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Add cv_timedwait_interruptible() function
The cv_timedwait() function by definition must wait unconditionally for cv_signal()/cv_broadcast() before waking. This causes processes to go in the D state which increases the load average. The load average is the summation of processes in D state and run queue. To avoid this it can be desirable to sleep interruptibly. These processes do not count against the load average but may be woken by a signal. It is up to the caller to determine why the process was woken it may be for one of three reasons. 1) cv_signal()/cv_broadcast() 2) the timeout expired 3) a signal was received Signed-off-by: Brian Behlendorf <behlendorf1@llnl.gov>
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@ -53,21 +53,25 @@ extern void __cv_destroy(kcondvar_t *cvp);
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extern void __cv_wait(kcondvar_t *cvp, kmutex_t *mp);
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extern void __cv_wait_interruptible(kcondvar_t *cvp, kmutex_t *mp);
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extern clock_t __cv_timedwait(kcondvar_t *cvp, kmutex_t *mp, clock_t exp_time);
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extern clock_t __cv_timedwait_interruptible(kcondvar_t *cvp, kmutex_t *mp,
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clock_t exp_time);
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extern void __cv_signal(kcondvar_t *cvp);
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extern void __cv_broadcast(kcondvar_t *cvp);
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#define cv_init(cvp, name, type, arg) \
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({ \
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if ((name) == NULL) \
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__cv_init(cvp, #cvp, type, arg); \
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else \
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__cv_init(cvp, name, type, arg); \
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#define cv_init(cvp, name, type, arg) \
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({ \
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if ((name) == NULL) \
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__cv_init(cvp, #cvp, type, arg); \
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else \
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__cv_init(cvp, name, type, arg); \
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})
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#define cv_destroy(cvp) __cv_destroy(cvp)
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#define cv_wait(cvp, mp) __cv_wait(cvp, mp)
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#define cv_wait_interruptible(cvp, mp) __cv_wait_interruptible(cvp, mp)
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#define cv_timedwait(cvp, mp, t) __cv_timedwait(cvp, mp, t)
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#define cv_signal(cvp) __cv_signal(cvp)
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#define cv_broadcast(cvp) __cv_broadcast(cvp)
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#define cv_destroy(cvp) __cv_destroy(cvp)
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#define cv_wait(cvp, mp) __cv_wait(cvp, mp)
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#define cv_wait_interruptible(cvp, mp) __cv_wait_interruptible(cvp,mp)
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#define cv_timedwait(cvp, mp, t) __cv_timedwait(cvp, mp, t)
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#define cv_timedwait_interruptible(cvp, mp, t) \
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__cv_timedwait_interruptible(cvp, mp, t)
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#define cv_signal(cvp) __cv_signal(cvp)
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#define cv_broadcast(cvp) __cv_broadcast(cvp)
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#endif /* _SPL_CONDVAR_H */
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@ -135,8 +135,9 @@ EXPORT_SYMBOL(__cv_wait_interruptible);
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/* 'expire_time' argument is an absolute wall clock time in jiffies.
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* Return value is time left (expire_time - now) or -1 if timeout occurred.
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*/
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clock_t
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__cv_timedwait(kcondvar_t *cvp, kmutex_t *mp, clock_t expire_time)
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static clock_t
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__cv_timedwait_common(kcondvar_t *cvp, kmutex_t *mp,
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clock_t expire_time, int state)
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{
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DEFINE_WAIT(wait);
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clock_t time_left;
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@ -158,8 +159,7 @@ __cv_timedwait(kcondvar_t *cvp, kmutex_t *mp, clock_t expire_time)
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if (time_left <= 0)
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SRETURN(-1);
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prepare_to_wait_exclusive(&cvp->cv_event, &wait,
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TASK_UNINTERRUPTIBLE);
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prepare_to_wait_exclusive(&cvp->cv_event, &wait, state);
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atomic_inc(&cvp->cv_waiters);
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/* Mutex should be dropped after prepare_to_wait() this
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@ -177,8 +177,21 @@ __cv_timedwait(kcondvar_t *cvp, kmutex_t *mp, clock_t expire_time)
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SRETURN(time_left > 0 ? time_left : -1);
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}
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clock_t
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__cv_timedwait(kcondvar_t *cvp, kmutex_t *mp, clock_t exp_time)
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{
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return __cv_timedwait_common(cvp, mp, exp_time, TASK_UNINTERRUPTIBLE);
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}
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EXPORT_SYMBOL(__cv_timedwait);
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clock_t
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__cv_timedwait_interruptible(kcondvar_t *cvp, kmutex_t *mp, clock_t exp_time)
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{
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return __cv_timedwait_common(cvp, mp, exp_time, TASK_INTERRUPTIBLE);
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}
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EXPORT_SYMBOL(__cv_timedwait_interruptible);
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void
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__cv_signal(kcondvar_t *cvp)
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{
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