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Linux: Cleanup taskq threads spawn/exit
This changes taskq_thread_should_stop() to limit maximum exit rate for idle threads to one per 5 seconds. I believe the previous one was broken, not allowing any thread exits for tasks arriving more than one at a time and so completing while others are running. Also while there: - Remove taskq_thread_spawn() calls on task allocation errors. - Remove extra taskq_thread_should_stop() call. Reviewed-by: Brian Behlendorf <behlendorf1@llnl.gov> Reviewed-by: Rich Ercolani <rincebrain@gmail.com> Signed-off-by: Alexander Motin <mav@FreeBSD.org> Sponsored by: iXsystems, Inc. Closes #15873
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@ -104,7 +104,7 @@ typedef struct taskq {
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/* list node for the cpu hotplug callback */
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struct hlist_node tq_hp_cb_node;
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boolean_t tq_hp_support;
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unsigned long lastshouldstop; /* when to purge dynamic */
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unsigned long lastspawnstop; /* when to purge dynamic */
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} taskq_t;
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typedef struct taskq_ent {
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@ -186,18 +186,8 @@ reading it could cause a lock-up if the list grow too large
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without limiting the output.
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"(truncated)" will be shown if the list is larger than the limit.
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.
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.It Sy spl_taskq_thread_timeout_ms Ns = Ns Sy 10000 Pq uint
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(Linux-only)
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How long a taskq has to have had no work before we tear it down.
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Previously, we would tear down a dynamic taskq worker as soon
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as we noticed it had no work, but it was observed that this led
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to a lot of churn in tearing down things we then immediately
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spawned anew.
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In practice, it seems any nonzero value will remove the vast
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majority of this churn, while the nontrivially larger value
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was chosen to help filter out the little remaining churn on
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a mostly idle system.
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Setting this value to
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.Sy 0
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will revert to the previous behavior.
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.It Sy spl_taskq_thread_timeout_ms Ns = Ns Sy 5000 Pq uint
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Minimum idle threads exit interval for dynamic taskqs.
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Smaller values allow idle threads exit more often and potentially be
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respawned again on demand, causing more churn.
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.El
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@ -36,12 +36,12 @@ static int spl_taskq_thread_bind = 0;
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module_param(spl_taskq_thread_bind, int, 0644);
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MODULE_PARM_DESC(spl_taskq_thread_bind, "Bind taskq thread to CPU by default");
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static uint_t spl_taskq_thread_timeout_ms = 10000;
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static uint_t spl_taskq_thread_timeout_ms = 5000;
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/* BEGIN CSTYLED */
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module_param(spl_taskq_thread_timeout_ms, uint, 0644);
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/* END CSTYLED */
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MODULE_PARM_DESC(spl_taskq_thread_timeout_ms,
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"Time to require a dynamic thread be idle before it gets cleaned up");
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"Minimum idle threads exit interval for dynamic taskqs");
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static int spl_taskq_thread_dynamic = 1;
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module_param(spl_taskq_thread_dynamic, int, 0444);
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@ -594,8 +594,7 @@ taskq_dispatch(taskq_t *tq, task_func_t func, void *arg, uint_t flags)
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ASSERT(tq->tq_nactive <= tq->tq_nthreads);
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if ((flags & TQ_NOQUEUE) && (tq->tq_nactive == tq->tq_nthreads)) {
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/* Dynamic taskq may be able to spawn another thread */
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if (!(tq->tq_flags & TASKQ_DYNAMIC) ||
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taskq_thread_spawn(tq) == 0)
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if (taskq_thread_spawn(tq) == 0)
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goto out;
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}
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@ -629,11 +628,11 @@ taskq_dispatch(taskq_t *tq, task_func_t func, void *arg, uint_t flags)
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spin_unlock(&t->tqent_lock);
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wake_up(&tq->tq_work_waitq);
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out:
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/* Spawn additional taskq threads if required. */
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if (!(flags & TQ_NOQUEUE) && tq->tq_nactive == tq->tq_nthreads)
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(void) taskq_thread_spawn(tq);
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out:
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spin_unlock_irqrestore(&tq->tq_lock, irqflags);
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return (rc);
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}
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@ -676,10 +675,11 @@ taskq_dispatch_delay(taskq_t *tq, task_func_t func, void *arg,
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ASSERT(!(t->tqent_flags & TQENT_FLAG_PREALLOC));
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spin_unlock(&t->tqent_lock);
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out:
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/* Spawn additional taskq threads if required. */
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if (tq->tq_nactive == tq->tq_nthreads)
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(void) taskq_thread_spawn(tq);
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out:
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spin_unlock_irqrestore(&tq->tq_lock, irqflags);
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return (rc);
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}
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@ -704,9 +704,8 @@ taskq_dispatch_ent(taskq_t *tq, task_func_t func, void *arg, uint_t flags,
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if ((flags & TQ_NOQUEUE) && (tq->tq_nactive == tq->tq_nthreads)) {
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/* Dynamic taskq may be able to spawn another thread */
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if (!(tq->tq_flags & TASKQ_DYNAMIC) ||
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taskq_thread_spawn(tq) == 0)
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goto out2;
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if (taskq_thread_spawn(tq) == 0)
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goto out;
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flags |= TQ_FRONT;
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}
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@ -742,11 +741,11 @@ taskq_dispatch_ent(taskq_t *tq, task_func_t func, void *arg, uint_t flags,
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spin_unlock(&t->tqent_lock);
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wake_up(&tq->tq_work_waitq);
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out:
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/* Spawn additional taskq threads if required. */
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if (tq->tq_nactive == tq->tq_nthreads)
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(void) taskq_thread_spawn(tq);
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out2:
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out:
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spin_unlock_irqrestore(&tq->tq_lock, irqflags);
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}
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EXPORT_SYMBOL(taskq_dispatch_ent);
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@ -825,6 +824,7 @@ taskq_thread_spawn(taskq_t *tq)
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if (!(tq->tq_flags & TASKQ_DYNAMIC))
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return (0);
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tq->lastspawnstop = jiffies;
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if ((tq->tq_nthreads + tq->tq_nspawn < tq->tq_maxthreads) &&
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(tq->tq_flags & TASKQ_ACTIVE)) {
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spawning = (++tq->tq_nspawn);
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@ -836,9 +836,9 @@ taskq_thread_spawn(taskq_t *tq)
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}
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/*
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* Threads in a dynamic taskq should only exit once it has been completely
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* drained and no other threads are actively servicing tasks. This prevents
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* threads from being created and destroyed more than is required.
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* Threads in a dynamic taskq may exit once there is no more work to do.
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* To prevent threads from being created and destroyed too often limit
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* the exit rate to one per spl_taskq_thread_timeout_ms.
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*
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* The first thread is the thread list is treated as the primary thread.
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* There is nothing special about the primary thread but in order to avoid
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@ -847,44 +847,22 @@ taskq_thread_spawn(taskq_t *tq)
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static int
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taskq_thread_should_stop(taskq_t *tq, taskq_thread_t *tqt)
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{
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if (!(tq->tq_flags & TASKQ_DYNAMIC))
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ASSERT(!taskq_next_ent(tq));
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if (!(tq->tq_flags & TASKQ_DYNAMIC) || !spl_taskq_thread_dynamic)
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return (0);
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if (!(tq->tq_flags & TASKQ_ACTIVE))
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return (1);
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if (list_first_entry(&(tq->tq_thread_list), taskq_thread_t,
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tqt_thread_list) == tqt)
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return (0);
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int no_work =
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((tq->tq_nspawn == 0) && /* No threads are being spawned */
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(tq->tq_nactive == 0) && /* No threads are handling tasks */
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(tq->tq_nthreads > 1) && /* More than 1 thread is running */
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(!taskq_next_ent(tq)) && /* There are no pending tasks */
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(spl_taskq_thread_dynamic)); /* Dynamic taskqs are allowed */
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/*
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* If we would have said stop before, let's instead wait a bit, maybe
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* we'll see more work come our way soon...
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*/
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if (no_work) {
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/* if it's 0, we want the old behavior. */
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/* if the taskq is being torn down, we also want to go away. */
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if (spl_taskq_thread_timeout_ms == 0 ||
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!(tq->tq_flags & TASKQ_ACTIVE))
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return (1);
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unsigned long lasttime = tq->lastshouldstop;
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if (lasttime > 0) {
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if (time_after(jiffies, lasttime +
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ASSERT3U(tq->tq_nthreads, >, 1);
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if (tq->tq_nspawn != 0)
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return (0);
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if (time_before(jiffies, tq->lastspawnstop +
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msecs_to_jiffies(spl_taskq_thread_timeout_ms)))
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return (0);
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tq->lastspawnstop = jiffies;
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return (1);
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else
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return (0);
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} else {
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tq->lastshouldstop = jiffies;
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}
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} else {
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tq->lastshouldstop = 0;
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}
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return (0);
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}
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static int
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@ -935,10 +913,8 @@ taskq_thread(void *args)
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if (list_empty(&tq->tq_pend_list) &&
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list_empty(&tq->tq_prio_list)) {
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if (taskq_thread_should_stop(tq, tqt)) {
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wake_up_all(&tq->tq_wait_waitq);
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if (taskq_thread_should_stop(tq, tqt))
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break;
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}
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add_wait_queue_exclusive(&tq->tq_work_waitq, &wait);
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spin_unlock_irqrestore(&tq->tq_lock, flags);
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@ -1013,9 +989,6 @@ taskq_thread(void *args)
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tqt->tqt_id = TASKQID_INVALID;
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tqt->tqt_flags = 0;
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wake_up_all(&tq->tq_wait_waitq);
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} else {
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if (taskq_thread_should_stop(tq, tqt))
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break;
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}
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set_current_state(TASK_INTERRUPTIBLE);
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@ -1122,7 +1095,7 @@ taskq_create(const char *name, int threads_arg, pri_t pri,
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tq->tq_flags = (flags | TASKQ_ACTIVE);
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tq->tq_next_id = TASKQID_INITIAL;
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tq->tq_lowest_id = TASKQID_INITIAL;
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tq->lastshouldstop = 0;
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tq->lastspawnstop = jiffies;
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INIT_LIST_HEAD(&tq->tq_free_list);
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INIT_LIST_HEAD(&tq->tq_pend_list);
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INIT_LIST_HEAD(&tq->tq_prio_list);
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