tools/pas2c.hs
author nemo
Mon, 06 Feb 2012 20:04:32 -0500
changeset 6645 9ff40cf44827
parent 6635 c2fa29fe2a58
child 6649 7f78e8a6db69
permissions -rw-r--r--
Fixes slot sprite and ammo sprites overlapping left side border. There is still the issue that boxes should be 32px between borders, but right now they are 33px on all but the first row (since the outside border overlaps it by 1px) causing the slot sprite to have 2px of border on the left and 1px of border on the right.
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module Pas2C where
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import Text.PrettyPrint.HughesPJ
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import Data.Maybe
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import Data.Char
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import Text.Parsec.Prim hiding (State)
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import Control.Monad.State
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import System.IO
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import System.Directory
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import Control.Monad.IO.Class
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import PascalPreprocessor
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import Control.Exception
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import System.IO.Error
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import qualified Data.Map as Map
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import Data.List (find)
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import PascalParser
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import PascalUnitSyntaxTree
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type Record = (String, (String, BaseType))
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data RenderState = RenderState 
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    {
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        currentScope :: [Record],
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        lastType :: BaseType,
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        namespaces :: Map.Map String [Record]
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    }
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pas2C :: String -> IO ()
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pas2C fn = do
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    setCurrentDirectory "../hedgewars/"
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    s <- flip execStateT initState $ f fn
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    renderCFiles s
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    where
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    printLn = liftIO . hPutStrLn stderr
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    print = liftIO . hPutStr stderr
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    initState = Map.empty
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    f :: String -> StateT (Map.Map String PascalUnit) IO ()
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    f fileName = do
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        processed <- gets $ Map.member fileName
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        unless processed $ do
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            print ("Preprocessing '" ++ fileName ++ ".pas'... ")
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            fc' <- liftIO 
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                $ tryJust (guard . isDoesNotExistError) 
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                $ preprocess (fileName ++ ".pas")
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            case fc' of
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                (Left a) -> do
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                    modify (Map.insert fileName (System []))
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                    printLn "doesn't exist"
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                (Right fc) -> do
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                    print "ok, parsing... "
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                    let ptree = parse pascalUnit fileName fc
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                    case ptree of
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                         (Left a) -> do
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                            liftIO $ writeFile "preprocess.out" fc
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                            printLn $ show a ++ "\nsee preprocess.out for preprocessed source"
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                            fail "stop"
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                         (Right a) -> do
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                            printLn "ok"
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                            modify (Map.insert fileName a)
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                            mapM_ f (usesFiles a)
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renderCFiles :: Map.Map String PascalUnit -> IO ()
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renderCFiles units = do
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    let u = Map.toList units
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    let nss = Map.map (toNamespace nss) units
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    mapM_ (toCFiles nss) u
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    where
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    toNamespace :: Map.Map String [Record] -> PascalUnit -> [Record]
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    toNamespace nss (System tvs) = 
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        currentScope $ execState (mapM_ (tvar2C True) tvs) (RenderState [] BTUnknown nss)
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    toNamespace _ (Program {}) = []
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    toNamespace nss (Unit _ interface _ _ _) = 
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        currentScope $ execState (interface2C interface) (RenderState [] BTUnknown nss)
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toCFiles :: Map.Map String [Record] -> (String, PascalUnit) -> IO ()
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toCFiles _ (_, System _) = return ()
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toCFiles ns p@(fn, pu) = do
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    hPutStrLn stdout $ show $ Map.lookup "pas2cSystem" ns
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    hPutStrLn stderr $ "Rendering '" ++ fn ++ "'..."
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    toCFiles' p
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    where
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    toCFiles' (fn, p@(Program {})) = writeFile (fn ++ ".c") $ (render2C initialState . pascal2C) p
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    toCFiles' (fn, (Unit _ interface implementation _ _)) = do
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        let (a, s) = runState (interface2C interface) initialState
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        writeFile (fn ++ ".h") $ "#pragma once\n" ++ (render a)
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        writeFile (fn ++ ".c") $ (render2C s . implementation2C) implementation
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    initialState = RenderState [] BTUnknown ns
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    render2C :: RenderState -> State RenderState Doc -> String
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    render2C a = render . flip evalState a
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usesFiles :: PascalUnit -> [String]
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usesFiles (Program _ (Implementation uses _) _) = "pas2cSystem" : uses2List uses
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usesFiles (Unit _ (Interface uses1 _) (Implementation uses2 _) _ _) = "pas2cSystem" : uses2List uses1 ++ uses2List uses2
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usesFiles (System {}) = []
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pascal2C :: PascalUnit -> State RenderState Doc
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pascal2C (Unit _ interface implementation init fin) =
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    liftM2 ($+$) (interface2C interface) (implementation2C implementation)
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pascal2C (Program _ implementation mainFunction) = do
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    impl <- implementation2C implementation
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    main <- tvar2C True 
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        (FunctionDeclaration (Identifier "main" BTInt) (SimpleType $ Identifier "int" BTInt) [] (Just (TypesAndVars [], mainFunction)))
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    return $ impl $+$ main
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interface2C :: Interface -> State RenderState Doc
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interface2C (Interface uses tvars) = liftM2 ($+$) (uses2C uses) (typesAndVars2C True tvars)
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implementation2C :: Implementation -> State RenderState Doc
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implementation2C (Implementation uses tvars) = liftM2 ($+$) (uses2C uses) (typesAndVars2C True tvars)
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typesAndVars2C :: Bool -> TypesAndVars -> State RenderState Doc
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typesAndVars2C b (TypesAndVars ts) = liftM vcat $ mapM (tvar2C b) ts
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uses2C :: Uses -> State RenderState Doc
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uses2C uses@(Uses unitIds) = do
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    mapM_ injectNamespace (Identifier "pas2cSystem" undefined : unitIds)
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    mapM_ (id2C True) unitIds
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    return $ vcat . map (\i -> text $ "#include \"" ++ i ++ ".h\"") $ uses2List uses
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    where
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    injectNamespace (Identifier i _) = do
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        getNS <- gets (flip Map.lookup . namespaces)
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        let f = flip (foldl (\a b -> b:a)) (fromMaybe [] (getNS i))
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        modify (\s -> s{currentScope = f $ currentScope s})
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uses2List :: Uses -> [String]
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uses2List (Uses ids) = map (\(Identifier i _) -> i) ids
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id2C :: Bool -> Identifier -> State RenderState Doc
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id2C True (Identifier i t) = do
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    modify (\s -> s{currentScope = (map toLower i, (i, t)) : currentScope s})
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    return $ text i
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id2C False (Identifier i t) = do
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    let i' = map toLower i
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    v <- gets $ find (\(a, _) -> a == i') . currentScope
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    ns <- gets currentScope
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    modify (\s -> s{lastType = t})
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    if isNothing v then 
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        error $ "Not defined: '" ++ i' ++ "'\n" ++ show ns
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        else 
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        return . text . fst . snd . fromJust $ v
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id2CTyped :: BaseType -> Identifier -> State RenderState Doc
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id2CTyped BTUnknown i = do
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    ns <- gets currentScope
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    error $ show i ++ "\n" ++ show ns
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id2CTyped bt (Identifier i _) = id2C True (Identifier i bt)
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   158
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resolveType :: TypeDecl -> State RenderState BaseType
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resolveType st@(SimpleType (Identifier i _)) = do
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    let i' = map toLower i
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    v <- gets $ find (\(a, _) -> a == i') . currentScope
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    if isJust v then return . snd . snd $ fromJust v else return $ f i'
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    where
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    f "integer" = BTInt
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    f "pointer" = BTPointerTo BTVoid
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    f "boolean" = BTBool
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    f _ = error $ "Unknown system type: " ++ show st
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resolveType (PointerTo t) = liftM BTPointerTo $ resolveType t
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resolveType (RecordType tv mtvs) = do
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   171
    tvs <- mapM f (concat $ tv : fromMaybe [] mtvs)
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    return . BTRecord . concat $ tvs
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   173
    where
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        f :: TypeVarDeclaration -> State RenderState [(String, BaseType)]
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        f (VarDeclaration _ (ids, td) _) = mapM (\(Identifier i _) -> liftM ((,) i) $ resolveType td) ids
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resolveType (ArrayDecl (Just _) t) = liftM (BTArray BTInt) $ resolveType t
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resolveType (ArrayDecl Nothing t) = liftM (BTArray BTInt) $ resolveType t
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resolveType (FunctionType _ _) = return BTFunction
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resolveType (DeriveType _) = return BTInt
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resolveType (String _) = return BTString
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--resolveType UnknownType = return BTUnknown    
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resolveType a = error $ "resolveType: " ++ show a
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   183
    
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tvar2C :: Bool -> TypeVarDeclaration -> State RenderState Doc
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tvar2C _ (FunctionDeclaration name returnType params Nothing) = do
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    t <- type2C returnType 
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    p <- liftM hcat $ mapM (tvar2C False) params
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   189
    n <- id2C True name
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   190
    return $ t <+> n <> parens p <> text ";"
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   191
    
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tvar2C True (FunctionDeclaration name returnType params (Just (tvars, phrase))) = do
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    t <- type2C returnType 
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    p <- liftM hcat $ mapM (tvar2C False) params
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    ph <- liftM2 ($+$) (typesAndVars2C False tvars) (phrase2C' phrase)
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    n <- id2C True name
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   197
    return $ 
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        t <+> n <> parens p
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   199
        $+$
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        text "{" 
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        $+$ 
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        nest 4 ph
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        $+$
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        text "}"
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    where
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    phrase2C' (Phrases p) = liftM vcat $ mapM phrase2C p
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    phrase2C' p = phrase2C p
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   208
    
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tvar2C False (FunctionDeclaration (Identifier name _) _ _ _) = error $ "nested functions not allowed: " ++ name
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tvar2C _ td@(TypeDeclaration i' t) = do
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    tp <- type2C t
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   213
    tb <- resolveType t
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    error $ show (td, tb)
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   215
    i <- id2CTyped tb i'
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   216
    return $ text "type" <+> i <+> tp <> text ";"
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   217
    
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tvar2C _ (VarDeclaration isConst (ids, t) mInitExpr) = do
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   219
    t' <- type2C t
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   220
    tb <- resolveType t
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   221
    i <- mapM (id2CTyped tb) ids
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   222
    ie <- initExpr mInitExpr
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   223
    return $ if isConst then text "const" else empty
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   224
        <+> t'
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   225
        <+> (hsep . punctuate (char ',') $ i)
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   226
        <+> ie
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   227
        <> text ";"
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   228
    where
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   229
    initExpr Nothing = return $ empty
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   230
    initExpr (Just e) = liftM (text "=" <+>) (initExpr2C e)
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   231
    
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   232
tvar2C f (OperatorDeclaration op _ ret params body) = 
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    tvar2C f (FunctionDeclaration (Identifier ("<op " ++ op ++ ">") BTUnknown) ret params body)
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   234
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   235
    
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   236
initExpr2C :: InitExpression -> State RenderState Doc
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   237
initExpr2C (InitBinOp op expr1 expr2) = do
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   238
    e1 <- initExpr2C expr1
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   239
    e2 <- initExpr2C expr2
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   240
    o <- op2C op
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   241
    return $ parens $ e1 <+> o <+> e2
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   242
initExpr2C (InitNumber s) = return $ text s
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   243
initExpr2C (InitFloat s) = return $ text s
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   244
initExpr2C (InitHexNumber s) = return $ text "0x" <> (text . map toLower $ s)
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   245
initExpr2C (InitString s) = return $ doubleQuotes $ text s 
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   246
initExpr2C (InitReference i) = id2C False i
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   247
initExpr2C _ = return $ text "<<expression>>"
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   248
bd5851ab3157 - Parse sets initialization
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   249
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   250
type2C :: TypeDecl -> State RenderState Doc
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   251
type2C UnknownType = return $ text "void"
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   252
type2C (String l) = return $ text $ "string" ++ show l
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   253
type2C (SimpleType i) = id2C False i
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   254
type2C (PointerTo (SimpleType i)) = liftM (<> text "*") $ id2C True i
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   255
type2C (PointerTo t) = liftM (<> text "*") $ type2C t
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   256
type2C (RecordType tvs union) = do
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   257
    t <- mapM (tvar2C False) tvs
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   258
    return $ text "{" $+$ (nest 4 . vcat $ t) $+$ text "}"
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   259
type2C (RangeType r) = return $ text "<<range type>>"
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type2C (Sequence ids) = do
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   261
    mapM_ (id2C True) ids
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   262
    return $ text "<<sequence type>>"
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   263
type2C (ArrayDecl r t) = return $ text "<<array type>>"
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   264
type2C (Set t) = return $ text "<<set>>"
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type2C (FunctionType returnType params) = return $ text "<<function>>"
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type2C (DeriveType _) = return $ text "<<type derived from constant literal>>"
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   267
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   268
phrase2C :: Phrase -> State RenderState Doc
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   269
phrase2C (Phrases p) = do
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   270
    ps <- mapM phrase2C p
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   271
    return $ text "{" $+$ (nest 4 . vcat $ ps) $+$ text "}"
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   272
phrase2C (ProcCall f@(FunCall {}) []) = liftM (<> semi) $ ref2C f
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   273
phrase2C (ProcCall ref params) = do
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   274
    r <- ref2C ref
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   275
    ps <- mapM expr2C params
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   276
    return $ r <> parens (hsep . punctuate (char ',') $ ps) <> semi
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   277
phrase2C (IfThenElse (expr) phrase1 mphrase2) = do
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   278
    e <- expr2C expr
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   279
    p1 <- (phrase2C . wrapPhrase) phrase1
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   280
    el <- elsePart
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   281
    return $ 
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   282
        text "if" <> parens e $+$ p1 $+$ el
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   283
    where
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    elsePart | isNothing mphrase2 = return $ empty
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             | otherwise = liftM (text "else" $$) $ (phrase2C . wrapPhrase) (fromJust mphrase2)
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phrase2C (Assignment ref expr) = do
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    r <- ref2C ref 
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    e <- expr2C expr
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    return $
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        r <> text " = " <> e <> semi
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phrase2C (WhileCycle expr phrase) = do
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    e <- expr2C expr
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    p <- phrase2C $ wrapPhrase phrase
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    return $ text "while" <> parens e $$ p
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phrase2C (SwitchCase expr cases mphrase) = do
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    e <- expr2C expr
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    cs <- mapM case2C cases
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    return $ 
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        text "switch" <> parens e <> text "of" $+$ (nest 4 . vcat) cs
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    where
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    case2C :: ([InitExpression], Phrase) -> State RenderState Doc
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    case2C (e, p) = do
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        ie <- mapM initExpr2C e
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        ph <- phrase2C p
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        return $ 
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            text "case" <+> parens (hsep . punctuate (char ',') $ ie) <> char ':' <> nest 4 (ph $+$ text "break;")
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phrase2C (WithBlock ref p) = do
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    r <- ref2C ref 
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    ph <- phrase2C $ wrapPhrase p
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    return $ text "namespace" <> parens r $$ ph
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phrase2C (ForCycle i' e1' e2' p) = do
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    i <- id2C False i'
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    e1 <- expr2C e1'
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    e2 <- expr2C e2'
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    ph <- phrase2C (wrapPhrase p)
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    return $ 
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        text "for" <> (parens . hsep . punctuate (char ';') $ [i <+> text "=" <+> e1, i <+> text "<=" <+> e2, text "++" <> i])
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   318
        $$
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   319
        ph
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phrase2C (RepeatCycle e' p') = do
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   321
    e <- expr2C e'
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    p <- phrase2C (Phrases p')
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   323
    return $ text "do" <+> p <+> text "while" <> parens (text "!" <> parens e)
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phrase2C NOP = return $ text ";"
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wrapPhrase p@(Phrases _) = p
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wrapPhrase p = Phrases [p]
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expr2C :: Expression -> State RenderState Doc
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expr2C (Expression s) = return $ text s
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expr2C (BinOp op expr1 expr2) = do
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    e1 <- expr2C expr1
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    e2 <- expr2C expr2
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    o <- op2C op
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    return $ parens $ e1 <+> o <+> e2
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expr2C (NumberLiteral s) = return $ text s
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expr2C (FloatLiteral s) = return $ text s
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expr2C (HexNumber s) = return $ text "0x" <> (text . map toLower $ s)
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expr2C (StringLiteral s) = return $ doubleQuotes $ text s 
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expr2C (Reference ref) = ref2C ref
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expr2C (PrefixOp op expr) = liftM2 (<+>) (op2C op) (expr2C expr)
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expr2C Null = return $ text "NULL"
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expr2C (BuiltInFunCall params ref) = do
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    r <- ref2C ref 
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    ps <- mapM expr2C params
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    return $ 
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        r <> parens (hsep . punctuate (char ',') $ ps)
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expr2C _ = return $ text "<<expression>>"
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ref2C :: Reference -> State RenderState Doc
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ref2C (ArrayElement exprs ref) = do
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   355
    r <- ref2C ref 
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   356
    es <- mapM expr2C exprs
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   357
    return $ r <> (brackets . hcat) (punctuate comma es)
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   358
ref2C (SimpleReference name) = id2C False name
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   359
ref2C (RecordField (Dereference ref1) ref2) = do
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   360
    r1 <- ref2C ref1 
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   361
    r2 <- ref2C ref2
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   362
    return $ 
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   363
        r1 <> text "->" <> r2
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2d3232069c4b Propagate types on identifiers
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   364
ref2C rf@(RecordField ref1 ref2) = do
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   365
    r1 <- ref2C ref1
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   366
    t <- gets lastType
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   367
    case t of
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   368
        r@(BTRecord _) -> error $ show r
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   369
        a -> error $ "dereferencing from " ++ show a ++ " - " ++ show rf
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   370
    r2 <- ref2C ref2
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   371
    return $ 
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   372
        r1 <> text "." <> r2
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   373
ref2C (Dereference ref) = liftM ((parens $ text "*") <>) $ ref2C ref
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   374
ref2C (FunCall params ref) = do
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   375
    r <- ref2C ref
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   376
    ps <- mapM expr2C params
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   377
    return $ 
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   378
        r <> parens (hsep . punctuate (char ',') $ ps)
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   379
ref2C (Address ref) = do
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   380
    r <- ref2C ref
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   381
    return $ text "&" <> parens r
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   382
ref2C (TypeCast t' expr) = do
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   383
    t <- id2C False t'
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   384
    e <- expr2C expr
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   385
    return $ parens t <> e
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090269e528df - Improve parsing of prefix operators
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   386
ref2C (RefExpression expr) = expr2C expr
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   387
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   388
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0df7f6697939 "System" unit to help converter
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   389
op2C :: String -> State RenderState Doc
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   390
op2C "or" = return $ text "|"
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   391
op2C "and" = return $ text "&"
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   392
op2C "not" = return $ text "!"
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   393
op2C "xor" = return $ text "^"
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   394
op2C "div" = return $ text "/"
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   395
op2C "mod" = return $ text "%"
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   396
op2C "shl" = return $ text "<<"
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   397
op2C "shr" = return $ text ">>"
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   398
op2C "<>" = return $ text "!="
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   399
op2C "=" = return $ text "=="
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   400
op2C a = return $ text a
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13262c6e5027 Starting pas2C using library called 'pretty'
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   401
13262c6e5027 Starting pas2C using library called 'pretty'
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   402
maybeVoid "" = "void"
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   403
maybeVoid a = a