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Replace Node with its symbol, dropping the source.
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@ -6,8 +6,6 @@ module Data.Syntax.Assignment
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, children
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, Rose(..)
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, RoseF(..)
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, Node(..)
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, AST
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, Result(..)
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, assignAll
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, runAssignment
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@ -52,13 +50,6 @@ children forEach = Children forEach `Then` return
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data Rose a = Rose { roseValue :: !a, roseChildren :: ![Rose a] }
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deriving (Eq, Functor, Show)
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-- | A node in the input AST. We only concern ourselves with its symbol (considered as an element of 'grammar') and source.
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data Node grammar = Node { nodeSymbol :: grammar, nodeSource :: ByteString }
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deriving (Eq, Show)
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-- | An abstract syntax tree.
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type AST grammar = Rose (Node grammar)
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-- | The result of assignment, possibly containing an error.
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data Result a = Result a | Error [Text]
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@ -66,7 +57,7 @@ data Result a = Result a | Error [Text]
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-- | Run an assignment of nodes in a grammar onto terms in a syntax, discarding any unparsed nodes.
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assignAll :: (Symbol grammar, Eq grammar, Show grammar) => Assignment grammar a -> [AST grammar] -> Result a
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assignAll :: (Symbol grammar, Eq grammar, Show grammar) => Assignment grammar a -> [Rose grammar] -> Result a
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assignAll assignment nodes = case runAssignment assignment nodes of
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Result (rest, a) -> case dropAnonymous rest of
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[] -> Result a
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@ -74,13 +65,13 @@ assignAll assignment nodes = case runAssignment assignment nodes of
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Error e -> Error e
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-- | Run an assignment of nodes in a grammar onto terms in a syntax.
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runAssignment :: (Symbol grammar, Eq grammar, Show grammar) => Assignment grammar a -> [AST grammar] -> Result ([AST grammar], a)
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runAssignment :: (Symbol grammar, Eq grammar, Show grammar) => Assignment grammar a -> [Rose grammar] -> Result ([Rose grammar], a)
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runAssignment = iterFreer (\ assignment yield nodes -> case (assignment, dropAnonymous nodes) of
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-- Nullability: some rules, e.g. 'pure a' and 'many a', should match at the end of input. Either side of an alternation may be nullable, ergo Alt can match at the end of input.
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(Alt a b, nodes) -> yield a nodes <|> yield b nodes -- FIXME: Symbol `Alt` Symbol `Alt` Symbol is inefficient, should build and match against an IntMap instead.
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(assignment, node@(Rose Node{..} children) : rest) -> case assignment of
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(assignment, node@(Rose nodeSymbol children) : rest) -> case assignment of
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Symbol symbol -> guard (symbol == nodeSymbol) >> yield () nodes
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Source -> yield nodeSource rest
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Source -> yield "" rest
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Children childAssignment -> assignAll childAssignment children >>= flip yield rest
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_ -> Error ["No rule to match " <> show node]
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(Symbol symbol, []) -> Error [ "Expected " <> show symbol <> " but got end of input." ]
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@ -89,8 +80,8 @@ runAssignment = iterFreer (\ assignment yield nodes -> case (assignment, dropAno
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_ -> Error ["No rule to match at end of input."])
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. fmap ((Result .) . flip (,))
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dropAnonymous :: Symbol grammar => [AST grammar] -> [AST grammar]
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dropAnonymous = dropWhile ((/= Regular) . symbolType . nodeSymbol . roseValue)
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dropAnonymous :: Symbol grammar => [Rose grammar] -> [Rose grammar]
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dropAnonymous = dropWhile ((/= Regular) . symbolType . roseValue)
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instance Alternative (Assignment symbol) where
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@ -46,7 +46,7 @@ treeSitterParser language grammar blob = do
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pure term
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parseRubyToAST :: Source -> IO (A.AST Ruby.Grammar)
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parseRubyToAST :: Source -> IO (A.Rose Ruby.Grammar)
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parseRubyToAST source = do
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document <- ts_document_new
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ts_document_set_language document Ruby.tree_sitter_ruby
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@ -57,19 +57,17 @@ parseRubyToAST source = do
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ts_document_root_node_p document rootPtr
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peek rootPtr)
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ast <- anaM toAST (0, source, root)
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ast <- anaM toAST root
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ts_document_free document
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pure ast
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where toAST :: (Int, Source, Node) -> IO (A.RoseF (A.Node Ruby.Grammar) (Int, Source, Node))
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toAST (offset, source, node@Node{..}) = do
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let range = nodeRange node
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let sliced = Source.slice (offsetRange range (negate offset)) source
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where toAST :: Node -> IO (A.RoseF Ruby.Grammar Node)
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toAST Node{..} = do
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let count = fromIntegral nodeChildCount
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children <- allocaArray count $ \ childNodesPtr -> do
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_ <- with nodeTSNode (\ nodePtr -> ts_node_copy_child_nodes nullPtr nodePtr childNodesPtr (fromIntegral count))
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peekArray count childNodesPtr
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pure $ A.RoseF (A.Node (toEnum (fromIntegral nodeSymbol)) (Source.sourceText sliced)) ((,,) (start range) sliced <$> children)
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pure $ A.RoseF (toEnum (fromIntegral nodeSymbol)) children
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anaM :: (Corecursive t, Monad m, Traversable (Base t)) => (a -> m (Base t a)) -> a -> m t
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anaM g = a where a = pure . embed <=< traverse a <=< g
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