package akka.routing import akka.routing._ import akka.config.ConfigurationException import java.util.concurrent.atomic.AtomicInteger import akka.actor.{ ActorRef, Actor } import collection.mutable.LinkedList import akka.routing.Routing.Broadcast import java.util.concurrent.{ CountDownLatch, TimeUnit } import akka.testkit._ object RoutingSpec { class TestActor extends Actor with Serializable { def receive = { case _ ⇒ println("Hello") } } } class RoutingSpec extends AkkaSpec { import akka.routing.RoutingSpec._ "direct router" must { "be started when constructed" in { val actor1 = actorOf[TestActor] val props = RoutedProps().withDirectRouter.withLocalConnections(List(actor1)) val actor = app.actorOf(props, "foo") actor.isShutdown must be(false) } "throw ConfigurationException at construction when no connections" in { try { val props = RoutedProps().withDirectRouter app.actorOf(props, "foo") fail() } catch { case e: ConfigurationException ⇒ } } "send message to connection" in { val doneLatch = new CountDownLatch(1) val counter = new AtomicInteger(0) val connection1 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case _ ⇒ counter.incrementAndGet } }) val props = RoutedProps().withDirectRouter.withLocalConnections(List(connection1)) val routedActor = app.actorOf(props, "foo") routedActor ! "hello" routedActor ! "end" doneLatch.await(5, TimeUnit.SECONDS) must be(true) counter.get must be(1) } "deliver a broadcast message" in { val doneLatch = new CountDownLatch(1) val counter1 = new AtomicInteger val connection1 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter1.addAndGet(msg) } }) val props = RoutedProps().withDirectRouter.withLocalConnections(List(connection1)) val actor = app.actorOf(props, "foo") actor ! Broadcast(1) actor ! "end" doneLatch.await(5, TimeUnit.SECONDS) must be(true) counter1.get must be(1) } } "round robin router" must { "be started when constructed" in { val actor1 = actorOf[TestActor] val props = RoutedProps().withRoundRobinRouter.withLocalConnections(List(actor1)) val actor = app.actorOf(props, "foo") actor.isShutdown must be(false) } "throw ConfigurationException at construction when no connections" in { try { val props = RoutedProps().withRoundRobinRouter app.actorOf(props, "foo") fail() } catch { case e: ConfigurationException ⇒ } } //In this test a bunch of actors are created and each actor has its own counter. //to test round robin, the routed actor receives the following sequence of messages 1 2 3 .. 1 2 3 .. 1 2 3 which it //uses to increment his counter. //So after n iteration, the first actor his counter should be 1*n, the second 2*n etc etc. "deliver messages in a round robin fashion" in { val connectionCount = 10 val iterationCount = 10 val doneLatch = new CountDownLatch(connectionCount) //lets create some connections. var connections = new LinkedList[ActorRef] var counters = new LinkedList[AtomicInteger] for (i ← 0 until connectionCount) { counters = counters :+ new AtomicInteger() val connection = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counters.get(i).get.addAndGet(msg) } }) connections = connections :+ connection } //create the routed actor. val props = RoutedProps().withRoundRobinRouter.withLocalConnections(connections) val actor = app.actorOf(props, "foo") //send messages to the actor. for (i ← 0 until iterationCount) { for (k ← 0 until connectionCount) { actor ! (k + 1) } } actor ! Broadcast("end") //now wait some and do validations. doneLatch.await(5, TimeUnit.SECONDS) must be(true) for (i ← 0 until connectionCount) { val counter = counters.get(i).get counter.get must be((iterationCount * (i + 1))) } } "deliver a broadcast message using the !" in { val doneLatch = new CountDownLatch(2) val counter1 = new AtomicInteger val connection1 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter1.addAndGet(msg) } }) val counter2 = new AtomicInteger val connection2 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter2.addAndGet(msg) } }) val props = RoutedProps().withRoundRobinRouter.withLocalConnections(List(connection1, connection2)) val actor = app.actorOf(props, "foo") actor ! Broadcast(1) actor ! Broadcast("end") doneLatch.await(5, TimeUnit.SECONDS) must be(true) counter1.get must be(1) counter2.get must be(1) } "fail to deliver a broadcast message using the ?" in { val doneLatch = new CountDownLatch(1) val counter1 = new AtomicInteger val connection1 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case _ ⇒ counter1.incrementAndGet() } }) val props = RoutedProps().withRoundRobinRouter.withLocalConnections(List(connection1)) val actor = app.actorOf(props, "foo") try { actor ? Broadcast(1) fail() } catch { case e: RoutingException ⇒ } actor ! "end" doneLatch.await(5, TimeUnit.SECONDS) must be(true) counter1.get must be(0) } } "random router" must { "be started when constructed" in { val actor1 = actorOf[TestActor] val props = RoutedProps().withRandomRouter.withLocalConnections(List(actor1)) val actor = app.actorOf(props, "foo") actor.isShutdown must be(false) } "throw ConfigurationException at construction when no connections" in { try { val props = RoutedProps().withRandomRouter app.actorOf(props, "foo") fail() } catch { case e: ConfigurationException ⇒ } } "deliver messages in a random fashion" ignore { } "deliver a broadcast message" in { val doneLatch = new CountDownLatch(2) val counter1 = new AtomicInteger val connection1 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter1.addAndGet(msg) } }) val counter2 = new AtomicInteger val connection2 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter2.addAndGet(msg) } }) val props = RoutedProps().withRandomRouter.withLocalConnections(List(connection1, connection2)) val actor = app.actorOf(props, "foo") actor ! Broadcast(1) actor ! Broadcast("end") doneLatch.await(5, TimeUnit.SECONDS) must be(true) counter1.get must be(1) counter2.get must be(1) } "fail to deliver a broadcast message using the ?" in { val doneLatch = new CountDownLatch(1) val counter1 = new AtomicInteger val connection1 = actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case _ ⇒ counter1.incrementAndGet() } }) val props = RoutedProps().withRandomRouter.withLocalConnections(List(connection1)) val actor = app.actorOf(props, "foo") try { actor ? Broadcast(1) fail() } catch { case e: RoutingException ⇒ } actor ! "end" doneLatch.await(5, TimeUnit.SECONDS) must be(true) counter1.get must be(0) } } "Scatter-gather router" must { "return response, even if one of the connections has stopped" in { val shutdownLatch = new TestLatch(1) val props = RoutedProps() .withLocalConnections(List(newActor(0, Some(shutdownLatch)), newActor(1, Some(shutdownLatch)))) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") actor ! Broadcast(Stop(Some(0))) shutdownLatch.await (actor ? Broadcast(0)).get.asInstanceOf[Int] must be(1) } "throw an exception, if all the connections have stopped" in { val shutdownLatch = new TestLatch(2) val props = RoutedProps() .withLocalConnections(List(newActor(0, Some(shutdownLatch)), newActor(1, Some(shutdownLatch)))) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") actor ! Broadcast(Stop()) shutdownLatch.await (intercept[RoutingException] { actor ? Broadcast(0) }) must not be (null) } "return the first response from connections, when all of them replied" in { val props = RoutedProps() .withLocalConnections(List(newActor(0), newActor(1))) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") (actor ? Broadcast("Hi!")).get.asInstanceOf[Int] must be(0) } "return the first response from connections, when some of them failed to reply" in { val props = RoutedProps() .withLocalConnections(List(newActor(0), newActor(1))) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") (actor ? Broadcast(0)).get.asInstanceOf[Int] must be(1) } "be started when constructed" in { val props = RoutedProps() .withLocalConnections(List(newActor(0))) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") actor.isShutdown must be(false) } "throw ConfigurationException at construction when no connections" in { val props = RoutedProps() .withLocalConnections(List()) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) try { app.actorOf(props, "foo") fail() } catch { case e: ConfigurationException ⇒ } } "deliver one-way messages in a round robin fashion" in { val connectionCount = 10 val iterationCount = 10 val doneLatch = new TestLatch(connectionCount) var connections = new LinkedList[ActorRef] var counters = new LinkedList[AtomicInteger] for (i ← 0 until connectionCount) { counters = counters :+ new AtomicInteger() val connection = app.actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counters.get(i).get.addAndGet(msg) } }) connections = connections :+ connection } val props = RoutedProps() .withLocalConnections(connections) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") for (i ← 0 until iterationCount) { for (k ← 0 until connectionCount) { actor ! (k + 1) } } actor ! Broadcast("end") doneLatch.await for (i ← 0 until connectionCount) { val counter = counters.get(i).get counter.get must be((iterationCount * (i + 1))) } } "deliver a broadcast message using the !" in { val doneLatch = new TestLatch(2) val counter1 = new AtomicInteger val connection1 = app.actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter1.addAndGet(msg) } }) val counter2 = new AtomicInteger val connection2 = app.actorOf(new Actor { def receive = { case "end" ⇒ doneLatch.countDown() case msg: Int ⇒ counter2.addAndGet(msg) } }) val props = RoutedProps.apply() .withLocalConnections(List(connection1, connection2)) .withRouter(() ⇒ new ScatterGatherFirstCompletedRouter()) val actor = app.actorOf(props, "foo") actor ! Broadcast(1) actor ! Broadcast("end") doneLatch.await counter1.get must be(1) counter2.get must be(1) } case class Stop(id: Option[Int] = None) def newActor(id: Int, shudownLatch: Option[TestLatch] = None) = app.actorOf(new Actor { def receive = { case Stop(None) ⇒ self.stop() case Stop(Some(_id)) if (_id == id) ⇒ self.stop() case _id: Int if (_id == id) ⇒ case _ ⇒ Thread sleep 100 * id; channel.tryTell(id) } override def postStop = { shudownLatch foreach (_.countDown()) } }) } }