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155 lines
5.3 KiB
Haskell
155 lines
5.3 KiB
Haskell
----------------------------------------------------------------------
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-- |
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-- Module : Extend
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-- Maintainer : AR
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-- Stability : (stable)
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-- Portability : (portable)
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--
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-- > CVS $Date: 2005/05/30 21:08:14 $
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-- > CVS $Author: aarne $
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-- > CVS $Revision: 1.18 $
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--
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-- AR 14\/5\/2003 -- 11\/11
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-- 4/12/2007 this module is still very very messy... ----
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--
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-- The top-level function 'extendModule'
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-- extends a module symbol table by indirections to the module it extends
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-----------------------------------------------------------------------------
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module GF.Devel.Compile.Extend (
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extendModule
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) where
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import GF.Devel.Grammar.Grammar
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import GF.Devel.Grammar.Construct
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import GF.Devel.Grammar.PrGF
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import GF.Devel.Grammar.Lookup
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import GF.Devel.Grammar.Macros
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import GF.Infra.Ident
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import GF.Data.Operations
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import Data.List (nub)
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import Data.Map
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import Control.Monad
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extendModule :: GF -> SourceModule -> Err SourceModule
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extendModule gf nmo0 = do
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(name,mo) <- rebuildModule gf nmo0
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case mtype mo of
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---- Just to allow inheritance in incomplete concrete (which are not
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---- compiled anyway), extensions are not built for them.
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---- Should be replaced by real control. AR 4/2/2005
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MTConcrete _ | not (isCompleteModule mo) -> return (name,mo)
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_ -> do
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mo' <- foldM (extOne name) mo (mextends mo)
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return (name, mo')
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where
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extOne name mo (n,cond) = do
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mo0 <- lookupModule gf n
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-- test that the module types match
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testErr True ---- (legalExtension mo mo0)
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("illegal extension type to module" +++ prt name)
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-- find out if the old is complete
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let isCompl = isCompleteModule mo0
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-- if incomplete, remove it from extension list --- because??
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let me' = (if isCompl then id else (Prelude.filter ((/=n) . fst)))
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(mextends mo)
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-- build extension depending on whether the old module is complete
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js0 <- extendMod isCompl n (isInherited cond) name (mjments mo0) (mjments mo)
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return $ mo {mextends = me', mjments = js0}
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-- | When extending a complete module: new information is inserted,
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-- and the process is interrupted if unification fails.
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-- If the extended module is incomplete, its judgements are just copied.
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extendMod :: Bool -> Ident -> (Ident -> Bool) -> Ident ->
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Map Ident Judgement -> Map Ident Judgement ->
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Err (Map Ident Judgement)
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extendMod isCompl name cond base old new = foldM try new $ assocs old where
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try t i@(c,_) | not (cond c) = return t
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try t i@(c,_) = errIn ("constant" +++ prt c) $
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tryInsert (extendAnyInfo isCompl name base) indirIf t i
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indirIf = if isCompl then indirInfo name else id
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indirInfo :: Ident -> Judgement -> Judgement
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indirInfo n ju = case jform ju of
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JLink -> ju -- original link is passed
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_ -> linkInherited (isConstructor ju) n
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extendAnyInfo :: Bool -> Ident -> Ident -> Judgement -> Judgement -> Err Judgement
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extendAnyInfo isc n o i j =
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errIn ("building extension for" +++ prt n +++ "in" +++ prt o) $
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unifyJudgement i j
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tryInsert :: Ord a => (b -> b -> Err b) -> (b -> b) ->
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Map a b -> (a,b) -> Err (Map a b)
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tryInsert unif indir tree z@(x, info) = case Data.Map.lookup x tree of
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Just info0 -> do
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info1 <- unif info info0
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return $ insert x info1 tree
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_ -> return $ insert x (indir info) tree
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-- | rebuilding instance + interface, and "with" modules, prior to renaming.
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-- AR 24/10/2003
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rebuildModule :: GF -> SourceModule -> Err SourceModule
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rebuildModule gr mo@(i,mi) = case mtype mi of
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-- copy interface contents to instance
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MTInstance i0 -> do
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m0 <- lookupModule gr i0
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testErr (isInterface m0) ("not an interface:" +++ prt i0)
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js1 <- extendMod False i0 (const True) i (mjments m0) (mjments mi)
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--- to avoid double inclusions, in instance J of I0 = J0 ** ...
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case mextends mi of
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[] -> return $ (i,mi {mjments = js1})
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es -> do
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mes <- mapM (lookupModule gr . fst) es ---- restricted?? 12/2007
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let notInExts c _ = all (notMember c . mjments) mes
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let js2 = filterWithKey notInExts js1
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return $ (i,mi {
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mjments = js2
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})
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-- copy functor contents to instantiation, and also add opens
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_ -> case minstances mi of
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[((ext,incl),ops)] -> do
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let interfs = Prelude.map fst ops
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-- test that all interfaces are instantiated
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let isCompl = Prelude.null [i | (_,i) <- minterfaces mi, notElem i interfs]
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testErr isCompl ("module" +++ prt i +++ "remains incomplete")
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-- look up the functor and build new opens set
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mi0 <- lookupModule gr ext
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let
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ops1 = nub $
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mopens mi -- own opens; N.B. mi0 has been name-resolved already
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++ ops -- instantiating opens
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++ [(n,o) |
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(n,o) <- mopens mi0, notElem o interfs] -- ftor's non-if opens
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++ [(i,i) | i <- Prelude.map snd ops] ---- -- insts w. real names
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-- combine flags; new flags have priority
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let fs1 = union (mflags mi) (mflags mi0)
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-- copy inherited functor judgements
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let js0 = [ci | ci@(c,_) <- assocs (mjments mi0), isInherited incl c]
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let js1 = fromList (assocs (mjments mi) ++ js0)
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return $ (i,mi {
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mflags = fs1,
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mextends = mextends mi, -- extends of instantiation
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mopens = ops1,
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mjments = js1
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})
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_ -> return (i,mi)
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