| 1 | // This may look like C code, but it is really -*- C++ -*-
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| 2 | // Gestion de block de donnees swapable
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| 3 | //                         R. Ansari  Mars 2005
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| 4 | // LAL (Orsay) / IN2P3-CNRS  DAPNIA/SPP (Saclay) / CEA
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| 5 | #ifndef SWSEGDATABLOCK_H
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| 6 | #define SWSEGDATABLOCK_H
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| 7 | 
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| 8 | #include "machdefs.h"
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| 9 | #include "segdatablock.h"
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| 10 | #include "pexceptions.h"
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| 11 | #include <vector>
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| 12 | #include <typeinfo>
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| 13 | 
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| 14 | /*!
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| 15 |   \class SOPHYA::DataSwapperInterface
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| 16 |   \ingroup BaseTools
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| 17 |   Interface definition for  data swapper (pure virtual) classes to be used 
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| 18 |   with SOPHYA::SwSegDataBlock classes.
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| 19 | */
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| 20 | /*!
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| 21 |   \class SOPHYA::SwSegDataBlock
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| 22 |   \ingroup BaseTools
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| 23 |   Segmented data structure with swap space management.
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| 24 | */
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| 25 | 
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| 26 | namespace SOPHYA {
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| 27 | 
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| 28 | ////////////////////////////////////////////////////////////////
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| 29 | //// ------------- Class DataSwapperInterface --------------- //
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| 30 | //// ---------------- Class SwSegDataBlock ------------------ //
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| 31 | ////////////////////////////////////////////////////////////////
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| 32 | 
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| 33 | template <class T> 
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| 34 | class DataSwapperInterface {
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| 35 | public:
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| 36 |   virtual ~DataSwapperInterface() { }
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| 37 |   /*! Swap out the data array pointed by \b d with size \b sz
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| 38 |     Return the swap position which might be used later to retrieve the data from swap
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| 39 |     \param d : Pointer to the memory segment
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| 40 |     \param sz : Number of elements (type T) 
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| 41 |     \param idx : An integer which might be used to identify the data (optional)
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| 42 |     \param oswp : Old swap position, if the data has already been swapped
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| 43 |     \param osw : true -> data has already been swapped
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| 44 |   */
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| 45 |   virtual int_8 WriteToSwap(const T * d, size_t sz, int_8 idx, int_8 oswp=0, bool osw=false) = 0;
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| 46 |   /*! Swap in the data array pointed by \b d with size \b sz
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| 47 |     Retrieves the data from swap space and copies it to \b d
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| 48 |     \param idx : optional data identifier
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| 49 |     \param swp : swap position (obtained from a previous call to WriteToSwap()
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| 50 |     \param d : pointer to T , where the data will be copied from swap space
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| 51 |     \param sz : Number of data elements (type T) 
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| 52 |    */
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| 53 |   virtual void  ReadFromSwap(int_8 idx, int_8 swp, T* d, size_t sz) = 0;
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| 54 | 
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| 55 |   /*! Duplicate the swapper object and return the new object pointer.
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| 56 |       The returned pointer should be deleted when not needed any more.
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| 57 |       This method is used by SwSegDataBlock<T> 
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| 58 |   */
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| 59 |   virtual DataSwapperInterface<T>* Clone() = 0;
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| 60 | };
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| 61 | 
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| 62 | template <class T>
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| 63 | class SwSegDataBlock : public SegDBInterface<T> {
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| 64 | public:
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| 65 |   //! Constructor - creation from swap position tags (values)
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| 66 |   SwSegDataBlock(DataSwapperInterface<T> & dsw, vector<int_8> const & swpos, size_t segsz)
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| 67 |   {
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| 68 |     mSRef = NULL;
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| 69 |     SetSize(segsz, swpos.size());
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| 70 |     SetSwapper(dsw);
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| 71 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 72 |     mSRef->swp = swpos;
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| 73 |     for(size_t k=0; k<mSRef->fgwp.size(); k++)  mSRef->fgwp[k] = true; 
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| 74 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 75 |     }
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| 76 |   //! Constructor - optional specification of segment size and number of segments
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| 77 |   SwSegDataBlock(DataSwapperInterface<T> & dsw, size_t segsz=32, size_t nbseg=0)
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| 78 |   {
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| 79 |     mSRef = NULL;
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| 80 |     SetSize(segsz, nbseg);
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| 81 |     SetSwapper(dsw);
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| 82 |   }
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| 83 |   //! copy constructor - shares the data
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| 84 |   SwSegDataBlock(const SwSegDataBlock<T>& a)
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| 85 |   {
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| 86 |     a.mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 87 |     mSRef = a.mSRef;
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| 88 |     mSRef->nref++;
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| 89 |     size_t segsz = mSRef->segsize;
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| 90 |     a.mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 91 |     buff = new T[segsz];
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| 92 |     bidx = -1;        
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| 93 |     fgcstbuff = true; 
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| 94 |   }
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| 95 | 
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| 96 |   //! Destructor. The memory is freed when the last object referencing the data segment is destroyed
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| 97 |   virtual ~SwSegDataBlock() 
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| 98 |   { 
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| 99 |     Delete(); 
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| 100 |   }
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| 101 |   //! Adds one segment to the data structure - returns the pointer to the allocated segment.
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| 102 |   virtual size_t Extend() 
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| 103 |   {
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| 104 |     size_t rs = 0;
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| 105 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 106 |     mSRef->swp.push_back(0);
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| 107 |     mSRef->fgwp.push_back(false);
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| 108 |     rs = mSRef->swp.size();
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| 109 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 110 |     return rs;
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| 111 |   }
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| 112 |   /*! \brief Changes the data segment size and reallocates the memory segments
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| 113 |     \warning SetSwapper() must be called after call to SetSize() 
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| 114 |   */
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| 115 |   // segsz : Segment size ;  nbseg : Number of data segments
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| 116 |   virtual void SetSize(size_t segsz, size_t nbseg=0)
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| 117 |   {
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| 118 |     Delete();
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| 119 |     mSRef = new SWSDREF;
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| 120 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 121 |     mSRef->nref = 1;
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| 122 |     mSRef->segsize = segsz;
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| 123 |     mSRef->dsid = AnyDataObj::getUniqueId();
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| 124 |     for(size_t k=0; k<nbseg; k++) {
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| 125 |       mSRef->swp.push_back(0);
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| 126 |       mSRef->fgwp.push_back(false);
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| 127 |     }
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| 128 |     mSRef->swapper = NULL;
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| 129 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 130 |     buff = new T[segsz];
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| 131 |     bidx = -1;        
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| 132 |     fgcstbuff = true; 
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| 133 |   }
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| 134 | 
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| 135 |   //! Define the data swapper object. Should only be called if SetSize() is called
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| 136 |   void SetSwapper(DataSwapperInterface<T> & dsw)
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| 137 |   {
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| 138 |     if (mSRef == NULL) return;
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| 139 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 140 |     if (mSRef->swapper) delete mSRef->swapper;  
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| 141 |     mSRef->swapper = dsw.Clone();
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| 142 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 143 |   }
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| 144 | 
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| 145 |   //! Return the segment size data structure
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| 146 |   virtual  size_t SegmentSize() const  { return mSRef->segsize; }
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| 147 |   //! Return the number of data segments
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| 148 |   virtual size_t NbSegments() const { return mSRef->swp.size(); } ;
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| 149 |   //! Return the current size of the segmented data structure
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| 150 |   inline size_t Size() const    { return  mSRef->swp.size()*mSRef->segsize; }
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| 151 |   //! Return the pointer to data segment \b k
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| 152 |   virtual T* GetSegment(size_t k) 
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| 153 |   {
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| 154 |     getSeg(k);
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| 155 |     fgcstbuff = false;
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| 156 |     return buff;
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| 157 |   }
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| 158 |   //! Return the const (read-only) pointer to data segment \b k         
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| 159 |   virtual T const * GetCstSegment(size_t k) const 
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| 160 |   {
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| 161 |     if (getSeg(k))  fgcstbuff = true;
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| 162 |     return buff;    
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| 163 |   }
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| 164 | 
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| 165 |   //! Equal operator. Shares the data with \b a
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| 166 |   inline SwSegDataBlock<T>&  operator = (const SwSegDataBlock<T>& a)
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| 167 |   {
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| 168 |     Delete();
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| 169 |     a.mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 170 |     mSRef = a.mSRef;
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| 171 |     mSRef->nref++;
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| 172 |     size_t segsz = mSRef->segsize;
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| 173 |     a.mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 174 |     buff = new T[segsz];
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| 175 |     bidx = -1;        
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| 176 |     fgcstbuff = true; 
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| 177 |     return *this;
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| 178 |   }
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| 179 | 
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| 180 |   //! Empties all memory buffers to swap stream 
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| 181 |   void SwapOutBuffer() const
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| 182 |   {
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| 183 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 184 |     if ((bidx >= 0) && !fgcstbuff) {
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| 185 |       int_8 nswp = mSRef->swapper->WriteToSwap(buff, mSRef->segsize, bidx, 
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| 186 |                                                mSRef->swp[bidx], mSRef->fgwp[bidx]);
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| 187 |       mSRef->swp[bidx] = nswp;
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| 188 |       mSRef->fgwp[bidx] = true;
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| 189 |       bidx = -1;
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| 190 |       fgcstbuff = true;  
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| 191 |    }
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| 192 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 193 |   }
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| 194 |   //! Return the position tag (swap position) table, after call to SwapOutBuffer()
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| 195 |   std::vector< int_8 > & GetSwapPosTagTable() const 
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| 196 |   { 
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| 197 |     SwapOutBuffer();
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| 198 |     return  mSRef->swp; 
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| 199 |   } 
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| 200 | 
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| 201 | protected: 
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| 202 |   SwSegDataBlock() 
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| 203 |   {
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| 204 |     throw ForbiddenError("SwSegDataBlock() default constructor not allowed (swsegdb.h)");
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| 205 |   }
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| 206 |   void Delete()   
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| 207 |   {
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| 208 |     if (mSRef == NULL) return;
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| 209 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 210 |     mSRef->nref--;
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| 211 |     if (mSRef->nref > 0)  { 
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| 212 |       mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 213 |       delete[] buff;
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| 214 |       mSRef = NULL; 
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| 215 |       return; 
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| 216 |     }
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| 217 |     if (mSRef->swapper) delete mSRef->swapper;  
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| 218 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 219 |     delete mSRef;
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| 220 |     delete[] buff;
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| 221 |     mSRef = NULL;  
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| 222 |   } 
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| 223 |   bool getSeg(size_t k) const
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| 224 |   {
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| 225 |     if (k == bidx)  return false;
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| 226 |     mSRef->gThsop.lock();   //  (ThreadSafe) - Start of atomic operation 
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| 227 |     if ((bidx >= 0) && !fgcstbuff) {
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| 228 |       int_8 nswp = mSRef->swapper->WriteToSwap(buff, mSRef->segsize, bidx, 
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| 229 |                                                mSRef->swp[bidx], mSRef->fgwp[bidx]);
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| 230 |       mSRef->swp[bidx] = nswp;
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| 231 |       mSRef->fgwp[bidx] = true;
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| 232 |     }
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| 233 |     if (mSRef->fgwp[k]) 
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| 234 |       mSRef->swapper->ReadFromSwap(k, mSRef->swp[k], buff, mSRef->segsize);
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| 235 |     //DEL-02022007    else { delete[] mSRef->buff;  mSRef->buff = new T[mSRef->segsize]; }  
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| 236 |     mSRef->gThsop.unlock();   //  (ThreadSafe) - End of atomic operation
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| 237 |     bidx = k;
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| 238 |     return true;
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| 239 |   }
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| 240 | 
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| 241 |   //! \cond
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| 242 |   typedef struct {
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| 243 |     size_t nref;      // Number of references to the data structure  
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| 244 |     uint_8 dsid;      // Data structure id
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| 245 |     size_t segsize;   // data segment size
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| 246 |     mutable std::vector< int_8 > swp;  // swap position tag for each segment
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| 247 |     mutable std::vector< bool > fgwp;  // swap flag (true = already swapped)  for each segment
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| 248 |     DataSwapperInterface<T> * swapper;   // Data swapper
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| 249 |     ThSafeOp gThsop;         // Mutex for thread safe operation one / SWSDREF struct 
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| 250 |   } SWSDREF;
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| 251 |   //! \endcond
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| 252 |   SWSDREF *  mSRef;    //!< SWSDREF structure for reference sharing
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| 253 |   mutable T * buff;                // Data buffer   
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| 254 |   mutable int_8 bidx;              // segment index (number) corresponding to buffer 
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| 255 |   mutable bool fgcstbuff;          // true : this is a constant T * buff
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| 256 | 
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| 257 | };
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| 258 | 
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| 259 | 
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| 260 | } // Fin du namespace
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| 261 | 
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| 262 | #endif
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