PM / wakeirq: Fix dedicated wakeirq for drivers not using autosuspend
I noticed some wakeirq flakeyness with consumer drivers not using
autosuspend. For drivers not using autosuspend, the wakeirq may never
get unmasked in rpm_suspend() because of irq desc->depth.
We are configuring dedicated wakeirqs to start with IRQ_NOAUTOEN as we
naturally don't want them running until rpm_suspend() is called.
However, when a consumer driver initially calls pm_runtime_get(), we
now wrongly start with disable_irq_nosync() call on the dedicated
wakeirq that is disabled to start with.
This causes desc->depth to toggle between 1 and 2 instead of the usual
0 and 1. This can prevent enable_irq() from unmasking the wakeirq as
that only happens at desc->depth 1.
This does not necessarily show up with drivers using autosuspend as
there is time for disable_irq_nosync() before rpm_suspend() gets called
after the autosuspend timeout.
Let's fix the issue by adding wirq->status that lazily gets set on
the first rpm_suspend(). We also need PM runtime core private functions
for dev_pm_enable_wake_irq_check() and dev_pm_disable_wake_irq_check()
so we can enable the dedicated wakeirq on the first rpm_suspend().
While at it, let's also fix the comments for dev_pm_enable_wake_irq()
and dev_pm_disable_wake_irq(). Those can still be used by the consumer
drivers as needed because the IRQ core manages the interrupt usecount
for us.
Fixes: 4990d4fe32
(PM / Wakeirq: Add automated device wake IRQ handling)
Signed-off-by: Tony Lindgren <tony@atomide.com>
Signed-off-by: Rafael J. Wysocki <rafael.j.wysocki@intel.com>
This commit is contained in:
Родитель
1d9174fbc5
Коммит
bed570307e
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@ -21,14 +21,22 @@ extern void pm_runtime_init(struct device *dev);
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extern void pm_runtime_reinit(struct device *dev);
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extern void pm_runtime_remove(struct device *dev);
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#define WAKE_IRQ_DEDICATED_ALLOCATED BIT(0)
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#define WAKE_IRQ_DEDICATED_MANAGED BIT(1)
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#define WAKE_IRQ_DEDICATED_MASK (WAKE_IRQ_DEDICATED_ALLOCATED | \
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WAKE_IRQ_DEDICATED_MANAGED)
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struct wake_irq {
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struct device *dev;
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unsigned int status;
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int irq;
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bool dedicated_irq:1;
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};
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extern void dev_pm_arm_wake_irq(struct wake_irq *wirq);
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extern void dev_pm_disarm_wake_irq(struct wake_irq *wirq);
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extern void dev_pm_enable_wake_irq_check(struct device *dev,
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bool can_change_status);
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extern void dev_pm_disable_wake_irq_check(struct device *dev);
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#ifdef CONFIG_PM_SLEEP
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@ -104,6 +112,15 @@ static inline void dev_pm_disarm_wake_irq(struct wake_irq *wirq)
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{
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}
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static inline void dev_pm_enable_wake_irq_check(struct device *dev,
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bool can_change_status)
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{
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}
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static inline void dev_pm_disable_wake_irq_check(struct device *dev)
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{
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}
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#endif
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#ifdef CONFIG_PM_SLEEP
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@ -516,7 +516,7 @@ static int rpm_suspend(struct device *dev, int rpmflags)
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callback = RPM_GET_CALLBACK(dev, runtime_suspend);
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dev_pm_enable_wake_irq(dev);
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dev_pm_enable_wake_irq_check(dev, true);
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retval = rpm_callback(callback, dev);
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if (retval)
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goto fail;
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@ -555,7 +555,7 @@ static int rpm_suspend(struct device *dev, int rpmflags)
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return retval;
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fail:
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dev_pm_disable_wake_irq(dev);
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dev_pm_disable_wake_irq_check(dev);
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__update_runtime_status(dev, RPM_ACTIVE);
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dev->power.deferred_resume = false;
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wake_up_all(&dev->power.wait_queue);
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@ -738,12 +738,12 @@ static int rpm_resume(struct device *dev, int rpmflags)
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callback = RPM_GET_CALLBACK(dev, runtime_resume);
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dev_pm_disable_wake_irq(dev);
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dev_pm_disable_wake_irq_check(dev);
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retval = rpm_callback(callback, dev);
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if (retval) {
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__update_runtime_status(dev, RPM_SUSPENDED);
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pm_runtime_cancel_pending(dev);
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dev_pm_enable_wake_irq(dev);
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dev_pm_enable_wake_irq_check(dev, false);
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} else {
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no_callback:
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__update_runtime_status(dev, RPM_ACTIVE);
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@ -110,8 +110,10 @@ void dev_pm_clear_wake_irq(struct device *dev)
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dev->power.wakeirq = NULL;
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spin_unlock_irqrestore(&dev->power.lock, flags);
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if (wirq->dedicated_irq)
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if (wirq->status & WAKE_IRQ_DEDICATED_ALLOCATED) {
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free_irq(wirq->irq, wirq);
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wirq->status &= ~WAKE_IRQ_DEDICATED_MASK;
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}
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kfree(wirq);
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}
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EXPORT_SYMBOL_GPL(dev_pm_clear_wake_irq);
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@ -179,7 +181,6 @@ int dev_pm_set_dedicated_wake_irq(struct device *dev, int irq)
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wirq->dev = dev;
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wirq->irq = irq;
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wirq->dedicated_irq = true;
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irq_set_status_flags(irq, IRQ_NOAUTOEN);
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/*
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@ -195,6 +196,8 @@ int dev_pm_set_dedicated_wake_irq(struct device *dev, int irq)
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if (err)
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goto err_free_irq;
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wirq->status = WAKE_IRQ_DEDICATED_ALLOCATED;
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return err;
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err_free_irq:
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@ -210,9 +213,9 @@ EXPORT_SYMBOL_GPL(dev_pm_set_dedicated_wake_irq);
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* dev_pm_enable_wake_irq - Enable device wake-up interrupt
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* @dev: Device
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*
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* Called from the bus code or the device driver for
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* runtime_suspend() to enable the wake-up interrupt while
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* the device is running.
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* Optionally called from the bus code or the device driver for
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* runtime_resume() to override the PM runtime core managed wake-up
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* interrupt handling to enable the wake-up interrupt.
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*
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* Note that for runtime_suspend()) the wake-up interrupts
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* should be unconditionally enabled unlike for suspend()
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@ -222,7 +225,7 @@ void dev_pm_enable_wake_irq(struct device *dev)
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{
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struct wake_irq *wirq = dev->power.wakeirq;
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if (wirq && wirq->dedicated_irq)
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if (wirq && (wirq->status & WAKE_IRQ_DEDICATED_ALLOCATED))
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enable_irq(wirq->irq);
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}
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EXPORT_SYMBOL_GPL(dev_pm_enable_wake_irq);
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@ -231,19 +234,72 @@ EXPORT_SYMBOL_GPL(dev_pm_enable_wake_irq);
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* dev_pm_disable_wake_irq - Disable device wake-up interrupt
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* @dev: Device
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*
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* Called from the bus code or the device driver for
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* runtime_resume() to disable the wake-up interrupt while
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* the device is running.
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* Optionally called from the bus code or the device driver for
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* runtime_suspend() to override the PM runtime core managed wake-up
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* interrupt handling to disable the wake-up interrupt.
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*/
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void dev_pm_disable_wake_irq(struct device *dev)
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{
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struct wake_irq *wirq = dev->power.wakeirq;
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if (wirq && wirq->dedicated_irq)
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if (wirq && (wirq->status & WAKE_IRQ_DEDICATED_ALLOCATED))
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disable_irq_nosync(wirq->irq);
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}
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EXPORT_SYMBOL_GPL(dev_pm_disable_wake_irq);
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/**
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* dev_pm_enable_wake_irq_check - Checks and enables wake-up interrupt
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* @dev: Device
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* @can_change_status: Can change wake-up interrupt status
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*
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* Enables wakeirq conditionally. We need to enable wake-up interrupt
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* lazily on the first rpm_suspend(). This is needed as the consumer device
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* starts in RPM_SUSPENDED state, and the the first pm_runtime_get() would
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* otherwise try to disable already disabled wakeirq. The wake-up interrupt
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* starts disabled with IRQ_NOAUTOEN set.
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*
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* Should be only called from rpm_suspend() and rpm_resume() path.
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* Caller must hold &dev->power.lock to change wirq->status
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*/
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void dev_pm_enable_wake_irq_check(struct device *dev,
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bool can_change_status)
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{
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struct wake_irq *wirq = dev->power.wakeirq;
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if (!wirq || !((wirq->status & WAKE_IRQ_DEDICATED_MASK)))
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return;
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if (likely(wirq->status & WAKE_IRQ_DEDICATED_MANAGED)) {
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goto enable;
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} else if (can_change_status) {
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wirq->status |= WAKE_IRQ_DEDICATED_MANAGED;
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goto enable;
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}
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return;
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enable:
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enable_irq(wirq->irq);
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}
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/**
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* dev_pm_disable_wake_irq_check - Checks and disables wake-up interrupt
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* @dev: Device
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*
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* Disables wake-up interrupt conditionally based on status.
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* Should be only called from rpm_suspend() and rpm_resume() path.
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*/
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void dev_pm_disable_wake_irq_check(struct device *dev)
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{
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struct wake_irq *wirq = dev->power.wakeirq;
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if (!wirq || !((wirq->status & WAKE_IRQ_DEDICATED_MASK)))
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return;
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if (wirq->status & WAKE_IRQ_DEDICATED_MANAGED)
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disable_irq_nosync(wirq->irq);
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}
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/**
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* dev_pm_arm_wake_irq - Arm device wake-up
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* @wirq: Device wake-up interrupt
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