| 1 | // This may look like C code, but it is really -*- C++ -*-
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| 2 | #ifndef LOCALMAP_SEEN
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| 3 | #define LOCALMAP_SEEN
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| 4 | 
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| 5 | #include "pixelmap.h"
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| 6 | #include "sphericalmap.h"
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| 7 | #include "ndatablock.h"
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| 8 | 
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| 9 | #include "anydataobj.h"
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| 10 | #include "ppersist.h"
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| 11 | 
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| 12 | 
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| 13 | 
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| 14 | // ***************** Class LocalMap *****************************
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| 15 | 
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| 16 | 
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| 17 | 
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| 18 | namespace SOPHYA {
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| 19 | 
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| 20 | 
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| 21 | template <class T>
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| 22 | class FIO_LocalMap;
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| 23 | 
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| 24 | template<class T>
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| 25 | class FITS_LocalMap;
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| 26 | 
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| 27 | /* Class LocalMap */
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| 28 | 
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| 29 | 
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| 30 | template<class T>
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| 31 | class LocalMap : public PixelMap<T>
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| 32 | {
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| 33 | 
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| 34 |  // friend declaration for classes which handle persistence and FITS IO
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| 35 |   friend class FIO_LocalMap<T>; 
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| 36 |   friend class FITS_LocalMap<T>; 
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| 37 | 
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| 38 | public:
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| 39 | 
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| 40 | LocalMap();
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| 41 | LocalMap(int_4 nx, int_4 ny);
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| 42 | LocalMap(int_4 nx, int_4 ny, double angleX,double angleY, double theta0,double phi0,int_4 x0,int_4 y0,double angle=0.);
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| 43 | LocalMap(int_4 nx, int_4 ny, double angleX,double angleY, double theta0,double phi0, double angle=0.);
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| 44 | LocalMap(const LocalMap<T>& lm, bool share);
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| 45 | LocalMap(const LocalMap<T>& lm);
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| 46 | virtual ~LocalMap();
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| 47 | 
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| 48 | inline virtual bool IsTemp(void) const { return pixels_.IsTemp();}
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| 49 | 
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| 50 | /*! Setting blockdata to temporary (see ndatablock documentation) */
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| 51 | inline virtual void SetTemp(bool temp=false) const {pixels_.SetTemp(temp);};
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| 52 | 
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| 53 | 
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| 54 | // ---------- Overloading of () to access pixel number k ----
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| 55 | 
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| 56 | inline T& operator()(int_4 k) {return(this->PixVal(k));}
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| 57 | inline T const& operator()(int_4 k) const {return(this->PixVal(k));}
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| 58 | inline T& operator()(int_4 ix, int_4 iy) {return this->PixVal(iy*nSzX_+ix);};
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| 59 | inline T const& operator()(int_4 ix, int_4 iy) const {return this->PixVal(iy*nSzX_+ix);};
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| 60 | 
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| 61 | // Acces a un pixel 
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| 62 | inline T& operator()(double theta,double phi) {return(this->PixValSph(theta,phi));};
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| 63 | inline T  const& operator()(double theta,double phi) const {return(this->PixValSph(theta,phi));};
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| 64 |    
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| 65 | // ---------- Definition of PixelMap abstract methods -------
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| 66 | 
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| 67 | virtual int_4 NbPixels() const;   // D.Y. int change en int_4 rationalisation Mac
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| 68 |   
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| 69 | virtual T& PixVal(int_4 k);
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| 70 | virtual T const& PixVal(int_4 k) const;
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| 71 |   //! if fg = true, will generate  exceptions , when theta-phi out of range
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| 72 | inline  void SetThrowExceptionWhenOutofMapFlag(bool fg = false) { exc_outofmap_ = fg; }
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| 73 | 
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| 74 | //! true --> exceptions wil be active when theta-phi out of range 
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| 75 | inline  bool GetThrowExceptionWhenOutofMapFlag() { return exc_outofmap_; }
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| 76 | 
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| 77 | virtual bool ContainsSph(double theta, double phi) const;
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| 78 | //! return pixel number correspoinding to (theta,phi)
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| 79 | virtual int_4 PixIndexSph(double theta,double phi) const;
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| 80 |    
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| 81 | //! return (theta,phi) correspoinding to pixel number k
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| 82 | virtual void PixThetaPhi(int_4 k,double& theta,double& phi) const;
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| 83 | 
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| 84 | //! set all pixel values equal to v
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| 85 | virtual T SetPixels(T v);
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| 86 | 
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| 87 | // return the solid angle covered by pixel k (steradians)
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| 88 | virtual double PixSolAngle(int_4 k) const; 
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| 89 | 
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| 90 | // ---------- Specific methods ------------------------------
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| 91 | 
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| 92 | void ReSize(int_4 nx, int_4 ny);
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| 93 | 
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| 94 | void SetOrigin(double theta=90.,double phi=0.,double angle=0.);
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| 95 | void SetOrigin(double theta,double phi,int_4 x0,int_4 y0,double angle=0.);
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| 96 | void SetSize(double angleX,double angleY);
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| 97 | 
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| 98 |   /*! \fn TypeOfMap()
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| 99 |  return the string "LOCAL"
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| 100 |   */ 
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| 101 | inline virtual string TypeOfMap() const {return string("LOCAL");};
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| 102 |  
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| 103 | 
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| 104 | /*! Check to see if the local mapping is done */
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| 105 | inline bool LocalMap_isDone() const {return( originSet_ && angleSized_ && pixelSized_);};
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| 106 | 
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| 107 | void PixThetaPhi(int_4 ip,int_4 it, double& theta,double& phi) const;
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| 108 | 
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| 109 | 
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| 110 | void ProjectionToSphere(SphericalMap<T>&) const;
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| 111 |   
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| 112 | /* There should be a more complex algorithm somewhere to combine *several* local maps to a full sphere.
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| 113 |       -> static method, or separate class */
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| 114 |   
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| 115 | /*! provides a integer characterizing the pixelization refinement  (here : number of pixels) */
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| 116 | inline virtual int_4 SizeIndex() const {return(nPix_);}
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| 117 | inline int_4 Size_x() const {return nSzX_;}
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| 118 | inline int_4 Size_y() const {return nSzY_;}
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| 119 | 
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| 120 | /* Je rajoute ces 2 fonctions inlines pour compatibilite d'interface 
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| 121 |    avec TArray  -   Reza 30/8/2000                                   */
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| 122 | inline int_4 SizeX() const {return nSzX_;}
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| 123 | inline int_4 SizeY() const {return nSzY_;}
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| 124 | 
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| 125 | inline void Origin(double& theta,double& phi,int_4& x0,int_4& y0,double& angle) const {theta= thetaDegresC_; phi= phiDegresC_; x0= x0_; y0= y0_;angle= angleDegres_;}
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| 126 | 
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| 127 | /*! total aperture in theta and phi, in degrees ( from SetSize() ) */
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| 128 | inline void Aperture(double& anglex,double& angley) const {anglex= angleDegresX_; angley= angleDegresY_;}
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| 129 | 
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| 130 | 
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| 131 | /*  Acces to the DataBlock  */
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| 132 | inline       NDataBlock<T>& DataBlock()       {return pixels_.DataBlock();}
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| 133 | inline const NDataBlock<T>& DataBlock() const {return pixels_.DataBlock();}
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| 134 | 
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| 135 | /*  Acces to the matrix  */
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| 136 | //! access to matrix 
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| 137 | /*!
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| 138 |   \warning : a pixel is defined by the pair of a phi-like index 
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| 139 |    (x-axis) and a theta-like index (y-axis). The phi-like index denotes
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| 140 |    the column number in the matrix ; the theta-like index denotes the
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| 141 |    row number.
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| 142 | */
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| 143 | inline       TMatrix<T>& Matrix()       {return pixels_;}
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| 144 | inline const TMatrix<T>& Matrix() const {return pixels_;}
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| 145 | 
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| 146 | /* impression */ 
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| 147 | void print(ostream& os) const;
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| 148 | 
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| 149 | // Operations diverses  = , +=, ...
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| 150 | 
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| 151 | 
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| 152 | virtual LocalMap<T>& Set(const LocalMap<T>& a);
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| 153 | inline  LocalMap<T>& operator = (const LocalMap<T>& a) {return Set(a);}
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| 154 | 
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| 155 | // A += -= *= /= x (ajoute, soustrait, ... x a tous les elements)
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| 156 | 
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| 157 |   //! Fill LocalMap with all elements equal to \b x
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| 158 | virtual LocalMap<T>& SetT(T a); 
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| 159 | inline  LocalMap<T>& operator = (T a) {return SetT(a);}
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| 160 | 
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| 161 | // Add \b x to all elements
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| 162 | virtual LocalMap<T>& Add(T a); 
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| 163 | inline  LocalMap<T>&  operator += (T x)  { return Add(x); }
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| 164 | // Substract \b x to all elements
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| 165 | virtual LocalMap<T>& Sub(T a,bool fginv=false); 
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| 166 | inline   LocalMap<T>&  operator -= (T x)  { return Sub(x); }
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| 167 | // Multiply all elements by \b x
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| 168 | virtual LocalMap<T>& Mul(T a); 
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| 169 | inline  LocalMap<T>&  operator *= (T x)  { return Mul(x); }
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| 170 | // Divide all elements by \b x
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| 171 | virtual LocalMap<T>& Div(T a); 
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| 172 | inline  LocalMap<T>&  operator /= (T x)  { return Div(x); }
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| 173 | 
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| 174 | // A += -=  (ajoute, soustrait element par element les deux spheres )
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| 175 |   //! Operator LocalMap += LocalMap
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| 176 |   virtual LocalMap<T>&  AddElt(const LocalMap<T>& a);
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| 177 |   inline  LocalMap<T>&  operator += (const LocalMap<T>& a)  { return AddElt(a); }
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| 178 | 
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| 179 | 
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| 180 | 
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| 181 |   virtual LocalMap<T>&  SubElt(const LocalMap<T>& a);
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| 182 |   //! Operator LocalMap -= LocalMap
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| 183 |   inline  LocalMap<T>&  operator -= (const LocalMap<T>& a)  { return SubElt(a); }
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| 184 | // Multiplication, division element par element les deux LocalMap 
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| 185 |   virtual LocalMap<T>&  MulElt(const LocalMap<T>& a);
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| 186 |   inline  LocalMap<T>&  operator *= (const LocalMap<T>& a)  { return MulElt(a); }
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| 187 |   virtual LocalMap<T>&  DivElt(const LocalMap<T>& a);
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| 188 |   inline  LocalMap<T>&  operator /= (const LocalMap<T>& a)  { return DivElt(a); }
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| 189 | 
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| 190 | 
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| 191 | void CloneOrShare(const LocalMap<T>& a);
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| 192 | void Share(const LocalMap<T>& a);
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| 193 | LocalMap<T>& CopyElt(const LocalMap<T>& a);
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| 194 | 
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| 195 | //! assign a new object Id (or DataRef Id) - useful for PPF write operations
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| 196 |   inline void RenewObjId() { pixels_.RenewObjId(); }
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| 197 | 
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| 198 | // ---------- Méthodes internes -----------------------------
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| 199 |           
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| 200 | private :
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| 201 | 
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| 202 | void InitNul();
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| 203 | void SetCoorC(double theta0, double phi0);
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| 204 | TMatrix<double> CalculMatricePassage();
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| 205 | void Getij(int_4 k,int_4& i,int_4& j) const;
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| 206 |   void PixToSphereC(int_4 ip, int_4 it, double& XP, double& YP, double& ZP) const;
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| 207 | 
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| 208 | void recopierVariablesSimples(const LocalMap<T>& lm);
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| 209 | 
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| 210 | void initializationError() const;
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| 211 | 
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| 212 | 
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| 213 | // ---------- Variables internes ----------------------------
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| 214 |   // variables suffisantes pour reconstruire l'objet
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| 215 | 
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| 216 |   bool pixelSized_;
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| 217 |   bool angleSized_;
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| 218 |   bool originSet_;
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| 219 | 
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| 220 |   int_4 nSzX_;
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| 221 |   int_4 nSzY_;
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| 222 |   double angleDegresX_;
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| 223 |   double angleDegresY_;
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| 224 |   double thetaDegresC_;
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| 225 |   double phiDegresC_;
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| 226 |   int_4 x0_;
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| 227 |   int_4 y0_;
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| 228 |   double angleDegres_;
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| 229 | 
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| 230 | 
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| 231 |   //  NDataBlock<T> pixels_;
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| 232 |   TMatrix<T> pixels_;
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| 233 | 
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| 234 | 
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| 235 |   // variables derivees (redondantes, precalculees pour ameliorer 
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| 236 |   // les performances)
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| 237 | 
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| 238 |   int_4 nPix_;
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| 239 | 
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| 240 | 
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| 241 |   double thetaC_;
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| 242 |   double phiC_;
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| 243 |   double csthC_;
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| 244 |   double snthC_;
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| 245 |   double csphC_;
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| 246 |   double snphC_;
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| 247 |   double XC_;
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| 248 |   double YC_;
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| 249 |   double ZC_;
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| 250 | 
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| 251 | 
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| 252 |   double angle_;
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| 253 |   double cosAngle_;
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| 254 |   double sinAngle_;
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| 255 |   double deltaPhi_;
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| 256 |   double deltaTheta_;
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| 257 | 
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| 258 |   bool exc_outofmap_;
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| 259 | 
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| 260 | 
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| 261 | };
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| 262 | 
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| 263 | ////////////////////////////////////////////////////////////////
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| 264 | // Surcharge d'operateurs A (+,-,*,/) (T) x
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| 265 | /*! \ingroup SkyMap \fn operator+(const LocalMap<T>&,T)
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| 266 |   \brief Operator LocalMap = LocalMap + constant */
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| 267 | template <class T> inline LocalMap<T> operator + (const LocalMap<T>& a, T b)
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| 268 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 269 |     result.Add(b); return result;}
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| 270 | /*! \ingroup SkyMap \fn operator+(T,const LocalMap<T>&)
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| 271 |   \brief Operator LocalMap = constant + LocalMap */
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| 272 | template <class T> inline LocalMap<T> operator + (T b,const LocalMap<T>& a)
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| 273 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 274 |     result.Add(b); return result;}
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| 275 | 
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| 276 | 
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| 277 | /*! \ingroup SkyMap\fn operator-(const LocalMap<T>&,T)
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| 278 |   \brief Operator LocalMap = LocalMap - constant */
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| 279 | template <class T> inline LocalMap<T> operator - (const LocalMap<T>& a, T b)
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| 280 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 281 |     result.Sub(b); return result;}
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| 282 | 
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| 283 | /*! \ingroup  \fn operator-(T,const LocalMap<T>&)
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| 284 |   \brief Operator LocalMap = constant - LocalMap */
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| 285 | template <class T> inline LocalMap<T> operator - (T b,const LocalMap<T>& a)
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| 286 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 287 |     result.Sub(b,true); return result;}
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| 288 | 
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| 289 | /*! \ingroup SkyMap \fn operator*(const LocalMap<T>&,T)
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| 290 |   \brief Operator LocalMap = LocalMap * constant */
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| 291 | template <class T> inline LocalMap<T> operator * (const LocalMap<T>& a, T b)
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| 292 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 293 |     result.Mul(b); return result;}
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| 294 | 
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| 295 | /*! \ingroup SkyMap \fn operator*(T,const LocalMap<T>&)
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| 296 |   \brief Operator LocalMap = constant * LocalMap */
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| 297 | template <class T> inline LocalMap<T> operator * (T b,const LocalMap<T>& a)
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| 298 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 299 |     result.Mul(b); return result;}
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| 300 | 
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| 301 | /*! \ingroup SkyMap \fn operator/(const LocalMap<T>&,T)
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| 302 |   \brief Operator LocalMap = LocalMap / constant */
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| 303 | template <class T> inline LocalMap<T> operator / (const LocalMap<T>& a, T b)
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| 304 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 305 |     result.Div(b); return result;}
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| 306 | 
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| 307 | /*! \ingroup SkyMap \fn operator/(T,const LocalMap<T>&)
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| 308 |   \brief Operator LocalMap = constant / LocalMap  */
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| 309 | template <class T> inline LocalMap<T> operator / (T b, const LocalMap<T>& a)
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| 310 |     {LocalMap<T> result; result.CloneOrShare(a); result.SetTemp(true); 
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| 311 |     result.Div(b, true); return result;}
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| 312 | 
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| 313 | ////////////////////////////////////////////////////////////////
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| 314 | // Surcharge d'operateurs C = A (+,-) B
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| 315 | 
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| 316 | /*! \ingroup SkyMap \fn operator+(const LocalMap<T>&,const LocalMap<T>&)
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| 317 |   \brief Operator LocalMap = LocalMap + LocalMap */
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| 318 | template <class T>
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| 319 | inline LocalMap<T> operator + (const LocalMap<T>& a,const LocalMap<T>& b)
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| 320 |     { LocalMap<T> result; result.SetTemp(true); 
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| 321 |     if (b.IsTemp())  { result.Share(b); result.AddElt(a); }
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| 322 |     else { result.CloneOrShare(a); result.AddElt(b); }
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| 323 |     return result; }
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| 324 | 
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| 325 | /*! \ingroup SkyMap \fn operator-(const LocalMap<T>&,const LocalMap<T>&)
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| 326 |   \brief Operator LocalMap = LocalMap - LocalMap */
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| 327 | template <class T>
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| 328 | inline LocalMap<T> operator - (const LocalMap<T>& a,const LocalMap<T>& b)
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| 329 |     { LocalMap<T> result; result.SetTemp(true); 
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| 330 |     if (b.IsTemp())  { result.Share(b); result.SubElt(a); }
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| 331 |     else { result.CloneOrShare(a); result.SubElt(b); }
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| 332 |     return result; }
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| 333 | 
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| 334 | ////////////////////////////////////////////////////////////////
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| 335 | // Surcharge d'operateurs C = A (*,/) B
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| 336 | 
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| 337 | /*! \ingroup SkyMap \fn operator*(const LocalMap<T>&,const LocalMap<T>&)
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| 338 |   \brief Operator LocalMap = LocalMap * LocalMap (pixel by pixel multiply)*/
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| 339 | template <class T>
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| 340 | inline LocalMap<T> operator * (const LocalMap<T>& a,const LocalMap<T>& b)
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| 341 |     { LocalMap<T> result; result.SetTemp(true); 
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| 342 |     if (b.IsTemp())  { result.Share(b); result.MulElt(a); }
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| 343 |     else { result.CloneOrShare(a); result.MulElt(b); }
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| 344 |     return result; }
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| 345 | 
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| 346 | /*! \ingroup SkyMap \fn operator/(const LocalMap<T>&,const LocalMap<T>&)
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| 347 |   \brief Operator LocalMap = LocalMap / LocalMap (pixel by pixel divide)*/
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| 348 | template <class T>
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| 349 | inline LocalMap<T> operator / (const LocalMap<T>& a,const LocalMap<T>& b)
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| 350 |     { LocalMap<T> result; result.SetTemp(true); 
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| 351 |     result.CloneOrShare(a); result.DivElt(b); 
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| 352 |     return result; }
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| 353 | 
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| 354 | 
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| 355 | 
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| 356 | } // Fin du namespace
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| 357 | 
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| 358 | #endif
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