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semantic/src/Term.hs

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{-# LANGUAGE TypeFamilies, TypeSynonymInstances, FlexibleInstances #-}
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module Term where
import Prologue
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import Data.Functor.Foldable as Foldable
import Data.Functor.Both
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import Data.OrderedMap hiding (size)
import Syntax
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-- | An annotated node (Syntax) in an abstract syntax tree.
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type TermF a annotation = CofreeF (Syntax a) annotation
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type Term a annotation = Cofree (Syntax a) annotation
type instance Base (Cofree f a) = CofreeF f a
instance Functor f => Foldable.Foldable (Cofree f a) where project = runCofree
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instance Functor f => Foldable.Unfoldable (Cofree f a) where embed = cofree
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-- | Zip two terms by combining their annotations into a pair of annotations.
-- | If the structure of the two terms don't match, then Nothing will be returned.
zipTerms :: Term a annotation -> Term a annotation -> Maybe (Term a (Both annotation))
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zipTerms t1 t2 = annotate (zipUnwrap a b)
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where
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(annotation1 :< a, annotation2 :< b) = (runCofree t1, runCofree t2)
annotate = fmap (cofree . (Both (annotation1, annotation2) :<))
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zipUnwrap (Leaf _) (Leaf b') = Just $ Leaf b'
zipUnwrap (Indexed a') (Indexed b') = Just . Indexed . catMaybes $ zipWith zipTerms a' b'
zipUnwrap (Fixed a') (Fixed b') = Just . Fixed . catMaybes $ zipWith zipTerms a' b'
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zipUnwrap (Keyed a') (Keyed b') | keys a' == keys b' = Just . Keyed . fromList . catMaybes $ zipUnwrapMaps a' b' <$> keys a'
zipUnwrap _ _ = Nothing
zipUnwrapMaps a' b' key = (,) key <$> zipTerms (a' ! key) (b' ! key)
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-- | Return the node count of a term.
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termSize :: Term a annotation -> Integer
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termSize = cata size where
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size (_ :< syntax) = 1 + sum syntax