{-# LANGUAGE TemplateHaskell #-}
module Polysemy.Error
(
Error (..)
, throw
, catch
, fromEither
, fromEitherM
, runError
, mapError
, errorToIOFinal
, lowerError
) where
import qualified Control.Exception as X
import Control.Monad
import qualified Control.Monad.Trans.Except as E
import Data.Bifunctor (first)
import Data.Typeable
import Polysemy
import Polysemy.Final
import Polysemy.Internal
import Polysemy.Internal.Union
data Error e m a where
Throw :: e -> Error e m a
Catch :: ∀ e m a. m a -> (e -> m a) -> Error e m a
makeSem ''Error
hush :: Either e a -> Maybe a
hush (Right a) = Just a
hush (Left _) = Nothing
fromEither
:: Member (Error e) r
=> Either e a
-> Sem r a
fromEither (Left e) = throw e
fromEither (Right a) = pure a
fromEitherM
:: forall e m r a
. ( Member (Error e) r
, Member (Embed m) r
)
=> m (Either e a)
-> Sem r a
fromEitherM = fromEither <=< embed
runError
:: Sem (Error e ': r) a
-> Sem r (Either e a)
runError (Sem m) = Sem $ \k -> E.runExceptT $ m $ \u ->
case decomp u of
Left x -> E.ExceptT $ k $
weave (Right ())
(either (pure . Left) runError)
hush
x
Right (Weaving (Throw e) _ _ _ _) -> E.throwE e
Right (Weaving (Catch try handle) s d y _) ->
E.ExceptT $ usingSem k $ do
ma <- runError $ d $ try <$ s
case ma of
Right a -> pure . Right $ y a
Left e -> do
ma' <- runError $ d $ (<$ s) $ handle e
case ma' of
Left e' -> pure $ Left e'
Right a -> pure . Right $ y a
{-# INLINE runError #-}
mapError
:: forall e1 e2 r a
. Member (Error e2) r
=> (e1 -> e2)
-> Sem (Error e1 ': r) a
-> Sem r a
mapError f = interpretH $ \case
Throw e -> throw $ f e
Catch action handler -> do
a <- runT action
h <- bindT handler
mx <- raise $ runError a
case mx of
Right x -> pure x
Left e -> do
istate <- getInitialStateT
mx' <- raise $ runError $ h $ e <$ istate
case mx' of
Right x -> pure x
Left e' -> throw $ f e'
{-# INLINE mapError #-}
newtype WrappedExc e = WrappedExc { unwrapExc :: e }
deriving (Typeable)
instance Typeable e => Show (WrappedExc e) where
show = mappend "WrappedExc: " . show . typeRep
instance (Typeable e) => X.Exception (WrappedExc e)
errorToIOFinal
:: ( Typeable e
, Member (Final IO) r
)
=> Sem (Error e ': r) a
-> Sem r (Either e a)
errorToIOFinal sem = withStrategicToFinal @IO $ do
m' <- runS (runErrorAsExcFinal sem)
s <- getInitialStateS
pure $
either
((<$ s) . Left . unwrapExc)
(fmap Right)
<$> X.try m'
{-# INLINE errorToIOFinal #-}
runErrorAsExcFinal
:: forall e r a
. ( Typeable e
, Member (Final IO) r
)
=> Sem (Error e ': r) a
-> Sem r a
runErrorAsExcFinal = interpretFinal $ \case
Throw e -> pure $ X.throwIO $ WrappedExc e
Catch m h -> do
m' <- runS m
h' <- bindS h
s <- getInitialStateS
pure $ X.catch m' $ \(se :: WrappedExc e) ->
h' (unwrapExc se <$ s)
{-# INLINE runErrorAsExcFinal #-}
lowerError
:: ( Typeable e
, Member (Embed IO) r
)
=> (∀ x. Sem r x -> IO x)
-> Sem (Error e ': r) a
-> Sem r (Either e a)
lowerError lower
= embed
. fmap (first unwrapExc)
. X.try
. (lower .@ runErrorAsExc)
{-# INLINE lowerError #-}
{-# DEPRECATED lowerError "Use 'errorToIOFinal' instead" #-}
runErrorAsExc
:: forall e r a. ( Typeable e
, Member (Embed IO) r
)
=> (∀ x. Sem r x -> IO x)
-> Sem (Error e ': r) a
-> Sem r a
runErrorAsExc lower = interpretH $ \case
Throw e -> embed $ X.throwIO $ WrappedExc e
Catch try handle -> do
is <- getInitialStateT
t <- runT try
h <- bindT handle
let runIt = lower . runErrorAsExc lower
embed $ X.catch (runIt t) $ \(se :: WrappedExc e) ->
runIt $ h $ unwrapExc se <$ is
{-# INLINE runErrorAsExc #-}