source: Sophya/trunk/SophyaLib/TArray/tarray.h@ 1389

Last change on this file since 1389 was 1156, checked in by ansari, 25 years ago

Introduction du type sa_size_t (taille des tableaux), operateur - (TArray::operator - et NegateElt()) - Reza 29/8/2000

File size: 15.0 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();
[1156]31 TArray(int_4 ndim, const sa_size_t * siz, sa_size_t step =1);
32 TArray(sa_size_t nx, sa_size_t ny=0, sa_size_t nz=0, sa_size_t nt=0, sa_size_t nu=0);
33 TArray(int_4 ndim, const sa_size_t * siz, NDataBlock<T> & db, bool share=false, sa_size_t step=1, sa_size_t offset=0);
34 TArray(int_4 ndim, const sa_size_t * siz, T* values, sa_size_t step=1, sa_size_t offset=0, Bridge* br=NULL);
[772]35 TArray(const TArray<T>& a);
36 TArray(const TArray<T>& a, bool share);
[1081]37 TArray(const BaseArray& a);
[772]38
39 virtual ~TArray();
40
[967]41 // A = B
[894]42 //! = operator between TArray
[976]43 /*! \warning Datas are copied (cloned) from \b a.
44 \sa Set \sa NDataBlock::operator=(const NDataBlock<T>&) */
[804]45 inline TArray<T>& operator = (const TArray<T>& a) { return Set(a); }
46 virtual TArray<T>& Set(const TArray<T>& a);
[772]47
[1081]48 //! = operator between TArray 's with different types - Elements are converted.
49 inline TArray<T>& operator = (const BaseArray& a) { return SetBA(a); }
50 virtual TArray<T>& SetBA(const BaseArray& a);
51
[772]52 // Gestion taille/Remplissage
53 virtual void Clone(const TArray<T>& a);
[970]54 // partage les donnees si "a" temporaire, clone sinon.
55 void CloneOrShare(const TArray<T>& a);
56 // Share: partage les donnees de "a"
57
58 void Share(const TArray<T>& a);
[1156]59 void ReSize(int_4 ndim, sa_size_t * siz, sa_size_t step=1);
60 void Realloc(int_4 ndim, sa_size_t * siz, sa_size_t step=1, bool force=false);
[787]61
[785]62 // Compacts size=1 array dimensions
[787]63 virtual TArray<T>& CompactAllDimensions();
64 virtual TArray<T>& CompactTrailingDimensions();
[785]65
[804]66 // Packing array elements in memory
67 virtual TArray<T> PackElements(bool force=false) const ;
[772]68
[804]69 // SubArrays - $CHECK$ Reza 03/2000 je ne sais pas s'il faut declarer ca const ??
[894]70 TArray<T> SubArray(Range rx, Range ry, Range rz, Range rt, Range ru) const ;
[963]71#if !defined(__GNUG__)
[894]72 //! () operator for Sub arrays extraction
73 /*! \sa SubArray */
[804]74 inline TArray<T> operator () (Range rx, Range ry, Range rz, Range rt=0, Range ru=0) const
75 { return SubArray(rx, ry, rz, rt, ru); }
[963]76#else
77 // g++ (2.95) se melange les pinceaux avec les arguments par defaut !
78 //! () operator for Sub arrays extraction
79 /*! \sa SubArray */
80 inline TArray<T> operator () (Range rx, Range ry, Range rz) const
81 { return SubArray(rx, ry, rz, Range(0), Range(0)); }
82 inline TArray<T> operator () (Range rx, Range ry, Range rz, Range rt) const
83 { return SubArray(rx, ry, rz, rt, Range(0)); }
84 inline TArray<T> operator () (Range rx, Range ry, Range rz, Range rt, Range ru) const
85 { return SubArray(rx, ry, rz, rt, ru); }
86#endif
[772]87
[787]88 // ---- Access to data
89 // Definition of virtual element acces method inherited from BaseArray class
[1156]90 virtual MuTyV & ValueAtPosition(sa_size_t ip) const;
[785]91
[787]92 // Data Access: operator overloaded inline acces methods
[1156]93 inline T const& operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz) const ;
94 inline T& operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz);
95 inline T const& operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu=0) const ;
96 inline T& operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu=0);
97 inline T const& operator[](sa_size_t ip) const ;
98 inline T& operator[](sa_size_t ip);
[772]99
[1156]100 inline T const& Elem(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it=0, sa_size_t iu=0) const ;
101 inline T& Elem(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it=0, sa_size_t iu=0);
102 inline T const& ElemCheckBound(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it=0, sa_size_t iu=0) const ;
103 inline T& ElemCheckBound(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it=0, sa_size_t iu=0);
[772]104
[894]105 //! Return pointer to first element adress
[772]106 inline T* Data() {return mNDBlock.Begin()+offset_;}
[894]107 //! Return pointer to first element adress
[772]108 inline const T* Data() const {return mNDBlock.Begin()+offset_;}
[894]109 //! Return reference to datablock NDataBlock
[772]110 inline NDataBlock<T>& DataBlock() {return mNDBlock;}
[894]111 //! Return reference to datablock NDataBlock
[772]112 inline const NDataBlock<T>& DataBlock() const {return mNDBlock;}
113
[787]114 // Temporaire?
[894]115 //! Are the array temporay ?
[787]116 inline bool IsTemp(void) const {return mNDBlock.IsTemp();}
[894]117 //! Set the array as temporay
[787]118 inline void SetTemp(bool temp=false) const {mNDBlock.SetTemp(temp);}
119
[772]120// Operations diverses = , +=, ...
121// Conversion en type T, if Size() == 1
[787]122 inline T toScalar();
[772]123// Met les elements a une suite de valeurs
[1103]124 virtual TArray<T>& SetSeq(Sequence const & seq);
[894]125 //! Fill TArray with Sequence \b seq
[1103]126 inline TArray<T>& operator = (Sequence const & seq) { return SetSeq(seq); }
[772]127// A = x (tous les elements a x)
[813]128 virtual TArray<T>& SetT(T x);
[894]129 //! Fill TArray with all elements equal to \b x
[813]130 inline TArray<T>& operator = (T x) { return SetT(x); }
[772]131// A += -= *= /= x (ajoute, soustrait, ... x a tous les elements)
[804]132 virtual TArray<T>& Add(T x);
[894]133 //! Add \b x to all elements
[804]134 inline TArray<T>& operator += (T x) { return Add(x); }
[970]135 virtual TArray<T>& Sub(T x, bool fginv=false);
[894]136 //! Substract \b x to all elements
[804]137 inline TArray<T>& operator -= (T x) { return Sub(x); }
138 virtual TArray<T>& Mul(T x);
[894]139 //! Multiply all elements by \b x
[804]140 inline TArray<T>& operator *= (T x) { return Mul(x); }
[970]141 virtual TArray<T>& Div(T x, bool fginv=false);
[894]142 //! Divide all elements by \b x
[804]143 inline TArray<T>& operator /= (T x) { return Div(x); }
144
[1156]145// applique le signe moins a tous les elements
146 virtual TArray<T>& NegateElt();
147
[772]148// A += -= (ajoute, soustrait element par element les deux tableaux )
[804]149 virtual TArray<T>& AddElt(const TArray<T>& a);
[894]150 //! Operator TArray += TArray
[804]151 inline TArray<T>& operator += (const TArray<T>& a) { return AddElt(a); }
[970]152 virtual TArray<T>& SubElt(const TArray<T>& a, bool fginv=false);
[894]153 //! Operator TArray -= TArray
[804]154 inline TArray<T>& operator -= (const TArray<T>& a) { return SubElt(a); }
[787]155// Multiplication, division element par element les deux tableaux
[804]156 virtual TArray<T>& MulElt(const TArray<T>& a);
[1072]157 virtual TArray<T>& DivElt(const TArray<T>& a, bool fginv=false, bool divzero=false);
[804]158// Recopie des valeurs, element par element
159 virtual TArray<T>& CopyElt(const TArray<T>& a);
[1081]160// Recopie des valeurs avec conversion prealable, element par element
161 virtual TArray<T>& ConvertAndCopyElt(const BaseArray& a);
[772]162
[804]163// Somme et produit des elements
164 virtual T Sum() const ;
165 virtual T Product() const ;
[1113]166// Somme du carre des elements
167 virtual T SumX2() const;
168// Valeur min et max des elements
169 virtual void MinMax(T& min, T& max) const ;
[804]170
[772]171// Impression, I/O, ...
[813]172 virtual string InfoString() const;
173 virtual void Print(ostream& os, int_4 maxprt=-1, bool si=false) const ;
[772]174
175// Pour la gestion de persistance
176 friend class FIO_TArray<T>;
177
178protected:
179
[894]180 NDataBlock<T> mNDBlock; //!< Block for datas
[1081]181 mutable MuTyV my_mtv; //!< for use by ValueAtPosition()
[772]182};
183
184////////////////////////////////////////////////////////////////
185// Surcharge d'operateur <<
[894]186//! Print TArray \b a on stream \b os
[772]187template <class T>
188inline ostream& operator << (ostream& os, const TArray<T>& a)
189 { a.Print(os); return(os); }
190
191////////////////////////////////////////////////////////////////
192// Surcharge d'operateurs A (+,-,*,/) (T) x
193
[958]194/*! \ingroup TArray \fn operator+(const TArray<T>&,T)
195 \brief Operator TArray = TArray + constant */
[772]196template <class T> inline TArray<T> operator + (const TArray<T>& a, T b)
[970]197 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
198 result.Add(b); return result;}
[772]199
[958]200/*! \ingroup TArray \fn operator+(T,const TArray<T>&)
201 \brief Operator TArray = constant + TArray */
[772]202template <class T> inline TArray<T> operator + (T b,const TArray<T>& a)
[970]203 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
204 result.Add(b); return result;}
[772]205
[958]206/*! \ingroup TArray \fn operator-(const TArray<T>&,T)
207 \brief Operator TArray = TArray - constant */
[772]208template <class T> inline TArray<T> operator - (const TArray<T>& a, T b)
[970]209 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
210 result.Sub(b); return result;}
[772]211
[958]212/*! \ingroup TArray \fn operator-(T,const TArray<T>&)
213 \brief Operator TArray = constant - TArray */
[772]214template <class T> inline TArray<T> operator - (T b,const TArray<T>& a)
[970]215 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
216 result.Sub(b,true); return result;}
[772]217
[958]218/*! \ingroup TArray \fn operator*(const TArray<T>&,T)
219 \brief Operator TArray = TArray * constant */
[772]220template <class T> inline TArray<T> operator * (const TArray<T>& a, T b)
[970]221 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
222 result.Mul(b); return result;}
[772]223
[958]224/*! \ingroup TArray \fn operator*(T,const TArray<T>&)
225 \brief Operator TArray = constant * TArray */
[772]226template <class T> inline TArray<T> operator * (T b,const TArray<T>& a)
[970]227 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
228 result.Mul(b); return result;}
[772]229
[958]230/*! \ingroup TArray \fn operator/(const TArray<T>&,T)
231 \brief Operator TArray = TArray / constant */
[772]232template <class T> inline TArray<T> operator / (const TArray<T>& a, T b)
[970]233 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
234 result.Div(b); return result;}
[772]235
[970]236/*! \ingroup TArray \fn operator/(T,const TArray<T>&)
237 \brief Operator TArray = constant / TArray */
238template <class T> inline TArray<T> operator / (T b, const TArray<T>& a)
239 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
240 result.Div(b, true); return result;}
241
[772]242////////////////////////////////////////////////////////////////
[1156]243// Surcharge d'operateurs B = -A
244
245/*! \ingroup TArray \fn operator - (const TArray<T>&)
246 \brief Operator - Returns an array with elements equal to the opposite of
247 the original array elements. */
248template <class T> inline TArray<T> operator - (const TArray<T>& a)
249 {TArray<T> result; result.CloneOrShare(a); result.SetTemp(true);
250 result.NegateElt(); return result;}
251
252////////////////////////////////////////////////////////////////
[772]253// Surcharge d'operateurs C = A (+,-) B
254
[958]255/*! \ingroup TArray \fn operator+(const TArray<T>&,const TArray<T>&)
256 \brief Operator TArray = TArray + TArray */
[772]257template <class T>
258inline TArray<T> operator + (const TArray<T>& a,const TArray<T>& b)
[970]259 { TArray<T> result; result.SetTemp(true);
260 if (b.IsTemp()) { result.Share(b); result.AddElt(a); }
261 else { result.CloneOrShare(a); result.AddElt(b); }
262 return result; }
[772]263
[958]264/*! \ingroup TArray \fn operator-(const TArray<T>&,const TArray<T>&)
265 \brief Operator TArray = TArray - TArray */
[772]266template <class T>
267inline TArray<T> operator - (const TArray<T>& a,const TArray<T>& b)
[970]268 { TArray<T> result; result.SetTemp(true);
269 if (b.IsTemp()) { result.Share(b); result.SubElt(a, true); }
270 else { result.CloneOrShare(a); result.SubElt(b); }
271 return result; }
[772]272
273
274// --------------------------------------------------
275// inline element acces methods
276// --------------------------------------------------
[894]277
278//! Return element (ix,iy,iz,it,iu) value
[772]279template <class T>
[1156]280inline T const& TArray<T>::Elem(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu) const
[772]281{
282 return ( *( mNDBlock.Begin()+ offset_+
283 ix*step_[0] + iy*step_[1] + iz*step_[2] +
284 it*step_[3] + iu*step_[4]) );
285}
286
[894]287//! Return element (ix,iy,iz,it,iu) value
[772]288template <class T>
[1156]289inline T & TArray<T>::Elem(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu)
[772]290{
291 return ( *( mNDBlock.Begin()+ offset_+
292 ix*step_[0] + iy*step_[1] + iz*step_[2] +
293 it*step_[3] + iu*step_[4]) );
294}
295
[894]296//! Return element (ix,iy,iz,it,iu) value with Check of indexes bound first
[772]297template <class T>
[1156]298inline T const& TArray<T>::ElemCheckBound(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu) const
[772]299{
300 CheckBound(ix, iy, iz, it, iu, 4);
[804]301 return(Elem(ix, iy, iz, it, iu));
[772]302}
303
[894]304//! Return element (ix,iy,iz,it,iu) value with Check of indexes bound first
[772]305template <class T>
[1156]306inline T & TArray<T>::ElemCheckBound(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu)
[772]307{
308 CheckBound(ix, iy, iz, it, iu, 4);
[804]309 return(Elem(ix, iy, iz, it, iu));
[772]310}
311
[894]312//! Return element (ix,iy,iz) value
[772]313template <class T>
[1156]314inline T const& TArray<T>::operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz) const
[772]315{
316#ifdef SO_BOUNDCHECKING
317 CheckBound(ix, iy, iz, 0, 0, 4);
318#endif
319 return ( *( mNDBlock.Begin()+ offset_+
320 ix*step_[0] + iy*step_[1] + iz*step_[2]) );
321}
322
[894]323//! Return element (ix,iy,iz) value
[772]324template <class T>
[1156]325inline T & TArray<T>::operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz)
[772]326{
327#ifdef SO_BOUNDCHECKING
328 CheckBound(ix, iy, iz, 0, 0, 4);
329#endif
330 return ( *( mNDBlock.Begin()+ offset_+
331 ix*step_[0] + iy*step_[1] + iz*step_[2]) );
332}
333
[894]334//! Operator () : return element (ix,iy,iz,it,iu) value
[772]335template <class T>
[1156]336inline T const& TArray<T>::operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu) const
[772]337{
338#ifdef SO_BOUNDCHECKING
339 CheckBound(ix, iy, iz, it, iu, 4);
340#endif
341 return ( *( mNDBlock.Begin()+ offset_+
342 ix*step_[0] + iy*step_[1] + iz*step_[2] +
343 it*step_[3] + iu*step_[4]) );
344}
345
[894]346//! Operator () : return element (ix,iy,iz,it,iu) value
[772]347template <class T>
[1156]348inline T & TArray<T>::operator()(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu)
[772]349{
350#ifdef SO_BOUNDCHECKING
351 CheckBound(ix, iy, iz, it, iu, 4);
352#endif
353 return ( *( mNDBlock.Begin()+ offset_+
354 ix*step_[0] + iy*step_[1] + iz*step_[2] +
355 it*step_[3] + iu*step_[4]) );
356}
357
[785]358
[894]359//! Operator [] : return element at positon ip
[772]360template <class T>
[1156]361inline T const& TArray<T>::operator[](sa_size_t ip) const
[772]362{
363#ifdef SO_BOUNDCHECKING
364 if (ip >= totsize_) throw( ParmError("TArray<T>::operator[] Out-of-bound Error") );
365#endif
[785]366return *(mNDBlock.Begin()+Offset(ip));
[772]367}
368
[894]369//! Operator [] : return element at positon ip
[772]370template <class T>
[1156]371inline T & TArray<T>::operator[](sa_size_t ip)
[772]372{
373#ifdef SO_BOUNDCHECKING
374 if (ip >= totsize_) throw( ParmError("TArray<T>::operator[] Out-of-bound Error") );
375#endif
[785]376return *(mNDBlock.Begin()+Offset(ip));
[772]377}
378
[785]379
[1156]380//! Converts to a scalar (value of first element) if the array size is equal to 1
[772]381template <class T>
[787]382inline T TArray<T>::toScalar()
[772]383{
384 if (Size() != 1) throw(SzMismatchError("TArray<T>::operator T() Size() != 1")) ;
385 return ( (*this)[0] );
386}
387
[804]388// Typedef pour simplifier
[956]389/*! \ingroup TArray
390 \typedef Array
391 \brief To simplified TArray<r_8> writing
392*/
[804]393typedef TArray<r_8> Array;
394
[772]395} // Fin du namespace
396
397#endif
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