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9c96fde120
include/atomic/generic-msvc.h: prevent possible compiler warnings include/lf.h: comments, better definition for LF_HASH_OVERHEAD include/maria.h: define MARIA_CANNOT_ROLLBACK here include/my_pthread.h: avoid possible name clash include/waiting_threads.h: comments, const, move WT_RESOURCE to waiting_threads.c mysql-test/suite/maria/r/maria_notembedded.result: new test mysql-test/suite/maria/t/maria_notembedded.test: new test - 5-way deadlock mysys/lf_hash.c: better definition for LF_HASH_OVERHEAD mysys/my_static.c: comment mysys/my_thr_init.c: casts mysys/waiting_threads.c: comments, asserts, etc server-tools/instance-manager/parse.cc: fix my_init_dynamic_array() to follow new calling conventions sql/mysqld.cc: call wt_init after set_proper_floating_point_mode sql/sql_class.h: comment storage/maria/ha_maria.cc: move MARIA_CANNOT_ROLLBACK to a common header storage/maria/ma_commit.c: comment storage/maria/ma_write.c: comments, check for HA_ERR_FOUND_DUPP_KEY storage/maria/trnman.c: comments, assert storage/maria/trnman.h: comments storage/maria/unittest/trnman-t.c: be paranoid unittest/mysys/lf-t.c: comments unittest/mysys/waiting_threads-t.c: comments, safety, memory leak
146 lines
3.8 KiB
C
146 lines
3.8 KiB
C
/* Copyright (C) 2006-2008 MySQL AB, 2008 Sun Microsystems, Inc.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; version 2 of the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */
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#include "thr_template.c"
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/* at least gcc 3.4.5 and 3.4.6 (but not 3.2.3) on RHEL */
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#if __GNUC__ == 3 && __GNUC_MINOR__ == 4
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#define GCC_BUG_WORKAROUND volatile
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#else
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#define GCC_BUG_WORKAROUND
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#endif
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volatile uint32 b32;
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volatile int32 c32;
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my_atomic_rwlock_t rwl;
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/* add and sub a random number in a loop. Must get 0 at the end */
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pthread_handler_t test_atomic_add(void *arg)
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{
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int m= (*(int *)arg)/2;
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GCC_BUG_WORKAROUND int32 x;
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for (x= ((int)(intptr)(&m)); m ; m--)
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{
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x= (x*m+0x87654321) & INT_MAX32;
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my_atomic_rwlock_wrlock(&rwl);
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my_atomic_add32(&bad, x);
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my_atomic_rwlock_wrunlock(&rwl);
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my_atomic_rwlock_wrlock(&rwl);
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my_atomic_add32(&bad, -x);
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my_atomic_rwlock_wrunlock(&rwl);
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}
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pthread_mutex_lock(&mutex);
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if (!--running_threads) pthread_cond_signal(&cond);
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pthread_mutex_unlock(&mutex);
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return 0;
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}
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/*
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1. generate thread number 0..N-1 from b32
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2. add it to bad
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3. swap thread numbers in c32
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4. (optionally) one more swap to avoid 0 as a result
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5. subtract result from bad
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must get 0 in bad at the end
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*/
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pthread_handler_t test_atomic_fas(void *arg)
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{
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int m= *(int *)arg;
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int32 x;
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my_atomic_rwlock_wrlock(&rwl);
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x= my_atomic_add32(&b32, 1);
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my_atomic_rwlock_wrunlock(&rwl);
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my_atomic_rwlock_wrlock(&rwl);
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my_atomic_add32(&bad, x);
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my_atomic_rwlock_wrunlock(&rwl);
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for (; m ; m--)
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{
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my_atomic_rwlock_wrlock(&rwl);
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x= my_atomic_fas32(&c32, x);
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my_atomic_rwlock_wrunlock(&rwl);
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}
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if (!x)
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{
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my_atomic_rwlock_wrlock(&rwl);
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x= my_atomic_fas32(&c32, x);
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my_atomic_rwlock_wrunlock(&rwl);
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}
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my_atomic_rwlock_wrlock(&rwl);
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my_atomic_add32(&bad, -x);
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my_atomic_rwlock_wrunlock(&rwl);
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pthread_mutex_lock(&mutex);
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if (!--running_threads) pthread_cond_signal(&cond);
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pthread_mutex_unlock(&mutex);
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return 0;
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}
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/*
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same as test_atomic_add, but my_atomic_add32 is emulated with
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my_atomic_cas32 - notice that the slowdown is proportional to the
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number of CPUs
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*/
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pthread_handler_t test_atomic_cas(void *arg)
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{
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int m= (*(int *)arg)/2, ok= 0;
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GCC_BUG_WORKAROUND int32 x, y;
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for (x= ((int)(intptr)(&m)); m ; m--)
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{
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my_atomic_rwlock_wrlock(&rwl);
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y= my_atomic_load32(&bad);
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my_atomic_rwlock_wrunlock(&rwl);
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x= (x*m+0x87654321) & INT_MAX32;
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do {
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my_atomic_rwlock_wrlock(&rwl);
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ok= my_atomic_cas32(&bad, &y, (uint32)y+x);
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my_atomic_rwlock_wrunlock(&rwl);
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} while (!ok) ;
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do {
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my_atomic_rwlock_wrlock(&rwl);
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ok= my_atomic_cas32(&bad, &y, y-x);
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my_atomic_rwlock_wrunlock(&rwl);
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} while (!ok) ;
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}
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pthread_mutex_lock(&mutex);
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if (!--running_threads) pthread_cond_signal(&cond);
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pthread_mutex_unlock(&mutex);
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return 0;
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}
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void do_tests()
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{
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plan(4);
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bad= my_atomic_initialize();
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ok(!bad, "my_atomic_initialize() returned %d", bad);
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my_atomic_rwlock_init(&rwl);
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b32= c32= 0;
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test_concurrently("my_atomic_add32", test_atomic_add, THREADS, CYCLES);
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b32= c32= 0;
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test_concurrently("my_atomic_fas32", test_atomic_fas, THREADS, CYCLES);
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b32= c32= 0;
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test_concurrently("my_atomic_cas32", test_atomic_cas, THREADS, CYCLES);
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my_atomic_rwlock_destroy(&rwl);
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}
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