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final class SafeReferenceOps[T] extends AnyRef

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Instance Constructors

  1. new SafeReferenceOps(value: ⇒ async.Future[T])

Value Members

  1. final def !=(arg0: Any): Boolean
    Definition Classes
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  2. final def ##(): Int
    Definition Classes
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  3. final def ==(arg0: Any): Boolean
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  4. final def asInstanceOf[T0]: T0
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  5. def clone(): AnyRef
    Attributes
    protected[java.lang]
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    @native() @throws( ... )
  6. final def eq(arg0: AnyRef): Boolean
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  7. def equals(arg0: Any): Boolean
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  8. def finalize(): Unit
    Attributes
    protected[java.lang]
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    @throws( classOf[java.lang.Throwable] )
  9. final def getClass(): Class[_]
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    @native()
  10. def hashCode(): Int
    Definition Classes
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    @native()
  11. final def isInstanceOf[T0]: Boolean
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  12. final def ne(arg0: AnyRef): Boolean
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  13. final def notify(): Unit
    Definition Classes
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    Annotations
    @native()
  14. final def notifyAll(): Unit
    Definition Classes
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    @native()
  15. def suspendInIO: async.IO[T]

    Suspend the side-effects of this Future into an IO.

    Suspend the side-effects of this Future into an IO. This is the most important operation when it comes to inter-op between the two effects.

    Usage. N.B. that this only makes sense if the creation of the Future itself is also suspended in the IO.

    @inline def  writeToDB(v: Int, s: String): Future[Long] = ???
      //...
      val io = IO.suspendFuture(writeToDB(42, "string"))
      //no database writes happened yet, since the future did
      //not do its annoying running of side-effects immediately!
    
      //when we want side-effects:
      io.unsafeGetSync()

    This is almost useless unless you are certain that ??? is a pure computation might as well use IO.fromFuturePure(???)

    val f: Future[Int] = Future.apply(???)
    IO.suspendFuture(f)
    Annotations
    @inline()
  16. def suspendInTask: async.Task[T]

    Suspend the side-effects of this Future into a Task.

    Suspend the side-effects of this Future into a Task. This is the most important operation when it comes to inter-op between the two effects.

    Usage. N.B. that this only makes sense if the creation of the Future itself is also suspended in the Task.

    @inline def  writeToDB(v: Int, s: String): Future[Long] = ???
      //...
      val task = Task.suspendFuture(writeToDB(42, "string"))
      //no database writes happened yet, since the future did
      //not do its annoying running of side-effects immediately!
    
      //when we want side-effects:
      task.unsafeGetSync()

    This is almost useless unless you are certain that ??? is a pure computation might as well use Task.fromFuturePure(???)

    val f: Future[Int] = Future.apply(???)
    Task.suspendFuture(f)
    Annotations
    @inline()
  17. final def synchronized[T0](arg0: ⇒ T0): T0
    Definition Classes
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  18. def toString(): String
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  19. final def wait(): Unit
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    @throws( ... )
  20. final def wait(arg0: Long, arg1: Int): Unit
    Definition Classes
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    @throws( ... )
  21. final def wait(arg0: Long): Unit
    Definition Classes
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    @native() @throws( ... )

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