source: Sophya/trunk/SophyaLib/TArray/tmatrix.h@ 967

Last change on this file since 967 was 967, checked in by ansari, 25 years ago

doc pour preparation inverse logique de NDataBlock cmv 21/4/00

File size: 6.2 KB
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[762]1// This may look like C code, but it is really -*- C++ -*-
2// C.Magneville 04/99
3#ifndef TMatrix_SEEN
4#define TMatrix_SEEN
5
6#include "machdefs.h"
[804]7#include "tarray.h"
[762]8
9namespace SOPHYA {
10
[926]11//! Class of matrices
[762]12template <class T>
[804]13class TMatrix : public TArray<T> {
[762]14public:
15 // Creation / destruction
16 TMatrix();
[804]17 TMatrix(uint_4 r,uint_4 c, short mm=AutoMemoryMapping);
[762]18 TMatrix(const TMatrix<T>& a);
[804]19 TMatrix(const TMatrix<T>& a, bool share);
20 TMatrix(const TArray<T>& a);
[914]21 TMatrix(const TArray<T>& a, bool share, short mm=AutoMemoryMapping);
[762]22 virtual ~TMatrix();
23
[804]24 // Pour verifiez la compatibilite de dimensions lors de l'affectation
25 virtual TArray<T>& Set(const TArray<T>& a);
[894]26 //! Operator = between matrices
[967]27 /*! \sa NDataBlock::operator=(const NDataBlock<T>&) */
[804]28 inline TMatrix<T>& operator = (const TMatrix<T>& a)
[894]29 { Set(a); return(*this); }
[762]30
[804]31 // Size - Changing the Size
[894]32 //! return number of rows
[804]33 inline uint_4 NRows() const {return Size(marowi_); }
[894]34 //! return number of columns
[804]35 inline uint_4 NCols() const {return Size(macoli_); }
[894]36 //! return number of columns
[804]37 inline uint_4 NCol() const {return Size(macoli_); } // back-compat Peida
[762]38
[804]39 void ReSize(uint_4 r,uint_4 c, short mm=SameMemoryMapping); // Reallocation de place
40 void Realloc(uint_4 r,uint_4 c, short mm=SameMemoryMapping, bool force=false);
[762]41
[813]42 // Sub-matrix extraction $CHECK$ Reza 03/2000 Doit-on declarer ces methode const ?
43 TMatrix<T> SubMatrix(Range rline, Range rcol) const ;
[894]44 //! () : Return submatrix define by \b Range \b rline and \b rcol
[813]45 inline TMatrix<T> operator () (Range rline, Range rcol) const
46 { return SubMatrix(rline, rcol); }
47 // Lignes et colonnes de la matrice
[894]48 //! Return submatrix define by line \b ir (line vector)
[813]49 inline TMatrix<T> Row(uint_4 ir) const
50 { return SubMatrix(Range(ir,ir), Range(0,NCols()-1)); }
[894]51 //! Return submatrix define by column \b ic (column vector)
[813]52 inline TMatrix<T> Column(uint_4 ic) const
53 { return SubMatrix(Range(0,NRows()-1), Range(ic,ic)); }
[804]54
55 // Inline element acces methods
56 inline T const& operator()(uint_4 r,uint_4 c) const;
57 inline T& operator()(uint_4 r,uint_4 c);
58
[762]59 // Operations matricielles
[804]60 TMatrix<T>& Transpose();
61 //mm = SameMemoryMapping or CMemoryMapping or FortranMemoryMapping
62 TMatrix<T> Transpose(short mm);
63 // Rearranging Matrix Elements
64 TMatrix<T> Rearrange(short mm);
[762]65
66 // Operateur d'affectation
[804]67 // A = x (matrice diagonale Identite)
68 virtual TMatrix<T>& SetIdentity(IdentityMatrix imx);
[894]69 // = : fill matrix with an identity matrix \b imx
[804]70 inline TMatrix<T>& operator = (IdentityMatrix imx) { return SetIdentity(imx); }
[762]71
[894]72 // = : fill matrix with a Sequence \b seq
[813]73 inline TMatrix<T>& operator = (Sequence seq) { SetSeq(seq); return(*this); }
74
[804]75 // Operations diverses avec une constante
[894]76 //! = : fill matrix with constant value \b x
[813]77 inline TMatrix<T>& operator = (T x) { SetT(x); return(*this); }
[894]78 //! += : add constant value \b x to matrix
[804]79 inline TMatrix<T>& operator += (T x) { Add(x); return(*this); }
[894]80 //! -= : substract constant value \b x to matrix
[804]81 inline TMatrix<T>& operator -= (T x) { Sub(x); return(*this); }
[894]82 //! *= : multiply matrix by constant value \b x
[804]83 inline TMatrix<T>& operator *= (T x) { Mul(x); return(*this); }
[894]84 //! /= : divide matrix by constant value \b x
[804]85 inline TMatrix<T>& operator /= (T x) { Div(x); return(*this); }
[762]86
[804]87 // operations avec matrices
[894]88 //! += : add a matrix
[813]89 inline TMatrix<T>& operator += (const TMatrix<T>& a) { AddElt(a); return(*this); }
[894]90 //! -= : substract a matrix
[813]91 inline TMatrix<T>& operator -= (const TMatrix<T>& a) { SubElt(a); return(*this); }
92 TMatrix<T> Multiply(const TMatrix<T>& b, short mm=SameMemoryMapping) const;
[894]93 //! *= : matrix product : C = (*this)*B
[813]94 inline TMatrix<T>& operator *= (const TMatrix<T>& b)
95 { this->Set(Multiply(b)); return(*this); }
[762]96
[813]97 // I/O print, ...
98 virtual string InfoString() const;
[804]99 virtual void Print(ostream& os, int_4 maxprt=-1, bool si=false) const ;
[762]100
101protected:
102};
103
[804]104// ---- inline acces methods ------
[894]105 //! () : return element for line \b r and column \b c
[804]106template <class T>
107inline T const& TMatrix<T>::operator()(uint_4 r, uint_4 c) const
108{
109#ifdef SO_BOUNDCHECKING
110 if (marowi_ == 0) CheckBound(r, c, 0, 0, 0, 4);
111 else CheckBound(c, r, 0, 0, 0, 4);
112#endif
113 return ( *( mNDBlock.Begin()+ offset_+
114 r*step_[marowi_] + c*step_[macoli_] ) );
115}
[762]116
[894]117//! () : return element for line \b r and column \b c
[762]118template <class T>
[804]119inline T & TMatrix<T>::operator()(uint_4 r, uint_4 c)
120{
121#ifdef SO_BOUNDCHECKING
122 if (marowi_ == 0) CheckBound(r, c, 0, 0, 0, 4);
123 else CheckBound(c, r, 0, 0, 0, 4);
124#endif
125 return ( *( mNDBlock.Begin()+ offset_+
126 r*step_[marowi_] + c*step_[macoli_] ) );
127}
[762]128
[813]129// Surcharge d'operateurs C = A (+,-) B
130// $CHECK$ Reza 3/4/2000 Pas necessaire de redefinir les operateurs
131// Defini au niveau de TArray<T> - Pour ameliorer l'efficacite
132// Doit-on le faire aussi pour les constantes ? - Fin de $CHECK$ Reza 3/4/2000
133
[958]134/*! \ingroup TArray \fn operator+(const TMatrix<T>&,const TMatrix<T>&)
135 \brief + : add matrixes \b a and \b b */
[813]136template <class T>
137inline TMatrix<T> operator + (const TMatrix<T>& a,const TMatrix<T>& b)
138 {TMatrix<T> result(a); result.SetTemp(true); result.AddElt(b); return result;}
139
[958]140/*! \ingroup TArray \fn operator-(const TMatrix<T>&,const TMatrix<T>&)
141 \brief \- : substract matrixes \b a and \b b */
[813]142template <class T>
143inline TMatrix<T> operator - (const TMatrix<T>& a,const TMatrix<T>& b)
144 {TMatrix<T> result(a); result.SetTemp(true); result.SubElt(b); return result;}
145
[804]146// Surcharge d'operateurs C = A * B
[958]147/*! \ingroup TArray \fn operator*(const TMatrix<T>&,const TMatrix<T>&)
148 \brief * : multiply matrixes \b a and \b b */
[804]149template <class T> inline TMatrix<T> operator * (const TMatrix<T>& a, const TMatrix<T>& b)
[813]150{ TMatrix<T> result(a); result.SetTemp(true); return(result.Multiply(b)); }
[762]151
[956]152// Typedef pour simplifier et compatibilite Peida
153/*! \ingroup TArray
154 \typedef Matrix
155 \brief To simplified TMatrix<r_8> writing
156*/
[762]157typedef TMatrix<r_8> Matrix;
158
159} // Fin du namespace
160
161#endif
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