mirror of
https://github.com/GrammaticalFramework/gf-core.git
synced 2026-04-09 04:59:31 -06:00
293 lines
9.5 KiB
Haskell
293 lines
9.5 KiB
Haskell
module Shell where
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--- abstract away from these?
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import Str
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import qualified Grammar as G
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import qualified Ident as I
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import qualified Compute as Co
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import qualified GFC
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import Values
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import GetTree
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import API
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import IOGrammar
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import Compile
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---- import GFTex
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-----import TeachYourself -- also a subshell
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import ShellState
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import Option
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import Information
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import HelpFile
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import PrOld
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import PrGrammar
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import Monad (foldM)
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import System (system)
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import Operations
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import UseIO
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import UTF8 (encodeUTF8)
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---- import qualified GrammarToGramlet as Gr
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---- import qualified GrammarToCanonXML2 as Canon
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-- AR 18/4/2000 - 7/11/2001
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type SrcTerm = G.Term -- term as returned by the command parser
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data Command =
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CImport FilePath
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| CRemoveLanguage Language
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| CEmptyState
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| CTransformGrammar FilePath
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| CConvertLatex FilePath
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| CLinearize [()] ---- parameters
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| CParse
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| CTranslate Language Language
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| CGenerateRandom Int
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| CPutTerm
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| CWrapTerm Ident
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| CMorphoAnalyse
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| CTestTokenizer
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| CComputeConcrete I.Ident String
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| CTranslationQuiz Language Language
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| CTranslationList Language Language Int
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| CMorphoQuiz
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| CMorphoList Int
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| CReadFile FilePath
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| CWriteFile FilePath
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| CAppendFile FilePath
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| CSpeakAloud
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| CPutString
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| CShowTerm
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| CSystemCommand String
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| CSetFlag
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| CSetLocalFlag Language
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| CPrintGrammar
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| CPrintGlobalOptions
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| CPrintLanguages
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| CPrintInformation I.Ident
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| CPrintMultiGrammar
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| CPrintGramlet
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| CPrintCanonXML
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| CPrintCanonXMLStruct
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| CPrintHistory
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| CHelp
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| CImpure ImpureCommand
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| CVoid
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-- to isolate the commands that are executed on top level
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data ImpureCommand =
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ICQuit | ICExecuteHistory FilePath | ICEarlierCommand Int
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| ICEditSession | ICTranslateSession
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type CommandLine = (CommandOpt, CommandArg, [CommandOpt])
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type CommandOpt = (Command, Options)
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type HState = (ShellState,([String],Integer)) -- history & CPU
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type ShellIO = (HState, CommandArg) -> IO (HState, CommandArg)
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initHState :: ShellState -> HState
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initHState st = (st,([],0))
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cpuHState (_,(_,i)) = i
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optsHState (st,_) = globalOptions st
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putHStateCPU cpu (st,(h,_)) = (st,(h,cpu))
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updateHistory s (st,(h,cpu)) = (st,(s:h,cpu))
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earlierCommandH (_,(h,_)) = ((h ++ repeat "") !!) -- empty command if index over
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execLinesH :: String -> [CommandLine] -> HState -> IO HState
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execLinesH s cs hst@(st, (h, _)) = do
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(_,st') <- execLines True cs hst
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cpu <- prOptCPU (optsHState st') (cpuHState hst)
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return $ putHStateCPU cpu $ updateHistory s st'
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ifImpure :: [CommandLine] -> Maybe (ImpureCommand,Options)
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ifImpure cls = foldr (const . Just) Nothing [(c,os) | ((CImpure c,os),_,_) <- cls]
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-- the main function: execution of commands. put :: Bool forces immediate output
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-- command line with consecutive (;) commands: no value transmitted
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execLines :: Bool -> [CommandLine] -> HState -> IO ([String],HState)
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execLines put cs st = foldM (flip (execLine put)) ([],st) cs
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-- command line with piped (|) commands: no value returned
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execLine :: Bool -> CommandLine -> ([String],HState) -> IO ([String],HState)
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execLine put (c@(co, os), arg, cs) (outps,st) = do
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(st',val) <- execC c (st, arg)
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let tr = oElem doTrace os || null cs -- option -tr leaves trace in pipe
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utf = if (oElem useUTF8 os) then encodeUTF8 else id
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outp = if tr then [utf (prCommandArg val)] else []
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if put then mapM_ putStrLnFlush outp else return ()
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execs cs val (if put then [] else outps ++ outp, st')
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where
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execs [] arg st = return st
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execs (c:cs) arg st = execLine put (c, arg, cs) st
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-- individual commands possibly piped: value returned; this is not a state monad
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execC :: CommandOpt -> ShellIO
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execC co@(comm, opts0) sa@((st,(h,_)),a) = case comm of
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--- read old GF and write into files; no update of st yet
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CImport file | oElem showOld opts -> useIOE sa $ batchCompileOld file >> return sa
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CImport file -> useIOE sa $ do
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st <- shellStateFromFiles opts st file
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ioeIO $ changeState (const st) sa --- \ ((_,h),a) -> ((st,h), a))
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CEmptyState -> changeState reinitShellState sa
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{-
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CRemoveLanguage lan -> changeState (removeLanguage lan) sa
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CTransformGrammar file -> do
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s <- transformGrammarFile opts file
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returnArg (AString s) sa
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CConvertLatex file -> do
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s <- readFileIf file
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returnArg (AString (convertGFTex s)) sa
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-}
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CPrintHistory -> (returnArg $ AString $ unlines $ reverse h) sa
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-- good to have here for piping; eh and ec must be done on outer level
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CLinearize [] -> changeArg (opTS2CommandArg (optLinearizeTreeVal opts gro) . s2t) sa
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---- CLinearize m -> changeArg (opTS2CommandArg (optLinearizeArgForm opts gro m)) sa
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CParse -> case optParseArgErrMsg opts gro (prCommandArg a) of
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Ok (ts,msg) -> putStrLnFlush msg >> changeArg (const $ ATrms ts) sa
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Bad msg -> changeArg (const $ AError msg) sa
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CTranslate il ol -> do
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let a' = opST2CommandArg (optParseArgErr opts (sgr il)) a
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returnArg (opTS2CommandArg (optLinearizeTreeVal opts (sgr ol)) a') sa
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CGenerateRandom n -> do
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ts <- randomTreesIO opts gro (optIntOrN opts flagNumber n)
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returnArg (ATrms ts) sa
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----- CPutTerm -> changeArg (opTT2CommandArg (optTermCommand opts gro) . s2t) sa
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----- CWrapTerm f -> changeArg (opTT2CommandArg (return . wrapByFun opts gro f)) sa
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CMorphoAnalyse -> changeArg (AString . morphoAnalyse opts gro . prCommandArg) sa
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CTestTokenizer -> changeArg (AString . optTokenizer opts gro . prCommandArg) sa
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CComputeConcrete m t ->
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justOutput (putStrLn (err id prt (
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string2srcTerm src m t >>= Co.computeConcrete src))) sa
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{- ----
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CTranslationQuiz il ol -> justOutput (teachTranslation opts (sgr il) (sgr ol)) sa
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CTranslationList il ol n -> do
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qs <- transTrainList opts (sgr il) (sgr ol) (toInteger n)
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returnArg (AString $ foldr (+++++) [] [unlines (s:ss) | (s,ss) <- qs]) sa
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CMorphoQuiz -> justOutput (teachMorpho opts gro) sa
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CMorphoList n -> do
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qs <- useIOE [] $ morphoTrainList opts gro (toInteger n)
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returnArg (AString $ foldr (+++++) [] [unlines (s:ss) | (s,ss) <- qs]) sa
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-}
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CReadFile file -> returnArgIO (readFileIf file >>= return . AString) sa
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CWriteFile file -> justOutputArg (writeFile file) sa
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CAppendFile file -> justOutputArg (appendFile file) sa
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CSpeakAloud -> justOutputArg (speechGenerate opts) sa
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CSystemCommand s -> justOutput (system s >> return ()) sa
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----- CPutString -> changeArg (opSS2CommandArg (optStringCommand opts gro)) sa
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----- CShowTerm -> changeArg (opTS2CommandArg (optPrintTerm opts gro) . s2t) sa
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CSetFlag -> changeState (addGlobalOptions opts0) sa
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---- deprec! CSetLocalFlag lang -> changeState (addLocalOptions lang opts0) sa
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CHelp -> returnArg (AString txtHelpFile) sa
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CPrintGrammar
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| oElem showOld opts -> returnArg (AString $ printGrammarOld (canModules st)) sa
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| otherwise -> returnArg (AString (optPrintGrammar opts gro)) sa
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CPrintGlobalOptions -> justOutput (putStrLn $ prShellStateInfo st) sa
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CPrintInformation c -> justOutput (useIOE () $ showInformation opts st c) sa
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CPrintLanguages -> justOutput
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(putStrLn $ unwords $ map prLanguage $ allLanguages st) sa
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---- CPrintMultiGrammar -> returnArg (AString (prMultiGrammar opts st)) sa
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---- CPrintGramlet -> returnArg (AString (Gr.prGramlet st)) sa
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---- CPrintCanonXML -> returnArg (AString (Canon.prCanonXML st False)) sa
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---- CPrintCanonXMLStruct -> returnArg (AString (Canon.prCanonXML st True)) sa
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_ -> justOutput (putStrLn "command not understood") sa
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where
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sgr = stateGrammarOfLang st
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gro = grammarOfOptState opts st
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opts = addOptions opts0 (globalOptions st)
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src = srcModules st
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s2t a = case a of
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ASTrm s -> err AError (ATrms . return) $ string2treeErr gro s
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_ -> a
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-- commands either change the state or process the argument, but not both
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-- some commands just do output
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changeState :: ShellStateOper -> ShellIO
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changeState f ((st,h),a) = return ((f st,h), a)
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changeArg :: (CommandArg -> CommandArg) -> ShellIO
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changeArg f (st,a) = return (st, f a)
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changeArgMsg :: (CommandArg -> (CommandArg,String)) -> ShellIO
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changeArgMsg f (st,a) = do
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let (b,msg) = f a
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putStrLnFlush msg
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return (st, b)
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returnArg :: CommandArg -> ShellIO
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returnArg = changeArg . const
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returnArgIO :: IO CommandArg -> ShellIO
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returnArgIO io (st,_) = io >>= (\a -> return (st,a))
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justOutputArg :: (String -> IO ()) -> ShellIO
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justOutputArg f sa@(st,a) = f (prCommandArg a) >> return (st, AUnit)
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justOutput :: IO () -> ShellIO
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justOutput = justOutputArg . const
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-- type system for command arguments; instead of plain strings...
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data CommandArg =
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AError String
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| ATrms [Tree]
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| ASTrm String -- to receive from parser
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| AStrs [Str]
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| AString String
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| AUnit
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deriving (Eq, Show)
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prCommandArg :: CommandArg -> String
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prCommandArg arg = case arg of
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AError s -> s
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AStrs ss -> sstrV ss
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AString s -> s
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ATrms [] -> "no tree found"
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ATrms tt -> unlines $ map prt_Tree tt
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ASTrm s -> s
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AUnit -> ""
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opSS2CommandArg :: (String -> String) -> CommandArg -> CommandArg
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opSS2CommandArg f = AString . f . prCommandArg
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opST2CommandArg :: (String -> Err [Tree]) -> CommandArg -> CommandArg
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opST2CommandArg f = err AError ATrms . f . prCommandArg
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opTS2CommandArg :: (Tree -> String) -> CommandArg -> CommandArg
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opTS2CommandArg f (ATrms ts) = AString $ unlines $ map f ts
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opTS2CommandArg _ _ = AError ("expected term")
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opTT2CommandArg :: (Tree -> [Tree]) -> CommandArg -> CommandArg
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opTT2CommandArg f (ATrms ts) = ATrms $ concat $ map f ts
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opTT2CommandArg _ _ = AError ("expected term")
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