source: Sophya/trunk/SophyaLib/TArray/tvector.h@ 2868

Last change on this file since 2868 was 2868, checked in by ansari, 20 years ago

Portage/compilation sur AIX-XlC (regatta): Ajout qualification de nom et namespace SOPHYA pour instanciation template - Reza 3 Jan 2006

File size: 4.5 KB
RevLine 
[762]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 SOPHYA {
9
[894]10//! Class of vector (line or column)
[762]11template <class T>
12class TVector : public TMatrix<T> {
13public:
14 // Creation / destruction
[804]15 TVector();
[2868]16 TVector(sa_size_t n, short lcv=BaseArray::AutoVectorType, short mm=BaseArray::AutoMemoryMapping, bool fzero=true);
[762]17 TVector(const TVector<T>& v);
[804]18 TVector(const TVector<T>& v, bool share);
[2868]19 TVector(const TArray<T>& a, bool share=true, short lcv=BaseArray::AutoVectorType);
[1099]20 TVector(const BaseArray& a);
[2868]21 TVector(const vector<T>& v, short lcv=BaseArray::AutoVectorType);
[762]22
[804]23 virtual ~TVector();
24
[967]25 //! Operator =
[976]26 /*! \warning Datas are copied (cloned) from \b a.
27 \sa NDataBlock::operator=(const NDataBlock<T>&) */
[804]28 inline TVector<T>& operator = (const TVector<T>& a)
29 { Set(a); return(*this); }
[1099]30 //! Operator = between a vector and a matrix
31 inline TVector<T>& operator = (const TMatrix<T>& a)
32 { Set(a); return(*this); }
33 //! Operator = between a vector and an array
34 inline TVector<T>& operator = (const TArray<T>& a)
35 { Set(a); return(*this); }
36 //! Operator = between Vectors with different types
37 inline TVector<T>& operator = (const BaseArray& a)
38 { SetBA(a); return(*this); }
39
[762]40 // Gestion taille/Remplissage
[2868]41 void ReSize(sa_size_t n, short lcv=BaseArray::SameVectorType, bool fzero=true);
[1412]42 //! a synonym (alias) for method ReSize(sa_size_t, short)
[2868]43 inline void SetSize(sa_size_t n, short lcv=BaseArray::SameVectorType, bool fzero=true)
[2575]44 { ReSize(n, lcv, fzero); }
[2868]45 void Realloc(sa_size_t n, short lcv=BaseArray::SameVectorType, bool force=false);
[2719]46
47 // Remplissage from/to a STL vector
48 sa_size_t FillFr(const vector<T>& v,bool noresize=false);
49 sa_size_t FillTo(vector<T>& v,bool addtoend=false);
[762]50
[804]51 // Sub-Vector extraction $CHECK$ Reza 03/2000 Doit-on declarer cette methode const ?
[813]52 TVector<T> SubVector(Range relt) const ;
[894]53 //! Extract a vector define by Range \b relt
[813]54 inline TVector<T> operator () (Range relt) const
55 { return SubVector(relt); }
[804]56
[762]57 // Informations pointeur/data
[894]58 //! return the number of elements
[1156]59 inline sa_size_t NElts() const {return Size(); }
[762]60
[804]61 // Inline element acces methods
[1156]62 inline T const& operator()(sa_size_t n) const;
63 inline T& operator()(sa_size_t n);
[762]64
[813]65 // Operateur d'affectation
[898]66 //! Fill the vector with Sequence \b seq
[1103]67 inline TVector<T>& operator = (Sequence const & seq) { SetSeq(seq); return(*this); }
[813]68
[804]69 // Operations diverses avec une constante
[894]70 //! Set vector elements to constant value \b x
[813]71 inline TVector<T>& operator = (T x) { SetT(x); return(*this); }
[894]72 //! Add constant value \b x to vector elements
[2564]73 inline TVector<T>& operator += (T x) { AddCst(x,*this); return(*this); }
[894]74 //! Substract constant value \b x to vector elements
[2564]75 inline TVector<T>& operator -= (T x) { SubCst(x,*this); return(*this); }
[894]76 //! Multiply vector elements by constant value \b x
[2564]77 inline TVector<T>& operator *= (T x) { MulCst(x,*this); return(*this); }
[894]78 //! Divide vector elements by constant value \b x
[2564]79 inline TVector<T>& operator /= (T x) { DivCst(x,*this); return(*this); }
[762]80
[804]81 // operations avec matrices
[894]82 //! += : add a vector in place
[2575]83 inline TVector<T>& operator += (const TVector<T>& a) { AddElt(a,*this); return(*this); }
[894]84 //! += : substract a vector in place
[2575]85 inline TVector<T>& operator -= (const TVector<T>& a) { SubElt(a,*this); return(*this); }
[762]86
[813]87 virtual string InfoString() const;
88
[762]89};
90
[804]91// ---- inline acces methods ------
[894]92
93//! Return the value of element \b n
[762]94template <class T>
[1156]95inline T const& TVector<T>::operator()(sa_size_t n) const
[804]96{
97#ifdef SO_BOUNDCHECKING
[2299]98 if (veceli_ == 0) CheckBound(n, 0, 0, 0, 0, 4);
[804]99 else CheckBound(0, n, 0, 0, 0, 4);
100#endif
101 return ( *( mNDBlock.Begin()+ offset_ + n*step_[veceli_] ) );
102}
[762]103
[894]104//! Return the value of element \b n
[762]105template <class T>
[1156]106inline T & TVector<T>::operator()(sa_size_t n)
[804]107{
108#ifdef SO_BOUNDCHECKING
[2299]109 if (veceli_ == 0) CheckBound(n, 0, 0, 0, 0, 4);
[804]110 else CheckBound(0, n, 0, 0, 0, 4);
111#endif
112 return ( *( mNDBlock.Begin()+ offset_ + n*step_[veceli_] ) );
113}
[762]114
115// Typedef pour simplifier et compatibilite Peida
[956]116/*! \ingroup TArray
117 \typedef Vector
118 \brief To simplified TVector<r_8> writing
119*/
[762]120typedef TVector<r_8> Vector;
121
122} // Fin du namespace
123
124#endif
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