Fixed bug in EApp, cleaned a bit, added todo for disallowing mutual recursion
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1 changed files with 87 additions and 129 deletions
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@ -27,22 +27,7 @@ import Grammar.Abs
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import Grammar.Print (printTree)
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import TypeChecker.TypeCheckerIr qualified as T
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-- TODO: Save all substition sets encountered in the program and apply
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-- to all top level functions in the end.
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initCtx = Ctx mempty
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initEnv = Env 0 'a' mempty mempty mempty "" mempty mempty mempty
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run :: Infer a -> Either Error a
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run = run' initEnv initCtx
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run' :: Env -> Ctx -> Infer a -> Either Error a
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run' e c =
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runIdentity
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. runExceptT
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. flip runReaderT c
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. flip evalStateT e
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. runInfer
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-- TODO: Disallow mutual recursion
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-- | Type check a program
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typecheck :: Program -> Either String (T.Program' Type)
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@ -73,29 +58,23 @@ preRun [] = return ()
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preRun (x : xs) = case x of
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DSig (Sig n t) -> do
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collect (collectTVars t)
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gets (M.member (coerce n) . sigs)
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>>= flip
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when
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( uncatchableErr $ Aux.do
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"Duplicate signatures of function"
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duplicateDecl n $ Aux.do
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"Multiple signatures of function"
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quote $ printTree n
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)
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insertSig (coerce n) (Just t) >> preRun xs
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DBind (Bind n _ e) -> do
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binds <- gets declaredBinds
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when
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(coerce n `S.member` binds)
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( uncatchableErr $ Aux.do
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"Duplicate declarations of function"
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duplicateDecl n $ Aux.do
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"Multiple declarations of function"
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quote $ printTree n
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)
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modify (\st -> st{declaredBinds = S.insert (coerce n) st.declaredBinds})
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collect (collectTVars e)
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s <- gets sigs
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case M.lookup (coerce n) s of
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Nothing -> insertSig (coerce n) Nothing >> preRun xs
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Just _ -> preRun xs
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DData d@(Data t _) -> collect (collectTVars t) >> checkData d >> preRun xs
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DData d@(Data t _) -> let collected = collect (collectTVars t) in checkData d collected >> preRun xs
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where
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-- Check if function body / signature has been declared already
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duplicateDecl n msg = gets (M.member (coerce n) . sigs) >>= flip when (uncatchableErr msg)
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checkDef :: [Def] -> Infer [T.Def' Type]
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checkDef [] = return []
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@ -126,10 +105,10 @@ checkBind bind@(Bind name args e) = do
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insertSig (coerce name) (Just lambda_t)
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return (T.Bind (coerce name, lambda_t) [] (e, lambda_t))
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checkData :: Data -> Infer ()
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checkData err@(Data typ injs) = do
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checkData :: (MonadReader Ctx m, Monad m, MonadError Error m) => Data -> m () -> m ()
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checkData err@(Data typ injs) ma = do
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(name, tvars) <- go typ
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dataErr (mapM_ (\i -> checkInj i name tvars) injs) err
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dataErr (mapM_ (\i -> checkInj i name tvars ma) injs) err
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where
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go = \case
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TData name typs
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@ -140,8 +119,8 @@ checkData err@(Data typ injs) = do
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uncatchableErr $
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unwords ["Bad data type definition: ", printTree typ]
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checkInj :: Inj -> UIdent -> [TVar] -> Infer ()
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checkInj (Inj c inj_typ) name tvars
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checkInj :: (MonadError Error m, MonadReader Ctx m, Monad m) => Inj -> UIdent -> [TVar] -> m a -> m a
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checkInj (Inj c inj_typ) name tvars ma
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| Right False <- boundTVars tvars inj_typ =
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catchableErr "Unbound type variables"
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| TData name' typs <- returnType inj_typ
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@ -156,7 +135,7 @@ checkInj (Inj c inj_typ) name tvars
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"with type"
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quote $ printTree t
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"already exist"
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Nothing -> insertInj (coerce c) inj_typ
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Nothing -> insertInj (coerce c) inj_typ ma
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| otherwise =
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uncatchableErr $
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unwords
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@ -246,11 +225,11 @@ algoW = \case
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return (nullSubst, (T.EVar $ coerce i, x))
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Nothing -> do
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sig <- gets sigs
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cb <- gets currentBind
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case M.lookup (coerce i) sig of
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Just (Just t) -> return (nullSubst, (T.EVar $ coerce i, t))
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Just Nothing -> do
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fr <- fresh
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cb <- gets currentBind
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modify (\st -> st{toDecide = S.insert cb st.toDecide, undecidedSigs = M.insert (coerce $ concat [[prefix], i, [delim], coerce cb]) fr st.undecidedSigs})
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return (nullSubst, (T.EVar $ coerce i, fr))
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Nothing ->
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@ -258,7 +237,7 @@ algoW = \case
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"Unbound variable: "
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<> printTree i
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EInj i -> do
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constr <- gets injections
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constr <- asks injections
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case M.lookup (coerce i) constr of
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Just t -> return (nullSubst, (T.EVar $ coerce i, t))
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Nothing ->
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@ -304,6 +283,8 @@ algoW = \case
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err@(EApp e0 e1) -> do
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fr <- fresh
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(s0, (e0', t0)) <- algoW e0
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applySt s0 $ do
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modify (\st -> st{sigs = apply s0 st.sigs})
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(s1, (e1', t1)) <- algoW e1
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s2 <- exprErr (unify (apply s1 t0) (TFun t1 fr)) err
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let t = apply s2 fr
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@ -368,8 +349,38 @@ inferBranch (Branch pat expr) = do
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inferPattern :: Pattern -> Infer (T.Pattern' Type, Type)
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inferPattern = \case
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PLit lit -> let lt = litType lit in return (T.PLit (lit, lt), lt)
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PCatch -> (T.PCatch,) <$> fresh
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PVar x -> do
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fr <- fresh
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let pvar = T.PVar (coerce x, fr)
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return (pvar, fr)
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PEnum p -> do
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t <- asks (M.lookup (coerce p) . injections)
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t <-
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maybeToRightM
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( Error
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( Aux.do
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"Constructor:"
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quote $ printTree p
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"does not exist"
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)
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True
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)
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t
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unless
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(typeLength t == 1)
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( catchableErr $ Aux.do
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"The constructor"
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quote $ printTree p
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" should have "
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show (typeLength t - 1)
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" arguments but has been given 0"
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)
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let (TData _data _ts) = t -- nasty nasty
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frs <- mapM (const fresh) _ts
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return (T.PEnum $ coerce p, TData _data frs)
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PInj constr patterns -> do
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t <- gets (M.lookup (coerce constr) . injections)
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t <- asks (M.lookup (coerce constr) . injections)
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t <-
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maybeToRightM
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( Error
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@ -399,36 +410,6 @@ inferPattern = \case
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( T.PInj (coerce constr) (apply sub (map fst patterns))
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, apply sub ret
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)
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PCatch -> (T.PCatch,) <$> fresh
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PEnum p -> do
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t <- gets (M.lookup (coerce p) . injections)
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t <-
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maybeToRightM
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( Error
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( Aux.do
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"Constructor:"
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quote $ printTree p
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"does not exist"
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)
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True
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)
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t
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unless
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(typeLength t == 1)
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( catchableErr $ Aux.do
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"The constructor"
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quote $ printTree p
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" should have "
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show (typeLength t - 1)
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" arguments but has been given 0"
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)
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let (TData _data _ts) = t -- nasty nasty
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frs <- mapM (const fresh) _ts
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return (T.PEnum $ coerce p, TData _data frs)
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PVar x -> do
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fr <- fresh
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let pvar = T.PVar (coerce x, fr)
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return (pvar, fr)
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-- | Unify two types producing a new substitution
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unify :: Type -> Type -> Infer Subst
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@ -437,7 +418,7 @@ unify t0 t1 =
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(TFun a b, TFun c d) -> do
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s1 <- unify a c
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s2 <- unify (apply s1 b) (apply s1 d)
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return $ s1 `compose` s2
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return $ s2 `compose` s1
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(TVar (MkTVar a), t@(TData _ _)) -> return $ M.singleton (coerce a) t
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(t@(TData _ _), TVar (MkTVar b)) -> return $ M.singleton (coerce b) t
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(TVar (MkTVar a), t) -> occurs (coerce a) t
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@ -605,6 +586,9 @@ instance SubstType (Map T.Ident Type) where
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apply :: Subst -> Map T.Ident Type -> Map T.Ident Type
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apply = M.map . apply
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instance SubstType (Map T.Ident (Maybe Type)) where
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apply s = M.map (fmap $ apply s)
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instance SubstType (T.ExpT' Type) where
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apply s (e, t) = (apply s e, apply s t)
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@ -688,15 +672,18 @@ insertSig :: T.Ident -> Maybe Type -> Infer ()
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insertSig i t = modify (\st -> st{sigs = M.insert i t (sigs st)})
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-- | Insert a constructor into the start with its type
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insertInj :: T.Ident -> Type -> Infer ()
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insertInj :: (Monad m, MonadReader Ctx m) => T.Ident -> Type -> m a -> m a
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insertInj i t =
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modify (\st -> st{injections = M.insert i t (injections st)})
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local (\st -> st{injections = M.insert i t (injections st)})
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applySt :: Subst -> Infer a -> Infer a
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applySt s = local (\st -> st{vars = apply s st.vars})
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{- | Check if an injection (constructor of data type)
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with an equivalent name has been declared already
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-}
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existInj :: T.Ident -> Infer (Maybe Type)
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existInj n = gets (M.lookup n . injections)
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existInj :: (Monad m, MonadReader Ctx m) => T.Ident -> m (Maybe Type)
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existInj n = asks (M.lookup n . injections)
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setCurrentBind :: T.Ident -> Infer ()
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setCurrentBind i = modify (\st -> st{currentBind = i})
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@ -705,11 +692,12 @@ solveUndecidable :: Infer Subst
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solveUndecidable = do
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sigs <- gets sigs
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undecided <- gets undecidedSigs
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let xs = M.toList undecided
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ys <-
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maybeToRightM
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(Error "SIGNATURE MISSING" False)
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(mapM (tupSequence . first (join . flip M.lookup sigs . getOriginal)) xs)
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( mapM (tupSequence . first (join . flip M.lookup sigs . getOriginal)) $
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M.toList undecided
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)
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composeAll <$> mapM (uncurry unify) ys
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tupSequence :: Monad m => (m a, b) -> m (a, b)
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@ -738,48 +726,6 @@ litType (LChar _) = char
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int = TLit "Int"
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char = TLit "Char"
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typeEq :: Type -> Type -> StateT Subst (ExceptT Error Identity) ()
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typeEq (TVar (MkTVar a)) t@(TVar _) = do
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st <- get
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case M.lookup (coerce a) st of
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Nothing -> put $ M.insert (coerce a) t st
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Just t' ->
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unless
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(t == t')
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( catchableErr $ Aux.do
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quote $ printTree t
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"does not match with"
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quote $ printTree t'
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)
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typeEq (TFun l r) (TFun l' r') = typeEq l l' *> typeEq r r'
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typeEq (TAll _ l) (TAll _ r) = typeEq l r
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typeEq t@(TLit a) t'@(TLit b) =
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unless
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(a == b)
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( catchableErr $ Aux.do
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quote $ printTree t
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"does not match with"
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quote $ printTree t'
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)
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typeEq t@(TData nameL tL) t'@(TData nameR tR) = do
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unless
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(nameL == nameR)
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( catchableErr $ Aux.do
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quote $ printTree t
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"does not match with"
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quote $ printTree t'
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)
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zipWithM_ typeEq tL tR
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typeEq t@(TEVar _) t'@(TEVar _) =
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catchableErr $ Aux.do
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quote $ printTree t
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"does not match with"
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quote $ printTree t'
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typeEq t t' = catchableErr $ Aux.do
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quote $ printTree t
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"does not match with"
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quote $ printTree t'
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{- | Catch an error if possible and add the given
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expression as addition to the error message
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-}
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@ -824,7 +770,7 @@ bindErr ma bind =
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{- | Catch an error if possible and add the given
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data as addition to the error message
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-}
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dataErr :: Infer a -> Data -> Infer a
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dataErr :: (MonadError Error m, Monad m) => m a -> Data -> m a
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dataErr ma d =
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catchError
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ma
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@ -850,19 +796,31 @@ unzip4 =
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)
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([], [], [], [])
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newtype Ctx = Ctx {vars :: Map T.Ident Type}
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initCtx = Ctx mempty mempty
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initEnv = Env 0 'a' mempty mempty "" mempty mempty
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run :: Infer a -> Either Error a
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run = run' initEnv initCtx
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run' :: Env -> Ctx -> Infer a -> Either Error a
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run' e c =
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runIdentity
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. runExceptT
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. flip runReaderT c
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. flip evalStateT e
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. runInfer
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data Ctx = Ctx {vars :: Map T.Ident Type, injections :: Map T.Ident Type}
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deriving (Show)
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data Env = Env
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{ count :: Int
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, nextChar :: Char
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, sigs :: Map T.Ident (Maybe Type)
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, injections :: Map T.Ident Type
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, takenTypeVars :: Set T.Ident
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, currentBind :: T.Ident
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, undecidedSigs :: Map T.Ident Type
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, toDecide :: Set T.Ident
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, declaredBinds :: Set T.Ident
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}
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deriving (Show)
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