source: Sophya/trunk/SophyaLib/BaseTools/ndatablock.h@ 3172

Last change on this file since 3172 was 3172, checked in by ansari, 19 years ago

Correction bug ds swsegdb.h (non ecriture buffer avec 1 seul buffer-relu) + ajout methode NDataBlock::RenewObjId() pour re-ecriture PPF , Reza 05/02/2007

File size: 9.5 KB
RevLine 
[268]1// This may look like C code, but it is really -*- C++ -*-
2// Gestion de block de donnees avec partage de references
3// C.Magneville 04/99
4// LAL (Orsay) / IN2P3-CNRS DAPNIA/SPP (Saclay) / CEA
[245]5#ifndef NDATABLOCK_H
6#define NDATABLOCK_H
7
8#include "machdefs.h"
[948]9#include <stdlib.h> /* pour que size_t soit defini */
[268]10#include "anydataobj.h"
[2322]11#include <iostream>
[245]12
[552]13namespace SOPHYA {
[268]14
[944]15////////////////////////////////////////////////////////////////
16//// ------------------- Class Bridge ----------------------- //
17////////////////////////////////////////////////////////////////
18/*!
19 \class Bridge
[1607]20 \ingroup BaseTools
[944]21 This class is use by NDataBlock. It allows sharing of datas
22 with external structures : by example, if you want to connect
23 a Blitz data structure with a NDataBlock or a TMatrix or ...
24 \sa NDataBlock
25*/
26
[245]27// Classe pour permettre de partager des donnees avec
28// un autre systeme de gestion de references (ex avec Blitz)
[944]29//! Empty class which allows data sharing with external structures (for NDataBlock)
[245]30class Bridge {
31public:
32 Bridge() { }
33 virtual ~Bridge() { }
34};
35
[944]36////////////////////////////////////////////////////////////////
37//// ----------------- Class NDataBlock --------------------- //
38////////////////////////////////////////////////////////////////
39
[246]40// classe de container avec partage de reference
[944]41//! Container of data with reference sharing
[245]42template <class T>
[268]43class NDataBlock : public AnyDataObj {
[245]44
45public:
46
[944]47 // Methodes statiques pour debug.
48 static void SetPrintDebug(int prtdbglevel=1);
49 static void ResetDebug(size_t nallocdata=0, size_t nallocsref=0);
50 static void PrintDebug();
51
[246]52 // Creation / destruction
[2565]53 NDataBlock(size_t n, bool fzero=true);
[245]54 NDataBlock(size_t n, T* data, Bridge* br=NULL);
55 NDataBlock();
[268]56 NDataBlock(const NDataBlock<T>& a);
57 NDataBlock(const NDataBlock<T>& a,bool share);
[245]58 virtual ~NDataBlock();
59
60 // Temporaire?
[944]61 //! Return true if data block is temporay
[268]62 inline bool IsTemp(void) const {return mIsTemp;}
[944]63 //! Set temporary caracter of data block
[289]64 inline void SetTemp(bool temp=false) const {mIsTemp = temp;}
[1623]65 // Depuis que le createur par copie partage les donnees
66 // la seule utilisation de SetTemp et pour faire les operations du type:
67 // NDataBlock = NDataBlock + NDataBlock + NDataBlock ...
[245]68
[257]69 // Gestion taille/Remplissage
[268]70 void Clone(const NDataBlock<T>& a);
[289]71 void CloneOrShare(const NDataBlock<T>& a);
72 void Share(const NDataBlock<T>& a);
[257]73 void FillFrom(size_t n,T* data);
[944]74 //! Re-set all data values to \b v
[289]75 inline void Reset(T v=0)
76 {if(mSz==0) return; T *p=Begin(),*pe=End(); while(p<pe) *p++=v;}
[502]77
78 // ReSize redimmensionne une structure pour "n" donnees.
79 // Les donnees precedentes sont perdues (pour cette classe)
[2565]80 // et le nouveau tableau mis a zero si fzero=true. La nouvelle structure de
[502]81 // donnees n'a qu'une reference (celle de cette classe).
[944]82 //! Re-size the data structure
[2565]83 /*! Old datas are lost (for this class). The new values are set
84 to zero if \b fzero=true .
[944]85 The new data structure has only one reference (itself!). */
[2565]86 inline void ReSize(size_t n, bool fzero=true) {Alloc(n,NULL,NULL,fzero);}
[502]87
88 void Realloc(size_t nnew,bool force=false);
[245]89
[3172]90 //! Calls Delete() to set the size to zero (The memory is freed if last referenced structure)
91 inline void Dealloc() { Delete(); }
92
[245]93 // Informations pointeur/data
[944]94 //! Return pointer on data structure.
[245]95 inline T* Data()
96 {if(mSRef) return mSRef->data; else return NULL;}
[944]97 //! Return pointer on data structure.
[268]98 inline T* Data() const
99 {if(mSRef) return mSRef->data; else return NULL;}
[944]100 //! Return the size of the data structure
[249]101 inline size_t Size() const {return mSz;}
[944]102 //! Return the \b i th element of the data structure
[268]103 inline T& operator()(size_t i) {return *(mSRef->data+i);}
[944]104 //! Return the \b i th element of the data structure
[268]105 inline T operator()(size_t i) const {return *(mSRef->data+i);}
[944]106 //! Return pointer to the beginning of the data structure.
[245]107 inline T* Begin() {return mSRef->data;}
[944]108 //! Return pointer to the beginning of the data structure.
[268]109 inline T const* Begin() const {return mSRef->data;}
[944]110 //! Return pointer to the end of the data structure.
[245]111 inline T* End() {return mSRef->data+mSz;}
[944]112 //! Return pointer to the end of the data structure.
[245]113 inline T const* End() const {return mSRef->data+mSz;}
[944]114 //! Return the number of references to the data structure
[2657]115 inline size_t NRef() const {if(mSRef) return mSRef->nref; else return 0; }
[245]116
117 // Impression
[268]118 void Print(ostream& os, size_t i1=0,size_t n=10) const;
[944]119 //! print infos and datas (from \b i1 to \b i2) on stdout.
[268]120 inline void Print(size_t i1=0,size_t n=0) const {Print(cout,i1,n);}
[245]121
[268]122 //
123 T Sum(size_t i1=0,size_t n=0) const;
124 T Product(size_t i1=0,size_t n=0) const;
125
[289]126 // Surcharge d'operateurs INPLACE: A = x , A = B , A @= x , A @= B
[268]127 NDataBlock<T>& operator = (const NDataBlock<T>& a);
[245]128 NDataBlock<T>& operator = (T v);
129
130 NDataBlock<T>& operator += (T b);
131 NDataBlock<T>& operator -= (T b);
132 NDataBlock<T>& operator *= (T b);
133 NDataBlock<T>& operator /= (T b);
134
[268]135 NDataBlock<T>& operator += (const NDataBlock<T>& a);
136 NDataBlock<T>& operator -= (const NDataBlock<T>& a);
137 NDataBlock<T>& operator *= (const NDataBlock<T>& a);
138 NDataBlock<T>& operator /= (const NDataBlock<T>& a);
[245]139
[289]140 // Surcharge d'operateurs: C = A @ x , C = A @ B
[268]141 NDataBlock<T> Add(T b) const;
[976]142 NDataBlock<T> Sub(T b,bool fginv=false) const;
[268]143 NDataBlock<T> Mul(T b) const;
[976]144 NDataBlock<T> Div(T b,bool fginv=false) const;
[245]145
[268]146 NDataBlock<T> Add(const NDataBlock<T>& b) const;
147 NDataBlock<T> Sub(const NDataBlock<T>& b) const;
148 NDataBlock<T> Mul(const NDataBlock<T>& b) const;
149 NDataBlock<T> Div(const NDataBlock<T>& b) const;
[257]150
[3172]151 //! Return thye associated object Id (or DataRef Id)
[1426]152 inline uint_8 DRefId() { return mSRef->dsid; }
[3172]153 //! assign a new object Id (or DataRef Id) - useful for PPF write operations
154 inline void RenewDRefId() { mSRef->dsid = AnyDataObj::getUniqueId(); }
155 //! assign a new object Id (or DataRef Id) - useful for PPF write operations
156 inline void RenewObjId() { mSRef->dsid = AnyDataObj::getUniqueId(); }
157
[1426]158
[245]159protected:
[944]160 //! NDREF structure for reference management
161 typedef struct {
162 size_t nref; //!< Number of references to the data structure
[1426]163 uint_8 dsid; //!< Data structure Id - Used by FIO_NDataBlock
[944]164 T* data; //!< Pointer to data structure itself
165 Bridge* bridge; //!< Pointer to a bridge for the data structure
166 } NDREF;
[245]167
[773]168 void Alloc(size_t n,T* data=NULL,Bridge* br=NULL, bool zero=true);
[245]169 void Delete(void);
170
[944]171 static int Debug_NDataBlock; //!< DEBUG: set debug level (all type<T> classes)
172 static size_t NallocData; //!< DEBUG: number of allocations (all type<T> classes)
173 static size_t NallocSRef; //!< DEBUG: number of references (all type<T> classes)
174
175 size_t mSz; //!< size of data structure
176 NDREF* mSRef; //!< NDREF structure for reference management
177 mutable bool mIsTemp; //!< true if class is temporary
[245]178};
179
[944]180//! Define operator \<\< for printing
[259]181template<class T>
[268]182inline ostream& operator << (ostream& os, const NDataBlock<T>& a)
[269]183 {a.Print(os); return(os);}
[944]184
185//! Add a constant to datas and return NDataBlock : ND = NDa + b
[268]186template<class T>
187inline NDataBlock<T> operator + (const NDataBlock<T>& a,T b)
[259]188 {return a.Add(b);}
[944]189//! Add a constant to datas and return NDataBlock : ND = b + NDa
[259]190template<class T>
[268]191inline NDataBlock<T> operator + (T b,const NDataBlock<T>& a)
[259]192 {return a.Add(b);}
[944]193//! Substract a constant to datas and return NDataBlock : ND = NDa - b
[259]194template<class T>
[268]195inline NDataBlock<T> operator - (const NDataBlock<T>& a,T b)
[259]196 {return a.Sub(b);}
[944]197//! Substract a constant to datas and return NDataBlock : ND = b - NDa
[259]198template<class T>
[268]199inline NDataBlock<T> operator - (T b,const NDataBlock<T>& a)
[976]200 {return a.Sub(b,true);}
[944]201//! Multiply datas by a constant and return NDataBlock : ND = NDa * b
[259]202template<class T>
[268]203inline NDataBlock<T> operator * (const NDataBlock<T>& a,T b)
[259]204 {return a.Mul(b);}
[944]205//! Multiply datas by a constant and return NDataBlock : ND = b * NDa
[259]206template<class T>
[268]207inline NDataBlock<T> operator * (T b,const NDataBlock<T>& a)
[259]208 {return a.Mul(b);}
[944]209//! Divide datas by a constant and return NDataBlock : ND = NDa / b
[259]210template<class T>
[268]211inline NDataBlock<T> operator / (const NDataBlock<T>& a,T b)
[259]212 {return a.Div(b);}
[944]213//! Divide a constant by datas and return NDataBlock : ND = b / NDa
[259]214template<class T>
[268]215inline NDataBlock<T> operator / (T b,const NDataBlock<T>& a)
[976]216 {return a.Div(b,true);}
[245]217
[944]218//! Add datas of two data blocks and return NDataBlock : ND = NDa + NDb
[259]219template<class T>
[268]220inline NDataBlock<T> operator + (const NDataBlock<T>& a,const NDataBlock<T>& b)
[265]221 {return a.Add(b);}
[944]222//! Substract datas of two data blocks and return NDataBlock : ND = NDa - NDb
[259]223template<class T>
[268]224inline NDataBlock<T> operator - (const NDataBlock<T>& a,const NDataBlock<T>& b)
[259]225 {return a.Sub(b);}
[944]226//! Multiply datas of two data blocks and return NDataBlock : ND = NDa * NDb
[259]227template<class T>
[268]228inline NDataBlock<T> operator * (const NDataBlock<T>& a,const NDataBlock<T>& b)
[259]229 {return a.Mul(b);}
[944]230//! Divide datas of two data blocks and return NDataBlock : ND = NDa / NDb
[259]231template<class T>
[268]232inline NDataBlock<T> operator / (const NDataBlock<T>& a,const NDataBlock<T>& b)
[259]233 {return a.Div(b);}
[245]234
[268]235} // Fin du namespace
[257]236
[245]237#endif
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