mirror of
https://github.com/github/semantic.git
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120 lines
4.1 KiB
Haskell
120 lines
4.1 KiB
Haskell
{-# LANGUAGE OverloadedStrings, TypeApplications, TypeOperators #-}
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module Main (main) where
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import qualified Text.Trifecta as Trifecta
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import Hedgehog hiding (Var)
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import Test.Tasty
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import Test.Tasty.Hedgehog
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import Test.Tasty.HUnit
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import Analysis.File
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import Core.Core
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import Core.Pretty
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import Core.Parser as Parse
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import qualified Core.Eval as Eval
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import Core.Name
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import qualified Generators as Gen
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import Source.Span
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import Syntax.Term
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-- * Helpers
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true, false :: Term Core Name
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true = bool True
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false = bool False
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parseEither :: Trifecta.Parser a -> String -> Either String a
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parseEither p = Trifecta.foldResult (Left . show . Trifecta._errDoc) Right . Trifecta.parseString (p <* Trifecta.eof) mempty
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-- * Parser roundtripping properties. Note that parsing and prettyprinting is generally
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-- not a roundtrip, because the parser inserts 'Ann' nodes itself.
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prop_roundtrips :: Gen (Term Core Name) -> Property
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prop_roundtrips gen = property $ do
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input <- forAll gen
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tripping input showCore (parseEither (Parse.core <* Trifecta.eof))
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parserProps :: TestTree
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parserProps = testGroup "Parsing: roundtripping"
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[ testProperty "literals" $ prop_roundtrips Gen.literal
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, testProperty "if/then/else" . prop_roundtrips . Gen.ifthenelse $ Gen.variable
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, testProperty "lambda" . prop_roundtrips $ Gen.lambda Gen.literal
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, testProperty "function application" . prop_roundtrips $ Gen.apply Gen.variable
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, testProperty "expressions" . prop_roundtrips $ Gen.expr
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]
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-- * Parser specs
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parsesInto :: String -> Term Core Name -> Assertion
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parsesInto str res = case parseEither Parse.core str of
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Right x -> x @?= res
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Left m -> assertFailure m
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assert_booleans_parse :: Assertion
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assert_booleans_parse = do
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parseEither Parse.core "#true" @?= Right true
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parseEither Parse.core "#false" @?= Right false
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a, f, g, h :: Term Core Name
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(a, f, g, h) = (pure "a", pure "f", pure "g", pure "h")
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assert_ifthen_parse :: Assertion
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assert_ifthen_parse = "if #true then #true else #false" `parsesInto` (if' true true false)
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assert_application_parse :: Assertion
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assert_application_parse = "f g" `parsesInto` (f $$ g)
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assert_application_left_associative :: Assertion
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assert_application_left_associative = "f g h" `parsesInto` (f $$ g $$ h)
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assert_push_left_associative :: Assertion
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assert_push_left_associative = "f.g.h" `parsesInto` (f ... "g" ... "h")
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assert_ascii_lambda_parse :: Assertion
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assert_ascii_lambda_parse = "\\a -> a" `parsesInto` lam (named' "a") a
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assert_unicode_lambda_parse :: Assertion
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assert_unicode_lambda_parse = "λa → a" `parsesInto` lam (named' "a") a
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assert_quoted_name_parse :: Assertion
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assert_quoted_name_parse = "#{(NilClass)}" `parsesInto` pure "(NilClass)"
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parserSpecs :: TestTree
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parserSpecs = testGroup "Parsing: simple specs"
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[ testCase "true/false" assert_booleans_parse
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, testCase "if/then/else" assert_ifthen_parse
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, testCase "function application" assert_application_parse
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, testCase "application is left-associative" assert_application_left_associative
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, testCase "dotted push is left-associative" assert_push_left_associative
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, testCase "lambda with ASCII syntax" assert_ascii_lambda_parse
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, testCase "lambda with unicode syntax" assert_unicode_lambda_parse
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, testCase "quoted names" assert_quoted_name_parse
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]
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assert_roundtrips :: File (Term Core Name) -> Assertion
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assert_roundtrips (File _ _ core) = case parseEither Parse.core (showCore core) of
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Right v -> v @?= core
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Left e -> assertFailure e
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parserExamples :: TestTree
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parserExamples = testGroup "Parsing: Eval.hs examples"
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[ testCase "prog1" (assert_roundtrips Eval.prog1)
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, testCase "prog2" (assert_roundtrips Eval.prog2)
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, testCase "prog3" (assert_roundtrips Eval.prog3)
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, testCase "prog4" (assert_roundtrips Eval.prog4)
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, testCase "prog6.1" (assert_roundtrips (head Eval.prog6))
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, testCase "prog6.2" (assert_roundtrips (last Eval.prog6))
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, testCase "ruby" (assert_roundtrips (stripAnnotations @Span <$> Eval.ruby))
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]
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tests :: TestTree
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tests = testGroup "semantic-core"
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[ parserSpecs
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, parserExamples
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, parserProps
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]
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main :: IO ()
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main = defaultMain tests
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