945 lines
31 KiB
Rust
945 lines
31 KiB
Rust
//! Conversions between [`SyntaxNode`] and [`tt::TokenTree`].
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use rustc_hash::FxHashMap;
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use stdx::{always, non_empty_vec::NonEmptyVec};
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use syntax::{
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ast::{self, make::tokens::doc_comment},
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AstToken, Parse, PreorderWithTokens, SmolStr, SyntaxElement, SyntaxKind,
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SyntaxKind::*,
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SyntaxNode, SyntaxToken, SyntaxTreeBuilder, TextRange, TextSize, WalkEvent, T,
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};
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use crate::{
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to_parser_input::to_parser_input,
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tt::{
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self,
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buffer::{Cursor, TokenBuffer},
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},
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tt_iter::TtIter,
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TokenMap,
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};
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#[cfg(test)]
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mod tests;
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/// Convert the syntax node to a `TokenTree` (what macro
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/// will consume).
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pub fn syntax_node_to_token_tree(node: &SyntaxNode) -> (tt::Subtree, TokenMap) {
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let (subtree, token_map, _) = syntax_node_to_token_tree_with_modifications(
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node,
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Default::default(),
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0,
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Default::default(),
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Default::default(),
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);
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(subtree, token_map)
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}
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/// Convert the syntax node to a `TokenTree` (what macro will consume)
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/// with the censored range excluded.
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pub fn syntax_node_to_token_tree_with_modifications(
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node: &SyntaxNode,
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existing_token_map: TokenMap,
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next_id: u32,
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replace: FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
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append: FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
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) -> (tt::Subtree, TokenMap, u32) {
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let global_offset = node.text_range().start();
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let mut c = Converter::new(node, global_offset, existing_token_map, next_id, replace, append);
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let subtree = convert_tokens(&mut c);
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c.id_alloc.map.shrink_to_fit();
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always!(c.replace.is_empty(), "replace: {:?}", c.replace);
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always!(c.append.is_empty(), "append: {:?}", c.append);
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(subtree, c.id_alloc.map, c.id_alloc.next_id)
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}
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#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
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pub struct SyntheticTokenId(pub u32);
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#[derive(Debug, Clone)]
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pub struct SyntheticToken {
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pub kind: SyntaxKind,
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pub text: SmolStr,
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pub range: TextRange,
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pub id: SyntheticTokenId,
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}
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// The following items are what `rustc` macro can be parsed into :
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// link: https://github.com/rust-lang/rust/blob/9ebf47851a357faa4cd97f4b1dc7835f6376e639/src/libsyntax/ext/expand.rs#L141
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// * Expr(P<ast::Expr>) -> token_tree_to_expr
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// * Pat(P<ast::Pat>) -> token_tree_to_pat
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// * Ty(P<ast::Ty>) -> token_tree_to_ty
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// * Stmts(SmallVec<[ast::Stmt; 1]>) -> token_tree_to_stmts
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// * Items(SmallVec<[P<ast::Item>; 1]>) -> token_tree_to_items
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//
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// * TraitItems(SmallVec<[ast::TraitItem; 1]>)
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// * AssocItems(SmallVec<[ast::AssocItem; 1]>)
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// * ForeignItems(SmallVec<[ast::ForeignItem; 1]>
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pub fn token_tree_to_syntax_node(
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tt: &tt::Subtree,
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entry_point: parser::TopEntryPoint,
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) -> (Parse<SyntaxNode>, TokenMap) {
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let buffer = match tt {
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tt::Subtree {
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delimiter: tt::Delimiter { kind: tt::DelimiterKind::Invisible, .. },
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token_trees,
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} => TokenBuffer::from_tokens(token_trees.as_slice()),
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_ => TokenBuffer::from_subtree(tt),
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};
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let parser_input = to_parser_input(&buffer);
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let parser_output = entry_point.parse(&parser_input);
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let mut tree_sink = TtTreeSink::new(buffer.begin());
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for event in parser_output.iter() {
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match event {
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parser::Step::Token { kind, n_input_tokens: n_raw_tokens } => {
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tree_sink.token(kind, n_raw_tokens)
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}
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parser::Step::FloatSplit { ends_in_dot: has_pseudo_dot } => {
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tree_sink.float_split(has_pseudo_dot)
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}
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parser::Step::Enter { kind } => tree_sink.start_node(kind),
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parser::Step::Exit => tree_sink.finish_node(),
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parser::Step::Error { msg } => tree_sink.error(msg.to_string()),
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}
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}
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tree_sink.finish()
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}
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/// Convert a string to a `TokenTree`
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pub fn parse_to_token_tree(text: &str) -> Option<(tt::Subtree, TokenMap)> {
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let lexed = parser::LexedStr::new(text);
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if lexed.errors().next().is_some() {
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return None;
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}
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let mut conv = RawConverter {
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lexed,
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pos: 0,
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id_alloc: TokenIdAlloc {
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map: Default::default(),
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global_offset: TextSize::default(),
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next_id: 0,
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},
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};
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let subtree = convert_tokens(&mut conv);
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Some((subtree, conv.id_alloc.map))
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}
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/// Split token tree with separate expr: $($e:expr)SEP*
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pub fn parse_exprs_with_sep(tt: &tt::Subtree, sep: char) -> Vec<tt::Subtree> {
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if tt.token_trees.is_empty() {
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return Vec::new();
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}
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let mut iter = TtIter::new(tt);
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let mut res = Vec::new();
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while iter.peek_n(0).is_some() {
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let expanded = iter.expect_fragment(parser::PrefixEntryPoint::Expr);
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res.push(match expanded.value {
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None => break,
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Some(tt @ tt::TokenTree::Leaf(_)) => {
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tt::Subtree { delimiter: tt::Delimiter::unspecified(), token_trees: vec![tt] }
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}
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Some(tt::TokenTree::Subtree(tt)) => tt,
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});
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let mut fork = iter.clone();
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if fork.expect_char(sep).is_err() {
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break;
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}
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iter = fork;
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}
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if iter.peek_n(0).is_some() {
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res.push(tt::Subtree {
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delimiter: tt::Delimiter::unspecified(),
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token_trees: iter.cloned().collect(),
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});
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}
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res
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}
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fn convert_tokens<C: TokenConverter>(conv: &mut C) -> tt::Subtree {
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struct StackEntry {
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subtree: tt::Subtree,
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idx: usize,
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open_range: TextRange,
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}
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let entry = StackEntry {
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subtree: tt::Subtree { delimiter: tt::Delimiter::unspecified(), token_trees: vec![] },
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// never used (delimiter is `None`)
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idx: !0,
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open_range: TextRange::empty(TextSize::of('.')),
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};
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let mut stack = NonEmptyVec::new(entry);
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loop {
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let StackEntry { subtree, .. } = stack.last_mut();
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let result = &mut subtree.token_trees;
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let (token, range) = match conv.bump() {
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Some(it) => it,
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None => break,
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};
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let synth_id = token.synthetic_id(conv);
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let kind = token.kind(conv);
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if kind == COMMENT {
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// Since `convert_doc_comment` can fail, we need to peek the next id, so that we can
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// figure out which token id to use for the doc comment, if it is converted successfully.
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let next_id = conv.id_alloc().peek_next_id();
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if let Some(tokens) = conv.convert_doc_comment(&token, next_id) {
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let id = conv.id_alloc().alloc(range, synth_id);
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debug_assert_eq!(id, next_id);
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result.extend(tokens);
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}
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continue;
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}
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let tt = if kind.is_punct() && kind != UNDERSCORE {
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if synth_id.is_none() {
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assert_eq!(range.len(), TextSize::of('.'));
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}
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let expected = match subtree.delimiter.kind {
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tt::DelimiterKind::Parenthesis => Some(T![')']),
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tt::DelimiterKind::Brace => Some(T!['}']),
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tt::DelimiterKind::Bracket => Some(T![']']),
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tt::DelimiterKind::Invisible => None,
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};
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if let Some(expected) = expected {
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if kind == expected {
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if let Some(entry) = stack.pop() {
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conv.id_alloc().close_delim(entry.idx, Some(range));
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stack.last_mut().subtree.token_trees.push(entry.subtree.into());
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}
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continue;
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}
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}
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let delim = match kind {
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T!['('] => Some(tt::DelimiterKind::Parenthesis),
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T!['{'] => Some(tt::DelimiterKind::Brace),
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T!['['] => Some(tt::DelimiterKind::Bracket),
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_ => None,
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};
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if let Some(kind) = delim {
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let (id, idx) = conv.id_alloc().open_delim(range, synth_id);
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let subtree = tt::Subtree {
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delimiter: tt::Delimiter { open: id, close: tt::TokenId::UNSPECIFIED, kind },
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token_trees: vec![],
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};
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stack.push(StackEntry { subtree, idx, open_range: range });
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continue;
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}
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let spacing = match conv.peek().map(|next| next.kind(conv)) {
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Some(kind) if is_single_token_op(kind) => tt::Spacing::Joint,
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_ => tt::Spacing::Alone,
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};
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let char = match token.to_char(conv) {
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Some(c) => c,
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None => {
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panic!("Token from lexer must be single char: token = {token:#?}");
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}
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};
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tt::Leaf::from(tt::Punct {
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char,
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spacing,
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span: conv.id_alloc().alloc(range, synth_id),
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})
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.into()
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} else {
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macro_rules! make_leaf {
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($i:ident) => {
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tt::$i {
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span: conv.id_alloc().alloc(range, synth_id),
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text: token.to_text(conv),
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}
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.into()
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};
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}
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let leaf: tt::Leaf = match kind {
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T![true] | T![false] => make_leaf!(Ident),
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IDENT => make_leaf!(Ident),
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UNDERSCORE => make_leaf!(Ident),
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k if k.is_keyword() => make_leaf!(Ident),
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k if k.is_literal() => make_leaf!(Literal),
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LIFETIME_IDENT => {
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let char_unit = TextSize::of('\'');
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let r = TextRange::at(range.start(), char_unit);
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let apostrophe = tt::Leaf::from(tt::Punct {
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char: '\'',
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spacing: tt::Spacing::Joint,
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span: conv.id_alloc().alloc(r, synth_id),
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});
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result.push(apostrophe.into());
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let r = TextRange::at(range.start() + char_unit, range.len() - char_unit);
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let ident = tt::Leaf::from(tt::Ident {
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text: SmolStr::new(&token.to_text(conv)[1..]),
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span: conv.id_alloc().alloc(r, synth_id),
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});
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result.push(ident.into());
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continue;
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}
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_ => continue,
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};
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leaf.into()
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};
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result.push(tt);
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}
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// If we get here, we've consumed all input tokens.
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// We might have more than one subtree in the stack, if the delimiters are improperly balanced.
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// Merge them so we're left with one.
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while let Some(entry) = stack.pop() {
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let parent = stack.last_mut();
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conv.id_alloc().close_delim(entry.idx, None);
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let leaf: tt::Leaf = tt::Punct {
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span: conv.id_alloc().alloc(entry.open_range, None),
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char: match entry.subtree.delimiter.kind {
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tt::DelimiterKind::Parenthesis => '(',
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tt::DelimiterKind::Brace => '{',
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tt::DelimiterKind::Bracket => '[',
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tt::DelimiterKind::Invisible => '$',
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},
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spacing: tt::Spacing::Alone,
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}
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.into();
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parent.subtree.token_trees.push(leaf.into());
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parent.subtree.token_trees.extend(entry.subtree.token_trees);
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}
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let subtree = stack.into_last().subtree;
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if let [tt::TokenTree::Subtree(first)] = &*subtree.token_trees {
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first.clone()
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} else {
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subtree
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}
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}
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fn is_single_token_op(kind: SyntaxKind) -> bool {
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matches!(
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kind,
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EQ | L_ANGLE
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| R_ANGLE
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| BANG
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| AMP
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| PIPE
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| TILDE
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| AT
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| DOT
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| COMMA
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| SEMICOLON
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| COLON
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| POUND
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| DOLLAR
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| QUESTION
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| PLUS
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| MINUS
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| STAR
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| SLASH
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| PERCENT
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| CARET
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// LIFETIME_IDENT will be split into a sequence of `'` (a single quote) and an
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// identifier.
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| LIFETIME_IDENT
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)
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}
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/// Returns the textual content of a doc comment block as a quoted string
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/// That is, strips leading `///` (or `/**`, etc)
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/// and strips the ending `*/`
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/// And then quote the string, which is needed to convert to `tt::Literal`
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fn doc_comment_text(comment: &ast::Comment) -> SmolStr {
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let prefix_len = comment.prefix().len();
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let mut text = &comment.text()[prefix_len..];
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// Remove ending "*/"
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if comment.kind().shape == ast::CommentShape::Block {
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text = &text[0..text.len() - 2];
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}
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// Quote the string
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// Note that `tt::Literal` expect an escaped string
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let text = format!("\"{}\"", text.escape_debug());
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text.into()
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}
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fn convert_doc_comment(
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token: &syntax::SyntaxToken,
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span: tt::TokenId,
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) -> Option<Vec<tt::TokenTree>> {
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cov_mark::hit!(test_meta_doc_comments);
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let comment = ast::Comment::cast(token.clone())?;
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let doc = comment.kind().doc?;
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// Make `doc="\" Comments\""
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let meta_tkns =
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vec![mk_ident("doc", span), mk_punct('=', span), mk_doc_literal(&comment, span)];
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// Make `#![]`
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let mut token_trees = Vec::with_capacity(3);
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token_trees.push(mk_punct('#', span));
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if let ast::CommentPlacement::Inner = doc {
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token_trees.push(mk_punct('!', span));
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}
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token_trees.push(tt::TokenTree::from(tt::Subtree {
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delimiter: tt::Delimiter { open: span, close: span, kind: tt::DelimiterKind::Bracket },
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token_trees: meta_tkns,
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}));
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return Some(token_trees);
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// Helper functions
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fn mk_ident(s: &str, span: tt::TokenId) -> tt::TokenTree {
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tt::TokenTree::from(tt::Leaf::from(tt::Ident { text: s.into(), span }))
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}
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fn mk_punct(c: char, span: tt::TokenId) -> tt::TokenTree {
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tt::TokenTree::from(tt::Leaf::from(tt::Punct {
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char: c,
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spacing: tt::Spacing::Alone,
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span,
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}))
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}
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fn mk_doc_literal(comment: &ast::Comment, span: tt::TokenId) -> tt::TokenTree {
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let lit = tt::Literal { text: doc_comment_text(comment), span };
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tt::TokenTree::from(tt::Leaf::from(lit))
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}
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}
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struct TokenIdAlloc {
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map: TokenMap,
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global_offset: TextSize,
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next_id: u32,
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}
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impl TokenIdAlloc {
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fn alloc(
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&mut self,
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absolute_range: TextRange,
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synthetic_id: Option<SyntheticTokenId>,
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) -> tt::TokenId {
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let relative_range = absolute_range - self.global_offset;
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let token_id = tt::TokenId(self.next_id);
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self.next_id += 1;
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self.map.insert(token_id, relative_range);
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if let Some(id) = synthetic_id {
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self.map.insert_synthetic(token_id, id);
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}
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token_id
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}
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fn open_delim(
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&mut self,
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open_abs_range: TextRange,
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synthetic_id: Option<SyntheticTokenId>,
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) -> (tt::TokenId, usize) {
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let token_id = tt::TokenId(self.next_id);
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self.next_id += 1;
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let idx = self.map.insert_delim(
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token_id,
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open_abs_range - self.global_offset,
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open_abs_range - self.global_offset,
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);
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if let Some(id) = synthetic_id {
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self.map.insert_synthetic(token_id, id);
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}
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(token_id, idx)
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}
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fn close_delim(&mut self, idx: usize, close_abs_range: Option<TextRange>) {
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match close_abs_range {
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None => {
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self.map.remove_delim(idx);
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}
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Some(close) => {
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self.map.update_close_delim(idx, close - self.global_offset);
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}
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}
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}
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fn peek_next_id(&self) -> tt::TokenId {
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tt::TokenId(self.next_id)
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}
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}
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|
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/// A raw token (straight from lexer) converter
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struct RawConverter<'a> {
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lexed: parser::LexedStr<'a>,
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pos: usize,
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id_alloc: TokenIdAlloc,
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}
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|
|
|
trait SrcToken<Ctx>: std::fmt::Debug {
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fn kind(&self, ctx: &Ctx) -> SyntaxKind;
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fn to_char(&self, ctx: &Ctx) -> Option<char>;
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fn to_text(&self, ctx: &Ctx) -> SmolStr;
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fn synthetic_id(&self, ctx: &Ctx) -> Option<SyntheticTokenId>;
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}
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|
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trait TokenConverter: Sized {
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type Token: SrcToken<Self>;
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|
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fn convert_doc_comment(
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&self,
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token: &Self::Token,
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span: tt::TokenId,
|
|
) -> Option<Vec<tt::TokenTree>>;
|
|
|
|
fn bump(&mut self) -> Option<(Self::Token, TextRange)>;
|
|
|
|
fn peek(&self) -> Option<Self::Token>;
|
|
|
|
fn id_alloc(&mut self) -> &mut TokenIdAlloc;
|
|
}
|
|
|
|
impl<'a> SrcToken<RawConverter<'a>> for usize {
|
|
fn kind(&self, ctx: &RawConverter<'a>) -> SyntaxKind {
|
|
ctx.lexed.kind(*self)
|
|
}
|
|
|
|
fn to_char(&self, ctx: &RawConverter<'a>) -> Option<char> {
|
|
ctx.lexed.text(*self).chars().next()
|
|
}
|
|
|
|
fn to_text(&self, ctx: &RawConverter<'_>) -> SmolStr {
|
|
ctx.lexed.text(*self).into()
|
|
}
|
|
|
|
fn synthetic_id(&self, _ctx: &RawConverter<'a>) -> Option<SyntheticTokenId> {
|
|
None
|
|
}
|
|
}
|
|
|
|
impl<'a> TokenConverter for RawConverter<'a> {
|
|
type Token = usize;
|
|
|
|
fn convert_doc_comment(&self, &token: &usize, span: tt::TokenId) -> Option<Vec<tt::TokenTree>> {
|
|
let text = self.lexed.text(token);
|
|
convert_doc_comment(&doc_comment(text), span)
|
|
}
|
|
|
|
fn bump(&mut self) -> Option<(Self::Token, TextRange)> {
|
|
if self.pos == self.lexed.len() {
|
|
return None;
|
|
}
|
|
let token = self.pos;
|
|
self.pos += 1;
|
|
let range = self.lexed.text_range(token);
|
|
let range = TextRange::new(range.start.try_into().unwrap(), range.end.try_into().unwrap());
|
|
|
|
Some((token, range))
|
|
}
|
|
|
|
fn peek(&self) -> Option<Self::Token> {
|
|
if self.pos == self.lexed.len() {
|
|
return None;
|
|
}
|
|
Some(self.pos)
|
|
}
|
|
|
|
fn id_alloc(&mut self) -> &mut TokenIdAlloc {
|
|
&mut self.id_alloc
|
|
}
|
|
}
|
|
|
|
struct Converter {
|
|
id_alloc: TokenIdAlloc,
|
|
current: Option<SyntaxToken>,
|
|
current_synthetic: Vec<SyntheticToken>,
|
|
preorder: PreorderWithTokens,
|
|
replace: FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
|
|
append: FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
|
|
range: TextRange,
|
|
punct_offset: Option<(SyntaxToken, TextSize)>,
|
|
}
|
|
|
|
impl Converter {
|
|
fn new(
|
|
node: &SyntaxNode,
|
|
global_offset: TextSize,
|
|
existing_token_map: TokenMap,
|
|
next_id: u32,
|
|
mut replace: FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
|
|
mut append: FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
|
|
) -> Converter {
|
|
let range = node.text_range();
|
|
let mut preorder = node.preorder_with_tokens();
|
|
let (first, synthetic) = Self::next_token(&mut preorder, &mut replace, &mut append);
|
|
Converter {
|
|
id_alloc: { TokenIdAlloc { map: existing_token_map, global_offset, next_id } },
|
|
current: first,
|
|
current_synthetic: synthetic,
|
|
preorder,
|
|
range,
|
|
replace,
|
|
append,
|
|
punct_offset: None,
|
|
}
|
|
}
|
|
|
|
fn next_token(
|
|
preorder: &mut PreorderWithTokens,
|
|
replace: &mut FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
|
|
append: &mut FxHashMap<SyntaxElement, Vec<SyntheticToken>>,
|
|
) -> (Option<SyntaxToken>, Vec<SyntheticToken>) {
|
|
while let Some(ev) = preorder.next() {
|
|
let ele = match ev {
|
|
WalkEvent::Enter(ele) => ele,
|
|
WalkEvent::Leave(ele) => {
|
|
if let Some(mut v) = append.remove(&ele) {
|
|
if !v.is_empty() {
|
|
v.reverse();
|
|
return (None, v);
|
|
}
|
|
}
|
|
continue;
|
|
}
|
|
};
|
|
if let Some(mut v) = replace.remove(&ele) {
|
|
preorder.skip_subtree();
|
|
if !v.is_empty() {
|
|
v.reverse();
|
|
return (None, v);
|
|
}
|
|
}
|
|
match ele {
|
|
SyntaxElement::Token(t) => return (Some(t), Vec::new()),
|
|
_ => {}
|
|
}
|
|
}
|
|
(None, Vec::new())
|
|
}
|
|
}
|
|
|
|
#[derive(Debug)]
|
|
enum SynToken {
|
|
Ordinary(SyntaxToken),
|
|
// FIXME is this supposed to be `Punct`?
|
|
Punch(SyntaxToken, TextSize),
|
|
Synthetic(SyntheticToken),
|
|
}
|
|
|
|
impl SynToken {
|
|
fn token(&self) -> Option<&SyntaxToken> {
|
|
match self {
|
|
SynToken::Ordinary(it) | SynToken::Punch(it, _) => Some(it),
|
|
SynToken::Synthetic(_) => None,
|
|
}
|
|
}
|
|
}
|
|
|
|
impl SrcToken<Converter> for SynToken {
|
|
fn kind(&self, ctx: &Converter) -> SyntaxKind {
|
|
match self {
|
|
SynToken::Ordinary(token) => token.kind(),
|
|
SynToken::Punch(..) => SyntaxKind::from_char(self.to_char(ctx).unwrap()).unwrap(),
|
|
SynToken::Synthetic(token) => token.kind,
|
|
}
|
|
}
|
|
fn to_char(&self, _ctx: &Converter) -> Option<char> {
|
|
match self {
|
|
SynToken::Ordinary(_) => None,
|
|
SynToken::Punch(it, i) => it.text().chars().nth((*i).into()),
|
|
SynToken::Synthetic(token) if token.text.len() == 1 => token.text.chars().next(),
|
|
SynToken::Synthetic(_) => None,
|
|
}
|
|
}
|
|
fn to_text(&self, _ctx: &Converter) -> SmolStr {
|
|
match self {
|
|
SynToken::Ordinary(token) => token.text().into(),
|
|
SynToken::Punch(token, _) => token.text().into(),
|
|
SynToken::Synthetic(token) => token.text.clone(),
|
|
}
|
|
}
|
|
|
|
fn synthetic_id(&self, _ctx: &Converter) -> Option<SyntheticTokenId> {
|
|
match self {
|
|
SynToken::Synthetic(token) => Some(token.id),
|
|
_ => None,
|
|
}
|
|
}
|
|
}
|
|
|
|
impl TokenConverter for Converter {
|
|
type Token = SynToken;
|
|
fn convert_doc_comment(
|
|
&self,
|
|
token: &Self::Token,
|
|
span: tt::TokenId,
|
|
) -> Option<Vec<tt::TokenTree>> {
|
|
convert_doc_comment(token.token()?, span)
|
|
}
|
|
|
|
fn bump(&mut self) -> Option<(Self::Token, TextRange)> {
|
|
if let Some((punct, offset)) = self.punct_offset.clone() {
|
|
if usize::from(offset) + 1 < punct.text().len() {
|
|
let offset = offset + TextSize::of('.');
|
|
let range = punct.text_range();
|
|
self.punct_offset = Some((punct.clone(), offset));
|
|
let range = TextRange::at(range.start() + offset, TextSize::of('.'));
|
|
return Some((SynToken::Punch(punct, offset), range));
|
|
}
|
|
}
|
|
|
|
if let Some(synth_token) = self.current_synthetic.pop() {
|
|
if self.current_synthetic.is_empty() {
|
|
let (new_current, new_synth) =
|
|
Self::next_token(&mut self.preorder, &mut self.replace, &mut self.append);
|
|
self.current = new_current;
|
|
self.current_synthetic = new_synth;
|
|
}
|
|
let range = synth_token.range;
|
|
return Some((SynToken::Synthetic(synth_token), range));
|
|
}
|
|
|
|
let curr = self.current.clone()?;
|
|
if !self.range.contains_range(curr.text_range()) {
|
|
return None;
|
|
}
|
|
let (new_current, new_synth) =
|
|
Self::next_token(&mut self.preorder, &mut self.replace, &mut self.append);
|
|
self.current = new_current;
|
|
self.current_synthetic = new_synth;
|
|
let token = if curr.kind().is_punct() {
|
|
self.punct_offset = Some((curr.clone(), 0.into()));
|
|
let range = curr.text_range();
|
|
let range = TextRange::at(range.start(), TextSize::of('.'));
|
|
(SynToken::Punch(curr, 0.into()), range)
|
|
} else {
|
|
self.punct_offset = None;
|
|
let range = curr.text_range();
|
|
(SynToken::Ordinary(curr), range)
|
|
};
|
|
|
|
Some(token)
|
|
}
|
|
|
|
fn peek(&self) -> Option<Self::Token> {
|
|
if let Some((punct, mut offset)) = self.punct_offset.clone() {
|
|
offset += TextSize::of('.');
|
|
if usize::from(offset) < punct.text().len() {
|
|
return Some(SynToken::Punch(punct, offset));
|
|
}
|
|
}
|
|
|
|
if let Some(synth_token) = self.current_synthetic.last() {
|
|
return Some(SynToken::Synthetic(synth_token.clone()));
|
|
}
|
|
|
|
let curr = self.current.clone()?;
|
|
if !self.range.contains_range(curr.text_range()) {
|
|
return None;
|
|
}
|
|
|
|
let token = if curr.kind().is_punct() {
|
|
SynToken::Punch(curr, 0.into())
|
|
} else {
|
|
SynToken::Ordinary(curr)
|
|
};
|
|
Some(token)
|
|
}
|
|
|
|
fn id_alloc(&mut self) -> &mut TokenIdAlloc {
|
|
&mut self.id_alloc
|
|
}
|
|
}
|
|
|
|
struct TtTreeSink<'a> {
|
|
buf: String,
|
|
cursor: Cursor<'a>,
|
|
open_delims: FxHashMap<tt::TokenId, TextSize>,
|
|
text_pos: TextSize,
|
|
inner: SyntaxTreeBuilder,
|
|
token_map: TokenMap,
|
|
}
|
|
|
|
impl<'a> TtTreeSink<'a> {
|
|
fn new(cursor: Cursor<'a>) -> Self {
|
|
TtTreeSink {
|
|
buf: String::new(),
|
|
cursor,
|
|
open_delims: FxHashMap::default(),
|
|
text_pos: 0.into(),
|
|
inner: SyntaxTreeBuilder::default(),
|
|
token_map: TokenMap::default(),
|
|
}
|
|
}
|
|
|
|
fn finish(mut self) -> (Parse<SyntaxNode>, TokenMap) {
|
|
self.token_map.shrink_to_fit();
|
|
(self.inner.finish(), self.token_map)
|
|
}
|
|
}
|
|
|
|
fn delim_to_str(d: tt::DelimiterKind, closing: bool) -> Option<&'static str> {
|
|
let texts = match d {
|
|
tt::DelimiterKind::Parenthesis => "()",
|
|
tt::DelimiterKind::Brace => "{}",
|
|
tt::DelimiterKind::Bracket => "[]",
|
|
tt::DelimiterKind::Invisible => return None,
|
|
};
|
|
|
|
let idx = closing as usize;
|
|
Some(&texts[idx..texts.len() - (1 - idx)])
|
|
}
|
|
|
|
impl<'a> TtTreeSink<'a> {
|
|
/// Parses a float literal as if it was a one to two name ref nodes with a dot inbetween.
|
|
/// This occurs when a float literal is used as a field access.
|
|
fn float_split(&mut self, has_pseudo_dot: bool) {
|
|
let (text, _span) = match self.cursor.token_tree() {
|
|
Some(tt::buffer::TokenTreeRef::Leaf(tt::Leaf::Literal(lit), _)) => {
|
|
(lit.text.as_str(), lit.span)
|
|
}
|
|
_ => unreachable!(),
|
|
};
|
|
match text.split_once('.') {
|
|
Some((left, right)) => {
|
|
assert!(!left.is_empty());
|
|
self.inner.start_node(SyntaxKind::NAME_REF);
|
|
self.inner.token(SyntaxKind::INT_NUMBER, left);
|
|
self.inner.finish_node();
|
|
|
|
// here we move the exit up, the original exit has been deleted in process
|
|
self.inner.finish_node();
|
|
|
|
self.inner.token(SyntaxKind::DOT, ".");
|
|
|
|
if has_pseudo_dot {
|
|
assert!(right.is_empty(), "{left}.{right}");
|
|
} else {
|
|
self.inner.start_node(SyntaxKind::NAME_REF);
|
|
self.inner.token(SyntaxKind::INT_NUMBER, right);
|
|
self.inner.finish_node();
|
|
|
|
// the parser creates an unbalanced start node, we are required to close it here
|
|
self.inner.finish_node();
|
|
}
|
|
}
|
|
None => unreachable!(),
|
|
}
|
|
self.cursor = self.cursor.bump();
|
|
}
|
|
|
|
fn token(&mut self, kind: SyntaxKind, mut n_tokens: u8) {
|
|
if kind == LIFETIME_IDENT {
|
|
n_tokens = 2;
|
|
}
|
|
|
|
let mut last = self.cursor;
|
|
for _ in 0..n_tokens {
|
|
let tmp: u8;
|
|
if self.cursor.eof() {
|
|
break;
|
|
}
|
|
last = self.cursor;
|
|
let text: &str = loop {
|
|
break match self.cursor.token_tree() {
|
|
Some(tt::buffer::TokenTreeRef::Leaf(leaf, _)) => {
|
|
// Mark the range if needed
|
|
let (text, id) = match leaf {
|
|
tt::Leaf::Ident(ident) => (ident.text.as_str(), ident.span),
|
|
tt::Leaf::Punct(punct) => {
|
|
assert!(punct.char.is_ascii());
|
|
tmp = punct.char as u8;
|
|
(
|
|
std::str::from_utf8(std::slice::from_ref(&tmp)).unwrap(),
|
|
punct.span,
|
|
)
|
|
}
|
|
tt::Leaf::Literal(lit) => (lit.text.as_str(), lit.span),
|
|
};
|
|
let range = TextRange::at(self.text_pos, TextSize::of(text));
|
|
self.token_map.insert(id, range);
|
|
self.cursor = self.cursor.bump();
|
|
text
|
|
}
|
|
Some(tt::buffer::TokenTreeRef::Subtree(subtree, _)) => {
|
|
self.cursor = self.cursor.subtree().unwrap();
|
|
match delim_to_str(subtree.delimiter.kind, false) {
|
|
Some(it) => {
|
|
self.open_delims.insert(subtree.delimiter.open, self.text_pos);
|
|
it
|
|
}
|
|
None => continue,
|
|
}
|
|
}
|
|
None => {
|
|
let parent = self.cursor.end().unwrap();
|
|
self.cursor = self.cursor.bump();
|
|
match delim_to_str(parent.delimiter.kind, true) {
|
|
Some(it) => {
|
|
if let Some(open_delim) =
|
|
self.open_delims.get(&parent.delimiter.open)
|
|
{
|
|
let open_range = TextRange::at(*open_delim, TextSize::of('('));
|
|
let close_range =
|
|
TextRange::at(self.text_pos, TextSize::of('('));
|
|
self.token_map.insert_delim(
|
|
parent.delimiter.open,
|
|
open_range,
|
|
close_range,
|
|
);
|
|
}
|
|
it
|
|
}
|
|
None => continue,
|
|
}
|
|
}
|
|
};
|
|
};
|
|
self.buf += text;
|
|
self.text_pos += TextSize::of(text);
|
|
}
|
|
|
|
self.inner.token(kind, self.buf.as_str());
|
|
self.buf.clear();
|
|
// Add whitespace between adjoint puncts
|
|
let next = last.bump();
|
|
if let (
|
|
Some(tt::buffer::TokenTreeRef::Leaf(tt::Leaf::Punct(curr), _)),
|
|
Some(tt::buffer::TokenTreeRef::Leaf(tt::Leaf::Punct(next), _)),
|
|
) = (last.token_tree(), next.token_tree())
|
|
{
|
|
// Note: We always assume the semi-colon would be the last token in
|
|
// other parts of RA such that we don't add whitespace here.
|
|
//
|
|
// When `next` is a `Punct` of `'`, that's a part of a lifetime identifier so we don't
|
|
// need to add whitespace either.
|
|
if curr.spacing == tt::Spacing::Alone && curr.char != ';' && next.char != '\'' {
|
|
self.inner.token(WHITESPACE, " ");
|
|
self.text_pos += TextSize::of(' ');
|
|
}
|
|
}
|
|
}
|
|
|
|
fn start_node(&mut self, kind: SyntaxKind) {
|
|
self.inner.start_node(kind);
|
|
}
|
|
|
|
fn finish_node(&mut self) {
|
|
self.inner.finish_node();
|
|
}
|
|
|
|
fn error(&mut self, error: String) {
|
|
self.inner.error(error, self.text_pos)
|
|
}
|
|
}
|