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math with gfcc
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18
examples/tutorial/embedded/Makefile_gfcc
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18
examples/tutorial/embedded/Makefile_gfcc
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all: gf hs run
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gf:
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echo "pm -printer=gfcc | wf math.gfcc" | gf MathEng.gf MathFre.gf
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hs: gf
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echo "pg -printer=gfcc_haskell | wf GSyntax.hs" | gf MathEng.gf MathFre.gf
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run: hs
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ghc --make -o ./mathc TransferLoopGFCC.hs
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strip mathc
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clean:
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rm -f *.gfc *.gfr *.o *.hi
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distclean:
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rm -f GSyntax.hs math math.gfcc *.gfc *.gfr *.o *.hi
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26
examples/tutorial/embedded/TransferDefGFCC.hs
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examples/tutorial/embedded/TransferDefGFCC.hs
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module TransferDefGFCC where
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import GF.Canon.GFCC.GFCCAPI (Tree)
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import GSyntax
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transfer :: Tree -> Tree
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transfer = gf . answer . fg
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answer :: GQuestion -> GAnswer
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answer p = case p of
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GOdd x -> test odd x
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GEven x -> test even x
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GPrime x -> test prime x
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value :: GObject -> Int
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value e = case e of
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GNumber (GInt i) -> fromInteger i
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test :: (Int -> Bool) -> GObject -> GAnswer
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test f x = if f (value x) then GYes else GNo
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prime :: Int -> Bool
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prime x = elem x primes where
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primes = sieve [2 .. x]
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sieve (p:xs) = p : sieve [ n | n <- xs, n `mod` p > 0 ]
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sieve [] = []
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23
examples/tutorial/embedded/TransferLoopGFCC.hs
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23
examples/tutorial/embedded/TransferLoopGFCC.hs
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module Main where
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import GF.Canon.GFCC.GFCCAPI
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import TransferDefGFCC (transfer)
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main :: IO ()
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main = do
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gr <- file2grammar "math.gfcc"
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loop (translate transfer gr)
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loop :: (String -> String) -> IO ()
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loop trans = do
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s <- getLine
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if s == "quit" then putStrLn "bye" else do
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putStrLn $ trans s
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loop trans
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translate :: (Tree -> Tree) -> MultiGrammar -> String -> String
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translate tr gr = unlines . map transLine . lines where
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transLine s = case parseAllLang gr "Question" s of
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(lg,t:_):_ -> linearize gr lg (tr t)
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_ -> "NO PARSE"
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