forked from Minki/linux
percpu-refcount: implement percpu_ref_reinit() and percpu_ref_is_zero()
Now that explicit invocation of percpu_ref_exit() is necessary to free the percpu counter, we can implement percpu_ref_reinit() which reinitializes a released percpu_ref. This can be used implement scalable gating switch which can be drained and then re-opened without worrying about memory allocation failures. percpu_ref_is_zero() is added to be used in a sanity check in percpu_ref_exit(). As this function will be useful for other purposes too, make it a public interface. v2: Use smp_read_barrier_depends() instead of smp_load_acquire(). We only need data dep barrier and smp_load_acquire() is stronger and heavier on some archs. Spotted by Lai Jiangshan. Signed-off-by: Tejun Heo <tj@kernel.org> Cc: Kent Overstreet <kmo@daterainc.com> Cc: Christoph Lameter <cl@linux-foundation.org> Cc: Lai Jiangshan <laijs@cn.fujitsu.com>
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@ -67,6 +67,7 @@ struct percpu_ref {
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int __must_check percpu_ref_init(struct percpu_ref *ref,
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percpu_ref_func_t *release);
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void percpu_ref_reinit(struct percpu_ref *ref);
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void percpu_ref_exit(struct percpu_ref *ref);
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void percpu_ref_kill_and_confirm(struct percpu_ref *ref,
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percpu_ref_func_t *confirm_kill);
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@ -99,6 +100,9 @@ static inline bool __pcpu_ref_alive(struct percpu_ref *ref,
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{
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unsigned long pcpu_ptr = ACCESS_ONCE(ref->pcpu_count_ptr);
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/* paired with smp_store_release() in percpu_ref_reinit() */
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smp_read_barrier_depends();
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if (unlikely(pcpu_ptr & PCPU_REF_DEAD))
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return false;
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@ -206,4 +210,19 @@ static inline void percpu_ref_put(struct percpu_ref *ref)
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rcu_read_unlock_sched();
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}
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/**
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* percpu_ref_is_zero - test whether a percpu refcount reached zero
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* @ref: percpu_ref to test
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*
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* Returns %true if @ref reached zero.
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*/
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static inline bool percpu_ref_is_zero(struct percpu_ref *ref)
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{
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unsigned __percpu *pcpu_count;
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if (__pcpu_ref_alive(ref, &pcpu_count))
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return false;
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return !atomic_read(&ref->count);
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}
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#endif
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@ -60,6 +60,41 @@ int percpu_ref_init(struct percpu_ref *ref, percpu_ref_func_t *release)
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}
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EXPORT_SYMBOL_GPL(percpu_ref_init);
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/**
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* percpu_ref_reinit - re-initialize a percpu refcount
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* @ref: perpcu_ref to re-initialize
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*
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* Re-initialize @ref so that it's in the same state as when it finished
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* percpu_ref_init(). @ref must have been initialized successfully, killed
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* and reached 0 but not exited.
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*
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* Note that percpu_ref_tryget[_live]() are safe to perform on @ref while
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* this function is in progress.
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*/
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void percpu_ref_reinit(struct percpu_ref *ref)
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{
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unsigned __percpu *pcpu_count = pcpu_count_ptr(ref);
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int cpu;
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BUG_ON(!pcpu_count);
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WARN_ON(!percpu_ref_is_zero(ref));
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atomic_set(&ref->count, 1 + PCPU_COUNT_BIAS);
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/*
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* Restore per-cpu operation. smp_store_release() is paired with
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* smp_read_barrier_depends() in __pcpu_ref_alive() and guarantees
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* that the zeroing is visible to all percpu accesses which can see
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* the following PCPU_REF_DEAD clearing.
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*/
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for_each_possible_cpu(cpu)
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*per_cpu_ptr(pcpu_count, cpu) = 0;
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smp_store_release(&ref->pcpu_count_ptr,
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ref->pcpu_count_ptr & ~PCPU_REF_DEAD);
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}
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EXPORT_SYMBOL_GPL(percpu_ref_reinit);
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/**
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* percpu_ref_exit - undo percpu_ref_init()
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* @ref: percpu_ref to exit
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