2015-04-24 11:45:03 +03:00
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/**
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* Copyright (C) 2014 Typesafe Inc. <http://www.typesafe.com>
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*/
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package akka.stream.testkit
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import scala.language.existentials
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2015-05-29 16:43:02 +02:00
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import akka.actor.{ NoSerializationVerificationNeeded, ActorSystem, DeadLetterSuppression }
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2015-04-24 11:45:03 +03:00
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import akka.stream._
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import akka.stream.impl._
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2015-04-24 11:07:26 +02:00
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import akka.testkit.TestProbe
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2015-04-24 11:45:03 +03:00
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import akka.stream.impl.StreamLayout.Module
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import akka.stream.scaladsl._
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import org.reactivestreams.{ Publisher, Subscriber, Subscription }
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import scala.collection.immutable
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import scala.concurrent.duration._
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/**
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* Provides factory methods for various Publishers.
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*/
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object TestPublisher {
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import StreamTestKit._
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/**
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* Publisher that signals complete to subscribers, after handing a void subscription.
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*/
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def empty[T](): Publisher[T] = EmptyPublisher[T]
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/**
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* Publisher that subscribes the subscriber and completes after the first request.
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*/
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def lazyEmpty[T]: Publisher[T] = new Publisher[T] {
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override def subscribe(subscriber: Subscriber[_ >: T]): Unit =
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subscriber.onSubscribe(CompletedSubscription(subscriber))
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}
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/**
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* Publisher that signals error to subscribers immediately, before handing out subscription.
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*/
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def error[T](cause: Throwable): Publisher[T] = ErrorPublisher(cause, "error").asInstanceOf[Publisher[T]]
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/**
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* Publisher that subscribes the subscriber and signals error after the first request.
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*/
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def lazyError[T](cause: Throwable): Publisher[T] = new Publisher[T] {
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override def subscribe(subscriber: Subscriber[_ >: T]): Unit =
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subscriber.onSubscribe(FailedSubscription(subscriber, cause))
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}
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/**
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* Probe that implements [[org.reactivestreams.Publisher]] interface.
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*/
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def manualProbe[T]()(implicit system: ActorSystem): ManualProbe[T] = new ManualProbe()
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/**
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* Probe that implements [[org.reactivestreams.Publisher]] interface and tracks demand.
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*/
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def probe[T](initialPendingRequests: Long = 0)(implicit system: ActorSystem): Probe[T] = new Probe(initialPendingRequests)
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/**
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* Implementation of [[org.reactivestreams.Publisher]] that allows various assertions.
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* This probe does not track demand. Therefore you need to expect demand before sending
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* elements downstream.
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*/
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class ManualProbe[I] private[TestPublisher] ()(implicit system: ActorSystem) extends Publisher[I] {
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type Self <: ManualProbe[I]
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private val probe: TestProbe = TestProbe()
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private val self = this.asInstanceOf[Self]
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/**
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* Subscribes a given [[org.reactivestreams.Subscriber]] to this probe publisher.
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*/
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def subscribe(subscriber: Subscriber[_ >: I]): Unit = {
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val subscription: PublisherProbeSubscription[I] = new PublisherProbeSubscription[I](subscriber, probe)
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probe.ref ! Subscribe(subscription)
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subscriber.onSubscribe(subscription)
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}
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/**
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* Expect a subscription.
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*/
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def expectSubscription(): PublisherProbeSubscription[I] =
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probe.expectMsgType[Subscribe].subscription.asInstanceOf[PublisherProbeSubscription[I]]
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/**
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* Expect demand from a given subscription.
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*/
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def expectRequest(subscription: Subscription, n: Int): Self = {
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probe.expectMsg(RequestMore(subscription, n))
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self
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}
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/**
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* Expect no messages.
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*/
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def expectNoMsg(): Self = {
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probe.expectNoMsg()
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self
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}
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/**
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* Expect no messages for a given duration.
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*/
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def expectNoMsg(max: FiniteDuration): Self = {
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probe.expectNoMsg(max)
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self
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}
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/**
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* Receive messages for a given duration or until one does not match a given partial function.
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*/
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def receiveWhile[T](max: Duration = Duration.Undefined, idle: Duration = Duration.Inf, messages: Int = Int.MaxValue)(f: PartialFunction[PublisherEvent, T]): immutable.Seq[T] =
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probe.receiveWhile(max, idle, messages)(f.asInstanceOf[PartialFunction[AnyRef, T]])
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def getPublisher: Publisher[I] = this
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}
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/**
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* Single subscription and demand tracking for [[TestPublisher.ManualProbe]].
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*/
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class Probe[T] private[TestPublisher] (initialPendingRequests: Long)(implicit system: ActorSystem) extends ManualProbe[T] {
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type Self = Probe[T]
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private var pendingRequests = initialPendingRequests
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private lazy val subscription = expectSubscription()
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/**
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* Current pending requests.
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*/
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def pending: Long = pendingRequests
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def sendNext(elem: T): Self = {
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if (pendingRequests == 0) pendingRequests = subscription.expectRequest()
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pendingRequests -= 1
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subscription.sendNext(elem)
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this
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}
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def unsafeSendNext(elem: T): Self = {
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subscription.sendNext(elem)
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this
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}
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def sendComplete(): Self = {
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subscription.sendComplete()
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this
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}
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def sendError(cause: Exception): Self = {
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subscription.sendError(cause)
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this
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}
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def expectRequest(): Long = subscription.expectRequest()
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def expectCancellation(): Self = {
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subscription.expectCancellation()
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this
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}
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}
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}
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object TestSubscriber {
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import StreamTestKit._
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/**
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* Probe that implements [[org.reactivestreams.Subscriber]] interface.
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*/
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def manualProbe[T]()(implicit system: ActorSystem): ManualProbe[T] = new ManualProbe()
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def probe[T]()(implicit system: ActorSystem): Probe[T] = new Probe()
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/**
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* Implementation of [[org.reactivestreams.Subscriber]] that allows various assertions.
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*/
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class ManualProbe[I] private[TestSubscriber] ()(implicit system: ActorSystem) extends Subscriber[I] {
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type Self <: ManualProbe[I]
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private val probe = TestProbe()
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private val self = this.asInstanceOf[Self]
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/**
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* Expect and return a Subscription.
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*/
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def expectSubscription(): Subscription = probe.expectMsgType[OnSubscribe].subscription
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/**
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* Expect [[SubscriberEvent]].
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*/
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def expectEvent(event: SubscriberEvent): Self = {
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probe.expectMsg(event)
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self
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}
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/**
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* Expect a data element.
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*/
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def expectNext(element: I): Self = {
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probe.expectMsg(OnNext(element))
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self
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}
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/**
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* Expect multiple data elements.
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*/
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@annotation.varargs def expectNext(e1: I, e2: I, es: I*): Self =
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expectNextN((e1 +: e2 +: es).map(identity)(collection.breakOut))
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@annotation.varargs def expectNextUnordered(e1: I, e2: I, es: I*): Self =
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expectNextUnorderedN((e1 +: e2 +: es).map(identity)(collection.breakOut))
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/**
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* Expect and return a data element.
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*/
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def expectNext(): I = probe.expectMsgType[OnNext[I]].element
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def expectNextN(all: immutable.Seq[I]): Self = {
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all.foreach(e ⇒ probe.expectMsg(OnNext(e)))
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self
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}
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def expectNextUnorderedN(all: immutable.Seq[I]): Self = {
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@annotation.tailrec def expectOneOf(all: immutable.Seq[I]): Unit = all match {
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case Nil ⇒
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case list ⇒
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val next = expectNext()
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assert(all.contains(next), s"expected one of $all, but received $next")
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expectOneOf(all.diff(Seq(next)))
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}
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expectOneOf(all)
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self
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}
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/**
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* Expect completion.
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*/
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def expectComplete(): Self = {
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probe.expectMsg(OnComplete)
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self
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}
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/**
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* Expect given [[Throwable]].
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*/
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def expectError(cause: Throwable): Self = {
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probe.expectMsg(OnError(cause))
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self
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}
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/**
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* Expect and return a [[Throwable]].
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*/
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def expectError(): Throwable = probe.expectMsgType[OnError].cause
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def expectSubscriptionAndError(cause: Throwable): Self = {
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val sub = expectSubscription()
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sub.request(1)
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expectError(cause)
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self
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}
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def expectSubscriptionAndError(): Throwable = {
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val sub = expectSubscription()
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sub.request(1)
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expectError()
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}
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def expectSubscriptionAndComplete(): Self = {
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val sub = expectSubscription()
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sub.request(1)
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expectComplete()
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self
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}
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def expectNextOrError(element: I, cause: Throwable): Either[Throwable, I] = {
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probe.fishForMessage(hint = s"OnNext($element) or ${cause.getClass.getName}") {
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case OnNext(n) ⇒ true
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case OnError(`cause`) ⇒ true
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} match {
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case OnNext(n: I @unchecked) ⇒ Right(n)
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case OnError(err) ⇒ Left(err)
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}
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}
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def expectNextOrComplete(element: I): Self = {
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probe.fishForMessage(hint = s"OnNext($element) or OnComplete") {
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case OnNext(n) ⇒ true
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case OnComplete ⇒ true
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}
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self
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}
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def expectNoMsg(): Self = {
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probe.expectNoMsg()
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self
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}
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def expectNoMsg(max: FiniteDuration): Self = {
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probe.expectNoMsg(max)
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self
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}
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/**
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* Receive messages for a given duration or until one does not match a given partial function.
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*/
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def receiveWhile[T](max: Duration = Duration.Undefined, idle: Duration = Duration.Inf, messages: Int = Int.MaxValue)(f: PartialFunction[SubscriberEvent, T]): immutable.Seq[T] =
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probe.receiveWhile(max, idle, messages)(f.asInstanceOf[PartialFunction[AnyRef, T]])
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def within[T](max: FiniteDuration)(f: ⇒ T): T = probe.within(0.seconds, max)(f)
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def onSubscribe(subscription: Subscription): Unit = probe.ref ! OnSubscribe(subscription)
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def onNext(element: I): Unit = probe.ref ! OnNext(element)
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def onComplete(): Unit = probe.ref ! OnComplete
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def onError(cause: Throwable): Unit = probe.ref ! OnError(cause)
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}
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/**
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* Single subscription tracking for [[ManualProbe]].
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*/
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class Probe[T] private[TestSubscriber] ()(implicit system: ActorSystem) extends ManualProbe[T] {
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override type Self = Probe[T]
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private lazy val subscription = expectSubscription()
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def request(n: Long): Self = {
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subscription.request(n)
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this
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}
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def requestNext(element: T): Self = {
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subscription.request(1)
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expectNext(element)
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this
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}
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def cancel(): Self = {
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subscription.cancel()
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this
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}
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}
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}
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/**
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* INTERNAL API
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*/
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private[testkit] object StreamTestKit {
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import TestPublisher._
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import TestSubscriber._
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2015-05-29 16:43:02 +02:00
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sealed trait PublisherEvent extends DeadLetterSuppression with NoSerializationVerificationNeeded
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2015-04-24 11:45:03 +03:00
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final case class Subscribe(subscription: Subscription) extends PublisherEvent
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final case class CancelSubscription(subscription: Subscription) extends PublisherEvent
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final case class RequestMore(subscription: Subscription, elements: Long) extends PublisherEvent
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2015-05-29 16:43:02 +02:00
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sealed trait SubscriberEvent extends DeadLetterSuppression with NoSerializationVerificationNeeded
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2015-04-24 11:45:03 +03:00
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final case class OnSubscribe(subscription: Subscription) extends SubscriberEvent
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final case class OnNext[I](element: I) extends SubscriberEvent
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final case object OnComplete extends SubscriberEvent
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final case class OnError(cause: Throwable) extends SubscriberEvent
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final case class CompletedSubscription[T](subscriber: Subscriber[T]) extends Subscription {
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override def request(elements: Long): Unit = subscriber.onComplete()
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override def cancel(): Unit = ()
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}
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final case class FailedSubscription[T](subscriber: Subscriber[T], cause: Throwable) extends Subscription {
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override def request(elements: Long): Unit = subscriber.onError(cause)
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override def cancel(): Unit = ()
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}
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final case class PublisherProbeSubscription[I](subscriber: Subscriber[_ >: I], publisherProbe: TestProbe) extends Subscription {
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def request(elements: Long): Unit = publisherProbe.ref ! RequestMore(this, elements)
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def cancel(): Unit = publisherProbe.ref ! CancelSubscription(this)
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def expectRequest(n: Long): Unit = publisherProbe.expectMsg(RequestMore(this, n))
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def expectRequest(): Long = publisherProbe.expectMsgPF() {
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case RequestMore(sub, n) if sub eq this ⇒ n
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}
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def expectCancellation(): Unit = publisherProbe.fishForMessage() {
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case CancelSubscription(sub) if sub eq this ⇒ true
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case RequestMore(sub, _) if sub eq this ⇒ false
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}
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def sendNext(element: I): Unit = subscriber.onNext(element)
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def sendComplete(): Unit = subscriber.onComplete()
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def sendError(cause: Exception): Unit = subscriber.onError(cause)
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}
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final class ProbeSource[T](val attributes: OperationAttributes, shape: SourceShape[T])(implicit system: ActorSystem) extends SourceModule[T, TestPublisher.Probe[T]](shape) {
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override def create(context: MaterializationContext) = {
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val probe = TestPublisher.probe[T]()
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(probe, probe)
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}
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override protected def newInstance(shape: SourceShape[T]): SourceModule[T, TestPublisher.Probe[T]] = new ProbeSource[T](attributes, shape)
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override def withAttributes(attr: OperationAttributes): Module = new ProbeSource[T](attr, amendShape(attr))
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}
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final class ProbeSink[T](val attributes: OperationAttributes, shape: SinkShape[T])(implicit system: ActorSystem) extends SinkModule[T, TestSubscriber.Probe[T]](shape) {
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override def create(context: MaterializationContext) = {
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val probe = TestSubscriber.probe[T]()
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(probe, probe)
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}
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override protected def newInstance(shape: SinkShape[T]): SinkModule[T, TestSubscriber.Probe[T]] = new ProbeSink[T](attributes, shape)
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override def withAttributes(attr: OperationAttributes): Module = new ProbeSink[T](attr, amendShape(attr))
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}
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}
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