[787] | 1 | // Base class for numerical arrays
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| 2 | // R. Ansari, C.Magneville 03/2000
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| 3 |
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| 4 | #include "machdefs.h"
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| 5 | #include <stdio.h>
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| 6 | #include <stdlib.h>
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| 7 | #include "pexceptions.h"
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| 8 | #include "basarr.h"
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| 9 |
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[926] | 10 | /*!
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| 11 | \class SOPHYA::BaseArray
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| 12 | \ingroup TArray
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| 13 | Base class for template arrays
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| 14 | No data are connected to this class.
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| 15 |
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| 16 | Define base methods, enum and defaults for TArray , TMatrix and TVector.
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| 17 | */
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| 18 |
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[787] | 19 | // Variables statiques globales
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[894] | 20 | char * BaseArray::ck_op_msg_[6] =
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| 21 | {"???", "Size(int )", "IsPacked(int )"
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| 22 | ,"Stride(int )", "ElemCheckBound()", "operator()" };
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[787] | 23 | uint_4 BaseArray::max_nprt_ = 50;
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[813] | 24 | uint_4 BaseArray::prt_lev_ = 0;
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[804] | 25 | short BaseArray::default_memory_mapping = CMemoryMapping;
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[813] | 26 | short BaseArray::default_vector_type = ColumnVector;
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| 27 | uint_8 BaseArray::openmp_size_threshold = 200000;
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[787] | 28 |
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[813] | 29 | // ------ Methodes statiques globales --------
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| 30 |
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[890] | 31 | //! Set maximum number of printed elements and print level
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| 32 | /*!
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| 33 | \param nprt : maximum number of print
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| 34 | \param lev : print level
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| 35 | */
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[813] | 36 | void BaseArray::SetMaxPrint(uint_4 nprt, uint_4 lev)
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[787] | 37 | {
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| 38 | max_nprt_ = nprt;
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[813] | 39 | prt_lev_ = (lev < 3) ? lev : 3;
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[787] | 40 | }
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| 41 |
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[890] | 42 | //! Set Size threshold for parallel routine call
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| 43 | /*!
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| 44 | \param thr : thresold value
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| 45 | */
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[813] | 46 | void BaseArray::SetOpenMPSizeThreshold(uint_8 thr)
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| 47 | {
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| 48 | openmp_size_threshold = thr;
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| 49 | }
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[787] | 50 |
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[813] | 51 |
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[894] | 52 | //! Compute totale size
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| 53 | /*!
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| 54 | \param ndim : number of dimensions
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| 55 | \param siz : array of size along the \b ndim dimensions
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| 56 | \param step[ndim] : step value
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| 57 | \param offset : offset value
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| 58 | \return Total size of the array
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| 59 | */
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[804] | 60 | uint_8 BaseArray::ComputeTotalSize(uint_4 ndim, const uint_4 * siz, uint_4 step, uint_8 offset)
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[787] | 61 | {
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| 62 | uint_8 rs = step;
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[958] | 63 | for(uint_4 k=0; k<ndim; k++) rs *= siz[k];
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[787] | 64 | return(rs+offset);
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| 65 | }
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| 66 |
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[894] | 67 | //! Set Default Memory Mapping
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| 68 | /*!
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| 69 | \param mm : Memory Mapping type
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| 70 | \verbatim
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| 71 | mm == CMemoryMapping : C like memory mapping
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| 72 | mm == FortranMemoryMapping : Fortran like memory mapping
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| 73 | \endverbatim
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| 74 | \verbatim
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| 75 | # ===== For Matrices
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| 76 | *** MATHEMATICS: m(row,column) with indexes running [1,n])
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| 77 | | 11 12 13 |
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| 78 | matrix Math = Mmath= | 21 22 23 |
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| 79 | | 31 32 33 |
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| 80 | *** IDL, \b FORTRAN: indexes data in \b row-major format:
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| 81 | indexes arrays in (column,row) order.
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| 82 | index IDL running [0,n[ ; index FORTRAN running [1,n]
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| 83 | M in memory: [ 11 12 13 : 21 22 23 : 31 32 33 : ... ]
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| 84 | line 1 : line 2 : line 3 : ...
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| 85 | ex: Midl(0,2) = Mfor(1,3) = Mmath(3,1) = 31
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| 86 | Midl(2,0) = Mfor(3,1) = Mmath(1,3) = 13
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| 87 | *** C: indexes data in \b column-major format:
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| 88 | indexes arrays in [row][column] order.
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| 89 | index C running [0,n[
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| 90 | M in memory: [ 11 21 31 : 12 22 32 : 13 23 33 : ... ]
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| 91 | column 1 : column 2 : column 3 : ...
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| 92 | ex: Mc[2][0] = Mmath(3,1) = 31
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| 93 | Mc[0][2] = Mmath(1,3) = 13
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| 94 | *** RESUME diff Idl/Fortan/C/Math:
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| 95 | Midl(col-1,row-1) = Mfor(col,row) = Mc[row-1][col-1] = Mmath(row,col)
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| 96 | TRANSPOSE(column-major array) --> row-major array
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| 97 | \endverbatim
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| 98 | \return default memory mapping value
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| 99 | */
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[804] | 100 | short BaseArray::SetDefaultMemoryMapping(short mm)
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| 101 | {
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[813] | 102 | default_memory_mapping = (mm != CMemoryMapping) ? FortranMemoryMapping : CMemoryMapping;
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[804] | 103 | return default_memory_mapping;
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| 104 | }
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| 105 |
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[894] | 106 | //! Set Default Vector Type
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| 107 | /*!
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| 108 | \param vt : vector type (ColumnVector,RowVector)
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| 109 | \return default vector type value
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| 110 | */
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[813] | 111 | short BaseArray::SetDefaultVectorType(short vt)
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| 112 | {
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| 113 | default_vector_type = (vt != ColumnVector) ? RowVector : ColumnVector ;
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| 114 | return default_vector_type;
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| 115 | }
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[804] | 116 |
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[894] | 117 | //! Select Memory Mapping
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| 118 | /*!
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| 119 | Do essentially nothing.
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| 120 | \param mm : type of Memory Mapping (CMemoryMapping,FortranMemoryMapping)
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| 121 | \return return \b mm if it makes sense or default memory mapping value
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| 122 | \sa SetDefaultMemoryMapping
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| 123 | */
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[804] | 124 | short BaseArray::SelectMemoryMapping(short mm)
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| 125 | {
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| 126 | if ( (mm == CMemoryMapping) || (mm == FortranMemoryMapping) ) return (mm) ;
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| 127 | else return (default_memory_mapping);
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| 128 | }
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[894] | 129 |
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| 130 | //! Select Vector type
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| 131 | /*!
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| 132 | Do essentially nothing.
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| 133 | \param vt : vector type (ColumnVector,RowVector)
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| 134 | \return return \b vt if it makes sense or default vector type
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| 135 | \sa SetDefaultVectorType
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| 136 | */
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[813] | 137 | short BaseArray::SelectVectorType(short vt)
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| 138 | {
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| 139 | if ((vt == ColumnVector) || (vt == RowVector)) return(vt);
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| 140 | else return(default_vector_type);
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| 141 | }
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[804] | 142 |
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[894] | 143 | //! Update Memory Mapping
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| 144 | /*!
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| 145 | Update variables marowi_ macoli_ veceli_
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| 146 | \param mm : type of Memory Mapping (CMemoryMapping,FortranMemoryMapping)
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| 147 | \sa SetDefaultMemoryMapping
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| 148 | */
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[813] | 149 | void BaseArray::UpdateMemoryMapping(short mm)
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[804] | 150 | {
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[813] | 151 | short vt = default_vector_type;
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[804] | 152 | if ( (mm != CMemoryMapping) && (mm != FortranMemoryMapping) ) mm = default_memory_mapping;
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| 153 | if (mm == CMemoryMapping) {
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[813] | 154 | marowi_ = 1; macoli_ = 0;
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[804] | 155 | }
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| 156 | else {
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[813] | 157 | marowi_ = 0; macoli_ = 1;
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| 158 | }
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| 159 |
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| 160 | if ( (ndim_ == 2) && ((size_[0] == 1) || (size_[1] == 1)) ) {
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| 161 | // Choix automatique Vecteur ligne ou colonne
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| 162 | if ( size_[macoli_] == 1) veceli_ = marowi_;
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| 163 | else veceli_ = macoli_;
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| 164 | }
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| 165 | else veceli_ = (vt == ColumnVector ) ? marowi_ : macoli_;
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| 166 | ck_memo_vt_ = true; // Check MemMapping and VectorType for CompareSize
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[804] | 167 | }
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| 168 |
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[894] | 169 | //! Update Memory Mapping
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| 170 | /*!
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| 171 | \param a : Array to be compared with
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| 172 | \param mm : type of Memory Mapping or memory mapping transfert
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| 173 | (SameMemoryMapping,AutoMemoryMapping,CMemoryMapping,FortranMemoryMapping)
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| 174 | \sa SetDefaultMemoryMapping
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| 175 | */
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[804] | 176 | void BaseArray::UpdateMemoryMapping(BaseArray const & a, short mm)
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| 177 | {
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[813] | 178 | short vt = default_vector_type;
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| 179 | if (mm == SameMemoryMapping) {
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[804] | 180 | mm = ((a.marowi_ == 1) ? CMemoryMapping : FortranMemoryMapping);
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[813] | 181 | vt = (a.marowi_ == a.veceli_) ? ColumnVector : RowVector;
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| 182 | }
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| 183 | else if (mm == AutoMemoryMapping) mm = default_memory_mapping;
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| 184 |
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[804] | 185 | if ( (mm != CMemoryMapping) && (mm != FortranMemoryMapping) ) mm = default_memory_mapping;
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| 186 | if (mm == CMemoryMapping) {
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[813] | 187 | marowi_ = 1; macoli_ = 0;
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[804] | 188 | }
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| 189 | else {
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[813] | 190 | marowi_ = 0; macoli_ = 1;
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| 191 | }
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| 192 | if ( (ndim_ == 2) && ((size_[0] == 1) || (size_[1] == 1)) ) {
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| 193 | // Choix automatique Vecteur ligne ou colonne
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| 194 | if ( size_[macoli_] == 1) veceli_ = marowi_;
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| 195 | else veceli_ = marowi_;
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| 196 | }
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| 197 | else veceli_ = (vt == ColumnVector ) ? marowi_ : macoli_;
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| 198 | ck_memo_vt_ = true; // Check MemMapping and VectorType for CompareSize
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[804] | 199 | }
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| 200 |
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[894] | 201 | //! Set Memory Mapping type
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| 202 | /*!
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| 203 | Compute values for variables marowi_ macoli_ veceli_
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| 204 | \param mm : Memory Mapping type (SameMemoryMapping,AutoMemoryMapping
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| 205 | ,CMemoryMapping,FortranMemoryMapping)
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| 206 | \sa SetDefaultMemoryMapping
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| 207 | */
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[813] | 208 | void BaseArray::SetMemoryMapping(short mm)
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| 209 | {
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| 210 | if (mm == SameMemoryMapping) return;
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| 211 | if (mm == AutoMemoryMapping) mm = default_memory_mapping;
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| 212 | if ( (mm != CMemoryMapping) && (mm != FortranMemoryMapping) ) return;
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| 213 | short vt = (marowi_ == veceli_) ? ColumnVector : RowVector;
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| 214 | if (mm == CMemoryMapping) {
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| 215 | marowi_ = 1; macoli_ = 0;
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| 216 | }
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| 217 | else {
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| 218 | marowi_ = 0; macoli_ = 1;
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| 219 | }
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| 220 | if ( (ndim_ == 2) && ((size_[0] == 1) || (size_[1] == 1)) ) {
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| 221 | // Choix automatique Vecteur ligne ou colonne
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| 222 | if ( size_[macoli_] == 1) veceli_ = marowi_;
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| 223 | else veceli_ = macoli_;
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| 224 | }
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| 225 | else veceli_ = (vt == ColumnVector ) ? marowi_ : macoli_;
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| 226 | ck_memo_vt_ = true; // Check MemMapping and VectorType for CompareSize
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| 227 | }
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[804] | 228 |
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[894] | 229 | //! Set Vector Type
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| 230 | /*!
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| 231 | Compute values for variable veceli_
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| 232 | \param vt : vector type ()
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| 233 | \sa SetDefaultVectorType
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| 234 | */
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[813] | 235 | void BaseArray::SetVectorType(short vt)
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| 236 | {
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| 237 | if (vt == SameVectorType) return;
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| 238 | if (vt == AutoVectorType) vt = default_vector_type;
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| 239 | if ( (ndim_ == 2) && ((size_[0] == 1) || (size_[1] == 1)) ) {
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| 240 | // Choix automatique Vecteur ligne ou colonne
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| 241 | if ( size_[macoli_] == 1) veceli_ = marowi_;
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| 242 | else veceli_ = macoli_;
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| 243 | }
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| 244 | else veceli_ = (vt == ColumnVector ) ? marowi_ : macoli_;
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| 245 | ck_memo_vt_ = true; // Check MemMapping and VectorType for CompareSize
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| 246 | }
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| 247 |
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[787] | 248 | // -------------------------------------------------------
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| 249 | // Methodes de la classe
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| 250 | // -------------------------------------------------------
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| 251 |
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[890] | 252 | //! Default constructor
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[787] | 253 | BaseArray::BaseArray()
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| 254 | : mInfo(NULL)
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| 255 | {
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| 256 | ndim_ = 0;
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| 257 | for(int k=0; k<BASEARRAY_MAXNDIMS; k++) step_[k] = size_[k] = 0;
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| 258 | totsize_ = 0;
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| 259 | minstep_ = 0;
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| 260 | moystep_ = 0;
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| 261 | offset_ = 0;
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[813] | 262 | // Default for matrices : Memory organisation and Vector type
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| 263 | if (default_memory_mapping == CMemoryMapping) {
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| 264 | marowi_ = 1; macoli_ = 0;
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| 265 | }
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| 266 | else {
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| 267 | marowi_ = 0; macoli_ = 1;
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| 268 | }
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| 269 | veceli_ = (default_vector_type == ColumnVector ) ? marowi_ : macoli_;
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| 270 | ck_memo_vt_ = false; // Default : Don't Check MemMapping and VectorType for CompareSize
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[787] | 271 | }
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| 272 |
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[890] | 273 | //! Destructor
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[787] | 274 | BaseArray::~BaseArray()
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| 275 | {
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| 276 | }
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| 277 |
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| 278 |
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[894] | 279 | //! Returns true if dimension and sizes are equal
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[890] | 280 | /*!
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| 281 | \param a : array to be compared
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[894] | 282 | \return true if ndim and sizes[ndim] are equal, false if not
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[890] | 283 | */
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[787] | 284 | bool BaseArray::CompareSizes(const BaseArray& a)
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| 285 | {
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| 286 | if (ndim_ != a.ndim_) return(false);
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[958] | 287 | for(uint_4 k=0; k<ndim_; k++)
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[787] | 288 | if (size_[k] != a.size_[k]) return(false);
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[813] | 289 | // $CHECK$ Reza doit-on verifier ca
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| 290 | if (ck_memo_vt_ && a.ck_memo_vt_)
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| 291 | if ( (macoli_ != a.macoli_) || (marowi_ != a.marowi_) ||
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| 292 | (veceli_ != a.veceli_) ) return(false);
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[787] | 293 | return(true);
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| 294 | }
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| 295 |
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[894] | 296 | //! Change dimension if some size == 1
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[787] | 297 | void BaseArray::CompactAllDim()
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| 298 | {
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| 299 | if (ndim_ < 2) return;
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| 300 | uint_4 ndim = 0;
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| 301 | uint_4 size[BASEARRAY_MAXNDIMS];
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| 302 | uint_4 step[BASEARRAY_MAXNDIMS];
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[958] | 303 | for(uint_4 k=0; k<ndim_; k++) {
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[787] | 304 | if (size_[k] < 2) continue;
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| 305 | size[ndim] = size_[k];
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| 306 | step[ndim] = step_[k];
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| 307 | ndim++;
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| 308 | }
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| 309 | if (ndim == 0) {
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| 310 | size[0] = size_[0];
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| 311 | step[0] = step_[0];
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| 312 | ndim = 1;
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| 313 | }
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| 314 | string exmsg = "BaseArray::CompactAllDim() ";
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| 315 | if (!UpdateSizes(ndim, size, step, offset_, exmsg)) throw( ParmError(exmsg) );
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| 316 | return;
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| 317 | }
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| 318 |
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[894] | 319 | //! Change dimension if some trailed size == 1
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[787] | 320 | void BaseArray::CompactTrailingDim()
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| 321 | {
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| 322 | if (ndim_ < 2) return;
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| 323 | uint_4 ndim = 0;
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| 324 | uint_4 size[BASEARRAY_MAXNDIMS];
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| 325 | uint_4 step[BASEARRAY_MAXNDIMS];
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[958] | 326 | for(uint_4 k=0; k<ndim_; k++) {
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[787] | 327 | size[ndim] = size_[k];
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| 328 | step[ndim] = step_[k];
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| 329 | if (size_[k] > 1) ndim=k;
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| 330 | }
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| 331 | if (ndim == 0) ndim = 1;
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| 332 | string exmsg = "BaseArray::CompactTrailingDim() ";
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| 333 | if (!UpdateSizes(ndim, size, step, offset_, exmsg)) throw( ParmError(exmsg) );
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| 334 | return;
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| 335 | }
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| 336 |
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[894] | 337 | //! return minimum value for step[ndim]
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[787] | 338 | uint_4 BaseArray::MinStepKA() const
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| 339 | {
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[958] | 340 | for(uint_4 ka=0; ka<ndim_; ka++)
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[787] | 341 | if (step_[ka] == minstep_) return(ka);
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| 342 | return(0);
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| 343 | }
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| 344 |
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[894] | 345 | //! return maximum value for step[ndim]
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[787] | 346 | uint_4 BaseArray::MaxSizeKA() const
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| 347 | {
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| 348 | uint_4 ka = 0;
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| 349 | uint_4 mx = size_[0];
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[958] | 350 | for(uint_4 k=0; k<ndim_; k++)
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[787] | 351 | if (size_[k] > mx) { ka = k; mx = size_[k]; }
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| 352 | return(ka);
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| 353 | }
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| 354 |
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| 355 |
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| 356 | // Acces lineaire aux elements .... Calcul d'offset
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[813] | 357 | // --------------------------------------------------
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| 358 | // Position de l'element 0 du vecteur i selon l'axe ka
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| 359 | // --------------------------------------------------
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[894] | 360 | //! return position of first element for vector \b i alond \b ka th axe.
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[813] | 361 | uint_8 BaseArray::Offset(uint_4 ka, uint_8 i) const
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| 362 | {
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[787] | 363 |
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[813] | 364 | if ( (ndim_ < 1) || (i == 0) ) return(offset_);
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| 365 | //#ifdef SO_BOUNDCHECKING
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| 366 | if (ka >= ndim_)
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| 367 | throw RangeCheckError("BaseArray::Offset(uint_4 ka, uint_8 i) Axe KA Error");
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| 368 | if ( i*size_[ka] >= totsize_ )
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| 369 | throw RangeCheckError("BaseArray::Offset(uint_4 ka, uint_8 i) Index Error");
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| 370 | //#endif
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| 371 | uint_4 idx[BASEARRAY_MAXNDIMS];
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[958] | 372 | uint_4 k;
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[813] | 373 | uint_8 rest = i;
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| 374 | idx[ka] = 0;
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| 375 | for(k=0; k<ndim_; k++) {
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| 376 | if (k == ka) continue;
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| 377 | idx[k] = rest%size_[k]; rest /= size_[k];
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| 378 | }
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| 379 | uint_8 off = offset_;
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| 380 | for(k=0; k<ndim_; k++) off += idx[k]*step_[k];
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| 381 | return (off);
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| 382 | }
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| 383 |
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[894] | 384 | //! return position of element \b ip.
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[787] | 385 | uint_8 BaseArray::Offset(uint_8 ip) const
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| 386 | {
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[813] | 387 | if ( (ndim_ < 1) || (ip == 0) ) return(offset_);
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| 388 | //#ifdef SO_BOUNDCHECKING
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| 389 | if (ip >= totsize_)
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| 390 | throw RangeCheckError("BaseArray::Offset(uint_8 ip) Out of range index ip");
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| 391 | //#endif
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| 392 |
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| 393 | uint_4 idx[BASEARRAY_MAXNDIMS];
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[958] | 394 | uint_4 k;
|
---|
[813] | 395 | uint_8 rest = ip;
|
---|
| 396 | for(k=0; k<ndim_; k++) {
|
---|
| 397 | idx[k] = rest%size_[k]; rest /= size_[k];
|
---|
| 398 | }
|
---|
| 399 | //#ifdef SO_BOUNDCHECKING
|
---|
| 400 | if (rest != 0)
|
---|
| 401 | throw PError("BaseArray::Offset(uint_8 ip) GUG !!! rest != 0");
|
---|
| 402 | //#endif
|
---|
| 403 | // if (rest != 0) cerr << " BUG ---- BaseArray::Offset( " << ip << " )" << rest << endl;
|
---|
| 404 | // cerr << " DBG-Offset( " << ip << ")" ;
|
---|
| 405 | // for(k=0; k<ndim_; k++) cerr << idx[k] << "," ;
|
---|
| 406 | // cerr << " ZZZZ " << endl;
|
---|
| 407 | uint_8 off = offset_;
|
---|
| 408 | for(k=0; k<ndim_; k++) off += idx[k]*step_[k];
|
---|
| 409 | return (off);
|
---|
[787] | 410 | }
|
---|
| 411 |
|
---|
| 412 |
|
---|
| 413 | // ----------------------------------------------------
|
---|
| 414 | // Impression, etc ...
|
---|
| 415 | // ----------------------------------------------------
|
---|
| 416 |
|
---|
[894] | 417 | //! Show infos on stream \b os (\b si to display DvList)
|
---|
[787] | 418 | void BaseArray::Show(ostream& os, bool si) const
|
---|
| 419 | {
|
---|
[850] | 420 | if (ndim_ < 1) {
|
---|
| 421 | os << "\n--- " << BaseArray::InfoString() << " Unallocated Array ! " << endl;
|
---|
| 422 | return;
|
---|
| 423 | }
|
---|
[813] | 424 | os << "\n--- " << InfoString() ;
|
---|
| 425 | os << " ND=" << ndim_ << " SizeX*Y*...= " ;
|
---|
[958] | 426 | for(uint_4 k=0; k<ndim_; k++) {
|
---|
[787] | 427 | os << size_[k];
|
---|
[813] | 428 | if (k<ndim_-1) os << "x";
|
---|
[787] | 429 | }
|
---|
[813] | 430 | os << " ---" << endl;
|
---|
| 431 | if (prt_lev_ > 0) {
|
---|
| 432 | os << " TotSize= " << totsize_ << " Step(X Y ...)=" ;
|
---|
[958] | 433 | for(uint_4 k=0; k<ndim_; k++) os << step_[k] << " " ;
|
---|
[813] | 434 | os << " Offset= " << offset_ << endl;
|
---|
| 435 | }
|
---|
| 436 | if (prt_lev_ > 1) {
|
---|
| 437 | os << " MemoryMapping=" << GetMemoryMapping() << " VecType= " << GetVectorType()
|
---|
| 438 | << " RowsKA= " << RowsKA() << " ColsKA= " << ColsKA()
|
---|
| 439 | << " VectKA=" << VectKA() << endl;
|
---|
| 440 | }
|
---|
| 441 | if (!si && (prt_lev_ < 2)) return;
|
---|
| 442 | if (mInfo != NULL) os << (*mInfo) << endl;
|
---|
[787] | 443 |
|
---|
| 444 | }
|
---|
| 445 |
|
---|
[894] | 446 | //! Return BaseArray Type
|
---|
[813] | 447 | string BaseArray::InfoString() const
|
---|
| 448 | {
|
---|
| 449 | string rs = "BaseArray Type= ";
|
---|
| 450 | rs += typeid(*this).name() ;
|
---|
| 451 | return rs;
|
---|
| 452 | }
|
---|
[787] | 453 |
|
---|
[894] | 454 | //! Return attached DVList
|
---|
[787] | 455 | DVList& BaseArray::Info()
|
---|
| 456 | {
|
---|
| 457 | if (mInfo == NULL) mInfo = new DVList;
|
---|
| 458 | return(*mInfo);
|
---|
| 459 | }
|
---|
| 460 |
|
---|
[894] | 461 | //! Update sizes and information for array
|
---|
| 462 | /*!
|
---|
| 463 | \param ndim : dimension
|
---|
| 464 | \param siz[ndim] : sizes
|
---|
| 465 | \param step : step (must be the same on all dimensions)
|
---|
| 466 | \param offset : offset of the first element
|
---|
| 467 | \return true if all OK, false if problems appear
|
---|
| 468 | \return string \b exmsg for explanation in case of problems
|
---|
| 469 | */
|
---|
[787] | 470 | bool BaseArray::UpdateSizes(uint_4 ndim, const uint_4 * siz, uint_4 step, uint_8 offset, string & exmsg)
|
---|
| 471 | {
|
---|
| 472 | if (ndim >= BASEARRAY_MAXNDIMS) {
|
---|
| 473 | exmsg += " NDim Error"; return false;
|
---|
| 474 | }
|
---|
| 475 | if (step < 1) {
|
---|
| 476 | exmsg += " Step(=0) Error"; return false;
|
---|
| 477 | }
|
---|
| 478 |
|
---|
| 479 | minstep_ = moystep_ = step;
|
---|
| 480 |
|
---|
| 481 | // Flagging bad updates ...
|
---|
| 482 | ndim_ = 0;
|
---|
| 483 |
|
---|
| 484 | totsize_ = 1;
|
---|
[958] | 485 | uint_4 k;
|
---|
[787] | 486 | for(k=0; k<BASEARRAY_MAXNDIMS; k++) {
|
---|
| 487 | size_[k] = 1;
|
---|
| 488 | step_[k] = 0;
|
---|
| 489 | }
|
---|
| 490 | for(k=0; k<ndim; k++) {
|
---|
| 491 | size_[k] = siz[k] ;
|
---|
| 492 | step_[k] = totsize_*step;
|
---|
| 493 | totsize_ *= size_[k];
|
---|
| 494 | }
|
---|
| 495 | if (totsize_ < 1) {
|
---|
| 496 | exmsg += " Size Error"; return false;
|
---|
| 497 | }
|
---|
| 498 | offset_ = offset;
|
---|
[813] | 499 | // Default for matrices : Memory organisation and Vector type
|
---|
| 500 | if (default_memory_mapping == CMemoryMapping) {
|
---|
| 501 | marowi_ = 1; macoli_ = 0;
|
---|
| 502 | }
|
---|
| 503 | else {
|
---|
| 504 | marowi_ = 0; macoli_ = 1;
|
---|
| 505 | }
|
---|
| 506 | veceli_ = (default_vector_type == ColumnVector ) ? marowi_ : macoli_;
|
---|
| 507 | ck_memo_vt_ = false; // Default : Don't Check MemMapping and VectorType for CompareSize
|
---|
[787] | 508 | // Update OK
|
---|
| 509 | ndim_ = ndim;
|
---|
| 510 | return true;
|
---|
| 511 | }
|
---|
| 512 |
|
---|
[894] | 513 | //! Update sizes and information for array
|
---|
| 514 | /*!
|
---|
| 515 | \param ndim : dimension
|
---|
| 516 | \param siz[ndim] : sizes
|
---|
| 517 | \param step[ndim] : steps
|
---|
| 518 | \param offset : offset of the first element
|
---|
| 519 | \return true if all OK, false if problems appear
|
---|
| 520 | \return string \b exmsg for explanation in case of problems
|
---|
| 521 | */
|
---|
[787] | 522 | bool BaseArray::UpdateSizes(uint_4 ndim, const uint_4 * siz, const uint_4 * step, uint_8 offset, string & exmsg)
|
---|
| 523 | {
|
---|
| 524 | if (ndim >= BASEARRAY_MAXNDIMS) {
|
---|
| 525 | exmsg += " NDim Error"; return false;
|
---|
| 526 | }
|
---|
| 527 |
|
---|
| 528 | // Flagging bad updates ...
|
---|
| 529 | ndim_ = 0;
|
---|
| 530 |
|
---|
| 531 | totsize_ = 1;
|
---|
[958] | 532 | uint_4 k;
|
---|
[787] | 533 | for(k=0; k<BASEARRAY_MAXNDIMS; k++) {
|
---|
| 534 | size_[k] = 1;
|
---|
| 535 | step_[k] = 0;
|
---|
| 536 | }
|
---|
| 537 | uint_4 minstep = step[0];
|
---|
| 538 | for(k=0; k<ndim; k++) {
|
---|
| 539 | size_[k] = siz[k] ;
|
---|
| 540 | step_[k] = step[k];
|
---|
| 541 | totsize_ *= size_[k];
|
---|
| 542 | if (step_[k] < minstep) minstep = step_[k];
|
---|
| 543 | }
|
---|
| 544 | if (minstep < 1) {
|
---|
| 545 | exmsg += " Step(=0) Error"; return false;
|
---|
| 546 | }
|
---|
| 547 | if (totsize_ < 1) {
|
---|
| 548 | exmsg += " Size Error"; return false;
|
---|
| 549 | }
|
---|
| 550 | uint_8 plast = 0;
|
---|
| 551 | for(k=0; k<ndim; k++) plast += (siz[k]-1)*step[k];
|
---|
| 552 | if (plast == minstep*totsize_ ) moystep_ = minstep;
|
---|
| 553 | else moystep_ = 0;
|
---|
| 554 | minstep_ = minstep;
|
---|
| 555 | offset_ = offset;
|
---|
[813] | 556 | // Default for matrices : Memory organisation and Vector type
|
---|
| 557 | if (default_memory_mapping == CMemoryMapping) {
|
---|
| 558 | marowi_ = 1; macoli_ = 0;
|
---|
| 559 | }
|
---|
| 560 | else {
|
---|
| 561 | marowi_ = 0; macoli_ = 1;
|
---|
| 562 | }
|
---|
| 563 | veceli_ = (default_vector_type == ColumnVector ) ? marowi_ : macoli_;
|
---|
| 564 | ck_memo_vt_ = false; // Default : Don't Check MemMapping and VectorType for CompareSize
|
---|
[787] | 565 | // Update OK
|
---|
| 566 | ndim_ = ndim;
|
---|
| 567 | return true;
|
---|
| 568 | }
|
---|
| 569 |
|
---|
[894] | 570 | //! Update sizes and information relative to array \b a
|
---|
| 571 | /*!
|
---|
| 572 | \param a : array to be compare with
|
---|
| 573 | \return true if all OK, false if problems appear
|
---|
| 574 | \return string \b exmsg for explanation in case of problems
|
---|
| 575 | */
|
---|
[787] | 576 | bool BaseArray::UpdateSizes(const BaseArray& a, string & exmsg)
|
---|
| 577 | {
|
---|
| 578 | if (a.ndim_ >= BASEARRAY_MAXNDIMS) {
|
---|
| 579 | exmsg += " NDim Error"; return false;
|
---|
| 580 | }
|
---|
| 581 |
|
---|
| 582 | // Flagging bad updates ...
|
---|
| 583 | ndim_ = 0;
|
---|
| 584 |
|
---|
| 585 | totsize_ = 1;
|
---|
[958] | 586 | uint_4 k;
|
---|
[787] | 587 | for(k=0; k<BASEARRAY_MAXNDIMS; k++) {
|
---|
| 588 | size_[k] = 1;
|
---|
| 589 | step_[k] = 0;
|
---|
| 590 | }
|
---|
| 591 | uint_4 minstep = a.step_[0];
|
---|
| 592 | for(k=0; k<a.ndim_; k++) {
|
---|
| 593 | size_[k] = a.size_[k] ;
|
---|
| 594 | step_[k] = a.step_[k];
|
---|
| 595 | totsize_ *= size_[k];
|
---|
| 596 | if (step_[k] < minstep) minstep = step_[k];
|
---|
| 597 | }
|
---|
| 598 | if (minstep < 1) {
|
---|
| 599 | exmsg += " Step(=0) Error"; return false;
|
---|
| 600 | }
|
---|
| 601 | if (totsize_ < 1) {
|
---|
| 602 | exmsg += " Size Error"; return false;
|
---|
| 603 | }
|
---|
| 604 |
|
---|
| 605 | minstep_ = a.minstep_;
|
---|
| 606 | moystep_ = a.moystep_;
|
---|
| 607 | offset_ = a.offset_;
|
---|
| 608 | macoli_ = a.macoli_;
|
---|
| 609 | marowi_ = a.marowi_;
|
---|
[804] | 610 | veceli_ = a.veceli_;
|
---|
[813] | 611 | ck_memo_vt_ = a.ck_memo_vt_;
|
---|
[787] | 612 | // Update OK
|
---|
| 613 | ndim_ = a.ndim_;
|
---|
| 614 | return true;
|
---|
| 615 | }
|
---|
| 616 |
|
---|
| 617 |
|
---|
[894] | 618 | //! Update sizes and information relative to array \b a
|
---|
| 619 | /*!
|
---|
| 620 | \param a : array to be compare with
|
---|
| 621 | \param ndim : could be change (but should be less than the ndim of the current class)
|
---|
| 622 | \param siz[ndim],pos[ndim],step[ndim] : could be changed but must be
|
---|
| 623 | compatible within the memory size with those of the current class.
|
---|
| 624 | \return true if all OK, false if problems appear
|
---|
| 625 | \return string \b exmsg for explanation in case of problems
|
---|
| 626 | */
|
---|
[804] | 627 | void BaseArray::UpdateSubArraySizes(BaseArray & ra, uint_4 ndim, uint_4 * siz, uint_4 * pos, uint_4 * step) const
|
---|
[787] | 628 | {
|
---|
[804] | 629 | if ( (ndim > ndim_) || (ndim < 1) )
|
---|
| 630 | throw(SzMismatchError("BaseArray::UpdateSubArraySizes( ... ) NDim Error") );
|
---|
[958] | 631 | uint_4 k;
|
---|
[787] | 632 | for(k=0; k<ndim; k++)
|
---|
| 633 | if ( (siz[k]*step[k]+pos[k]) > size_[k] )
|
---|
[804] | 634 | throw(SzMismatchError("BaseArray::UpdateSubArraySizes( ... ) Size/Pos Error") );
|
---|
[787] | 635 | uint_8 offset = offset_;
|
---|
| 636 | for(k=0; k<ndim_; k++) {
|
---|
| 637 | offset += pos[k]*step_[k];
|
---|
| 638 | step[k] *= step_[k];
|
---|
| 639 | }
|
---|
[804] | 640 | string exm = "BaseArray::UpdateSubArraySizes() ";
|
---|
[787] | 641 | if (!ra.UpdateSizes(ndim, siz, step, offset, exm))
|
---|
| 642 | throw( ParmError(exm) );
|
---|
| 643 | return;
|
---|
| 644 | }
|
---|
| 645 |
|
---|
| 646 |
|
---|