pekko/akka-docs/scala/code/akka/docs/dispatcher/DispatcherDocSpec.scala

194 lines
5.8 KiB
Scala

/**
* Copyright (C) 2009-2012 Typesafe Inc. <http://www.typesafe.com>
*/
package akka.docs.dispatcher
import org.scalatest.{ BeforeAndAfterAll, WordSpec }
import org.scalatest.matchers.MustMatchers
import akka.testkit.AkkaSpec
import akka.actor.Props
import akka.actor.Actor
import akka.event.Logging
import akka.event.LoggingAdapter
import akka.util.duration._
import akka.actor.PoisonPill
import akka.dispatch.MessageDispatcherConfigurator
import akka.dispatch.MessageDispatcher
import akka.dispatch.DispatcherPrerequisites
object DispatcherDocSpec {
val config = """
//#my-dispatcher-config
my-dispatcher {
# Dispatcher is the name of the event-based dispatcher
type = Dispatcher
# What kind of ExecutionService to use
executor = "fork-join-executor"
# Configuration for the fork join pool
fork-join-executor {
# Min number of threads to cap factor-based parallelism number to
parallelism-min = 2
# Parallelism (threads) ... ceil(available processors * factor)
parallelism-factor = 2.0
# Max number of threads to cap factor-based parallelism number to
parallelism-max = 10
}
# Throughput defines the number of messages that are processed in a batch before the
# thread is returned to the pool. Set to 1 for as fair as possible.
throughput = 100
}
//#my-dispatcher-config
//#my-thread-pool-dispatcher-config
my-thread-pool-dispatcher {
# Dispatcher is the name of the event-based dispatcher
type = Dispatcher
# What kind of ExecutionService to use
executor = "thread-pool-executor"
# Configuration for the thread pool
thread-pool-executor {
# minimum number of threads to cap factor-based core number to
core-pool-size-min = 2
# No of core threads ... ceil(available processors * factor)
core-pool-size-factor = 2.0
# maximum number of threads to cap factor-based number to
core-pool-size-max = 10
}
# Throughput defines the number of messages that are processed in a batch before the
# thread is returned to the pool. Set to 1 for as fair as possible.
throughput = 100
}
//#my-thread-pool-dispatcher-config
//#my-pinned-dispatcher-config
my-pinned-dispatcher {
executor = "thread-pool-executor"
type = PinnedDispatcher
}
//#my-pinned-dispatcher-config
//#my-bounded-config
my-dispatcher-bounded-queue {
type = Dispatcher
executor = "thread-pool-executor"
thread-pool-executor {
core-pool-size-factor = 8.0
max-pool-size-factor = 16.0
}
# Specifies the bounded capacity of the mailbox queue
mailbox-capacity = 100
throughput = 3
}
//#my-bounded-config
//#my-balancing-config
my-balancing-dispatcher {
type = BalancingDispatcher
executor = "thread-pool-executor"
thread-pool-executor {
core-pool-size-factor = 8.0
max-pool-size-factor = 16.0
}
}
//#my-balancing-config
//#prio-dispatcher-config
prio-dispatcher {
mailbox-type = "akka.docs.dispatcher.DispatcherDocSpec$PrioMailbox"
}
//#prio-dispatcher-config
//#prio-dispatcher-config-java
prio-dispatcher-java {
mailbox-type = "akka.docs.dispatcher.DispatcherDocTestBase$PrioMailbox"
}
//#prio-dispatcher-config-java
"""
//#prio-mailbox
import akka.dispatch.PriorityGenerator
import akka.dispatch.UnboundedPriorityMailbox
import akka.dispatch.MailboxType
import akka.actor.ActorContext
import com.typesafe.config.Config
// We create a new Priority dispatcher and seed it with the priority generator
class PrioMailbox(config: Config) extends UnboundedPriorityMailbox(
PriorityGenerator { // Create a new PriorityGenerator, lower prio means more important
case 'highpriority 0 // 'highpriority messages should be treated first if possible
case 'lowpriority 100 // 'lowpriority messages should be treated last if possible
case PoisonPill 1000 // PoisonPill when no other left
case otherwise 50 // We default to 50
})
//#prio-mailbox
class MyActor extends Actor {
def receive = {
case x
}
}
}
class DispatcherDocSpec extends AkkaSpec(DispatcherDocSpec.config) {
import DispatcherDocSpec.MyActor
"defining dispatcher" in {
//#defining-dispatcher
import akka.actor.Props
val myActor1 = system.actorOf(Props[MyActor].withDispatcher("my-dispatcher"), name = "myactor1")
val myActor2 = system.actorOf(Props[MyActor].withDispatcher("my-dispatcher"), name = "myactor2")
//#defining-dispatcher
}
"defining dispatcher with bounded queue" in {
val dispatcher = system.dispatchers.lookup("my-dispatcher-bounded-queue")
}
"defining pinned dispatcher" in {
//#defining-pinned-dispatcher
val myActor = system.actorOf(Props[MyActor].withDispatcher("my-dispatcher"), name = "myactor")
//#defining-pinned-dispatcher
}
"defining priority dispatcher" in {
//#prio-dispatcher
val a = system.actorOf( // We create a new Actor that just prints out what it processes
Props(new Actor {
val log: LoggingAdapter = Logging(context.system, this)
self ! 'lowpriority
self ! 'lowpriority
self ! 'highpriority
self ! 'pigdog
self ! 'pigdog2
self ! 'pigdog3
self ! 'highpriority
self ! PoisonPill
def receive = {
case x log.info(x.toString)
}
}).withDispatcher("prio-dispatcher"))
/*
Logs:
'highpriority
'highpriority
'pigdog
'pigdog2
'pigdog3
'lowpriority
'lowpriority
*/
//#prio-dispatcher
awaitCond(a.isTerminated, 5 seconds)
}
"defining balancing dispatcher" in {
val dispatcher = system.dispatchers.lookup("my-balancing-dispatcher")
}
}