source: Sophya/trunk/SophyaLib/TArray/basarr.h@ 1192

Last change on this file since 1192 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: 9.5 KB
Line 
1// This may look like C code, but it is really -*- C++ -*-
2// Base array class - Memory organisation management
3// R. Ansari, C.Magneville 03/2000
4
5#ifndef BaseArray_SEEN
6#define BaseArray_SEEN
7
8#include "machdefs.h"
9#include <math.h>
10#include <iostream.h>
11#include "anydataobj.h"
12#include "mutyv.h"
13#include "dvlist.h"
14
15
16//! Maximum number of dimensions for an array
17/*! \anchor BASEARRAY_MAXNDIMS */
18#define BASEARRAY_MAXNDIMS 5
19
20namespace SOPHYA {
21
22// ------------ classe template Array -----------
23//! Base class for template arrays
24class BaseArray : public AnyDataObj {
25public:
26 //! To define Array or Matrix memory mapping
27 enum MemoryMapping {
28 AutoMemoryMapping = -1, //!< define Auto Memory Mapping
29 SameMemoryMapping = 0, //!< define Same Memory Mapping
30 CMemoryMapping = 1, //!< define C Memory Mapping
31 FortranMemoryMapping = 2 //!< define Fortran Memory Mapping
32 };
33 //! To define Vector type
34 enum VectorType {
35 AutoVectorType = -1, //!< define Auto Vector Type
36 SameVectorType = 0, //!< define Same Vector Type
37 ColumnVector = 1, //!< define Column Vector Type
38 RowVector = 2 //!< define Row Vector Type
39 };
40
41 // threshold for parallel routine call
42 static void SetOpenMPSizeThreshold(sa_size_t thr=200000);
43 //! Get Size threshold for parallel routine call
44 static inline sa_size_t GetOpenMPSizeThreshold() { return openmp_size_threshold; }
45
46 static void SetMaxPrint(int_4 nprt=50, int_4 lev=0);
47 //! Get maximum number of printed elements
48 static inline int_4 GetMaxPrint() { return max_nprt_; }
49 //! Get print level
50 static inline int_4 GetPrintLevel() { return prt_lev_; }
51
52 static short SetDefaultMemoryMapping(short mm=CMemoryMapping);
53 //! Get Default Memory Mapping
54 static inline short GetDefaultMemoryMapping() { return default_memory_mapping; }
55 static short SetDefaultVectorType(short vt=ColumnVector);
56 //! Get Default Vector Type
57 static inline short GetDefaultVectorType() { return default_vector_type; }
58
59 // Creator / destructor
60 BaseArray();
61 virtual ~BaseArray();
62
63 // Returns true if ndim and sizes are equal
64 virtual bool CompareSizes(const BaseArray& a, bool& smo);
65
66 // Compacts \b size=1 array dimensions
67 virtual void CompactAllDim(); // suppresses all size==1 dimensions
68 virtual void CompactTrailingDim(); // suppresses size==1 dimensions after the last size>1 dimension
69
70 // Array dimensions
71 //! Return number of dimensions
72 inline int_4 NbDimensions() const { return( ndim_ ); }
73
74 //! Return total size of the array
75 inline sa_size_t Size() const { return(totsize_); }
76 //! Return size along the first dimension
77 inline sa_size_t SizeX() const { return(size_[0]); }
78 //! Return size along the second dimension
79 inline sa_size_t SizeY() const { return(size_[1]); }
80 //! Return size along the third dimension
81 inline sa_size_t SizeZ() const { return(size_[2]); }
82 //! Return size along the \b ka th dimension
83 inline sa_size_t Size(int_4 ka) const { return(size_[CheckDI(ka,1)]); }
84
85 int_4 MaxSizeKA() const ;
86
87 //! Get memory organization
88 inline short GetMemoryMapping() const
89 { return ( (marowi_ == 1) ? CMemoryMapping : FortranMemoryMapping) ; }
90 //! line index dimension
91 inline int_4 RowsKA() const {return marowi_; }
92 //! column index dimension
93 inline int_4 ColsKA() const {return macoli_; }
94 //! Index dimension of the elements of a vector
95 inline int_4 VectKA() const {return veceli_; }
96 void SetMemoryMapping(short mm=AutoMemoryMapping);
97
98 //! Get Vector type ( \b Line or \b Column vector )
99 inline short GetVectorType() const
100 { return((marowi_ == veceli_) ? ColumnVector : RowVector); }
101 void SetVectorType(short vt=AutoVectorType);
102
103 // memory organisation - packing information
104 //! return true if array is packed in memory
105 inline bool IsPacked() const { return(moystep_ == 1); }
106 //! return true if array is packed along the first dimension
107 inline bool IsPackedX() const { return(step_[0] == 1); }
108 //! return true if array is packed along the second dimension
109 inline bool IsPackedY() const { return(step_[1] == 1); }
110 //! return true if array is packed along the third dimension
111 inline bool IsPackedZ() const { return(step_[2] == 1); }
112 //! return true if array is packed along the \b ka th dimension
113 inline bool IsPacked(int_4 ka) const { return(step_[CheckDI(ka,2)] == 1); }
114
115 //! return the minimum step value along all the dimensions
116 inline sa_size_t MinStep() const { return(minstep_); }
117 //! return the average step value along all the dimensions
118 inline sa_size_t AvgStep() const { return(moystep_); }
119 //! return the step along the first dimension
120 inline sa_size_t StepX() const { return(step_[0]); }
121 //! return the step along the second dimension
122 inline sa_size_t StepY() const { return(step_[1]); }
123 //! return the step along the third dimension
124 inline sa_size_t StepZ() const { return(step_[2]); }
125 //! return the step along the \b ka th dimension
126 inline sa_size_t Step(int_4 ka) const { return(step_[CheckDI(ka,3)]); }
127
128 int_4 MinStepKA() const ;
129
130 // Offset of element ip
131 sa_size_t Offset(sa_size_t ip=0) const ;
132 // Offset of the i'th vector along axe ka
133 sa_size_t Offset(int_4 ka, sa_size_t i) const ;
134 inline sa_size_t Offset(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it=0, sa_size_t iu=0) const;
135
136 // an abstract element acces methode
137 virtual MuTyV & ValueAtPosition(sa_size_t ip) const = 0;
138
139 // Pour recuperer pas et numero d'axe pour operations sur deux arrays
140 void GetOpeParams(const BaseArray& a, bool smo, int_4& ax, int_4& axa, sa_size_t& step,
141 sa_size_t& stepa, sa_size_t& gpas, sa_size_t& naxa);
142 // Impression, I/O, ...
143 void Show(ostream& os, bool si=false) const;
144 //! Show information on \b cout
145 inline void Show() const { Show(cout); }
146 virtual string InfoString() const;
147
148 // DVList info Object
149 DVList& Info();
150
151protected:
152 inline int_4 CheckDI(int_4 ka, int msg) const ;
153 inline void CheckBound(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu, int msg) const ;
154 // Changing Sizes/NDim ... return true if OK
155 bool UpdateSizes(sa_size_t ndim, const sa_size_t * siz, sa_size_t step, sa_size_t offset, string & exmsg);
156 bool UpdateSizes(sa_size_t ndim, const sa_size_t * siz, const sa_size_t * step, sa_size_t offset, string & exmsg);
157 bool UpdateSizes(const BaseArray& a, string & exmsg);
158 static sa_size_t ComputeTotalSize(sa_size_t ndim, const sa_size_t * siz, sa_size_t step, sa_size_t offset) ;
159 // Organisation memoire
160 static short SelectMemoryMapping(short mm);
161 static short SelectVectorType(short vt);
162 void UpdateMemoryMapping(short mm);
163 void UpdateMemoryMapping(BaseArray const & a, short mm);
164
165 // Pour Extraction de sous-tableau
166 virtual void UpdateSubArraySizes(BaseArray & ra, sa_size_t ndim, sa_size_t * siz, sa_size_t * pos, sa_size_t * step) const;
167
168 int_4 ndim_; //!< number of dimensions of array
169 sa_size_t size_[BASEARRAY_MAXNDIMS]; //!< array of the size in each dimension
170 sa_size_t totsize_; //!< Total number of elements
171 sa_size_t offset_; //!< global offset -\> position of elem[0] in DataBlock
172 //! two consecutive elements distance in a given dimension
173 sa_size_t step_[BASEARRAY_MAXNDIMS];
174 sa_size_t minstep_; //!< minimal step (in any axes)
175 sa_size_t moystep_; //!< mean step, if == 0 --\> non regular steps
176 int_2 marowi_; //!< For matrices, Row index in dimensions
177 int_2 macoli_; //!< For matrices, Column index in dimensions
178 int_2 veceli_; //!< For vectors, dimension index = marowi_/macoli_ (Row/Col vectors)
179 int_2 arrtype_; //!< 0 a TArray, 1 TMatrix , 2 TVector
180 DVList* mInfo; //!< Infos (variables) attached to the array
181
182 static char * ck_op_msg_[6]; //!< Operation messages for CheckDI() CheckBound()
183 static int_4 max_nprt_; //!< maximum number of printed elements
184 static int_4 prt_lev_; //!< Print level
185 static short default_memory_mapping; //!< Default memory mapping
186 static short default_vector_type; //!< Default vector type Row/Column
187 static sa_size_t openmp_size_threshold; //!< Size limit for parallel routine calls
188};
189
190// --------------------------------------------------
191// Methodes inline de verification
192// --------------------------------------------------
193//! to verify the compatibility of the dimension index
194inline int_4 BaseArray::CheckDI(int_4 ka, int msg) const
195{
196 if ( (ka < 0) || (ka >= ndim_) ) {
197 string txt = "BaseArray::CheckDimensionIndex/Error "; txt += ck_op_msg_[msg];
198 throw(RangeCheckError(txt));
199 }
200 return(ka);
201}
202
203//! to verify the compatibility of the indexes in all dimensions
204inline void BaseArray::CheckBound(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu, int msg) const
205{
206 if ( (ix >= size_[0]) || (ix < 0) || (iy >= size_[1]) || (iy < 0) ||
207 (iz >= size_[2]) || (iz < 0) || (it >= size_[3]) || (it < 0) ||
208 (iu >= size_[4]) || (iu < 0) ) {
209 string txt = "BaseArray::CheckArrayBound/Error "; txt += ck_op_msg_[msg];
210 throw(RangeCheckError(txt));
211 }
212 return;
213}
214
215
216
217// --------------------------------------------------
218// Position d'un element
219// --------------------------------------------------
220//! Offset of element (ix,iy,iz,it,iu)
221inline sa_size_t BaseArray::Offset(sa_size_t ix, sa_size_t iy, sa_size_t iz, sa_size_t it, sa_size_t iu) const
222{
223#ifdef SO_BOUNDCHECKING
224 CheckBound(ix, iy, iz, it, iu, 4);
225#endif
226 return ( offset_+ ix*step_[0] + iy*step_[1] + iz*step_[2] +
227 it*step_[3] + iu*step_[4] );
228}
229
230
231} // Fin du namespace
232
233#endif
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