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88 lines
3.0 KiB
Haskell
88 lines
3.0 KiB
Haskell
{-# LANGUAGE UndecidableInstances #-}
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module Prologue
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( module X
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, eitherM
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, foldMapA
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, maybeM
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, maybeLast
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, fromMaybeLast
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) where
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import Debug.Trace as X (traceShowM, traceM)
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import Control.DeepSeq as X
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import Data.Bifunctor.Join as X
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import Data.Bits as X
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import Data.ByteString as X (ByteString)
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import Data.Coerce as X
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import Data.Int as X (Int8, Int16, Int32, Int64)
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import Data.Functor.Both as X (Both (Both), runBothWith)
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import Data.Either as X (fromLeft, fromRight)
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import Data.IntMap as X (IntMap)
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import Data.IntSet as X (IntSet)
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import Data.Ix as X (Ix (..))
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import Data.List.NonEmpty as X (NonEmpty (..), nonEmpty, some1)
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import Data.Map as X (Map)
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import Data.Maybe as X
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import Data.Monoid (Alt (..))
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import Data.Sequence as X (Seq)
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import Data.Semilattice.Lower as X (Lower(..))
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import Data.Set as X (Set)
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import Data.Sum as X (Sum, Element, Elements, (:<), (:<:), Apply (..), inject)
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import Data.Text as X (Text)
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import Data.These as X
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import Data.Word as X (Word8, Word16, Word32, Word64)
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import Control.Exception as X hiding (Handler (..), assert, evaluate, throw, throwIO, throwTo)
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-- Typeclasses
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import Control.Applicative as X
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import Control.Arrow as X ((&&&), (***))
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import Control.Monad as X hiding (fail, return)
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import Control.Monad.Fail as X (MonadFail (..))
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import Control.Monad.IO.Class as X (MonadIO (..))
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import Data.Algebra as X
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import Data.Bifoldable as X
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import Data.Bifunctor as X (Bifunctor (..))
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import Data.Bitraversable as X
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import Data.Foldable as X hiding (product, sum)
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import Data.Function as X (fix, on, (&))
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import Data.Functor as X (void, ($>))
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import Data.Functor.Classes as X
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import Data.Functor.Classes.Generic as X
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import Data.Functor.Foldable as X (Base, Corecursive (..), Recursive (..))
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import Data.Hashable as X (Hashable, hash, hashUsing, hashWithSalt)
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import Data.Hashable.Lifted as X (Hashable1(..), hashWithSalt1)
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import Data.Monoid as X (First (..), Last (..), Monoid (..))
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import Data.Monoid.Generic as X
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import Data.Profunctor.Unsafe
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import Data.Proxy as X (Proxy (..))
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import Data.Semigroup as X (Semigroup (..))
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import Data.Traversable as X
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import Data.Typeable as X (Typeable)
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-- Generics
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import GHC.Generics as X (Generic, Generic1)
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import GHC.Stack as X
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-- | Fold a collection by mapping each element onto an 'Alternative' action.
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foldMapA :: (Alternative m, Foldable t) => (b -> m a) -> t b -> m a
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foldMapA f = getAlt #. foldMap (Alt #. f)
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{-# INLINE foldMapA #-}
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maybeLast :: Foldable t => b -> (a -> b) -> t a -> b
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maybeLast b f = maybe b f . getLast . foldMap (Last . Just)
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fromMaybeLast :: Foldable t => a -> t a -> a
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fromMaybeLast b = fromMaybe b . getLast . foldMap (Last . Just)
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-- | Extract the 'Just' of a 'Maybe' in an 'Applicative' context or, given 'Nothing', run the provided action.
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maybeM :: Applicative f => f a -> Maybe a -> f a
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maybeM f = maybe f pure
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{-# INLINE maybeM #-}
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-- Promote a function to either-applicatives.
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eitherM :: Applicative f => (a -> f b) -> Either a b -> f b
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eitherM f = either f pure
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{-# INLINE eitherM #-}
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