| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481 | /* StarPU --- Runtime system for heterogeneous multicore architectures. * * Copyright (C) 2009-2020  Université de Bordeaux, CNRS (LaBRI UMR 5800), Inria * * StarPU is free software; you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License as published by * the Free Software Foundation; either version 2.1 of the License, or (at * your option) any later version. * * StarPU is distributed in the hope that it will be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. * * See the GNU Lesser General Public License in COPYING.LGPL for more details. *//* LU Kernels with partial pivoting */#include "xlu.h"#include "xlu_kernels.h"/* *	Construct the DAG */static struct starpu_task *create_task(starpu_tag_t id){	struct starpu_task *task = starpu_task_create();		task->cl_arg = NULL;	task->use_tag = 1;	task->tag_id = id;	return task;}static int create_task_pivot(starpu_data_handle_t *dataAp, unsigned nblocks,			     struct piv_s *piv_description,			     unsigned k, unsigned i,			     starpu_data_handle_t (* get_block)(starpu_data_handle_t *, unsigned, unsigned, unsigned), unsigned no_prio){	int ret;	struct starpu_task *task = create_task(PIVOT(k, i));	task->cl = &cl_pivot;	task->color = 0xc0c000;	/* which sub-data is manipulated ? */	task->handles[0] = get_block(dataAp, nblocks, k, i);	task->cl_arg = &piv_description[k];	/* this is an important task */	if (!no_prio && (i == k+1))		task->priority = STARPU_MAX_PRIO;	/* enforce dependencies ... */	if (k == 0)	{		starpu_tag_declare_deps(PIVOT(k, i), 1, TAG11(k));	}	else	{		if (i > k)		{			starpu_tag_declare_deps(PIVOT(k, i), 2, TAG11(k), TAG22(k-1, i, k));		}		else		{			starpu_tag_t *tags = malloc((nblocks - k)*sizeof(starpu_tag_t));			tags[0] = TAG11(k);			unsigned ind, ind2;			for (ind = k + 1, ind2 = 0; ind < nblocks; ind++, ind2++)			{				tags[1 + ind2] = TAG22(k-1, ind, k);			}			/* perhaps we could do better ... :/  */			starpu_tag_declare_deps_array(PIVOT(k, i), (nblocks-k), tags);			free(tags);		}	}	ret = starpu_task_submit(task);	if (ret != -ENODEV) STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");	return ret;}static struct starpu_task *create_task_11_pivot(starpu_data_handle_t *dataAp, unsigned nblocks,						unsigned k, struct piv_s *piv_description,						starpu_data_handle_t (* get_block)(starpu_data_handle_t *, unsigned, unsigned, unsigned), unsigned no_prio){	struct starpu_task *task = create_task(TAG11(k));	task->cl = &cl11_pivot;	task->color = 0xffff00;	task->cl_arg = &piv_description[k];	/* which sub-data is manipulated ? */	task->handles[0] = get_block(dataAp, nblocks, k, k);	/* this is an important task */	if (!no_prio)		task->priority = STARPU_MAX_PRIO;	/* enforce dependencies ... */	if (k > 0)	{		starpu_tag_declare_deps(TAG11(k), 1, TAG22(k-1, k, k));	}	return task;}static int create_task_12(starpu_data_handle_t *dataAp, unsigned nblocks, unsigned k, unsigned j,			  starpu_data_handle_t (* get_block)(starpu_data_handle_t *, unsigned, unsigned, unsigned), unsigned no_prio){	int ret;/*	printf("task 12 k,i = %d,%d TAG = %llx\n", k,i, TAG12(k,i)); */	struct starpu_task *task = create_task(TAG12(k, j));	task->cl = &cl12;	task->color = 0x8080ff;	task->cl_arg = (void *)(uintptr_t)(task->tag_id);	/* which sub-data is manipulated ? */	task->handles[0] = get_block(dataAp, nblocks, k, k);	task->handles[1] = get_block(dataAp, nblocks, j, k);	if (!no_prio && (j == k+1))	{		task->priority = STARPU_MAX_PRIO;	}	/* enforce dependencies ... */#if 0	starpu_tag_declare_deps(TAG12(k, i), 1, PIVOT(k, i));#endif	if (k > 0)	{		starpu_tag_declare_deps(TAG12(k, j), 2, TAG11(k), TAG22(k-1, k, j));	}	else	{		starpu_tag_declare_deps(TAG12(k, j), 1, TAG11(k));	}	ret = starpu_task_submit(task);	if (ret != -ENODEV) STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");	return ret;}static int create_task_21(starpu_data_handle_t *dataAp, unsigned nblocks, unsigned k, unsigned i,			  starpu_data_handle_t (* get_block)(starpu_data_handle_t *, unsigned, unsigned, unsigned), unsigned no_prio){	int ret;	struct starpu_task *task = create_task(TAG21(k, i));	task->cl = &cl21;	task->color = 0x8080c0;	/* which sub-data is manipulated ? */	task->handles[0] = get_block(dataAp, nblocks, k, k);	task->handles[1] = get_block(dataAp, nblocks, k, i);	if (!no_prio && (i == k+1))	{		task->priority = STARPU_MAX_PRIO;	}	task->cl_arg = (void *)(uintptr_t)(task->tag_id);	/* enforce dependencies ... */	starpu_tag_declare_deps(TAG21(k, i), 1, PIVOT(k, i));	ret = starpu_task_submit(task);	if (ret != -ENODEV) STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");	return ret;}static int create_task_22(starpu_data_handle_t *dataAp, unsigned nblocks, unsigned k, unsigned i, unsigned j,			  starpu_data_handle_t (* get_block)(starpu_data_handle_t *, unsigned, unsigned, unsigned), unsigned no_prio){	int ret;/*	printf("task 22 k,i,j = %d,%d,%d TAG = %llx\n", k,i,j, TAG22(k,i,j)); */	struct starpu_task *task = create_task(TAG22(k, i, j));	task->cl = &cl22;	task->color = 0x00ff00;	task->cl_arg = (void *)(uintptr_t)(task->tag_id);	/* which sub-data is manipulated ? */	task->handles[0] = get_block(dataAp, nblocks, k, i); /* produced by TAG21(k, i) */	task->handles[1] = get_block(dataAp, nblocks, j, k); /* produced by TAG12(k, j) */	task->handles[2] = get_block(dataAp, nblocks, j, i);  /* produced by TAG22(k-1, i, j) */	if (!no_prio &&  (i == k + 1) && (j == k +1) )	{		task->priority = STARPU_MAX_PRIO;	}	/* enforce dependencies ... */	if (k > 0)	{		starpu_tag_declare_deps(TAG22(k, i, j), 3, TAG22(k-1, i, j), TAG12(k, j), TAG21(k, i));	}	else	{		starpu_tag_declare_deps(TAG22(k, i, j), 2, TAG12(k, j), TAG21(k, i));	}	ret = starpu_task_submit(task);	if (ret != -ENODEV) STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");	return ret;}/* *	code to bootstrap the factorization */static int dw_codelet_facto_pivot(starpu_data_handle_t *dataAp,				  struct piv_s *piv_description,				  unsigned nblocks,				  starpu_data_handle_t (* get_block)(starpu_data_handle_t *, unsigned, unsigned, unsigned),				  double *timing, unsigned no_prio){	int ret;	double start;	double end;	struct starpu_task *entry_task = NULL;	/* create all the DAG nodes */	unsigned i,j,k;	if (bound)		starpu_bound_start(bounddeps, boundprio);	for (k = 0; k < nblocks; k++)	{		starpu_iteration_push(k);		struct starpu_task *task = create_task_11_pivot(dataAp, nblocks, k, piv_description, get_block, no_prio);		/* we defer the launch of the first task */		if (k == 0)		{			entry_task = task;		}		else		{			ret = starpu_task_submit(task);			if (ret != -ENODEV) STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");			if (ret == -ENODEV) return ret;		}		for (i = 0; i < nblocks; i++)		{			if (i != k)			{				ret = create_task_pivot(dataAp, nblocks, piv_description, k, i, get_block, no_prio);				if (ret == -ENODEV) return ret;			}		}		for (i = k+1; i<nblocks; i++)		{			ret = create_task_12(dataAp, nblocks, k, i, get_block, no_prio);			if (ret == -ENODEV) return ret;			ret = create_task_21(dataAp, nblocks, k, i, get_block, no_prio);			if (ret == -ENODEV) return ret;		}		for (i = k+1; i<nblocks; i++)		{			for (j = k+1; j<nblocks; j++)			{			     ret = create_task_22(dataAp, nblocks, k, i, j, get_block, no_prio);			     if (ret == -ENODEV) return ret;			}		}		starpu_iteration_pop();	}	/* we wait the last task (TAG11(nblocks - 1)) and all the pivot tasks */	starpu_tag_t *tags = malloc(nblocks*nblocks*sizeof(starpu_tag_t));	unsigned ndeps = 0;	tags[ndeps++] = TAG11(nblocks - 1);	for (j = 0; j < nblocks; j++)	{		for (i = 0; i < j; i++)		{			tags[ndeps++] = PIVOT(j, i);		}	}	/* schedule the codelet */	start = starpu_timing_now();	ret = starpu_task_submit(entry_task);	if (ret != -ENODEV) STARPU_CHECK_RETURN_VALUE(ret, "starpu_task_submit");	/* stall the application until the end of computations */	starpu_tag_wait_array(ndeps, tags);/*	starpu_task_wait_for_all(); */	free(tags);	end = starpu_timing_now();	if (bound)		starpu_bound_stop();	*timing = end - start;	return 0;}starpu_data_handle_t get_block_with_striding(starpu_data_handle_t *dataAp, unsigned nblocks, unsigned j, unsigned i){	/* we use filters */	(void)nblocks;	return starpu_data_get_sub_data(*dataAp, 2, j, i);}int STARPU_LU(lu_decomposition_pivot)(TYPE *matA, unsigned *ipiv, unsigned size, unsigned ld, unsigned nblocks, unsigned no_prio){	starpu_data_handle_t dataA;	/* monitor and partition the A matrix into blocks :	 * one block is now determined by 2 unsigned (i,j) */	starpu_matrix_data_register(&dataA, STARPU_MAIN_RAM, (uintptr_t)matA, ld, size, size, sizeof(TYPE));	/* We already enforce deps by hand */	starpu_data_set_sequential_consistency_flag(dataA, 0);	struct starpu_data_filter f =	{		.filter_func = starpu_matrix_filter_vertical_block,		.nchildren = nblocks	};	struct starpu_data_filter f2 =	{		.filter_func = starpu_matrix_filter_block,		.nchildren = nblocks	};	starpu_data_map_filters(dataA, 2, &f, &f2);	unsigned i;	for (i = 0; i < size; i++)		ipiv[i] = i;	struct piv_s *piv_description = malloc(nblocks*sizeof(struct piv_s));	unsigned block;	for (block = 0; block < nblocks; block++)	{		piv_description[block].piv = ipiv;		piv_description[block].first = block * (size / nblocks);		piv_description[block].last = (block + 1) * (size / nblocks);	}#if 0	unsigned j;	for (j = 0; j < nblocks; j++)	for (i = 0; i < nblocks; i++)	{		printf("BLOCK %d %d	%p\n", i, j, &matA[i*(size/nblocks) + j * (size/nblocks)*ld]);	}#endif	double timing=0.0;	int ret = dw_codelet_facto_pivot(&dataA, piv_description, nblocks, get_block_with_striding, &timing, no_prio);	unsigned n = starpu_matrix_get_nx(dataA);	double flop = (2.0f*n*n*n)/3.0f;	PRINTF("# size\tms\tGFlops");	if (bound)		PRINTF("\tTms\tTGFlops");	PRINTF("\n");	PRINTF("%u\t%.0f\t%.1f", n, timing/1000, flop/timing/1000.0f);	if (bound)	{		double min;		starpu_bound_compute(&min, NULL, 0);		PRINTF("\t%.0f\t%.1f", min, flop/min/1000000.0f);	}	PRINTF("\n");	/* gather all the data */	starpu_data_unpartition(dataA, STARPU_MAIN_RAM);	starpu_data_unregister(dataA);	free(piv_description);	return ret;}starpu_data_handle_t get_block_with_no_striding(starpu_data_handle_t *dataAp, unsigned nblocks, unsigned j, unsigned i){	/* dataAp is an array of data handle */	return dataAp[i+j*nblocks];}int STARPU_LU(lu_decomposition_pivot_no_stride)(TYPE **matA, unsigned *ipiv, unsigned size, unsigned ld, unsigned nblocks, unsigned no_prio){	(void)ld;	if (starpu_mic_worker_get_count() || starpu_mpi_ms_worker_get_count())		/* These won't work with pivoting: we pass a pointer in cl_args */		return -ENODEV;	starpu_data_handle_t *dataAp = malloc(nblocks*nblocks*sizeof(starpu_data_handle_t));	/* monitor and partition the A matrix into blocks :	 * one block is now determined by 2 unsigned (i,j) */	unsigned bi, bj;	for (bj = 0; bj < nblocks; bj++)	for (bi = 0; bi < nblocks; bi++)	{		starpu_matrix_data_register(&dataAp[bi+nblocks*bj], STARPU_MAIN_RAM,			(uintptr_t)matA[bi+nblocks*bj], size/nblocks,			size/nblocks, size/nblocks, sizeof(TYPE));		/* We already enforce deps by hand */		starpu_data_set_sequential_consistency_flag(dataAp[bi+nblocks*bj], 0);	}	unsigned i;	for (i = 0; i < size; i++)		ipiv[i] = i;	struct piv_s *piv_description = malloc(nblocks*sizeof(struct piv_s));	unsigned block;	for (block = 0; block < nblocks; block++)	{		piv_description[block].piv = ipiv;		piv_description[block].first = block * (size / nblocks);		piv_description[block].last = (block + 1) * (size / nblocks);	}	double timing=0.0;	int ret = dw_codelet_facto_pivot(dataAp, piv_description, nblocks, get_block_with_no_striding, &timing, no_prio);	unsigned n = starpu_matrix_get_nx(dataAp[0])*nblocks;	double flop = (2.0f*n*n*n)/3.0f;	PRINTF("# size\tms\tGFlops");	if (bound)		PRINTF("\tTms\tTGFlops");	PRINTF("\n");	PRINTF("%u\t%.0f\t%.1f", n, timing/1000, flop/timing/1000.0f);	if (bound)	{		double min;		starpu_bound_compute(&min, NULL, 0);		PRINTF("\t%.0f\t%.1f", min, flop/min/1000000.0f);	}	PRINTF("\n");	for (bj = 0; bj < nblocks; bj++)	for (bi = 0; bi < nblocks; bi++)	{		starpu_data_unregister(dataAp[bi+nblocks*bj]);	}	free(dataAp);	return ret;}
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