int wi_stopping;
} cfs_wi_data;
-static inline void
-cfs_wi_sched_lock(struct cfs_wi_sched *sched)
-{
- spin_lock(&sched->ws_lock);
-}
-
static inline void
cfs_wi_sched_unlock(struct cfs_wi_sched *sched)
{
static inline int
cfs_wi_sched_cansleep(struct cfs_wi_sched *sched)
{
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
if (sched->ws_stopping) {
cfs_wi_sched_unlock(sched);
return 0;
LASSERT(!in_interrupt()); /* because we use plain spinlock */
LASSERT(!sched->ws_stopping);
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
LASSERT(wi->wi_running);
if (wi->wi_scheduled) { /* cancel pending schedules */
* means the workitem will not be scheduled and will not have
* any race with wi_action.
*/
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
rc = !(wi->wi_running);
LASSERT(!in_interrupt()); /* because we use plain spinlock */
LASSERT(!sched->ws_stopping);
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
if (!wi->wi_scheduled) {
LASSERT (list_empty(&wi->wi_list));
spin_unlock(&cfs_wi_data.wi_glock);
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
while (!sched->ws_stopping) {
int nloops = 0;
rc = (*wi->wi_action) (wi);
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
if (rc != 0) /* WI should be dead, even be freed! */
continue;
/* don't sleep because some workitems still
* expect me to come back soon */
cond_resched();
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
continue;
}
cfs_wi_sched_unlock(sched);
rc = wait_event_interruptible_exclusive(sched->ws_waitq,
!cfs_wi_sched_cansleep(sched));
- cfs_wi_sched_lock(sched);
+ spin_lock(&sched->ws_lock);
}
cfs_wi_sched_unlock(sched);