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Founding the newly structured GF2.0 cvs archive.
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130
src/GF/UseGrammar/Information.hs
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130
src/GF/UseGrammar/Information.hs
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module Information where
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import Grammar
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import Ident
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import Modules
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import Option
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import CF
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import PPrCF
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import ShellState
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import PrGrammar
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import Lookup
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import qualified GFC
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import qualified AbsGFC
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import Operations
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import UseIO
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-- information on module, category, function, operation, parameter,... AR 16/9/2003
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-- uses source grammar
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-- the top level function
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showInformation :: Options -> ShellState -> Ident -> IOE ()
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showInformation opts st c = do
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is <- ioeErr $ getInformation opts st c
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mapM_ (putStrLnE . prInformation opts c) is
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-- the data type of different kinds of information
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data Information =
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IModAbs SourceAbs
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| IModRes SourceRes
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| IModCnc SourceCnc
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| IModule SourceAbs ---- to be deprecated
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| ICatAbs Ident Context [Ident]
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| ICatCnc Ident Type [CFRule] Term
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| IFunAbs Ident Type (Maybe Term)
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| IFunCnc Ident Type [CFRule] Term
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| IOper Ident Type Term
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| IParam Ident [Param] [Term]
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| IValue Ident Type
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type CatId = AbsGFC.CIdent
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type FunId = AbsGFC.CIdent
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prInformation :: Options -> Ident -> Information -> String
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prInformation opts c i = unlines $ prt c : case i of
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IModule m -> [
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"module of type" +++ show (mtype m),
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"extends" +++ show (extends m),
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"opens" +++ show (opens m),
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"defines" +++ unwords (map prt (ownConstants (jments m)))
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]
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ICatAbs m co _ -> [
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"category in abstract module" +++ prt m,
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"context" +++ prContext co
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]
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ICatCnc m ty cfs tr -> [
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"category in concrete module" +++ prt m,
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"linearization type" +++ prt ty
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]
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IFunAbs m ty _ -> [
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"function in abstract module" +++ prt m,
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"type" +++ prt ty
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]
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IFunCnc m ty cfs tr -> [
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"function in concrete module" +++ prt m,
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"linearization" +++ prt tr
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--- "linearization type" +++ prt ty
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]
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IOper m ty tr -> [
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"operation in resource module" +++ prt m,
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"type" +++ prt ty,
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"definition" +++ prt tr
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]
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IParam m ty ts -> [
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"parameter type in resource module" +++ prt m,
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"constructors" +++ unwords (map prParam ty),
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"values" +++ unwords (map prt ts)
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]
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IValue m ty -> [
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"parameter constructor in resource module" +++ prt m,
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"type" +++ show ty
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]
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-- also finds out if an identifier is defined in many places
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getInformation :: Options -> ShellState -> Ident -> Err [Information]
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getInformation opts st c = allChecks $ [
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do
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m <- lookupModule src c
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case m of
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ModMod mo -> return $ IModule mo
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_ -> prtBad "not a source module" c
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] ++ map lookInSrc ss ++ map lookInCan cs
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where
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lookInSrc (i,m) = do
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j <- lookupInfo m c
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case j of
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AbsCat (Yes co) _ -> return $ ICatAbs i co [] ---
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AbsFun (Yes ty) _ -> return $ IFunAbs i ty Nothing ---
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CncCat (Yes ty) _ _ -> do
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---- let cat = ident2CFCat i c
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---- rs <- concat [rs | (c,rs) <- cf, ]
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return $ ICatCnc i ty [] ty ---
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CncFun _ (Yes tr) _ -> do
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rs <- return []
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return $ IFunCnc i tr rs tr ---
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ResOper (Yes ty) (Yes tr) -> return $ IOper i ty tr
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ResParam (Yes ps) -> do
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ts <- allParamValues src (QC i c)
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return $ IParam i ps ts
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ResValue (Yes ty) -> return $ IValue i ty ---
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_ -> prtBad "nothing available for" i
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lookInCan (i,m) = do
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Bad "nothing available yet in canonical"
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src = srcModules st
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can = canModules st
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ss = [(i,m) | (i,ModMod m) <- modules src]
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cs = [(i,m) | (i,ModMod m) <- modules can]
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cf = concatMap ruleGroupsOfCF $ map snd $ cfs st
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ownConstants :: BinTree (Ident, Info) -> [Ident]
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ownConstants = map fst . filter isOwn . tree2list where
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isOwn (c,i) = case i of
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AnyInd _ _ -> False
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_ -> True
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