/* Copyright (c) 2000, 2011, Oracle and/or its affiliates. All rights reserved.
This program is free software ; you can redistribute it and / or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation ; version 2 of the License .
This program 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 General Public License for more details .
You should have received a copy of the GNU General Public License
along with this program ; if not , write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1335 USA */
/* Synchronization - readers / writer thread locks */
#include "mysys_priv.h"
#if defined (NEED_MY_RW_LOCK)
#include <errno.h>
#ifdef _WIN32
int my_rw_init(my_rw_lock_t *rwp)
{
InitializeSRWLock(&rwp->srwlock);
rwp->have_exclusive_srwlock = FALSE ;
return 0 ;
}
int my_rw_rdlock(my_rw_lock_t *rwp)
{
AcquireSRWLockShared(&rwp->srwlock);
return 0 ;
}
int my_rw_tryrdlock(my_rw_lock_t *rwp)
{
if (!TryAcquireSRWLockShared(&rwp->srwlock))
return EBUSY;
return 0 ;
}
int my_rw_wrlock(my_rw_lock_t *rwp)
{
AcquireSRWLockExclusive(&rwp->srwlock);
rwp->have_exclusive_srwlock= TRUE ;
return 0 ;
}
int my_rw_trywrlock(my_rw_lock_t *rwp)
{
if (!TryAcquireSRWLockExclusive(&rwp->srwlock))
return EBUSY;
rwp->have_exclusive_srwlock= TRUE ;
return 0 ;
}
int my_rw_unlock(my_rw_lock_t *rwp)
{
if (rwp->have_exclusive_srwlock)
{
rwp->have_exclusive_srwlock= FALSE ;
ReleaseSRWLockExclusive(&rwp->srwlock);
}
else
{
ReleaseSRWLockShared(&rwp->srwlock);
}
return 0 ;
}
int my_rw_destroy(my_rw_lock_t* rwp)
{
DBUG_ASSERT(!rwp->have_exclusive_srwlock);
return 0 ;
}
#else
#error no pthread_rwlock_init
#endif /* !defined _WIN32 */
#endif /* NEED_MY_RW_LOCK*/
int rw_pr_init(rw_pr_lock_t *rwlock)
{
pthread_mutex_init(&rwlock->lock, NULL);
pthread_cond_init(&rwlock->no_active_readers, NULL);
rwlock->active_readers= 0 ;
rwlock->writers_waiting_readers= 0 ;
rwlock->active_writer= FALSE ;
#ifdef SAFE_MUTEX
rwlock->writer_thread= 0 ;
#endif
return 0 ;
}
int rw_pr_destroy(rw_pr_lock_t *rwlock)
{
pthread_cond_destroy(&rwlock->no_active_readers);
pthread_mutex_destroy(&rwlock->lock);
return 0 ;
}
int rw_pr_rdlock(rw_pr_lock_t *rwlock)
{
pthread_mutex_lock(&rwlock->lock);
/*
The fact that we were able to acquire ' lock ' mutex means
that there are no active writers and we can acquire rd - lock .
Increment active readers counter to prevent requests for
wr - lock from succeeding and unlock mutex .
*/
rwlock->active_readers++;
pthread_mutex_unlock(&rwlock->lock);
return 0 ;
}
int rw_pr_wrlock(rw_pr_lock_t *rwlock)
{
pthread_mutex_lock(&rwlock->lock);
if (rwlock->active_readers != 0 )
{
/* There are active readers. We have to wait until they are gone. */
rwlock->writers_waiting_readers++;
while (rwlock->active_readers != 0 )
pthread_cond_wait(&rwlock->no_active_readers, &rwlock->lock);
rwlock->writers_waiting_readers--;
}
/*
We own ' lock ' mutex so there is no active writers .
Also there are no active readers .
This means that we can grant wr - lock .
Not releasing ' lock ' mutex until unlock will block
both requests for rd and wr - locks .
Set ' active_writer ' flag to simplify unlock .
Thanks to the fact wr - lock / unlock in the absence of
contention from readers is essentially mutex lock / unlock
with a few simple checks make this rwlock implementation
wr - lock optimized .
*/
rwlock->active_writer= TRUE ;
#ifdef SAFE_MUTEX
rwlock->writer_thread= pthread_self();
#endif
return 0 ;
}
int rw_pr_unlock(rw_pr_lock_t *rwlock)
{
if (rwlock->active_writer)
{
/* We are unlocking wr-lock. */
#ifdef SAFE_MUTEX
rwlock->writer_thread= 0 ;
#endif
rwlock->active_writer= FALSE ;
if (rwlock->writers_waiting_readers)
{
/*
Avoid expensive cond signal in case when there is no contention
or it is wr - only .
Note that from view point of performance it would be better to
signal on the condition variable after unlocking mutex ( as it
reduces number of contex switches ) .
Unfortunately this would mean that such rwlock can ' t be safely
used by MDL subsystem , which relies on the fact that it is OK
to destroy rwlock once it is in unlocked state .
*/
pthread_cond_signal(&rwlock->no_active_readers);
}
pthread_mutex_unlock(&rwlock->lock);
}
else
{
/* We are unlocking rd-lock. */
pthread_mutex_lock(&rwlock->lock);
rwlock->active_readers--;
if (rwlock->active_readers == 0 &&
rwlock->writers_waiting_readers)
{
/*
If we are last reader and there are waiting
writers wake them up .
*/
pthread_cond_signal(&rwlock->no_active_readers);
}
pthread_mutex_unlock(&rwlock->lock);
}
return 0 ;
}
Messung V0.5 in Prozent C=95 H=96 G=95
¤ Dauer der Verarbeitung: 0.11 Sekunden
(vorverarbeitet am 2026-10-08)
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