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Printing to LBNF.
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53
src/GF/CF/PrLBNF.hs
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53
src/GF/CF/PrLBNF.hs
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module PrLBNF (prLBNF) where
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import CF
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import CFIdent
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import AbsGFC
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import Ident
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import PrGrammar
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import Operations
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import Char
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-- Printing CF grammars generated from GF as LBNF grammar for BNFC.
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-- AR 26/1/2000 -- 9/6/2003 (PPrCF) -- 8/11/2003
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-- With a primitive error messaging, by rules and rule tails commented out
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prLBNF :: CF -> String
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prLBNF = unlines . (map prCFRule) . rulesOfCF -- hiding the literal recogn function
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prCFRule :: CFRule -> String
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prCFRule (fun,(cat,its)) =
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prCFFun fun ++ "." +++ prCFCat True cat +++ "::=" +++ --- err in cat -> in syntax
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unwords (map prCFItem its) +++ ";"
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prCFFun :: CFFun -> String
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prCFFun (CFFun (t, p)) = case t of
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AC (CIQ _ x) -> prId True x
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AD (CIQ _ x) -> prId True x
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_ -> prErr True $ prt t
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prId b i = case i of
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IC "Int" -> "Integer"
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IC s@(c:_) | isUpper c -> s ++ if isDigit (last s) then "_" else ""
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_ -> prErr b $ prt i
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prLab i = case i of
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L (IC "s") -> "" ---
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_ -> "_" ++ prt i
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-- just comment out the rest if you cannot interpret the function name in LBNF
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-- two versions, depending on whether in the beginning of a rule or elsewhere;
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-- in the latter case, error just terminates the rule
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prErr :: Bool -> String -> String
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prErr b s = (if b then "" else " ;") +++ "---" +++ s
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prCFCat :: Bool -> CFCat -> String
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prCFCat b (CFCat ((CIQ _ c),l)) = prId b c ++ prLab l ----
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prCFItem (CFNonterm c) = prCFCat False c
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prCFItem (CFTerm a) = prRegExp a
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prRegExp (RegAlts tt) = case tt of
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[t] -> prQuotedString t
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_ -> prErr False $ prParenth (prTList " | " (map prQuotedString tt))
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