1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140
|
//------------------------------------------------------------------------------
// GB_mex_Matrix_eWiseUnion: C<M> = accum(C,A+B)
//------------------------------------------------------------------------------
// SuiteSparse:GraphBLAS, Timothy A. Davis, (c) 2017-2022, All Rights Reserved.
// SPDX-License-Identifier: Apache-2.0
//------------------------------------------------------------------------------
#include "GB_mex.h"
#define USAGE \
"C = GB_mex_Matrix_eWiseUnion (C, M, accum, add, A, alpha, B, beta, desc)"
#define FREE_ALL \
{ \
GrB_Matrix_free_(&A) ; \
GrB_Scalar_free_(&alpha) ; \
GrB_Matrix_free_(&B) ; \
GrB_Scalar_free_(&beta) ; \
GrB_Matrix_free_(&C) ; \
GrB_Descriptor_free_(&desc) ; \
GrB_Matrix_free_(&M) ; \
GB_mx_put_global (true) ; \
}
void mexFunction
(
int nargout,
mxArray *pargout [ ],
int nargin,
const mxArray *pargin [ ]
)
{
bool malloc_debug = GB_mx_get_global (true) ;
GrB_Matrix A = NULL ;
GrB_Matrix B = NULL ;
GrB_Matrix C = NULL ;
GrB_Matrix M = NULL ;
GrB_Descriptor desc = NULL ;
GrB_Scalar alpha = NULL, beta = NULL ;
// check inputs
if (nargout > 1 || nargin < 8 || nargin > 9)
{
mexErrMsgTxt ("Usage: " USAGE) ;
}
// get C (make a deep copy)
#define GET_DEEP_COPY \
C = GB_mx_mxArray_to_Matrix (pargin [0], "C input", true, true) ; \
if (nargin > 7 && C != NULL) C->nvec_nonempty = -1 ;
#define FREE_DEEP_COPY GrB_Matrix_free_(&C) ;
GET_DEEP_COPY ;
if (C == NULL)
{
FREE_ALL ;
mexErrMsgTxt ("C failed") ;
}
// get M (shallow copy)
M = GB_mx_mxArray_to_Matrix (pargin [1], "M", false, false) ;
if (M == NULL && !mxIsEmpty (pargin [1]))
{
FREE_ALL ;
mexErrMsgTxt ("M failed") ;
}
// get A (shallow copy)
A = GB_mx_mxArray_to_Matrix (pargin [4], "A input", false, true) ;
if (A == NULL)
{
FREE_ALL ;
mexErrMsgTxt ("A failed") ;
}
// get alpha
alpha = GB_mx_get_Scalar (pargin [5]) ;
if (alpha == NULL)
{
FREE_ALL ;
mexErrMsgTxt ("alpha failed") ;
}
// get B (shallow copy)
B = GB_mx_mxArray_to_Matrix (pargin [6], "B input", false, true) ;
if (B == NULL)
{
FREE_ALL ;
mexErrMsgTxt ("B failed") ;
}
// get beta
beta = GB_mx_get_Scalar (pargin [7]) ;
if (beta == NULL)
{
FREE_ALL ;
mexErrMsgTxt ("beta failed") ;
}
// get add operator
bool user_complex = (Complex != GxB_FC64)
&& (A->type == Complex || B->type == Complex) ;
GrB_BinaryOp add ;
if (!GB_mx_mxArray_to_BinaryOp (&add, pargin [3], "add",
C->type, user_complex) || add == NULL)
{
FREE_ALL ;
mexErrMsgTxt ("add failed") ;
}
// get accum, if present
user_complex = (Complex != GxB_FC64)
&& (C->type == Complex || add->ztype == Complex) ;
GrB_BinaryOp accum ;
if (!GB_mx_mxArray_to_BinaryOp (&accum, pargin [2], "accum",
C->type, user_complex))
{
FREE_ALL ;
mexErrMsgTxt ("accum failed") ;
}
// get desc
if (!GB_mx_mxArray_to_Descriptor (&desc, PARGIN (8), "desc"))
{
FREE_ALL ;
mexErrMsgTxt ("desc failed") ;
}
// C<M> = accum(C,A+B)
METHOD (GxB_Matrix_eWiseUnion(C, M, accum, add, A, alpha, B, beta,
desc)) ;
// return C as a struct and free the GraphBLAS C
pargout [0] = GB_mx_Matrix_to_mxArray (&C, "C output", true) ;
FREE_ALL ;
}
|