forked from GitHub/gf-core
added missing module GF.Grammar.BNFC
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src/compiler/GF/Grammar/BNFC.hs
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98
src/compiler/GF/Grammar/BNFC.hs
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-- |
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-- Module : CFEG
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-- Maintainer : Gleb Lobanov
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-- Stability : (experimental)
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-- Portability : (portable)
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--
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-- > CVS $Date: 2016/03/16 19:59:00 $
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-- > CVS $Author: Gleb Lobanov $
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-- > CVS $Revision: 0.1 $
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--
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-- Contains a function to convert extended CF grammars to CF grammars.
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-----------------------------------------------------------------------------
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module GF.Grammar.BNFC(BNFCRule(..), BNFCSymbol, Symbol(..), CFTerm(..), bnfc2cf) where
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import GF.Grammar.CFG
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import PGF (Token, mkCId)
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import Data.List (lookup, partition)
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type IsList = Bool
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type BNFCSymbol = Symbol (Cat, IsList) Token
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data BNFCRule = BNFCRule {
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lhsCat :: Cat,
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ruleRhs :: [BNFCSymbol],
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ruleName :: CFTerm }
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| BNFCCoercions {
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coerCat :: Cat,
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coerNum :: Int }
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| BNFCTerminator {
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termNonEmpty :: Bool,
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termCat :: Cat,
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termSep :: String }
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| BNFCSeparator {
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sepNonEmpty :: Bool,
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sepCat :: Cat,
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sepSep :: String }
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deriving (Eq, Ord, Show)
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type IsNonempty = Bool
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type IsSeparator = Bool
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type SepTermSymb = String
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type SepMap = [(Cat, (IsNonempty, IsSeparator, SepTermSymb))]
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bnfc2cf :: [BNFCRule] -> [CFRule]
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bnfc2cf rules = concatMap (transformRules (map makeSepTerm rules1)) rules2
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where (rules1,rules2) = partition isSepTerm rules
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makeSepTerm (BNFCTerminator ne c s) = (c, (ne, False, s))
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makeSepTerm (BNFCSeparator ne c s) = (c, (ne, True, s))
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isSepTerm :: BNFCRule -> Bool
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isSepTerm (BNFCTerminator {}) = True
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isSepTerm (BNFCSeparator {}) = True
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isSepTerm _ = False
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transformRules :: SepMap -> BNFCRule -> [CFRule]
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transformRules sepMap (BNFCRule c smbs@(s:ss) r) = CFRule c cfSmbs r : rls
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where smbs' = map transformSymb smbs
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cfSmbs = [snd s | s <- smbs']
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ids = filter (/= "") [fst s | s <- smbs']
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rls = concatMap (createListRules sepMap) ids
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transformRules sepMap (BNFCCoercions c num) = rules ++ [lastRule]
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where rules = map (fRules c) [0..num-1]
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lastRule = CFRule c' ss rn
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where c' = c ++ show num
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ss = [Terminal "(", NonTerminal c, Terminal ")"]
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rn = CFObj (mkCId $ "coercion_" ++ c) []
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fRules c n = CFRule c' ss rn
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where c' = if n == 0 then c else c ++ show n
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ss = [NonTerminal (c ++ show (n+1))]
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rn = CFObj (mkCId $ "coercion_" ++ c')[]
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transformSymb :: BNFCSymbol -> (String, CFSymbol)
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transformSymb s = case s of
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NonTerminal (c,False) -> ("", NonTerminal c)
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NonTerminal (c,True ) -> (c , NonTerminal $ "List" ++ c)
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Terminal t -> ("", Terminal t)
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createListRules :: SepMap -> String -> [CFRule]
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createListRules sepMap c =
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case lookup c sepMap of
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Just (ne, isSep, symb) -> createListRules' ne isSep symb c
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Nothing -> createListRules' False True "" c
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createListRules':: IsNonempty -> IsSeparator -> SepTermSymb -> String -> [CFRule]
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createListRules' ne isSep symb c = ruleCons : [ruleBase]
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where ruleBase = CFRule ("List" ++ c) smbs rn
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where smbs = if isSep
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then [NonTerminal c | ne]
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else [NonTerminal c | ne] ++
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[Terminal symb | symb /= "" && ne]
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rn = CFObj (mkCId $ "Base" ++ c) []
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ruleCons = CFRule ("List" ++ c) smbs rn
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where smbs = [NonTerminal c] ++
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[Terminal symb | symb /= ""] ++
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[NonTerminal ("List" ++ c)]
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rn = CFObj (mkCId $ "Cons" ++ c) []
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