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generalized pt -transfer so that it goes into subtrees (naive implementation in TreeOperations; using PGF.Expr.match would be better); example given in 'h pt'
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@@ -649,7 +649,8 @@ allCommands env@(pgf, mos) = Map.fromList [
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"are type checking and semantic computation."
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],
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examples = [
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"pt -compute (plus one two) -- compute value"
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"pt -compute (plus one two) -- compute value",
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"p \"4 dogs love 5 cats\" | pt -transfer=digits2numeral | l -- four...five..."
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],
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exec = \opts ->
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returnFromExprs . takeOptNum opts . treeOps opts,
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@@ -16,8 +16,8 @@ allTreeOps :: PGF -> [(String,(String,Either TreeOp (CId -> TreeOp)))]
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allTreeOps pgf = [
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("compute",("compute by using semantic definitions (def)",
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Left $ map (compute pgf))),
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("transfer",("syntactic transfer by applying function and computing",
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Right $ \f -> map (compute pgf . EApp (EFun f)))),
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("transfer",("syntactic transfer by applying function, recursively in subtrees",
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Right $ \f -> map (transfer pgf f))),
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("paraphrase",("paraphrase by using semantic definitions (def)",
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Left $ nub . concatMap (paraphrase pgf))),
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("smallest",("sort trees from smallest to largest, in number of nodes",
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@@ -30,3 +30,17 @@ smallest = sortBy (\t u -> compare (size t) (size u)) where
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EAbs _ _ e -> size e + 1
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EApp e1 e2 -> size e1 + size e2 + 1
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_ -> 1
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--- simple-minded transfer; should use PGF.Expr.match
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transfer :: PGF -> CId -> Expr -> Expr
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transfer pgf f e = case transf e of
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v | v /= appf e -> v
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_ -> case e of
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EApp g a -> EApp (transfer pgf f g) (transfer pgf f a)
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_ -> e
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where
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appf = EApp (EFun f)
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transf = compute pgf . appf
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