1 | // --- Special Square matrices base class
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2 | // This code is part of the SOPHYA library
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3 | // (C) Univ. Paris-Sud (C) LAL-IN2P3/CNRS (C) IRFU-CEA
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4 | // (C) R. Ansari, C.Magneville 2009
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5 |
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6 | #define SPESQMTX_CC_BFILE // avoid extern template declarations
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7 | #include "spesqmtx.h"
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8 | #include "pexceptions.h"
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9 | #include "tmatrix.h"
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10 |
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11 | namespace SOPHYA {
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12 | /*!
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13 | \class SpecialSquareMatrix
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14 | \ingroup TArray
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15 | \brief The base class for representing and manipulating special square matrices
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16 | Diagonal matrix, Symmetric matrix, Triangular matrix
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17 | This class implements the common operations for special square matrices. Only objects
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18 |
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19 | from the sub-classes (DiagonalMatrix<T>, LowerTriangularMatrix<T>, SymmetricMatrix<T>)
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20 | can be instanciated. Theses classes offer similar functionalities to the TArray<T> / TMatrix<T>
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21 | classes, like reference sharing and arithmetic operations. However, no sub-matrix extraction
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22 | method is provided.
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23 |
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24 | \code
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25 | // Create and initialize a diagonal matrix
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26 | DiagonalMatrix<double> diag(3);
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27 | diag(0,0)=1.; diag(1,1)=2.; diag(2,2)=3.;
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28 | // use of multiplication by a constant operator
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29 | diag *= 10.;
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30 | // check the diagonal matrix
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31 | cout << diag << diag.ConvertToStdMatrix() << endl;
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32 | // define and initialize a general matrix
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33 | TMatrix<double> mx(3,3);
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34 | mx=RegularSequence();
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35 | cout << mx;
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36 | // check the result of a matrix mutiplication
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37 | cout << mx*diag;
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38 | \endcode
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39 | */
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40 |
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41 | //! Default constructor - SpecialSquareMatrix of size 0, SetSize() should be called before the object is used
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42 | template <class T>
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43 | SpecialSquareMatrix<T>::SpecialSquareMatrix(SpSqMtxType typ)
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44 | : mType(typ) , mNrows(0) , mInfo(NULL)
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45 | {
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46 | }
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47 |
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48 | //! Instanciate a SpecialSquareMatrix matrix from the number of rows (rowSize must be > 0)
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49 | template <class T>
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50 | SpecialSquareMatrix<T>::SpecialSquareMatrix(sa_size_t rowSize, SpSqMtxType typ)
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51 | : mType(typ) , mNrows(rowSize) , mInfo(NULL)
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52 | {
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53 | if (rowSize < 1)
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54 | throw ParmError("SpecialSquareMatrix<T>::SpecialSquareMatrix(rsz) rsz <= 0");
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55 | }
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56 |
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57 | //! Copy constructor (possibility of sharing datas)
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58 | template <class T>
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59 | SpecialSquareMatrix<T>::SpecialSquareMatrix(SpecialSquareMatrix<T> const & a, bool share)
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60 | : mType(a.mType) , mNrows(a.mNrows) , mElems(a.mElems, share) , mInfo(NULL)
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61 | {
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62 | if (a.mInfo) mInfo = new DVList(*(a.mInfo));
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63 | }
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64 |
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65 | //! Sets or change the matrix size, specifying the new number of rows
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66 | template <class T>
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67 | void SpecialSquareMatrix<T>::SetSize(sa_size_t rowSize)
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68 | {
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69 | throw ForbiddenError("SpecialSquareMatrix<T>::SetSize() Only sub-classes should be instanciated");
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70 | }
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71 |
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72 | //! Return the object as a standard (TMatrix<T>) object
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73 | template <class T>
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74 | TMatrix<T> SpecialSquareMatrix<T>::ConvertToStdMatrix() const
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75 | {
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76 | throw ForbiddenError("SpecialSquareMatrix<T>::ConvertToStdMatrix() Only sub-classes should be instanciated");
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77 | }
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78 |
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79 |
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80 |
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81 |
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82 | //! Clone (duplicate) the SpecialSquareMatrix<T> matrix \b a
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83 | template <class T>
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84 | void SpecialSquareMatrix<T>::Clone(SpecialSquareMatrix<T> const & a)
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85 | {
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86 | if ((mType != C_UndefinedMatrix) && (a.mType != mType))
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87 | throw TypeMismatchExc("SpecialSquareMatrix<T>::Clone()- Different type matrices");
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88 | mType = a.mType;
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89 | mNrows = a.mNrows;
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90 | mElems.Clone(a.mElems);
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91 | if (a.mInfo) mInfo = new DVList(*(a.mInfo));
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92 | }
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93 |
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94 | //! Share the data with \b a
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95 | template <class T>
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96 | void SpecialSquareMatrix<T>::Share(SpecialSquareMatrix<T> const & a)
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97 | {
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98 | if ((mType != C_UndefinedMatrix) && (a.mType != mType))
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99 | throw TypeMismatchExc("SpecialSquareMatrix<T>::Share()- Different type matrices");
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100 | mType = a.mType;
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101 | mNrows= a.mNrows;
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102 | mElems.Share(a.mElems);
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103 | if (a.mInfo) mInfo = new DVList(*(a.mInfo));
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104 | }
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105 |
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106 | //! Clone or share the data. Data is shared if \b is flagged as temporary
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107 | template <class T>
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108 | void SpecialSquareMatrix<T>::CloneOrShare(SpecialSquareMatrix<T> const & a)
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109 | {
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110 | if ((mType != C_UndefinedMatrix) && (a.mType != mType))
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111 | throw TypeMismatchExc("SpecialSquareMatrix<T>::CloneOrShare()- Different type matrices");
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112 | mType = a.mType;
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113 | mNrows = a.mNrows;
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114 | mElems.CloneOrShare(a.mElems);
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115 | if (a.mInfo) mInfo = new DVList(*(a.mInfo));
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116 | }
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117 |
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118 |
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119 |
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120 | //! Set all matrix elements to the value \b a
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121 | template <class T>
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122 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::SetCst(T a)
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123 | {
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124 | if (mElems.Size() < 1)
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125 | throw SzMismatchError("SpecialSquareMatrix<T>::SetCst(T )- (this) not allocated !");
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126 | mElems = a;
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127 | return (*this);
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128 | }
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129 |
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130 |
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131 | //! Element by element copy method
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132 | template <class T>
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133 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::Set(SpecialSquareMatrix<T> const & a)
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134 | {
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135 | if (a.mType != mType)
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136 | throw TypeMismatchExc("SpecialSquareMatrix<T>::Set(a)- Different type matrices");
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137 | if (a.mElems.Size() < 1)
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138 | throw SzMismatchError("SpecialSquareMatrix<T>::Set(a)- Object a not allocated !");
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139 | if (mElems.Size() < 1) {
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140 | mNrows = a.mNrows;
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141 | mElems.CloneOrShare(a.mElems);
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142 | return (*this);
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143 | }
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144 | if (mNrows != a.mNrows)
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145 | throw SzMismatchError("SpecialSquareMatrix<T>::Set(a)- NRows() != a.NRows() ! ");
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146 | mElems = a.mElems;
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147 | return (*this);
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148 | }
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149 |
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150 | //! Set the matrix elements using the values from the sequence \b seq
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151 | template <class T>
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152 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::SetSeq(Sequence const & seq)
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153 | {
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154 | if (mElems.Size() < 1)
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155 | throw SzMismatchError("SpecialSquareMatrix<T>::SetSeq()- (this) not allocated !");
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156 | for(size_t k=0; k<mElems.Size(); k++) seq(k).Convert(mElems(k));
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157 | return (*this);
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158 | }
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159 |
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160 | //! Add a constant value (\b b ) to all matrix elements
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161 | template <class T>
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162 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::AddCst(T b)
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163 | {
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164 | if (mElems.Size() < 1)
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165 | throw SzMismatchError("SpecialSquareMatrix<T>::AddCst(T )- (this) not allocated !");
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166 | mElems += b;
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167 | return (*this);
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168 | }
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169 |
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170 | //! Subtract a constant value (\b b ) from all matrix elements. fginv==true -> elem = b-elem
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171 | template <class T>
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172 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::SubCst(T b, bool fginv)
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173 | {
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174 | if (mElems.Size() < 1)
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175 | throw SzMismatchError("SpecialSquareMatrix<T>::Subst(T )- (this) not allocated !");
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176 | if (fginv)
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177 | mElems = mElems.Sub(b, true);
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178 | else mElems -= b;
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179 | return (*this);
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180 | }
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181 |
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182 | //! Multiply all matrix elements by a constant value \b b .
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183 | template <class T>
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184 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::MulCst(T b)
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185 | {
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186 | if (mElems.Size() < 1)
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187 | throw SzMismatchError("SpecialSquareMatrix<T>::MulCst(T )- (this) not allocated !");
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188 | mElems *= b;
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189 | return (*this);
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190 | }
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191 |
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192 | //! Divide all matrix elements by a constant value \b b . if fginv==true elem = b / elem
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193 | template <class T>
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194 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::DivCst(T b, bool fginv)
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195 | {
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196 | if (mElems.Size() < 1)
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197 | throw SzMismatchError("SpecialSquareMatrix<T>::DivCst(T )- (this) not allocated !");
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198 | if (fginv) mElems = mElems.Div(b, true);
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199 | else mElems /= b;
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200 | return (*this);
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201 | }
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202 |
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203 | //! Element by element addition : elem(l,m) = elem(l,m) + b.elem(l,m)
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204 | template <class T>
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205 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::AddElt(SpecialSquareMatrix<T> const& b)
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206 | {
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207 | if (b.mType != mType)
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208 | throw TypeMismatchExc("SpecialSquareMatrix<T>::AddElt() Different type matrices");
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209 | if ((mNrows < 1)||(mNrows != b.mNrows)||(mElems.Size() < 1)||(mElems.Size() != b.mElems.Size()))
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210 | throw SzMismatchError("SpecialSquareMatrix<T>::AddElt()- Not allocated or different sizes !");
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211 | mElems += b.mElems;
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212 | return (*this);
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213 | }
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214 |
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215 | //! Element by element subtraction : elem(l,m) = elem(l,m) - b.elem(l,m)
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216 | template <class T>
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217 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::SubElt(SpecialSquareMatrix<T> const& b)
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218 | {
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219 | if (b.mType != mType)
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220 | throw TypeMismatchExc("SpecialSquareMatrix<T>::SubElt() Different type matrices");
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221 | if ((mNrows < 1)||(mNrows != b.mNrows)||(mElems.Size() < 1)||(mElems.Size() != b.mElems.Size()))
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222 | throw SzMismatchError("SpecialSquareMatrix<T>::SubElt()- Not allocated or different sizes !");
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223 | mElems -= b.mElems;
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224 | return (*this);
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225 | }
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226 | //! Element by element multiplication : elem(l,m) = elem(l,m) * b.elem(l,m)
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227 | template <class T>
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228 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::MulElt(SpecialSquareMatrix<T> const& b)
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229 | {
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230 | if (b.mType != mType)
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231 | throw TypeMismatchExc("SpecialSquareMatrix<T>::MulElt() Different type matrices");
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232 | if ((mNrows < 1)||(mNrows != b.mNrows)||(mElems.Size() < 1)||(mElems.Size() != b.mElems.Size()))
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233 | throw SzMismatchError("SpecialSquareMatrix<T>::MulElt()- Not allocated or different sizes !");
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234 | mElems *= b.mElems;
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235 | return (*this);
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236 | }
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237 | //! Element by element divison : elem(l,m) = elem(l,m) / b.elem(l,m)
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238 | template <class T>
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239 | SpecialSquareMatrix<T>& SpecialSquareMatrix<T>::DivElt(SpecialSquareMatrix<T> const& b)
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240 | {
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241 | if (b.mType != mType)
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242 | throw TypeMismatchExc("SpecialSquareMatrix<T>::DivElt() Different type matrices");
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243 | if ((mNrows < 1)||(mNrows != b.mNrows)||(mElems.Size() < 1)||(mElems.Size() != b.mElems.Size()))
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244 | throw SzMismatchError("SpecialSquareMatrix<T>::DivElt()- Not allocated or different sizes !");
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245 | mElems /= b.mElems;
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246 | return (*this);
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247 | }
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248 |
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249 |
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250 | //! Return the minimum and the maximum values of the SpecialSquare Matrix elements
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251 | /*!
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252 | This method generates an exception (\c MathExc) if called for complex matrices
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253 | */
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254 | template <class T>
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255 | void SpecialSquareMatrix<T>::MinMax(T& min, T& max) const
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256 | {
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257 | const T * pe = mElems.Begin();
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258 | min = pe[0];
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259 | max = pe[0];
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260 | for(size_t k=0; k<mElems.Size(); k++) {
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261 | if (pe[k]<min) min = pe[k];
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262 | else if (pe[k]>max) max = pe[k];
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263 | }
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264 | return;
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265 | }
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266 |
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267 | DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
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268 | void SpecialSquareMatrix< complex<r_4> >::MinMax(complex<r_4>& min, complex<r_4>& max) const
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269 | {
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270 | throw MathExc("SpecialSquareMatrix< complex<r_4> >::MinMax(...) - No order in complex");
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271 | }
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272 | DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
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273 | void SpecialSquareMatrix< complex<r_8> >::MinMax(complex<r_8>& min, complex<r_8>& max) const
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274 | {
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275 | throw MathExc("SpecialSquareMatrix< complex<r_4> >::MinMax(...) - No order in complex");
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276 | }
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277 |
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278 | //! Short ASCII representatio of the object pushed to stream \b os
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279 | template <class T>
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280 | ostream& SpecialSquareMatrix<T>::Show(ostream& os) const
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281 | {
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282 | os << typeid(*this).name() << " < " << typeid(T).name()
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283 | << " > NRow=" << mNrows << " NbElem<>0 : " << Size() << endl;
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284 | return os;
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285 | }
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286 |
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287 |
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288 | ///////////////////////////////////////////////////////////////
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289 | #ifdef __CXX_PRAGMA_TEMPLATES__
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290 | #pragma define_template SpecialSquareMatrix<uint_1>
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291 | #pragma define_template SpecialSquareMatrix<uint_2>
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292 | #pragma define_template SpecialSquareMatrix<uint_4>
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293 | #pragma define_template SpecialSquareMatrix<uint_8>
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294 | #pragma define_template SpecialSquareMatrix<int_1>
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295 | #pragma define_template SpecialSquareMatrix<int_2>
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296 | #pragma define_template SpecialSquareMatrix<int_4>
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297 | #pragma define_template SpecialSquareMatrix<int_8>
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298 | #pragma define_template SpecialSquareMatrix<r_4>
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299 | #pragma define_template SpecialSquareMatrix<r_8>
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300 | #pragma define_template SpecialSquareMatrix< complex<r_4> >
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301 | #pragma define_template SpecialSquareMatrix< complex<r_8> >
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302 | #ifdef SO_LDBLE128
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303 | #pragma define_template SpecialSquareMatrix<r_16>
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304 | #pragma define_template SpecialSquareMatrix< complex<r_16> >
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305 | #endif
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306 | #endif
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307 |
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308 | #if defined(ANSI_TEMPLATES) || defined(GNU_TEMPLATES)
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309 | template class SpecialSquareMatrix<uint_1>;
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310 | template class SpecialSquareMatrix<uint_2>;
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311 | template class SpecialSquareMatrix<uint_4>;
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312 | template class SpecialSquareMatrix<uint_8>;
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313 | template class SpecialSquareMatrix<int_1>;
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314 | template class SpecialSquareMatrix<int_2>;
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315 | template class SpecialSquareMatrix<int_4>;
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316 | template class SpecialSquareMatrix<int_8>;
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317 | template class SpecialSquareMatrix<r_4>;
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318 | template class SpecialSquareMatrix<r_8>;
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319 | template class SpecialSquareMatrix< complex<r_4> >;
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320 | template class SpecialSquareMatrix< complex<r_8> >;
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321 | #ifdef SO_LDBLE128
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322 | template class SpecialSquareMatrix<r_16>;
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323 | template class SpecialSquareMatrix< complex<r_16> >;
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324 | #endif
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325 | #endif
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326 |
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327 | } // namespace SOPHYA
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328 |
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