atl_ptgeadd.c
来自「基于Blas CLapck的.用过的人知道是干啥的」· C语言 代码 · 共 306 行
C
306 行
/* --------------------------------------------------------------------- * * -- Automatically Tuned Linear Algebra Software (ATLAS) * (C) Copyright 2000 All Rights Reserved * * -- ATLAS routine -- Version 3.2 -- December 25, 2000 * * Author : Antoine P. Petitet * Originally developed at the University of Tennessee, * Innovative Computing Laboratory, Knoxville TN, 37996-1301, USA. * * --------------------------------------------------------------------- * * -- Copyright notice and Licensing terms: * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions, and the following disclaimer in * the documentation and/or other materials provided with the distri- * bution. * 3. The name of the University, the ATLAS group, or the names of its * contributors may not be used to endorse or promote products deri- * ved from this software without specific written permission. * * -- Disclaimer: * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY * OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPE- * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED * TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, * OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEO- * RY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (IN- * CLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * * --------------------------------------------------------------------- *//* * Include files */#include "atlas_ptmisc.h"PT_FUN_ARG_T Mjoin( PATL, ptgeadd0 )( PT_FUN_ARG_T ARGS ){/* * Purpose * ======= * * Mjoin( PATL, ptgeadd0 ) adds an m-by-n matrix A to the matrix B. * * This is a multi-threaded version of the algorithm. * * Arguments * ========= * * PTYPE (input) const PT_MISC_TYPE_T * * On entry, PTYPE points to the data structure containing the * type information. * * NODE (input) const unsigned int * On entry, NODE specifies the current node number. * * THREADS (input) const unsigned int * On entry, THREADS specifies the number of threads to be used * for the current operation. * * ATTR (input) pthread_attr_t * * On entry, ATTR specifies the thread attribute object to be * used for the node functions to be threaded. * * NB (input) const int * On entry, NB specifies the blocksize to be used for the * problem size partitioning. * * --------------------------------------------------------------------- *//* * .. Local Variables .. */ PT_TREE_T root = (PT_TREE_T)(ARGS); PT_GEADD_ARGS_T * arg;/* .. * .. Executable Statements .. * */ ATL_wait_tree( root ); arg = (PT_GEADD_ARGS_T *)(root->arg);#define _PT_M (arg->m)#define _PT_N (arg->n)#ifdef TREAL#define _PT_ALPHA (SCALAR)(*((TYPE *)(arg->al)))#define _PT_BETA (SCALAR)(*((TYPE *)(arg->be)))#else#define _PT_ALPHA (SCALAR)(arg->al)#define _PT_BETA (SCALAR)(arg->be)#endif#define _PT_A ((TYPE *)(arg->a))#define _PT_LDA (arg->la)#define _PT_C ((TYPE *)(arg->c))#define _PT_LDC (arg->lc) Mjoin( PATL, geadd )( _PT_M, _PT_N, _PT_ALPHA, _PT_A, _PT_LDA, _PT_BETA, _PT_C, _PT_LDC ); ATL_signal_tree( root ); return( NULL );/* * End of Mjoin( PATL, ptgeadd0 ) */}void Mjoin( PATL, ptgeadd )( const int M, const int N, const SCALAR ALPHA, const TYPE * A, const int LDA, const SCALAR BETA, TYPE * C, const int LDC){/* * Purpose * ======= * * Mjoin( PATL, ptgeadd ) adds an m-by-n matrix A to the matrix B. * * This is a multi-threaded version of the algorithm. * * Arguments * ========= * * PTYPE (input) const PT_MISC_TYPE_T * * On entry, PTYPE points to the data structure containing the * type information. * * NODE (input) const unsigned int * On entry, NODE specifies the current node number. * * THREADS (input) const unsigned int * On entry, THREADS specifies the number of threads to be used * for the current operation. * * ATTR (input) pthread_attr_t * * On entry, ATTR specifies the thread attribute object to be * used for the node functions to be threaded. * * NB (input) const int * On entry, NB specifies the blocksize to be used for the * problem size partitioning. * * --------------------------------------------------------------------- *//* * .. Local Variables .. */ pthread_attr_t attr; PT_TREE_T root = NULL;#ifdef TREAL TYPE alpha0 = (TYPE)(ALPHA), beta0 = (TYPE)(BETA);#endif void * alpha, * beta;/* .. * .. Executable Statements .. * */ if( ( M <= 0 ) || ( N <= 0 ) || ( SCALAR_IS_ZERO( ALPHA ) && SCALAR_IS_ONE( BETA ) ) ) return;#ifdef TREAL alpha = (void *)(&alpha0); beta = (void *)(&beta0);#else alpha = (void *)(ALPHA); beta = (void *)(BETA);#endif ATL_thread_init( &attr ); root = Mjoin( PATL, ptgeadd_nt )( ATL_NTHREADS, &attr, M, N, alpha, (void *)(A), LDA, beta, (void *)(C), LDC ); ATL_join_tree ( root ); ATL_free_tree ( root ); ATL_thread_exit( &attr );/* * End of Mjoin( PATL, ptgeadd ) */}PT_TREE_T Mjoin( PATL, ptgeadd_nt )( const unsigned int THREADS, pthread_attr_t * ATTR, const int M, const int N, const void * ALPHA, const void * A, const int LDA, const void * BETA, void * C, const int LDC){/* * Purpose * ======= * * Mjoin( PATL, ptgeadd_nt ) adds an m-by-n matrix A to the matrix B. * * This is a multi-threaded version of the algorithm. * * Arguments * ========= * * PTYPE (input) const PT_MISC_TYPE_T * * On entry, PTYPE points to the data structure containing the * type information. * * NODE (input) const unsigned int * On entry, NODE specifies the current node number. * * THREADS (input) const unsigned int * On entry, THREADS specifies the number of threads to be used * for the current operation. * * ATTR (input) pthread_attr_t * * On entry, ATTR specifies the thread attribute object to be * used for the node functions to be threaded. * * NB (input) const int * On entry, NB specifies the blocksize to be used for the * problem size partitioning. * * --------------------------------------------------------------------- *//* * .. Local Variables .. */ PT_TREE_T root = NULL; PT_MISC_TYPE_T type;#ifdef TREAL TYPE alpha, beta;#else TYPE alpha[2], beta[2];#endif double tblks; unsigned int nthreads; int nb, nbm1;/* .. * .. Executable Statements .. * */#ifdef TREAL alpha = *((TYPE *)(ALPHA)); beta = *((TYPE *)(BETA));#else alpha[0] = ((TYPE *)(ALPHA))[0]; alpha[1] = ((TYPE *)(ALPHA))[1]; beta [0] = ((TYPE *)(BETA ))[0]; beta [1] = ((TYPE *)(BETA ))[1];#endif/* * Make sure we don't thread this for the time being */ if( THREADS >= 1 ) { Mjoin( PATL, geadd )( M, N, alpha, (TYPE *)(A), LDA, beta, (TYPE *)(C), LDC ); return( root ); } nbm1 = ( nb = Mjoin( PATL, GetNB )() ) - 1; tblks = (double)( (M+nbm1) / nb ) * (double)( (N+nbm1) / nb ); if( ( tblks <= (double)(ATL_XOVER_MI_DEFAULT) ) || ( THREADS <= 1 ) ) { Mjoin( PATL, geadd )( M, N, alpha, (TYPE *)(A), LDA, beta, (TYPE *)(C), LDC ); return( root ); } if( tblks >= (double)(THREADS) ) { nthreads = THREADS; } else { nthreads = (unsigned int)floor( tblks + 0.5 ); }#ifdef TREAL type.size = sizeof( TYPE ); type.fun = Mjoin( PATL, ptgeadd0 );#else type.size = sizeof( TYPE[2] ); type.fun = Mjoin( PATL, ptgeadd0 );#endif root = ATL_Sgeadd( &type, 0, nthreads, ATTR, nb, M, N, ALPHA, A, LDA, BETA, C, LDC ); ATL_thread_tree( root, ATTR ); return( root );/* * End of Mjoin( PATL, ptgeadd_nt ) */}
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