lintCoreProg
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@@ -45,8 +45,36 @@ makeLenses ''Gamma
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lintCoreProgR :: (Monad m) => Program Var -> RLPCT m (Program Name)
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lintCoreProgR = undefined
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lint :: Program Var -> Program Name
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lint = undefined
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lintDontCheck :: Program Var -> Program Name
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lintDontCheck = binders %~ view (_MkVar . _1)
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lint :: Program Var -> SysF (Program Name)
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lint p = do
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scs <- traverse (lintScDef g0) $ p ^. programScDefs
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pure $ lintDontCheck p & programScDefs .~ scs
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where
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g0 = mempty & gammaVars .~ typeSigs
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& gammaTyCons .~ p ^. programTyCons
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-- 'p' stores the type signatures as 'HashMap Var Type',
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-- while our typechecking context demands a 'HashMap Name Type'.
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-- This conversion is perfectly safe, as the 'Hashable' instance for
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-- 'Var' hashes exactly the internal 'Name'. i.e.
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-- `hash (MkVar n t) = hash n`.
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typeSigs = p ^. programTypeSigs
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& H.mapKeys (view $ _MkVar . _1)
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lintScDef :: Gamma -> ScDef Var -> SysF (ScDef Name)
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lintScDef g = traverseOf lambdaLifting $ \ (MkVar n t, e) -> do
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e'@(t' :< _) <- lintE g e
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assertUnify t t'
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let e'' = stripVars . stripTypes $ e'
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pure (n, e'')
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stripTypes :: ET -> Expr Var
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stripTypes (_ :< as) = Fix (stripTypes <$> as)
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stripVars :: Expr Var -> Expr Name
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stripVars = binders %~ view (_MkVar . _1)
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type ET = Cofree (ExprF Var) Type
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@@ -150,6 +178,11 @@ lintE g = \case
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| t == t' = Right ()
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| otherwise = Left (SystemFErrorCouldNotMatch t t')
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assertUnify :: Type -> Type -> SysF ()
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assertUnify t t'
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| t == t' = pure ()
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| otherwise = Left (SystemFErrorCouldNotMatch t t')
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allUnify :: [Type] -> Maybe SystemFError
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allUnify [] = Nothing
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allUnify [t] = Nothing
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