| 1 | // This may look like C code, but it is really -*- C++ -*-
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| 2 | //      Base array class - Memory organisation management
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| 3 | //                     R. Ansari, C.Magneville   03/2000
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| 4 | 
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| 5 | #ifndef BaseArray_SEEN
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| 6 | #define BaseArray_SEEN
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| 7 | 
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| 8 | #include "machdefs.h"
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| 9 | #include <math.h>
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| 10 | #include <iostream.h>
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| 11 | #include "anydataobj.h"
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| 12 | #include "dvlist.h"
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| 13 | 
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| 14 | 
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| 15 | //  Maximum number of dimensions for array
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| 16 | #define BASEARRAY_MAXNDIMS  5
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| 17 | 
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| 18 | namespace SOPHYA {  
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| 19 | 
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| 20 | //   ------------ classe template Array ----------- 
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| 21 | class BaseArray : public AnyDataObj {
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| 22 | public:
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| 23 |   //  To define Array / Matrix memory mapping
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| 24 |   enum { AutoMemoryMapping = -1, SameMemoryMapping = 0, 
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| 25 |          CMemoryMapping = 1, FortranMemoryMapping = 2 };
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| 26 | 
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| 27 |   //    Max Nb of printed elements
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| 28 |   static void    SetMaxPrint(uint_4 nprt=50);   
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| 29 |   //   Memory organisation (for matrices)
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| 30 |   static short   SetDefaultMemoryMapping(short mm=CMemoryMapping);
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| 31 |   static inline short GetDefaultMemoryMapping() { return default_memory_mapping; }
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| 32 |   
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| 33 |   // Creation / destruction 
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| 34 |   BaseArray();
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| 35 |   virtual ~BaseArray();
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| 36 | 
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| 37 |   // Returns true if ndim and sizes are equal
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| 38 |   virtual bool CompareSizes(const BaseArray& a);
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| 39 | 
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| 40 |   // Compacts size=1 array dimensions
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| 41 |   virtual void CompactAllDim();         // suppresses all size==1 dimensions 
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| 42 |   virtual void CompactTrailingDim();    // suppresses size==1 dimensions after the last size>1 dimension
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| 43 | 
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| 44 |   // Array dimensions
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| 45 |   inline uint_4 NbDimensions() const { return( ndim_ ); }
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| 46 | 
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| 47 |   inline uint_8 Size() const { return(totsize_); }
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| 48 |   inline uint_4 SizeX() const { return(size_[0]); }
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| 49 |   inline uint_4 SizeY() const { return(size_[1]); }
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| 50 |   inline uint_4 SizeZ() const { return(size_[2]); }
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| 51 |   inline uint_4 Size(int ka) const { return(size_[CheckDI(ka,1)]); }
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| 52 | 
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| 53 |   uint_4 MaxSizeKA() const ;
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| 54 | 
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| 55 |   // memory organisation - packing information
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| 56 |   inline short  GetMemoryMapping() const 
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| 57 |                 {return ( (marowi_ == 1) ? CMemoryMapping : FortranMemoryMapping) ; }
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| 58 | 
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| 59 |   inline uint_4 RowsKA() const {return marowi_; }    // Dimension correspondant aux lignes
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| 60 |   inline uint_4 ColsKA() const {return macoli_; }    // Dimension correspondant aux colonnes
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| 61 |   inline uint_4 VectKA() const {return veceli_; }    // Dimension corr. aux elts d'un vecteur
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| 62 | 
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| 63 |   inline bool   IsPacked() const { return(moystep_ == 1); }
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| 64 |   inline bool   IsPackedX() const { return(step_[0] == 1); }
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| 65 |   inline bool   IsPackedY() const { return(step_[1] == 1); }
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| 66 |   inline bool   IsPackedZ() const { return(step_[2] == 1); }
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| 67 |   inline bool   IsPacked(int ka) const { return(step_[CheckDI(ka,2)] == 1); }
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| 68 | 
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| 69 |   inline uint_4 MinStep() const  { return(minstep_); }
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| 70 |   inline uint_4 AvgStep() const  { return(moystep_); }
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| 71 |   inline uint_4 StepX() const { return(step_[0]); }
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| 72 |   inline uint_4 StepY() const { return(step_[1]); }
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| 73 |   inline uint_4 StepZ() const { return(step_[2]); }
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| 74 |   inline uint_4 Step(int ka) const { return(step_[CheckDI(ka,3)]); }
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| 75 | 
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| 76 |   uint_4 MinStepKA() const ;
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| 77 | 
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| 78 |   uint_8 Offset(uint_8 ip=0) const ;
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| 79 |   inline uint_8  Offset(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it=0, uint_4 iu=0) const;  
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| 80 | 
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| 81 | //  a abstract element acces methode
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| 82 |   virtual double ValueAtPosition(uint_8 ip) const = 0;
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| 83 | 
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| 84 | // Impression, I/O, ...
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| 85 |   void           Show(ostream& os, bool si=false) const;
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| 86 |   inline void    Show() const { Show(cout); }
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| 87 |   virtual string DataType() const = 0;
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| 88 | 
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| 89 | //  Objet DVList info 
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| 90 |   DVList&       Info();
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| 91 | 
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| 92 | protected:
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| 93 |   // Verifie la compatibilite de l'index de dimension
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| 94 |   inline int CheckDI(int ka, int msg) const ;
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| 95 |   // Verifie la compatibilite des bornes d'index
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| 96 |   inline void CheckBound(int ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu, int msg) const ;
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| 97 |   // Changing Sizes/NDim ... return true if OK
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| 98 |   bool UpdateSizes(uint_4 ndim, const uint_4 * siz, uint_4 step, uint_8 offset, string & exmsg);
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| 99 |   bool UpdateSizes(uint_4 ndim, const uint_4 * siz, const uint_4 * step, uint_8 offset, string & exmsg);
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| 100 |   bool UpdateSizes(const BaseArray& a, string & exmsg);
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| 101 |   static uint_8 ComputeTotalSize(uint_4 ndim, const uint_4 * siz, uint_4 step, uint_8 offset) ;
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| 102 |   //  Organisation memoire
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| 103 |   static short SelectMemoryMapping(short mm);
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| 104 |   void UpdateMemoryMapping(short mm, uint_4 & nx, uint_4 & ny);
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| 105 |   void UpdateMemoryMapping(BaseArray const & a, short mm);
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| 106 | 
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| 107 |   // Pour Extraction de sous-tableau 
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| 108 |   virtual void UpdateSubArraySizes(BaseArray & ra, uint_4 ndim, uint_4 * siz, uint_4 * pos, uint_4 * step) const;
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| 109 | 
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| 110 |   uint_4 ndim_;                   // nb of dimensions
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| 111 |   uint_4 size_[BASEARRAY_MAXNDIMS];     // array size in each dimension
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| 112 |   uint_8 totsize_;                   // Total number of elements
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| 113 |   uint_4 step_[BASEARRAY_MAXNDIMS];     // two consecutive elements distance in a given dimension 
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| 114 |   uint_4 minstep_;                   // minimal step (in any axes)
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| 115 |   uint_4 moystep_;                   // mean step 0 non regular steps
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| 116 |   uint_8 offset_;              // global offset -> position of elem[0] in DataBlock
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| 117 |   uint_4 marowi_, macoli_;     // For matrices, Row index and column index in dimensions
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| 118 |   uint_4 veceli_;              // For vectors,  dimension index = marowi_/macoli_ (Row/Col vectors)
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| 119 | 
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| 120 |   DVList* mInfo;               // Infos (variables) attachees au tableau
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| 121 | 
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| 122 |   static char * ck_op_msg_[6];  // Operation messages for CheckDI() CheckBound()
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| 123 |   static uint_4 max_nprt_;      // Nb maxi d'elements imprimes
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| 124 |   static short default_memory_mapping;  // Default memory mapping
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| 125 | };
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| 126 | 
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| 127 | // --------------------------------------------------
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| 128 | //        Methodes inline de verification
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| 129 | // --------------------------------------------------
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| 130 | inline int BaseArray::CheckDI(int ka, int msg)  const
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| 131 | {
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| 132 |   if ( (ka < 0) || (ka >= ndim_) ) {
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| 133 |     string txt = "BaseArray::CheckDimensionIndex/Error ";   txt += ck_op_msg_[msg];
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| 134 |     throw(ParmError(txt));
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| 135 |   }
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| 136 |   return(ka);
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| 137 | }
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| 138 | 
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| 139 | inline void BaseArray::CheckBound(int ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu, int msg)  const
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| 140 | {
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| 141 |   if ( (ix >= size_[0]) || (iy >= size_[1]) || (iz > size_[2]) ||
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| 142 |        (it >= size_[3]) || (iu >= size_[4]) ) {
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| 143 |     string txt = "BaseArray::CheckArrayBound/Error ";   txt += ck_op_msg_[msg];
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| 144 |     throw(ParmError(txt));
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| 145 |   }
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| 146 |   return;
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| 147 | }
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| 148 | 
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| 149 | 
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| 150 | // --------------------------------------------------
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| 151 | //        Position d'un element
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| 152 | // --------------------------------------------------
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| 153 | inline uint_8 BaseArray::Offset(uint_4 ix, uint_4 iy, uint_4 iz, uint_4 it, uint_4 iu) const
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| 154 | {
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| 155 | #ifdef SO_BOUNDCHECKING
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| 156 |   CheckBound(ix, iy, iz, it, iu, 4);
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| 157 | #endif
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| 158 |   return ( offset_+  ix*step_[0] + iy*step_[1] + iz*step_[2] +
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| 159 |               it*step_[3] + iu*step_[4] );
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| 160 | }
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| 161 | 
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| 162 | 
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| 163 | } // Fin du namespace
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| 164 | 
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| 165 | #endif
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