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184 lines
4.4 KiB
Haskell
184 lines
4.4 KiB
Haskell
module Data.Noun.Poet where
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import Prelude
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import Control.Applicative
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import Control.Monad
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import Data.Noun
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import Data.Noun.Atom
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import GHC.Natural
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import Data.List (intercalate)
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import Data.Typeable (Typeable)
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import Data.Word (Word, Word32, Word64)
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import qualified Control.Monad.Fail as Fail
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-- IResult ---------------------------------------------------------------------
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data IResult a = IError NounPath String | ISuccess a
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deriving (Eq, Show, Typeable, Functor, Foldable, Traversable)
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instance Applicative IResult where
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pure = ISuccess
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(<*>) = ap
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instance Fail.MonadFail IResult where
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fail err = IError [] err
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instance Monad IResult where
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return = pure
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fail = Fail.fail
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ISuccess a >>= k = k a
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IError path err >>= _ = IError path err
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instance MonadPlus IResult where
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mzero = fail "mzero"
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mplus a@(ISuccess _) _ = a
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mplus _ b = b
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instance Alternative IResult where
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empty = mzero
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(<|>) = mplus
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instance Semigroup (IResult a) where
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(<>) = mplus
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instance Monoid (IResult a) where
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mempty = fail "mempty"
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mappend = (<>)
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-- Result ----------------------------------------------------------------------
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data Result a = Error String | Success a
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deriving (Eq, Show, Typeable, Functor, Foldable, Traversable)
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instance Applicative Result where
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pure = Success
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(<*>) = ap
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instance Fail.MonadFail Result where
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fail err = Error err
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instance Monad Result where
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return = pure
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fail = Fail.fail
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Success a >>= k = k a
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Error err >>= _ = Error err
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instance MonadPlus Result where
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mzero = fail "mzero"
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mplus a@(Success _) _ = a
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mplus _ b = b
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instance Alternative Result where
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empty = mzero
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(<|>) = mplus
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instance Semigroup (Result a) where
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(<>) = mplus
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{-# INLINE (<>) #-}
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instance Monoid (Result a) where
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mempty = fail "mempty"
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mappend = (<>)
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-- "Parser" --------------------------------------------------------------------
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type Failure f r = NounPath -> String -> f r
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type Success a f r = a -> f r
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newtype Parser a = Parser {
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runParser :: forall f r. NounPath -> Failure f r -> Success a f r -> f r
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}
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instance Monad Parser where
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m >>= g = Parser $ \path kf ks -> let ks' a = runParser (g a) path kf ks
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in runParser m path kf ks'
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return = pure
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fail = Fail.fail
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instance Fail.MonadFail Parser where
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fail msg = Parser $ \path kf _ks -> kf (reverse path) msg
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instance Functor Parser where
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fmap f m = Parser $ \path kf ks -> let ks' a = ks (f a)
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in runParser m path kf ks'
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apP :: Parser (a -> b) -> Parser a -> Parser b
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apP d e = do
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b <- d
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b <$> e
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instance Applicative Parser where
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pure a = Parser $ \_path _kf ks -> ks a
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(<*>) = apP
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instance Alternative Parser where
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empty = fail "empty"
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(<|>) = mplus
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instance MonadPlus Parser where
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mzero = fail "mzero"
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mplus a b = Parser $ \path kf ks -> let kf' _ _ = runParser b path kf ks
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in runParser a path kf' ks
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instance Semigroup (Parser a) where
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(<>) = mplus
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instance Monoid (Parser a) where
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mempty = fail "mempty"
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mappend = (<>)
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-- Conversion ------------------------------------------------------------------
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class FromNoun a where
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parseNoun :: Noun -> Parser a
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class ToNoun a where
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toNoun :: a -> Noun
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-- Atom Conversion -------------------------------------------------------------
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instance ToNoun Noun where
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toNoun = id
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instance ToNoun Word where
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toNoun = Atom . fromIntegral
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instance ToNoun Word32 where
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toNoun = Atom . fromIntegral
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instance ToNoun Word64 where
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toNoun = Atom . fromIntegral
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instance ToNoun Atom where
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toNoun = Atom
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instance ToNoun Natural where
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toNoun = toNoun . toAtom
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-- Cell Conversion -------------------------------------------------------------
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instance (ToNoun a, ToNoun b) => ToNoun (a, b) where
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toNoun (x, y) = Cell (toNoun x) (toNoun y)
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instance (ToNoun a, ToNoun b, ToNoun c) => ToNoun (a, b, c) where
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toNoun (x, y, z) = Cell (toNoun x)
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$ Cell (toNoun y) (toNoun z)
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instance (ToNoun a, ToNoun b, ToNoun c, ToNoun d) => ToNoun (a, b, c, d) where
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toNoun (x, y, z, a) = Cell (toNoun x)
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$ Cell (toNoun y)
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$ Cell (toNoun z) (toNoun a)
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instance ToNoun a => ToNoun [a] where
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toNoun xs = fromList (toNoun <$> xs)
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