2008-02-28 03:52:31 +03:00
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#ifndef _SPL_RWLOCK_H
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#define _SPL_RWLOCK_H
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2008-02-26 23:36:04 +03:00
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2008-02-27 22:09:51 +03:00
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#include <linux/module.h>
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2008-02-26 23:36:04 +03:00
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#include <linux/slab.h>
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#include <linux/rwsem.h>
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#include <asm/current.h>
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2008-02-28 03:48:31 +03:00
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#include "spl-types.h"
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2008-02-26 23:36:04 +03:00
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#ifdef __cplusplus
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extern "C" {
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#endif
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typedef enum {
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RW_DRIVER = 2, /* driver (DDI) rwlock */
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RW_DEFAULT = 4 /* kernel default rwlock */
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} krw_type_t;
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typedef enum {
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RW_WRITER,
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RW_READER
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} krw_t;
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#define RW_READ_HELD(x) (rw_read_held((x)))
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#define RW_WRITE_HELD(x) (rw_write_held((x)))
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#define RW_LOCK_HELD(x) (rw_lock_held((x)))
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#define RW_ISWRITER(x) (rw_iswriter(x))
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#define RW_MAGIC 0x3423645a
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#define RW_POISON 0xa6
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typedef struct {
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int rw_magic;
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char *rw_name;
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struct rw_semaphore rw_sem;
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2008-02-27 22:09:51 +03:00
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struct task_struct *rw_owner; /* holder of the write lock */
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2008-02-26 23:36:04 +03:00
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} krwlock_t;
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static __inline__ void
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rw_init(krwlock_t *rwlp, char *name, krw_type_t type, void *arg)
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{
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BUG_ON(type != RW_DEFAULT); /* XXX no irq handler use */
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BUG_ON(arg != NULL); /* XXX no irq handler use */
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rwlp->rw_magic = RW_MAGIC;
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rwlp->rw_owner = NULL; /* no one holds the write lock yet */
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init_rwsem(&rwlp->rw_sem);
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rwlp->rw_name = NULL;
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if (name) {
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rwlp->rw_name = kmalloc(strlen(name) + 1, GFP_KERNEL);
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if (rwlp->rw_name)
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strcpy(rwlp->rw_name, name);
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}
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}
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static __inline__ void
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rw_destroy(krwlock_t *rwlp)
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{
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BUG_ON(rwlp == NULL);
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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BUG_ON(rwlp->rw_owner != NULL);
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spin_lock(&rwlp->rw_sem.wait_lock);
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BUG_ON(!list_empty(&rwlp->rw_sem.wait_list));
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spin_unlock(&rwlp->rw_sem.wait_lock);
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if (rwlp->rw_name)
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kfree(rwlp->rw_name);
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memset(rwlp, RW_POISON, sizeof(krwlock_t));
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}
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/* Return 0 if the lock could not be obtained without blocking.
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*/
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static __inline__ int
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rw_tryenter(krwlock_t *rwlp, krw_t rw)
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{
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int result;
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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switch (rw) {
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/* these functions return 1 if success, 0 if contention */
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case RW_READER:
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/* Here the Solaris code would return 0
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* if there were any write waiters. Specifically
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* thinking about the case where readers may have
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* the lock and we would also allow this thread
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* to grab the read lock with a writer waiting in the
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* queue. This doesn't seem like a correctness
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* issue, so just call down_read_trylock()
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* for the test. We may have to revisit this if
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* it becomes an issue */
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result = down_read_trylock(&rwlp->rw_sem);
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break;
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case RW_WRITER:
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result = down_write_trylock(&rwlp->rw_sem);
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if (result) {
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/* there better not be anyone else
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* holding the write lock here */
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BUG_ON(rwlp->rw_owner != NULL);
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rwlp->rw_owner = current;
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}
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break;
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}
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return result;
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}
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static __inline__ void
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rw_enter(krwlock_t *rwlp, krw_t rw)
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{
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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switch (rw) {
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case RW_READER:
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/* Here the Solaris code would block
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* if there were any write waiters. Specifically
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* thinking about the case where readers may have
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* the lock and we would also allow this thread
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* to grab the read lock with a writer waiting in the
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* queue. This doesn't seem like a correctness
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* issue, so just call down_read()
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* for the test. We may have to revisit this if
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* it becomes an issue */
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down_read(&rwlp->rw_sem);
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break;
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case RW_WRITER:
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down_write(&rwlp->rw_sem);
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/* there better not be anyone else
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* holding the write lock here */
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BUG_ON(rwlp->rw_owner != NULL);
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rwlp->rw_owner = current;
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break;
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}
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}
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static __inline__ void
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rw_exit(krwlock_t *rwlp)
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{
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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/* rw_owner is held by current
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* thread iff it is a writer */
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if (rwlp->rw_owner == current) {
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rwlp->rw_owner = NULL;
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up_write(&rwlp->rw_sem);
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} else {
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up_read(&rwlp->rw_sem);
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}
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}
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static __inline__ void
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rw_downgrade(krwlock_t *rwlp)
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{
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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BUG_ON(rwlp->rw_owner != current);
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rwlp->rw_owner = NULL;
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downgrade_write(&rwlp->rw_sem);
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}
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/* Return 0 if unable to perform the upgrade.
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* Might be wise to fix the caller
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* to acquire the write lock first?
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*/
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static __inline__ int
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rw_tryupgrade(krwlock_t *rwlp)
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{
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int result;
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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spin_lock(&rwlp->rw_sem.wait_lock);
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/* Check if there is anyone waiting for the
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* lock. If there is, then we know we should
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* not try to upgrade the lock */
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if (!list_empty(&rwlp->rw_sem.wait_list)) {
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printk(KERN_WARNING "There are threads waiting\n");
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spin_unlock(&rwlp->rw_sem.wait_lock);
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return 0;
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}
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#ifdef CONFIG_RWSEM_GENERIC_SPINLOCK
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/* Note that activity is protected by
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* the wait_lock. Don't try to upgrade
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* if there are multiple readers currently
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* holding the lock */
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if (rwlp->rw_sem.activity > 1) {
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#else
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/* Don't try to upgrade
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* if there are multiple readers currently
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* holding the lock */
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if ((rwlp->rw_sem.count & RWSEM_ACTIVE_MASK) > 1) {
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#endif
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spin_unlock(&rwlp->rw_sem.wait_lock);
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return 0;
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}
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/* Here it should be safe to drop the
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* read lock and reacquire it for writing since
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* we know there are no waiters */
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up_read(&rwlp->rw_sem);
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2008-02-27 22:09:51 +03:00
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2008-02-26 23:36:04 +03:00
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/* returns 1 if success, 0 if contention */
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result = down_write_trylock(&rwlp->rw_sem);
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2008-02-27 22:09:51 +03:00
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/* Check if upgrade failed. Should not ever happen
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2008-02-26 23:36:04 +03:00
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* if we got to this point */
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BUG_ON(!result);
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BUG_ON(rwlp->rw_owner != NULL);
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rwlp->rw_owner = current;
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spin_unlock(&rwlp->rw_sem.wait_lock);
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return 1;
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}
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static __inline__ kthread_t *
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rw_owner(krwlock_t *rwlp)
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{
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BUG_ON(rwlp->rw_magic != RW_MAGIC);
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return rwlp->rw_owner;
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}
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#ifdef __cplusplus
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}
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#endif
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2008-02-28 03:52:31 +03:00
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#endif /* _SPL_RWLOCK_H */
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