forked from GitHub/gf-rgl
195 lines
6.6 KiB
Haskell
195 lines
6.6 KiB
Haskell
module Main where
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import PGF
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import qualified Data.Map as M
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import Data.Char
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import Data.List
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import System.Environment (getArgs)
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-- AR 2020-02-28
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-- making a word list purely morphological, i.e.
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-- - functions are 1-to-1 with lemgrams, i.e.
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-- - no sense distinctions
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-- - no subcategorizations
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-- - no variants
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-- - functionname = baseform_category, with exceptions
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-- - variant inflection tables: lie_1_V, lie_2_V
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-- - words that have non-ident characters: 'bird\'s-eye_A'
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-- example:
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-- gf -make ../english/DictEng.gf
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-- runghc
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-- runghc MkMorphodict.hs pgf MorphoDictEng.config DictEngAbs.pgf MorphoDictEng
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-- 64923 -> 56599 functions
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usage = "runghc MkMorphodict (raw|pgf) <configfile> <datafile> <outfile>"
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main = do
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xx <- getArgs
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if length xx /= 4
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then putStrLn usage
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else do
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let mode:configfile:datafile:outfile:_ = xx
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config <- readFile configfile >>= return . mkConfig
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rawdata <- case mode of
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"pgf" -> pgfFile2rawData config datafile
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"raw" -> readFile datafile >>= return . map getRawData . filter (not . null) . lines
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rawdata2gf config rawdata outfile
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rawdata2gf config rawdata outfile = do
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let env = MDEnv rawdata config
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let (absrules,cncrules) = mkMorphoDict env
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absheader <- readFile (outfile ++ "Abs.header")
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cncheader <- readFile (outfile ++ ".header")
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writeFile (outfile ++ "Abs.gf") absheader
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appendFile (outfile ++ "Abs.gf") $ unlines $ sort absrules
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appendFile (outfile ++ "Abs.gf") "}"
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writeFile (outfile ++ ".gf") cncheader
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appendFile (outfile ++ ".gf") $ unlines $ sort cncrules
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appendFile (outfile ++ ".gf") "}"
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-- one way to get raw data from a dictionary pgf
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-- another way, more controllod, is to write a wrapper grammar with a function, for each category, to generate a RawData entry
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pgfFile2rawData config pgffile = do
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pgf <- readPGF pgffile
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let cats = nub [c | (c,(_,_,_)) <- M.assocs config]
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let lang:_ = languages pgf
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return [
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(cat, map snd lin) |
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cat <- cats,
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f <- functionsByCat pgf (mkCId cat),
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lin <- tabularLinearizes pgf lang (mkApp f [])
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]
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type Cat = String
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type Fun = String
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type Oper = String
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type Config = M.Map Cat (Cat,Oper,([Int],[Int])) -- lin word_Cat = Oper str_i1 str_i2 ... str_in featj1 ... featjn ;
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data MDEnv = MDEnv {
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rawdata :: [RawData],
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config :: Config
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}
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mkConfig :: String -> Config -- N : N mkN 0 2 4 6 # 9
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mkConfig ls = M.fromList [(c,i) | Left (c,i) <- map mkOne (lines ls)]
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where
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mkOne s = case words s of
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"--":_ -> Right s
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cat:":":tcat:oper:ints -> Left (cat,(tcat,oper,mkArgs ints))
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_ -> Right s
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mkArgs ints = case break (=="#") ints of
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(ss,[]) -> (map read ss, [])
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(ss,_:fs) -> (map read ss, map read fs)
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getRawData s = case words s of
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c:cs -> (c,cs)
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type RawData = (String,[String]) -- old cat name, forms and features
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type RawRule = (([String],Cat), (Oper, ([String],[String]))) -- parts of fun name, new category, oper, arguments
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type RuleData = ((Fun, Cat), (Oper, ([String],[String]))) -- final fun name, cat, oper, args
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mkMorphoDict :: MDEnv -> ([String],[String]) -- fun rules, lin rules
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mkMorphoDict env =
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unzip $
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map splitRule $
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---- findCompounds $ -- let us not care about compounds for the time being, but include them if they are given
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nameFunctions $
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mergeRules $
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findRules $
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rawdata env
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where
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splitRule ((fun,cat),(oper,(forms,feats))) =
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(unwords ["fun",fun,":",cat,";"], unwords ["lin",fun,"=", unwords (oper : map quote forms ++ feats),";"])
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cats = nub [c | (c,(_,_,_)) <- M.assocs (config env)]
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findRules :: [RawData] -> [RawRule]
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findRules raws = [
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(([lemma],newcat),(oper, appSig sig args)) |
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(oldcat,args) <- raws,
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Just (newcat, oper, sig) <- [M.lookup oldcat (config env)],
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let lemma = args !! head (fst sig)
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]
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appSig (ints,feats) args = ([args !! i | i <- ints], [args !! i | i <- feats])
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mergeRules :: [RawRule] -> [RawRule]
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mergeRules = map head . groupBy (\x y -> snd x == snd y) . sortOn snd
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nameFunctions :: [RawRule] -> [RuleData]
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nameFunctions = expandNames . sortOn fst
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expandNames :: [RawRule] -> [RuleData]
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expandNames fls = case fls of
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(f@(w,c),l) : fls2 -> case span ((==f) . fst) fls2 of
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([],_) -> ((mkFun (w ++ [c]),c),l) : expandNames fls2
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(fls1,fls3) -> renames ((f,l):fls1) ++ expandNames fls3
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_ -> []
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renames :: [RawRule] -> [RuleData]
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-- renames fls = [((mkFun (f ++ [show i,c]),c),l) | (i,((f,c),l)) <- zip [1..] fls] -- disambiguate with int
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renames fls = [((mkFun (f ++ fs ++ [c]),c),l) | (i,(((f,c),l),fs)) <- zip [1..] (zip fls (minimize fls))] -- disambiguate with different forms
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minimize :: [RawRule] -> [[String]]
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minimize fls = shrink [ws ++ fs | (_,(_,(_:ws,fs))) <- fls]
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shrink fls = case fls of
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fl@(_:_):_ | all ((==head fl) . head) fls -> shrink (map tail fls)
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fl@(_:_):_ | all ((==last fl) . last) fls -> shrink (map init fls)
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_ -> fls
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formlists fls = [wfs | (_:ws,fs) <- map (snd . snd) fls, let wfs = ws ++ fs]
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mkFun = showCId . mkCId . concat . intersperse "_"
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quote s = "\"" ++ s ++ "\""
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{- ---- let us ignore this
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findCompounds :: [RuleData] -> [RuleData]
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findCompounds = getCompounds . sortOn cat_orthrevforms
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cat_orthrevforms (_,(cat,_:forms)) = (cat,[map (!!i) fss | let fss = map reverse forms, i <- [0..minimum (map length fss) - 1]])
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cat_revforms (_,(cat,_:forms)) = (cat,map reverse forms)
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revstem = head . snd . cat_revforms
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wforms (_,(_,_:forms)) = forms
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getCompounds :: [RuleData] -> [RuleData]
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getCompounds fls = case fls of
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fl : fls1 | length (revstem fl) < 2 -> markWith fl [] : getCompounds fls1
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fl : fls2 -> case span (\x -> and [isPrefixOf (reverse w) (reverse w1) | (w,w1) <- zip (wforms fl) (wforms x)]) fls2 of
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([],_:_) -> markWith fl [] : getCompounds fls2
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(fls1,fls3) -> markWith fl [] : map (markCompound fl) fls1 ++ getCompounds fls3
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_ -> []
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markCompound fl fl1 =
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case and [isPrefixWord (reverse w) (reverse w1) | (w,w1) <- zip (wforms fl) (wforms fl1)] of
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True -> markWith fl1 [";","--","compound",(fst fl)]
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False -> markWith fl1 [";","--","notcompound",(fst fl)]
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markWith (f,(c,op:ws)) xs = (f,(c,op : map quote ws ++ xs)) ---- TODO only quote string args, not features
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isPrefixWord x xy =
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length suff > 1 && ---- compound first part must be at least two letters long
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any (\c -> elem c "-0123456789aeiouyåäö") suff && ---- must contain a vowel or a digit
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isPrefixOf x xy ---- and of course be a prefix
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where
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suff = drop (length x) xy
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-}
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