se_lock
mutex_enter(&p->se_lock);
mutex_exit(&p->se_lock);
mutex_enter(&p->se_lock);
mutex_exit(&p->se_lock);
mutex_enter(&slp->se_lock);
mutex_exit(&slp->se_lock);
mutex_enter(&node->se_lock);
mutex_exit(&node->se_lock);
mutex_destroy(&node->se_lock);
mutex_init(&tnode->se_lock, NULL, MUTEX_DEFAULT, NULL);
mutex_destroy(&tnode->se_lock);
mutex_enter(&tmp->se_lock);
mutex_exit(&tmp->se_lock);
mutex_exit(&tmp->se_lock);
mutex_enter(&p->se_lock);
mutex_exit(&p->se_lock);
mutex_enter(&tmp->se_lock);
mutex_exit(&tmp->se_lock);
mutex_exit(&tmp->se_lock);
mutex_enter(&slot->se_lock); /* grab slot lock */
mutex_exit(&slot->se_lock);
mutex_enter(&slot->se_lock);
mutex_exit(&slot->se_lock);
mutex_exit(&slot->se_lock);
mutex_enter(&slot->se_lock);
mutex_exit(&slot->se_lock);
mutex_enter(&slot->se_lock);
mutex_exit(&slot->se_lock);
mutex_enter(&slotent->se_lock);
mutex_exit(&slotent->se_lock);
mutex_enter(&slot->se_lock);
mutex_init(&p[i].se_lock, NULL, MUTEX_DEFAULT, NULL);
mutex_destroy(&slot->se_lock);
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_destroy(&(sep->se_lock));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ksp->ks_lock = &(sep->se_lock);
mutex_init(&(sep->se_lock), NULL,
mutex_destroy(&(sep->se_lock));
mutex_enter(&(sep->se_lock));
if (cv_timedwait(&(sep->se_init_kv), &(sep->se_lock),
mutex_exit(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ksp->ks_lock = &(sep->se_lock);
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
mutex_enter(&(sep->se_lock));
if (cv_timedwait(&(srp->sr_flush_kv), &(sep->se_lock),
mutex_exit(&(sep->se_lock));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
ASSERT(mutex_owned(&(sep->se_lock)));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sep->se_lock)));
ASSERT(mutex_owned(&(sp->s_sep[stp->st_evq]->se_lock)));
mutex_enter(&(sep->se_lock));
mutex_exit(&(sep->se_lock));
kmutex_t se_lock;
kmutex_t se_lock;