284 lines
6.9 KiB
Rust
284 lines
6.9 KiB
Rust
use hir::Semantics;
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use ra_ide_db::RootDatabase;
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use ra_syntax::{
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algo::{find_node_at_offset, SyntaxRewriter},
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ast, AstNode, NodeOrToken, SyntaxKind,
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SyntaxKind::*,
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SyntaxNode, WalkEvent, T,
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};
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use crate::FilePosition;
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pub struct ExpandedMacro {
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pub name: String,
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pub expansion: String,
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}
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// Feature: Expand Macro Recursively
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//
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// Shows the full macro expansion of the macro at current cursor.
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//
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// |===
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// | Editor | Action Name
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//
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// | VS Code | **Rust Analyzer: Expand macro recursively**
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// |===
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pub(crate) fn expand_macro(db: &RootDatabase, position: FilePosition) -> Option<ExpandedMacro> {
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let sema = Semantics::new(db);
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let file = sema.parse(position.file_id);
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let name_ref = find_node_at_offset::<ast::NameRef>(file.syntax(), position.offset)?;
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let mac = name_ref.syntax().ancestors().find_map(ast::MacroCall::cast)?;
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let expanded = expand_macro_recur(&sema, &mac)?;
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// FIXME:
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// macro expansion may lose all white space information
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// But we hope someday we can use ra_fmt for that
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let expansion = insert_whitespaces(expanded);
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Some(ExpandedMacro { name: name_ref.text().to_string(), expansion })
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}
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fn expand_macro_recur(
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sema: &Semantics<RootDatabase>,
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macro_call: &ast::MacroCall,
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) -> Option<SyntaxNode> {
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let mut expanded = sema.expand(macro_call)?;
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let children = expanded.descendants().filter_map(ast::MacroCall::cast);
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let mut rewriter = SyntaxRewriter::default();
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for child in children.into_iter() {
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if let Some(new_node) = expand_macro_recur(sema, &child) {
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// Replace the whole node if it is root
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// `replace_descendants` will not replace the parent node
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// but `SyntaxNode::descendants include itself
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if expanded == *child.syntax() {
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expanded = new_node;
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} else {
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rewriter.replace(child.syntax(), &new_node)
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}
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}
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}
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let res = rewriter.rewrite(&expanded);
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Some(res)
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}
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// FIXME: It would also be cool to share logic here and in the mbe tests,
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// which are pretty unreadable at the moment.
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fn insert_whitespaces(syn: SyntaxNode) -> String {
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let mut res = String::new();
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let mut token_iter = syn
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.preorder_with_tokens()
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.filter_map(|event| {
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if let WalkEvent::Enter(NodeOrToken::Token(token)) = event {
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Some(token)
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} else {
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None
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}
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})
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.peekable();
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let mut indent = 0;
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let mut last: Option<SyntaxKind> = None;
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while let Some(token) = token_iter.next() {
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let mut is_next = |f: fn(SyntaxKind) -> bool, default| -> bool {
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token_iter.peek().map(|it| f(it.kind())).unwrap_or(default)
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};
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let is_last =
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|f: fn(SyntaxKind) -> bool, default| -> bool { last.map(f).unwrap_or(default) };
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res += &match token.kind() {
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k if is_text(k) && is_next(|it| !it.is_punct(), true) => token.text().to_string() + " ",
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L_CURLY if is_next(|it| it != R_CURLY, true) => {
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indent += 1;
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let leading_space = if is_last(is_text, false) { " " } else { "" };
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format!("{}{{\n{}", leading_space, " ".repeat(indent))
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}
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R_CURLY if is_last(|it| it != L_CURLY, true) => {
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indent = indent.saturating_sub(1);
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format!("\n{}}}", " ".repeat(indent))
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}
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R_CURLY => format!("}}\n{}", " ".repeat(indent)),
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T![;] => format!(";\n{}", " ".repeat(indent)),
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T![->] => " -> ".to_string(),
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T![=] => " = ".to_string(),
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T![=>] => " => ".to_string(),
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_ => token.text().to_string(),
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};
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last = Some(token.kind());
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}
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return res;
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fn is_text(k: SyntaxKind) -> bool {
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k.is_keyword() || k.is_literal() || k == IDENT
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}
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}
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#[cfg(test)]
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mod tests {
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use expect::{expect, Expect};
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use crate::mock_analysis::analysis_and_position;
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fn check(ra_fixture: &str, expect: Expect) {
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let (analysis, pos) = analysis_and_position(ra_fixture);
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let expansion = analysis.expand_macro(pos).unwrap().unwrap();
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let actual = format!("{}\n{}", expansion.name, expansion.expansion);
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expect.assert_eq(&actual);
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}
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#[test]
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fn macro_expand_recursive_expansion() {
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check(
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r#"
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macro_rules! bar {
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() => { fn b() {} }
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}
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macro_rules! foo {
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() => { bar!(); }
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}
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macro_rules! baz {
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() => { foo!(); }
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}
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f<|>oo!();
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"#,
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expect![[r#"
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foo
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fn b(){}
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"#]],
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);
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}
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#[test]
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fn macro_expand_multiple_lines() {
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check(
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r#"
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macro_rules! foo {
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() => {
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fn some_thing() -> u32 {
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let a = 0;
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a + 10
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}
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}
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}
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f<|>oo!();
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"#,
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expect![[r#"
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foo
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fn some_thing() -> u32 {
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let a = 0;
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a+10
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}"#]],
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);
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}
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#[test]
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fn macro_expand_match_ast() {
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check(
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r#"
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macro_rules! match_ast {
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(match $node:ident { $($tt:tt)* }) => { match_ast!(match ($node) { $($tt)* }) };
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(match ($node:expr) {
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$( ast::$ast:ident($it:ident) => $res:block, )*
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_ => $catch_all:expr $(,)?
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}) => {{
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$( if let Some($it) = ast::$ast::cast($node.clone()) $res else )*
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{ $catch_all }
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}};
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}
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fn main() {
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mat<|>ch_ast! {
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match container {
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ast::TraitDef(it) => {},
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ast::ImplDef(it) => {},
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_ => { continue },
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}
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}
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}
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"#,
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expect![[r#"
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match_ast
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{
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if let Some(it) = ast::TraitDef::cast(container.clone()){}
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else if let Some(it) = ast::ImplDef::cast(container.clone()){}
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else {
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{
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continue
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}
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}
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}"#]],
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);
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}
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#[test]
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fn macro_expand_match_ast_inside_let_statement() {
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check(
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r#"
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macro_rules! match_ast {
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(match $node:ident { $($tt:tt)* }) => { match_ast!(match ($node) { $($tt)* }) };
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(match ($node:expr) {}) => {{}};
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}
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fn main() {
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let p = f(|it| {
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let res = mat<|>ch_ast! { match c {}};
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Some(res)
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})?;
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}
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"#,
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expect![[r#"
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match_ast
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{}
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"#]],
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);
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}
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#[test]
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fn macro_expand_inner_macro_fail_to_expand() {
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check(
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r#"
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macro_rules! bar {
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(BAD) => {};
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}
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macro_rules! foo {
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() => {bar!()};
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}
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fn main() {
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let res = fo<|>o!();
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}
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"#,
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expect![[r#"
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foo
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"#]],
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);
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}
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#[test]
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fn macro_expand_with_dollar_crate() {
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check(
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r#"
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#[macro_export]
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macro_rules! bar {
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() => {0};
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}
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macro_rules! foo {
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() => {$crate::bar!()};
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}
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fn main() {
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let res = fo<|>o!();
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}
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"#,
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expect![[r#"
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foo
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0 "#]],
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);
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}
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}
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