mirror of https://gitee.com/openkylin/linux.git
unify flush_work/flush_work_keventd and rename it to cancel_work_sync
flush_work(wq, work) doesn't need the first parameter, we can use cwq->wq (this was possible from the very beginnig, I missed this). So we can unify flush_work_keventd and flush_work. Also, rename flush_work() to cancel_work_sync() and fix all callers. Perhaps this is not the best name, but "flush_work" is really bad. (akpm: this is why the earlier patches bypassed maintainers) Signed-off-by: Oleg Nesterov <oleg@tv-sign.ru> Cc: Jeff Garzik <jeff@garzik.org> Cc: "David S. Miller" <davem@davemloft.net> Cc: Jens Axboe <jens.axboe@oracle.com> Cc: Tejun Heo <htejun@gmail.com> Cc: Auke Kok <auke-jan.h.kok@intel.com>, Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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5830c59021
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28e53bddf8
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@ -3633,7 +3633,7 @@ EXPORT_SYMBOL(kblockd_schedule_work);
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void kblockd_flush_work(struct work_struct *work)
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{
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flush_work(kblockd_workqueue, work);
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cancel_work_sync(work);
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}
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EXPORT_SYMBOL(kblockd_flush_work);
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@ -1316,7 +1316,7 @@ void ata_port_flush_task(struct ata_port *ap)
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spin_unlock_irqrestore(ap->lock, flags);
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DPRINTK("flush #1\n");
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flush_work(ata_wq, &ap->port_task.work); /* akpm: seems unneeded */
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cancel_work_sync(&ap->port_task.work); /* akpm: seems unneeded */
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/*
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* At this point, if a task is running, it's guaranteed to see
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@ -1327,7 +1327,7 @@ void ata_port_flush_task(struct ata_port *ap)
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if (ata_msg_ctl(ap))
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ata_port_printk(ap, KERN_DEBUG, "%s: flush #2\n",
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__FUNCTION__);
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flush_work(ata_wq, &ap->port_task.work);
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cancel_work_sync(&ap->port_task.work);
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}
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spin_lock_irqsave(ap->lock, flags);
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@ -6475,9 +6475,9 @@ void ata_port_detach(struct ata_port *ap)
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/* Flush hotplug task. The sequence is similar to
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* ata_port_flush_task().
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*/
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flush_work(ata_aux_wq, &ap->hotplug_task.work); /* akpm: why? */
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cancel_work_sync(&ap->hotplug_task.work); /* akpm: why? */
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cancel_delayed_work(&ap->hotplug_task);
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flush_work(ata_aux_wq, &ap->hotplug_task.work);
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cancel_work_sync(&ap->hotplug_task.work);
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skip_eh:
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/* remove the associated SCSI host */
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@ -1214,7 +1214,7 @@ e1000_remove(struct pci_dev *pdev)
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int i;
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#endif
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flush_work_keventd(&adapter->reset_task);
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cancel_work_sync(&adapter->reset_task);
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e1000_release_manageability(adapter);
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@ -663,9 +663,9 @@ int phy_stop_interrupts(struct phy_device *phydev)
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/*
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* Finish any pending work; we might have been scheduled to be called
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* from keventd ourselves, but flush_work_keventd() handles that.
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* from keventd ourselves, but cancel_work_sync() handles that.
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*/
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flush_work_keventd(&phydev->phy_queue);
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cancel_work_sync(&phydev->phy_queue);
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free_irq(phydev->irq, phydev);
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@ -7386,7 +7386,7 @@ static int tg3_close(struct net_device *dev)
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{
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struct tg3 *tp = netdev_priv(dev);
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flush_work_keventd(&tp->reset_task);
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cancel_work_sync(&tp->reset_task);
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netif_stop_queue(dev);
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4
fs/aio.c
4
fs/aio.c
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@ -348,7 +348,7 @@ void fastcall exit_aio(struct mm_struct *mm)
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/*
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* Ensure we don't leave the ctx on the aio_wq
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*/
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flush_work(aio_wq, &ctx->wq.work);
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cancel_work_sync(&ctx->wq.work);
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if (1 != atomic_read(&ctx->users))
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printk(KERN_DEBUG
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@ -371,7 +371,7 @@ void fastcall __put_ioctx(struct kioctx *ctx)
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BUG_ON(ctx->reqs_active);
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cancel_delayed_work(&ctx->wq);
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flush_work(aio_wq, &ctx->wq.work);
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cancel_work_sync(&ctx->wq.work);
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aio_free_ring(ctx);
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mmdrop(ctx->mm);
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ctx->mm = NULL;
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@ -128,30 +128,33 @@ extern struct workqueue_struct *__create_workqueue(const char *name,
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extern void destroy_workqueue(struct workqueue_struct *wq);
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extern int FASTCALL(queue_work(struct workqueue_struct *wq, struct work_struct *work));
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extern int FASTCALL(queue_delayed_work(struct workqueue_struct *wq, struct delayed_work *work, unsigned long delay));
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extern int FASTCALL(queue_delayed_work(struct workqueue_struct *wq,
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struct delayed_work *work, unsigned long delay));
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extern int queue_delayed_work_on(int cpu, struct workqueue_struct *wq,
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struct delayed_work *work, unsigned long delay);
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struct delayed_work *work, unsigned long delay);
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extern void FASTCALL(flush_workqueue(struct workqueue_struct *wq));
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extern void flush_work(struct workqueue_struct *wq, struct work_struct *work);
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extern void flush_work_keventd(struct work_struct *work);
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extern void flush_scheduled_work(void);
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extern int FASTCALL(schedule_work(struct work_struct *work));
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extern int FASTCALL(schedule_delayed_work(struct delayed_work *work, unsigned long delay));
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extern int schedule_delayed_work_on(int cpu, struct delayed_work *work, unsigned long delay);
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extern int FASTCALL(schedule_delayed_work(struct delayed_work *work,
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unsigned long delay));
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extern int schedule_delayed_work_on(int cpu, struct delayed_work *work,
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unsigned long delay);
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extern int schedule_on_each_cpu(work_func_t func);
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extern void flush_scheduled_work(void);
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extern int current_is_keventd(void);
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extern int keventd_up(void);
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extern void init_workqueues(void);
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int execute_in_process_context(work_func_t fn, struct execute_work *);
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extern void cancel_work_sync(struct work_struct *work);
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/*
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* Kill off a pending schedule_delayed_work(). Note that the work callback
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* function may still be running on return from cancel_delayed_work(), unless
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* it returns 1 and the work doesn't re-arm itself. Run flush_workqueue() or
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* flush_work() or cancel_work_sync() to wait on it.
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* cancel_work_sync() to wait on it.
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*/
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static inline int cancel_delayed_work(struct delayed_work *work)
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{
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@ -413,23 +413,23 @@ static void wait_on_work(struct cpu_workqueue_struct *cwq,
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}
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/**
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* flush_work - block until a work_struct's callback has terminated
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* @wq: the workqueue on which the work is queued
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* cancel_work_sync - block until a work_struct's callback has terminated
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* @work: the work which is to be flushed
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*
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* flush_work() will attempt to cancel the work if it is queued. If the work's
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* callback appears to be running, flush_work() will block until it has
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* completed.
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* cancel_work_sync() will attempt to cancel the work if it is queued. If the
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* work's callback appears to be running, cancel_work_sync() will block until
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* it has completed.
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*
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* flush_work() is designed to be used when the caller is tearing down data
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* structures which the callback function operates upon. It is expected that,
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* prior to calling flush_work(), the caller has arranged for the work to not
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* be requeued.
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* cancel_work_sync() is designed to be used when the caller is tearing down
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* data structures which the callback function operates upon. It is expected
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* that, prior to calling cancel_work_sync(), the caller has arranged for the
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* work to not be requeued.
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*/
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void flush_work(struct workqueue_struct *wq, struct work_struct *work)
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void cancel_work_sync(struct work_struct *work)
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{
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const cpumask_t *cpu_map = wq_cpu_map(wq);
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struct cpu_workqueue_struct *cwq;
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struct workqueue_struct *wq;
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const cpumask_t *cpu_map;
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int cpu;
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might_sleep();
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@ -448,10 +448,13 @@ void flush_work(struct workqueue_struct *wq, struct work_struct *work)
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work_clear_pending(work);
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spin_unlock_irq(&cwq->lock);
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wq = cwq->wq;
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cpu_map = wq_cpu_map(wq);
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for_each_cpu_mask(cpu, *cpu_map)
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wait_on_work(per_cpu_ptr(wq->cpu_wq, cpu), work);
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}
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EXPORT_SYMBOL_GPL(flush_work);
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EXPORT_SYMBOL_GPL(cancel_work_sync);
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static struct workqueue_struct *keventd_wq;
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}
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EXPORT_SYMBOL(flush_scheduled_work);
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void flush_work_keventd(struct work_struct *work)
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{
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flush_work(keventd_wq, work);
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}
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EXPORT_SYMBOL(flush_work_keventd);
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/**
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* cancel_rearming_delayed_work - kill off a delayed work whose handler rearms the delayed work.
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* @dwork: the delayed work struct
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*
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* Note that the work callback function may still be running on return from
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* cancel_delayed_work(). Run flush_workqueue() or flush_work() to wait on it.
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* cancel_delayed_work(). Run flush_workqueue() or cancel_work_sync() to wait
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* on it.
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*/
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void cancel_rearming_delayed_work(struct delayed_work *dwork)
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{
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@ -2387,7 +2387,7 @@ void ip_vs_control_cleanup(void)
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EnterFunction(2);
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ip_vs_trash_cleanup();
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cancel_rearming_delayed_work(&defense_work);
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flush_work_keventd(&defense_work.work);
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cancel_work_sync(&defense_work.work);
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ip_vs_kill_estimator(&ip_vs_stats);
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unregister_sysctl_table(sysctl_header);
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proc_net_remove("ip_vs_stats");
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