1 | // This may look like C code, but it is really -*- C++ -*-
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2 | //
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3 | // $Id: poly.h,v 1.11 2004-03-15 16:46:56 ansari Exp $
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4 | //
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5 |
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6 | // Des polynomes avec des operations de bases et surtout des fits.
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7 |
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8 | #ifndef POLY_SEEN
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9 | #define POLY_SEEN
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10 |
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11 | #include "objfio.h"
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12 | #include <stdio.h>
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13 | #include "peida.h"
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14 | #include "tvector.h"
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15 | #include "ppersist.h"
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16 | #include "anydataobj.h"
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17 |
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18 | namespace SOPHYA {
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19 |
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20 | class Poly2;
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21 |
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22 | //////////////////////////////////////////////////////////////////////////
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23 | //! Class of 1 dimension polynomials P(x)
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24 | class Poly : public TVector<r_8> {
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25 | friend class ObjFileIO<Poly>;
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26 | public:
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27 | Poly(int degre = 0);
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28 | Poly(Poly const& a);
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29 |
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30 | //! Return degre of polynomials
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31 | inline int Degre() const {UpdateDegIfDirty(); return deg;}
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32 |
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33 | //! Return space for a \b n degre polynomial
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34 | /*!
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35 | \param \b n : degre of new polynomial
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36 | \param \b force : force re-allocation if true,\
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37 | if not allocation occurs only
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38 | if space needed is greater than the old one
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39 | */
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40 | inline void Realloc(int n, bool force=false)
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41 | {TVector<r_8>::Realloc(n+1,force);}
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42 |
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43 | // Pour compatibilite PEIDA - Reza 03/2000
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44 | //! Return coefficient of degre \b i
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45 | inline double Element(int i) const { return Elem(i,0,0,0,0); }
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46 | //! Return coefficient of degre \b i
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47 | inline double & Element(int i) { return Elem(i,0,0,0,0); }
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48 |
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49 | //! Return coefficient of degre \b i
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50 | inline double operator[](int i) const {return Elem(i,0,0,0,0);}
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51 | //! Return coefficient of degre \b i
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52 | inline double& operator[](int i) {dirty = 1; return Elem(i,0,0,0,0);}
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53 | // Retourne le coefficient de degre i
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54 |
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55 | double operator()(double x) const;
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56 | // Retourne la valeur prise en x.
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57 |
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58 | void Derivate();
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59 | // Derive le polynome en place
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60 |
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61 | void Derivate(Poly& der) const;
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62 | // Derive le polynome dans un autre
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63 |
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64 | int Roots(TVector<r_8>& roots) const;
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65 | // retourne les racines si on peut les calculer...
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66 |
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67 | int Root1(double& r) const;
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68 | // special degre 1
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69 |
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70 | int Root2(double& r1, double& r2) const;
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71 | // special degre 2
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72 |
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73 | Poly& operator = (Poly const& b);
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74 | Poly& operator += (Poly const& b);
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75 | Poly& operator -= (Poly const& b);
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76 |
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77 | Poly& operator *= (double a);
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78 |
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79 | Poly Mult(Poly const& b) const;
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80 |
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81 | Poly power(int n) const;
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82 | Poly operator() (Poly const& b) const;
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83 | Poly2 operator() (Poly2 const& b) const;
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84 |
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85 | void Print(ostream& s, sa_size_t maxprt=-1,
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86 | bool si=false, bool ascd=false) const ;
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87 |
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88 | double Fit(TVector<r_8> const& x, TVector<r_8> const& y, int degre);
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89 | // Fit d'un polynome de degre donne sur les x et y.
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90 |
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91 | double Fit(TVector<r_8> const& x, TVector<r_8> const& y,
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92 | TVector<r_8> const& erry2, int degre, TVector<r_8>& errCoef);
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93 | // En plus, on fournit les carres des erreurs sur y et on a les erreurs
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94 | // sur les coefficients dans un vecteur.
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95 |
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96 | private:
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97 | int dirty;
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98 | int_4 deg;
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99 | void UpdateDeg() const;
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100 | void UpdateDegIfDirty() const {if (dirty) UpdateDeg();}
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101 | };
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102 |
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103 | /*! \ingroup NTools \fn operator*(Poly const&,Poly const&)
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104 | \brief perform and return P(X) = a(x) * b(x) */
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105 | inline Poly operator* (Poly const& a, Poly const& b)
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106 | { return a.Mult(b); }
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107 |
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108 | /*! \ingroup NTools \fn operator+(Poly const&,Poly const&)
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109 | \brief perform and return P(X) = a(x) + b(x) */
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110 | inline Poly operator+ (Poly const& a, Poly const& b)
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111 | { Poly c((a.Degre() > b.Degre())?(a.Degre()+1):(b.Degre()+1));
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112 | c = a; c += b; return c; }
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113 |
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114 | /*! \ingroup NTools \fn operator-(Poly const&,Poly const&)
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115 | \brief perform and return P(X) = a(x) - b(x) */
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116 | inline Poly operator- (Poly const& a, Poly const& b)
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117 | { Poly c((a.Degre() > b.Degre())?(a.Degre()+1):(b.Degre()+1));
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118 | c = a; c -= b; return c; }
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119 |
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120 | /*! \ingroup NTools \fn operator*(double,Poly const&)
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121 | \brief perform and return P(X) = a * b(x) */
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122 | inline Poly operator* (double a, Poly const& b)
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123 | { Poly c(b); c *= a; return c; }
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124 |
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125 | /*! \ingroup NTools \fn operator<<(ostream&,const Poly&)
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126 | \brief Print a(x) on stream \b s */
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127 | inline ostream& operator << (ostream& s, const Poly& a)
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128 | { a.Print(s); return s; }
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129 |
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130 | //////////////////////////////////////////////////////////////////////////
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131 | /*! \ingroup NTools \fn operator<<(POutPersist&,Poly&)
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132 | \brief For persistance management */
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133 | inline POutPersist& operator << (POutPersist& os, Poly & obj)
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134 | { ObjFileIO<Poly> fio(&obj); fio.Write(os); return(os); }
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135 | /*! \ingroup NTools \fn operator<<(PInPersist&,,Poly&)
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136 | \brief For persistance management */
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137 | inline PInPersist& operator >> (PInPersist& is, Poly & obj)
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138 | { ObjFileIO<Poly> fio(&obj); fio.Read(is); return(is); }
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139 | // Classe pour la gestion de persistance
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140 | // ObjFileIO<Poly>
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141 |
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142 | //////////////////////////////////////////////////////////////////////////
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143 | int binomial(int n, int p);
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144 |
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145 | //////////////////////////////////////////////////////////////////////////
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146 | //! Class of 2 dimensions polynomials P(x,y)
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147 | class Poly2 : public TVector<r_8> {
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148 | friend class ObjFileIO<Poly2>;
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149 | public:
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150 | Poly2(int degreX=0, int degreY=0);
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151 | // degres alloues.
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152 | Poly2(Poly const& polX, Poly const& polY);
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153 | Poly2(Poly2 const& a);
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154 |
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155 | //! Return polynomial partial degre for X
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156 | inline int DegX() const {UpdateDegIfDirty(); return degX;}
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157 | //! Return polynomial partial degre for Y
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158 | inline int DegY() const {UpdateDegIfDirty(); return degY;}
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159 | //! Return polynomial maximum partial degre for X
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160 | inline int MaxDegX() const {return maxDegX;}
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161 | //! Return polynomial maximum partial degre for Y
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162 | inline int MaxDegY() const {return maxDegY;}
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163 | //! Return polynomial total degre for X
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164 | inline int Deg() const {UpdateDegIfDirty(); return deg;}
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165 | // les degres partiels en x et y, et totaux.
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166 |
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167 | // Pour compatibilite PEIDA - Reza 03/2000
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168 | //! Return coefficient of degre \b i
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169 | inline double Element(int i) const { return Elem(i,0,0,0,0); }
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170 | //! Return coefficient of degre \b i
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171 | inline double & Element(int i) { return Elem(i,0,0,0,0); }
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172 |
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173 | double operator()(double x, double y) const;
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174 | // retourne la valeur en (x,y)
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175 |
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176 | //! Return index of coefficient of X^dx * Y^dy in the vector
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177 | inline int IndCoef(int dx, int dy) const {
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178 | if (dx>maxDegX || dy>maxDegY) throw RangeCheckError("Poly2::IndCoef()");
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179 | return dx + (maxDegX+1)*dy;
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180 | }
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181 | // l'indice du coefficient dans le vecteur. Public uniquement parce
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182 | // que ca sert a recuperer les erreurs sur les coefficients lors
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183 | // d'un fit...
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184 |
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185 | //! Return coefficient of X^dx * Y^dy
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186 | inline double Coef(int dx, int dy) const {
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187 | return (dx>maxDegX || dy>maxDegY) ? 0 : Element(IndCoef(dx,dy));
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188 | }
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189 | //! Return coefficient of X^dx * Y^dy
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190 | inline double& Coef(int dx, int dy) {
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191 | if (dx>maxDegX || dy>maxDegY) throw RangeCheckError("Poly2::Coef() ");
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192 | dirty = 1; return Element(IndCoef(dx,dy));
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193 | }
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194 | // retourne le coefficient de degre (dx,dy)
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195 |
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196 | double Fit(TVector<r_8> const& x, TVector<r_8> const& y, TVector<r_8> const& z,
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197 | int degreX, int degreY);
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198 | double Fit(TVector<r_8> const& x, TVector<r_8> const& y, TVector<r_8> const& z,
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199 | TVector<r_8> const& errz2, int degreX, int degreY,
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200 | TVector<r_8>& errCoef);
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201 | // degres partiels imposes. cf Poly::Fit sinon
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202 |
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203 |
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204 | double Fit(TVector<r_8> const& x, TVector<r_8> const& y, TVector<r_8> const& z,
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205 | int degre);
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206 | double Fit(TVector<r_8> const& x, TVector<r_8> const& y, TVector<r_8> const& z,
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207 | TVector<r_8> const& errz2, int degre,
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208 | TVector<r_8>& errCoef);
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209 | // degre total impose. cf Poly::Fit sinon
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210 |
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211 | Poly2& operator = (Poly2 const& b);
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212 |
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213 | Poly2& operator += (Poly2 const& b);
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214 | Poly2& operator -= (Poly2 const& b);
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215 |
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216 | Poly2& operator *= (double a);
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217 |
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218 | Poly2 Mult(Poly2 const& b) const;
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219 |
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220 | Poly2 power(int n) const;
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221 |
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222 | Poly2 operator() (Poly const& px, Poly const& py) const;
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223 | // Poly2 operator() (Poly2 const& px, Poly2 const& py) const;
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224 |
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225 | void Realloc(int degreX, int degreY);
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226 |
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227 | void Print(ostream& s, sa_size_t maxprt=-1,
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228 | bool si=false, bool ascd=false) const ;
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229 |
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230 | private:
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231 | int dirty;
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232 | int_4 maxDegX;
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233 | int_4 maxDegY;
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234 | int degX;
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235 | int degY;
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236 | int deg;
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237 | void UpdateDeg() const;
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238 | void UpdateDegIfDirty() const {if (dirty) UpdateDeg();}
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239 | };
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240 |
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241 | /*! \ingroup NTools \fn operator*(Poly2 const&,Poly2 const&)
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242 | \brief Perform P(x,y) = a(x,y) * b(x,y) */
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243 | inline Poly2 operator* (Poly2 const& a, Poly2 const& b)
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244 | { return a.Mult(b); }
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245 |
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246 | /*! \ingroup NTools \fn operator+(Poly2 const&,Poly2 const&)
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247 | \brief Perform P(x,y) = a(x,y) + b(x,y) */
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248 | inline Poly2 operator+ (Poly2 const& a, Poly2 const& b)
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249 | { Poly2 c(a); c += b; return c; }
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250 |
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251 | /*! \ingroup NTools \fn operator-(Poly2 const&,Poly2 const&)
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252 | \brief Perform P(x,y) = a(x,y) - b(x,y) */
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253 | inline Poly2 operator- (Poly2 const& a, Poly2 const& b)
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254 | { Poly2 c(a); c -= b; return c; }
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255 |
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256 | /*! \ingroup NTools \fn operator-(double,Poly2 const&)
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257 | \brief Perform P(x,y) = a * b(x,y) */
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258 | inline Poly2 operator * (double a, Poly2 const& b)
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259 | { Poly2 c(b); c *= a; return c; }
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260 |
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261 | /*! \ingroup NTools \fn operator<<(ostream&,const Poly2&)
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262 | \brief Print a(x,y) on stream \b s */
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263 | inline ostream& operator << (ostream& s, const Poly2& a)
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264 | { a.Print(s); return s; }
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265 |
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266 | //////////////////////////////////////////////////////////////////////////
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267 | /*! \ingroup NTools \fn operator<<(POutPersist&,Poly2&)
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268 | \brief For persistance management */
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269 | inline POutPersist& operator << (POutPersist& os, Poly2 & obj)
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270 | { ObjFileIO<Poly2> fio(&obj); fio.Write(os); return(os); }
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271 | /*! \ingroup NTools \fn operator<<(POutPersist&,Poly2&)
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272 | \brief For persistance management */
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273 | inline PInPersist& operator >> (PInPersist& is, Poly2 & obj)
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274 | { ObjFileIO<Poly2> fio(&obj); fio.Read(is); return(is); }
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275 | // Classe pour la gestion de persistance
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276 | // ObjFileIO<Poly2>
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277 |
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278 |
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279 | } // Fin du namespace
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280 |
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281 | #endif // POLY_SEEN
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