final class CanBlock extends AnyRef
Marker for blocking operations that need to be disallowed on top of JavaScript engines, or other platforms that don't support the blocking of threads.
As sample, lets implement a low-level blocking operation; but kids,
don't do this at home, since this is error prone and you already have
Scala's Await.result
, this sample being shown for pedagogical purposes:
import monix.execution.schedulers.CanBlock import java.util.concurrent.CountDownLatch import scala.concurrent.{ExecutionContext, Future} import scala.util.Try def block[A](fa: Future[A]) (implicit ec: ExecutionContext, permit: CanBlock): Try[A] = { var result = Option.empty[Try[A]] val latch = new CountDownLatch(1) fa.onComplete { r => result = r latch.countDown() } latch.await() result.get }
And then for JavaScript engines (Scala.js) you could describe the same function, with the same signature, but without any implementation, since this operation isn't supported:
def block[A](fa: Future[A]) (implicit ec: ExecutionContext, permit: CanBlock): Try[A] = throw new UnsupportedOperationException("Cannot block threads on top of JavaScript")
Now in usage, when the caller is invoking block
as described, it will
work without issues on top of the JVM, but when compiled with Scala.js
it will trigger a message like this:
[error] Playground.scala:30:8: Blocking operations aren't supported [error] on top of JavaScript, because it cannot block threads! [error] Please use asynchronous API calls. [error] block(Future(1)) [error] ^
- Annotations
- @implicitNotFound("For blocking operations on the JVM, there should be an implicit " +
"available by default, or import monix.execution.schedulers.CanBlock.permit.") - Source
- CanBlock.scala
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This is the API documentation for the Monix library.
Package Overview
monix.execution exposes lower level primitives for dealing with asynchronous execution:
Atomic
types, as alternative tojava.util.concurrent.atomic
monix.catnap exposes pure abstractions built on top of the Cats-Effect type classes:
monix.eval is for dealing with evaluation of results, thus exposing Task and Coeval.
monix.reactive exposes the
Observable
pattern:Observable
implementationsmonix.tail exposes Iterant for purely functional pull based streaming:
Batch
andBatchCursor
, the alternatives to Scala'sIterable
andIterator
respectively that we are using within Iterant's encodingYou can control evaluation with type you choose - be it Task, Coeval, cats.effect.IO or your own as long as you provide correct cats-effect or cats typeclass instance.