Pixel Solid angle  (steradians) */
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 | 111 | /*!    Pixel Solid angle  (steradians)
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 | 112 | 
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 | 113 |     All the pixels have the same solid angle. The dummy argument is
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 | 114 |     for compatibility with eventual pixelizations which would not 
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 | 115 |    fulfil this requirement.
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 | 116 | */
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 | 117 | virtual double PixSolAngle(int dummy) const;
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 | 118 | inline void setPixSolAngle(double x) {omeg_= x;}
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 | 119 | 
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 | 120 | // --------------- Specific methods 
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 | 121 | 
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 | 122 | /*!    
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 | 123 |   m is the "nside" of the Gorski algorithm
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 | 124 | 
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 | 125 |   The total number of pixels will be Npix =  12*nside**2
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 | 126 | 
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 | 127 |   nside MUST be a power of 2 (<= 8192)
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 | 128 | */
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 | 129 | virtual void Resize(int m);
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 | 130 | 
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 | 131 | inline virtual char* TypeOfMap() const {return "RING";};
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 | 132 | 
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 | 133 | /* Valeur du contenu du pixel d'indice "NEST" k */
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 | 134 | /*!    Return value of  pixel with "NESTED" index k */
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 | 135 | virtual T& PixValNest(int k);
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 | 136 | /*!    Return value of  pixel with "NESTED" index k */
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 | 137 | virtual T const& PixValNest(int k) const;
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 | 138 | 
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 | 139 | /* Indice "NEST" du pixel vers lequel pointe une direction definie par 
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 | 140 | ses  coordonnees spheriques */                                    
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 | 141 | /*! Return "NESTED" index of the pixel corresponding to direction (theta, phi).
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 | 142 |  */
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 | 143 | virtual int PixIndexSphNest(double theta,double phi) const;
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 | 144 | 
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 | 145 | /* Coordonnees spheriques du milieu du pixel d'indice "NEST" k       */
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 | 146 | /*!   Return (theta,phi) coordinates of middle of  pixel with "NESTED" index k
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 | 147 |  */
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 | 148 | virtual void PixThetaPhiNest(int k,double& theta,double& phi) const;
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 | 149 | 
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 | 150 | /* algorithme de pixelisation */
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 | 151 | void Pixelize(int); 
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 | 152 | 
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 | 153 | /* convertit index nested en ring  */
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 | 154 | /*!    translation from NESTED index  into RING index */
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 | 155 | int NestToRing(int) const;
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 | 156 | 
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 | 157 | /* convertit index ring en nested" */
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 | 158 | /*!    translation from  RING index  into NESTED index */
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 | 159 | int RingToNest(int) const;
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 | 160 | 
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 | 161 | 
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 | 162 | /* retourne/fixe la valeur du parametre Gorski */
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 | 163 | inline virtual int SizeIndex() const {return(nSide_);}
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 | 164 | inline void setSizeIndex(int n) {nSide_= n;}
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 | 165 | 
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 | 166 | /* retourne les pointeurs /remplit les tableaux */
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 | 167 | inline const NDataBlock<T>* getDataBlock() const { return (&pixels_); }
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 | 168 | inline void setDataBlock(T* data,int m) { pixels_.FillFrom(m,data); }
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 | 169 | 
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 | 170 | /*  Acces to the DataBlock  */
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 | 171 | inline       NDataBlock<T>& DataBlock()       {return pixels_;}
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 | 172 | inline const NDataBlock<T>& DataBlock() const {return pixels_;}
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 | 173 | 
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 | 174 | 
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 | 175 | 
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 | 176 | /* impression */ 
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 | 177 | void print(ostream& os) const;
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 | 178 |          
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 | 179 | private :
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 | 180 | 
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 | 181 | // ------------- méthodes internes ----------------------
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 | 182 | void InitNul();
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 | 183 | 
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 | 184 | int  nest2ring(int nside,int ipnest) const;
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 | 185 | int  ring2nest(int nside,int ipring) const;
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 | 186 | 
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 | 187 | int  ang2pix_ring(int nside,double theta,double phi) const;
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 | 188 | int  ang2pix_nest(int nside,double theta,double phi) const;
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 | 189 | void pix2ang_ring(int nside,int ipix,double& theta,double& phi) const;
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 | 190 | void pix2ang_nest(int nside,int ipix,double& theta,double& phi) const;
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 | 191 | 
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 | 192 | // ------------- variables internes -----------------------
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 | 193 | int nSide_;
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 | 194 | int nPix_;
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 | 195 | double omeg_;
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 | 196 | 
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 | 197 | NDataBlock<T> pixels_;
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 | 198 | 
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 | 199 | };
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 | 200 | 
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 | 201 | //
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 | 202 | // ------------- Classe pour la gestion de persistance --
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 | 203 | //
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 | 204 | template <class T>
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 | 205 | class FIO_SphereGorski : public PPersist  
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 | 206 | {
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 | 207 | public:
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 | 208 | 
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 | 209 | FIO_SphereGorski();
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 | 210 | FIO_SphereGorski(string const & filename); 
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 | 211 | FIO_SphereGorski(const SphereGorski<T>& obj);
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 | 212 | FIO_SphereGorski(SphereGorski<T>* obj);
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 | 213 | virtual ~FIO_SphereGorski();
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 | 214 | virtual AnyDataObj* DataObj();
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 | 215 | inline operator SphereGorski<T>() { return(*dobj); }
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 | 216 | //inline SphereGorski<T> getObj() { return(*dobj); }
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 | 217 | 
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 | 218 | protected :
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 | 219 | 
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 | 220 | virtual void ReadSelf(PInPersist&);           
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 | 221 | virtual void WriteSelf(POutPersist&) const;  
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 | 222 | SphereGorski<T>* dobj;
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 | 223 | bool ownobj;
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 | 224 | };
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 | 225 | 
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 | 226 | //
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 | 227 | // ------------- Classe PIXELS_XY -----------------------
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 | 228 | //
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 | 229 | class PIXELS_XY
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 | 230 | {
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 | 231 | 
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 | 232 | public :
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 | 233 | 
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 | 234 | static PIXELS_XY& instance();
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 | 235 | 
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 | 236 | NDataBlock<int> pix2x_;
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 | 237 | NDataBlock<int> pix2y_;
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 | 238 | NDataBlock<int> x2pix_;
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 | 239 | NDataBlock<int> y2pix_;
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 | 240 | 
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 | 241 | private :
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 | 242 | 
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 | 243 | PIXELS_XY();
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 | 244 | void mk_pix2xy();
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 | 245 | void mk_xy2pix();
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 | 246 | };
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 | 247 | #endif
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