source: Sophya/trunk/SophyaLib/NTools/tvector.h@ 517

Last change on this file since 517 was 514, checked in by ansari, 26 years ago

elimination des OVector/OMatrix au profit des TVector/TMatrix cmv 25/10/99

File size: 3.5 KB
Line 
1// This may look like C code, but it is really -*- C++ -*-
2// C.Magneville 05/99
3#ifndef TVector_SEEN
4#define TVector_SEEN
5
6#include "tmatrix.h"
7
8namespace PlanckDPC {
9
10class GeneralFit;
11
12template <class T>
13class TVector : public TMatrix<T> {
14public:
15
16 // Creation / destruction
17 TVector(uint_4 n=1);
18 TVector(uint_4 n, T* values,Bridge* br=NULL);
19 TVector(const TVector<T>& v);
20 TVector(const TVector<T>& v,bool share);
21 TVector(const TMatrix<T>& a);
22
23 // Gestion taille/Remplissage
24 inline void ReSize(uint_4 n) {TMatrix<T>::ReSize(n,1);} // Reallocation de place
25 inline void Realloc(uint_4 n,bool force=false) {TMatrix<T>::Realloc(n,1,force);}
26
27 // Informations pointeur/data
28 inline uint_4 NElts() const {return NRows();}
29
30 // Acces aux elements
31 inline T& operator()(uint_4 n) {return (*this)[n];}
32 inline T const& operator()(uint_4 n) const {return (*this)[n];}
33 inline T& Element(uint_4 n) {return (*this)[n];}
34 inline T const& Element(uint_4 n) const {return (*this)[n];}
35
36 // Operateur d'affectation
37 inline TVector& operator = (const TVector& v)
38 {TMatrix<T>::operator =(v); return *this;}
39 inline TVector& operator = (T x)
40 {for(uint_4 i=0;i<NRows();i++) (*this)(i)=x; return *this;}
41
42 // Residus et fonction fittees.
43 TVector<T> FitResidus(GeneralFit& gfit,double xorg=0.,double dx=1.);
44 TVector<T> FitFunction(GeneralFit& gfit,double xorg=0.,double dx=1.);
45
46};
47
48// produit scalaire, matrice*vecteur
49template <class T>
50inline T operator* (const TVector<T>& v1, const TVector<T>& v2)
51 {if(v1.NRows() != v2.NRows())
52 throw(SzMismatchError("TVector::operator*(TVector& v1,TVector v2) size mismatch"));
53 T *p = const_cast<T *>(v1.Data()), *pEnd = p+v1.NElts(),
54 *q = const_cast<T *>(v2.Data()), r = 0;
55 while (p<pEnd) r += *p++ * *q++;
56 return r;}
57
58template <class T>
59inline TVector<T> operator* (const TMatrix<T>& a, const TVector<T>& b)
60 {return TVector<T>(a * ((TMatrix<T> const&)(b)));}
61
62// Resolution du systeme A*C = B
63inline r_8 LinSolveInPlace(TMatrix<r_8>& a, TVector<r_8>& b)
64{
65if(a.NCols() != b.NRows() || a.NCols() != a.NRows())
66 throw(SzMismatchError("LinSolveInPlace(TMatrix<r_8>,TVector<r_8>) size mismatch"));
67return TMatrix<r_8>::GausPiv(a,b);
68}
69
70// Resolution du systeme A*C = B, avec C retourne dans B
71inline r_8 LinSolve(const TMatrix<r_8>& a, const TVector<r_8>& b, TVector<r_8>& c)
72{
73if(a.NCols() != b.NRows() || a.NCols() != a.NRows())
74 throw(SzMismatchError("LinSolve(TMatrix<r_8>,TVector<r_8>) size mismatch"));
75c = b;
76TMatrix<r_8> a1(a);
77return TMatrix<r_8>::GausPiv(a1,c);
78}
79
80// Typedef pour simplifier et compatibilite Peida
81typedef TVector<r_8> Vector;
82
83/////////////////////////////////////////////////////////////////////////
84// Classe pour la gestion de persistance
85template <class T>
86class FIO_TVector : public PPersist {
87public:
88 FIO_TVector();
89 FIO_TVector(string const & filename);
90 FIO_TVector(const TVector<T> & obj);
91 FIO_TVector(TVector<T> * obj);
92 virtual ~FIO_TVector();
93 virtual AnyDataObj* DataObj();
94 inline operator TVector<T>() { return(*dobj); }
95protected :
96 virtual void ReadSelf(PInPersist&);
97 virtual void WriteSelf(POutPersist&) const;
98 TVector<T> * dobj;
99 bool ownobj;
100};
101
102template <class T>
103inline POutPersist& operator << (POutPersist& os, TVector<T> & obj)
104{ FIO_TVector<T> fio(&obj); fio.Write(os); return(os); }
105template <class T>
106inline PInPersist& operator >> (PInPersist& is, TVector<T> & obj)
107{ FIO_TVector<T> fio(&obj); fio.Read(is); return(is); }
108
109} // Fin du namespace
110
111#endif
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