| 1 | 
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| 2 | Covariant type conformance is used in member functions.  This is
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| 3 | indicated with the "current" type which is the type of the
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| 4 | overriding class.  Note that current might not be exactly the same
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| 5 | type.  It might be a implementation of a diagonal matrix corresponding
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| 6 | to current, for example.
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| 7 | 
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| 8 | Matrix multiplication is a bit of a mess because of the way the different
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| 9 | types of matrices get involved.  Say G=general, S=symmetric, and D=diagonal,
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| 10 | then we get the following possible mxm accumulation routines: G+=G*G, G+=S*S,
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| 11 | D+=D*D, G+=D*D, G+=G*S, G+=S*G, G+=G*D, G+=D*G, G+=S*D, G+=D*S, and S+=Sa*Sb
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| 12 | if [Sa,Sb] = 0  (I use accumulation routines so storage isn't allocated
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| 13 | unnecessarily where it isn't needed).  Not all of these will be implemented
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| 14 | in a given matrix implementation, so, unfortunately, there can be runtime
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| 15 | type errors.
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| 16 | 
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| 17 | The various accumulation routines are G+=G, G+=S, G+=D, S+=S, S+=D, and D+=D.
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| 18 | 
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| 19 | Generic operations on matrices are done with the following:
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| 20 | A->element_op(op)
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| 21 |   For all elements in A do op.
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| 22 | 
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| 23 | A->matrix_op(B,op)
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| 24 |   For all elements in A
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| 25 |    For all elements in B
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| 26 |      do op.
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| 27 | 
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| 28 | A->matrix_pair_op(B,C,D,op)
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| 29 |   For all elements in (A,B)
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| 30 |    For all elements in (C,D)
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| 31 |      do op.
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| 32 | (A and B must have exactly the same dimensions as well as C and D.)
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| 33 | 
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| 34 | // Abstract class
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| 35 | SCDimension
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| 36 |   Specifies storage information for a dimension.  Each matrix implementation
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| 37 |   has a corresponding SCDimension implementation.
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| 38 | 
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| 39 |   // abstract
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| 40 |   virtual int dim()
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| 41 |     The integer dimension is returned.
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| 42 |   virtual corresponding_matrix_type create_matrix(SCDimension a)
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| 43 |     A matrix is created with this as the rowdim and a as the coldim.
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| 44 |   virtual corresponding_matrix_type create_symmmatrix()
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| 45 |     A symmetric matrix is created with this as rowdim and coldim.
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| 46 |   virtual corresponding_matrix_type create_diagmatrix()
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| 47 |     A diagonal matrix is created with this as rowdim and coldim.
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| 48 |   virtual corresponding_vector_type create_vector()
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| 49 |     A diagonal matrix is created with this as dim.
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| 50 | 
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| 51 | // Abstract class
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| 52 | SCMatrix
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| 53 | 
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| 54 |   // concrete:
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| 55 |   CTOR()
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| 56 |   current i()
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| 57 |     Returns the inverse of this.
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| 58 |   current t()
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| 59 |     Returns the transpose of this.
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| 60 |   current operator*(current a)
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| 61 |     Returns this * a.
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| 62 |   current operator+(current a)
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| 63 |     Returns this + a.
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| 64 |   current operator-(current a)
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| 65 |     Returns this - a.
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| 66 |   int nrow()
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| 67 |     The number of rows in the matrix.
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| 68 |   int ncol()
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| 69 |     The number of columns in the matrix.
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| 70 |   current clone()
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| 71 |     Returns an identical matrix with uninitialized elements.
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| 72 |   void scale(double a)
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| 73 |     Scales all of the elements in this by a.
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| 74 |   current assign(double a)
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| 75 |     Assigns all of the elements to a;
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| 76 |   void copy(current a)
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| 77 |     Copy a to this.  The dimensions must be the same.  This is not
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| 78 |     operator=(current), because operator=(current) has a different
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| 79 |     meaning in the reference counting classes.
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| 80 |   SCdouble operator()(int,int)
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| 81 |     This lets users do things like a(1,1) = x; x = a(1,1);.  Note that
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| 82 |     printf("%f",(something of type SCdouble)) won't work, because
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| 83 |     SCdouble can't be passed though '...'.
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| 84 | 
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| 85 |   // abstract:
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| 86 |   SCDimension rowdim()
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| 87 |     The row dimension of the matrix.
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| 88 |   SCDimension coldim()
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| 89 |     The column dimension of the matrix.
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| 90 |   double get_element(int,int)
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| 91 |     Get the value of a matrix element.
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| 92 |   void set_element(int,int,double)
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| 93 |     Set the value of a matrix element.
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| 94 |   current multiply_and_accumulate(current a, current b)
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| 95 |     Performs the operation this += a * b.  Returns this.
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| 96 |   void accumulate(current a)
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| 97 |     Performs this += a.
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| 98 |   current transpose_this()
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| 99 |     Transposes and returns this.
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| 100 |   current invert_this()
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| 101 |     Inverts and returns this.
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| 102 |   void element_op(RefSCElementOp)
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| 103 |     Performs some operation on each element of the matrix.
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| 104 |     The member functions for all SCMatrixElementOp's must be available
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| 105 |     on the node programs in a parallel environment.
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| 106 |   void resize(SCDimension,SCDimension)
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| 107 |     Resize this.
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| 108 | 
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| 109 | // These are abstract classes which inherits virtually from SCMatrix.
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| 110 | // Specializations of SCMatrix which are diagonal or symmetric should
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| 111 | // inherit form the appropiate class.  The inheritance hierarchy could
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| 112 | // take on one of the following forms:
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| 113 | // Single inheritance:
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| 114 | //     SCMatrix
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| 115 | //        |    \
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| 116 | //        |     SymmSCMatrix
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| 117 | //   SpecSCMatrix   |       \
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| 118 | //                  |        DiagSCMatrix
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| 119 | //            SpecSymmSCMatrix    |
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| 120 | //                                |
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| 121 | //                          SpecDiagSCMatrix
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| 122 | // Multiple inheritance:
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| 123 | //     SCMatrix
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| 124 | //        |    \
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| 125 | //        |     SymmSCMatrix
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| 126 | //   SpecSCMatrix   |       \
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| 127 | //            |     |        DiagSCMatrix
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| 128 | //            SpecSymmSCMatrix    |
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| 129 | //                          |     |
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| 130 | //                          SpecDiagSCMatrix
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| 131 | //
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| 132 | 
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| 133 | // Abstract class
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| 134 | SymmSCMatrix: virtual SCMatrix
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| 135 |   // concrete
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| 136 |   CTOR()
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| 137 |   implementations of rowdim and coldim
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| 138 |   implement rowcol_clone(DimSpec rowdim,current colmatrix,DimSpec coldim)
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| 139 |   override t(), i(), etc
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| 140 | 
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| 141 |   // abstract
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| 142 |   int ndim()
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| 143 |     returns the integer dimension
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| 144 |   SCDimension dim()
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| 145 |     returns the dimension
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| 146 | 
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| 147 | // Abstract class
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| 148 | DiagSCMatrix: virtual SymmSCMatrix
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| 149 | 
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| 150 | // Concrete class
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| 151 | LocalSCMatrix: SCMatrix
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| 152 |   // concrete:
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| 153 |   CTOR(int,int)
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| 154 |   implementations of all of SCMatrix's abstract functions
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| 155 | 
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| 156 | // Concrete class
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| 157 | LocalSymmSCMatrix: SymmSCMatrix
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| 158 |   // concrete:
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| 159 |   CTOR(int,int)
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| 160 |   implementations of all of SCMatrix's abstract functions
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| 161 | 
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| 162 | // Concrete class
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| 163 | LocalDiagSCMatrix: DiagSCMatrix
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| 164 |   // concrete:
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| 165 |   CTOR(int,int)
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| 166 |   implementations of all of SCMatrix's abstract functions
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| 167 | 
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| 168 | // Concrete class
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| 169 | DistSCMatrix: SCMatrix
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| 170 |   // concrete:
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| 171 |   CTOR(DistMap,DistMap)
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| 172 |   implementations of all of SCMatrix's abstract functions
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| 173 | 
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| 174 | // Concrete class
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| 175 | DistSymmSCMatrix: SymmSCMatrix
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| 176 |   // concrete:
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| 177 |   CTOR(DistMap,DistMap)
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| 178 |   implementations of all of SCMatrix's abstract functions
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| 179 | 
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| 180 | // Concrete class
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| 181 | DistDiagSCMatrix: DiagSCMatrix
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| 182 |   // concrete:
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| 183 |   CTOR(DistMap,DistMap)
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| 184 |   implementations of all of SCMatrix's abstract functions
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| 185 | 
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