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tabularLinearize in the Haskell binding
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@@ -51,7 +51,7 @@ module PGF2 (-- * PGF
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-- * Concrete syntax
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-- * Concrete syntax
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ConcName,Concr,languages,
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ConcName,Concr,languages,
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-- ** Linearization
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-- ** Linearization
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linearize,linearizeAll,
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linearize,linearizeAll,tabularLinearize,
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FId, LIndex, BracketedString(..), showBracketedString, flattenBracketedString,
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FId, LIndex, BracketedString(..), showBracketedString, flattenBracketedString,
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alignWords,
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alignWords,
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@@ -640,6 +640,54 @@ linearizeAll lang e = unsafePerformIO $
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else do gu_pool_free pl
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else do gu_pool_free pl
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throwIO (PGFError "The abstract tree cannot be linearized")
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throwIO (PGFError "The abstract tree cannot be linearized")
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-- | Generates a table of linearizations for an expression
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tabularLinearize :: Concr -> Expr -> Map.Map String String
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tabularLinearize lang e = unsafePerformIO $
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withGuPool $ \tmpPl -> do
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exn <- gu_new_exn tmpPl
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cts <- pgf_lzr_concretize (concr lang) (expr e) exn tmpPl
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failed <- gu_exn_is_raised exn
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if failed
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then throwExn exn
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else do ctree <- alloca $ \ptr -> do gu_enum_next cts ptr tmpPl
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peek ptr
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if ctree == nullPtr
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then do touchExpr e
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return Map.empty
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else do labels <- alloca $ \p_n_lins ->
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alloca $ \p_labels -> do
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pgf_lzr_get_table (concr lang) ctree p_n_lins p_labels
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n_lins <- peek p_n_lins
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labels <- peek p_labels
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labels <- peekArray (fromIntegral n_lins) labels
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labels <- mapM peekCString labels
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return labels
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lins <- collect lang ctree 0 labels exn tmpPl
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return (Map.fromList lins)
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where
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collect lang ctree lin_idx [] exn tmpPl = return []
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collect lang ctree lin_idx (label:labels) exn tmpPl = do
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(sb,out) <- newOut tmpPl
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pgf_lzr_linearize_simple (concr lang) ctree lin_idx out exn tmpPl
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failed <- gu_exn_is_raised exn
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if failed
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then do is_nonexist <- gu_exn_caught exn gu_exn_type_PgfLinNonExist
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if is_nonexist
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then collect lang ctree (lin_idx+1) labels exn tmpPl
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else throwExn exn
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else do lin <- gu_string_buf_freeze sb tmpPl
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s <- peekUtf8CString lin
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ss <- collect lang ctree (lin_idx+1) labels exn tmpPl
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return ((label,s):ss)
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throwExn exn = do
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is_exn <- gu_exn_caught exn gu_exn_type_PgfExn
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if is_exn
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then do c_msg <- (#peek GuExn, data.data) exn
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msg <- peekUtf8CString c_msg
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throwIO (PGFError msg)
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else do throwIO (PGFError "The abstract tree cannot be linearized")
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type FId = Int
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type FId = Int
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type LIndex = Int
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type LIndex = Int
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@@ -202,6 +202,9 @@ foreign import ccall "pgf/pgf.h pgf_lzr_wrap_linref"
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foreign import ccall "pgf/pgf.h pgf_lzr_linearize_simple"
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foreign import ccall "pgf/pgf.h pgf_lzr_linearize_simple"
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pgf_lzr_linearize_simple :: Ptr PgfConcr -> Ptr PgfCncTree -> CInt -> Ptr GuOut -> Ptr GuExn -> Ptr GuPool -> IO ()
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pgf_lzr_linearize_simple :: Ptr PgfConcr -> Ptr PgfCncTree -> CInt -> Ptr GuOut -> Ptr GuExn -> Ptr GuPool -> IO ()
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foreign import ccall "pgf/pgf.h pgf_lzr_get_table"
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pgf_lzr_get_table :: Ptr PgfConcr -> Ptr PgfCncTree -> Ptr CInt -> Ptr (Ptr CString) -> IO ()
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foreign import ccall "pgf/pgf.h pgf_align_words"
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foreign import ccall "pgf/pgf.h pgf_align_words"
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pgf_align_words :: Ptr PgfConcr -> PgfExpr -> Ptr GuExn -> Ptr GuPool -> IO (Ptr GuSeq)
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pgf_align_words :: Ptr PgfConcr -> PgfExpr -> Ptr GuExn -> Ptr GuPool -> IO (Ptr GuSeq)
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