forked from GitHub/gf-core
in the middle of adapting CheckGrammar
This commit is contained in:
@@ -34,7 +34,7 @@ import GF.Devel.Grammar.Judgements
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import GF.Devel.Grammar.Terms
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import GF.Devel.Grammar.MkJudgements
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import GF.Devel.Grammar.Macros
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import GF.Devel.Grammar.PrGrammar
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import GF.Devel.Grammar.PrGF
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import GF.Devel.Grammar.Lookup
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import GF.Infra.Ident
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@@ -47,8 +47,8 @@ import GF.Infra.Ident
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--import GF.Grammar.LookAbs
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--import GF.Grammar.ReservedWords ----
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--import GF.Grammar.PatternMatch
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--import GF.Grammar.AppPredefined
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import GF.Grammar.PatternMatch (testOvershadow)
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import GF.Grammar.AppPredefined
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--import GF.Grammar.Lockfield (isLockLabel)
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import GF.Data.Operations
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@@ -68,14 +68,14 @@ showCheckModule mos m = do
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checkModule :: GF -> SourceModule -> Check SourceModule
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checkModule gf0 (name,mo) = checkIn ("checking module" +++ prt name) $ do
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let gf = gf0 {gfmodules = Map.insert name mo (gfmodules gf0)}
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checkRestrictedInheritance gf (name, mo)
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let gr = gf0 {gfmodules = Map.insert name mo (gfmodules gf0)}
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---- checkRestrictedInheritance gr (name, mo)
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mo1 <- case mtype mo of
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MTAbstract -> judgementOpModule (checkAbsInfo gr name) mo
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MTResource -> judgementOpModule (checkResInfo gr name) mo
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MTGrammar -> judgementOpModule (checkResInfo gr name) mo
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MTConcrete aname -> do
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checkErr $ topoSortOpers $ allOperDependencies name js
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checkErr $ topoSortOpers $ allOperDependencies name $ mjments mo
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abs <- checkErr $ lookupModule gr aname
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js1 <- checkCompleteGrammar abs mo
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judgementOpModule (checkCncInfo gr name (aname,abs)) js1
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@@ -119,13 +119,13 @@ checkRestrictedInheritance mos (name,mo) = do
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-- | check if a term is typable
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justCheckLTerm :: SourceGrammar -> Term -> Err Term
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justCheckLTerm :: GF -> Term -> Err Term
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justCheckLTerm src t = do
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((t',_),_) <- checkStart (inferLType src t)
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return t'
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checkAbsInfo :: GF -> Ident -> (Ident,JEntry) -> Check (Ident,JEntry)
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checkAbsInfo st m (c,info) = return (c,info) ----
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checkAbsInfo :: GF -> Ident -> Ident -> Judgement -> Check Judgement
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checkAbsInfo st m c info = return info ----
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{-
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checkAbsInfo st m (c,info) = do
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@@ -178,70 +178,62 @@ checkAbsInfo st m (c,info) = do
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_ -> mkApp t [a]
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-}
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checkCompleteGrammar :: SourceAbs -> SourceCnc -> Check (BinTree Ident Info)
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checkCompleteGrammar :: Module -> Module -> Check Module
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checkCompleteGrammar abs cnc = do
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let js = jments cnc
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let fs = tree2list $ jments abs
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foldM checkOne js fs
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let js = mjments cnc
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let fs = Map.assocs $ mjments abs
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js' <- foldM checkOne js fs
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return $ cnc {mjments = js'}
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where
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checkOne js i@(c,info) = case info of
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AbsFun (Yes _) _ -> case lookupIdent c js of
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Ok _ -> return js
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checkOne js i@(c, Left ju) = case jform ju of
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JFun -> case Map.lookup c js of
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Just (Left j) | jform ju == JLin -> return js
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_ -> do
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checkWarn $ "WARNING: no linearization of" +++ prt c
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return js
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AbsCat (Yes _) _ -> case lookupIdent c js of
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Ok (AnyInd _ _) -> return js
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Ok (CncCat (Yes _) _ _) -> return js
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Ok (CncCat _ mt mp) -> do
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JCat -> case Map.lookup c js of
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Just (Left j) | jform ju == JLincat -> return js
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_ -> do ---- TODO: other things to check here
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checkWarn $
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"Warning: no linearization type for" +++ prt c ++
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", inserting default {s : Str}"
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return $ updateTree (c,CncCat (Yes defLinType) mt mp) js
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_ -> do
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checkWarn $
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"Warning: no linearization type for" +++ prt c ++
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", inserting default {s : Str}"
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return $ updateTree (c,CncCat (Yes defLinType) nope nope) js
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return $ Map.insert c (cncCat defLinType) js
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_ -> return js
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-- | General Principle: only Yes-values are checked.
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-- A May-value has always been checked in its origin module.
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checkResInfo :: SourceGrammar -> Ident -> (Ident,Info) -> Check (Ident,Info)
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checkResInfo gr mo (c,info) = do
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checkReservedId c
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case info of
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ResOper pty pde -> chIn "operation" $ do
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(pty', pde') <- case (pty,pde) of
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(Yes ty, Yes de) -> do
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ty' <- check ty typeType >>= comp . fst
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(de',_) <- check de ty'
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return (Yes ty', Yes de')
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(_, Yes de) -> do
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(de',ty') <- infer de
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return (Yes ty', Yes de')
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(_,Nope) -> do
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checkWarn "No definition given to oper"
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return (pty,pde)
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_ -> return (pty, pde) --- other cases are uninteresting
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return (c, ResOper pty' pde')
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checkResInfo :: GF -> Ident -> Ident -> Judgement -> Check Judgement
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checkResInfo gr mo c info = do
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---- checkReservedId c
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case jform info of
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JOper -> chIn "operation" $ case (jtype info, jdef info) of
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(_,Meta _) -> do
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checkWarn "No definition given to oper"
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return info
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(Meta,de) -> do
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(de',ty') <- infer de
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return (resOper ty' de')
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(ty, de) -> do
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ty' <- check ty typeType >>= comp . fst
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(de',_) <- check de ty'
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return (resOper ty' de')
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{- ----
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ResOverload tysts -> chIn "overloading" $ do
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tysts' <- mapM (uncurry $ flip check) tysts
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let tysts2 = [(y,x) | (x,y) <- tysts']
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--- this can only be a partial guarantee, since matching
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--- with value type is only possible if expected type is given
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checkUniq $
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sort [t : map snd xs | (x,_) <- tysts2, Ok (xs,t) <- [typeFormCnc x]]
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sort [t : map snd xs | (x,_) <- tysts2, let (xs,t) = prodForm x]
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return (c,ResOverload tysts2)
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-}
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{- ----
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ResParam (Yes (pcs,_)) -> chIn "parameter type" $ do
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---- mapM ((mapM (computeLType gr . snd)) . snd) pcs
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mapM_ ((mapM_ (checkIfParType gr . snd)) . snd) pcs
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ts <- checkErr $ lookupParamValues gr mo c
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return (c,ResParam (Yes (pcs, Just ts)))
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_ -> return (c,info)
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-}
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_ -> return info
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where
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infer = inferLType gr
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check = checkLType gr
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@@ -256,34 +248,37 @@ checkResInfo gr mo (c,info) = do
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_ -> return ()
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checkCncInfo :: SourceGrammar -> Ident -> (Ident,SourceAbs) ->
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(Ident,Info) -> Check (Ident,Info)
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checkCncInfo gr m (a,abs) (c,info) = do
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checkReservedId c
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case info of
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CncFun _ (Yes trm) mpr -> chIn "linearization of" $ do
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typ <- checkErr $ lookupFunTypeSrc gr a c
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checkCncInfo :: GF -> Ident -> SourceModule ->
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Ident -> Judgement -> Check Judgement
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checkCncInfo gr cnc (a,abs) c info = do
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---- checkReservedId c
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case jform info of
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JFun -> chIn "linearization of" $ do
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typ <- checkErr $ lookupFunType gr a c
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cat0 <- checkErr $ valCat typ
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(cont,val) <- linTypeOfType gr m typ -- creates arg vars
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(trm',_) <- check trm (mkFunType (map snd cont) val) -- erases arg vars
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checkPrintname gr mpr
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(cont,val) <- linTypeOfType gr cnc typ -- creates arg vars
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let lintyp = mkFunType (map snd cont) val
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(trm',_) <- check (jdef info) lintyp -- erases arg vars
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checkPrintname gr (jprintname info)
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cat <- return $ snd cat0
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return (c, CncFun (Just (cat,(cont,val))) (Yes trm') mpr)
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return (info {jdef = trm'})
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---- return (c, CncFun (Just (cat,(cont,val))) (Yes trm') mpr)
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-- cat for cf, typ for pe
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CncCat (Yes typ) mdef mpr -> chIn "linearization type of" $ do
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checkErr $ lookupCatContextSrc gr a c
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typ' <- checkIfLinType gr typ
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JCat (Yes typ) mdef mpr -> chIn "linearization type of" $ do
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checkErr $ lookupCatContext gr a c
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typ' <- checkIfLinType gr (jtype info)
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{- ----
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mdef' <- case mdef of
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Yes def -> do
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(def',_) <- checkLType gr def (mkFunType [typeStr] typ)
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return $ Yes def'
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_ -> return mdef
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checkPrintname gr mpr
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return (c,CncCat (Yes typ') mdef' mpr)
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-}
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checkPrintname gr (jprintname info)
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return (info {jtype = typ'})
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_ -> checkResInfo gr m (c,info)
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_ -> checkResInfo gr cnc c info
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where
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env = gr
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@@ -292,7 +287,8 @@ checkCncInfo gr m (a,abs) (c,info) = do
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check = checkLType gr
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chIn cat = checkIn ("Happened in" +++ cat +++ prt c +++ ":")
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checkIfParType :: SourceGrammar -> Type -> Check ()
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checkIfParType :: GF -> Type -> Check ()
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checkIfParType st typ = checkCond ("Not parameter type" +++ prt typ) (isParType typ)
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where
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isParType ty = True ----
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@@ -308,6 +304,7 @@ checkIfParType st typ = checkCond ("Not parameter type" +++ prt typ) (isParType
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_ -> False
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-}
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{- ----
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checkIfStrType :: SourceGrammar -> Type -> Check ()
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checkIfStrType st typ = case typ of
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Table arg val -> do
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@@ -315,26 +312,17 @@ checkIfStrType st typ = case typ of
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checkIfStrType st val
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_ | typ == typeStr -> return ()
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_ -> prtFail "not a string type" typ
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-}
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checkIfLinType :: SourceGrammar -> Type -> Check Type
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checkIfLinType :: GF -> Type -> Check Type
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checkIfLinType st typ0 = do
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typ <- computeLType st typ0
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case typ of
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RecType r -> do
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let (lins,ihs) = partition (isLinLabel .fst) r
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--- checkErr $ checkUnique $ map fst r
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mapM_ checkInh ihs
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mapM_ checkLin lins
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RecType r -> return ()
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_ -> prtFail "a linearization type must be a record type instead of" typ
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return typ
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where
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checkInh (label,typ) = checkIfParType st typ
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checkLin (label,typ) = return () ---- checkIfStrType st typ
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computeLType :: SourceGrammar -> Type -> Check Type
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computeLType :: GF -> Type -> Check Type
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computeLType gr t = do
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g0 <- checkGetContext
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let g = [(x, Vr x) | (x,_) <- g0]
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@@ -348,15 +336,15 @@ computeLType gr t = do
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Q (IC "Predef") (IC "Error") -> return ty ---- shouldn't be needed
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Q m c | elem c [cPredef,cPredefAbs] -> return ty
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Q m c | elem c [zIdent "Int"] ->
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Q m c | elem c [identC "Int"] ->
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return $ defLinType
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---- let ints k = App (Q (IC "Predef") (IC "Ints")) (EInt k) in
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---- RecType [
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---- (LIdent "last",ints 9),(LIdent "s", typeStr), (LIdent "size",ints 1)]
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Q m c | elem c [zIdent "Float",zIdent "String"] -> return defLinType ----
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Q m c | elem c [identC "Float",identC "String"] -> return defLinType ----
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Q m ident -> checkIn ("module" +++ prt m) $ do
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ty' <- checkErr (lookupResDef gr m ident)
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ty' <- checkErr (lookupOperDef gr m ident)
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if ty' == ty then return ty else comp ty' --- is this necessary to test?
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Vr ident -> checkLookup ident -- never needed to compute!
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@@ -388,41 +376,43 @@ computeLType gr t = do
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let fs' = sortBy (\x y -> compare (fst x) (fst y)) fs
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liftM RecType $ mapPairsM comp fs'
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_ | ty == typeTok -> return typeStr
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_ | isPredefConstant ty -> return ty
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---- _ | ty == typeStr -> return typeStr
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---- _ | isPredefConstant ty -> return ty
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_ -> composOp comp ty
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checkPrintname :: SourceGrammar -> Perh Term -> Check ()
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checkPrintname st (Yes t) = checkLType st t typeStr >> return ()
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checkPrintname :: GF -> Term -> Check ()
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---- checkPrintname st (Yes t) = checkLType st t typeStr >> return ()
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checkPrintname _ _ = return ()
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{- ----
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-- | for grammars obtained otherwise than by parsing ---- update!!
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checkReservedId :: Ident -> Check ()
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checkReservedId x = let c = prt x in
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if isResWord c
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then checkWarn ("Warning: reserved word used as identifier:" +++ c)
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else return ()
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-}
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-- to normalize records and record types
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labelIndex :: Type -> Label -> Int
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labelIndex ty lab = case ty of
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RecType ts -> maybe (error ("label index" +++ prt lab)) id $ lookup lab $ labs ts
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RecType ts -> maybe (error ("label index"+++ prt lab)) id $ lookup lab $ labs ts
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_ -> error $ "label index" +++ prt ty
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where
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labs ts = zip (map fst (sortBy (\ x y -> compare (fst x) (fst y)) ts)) [0..]
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-- the underlying algorithms
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inferLType :: SourceGrammar -> Term -> Check (Term, Type)
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inferLType :: GF -> Term -> Check (Term, Type)
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inferLType gr trm = case trm of
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Q m ident | isPredef m -> termWith trm $ checkErr (typPredefined ident)
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Q m ident -> checks [
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termWith trm $ checkErr (lookupResType gr m ident) >>= comp
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termWith trm $ checkErr (lookupOperType gr m ident) >>= comp
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,
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checkErr (lookupResDef gr m ident) >>= infer
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checkErr (lookupOperDef gr m ident) >>= infer
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,
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{-
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do
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@@ -438,9 +428,9 @@ inferLType gr trm = case trm of
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QC m ident | isPredef m -> termWith trm $ checkErr (typPredefined ident)
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QC m ident -> checks [
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termWith trm $ checkErr (lookupResType gr m ident) >>= comp
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termWith trm $ checkErr (lookupOperType gr m ident) >>= comp
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,
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checkErr (lookupResDef gr m ident) >>= infer
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checkErr (lookupOperDef gr m ident) >>= infer
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,
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prtFail "cannot infer type of canonical constant" trm
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]
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@@ -532,23 +522,20 @@ inferLType gr trm = case trm of
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check2 (flip justCheck typeStr) C s1 s2 typeStr
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Glue s1 s2 ->
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check2 (flip justCheck typeStr) Glue s1 s2 typeStr ---- typeTok
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check2 (flip justCheck typeStr) Glue s1 s2 typeStr
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---- hack from Rename.identRenameTerm, to live with files with naming conflicts 18/6/2007
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Strs (Cn (IC "#conflict") : ts) -> do
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trace ("WARNING: unresolved constant, could be any of" +++ unwords (map prt ts)) (infer $ head ts)
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---- Strs (Cn (IC "#conflict") : ts) -> do
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---- trace ("WARNING: unresolved constant, could be any of" +++ unwords (map prt ts)) (infer $ head ts)
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-- checkWarn ("WARNING: unresolved constant, could be any of" +++ unwords (map prt ts))
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-- infer $ head ts
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Strs ts -> do
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ts' <- mapM (\t -> justCheck t typeStr) ts
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return (Strs ts', typeStrs)
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Alts (t,aa) -> do
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t' <- justCheck t typeStr
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aa' <- flip mapM aa (\ (c,v) -> do
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c' <- justCheck c typeStr
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v' <- justCheck v typeStrs
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v' <- justCheck v typeStr
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return (c',v'))
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return (Alts (t',aa'), typeStr)
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@@ -633,7 +620,7 @@ inferLType gr trm = case trm of
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_ -> False
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inferPatt p = case p of
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PP q c ps | q /= cPredef -> checkErr $ lookupResType gr q c >>= valTypeCnc
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PP q c ps | q /= cPredef -> checkErr $ lookupOperType gr q c >>= snd . prodForm
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PAs _ p -> inferPatt p
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PNeg p -> inferPatt p
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PAlt p q -> checks [inferPatt p, inferPatt q]
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@@ -644,9 +631,9 @@ inferLType gr trm = case trm of
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-- type inference: Nothing, type checking: Just t
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-- the latter permits matching with value type
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getOverload :: SourceGrammar -> Maybe Type -> Term -> Check (Maybe (Term,Type))
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getOverload :: GF -> Maybe Type -> Term -> Check (Maybe (Term,Type))
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getOverload env@gr mt t = case appForm t of
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(f@(Q m c), ts) -> case lookupOverload gr m c of
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(f@(Q m c), ts) -> case (return []) of ---- lookupOverload gr m c of
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Ok typs -> do
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ttys <- mapM infer ts
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v <- matchOverload f typs ttys
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@@ -682,7 +669,7 @@ getOverload env@gr mt t = case appForm t of
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matchVal mt v = elem mt ([Nothing,Just v] ++ unlocked) where
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unlocked = case v of
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RecType fs -> [Just $ RecType $ filter (not . isLockLabel . fst) fs]
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RecType fs -> [Just $ RecType $ fs] ---- filter (not . isLockLabel . fst) fs]
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_ -> []
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---- TODO: accept subtypes
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---- TODO: use a trie
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@@ -698,7 +685,7 @@ getOverload env@gr mt t = case appForm t of
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Prod _ _ _ -> False
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_ -> True
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checkLType :: SourceGrammar -> Term -> Type -> Check (Term, Type)
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checkLType :: GF -> Term -> Type -> Check (Term, Type)
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checkLType env trm typ0 = do
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typ <- comp typ0
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@@ -862,8 +849,8 @@ pattContext :: LTEnv -> Type -> Patt -> Check Context
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pattContext env typ p = case p of
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PV x | not (isWildIdent x) -> return [(x,typ)]
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PP q c ps | q /= cPredef -> do ---- why this /=? AR 6/1/2006
|
||||
t <- checkErr $ lookupResType cnc q c
|
||||
(cont,v) <- checkErr $ typeFormCnc t
|
||||
t <- checkErr $ lookupOperType cnc q c
|
||||
let (cont,v) = prodForm t
|
||||
checkCond ("wrong number of arguments for constructor in" +++ prt p)
|
||||
(length cont == length ps)
|
||||
checkEqLType env typ v (patt2term p)
|
||||
@@ -912,7 +899,7 @@ pattContext env typ p = case p of
|
||||
|
||||
-- auxiliaries
|
||||
|
||||
type LTEnv = SourceGrammar
|
||||
type LTEnv = GF
|
||||
|
||||
termWith :: Term -> Check Type -> Check (Term, Type)
|
||||
termWith t ct = do
|
||||
@@ -1007,7 +994,7 @@ checkIfEqLType env t u trm = do
|
||||
let
|
||||
ls = [l | (l,a) <- rs,
|
||||
not (any (\ (k,b) -> alpha g a b && l == k) ts)]
|
||||
(locks,others) = partition isLockLabel ls
|
||||
(locks,others) = partition (const False) ls ---- isLockLabel ls
|
||||
in case others of
|
||||
_:_ -> Bad $ "missing record fields" +++ unwords (map prt others)
|
||||
_ -> return locks
|
||||
@@ -1019,15 +1006,19 @@ checkIfEqLType env t u trm = do
|
||||
|
||||
_ -> Bad ""
|
||||
|
||||
sTypes = [typeStr, typeTok, typeString]
|
||||
---- to revise
|
||||
allExtendsPlus _ n = [n]
|
||||
|
||||
sTypes = [typeStr, typeString]
|
||||
comp = computeLType env
|
||||
|
||||
-- printing a type with a lock field lock_C as C
|
||||
prtType :: LTEnv -> Type -> String
|
||||
prtType env ty = case ty of
|
||||
RecType fs -> case filter isLockLabel $ map fst fs of
|
||||
[lock] -> (drop 5 $ prt lock) --- ++++ "Full form" +++ prt ty
|
||||
_ -> prtt ty
|
||||
RecType fs -> ---- case filter isLockLabel $ map fst fs of
|
||||
---- [lock] -> (drop 5 $ prt lock) --- ++++ "Full form" +++ prt ty
|
||||
---- _ ->
|
||||
prtt ty
|
||||
Prod x a b -> prtType env a +++ "->" +++ prtType env b
|
||||
_ -> prtt ty
|
||||
where
|
||||
@@ -1036,7 +1027,7 @@ prtType env ty = case ty of
|
||||
|
||||
|
||||
-- | linearization types and defaults
|
||||
linTypeOfType :: SourceGrammar -> Ident -> Type -> Check (Context,Type)
|
||||
linTypeOfType :: GF -> Ident -> Type -> Check (Context,Type)
|
||||
linTypeOfType cnc m typ = do
|
||||
(cont,cat) <- checkErr $ typeSkeleton typ
|
||||
val <- lookLin cat
|
||||
@@ -1057,10 +1048,10 @@ linTypeOfType cnc m typ = do
|
||||
|
||||
-- | dependency check, detecting circularities and returning topo-sorted list
|
||||
|
||||
allOperDependencies :: Ident -> BinTree Ident Info -> [(Ident,[Ident])]
|
||||
allOperDependencies :: Ident -> Map.Map Ident JEntry -> [(Ident,[Ident])]
|
||||
allOperDependencies m = allDependencies (==m)
|
||||
|
||||
allDependencies :: (Ident -> Bool) -> BinTree Ident Info -> [(Ident,[Ident])]
|
||||
allDependencies :: (Ident -> Bool) -> Map.Map Ident JEntry -> [(Ident,[Ident])]
|
||||
allDependencies ism b =
|
||||
[(f, nub (concatMap opty (pts i))) | (f,i) <- tree2list b]
|
||||
where
|
||||
@@ -1070,15 +1061,9 @@ allDependencies ism b =
|
||||
_ -> collectOp opersIn t
|
||||
opty (Yes ty) = opersIn ty
|
||||
opty _ = []
|
||||
pts i = case i of
|
||||
ResOper pty pt -> [pty,pt]
|
||||
ResParam (Yes (ps,_)) -> [Yes t | (_,cont) <- ps, (_,t) <- cont]
|
||||
CncCat pty _ _ -> [pty]
|
||||
CncFun _ pt _ -> [pt] ---- (Maybe (Ident,(Context,Type))
|
||||
AbsFun pty ptr -> [pty] --- ptr is def, which can be mutual
|
||||
AbsCat (Yes co) _ -> [Yes ty | (_,ty) <- co]
|
||||
_ -> []
|
||||
|
||||
pts i = [jtype i, jdef i]
|
||||
---- AbsFun pty ptr -> [pty] --- ptr is def, which can be mutual
|
||||
|
||||
topoSortOpers :: [(Ident,[Ident])] -> Err [Ident]
|
||||
topoSortOpers st = do
|
||||
let eops = topoTest st
|
||||
|
||||
Reference in New Issue
Block a user