//------------------------------------------------------------------------------ // GB_Scalar_wrap: wrap a C scalar inside a GraphBLAS scalar //------------------------------------------------------------------------------ // SuiteSparse:GraphBLAS, Timothy A. Davis, (c) 2017-2023, All Rights Reserved. // SPDX-License-Identifier: Apache-2.0 //------------------------------------------------------------------------------ // This method construct a shallow statically-defined scalar, with no memory // allocations. The scalar is iso full, with a single entry. // Note that since the header is statically allocated, it cannot be transfered // automatically to the GPU when using CUDA. #include "GB.h" #include "GB_scalar_wrap.h" GrB_Scalar GB_Scalar_wrap // create a new GrB_Scalar with one entry ( GrB_Scalar s, // GrB_Scalar to create GrB_Type type, // type of GrB_Scalar to create void *Sx // becomes S->x, an array of size 1 * type->size ) { //-------------------------------------------------------------------------- // check inputs //-------------------------------------------------------------------------- ASSERT (s != NULL) ; //-------------------------------------------------------------------------- // create the GrB_Scalar //-------------------------------------------------------------------------- s->magic = GB_MAGIC ; s->header_size = 0 ; s->user_name = NULL ; s->user_name_size = 0 ; s->type = (type == NULL) ? GrB_BOOL : type ; s->logger = NULL ; s->logger_size = 0 ; s->plen = -1 ; s->vlen = 1 ; s->vdim = 1 ; s->nvec = 1 ; s->nvec_nonempty = 1 ; s->p = NULL ; s->p_size = 0 ; s->p_shallow = false ; s->h = NULL ; s->h_size = 0 ; s->h_shallow = false ; s->b = NULL ; s->b_size = 0 ; s->b_shallow = false ; s->i = NULL ; s->i_size = 0 ; s->i_shallow = false ; s->x = Sx ; s->x_size = type->size ; s->x_shallow = true ; s->Y = NULL ; s->Y_shallow = false ; s->nvals = 0 ; s->Pending = NULL ; s->nzombies = 0 ; s->hyper_switch = GxB_NEVER_HYPER ; s->bitmap_switch = 0.5 ; s->sparsity_control = GxB_FULL ; s->static_header = true ; s->is_csc = true ; s->jumbled = false ; s->iso = true ; // OK: scalar wrap with a single entry //-------------------------------------------------------------------------- // return result //-------------------------------------------------------------------------- return (s) ; }