[764] | 1 | #ifndef SPHERETHETAPHI_SEEN
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| 2 | #define SPHERETHETAPHI_SEEN
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| 3 |
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| 4 | #include "sphericalmap.h"
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| 5 | #include "ndatablock.h"
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| 6 | #include "tvector.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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[840] | 11 | namespace SOPHYA {
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| 12 |
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| 13 |
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| 14 |
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[764] | 15 | template <class T>
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| 16 | class FIO_SphereThetaPhi;
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| 17 |
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| 18 |
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| 19 | // ***************** Class SphereThetaPhi *****************************
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| 20 | /*! sphere splitted with respect to theta, phi : each hemisphere is
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| 21 | splitted into (m-1) parallels (equator does not enter into account).
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| 22 | This operation defines m slices, each of which is splitted into
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| 23 | equidistant meridians. This splitting is realized in such a way that
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| 24 | all pixels have the same area and are as square as possible.
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| 25 |
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| 26 | One begins with the hemisphere with positive z, starting from the pole
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| 27 | toward the equator. The first pixel is the polar cap ; it is circular
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| 28 | and centered on theta=0.
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| 29 | */
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| 30 | template <class T>
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| 31 | class SphereThetaPhi : public SphericalMap<T>
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| 32 | {
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| 33 |
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| 34 | friend class FIO_SphereThetaPhi<T>;
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| 35 |
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| 36 | public :
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| 37 |
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| 38 | SphereThetaPhi();
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| 39 | /*! m is the number of slices in theta on an hemisphere (the polar cap
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| 40 | forms the first slice).
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| 41 | pet is a dummy parameter at the moment.
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| 42 | */
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| 43 | SphereThetaPhi(int_4 m);
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| 44 | SphereThetaPhi(const SphereThetaPhi<T>& s, bool share=false);
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| 45 | virtual ~SphereThetaPhi();
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| 46 |
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| 47 | /*! Setting blockdata to temporary (see ndatablock documentation) */
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| 48 | inline virtual void SetTemp(bool temp=false) const {pixels_.SetTemp(temp);};
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| 49 |
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| 50 | // ------------ Definition of PixelMap abstract methods -
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| 51 |
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| 52 | /* retourne le nombre de pixels */
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| 53 | /*! Return total number of pixels */
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| 54 | virtual int_4 NbPixels() const;
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| 55 |
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| 56 | /* retourne la valeur du pixel d'indice k */
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| 57 | /*! Return value of pixel with index k */
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| 58 | virtual T& PixVal(int_4 k);
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| 59 | virtual T const& PixVal(int_4 k) const;
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| 60 |
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| 61 | /* Return true if teta,phi in map */
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| 62 | virtual bool ContainsSph(double theta, double phi) const;
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| 63 | /* retourne l'indice du pixel a (theta,phi) */
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| 64 | /* Return index of the pixel corresponding to direction (theta, phi). */
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| 65 | virtual int_4 PixIndexSph(double theta, double phi) const;
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| 66 |
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| 67 | /* retourne les coordonnees Spheriques du centre du pixel d'indice k */
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| 68 | /*! Return (theta,phi) coordinates of middle of pixel with index k */
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| 69 | virtual void PixThetaPhi(int_4 k, double& theta, double& phi) const;
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| 70 |
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| 71 | /*! Setting pixel values to a constant */
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| 72 | virtual T SetPixels(T v);
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| 73 |
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| 74 | /* retourne/fixe l'angle Solide de Pixel (steradians) */
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| 75 | /*! Pixel Solid angle (steradians)
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| 76 |
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| 77 | All the pixels have the same solid angle. The dummy argument is
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| 78 | for compatibility with eventual pixelizations which would not
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| 79 | fulfil this requirement.
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| 80 | */
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| 81 | virtual double PixSolAngle(int_4 dummy=0) const;
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| 82 |
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| 83 | /* retourne/fixe la valeur du parametre de decoupage m */
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| 84 | inline virtual int_4 SizeIndex() const { return( NTheta_); }
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| 85 |
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| 86 | /* Acces to the DataBlock */
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| 87 | inline NDataBlock<T>& DataBlock() {return pixels_;}
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| 88 | inline const NDataBlock<T>& DataBlock() const {return pixels_;}
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| 89 |
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| 90 | // ------------- Specific methods ----------------------
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| 91 |
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| 92 | /*! re-pixelize the sphere */
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| 93 | virtual void Resize(int_4 m);
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| 94 |
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| 95 | inline virtual char* TypeOfMap() const {return "TETAFI";};
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| 96 |
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| 97 | /* Valeurs de theta des paralleles et phi des meridiens limitant le pixel d'indice k */
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| 98 | /* Return values of theta,phi which limit the pixel with index k */
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| 99 | virtual void Limits(int_4 k,double& th1,double& th2,double& phi1,double& phi2);
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| 100 |
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| 101 | /* Nombre de tranches en theta */
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| 102 | /*! Return number of theta-slices on the sphere */
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| 103 | uint_4 NbThetaSlices() const;
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| 104 |
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| 105 | /* Nombre de pixels en phi de la tranche d'indice kt */
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| 106 | int_4 NPhi(int_4 kt) const;
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| 107 |
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| 108 | /* Renvoie dans t1,t2 les valeurs respectives de theta min et theta max */
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| 109 | /* de la tranche d'indice kt */
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| 110 | /*! Return theta values which limit the slice kt */
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| 111 | void Theta(int_4 kt, double& t1, double& t2);
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| 112 |
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| 113 | /* Renvoie dans p1,p2 les valeurs phimin et phimax du pixel d'indice jp */
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| 114 | /* dans la tranche d'indice kt */
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| 115 | /*! Return values of phi which limit the jp-th pixel of the kt-th slice */
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| 116 | void Phi(int_4 kt, int_4 jp, double& p1, double& p2);
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| 117 |
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| 118 | /* Renvoie l'indice k du pixel d'indice jp dans la tranche d'indice kt */
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| 119 | /*! Return pixel index with sequence index jp in the slice kt */
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| 120 | int_4 Index(int_4 kt, int_4 jp) const;
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| 121 |
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| 122 | /* Indice kt de la tranche et indice jp du pixel d'indice k */
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| 123 | /*! Return indices kt (theta) and jp (phi) of pixel with index k */
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| 124 | void ThetaPhiIndex(int_4 k,int_4& kt,int_4& jp);
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| 125 |
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| 126 | /*! achieve the splitting into pixels (m has the same signification
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| 127 | as for the constructor)
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| 128 |
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| 129 | Each theta-slice of the north hemisphere will be spitted starting f
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| 130 | from phi=0 ...
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| 131 |
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| 132 | South hemisphere is scanned in the same direction according to phi
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| 133 | and from equator to the pole (the pixel following the last one of
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| 134 | the slice closest to the equator with z>0, is the pixel with lowest
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| 135 | phi of the slice closest of the equator with z<0).
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| 136 | */
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| 137 | void Pixelize(int_4);
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| 138 |
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| 139 | /*! For a theta-slice with index 'index', return :
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| 140 |
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| 141 | the corresponding "theta"
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| 142 |
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| 143 | a vector containing the phi's of the pixels of the slice
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| 144 |
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| 145 | a vector containing the corresponding values of pixels
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| 146 | */
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[840] | 147 | virtual void GetThetaSlice(int_4 index,r_8& theta,TVector<r_8>& phi,TVector<T>& value) const;
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[764] | 148 |
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| 149 | /*! For a theta-slice with index 'index', return :
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| 150 |
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| 151 | the corresponding "theta"
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| 152 |
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| 153 | the corresponding "phi" for first pixel of the slice
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| 154 |
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| 155 | a vector containing indices of the pixels of the slice
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| 156 |
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| 157 | (equally distributed in phi)
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| 158 |
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| 159 | a vector containing the corresponding values of pixels
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| 160 | */
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[840] | 161 | virtual void GetThetaSlice(int_4 index, r_8& theta, r_8& phi0,TVector<int_4>& pixelIndices, TVector<T>& value) const ;
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[764] | 162 |
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| 163 |
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| 164 | /* impression */
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| 165 | void print(ostream& os) const;
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| 166 |
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| 167 | private :
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| 168 |
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| 169 | // ------------- méthodes internes ----------------------
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| 170 | void InitNul();
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[840] | 171 | inline void setParameters( int nbThetaIndex, int nbpix, double omega)
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[764] | 172 | {
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| 173 | NPix_= nbpix;
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| 174 | Omega_= omega;
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| 175 | NTheta_= nbThetaIndex;
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| 176 | }
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| 177 |
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| 178 | // ------------- variables internes ---------------------
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| 179 | int_4 NTheta_; // nombre de tranches en theta, pour une demi-sphere
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| 180 | int_4 NPix_; // nombre total de pixels
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| 181 | double Omega_; // angle solide constant pour chaque pixel
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| 182 | NDataBlock<int_4> NPhi_; // tableau donnant, pour chaque bande en theta,
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| 183 | //le nombre de pixels selon phi
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| 184 | NDataBlock<int_4> TNphi_;
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| 185 | NDataBlock<r_8> Theta_;
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| 186 | NDataBlock<T> pixels_;
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| 187 | };
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| 188 |
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| 189 |
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| 190 |
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[840] | 191 | } // Fin du namespace
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[764] | 192 |
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| 193 | #endif
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