{-# LANGUAGE FlexibleContexts #-} {-# LANGUAGE GADTs #-} {-# LANGUAGE NoMonomorphismRestriction #-} {-# LANGUAGE Rank2Types #-} {-# LANGUAGE ScopedTypeVariables #-} {-# LANGUAGE TypeOperators #-} {-# OPTIONS_GHC -fno-warn-missing-signatures #-} module Expr.If.Test where import Test.Tasty import Test.Tasty.HUnit import qualified Control.Arrow as Arrow import qualified Control.Monad as Monad import Data.Proxy (Proxy(..)) import Data.Text (Text) import Data.Type.Equality ((:~:)(Refl)) import Prelude hiding (maybe, not, (&&), Monad(..)) import Language.Symantic.Repr import Language.Symantic.Expr import Language.Symantic.Type import AST.Test -- * Expressions e1 = if_ (bool True) (bool False) (bool True) e2 = if_ (bool True && bool True) (bool False) (bool True) -- * Tests type Ex = Expr_Root ( Expr_Lambda .|. Expr_If .|. Expr_Bool ) ex_from = root_expr_from (Proxy::Proxy Ex) (==>) ast expected = testCase (show ast) $ case ex_from ast of Left err -> Left err @?= Prelude.snd `Arrow.left` expected Right (Exists_Type0_and_Repr ty (Forall_Repr r)) -> case expected of Left (_, err) -> Right ("…"::String) @?= Left err Right (ty_expected::Type_Root_of_Expr Ex h, _::h, _::Text) -> (Monad.>>= (@?= (\(_::Proxy h, err) -> err) `Arrow.left` expected)) $ case ty `type0_eq` ty_expected of Nothing -> Monad.return $ Left $ error_expr (Proxy::Proxy Ex) $ Error_Expr_Type_mismatch ast (Exists_Type0 ty) (Exists_Type0 ty_expected) Just Refl -> do let h = host_from_expr r Monad.return $ Right ( ty , h , text_from_expr r -- , (text_from_expr :: Repr_Text h -> Text) r ) tests :: TestTree tests = testGroup "If" [ AST "if" [ AST "bool" [AST "True" []] , AST "bool" [AST "False" []] , AST "bool" [AST "True" []] ] ==> Right ( type_bool , False , "if True then False else True" ) ]