3ff34af355
This commit renames the atomic compare-and-swap functions to indicate the return value. This is in preperation for adding support for a compare-and-swap that returns the old value. At the same time the return type has been changed to bool. Signed-off-by: Nathan Hjelm <hjelmn@lanl.gov>
287 строки
7.7 KiB
C
287 строки
7.7 KiB
C
/*
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* Copyright (c) 2004-2005 The Trustees of Indiana University and Indiana
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* University Research and Technology
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* Corporation. All rights reserved.
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* Copyright (c) 2004-2005 The University of Tennessee and The University
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* of Tennessee Research Foundation. All rights
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* reserved.
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* Copyright (c) 2004-2005 High Performance Computing Center Stuttgart,
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* University of Stuttgart. All rights reserved.
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* Copyright (c) 2004-2005 The Regents of the University of California.
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* All rights reserved.
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* Copyright (c) 2010 Cisco Systems, Inc. All rights reserved.
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* Copyright (c) 2015 Research Organization for Information Science
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* and Technology (RIST). All rights reserved.
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* $COPYRIGHT$
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*
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* Additional copyrights may follow
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*
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* $HEADER$
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*/
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#define OMPI_BUILDING 0
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#include "opal_config.h"
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#undef NDEBUG
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#define DEBUG
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#include <assert.h>
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#ifdef HAVE_PTHREAD_H
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#include <pthread.h>
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#endif
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#include <stdarg.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "opal/sys/atomic.h"
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/* default options */
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int nreps = 100;
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int nthreads = 2;
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int enable_verbose = 0;
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volatile int32_t vol32 = 0;
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int32_t val32 = 0;
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int32_t old32 = 0;
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int32_t new32 = 0;
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#if OPAL_HAVE_ATOMIC_MATH_64
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volatile int64_t vol64 = 0;
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int64_t val64 = 0;
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int64_t old64 = 0;
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int64_t new64 = 0;
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#endif
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volatile int volint = 0;
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int valint = 0;
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int oldint = 0;
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int newint = 0;
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volatile void *volptr = NULL;
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void *oldptr = NULL;
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void *newptr = NULL;
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static void *thread_main(void *arg)
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{
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int rank = (int) (unsigned long) arg;
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int i;
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/* thread tests */
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for (i = 0; i < nreps; i++) {
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opal_atomic_add_32(&val32, 5);
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#if OPAL_HAVE_ATOMIC_MATH_64
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opal_atomic_add_64(&val64, 5);
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#endif
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opal_atomic_add(&valint, 5);
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}
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return (void *) (unsigned long) (rank + 1000);
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}
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int main(int argc, char *argv[])
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{
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int tid;
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pthread_t *th;
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if (argc != 2) {
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printf("*** Incorrect number of arguments. Skipping test\n");
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return 77;
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}
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nthreads = atoi(argv[1]);
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/* first test single-threaded functionality */
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/* -- cmpset 32-bit tests -- */
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vol32 = 42, old32 = 42, new32 = 50;
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assert(opal_atomic_bool_cmpset_32(&vol32, old32, new32) == 1);
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opal_atomic_rmb();
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assert(vol32 == new32);
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vol32 = 42, old32 = 420, new32 = 50;
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assert(opal_atomic_bool_cmpset_32(&vol32, old32, new32) == 0);
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opal_atomic_rmb();
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assert(vol32 == 42);
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vol32 = 42, old32 = 42, new32 = 50;
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assert(opal_atomic_bool_cmpset_acq_32(&vol32, old32, new32) == 1);
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assert(vol32 == new32);
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vol32 = 42, old32 = 420, new32 = 50;
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assert(opal_atomic_bool_cmpset_acq_32(&vol32, old32, new32) == 0);
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assert(vol32 == 42);
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vol32 = 42, old32 = 42, new32 = 50;
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assert(opal_atomic_bool_cmpset_rel_32(&vol32, old32, new32) == 1);
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opal_atomic_rmb();
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assert(vol32 == new32);
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vol32 = 42, old32 = 420, new32 = 50;
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assert(opal_atomic_bool_cmpset_rel_32(&vol32, old32, new32) == 0);
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opal_atomic_rmb();
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assert(vol32 == 42);
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/* -- cmpset 64-bit tests -- */
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#if OPAL_HAVE_ATOMIC_MATH_64
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vol64 = 42, old64 = 42, new64 = 50;
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assert(1 == opal_atomic_bool_cmpset_64(&vol64, old64, new64));
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opal_atomic_rmb();
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assert(new64 == vol64);
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vol64 = 42, old64 = 420, new64 = 50;
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assert(opal_atomic_bool_cmpset_64(&vol64, old64, new64) == 0);
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opal_atomic_rmb();
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assert(vol64 == 42);
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vol64 = 42, old64 = 42, new64 = 50;
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assert(opal_atomic_bool_cmpset_acq_64(&vol64, old64, new64) == 1);
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assert(vol64 == new64);
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vol64 = 42, old64 = 420, new64 = 50;
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assert(opal_atomic_bool_cmpset_acq_64(&vol64, old64, new64) == 0);
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assert(vol64 == 42);
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vol64 = 42, old64 = 42, new64 = 50;
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assert(opal_atomic_bool_cmpset_rel_64(&vol64, old64, new64) == 1);
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opal_atomic_rmb();
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assert(vol64 == new64);
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vol64 = 42, old64 = 420, new64 = 50;
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assert(opal_atomic_bool_cmpset_rel_64(&vol64, old64, new64) == 0);
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opal_atomic_rmb();
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assert(vol64 == 42);
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#endif
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/* -- cmpset int tests -- */
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volint = 42, oldint = 42, newint = 50;
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assert(opal_atomic_bool_cmpset(&volint, oldint, newint) == 1);
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opal_atomic_rmb();
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assert(volint ==newint);
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volint = 42, oldint = 420, newint = 50;
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assert(opal_atomic_bool_cmpset(&volint, oldint, newint) == 0);
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opal_atomic_rmb();
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assert(volint == 42);
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volint = 42, oldint = 42, newint = 50;
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assert(opal_atomic_bool_cmpset_acq(&volint, oldint, newint) == 1);
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assert(volint == newint);
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volint = 42, oldint = 420, newint = 50;
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assert(opal_atomic_bool_cmpset_acq(&volint, oldint, newint) == 0);
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assert(volint == 42);
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volint = 42, oldint = 42, newint = 50;
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assert(opal_atomic_bool_cmpset_rel(&volint, oldint, newint) == 1);
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opal_atomic_rmb();
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assert(volint == newint);
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volint = 42, oldint = 420, newint = 50;
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assert(opal_atomic_bool_cmpset_rel(&volint, oldint, newint) == 0);
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opal_atomic_rmb();
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assert(volint == 42);
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/* -- cmpset ptr tests -- */
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volptr = (void *) 42, oldptr = (void *) 42, newptr = (void *) 50;
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assert(opal_atomic_bool_cmpset_ptr(&volptr, oldptr, newptr) == 1);
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opal_atomic_rmb();
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assert(volptr == newptr);
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volptr = (void *) 42, oldptr = (void *) 420, newptr = (void *) 50;
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assert(opal_atomic_bool_cmpset_ptr(&volptr, oldptr, newptr) == 0);
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opal_atomic_rmb();
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assert(volptr == (void *) 42);
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volptr = (void *) 42, oldptr = (void *) 42, newptr = (void *) 50;
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assert(opal_atomic_bool_cmpset_acq_ptr(&volptr, oldptr, newptr) == 1);
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assert(volptr == newptr);
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volptr = (void *) 42, oldptr = (void *) 420, newptr = (void *) 50;
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assert(opal_atomic_bool_cmpset_acq_ptr(&volptr, oldptr, newptr) == 0);
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assert(volptr == (void *) 42);
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volptr = (void *) 42, oldptr = (void *) 42, newptr = (void *) 50;
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assert(opal_atomic_bool_cmpset_rel_ptr(&volptr, oldptr, newptr) == 1);
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opal_atomic_rmb();
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assert(volptr == newptr);
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volptr = (void *) 42, oldptr = (void *) 420, newptr = (void *) 50;
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assert(opal_atomic_bool_cmpset_rel_ptr(&volptr, oldptr, newptr) == 0);
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opal_atomic_rmb();
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assert(volptr == (void *) 42);
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/* -- add_32 tests -- */
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val32 = 42;
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assert(opal_atomic_add_32(&val32, 5) == (42 + 5));
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opal_atomic_rmb();
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assert((42 + 5) == val32);
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/* -- add_64 tests -- */
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#if OPAL_HAVE_ATOMIC_MATH_64
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val64 = 42;
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assert(opal_atomic_add_64(&val64, 5) == (42 + 5));
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opal_atomic_rmb();
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assert((42 + 5) == val64);
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#endif
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/* -- add_int tests -- */
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valint = 42;
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opal_atomic_add(&valint, 5);
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opal_atomic_rmb();
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assert((42 + 5) == valint);
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/* threaded tests */
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val32 = 0;
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#if OPAL_HAVE_ATOMIC_MATH_64
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val64 = 0ul;
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#endif
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valint = 0;
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/* -- create the thread set -- */
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th = (pthread_t *) malloc(nthreads * sizeof(pthread_t));
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if (!th) {
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perror("malloc");
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exit(EXIT_FAILURE);
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}
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for (tid = 0; tid < nthreads; tid++) {
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if (pthread_create(&th[tid], NULL, thread_main, (void *) (unsigned long) tid) != 0) {
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perror("pthread_create");
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exit(EXIT_FAILURE);
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}
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}
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/* -- wait for the thread set to finish -- */
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for (tid = 0; tid < nthreads; tid++) {
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void *thread_return;
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if (pthread_join(th[tid], &thread_return) != 0) {
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perror("pthread_join");
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exit(EXIT_FAILURE);
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}
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}
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free(th);
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opal_atomic_rmb();
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assert((5 * nthreads * nreps) == val32);
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#if OPAL_HAVE_ATOMIC_MATH_64
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opal_atomic_rmb();
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assert((5 * nthreads * nreps) == val64);
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#endif
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opal_atomic_rmb();
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assert((5 * nthreads * nreps) == valint);
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return 0;
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}
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