Add MonadAff
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src/Effect/Aff/Unlift.purs
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src/Effect/Aff/Unlift.purs
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module Effect.Aff.Unlift where
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import Prelude
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import Control.Monad.Reader (ReaderT(..))
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import Effect.Aff (Aff)
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import Effect.Aff.Class (class MonadAff)
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-- | Monads which allow their actions to be run in `Aff`.
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-- |
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-- | `MonadUnliftAff` captures the opposite notion of `MonadAff` - while
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-- | `MonadAff` allows an `Aff` to be lifted into another monad,
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-- | `MonadUnliftAff` allows a monad other than `Aff` to be run in an
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-- | `Aff` context.
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-- |
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-- | Note that the laws given below require that a monad have no "monadic
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-- | state", which essentially limits instances to `ReaderT` stacks with a
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-- | base of `Aff`.
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-- |
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-- | Instances should satisfy the following laws, which state that
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-- | `unliftAff` is a transformer of monads for any given `u` returned by
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-- | `askUnliftAff`:.
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-- |
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-- | ```purescript
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-- | unliftAff u <<< pure = pure
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-- | unliftAff u (f =<< m) = unliftAff u <<< f =<< unliftAff u m
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-- | ```
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class MonadAff m <= MonadUnliftAff m where
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-- | Run an `Aff` with access to a runner function that is capable of
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-- | running a monadic action `m` in `Aff`.
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withRunInAff :: forall b. ((m ~> Aff) -> Aff b) -> m b
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instance MonadUnliftAff Aff where
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withRunInAff runAction = runAction identity
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instance MonadUnliftAff m => MonadUnliftAff (ReaderT r m) where
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withRunInAff runAction = ReaderT \context ->
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withRunInAff \runMInAff ->
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runAction \(ReaderT reader) ->
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runMInAff $ reader context
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newtype UnliftAff m = UnliftAff (m ~> Aff)
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askUnliftAff :: forall m. MonadUnliftAff m => m (UnliftAff m)
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askUnliftAff = withRunInAff \run -> pure $ UnliftAff run
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askRunInAff :: forall m a. MonadUnliftAff m => m (m a -> Aff a)
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askRunInAff = withRunInAff pure
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withUnliftAff
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:: forall m a. MonadUnliftAff m => (UnliftAff m -> Aff a) -> m a
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withUnliftAff runAction =
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withRunInAff \run -> runAction $ UnliftAff run
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toAff :: forall m a. MonadUnliftAff m => m a -> m (Aff a)
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toAff m = withRunInAff \run -> pure $ run m
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