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semantic/test/InterpreterSpec.hs

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{-# LANGUAGE DataKinds #-}
module InterpreterSpec where
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import Category
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import Control.Monad.Free (wrap)
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import Data.Functor.Both
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import Data.Functor.Foldable hiding (Nil)
import Data.Functor.Listable
import Data.Record
import Diff
import Interpreter
import Patch
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import Syntax
import Term
import Test.Hspec (Spec, describe, it, parallel)
import Test.Hspec.Expectations.Pretty
import Test.Hspec.LeanCheck
spec :: Spec
spec = parallel $ do
describe "interpret" $ do
it "returns a replacement when comparing two unicode equivalent terms" $
let termA = cofree $ (StringLiteral :. Nil) :< Leaf "t\776"
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termB = cofree $ (StringLiteral :. Nil) :< Leaf "\7831" in
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diffTerms (both termA termB) `shouldBe` replacing termA termB
prop "produces correct diffs" $
\ a b -> let diff = diffTerms (unListableF <$> both a b :: Both (SyntaxTerm '[Category])) in
(beforeTerm diff, afterTerm diff) `shouldBe` (Just (unListableF a), Just (unListableF b))
prop "constructs zero-cost diffs of equal terms" $
\ a -> let term = (unListableF a :: SyntaxTerm '[Category])
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diff = diffTerms (pure term) in
diffCost diff `shouldBe` 0
it "produces unbiased insertions within branches" $
let term s = cofree ((StringLiteral :. Nil) :< Indexed [ cofree ((StringLiteral :. Nil) :< Leaf s) ]) :: SyntaxTerm '[Category]
root = cofree . ((Program :. Nil) :<) . Indexed in
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diffTerms (both (root [ term "b" ]) (root [ term "a", term "b" ])) `shouldBe` wrap (pure (Program :. Nil) :< Indexed [ inserting (term "a"), cata wrap (fmap pure (term "b")) ])