mirror of https://github.com/vacp2p/nim-libp2p.git
Semaphore cancellations (#503)
* add proper cancelation handling * remove cancelled futures explicitly * use fifo to keep proper order * add out of order cancelations test * make count public * use `new` instead of `init` * remove private `queue` from tests * expose count as a readonly prop * use `delete()` to preserve seq order
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@ -451,7 +451,7 @@ proc accept(s: Switch, transport: Transport) {.async.} = # noraises
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## switch accept loop, ran for every transport
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##
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let upgrades = AsyncSemaphore.init(ConcurrentUpgrades)
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let upgrades = newAsyncSemaphore(ConcurrentUpgrades)
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while transport.running:
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var conn: Connection
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try:
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@ -18,11 +18,13 @@ logScope:
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type
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AsyncSemaphore* = ref object of RootObj
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size*: int
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count*: int
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queue*: seq[Future[void]]
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count: int
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queue: seq[Future[void]]
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proc init*(T: type AsyncSemaphore, size: int): T =
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T(size: size, count: size)
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proc newAsyncSemaphore*(size: int): AsyncSemaphore =
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AsyncSemaphore(size: size, count: size)
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proc `count`*(s: AsyncSemaphore): int = s.count
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proc tryAcquire*(s: AsyncSemaphore): bool =
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## Attempts to acquire a resource, if successful
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@ -38,7 +40,7 @@ proc acquire*(s: AsyncSemaphore): Future[void] =
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## Acquire a resource and decrement the resource
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## counter. If no more resources are available,
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## the returned future will not complete until
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## the resource count goes above 0 again.
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## the resource count goes above 0.
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##
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let fut = newFuture[void]("AsyncSemaphore.acquire")
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@ -46,8 +48,17 @@ proc acquire*(s: AsyncSemaphore): Future[void] =
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fut.complete()
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return fut
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proc cancellation(udata: pointer) {.gcsafe.} =
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fut.cancelCallback = nil
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if not fut.finished:
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s.queue.keepItIf( it != fut )
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s.count.inc
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fut.cancelCallback = cancellation
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s.queue.add(fut)
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s.count.dec
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trace "Queued slot", available = s.count, queue = s.queue.len
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return fut
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@ -65,7 +76,8 @@ proc release*(s: AsyncSemaphore) =
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queue = s.queue.len
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if s.queue.len > 0:
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var fut = s.queue.pop()
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var fut = s.queue[0]
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s.queue.delete(0)
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if not fut.finished():
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fut.complete()
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@ -1,5 +1,6 @@
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import random
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import chronos
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import ../libp2p/utils/semaphore
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import ./helpers
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@ -8,7 +9,7 @@ randomize()
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suite "AsyncSemaphore":
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asyncTest "should acquire":
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let sema = AsyncSemaphore.init(3)
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let sema = newAsyncSemaphore(3)
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await sema.acquire()
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await sema.acquire()
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@ -17,7 +18,7 @@ suite "AsyncSemaphore":
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check sema.count == 0
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asyncTest "should release":
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let sema = AsyncSemaphore.init(3)
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let sema = newAsyncSemaphore(3)
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await sema.acquire()
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await sema.acquire()
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@ -30,13 +31,12 @@ suite "AsyncSemaphore":
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check sema.count == 3
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asyncTest "should queue acquire":
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let sema = AsyncSemaphore.init(1)
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let sema = newAsyncSemaphore(1)
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await sema.acquire()
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let fut = sema.acquire()
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check sema.count == -1
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check sema.queue.len == 1
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sema.release()
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sema.release()
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check sema.count == 1
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@ -45,19 +45,19 @@ suite "AsyncSemaphore":
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check fut.finished()
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asyncTest "should keep count == size":
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let sema = AsyncSemaphore.init(1)
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let sema = newAsyncSemaphore(1)
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sema.release()
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sema.release()
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sema.release()
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check sema.count == 1
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asyncTest "should tryAcquire":
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let sema = AsyncSemaphore.init(1)
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let sema = newAsyncSemaphore(1)
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await sema.acquire()
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check sema.tryAcquire() == false
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asyncTest "should tryAcquire and acquire":
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let sema = AsyncSemaphore.init(4)
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let sema = newAsyncSemaphore(4)
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check sema.tryAcquire() == true
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check sema.tryAcquire() == true
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check sema.tryAcquire() == true
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@ -67,8 +67,6 @@ suite "AsyncSemaphore":
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let fut = sema.acquire()
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check fut.finished == false
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check sema.count == -1
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# queue is only used when count is < 0
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check sema.queue.len == 1
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sema.release()
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sema.release()
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@ -78,10 +76,9 @@ suite "AsyncSemaphore":
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check fut.finished == true
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check sema.count == 4
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check sema.queue.len == 0
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asyncTest "should restrict resource access":
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let sema = AsyncSemaphore.init(3)
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let sema = newAsyncSemaphore(3)
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var resource = 0
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proc task() {.async.} =
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@ -101,3 +98,50 @@ suite "AsyncSemaphore":
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tasks.add(task())
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await allFutures(tasks)
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asyncTest "should cancel sequential semaphore slot":
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let sema = newAsyncSemaphore(1)
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await sema.acquire()
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let tmp = sema.acquire()
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check not tmp.finished()
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tmp.cancel()
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sema.release()
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check await sema.acquire().withTimeout(10.millis)
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asyncTest "should handle out of order cancellations":
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let sema = newAsyncSemaphore(1)
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await sema.acquire() # 1st acquire
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let tmp1 = sema.acquire() # 2nd acquire
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check not tmp1.finished()
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let tmp2 = sema.acquire() # 3rd acquire
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check not tmp2.finished()
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let tmp3 = sema.acquire() # 4th acquire
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check not tmp3.finished()
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# up to this point, we've called acquire 4 times
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tmp1.cancel() # 1st release (implicit)
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tmp2.cancel() # 2nd release (implicit)
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check not tmp3.finished() # check that we didn't release the wrong slot
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sema.release() # 3rd release (explicit)
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check tmp3.finished()
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sema.release() # 4th release
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check await sema.acquire().withTimeout(10.millis)
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asyncTest "should properly handle timeouts and cancellations":
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let sema = newAsyncSemaphore(1)
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await sema.acquire()
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check not(await sema.acquire().withTimeout(1.millis)) # should not acquire but cancel
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sema.release()
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check await sema.acquire().withTimeout(10.millis)
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