source: Sophya/trunk/SophyaLib/TArray/tarray.h@ 935

Last change on this file since 935 was 926, checked in by ansari, 25 years ago

documentation cmv 13/4/00

File size: 11.7 KB
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[772]1// This may look like C code, but it is really -*- C++ -*-
2// template array class for numerical types
3// R. Ansari, C.Magneville 03/2000
4
5#ifndef TArray_SEEN
6#define TArray_SEEN
7
8#include "machdefs.h"
9#include <math.h>
10#include <iostream.h>
[787]11#include "basarr.h"
[772]12#include "ndatablock.h"
13#include <complex>
[785]14#include "utilarr.h"
[772]15
16
17namespace SOPHYA {
18
19// Forward declaration
20template <class T> class FIO_TArray;
21
[787]22// --------------------------- classe template Array -----------------------
23// ( See BaseArray class for data organisation in memory and related methods )
24
[894]25//! Class for template arrays
[772]26template <class T>
[787]27class TArray : public BaseArray {
[772]28public:
29 // Creation / destruction
30 TArray();
[804]31 TArray(uint_4 ndim, const uint_4 * siz, uint_4 step =1);
32 TArray(uint_4 nx, uint_4 ny=0, uint_4 nz=0, uint_4 nt=0, uint_4 nu=0);
33 TArray(uint_4 ndim, const uint_4 * siz, NDataBlock<T> & db, bool share=false, uint_4 step=1, uint_8 offset=0);
34 TArray(uint_4 ndim, const uint_4 * siz, T* values, uint_4 step=1, uint_8 offset=0, Bridge* br=NULL);
[772]35 TArray(const TArray<T>& a);
36 TArray(const TArray<T>& a, bool share);
37
38 virtual ~TArray();
39
40 // A = B : partage les donnees si "a" est temporaire, clone sinon.
[894]41 //! = operator between TArray
42 /*! \sa Set */
[804]43 inline TArray<T>& operator = (const TArray<T>& a) { return Set(a); }
44 virtual TArray<T>& Set(const TArray<T>& a);
[772]45
46 // Gestion taille/Remplissage
47 virtual void Clone(const TArray<T>& a);
[804]48 void ReSize(uint_4 ndim, uint_4 * siz, uint_4 step=1);
49 void Realloc(uint_4 ndim, uint_4 * siz, uint_4 step=1, bool force=false);
[787]50
[785]51 // Compacts size=1 array dimensions
[787]52 virtual TArray<T>& CompactAllDimensions();
53 virtual TArray<T>& CompactTrailingDimensions();
[785]54
[804]55 // Packing array elements in memory
56 virtual TArray<T> PackElements(bool force=false) const ;
[772]57
[804]58 // SubArrays - $CHECK$ Reza 03/2000 je ne sais pas s'il faut declarer ca const ??
[894]59 TArray<T> SubArray(Range rx, Range ry, Range rz, Range rt, Range ru) const ;
60 //! () operator for Sub arrays extraction
61 /*! \sa SubArray */
[804]62 inline TArray<T> operator () (Range rx, Range ry, Range rz, Range rt=0, Range ru=0) const
63 { return SubArray(rx, ry, rz, rt, ru); }
[772]64
[787]65 // ---- Access to data
66 // Definition of virtual element acces method inherited from BaseArray class
67 virtual double ValueAtPosition(uint_8 ip) const;
[785]68
[787]69 // Data Access: operator overloaded inline acces methods
[772]70 inline T const& operator()(uint_4 ix, uint_4 iy, uint_4 iz) const ;
71 inline T& operator()(uint_4 ix, uint_4 iy, uint_4 iz);
72 inline T const& operator()(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu=0) const ;
73 inline T& operator()(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu=0);
[785]74 inline T const& operator[](uint_8 ip) const ;
75 inline T& operator[](uint_8 ip);
[772]76
77 inline T const& Elem(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it=0, uint_4 iu=0) const ;
78 inline T& Elem(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it=0, uint_4 iu=0);
79 inline T const& ElemCheckBound(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it=0, uint_4 iu=0) const ;
80 inline T& ElemCheckBound(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it=0, uint_4 iu=0);
81
[894]82 //! Return pointer to first element adress
[772]83 inline T* Data() {return mNDBlock.Begin()+offset_;}
[894]84 //! Return pointer to first element adress
[772]85 inline const T* Data() const {return mNDBlock.Begin()+offset_;}
[894]86 //! Return reference to datablock NDataBlock
[772]87 inline NDataBlock<T>& DataBlock() {return mNDBlock;}
[894]88 //! Return reference to datablock NDataBlock
[772]89 inline const NDataBlock<T>& DataBlock() const {return mNDBlock;}
90
[787]91 // Temporaire?
[894]92 //! Are the array temporay ?
[787]93 inline bool IsTemp(void) const {return mNDBlock.IsTemp();}
[894]94 //! Set the array as temporay
[787]95 inline void SetTemp(bool temp=false) const {mNDBlock.SetTemp(temp);}
96
[772]97// Operations diverses = , +=, ...
98// Conversion en type T, if Size() == 1
[787]99 inline T toScalar();
[772]100// Met les elements a une suite de valeurs
[813]101 virtual TArray<T>& SetSeq(Sequence seq);
[894]102 //! Fill TArray with Sequence \b seq
[813]103 inline TArray<T>& operator = (Sequence seq) { return SetSeq(seq); }
[772]104// A = x (tous les elements a x)
[813]105 virtual TArray<T>& SetT(T x);
[894]106 //! Fill TArray with all elements equal to \b x
[813]107 inline TArray<T>& operator = (T x) { return SetT(x); }
[772]108// A += -= *= /= x (ajoute, soustrait, ... x a tous les elements)
[804]109 virtual TArray<T>& Add(T x);
[894]110 //! Add \b x to all elements
[804]111 inline TArray<T>& operator += (T x) { return Add(x); }
112 virtual TArray<T>& Sub(T x);
[894]113 //! Substract \b x to all elements
[804]114 inline TArray<T>& operator -= (T x) { return Sub(x); }
115 virtual TArray<T>& Mul(T x);
[894]116 //! Multiply all elements by \b x
[804]117 inline TArray<T>& operator *= (T x) { return Mul(x); }
118 virtual TArray<T>& Div(T x);
[894]119 //! Divide all elements by \b x
[804]120 inline TArray<T>& operator /= (T x) { return Div(x); }
121 virtual TArray<T>& SubInv(T x); // A ---> x-A
122 virtual TArray<T>& DivInv(T x); // A ---> x/A
123
[772]124// A += -= (ajoute, soustrait element par element les deux tableaux )
[804]125 virtual TArray<T>& AddElt(const TArray<T>& a);
[894]126 //! Operator TArray += TArray
[804]127 inline TArray<T>& operator += (const TArray<T>& a) { return AddElt(a); }
128 virtual TArray<T>& SubElt(const TArray<T>& a);
[894]129 //! Operator TArray -= TArray
[804]130 inline TArray<T>& operator -= (const TArray<T>& a) { return SubElt(a); }
[787]131// Multiplication, division element par element les deux tableaux
[804]132 virtual TArray<T>& MulElt(const TArray<T>& a);
[772]133 virtual TArray<T>& DivElt(const TArray<T>& a);
[804]134// Recopie des valeurs, element par element
135 virtual TArray<T>& CopyElt(const TArray<T>& a);
[772]136
[804]137// Somme et produit des elements
138 virtual T Sum() const ;
139 virtual T Product() const ;
140
[772]141// Impression, I/O, ...
[813]142 virtual string InfoString() const;
143 virtual void Print(ostream& os, int_4 maxprt=-1, bool si=false) const ;
[772]144
145// Pour la gestion de persistance
146 friend class FIO_TArray<T>;
147
148protected:
149 // partage les donnees si "a" temporaire, clone sinon.
150 void CloneOrShare(const TArray<T>& a);
151 // Share: partage les donnees de "a"
152 void Share(const TArray<T>& a);
153
[894]154 NDataBlock<T> mNDBlock; //!< Block for datas
[772]155};
156
157////////////////////////////////////////////////////////////////
158// Surcharge d'operateur <<
[894]159//! Print TArray \b a on stream \b os
[772]160template <class T>
161inline ostream& operator << (ostream& os, const TArray<T>& a)
162 { a.Print(os); return(os); }
163
164////////////////////////////////////////////////////////////////
165// Surcharge d'operateurs A (+,-,*,/) (T) x
166
[894]167//! Operator TArray = TArray + constant
[772]168template <class T> inline TArray<T> operator + (const TArray<T>& a, T b)
[804]169 {TArray<T> result(a); result.SetTemp(true); result.Add(b); return result;}
[772]170
[894]171//! Operator TArray = constant + TArray
[772]172template <class T> inline TArray<T> operator + (T b,const TArray<T>& a)
[804]173 {TArray<T> result(a); result.SetTemp(true); result.Add(b); return result;}
[772]174
[894]175//! Operator TArray = TArray - constant
[772]176template <class T> inline TArray<T> operator - (const TArray<T>& a, T b)
[804]177 {TArray<T> result(a); result.SetTemp(true); result.Sub(b); return result;}
[772]178
[894]179//! Operator TArray = constant - TArray
[772]180template <class T> inline TArray<T> operator - (T b,const TArray<T>& a)
[804]181 {TArray<T> result(a); result.SetTemp(true); result.SubInv(b); return result;}
[772]182
[894]183//! Operator TArray = TArray * constant
[772]184template <class T> inline TArray<T> operator * (const TArray<T>& a, T b)
[804]185 {TArray<T> result(a); result.SetTemp(true); result.Mul(b); return result;}
[772]186
[894]187//! Operator TArray = constant * TArray
[772]188template <class T> inline TArray<T> operator * (T b,const TArray<T>& a)
[804]189 {TArray<T> result(a); result.SetTemp(true); result.Mul(b); return result;}
[772]190
[894]191//! Operator TArray = TArray / constant
[772]192template <class T> inline TArray<T> operator / (const TArray<T>& a, T b)
[804]193 {TArray<T> result(a); result.SetTemp(true); result.DivInv(b); return result;}
[772]194
195////////////////////////////////////////////////////////////////
196// Surcharge d'operateurs C = A (+,-) B
197
[894]198//! Operator TArray = TArray + TArray
[772]199template <class T>
200inline TArray<T> operator + (const TArray<T>& a,const TArray<T>& b)
[804]201 {TArray<T> result(a); result.SetTemp(true); result.AddElt(b); return result;}
[772]202
[894]203//! Operator TArray = TArray - TArray
[772]204template <class T>
205inline TArray<T> operator - (const TArray<T>& a,const TArray<T>& b)
[804]206 {TArray<T> result(a); result.SetTemp(true); result.SubElt(b); return result;}
[772]207
208
209// --------------------------------------------------
210// inline element acces methods
211// --------------------------------------------------
[894]212
213//! Return element (ix,iy,iz,it,iu) value
[772]214template <class T>
215inline T const& TArray<T>::Elem(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu) const
216{
217 return ( *( mNDBlock.Begin()+ offset_+
218 ix*step_[0] + iy*step_[1] + iz*step_[2] +
219 it*step_[3] + iu*step_[4]) );
220}
221
[894]222//! Return element (ix,iy,iz,it,iu) value
[772]223template <class T>
224inline T & TArray<T>::Elem(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu)
225{
226 return ( *( mNDBlock.Begin()+ offset_+
227 ix*step_[0] + iy*step_[1] + iz*step_[2] +
228 it*step_[3] + iu*step_[4]) );
229}
230
[894]231//! Return element (ix,iy,iz,it,iu) value with Check of indexes bound first
[772]232template <class T>
233inline T const& TArray<T>::ElemCheckBound(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu) const
234{
235 CheckBound(ix, iy, iz, it, iu, 4);
[804]236 return(Elem(ix, iy, iz, it, iu));
[772]237}
238
[894]239//! Return element (ix,iy,iz,it,iu) value with Check of indexes bound first
[772]240template <class T>
241inline T & TArray<T>::ElemCheckBound(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu)
242{
243 CheckBound(ix, iy, iz, it, iu, 4);
[804]244 return(Elem(ix, iy, iz, it, iu));
[772]245}
246
[894]247//! Return element (ix,iy,iz) value
[772]248template <class T>
249inline T const& TArray<T>::operator()(uint_4 ix, uint_4 iy, uint_4 iz) const
250{
251#ifdef SO_BOUNDCHECKING
252 CheckBound(ix, iy, iz, 0, 0, 4);
253#endif
254 return ( *( mNDBlock.Begin()+ offset_+
255 ix*step_[0] + iy*step_[1] + iz*step_[2]) );
256}
257
[894]258//! Return element (ix,iy,iz) value
[772]259template <class T>
260inline T & TArray<T>::operator()(uint_4 ix, uint_4 iy, uint_4 iz)
261{
262#ifdef SO_BOUNDCHECKING
263 CheckBound(ix, iy, iz, 0, 0, 4);
264#endif
265 return ( *( mNDBlock.Begin()+ offset_+
266 ix*step_[0] + iy*step_[1] + iz*step_[2]) );
267}
268
[894]269//! Operator () : return element (ix,iy,iz,it,iu) value
[772]270template <class T>
271inline T const& TArray<T>::operator()(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu) const
272{
273#ifdef SO_BOUNDCHECKING
274 CheckBound(ix, iy, iz, it, iu, 4);
275#endif
276 return ( *( mNDBlock.Begin()+ offset_+
277 ix*step_[0] + iy*step_[1] + iz*step_[2] +
278 it*step_[3] + iu*step_[4]) );
279}
280
[894]281//! Operator () : return element (ix,iy,iz,it,iu) value
[772]282template <class T>
283inline T & TArray<T>::operator()(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu)
284{
285#ifdef SO_BOUNDCHECKING
286 CheckBound(ix, iy, iz, it, iu, 4);
287#endif
288 return ( *( mNDBlock.Begin()+ offset_+
289 ix*step_[0] + iy*step_[1] + iz*step_[2] +
290 it*step_[3] + iu*step_[4]) );
291}
292
[785]293
[894]294//! Operator [] : return element at positon ip
[772]295template <class T>
[785]296inline T const& TArray<T>::operator[](uint_8 ip) const
[772]297{
298#ifdef SO_BOUNDCHECKING
299 if (ip >= totsize_) throw( ParmError("TArray<T>::operator[] Out-of-bound Error") );
300#endif
[785]301return *(mNDBlock.Begin()+Offset(ip));
[772]302}
303
[894]304//! Operator [] : return element at positon ip
[772]305template <class T>
[785]306inline T & TArray<T>::operator[](uint_8 ip)
[772]307{
308#ifdef SO_BOUNDCHECKING
309 if (ip >= totsize_) throw( ParmError("TArray<T>::operator[] Out-of-bound Error") );
310#endif
[785]311return *(mNDBlock.Begin()+Offset(ip));
[772]312}
313
[785]314
[894]315//! Return the value of first element
[772]316template <class T>
[787]317inline T TArray<T>::toScalar()
[772]318{
319 if (Size() != 1) throw(SzMismatchError("TArray<T>::operator T() Size() != 1")) ;
320 return ( (*this)[0] );
321}
322
[804]323// Typedef pour simplifier
[894]324//! To simplify, Array \<==\> TArray<r_8>
[804]325typedef TArray<r_8> Array;
326
[772]327} // Fin du namespace
328
329#endif
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