rust/crates/ra_ide/src/extend_selection.rs

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//! FIXME: write short doc here
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use ra_db::SourceDatabase;
use ra_syntax::{
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algo::find_covering_element,
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ast::{self, AstNode, AstToken},
Direction, NodeOrToken, SyntaxElement,
SyntaxKind::{self, *},
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SyntaxNode, SyntaxToken, TextRange, TextUnit, TokenAtOffset, T,
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};
use crate::{db::RootDatabase, FileRange};
use hir::{db::AstDatabase, InFile};
use itertools::Itertools;
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// FIXME: restore macro support
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pub(crate) fn extend_selection(db: &RootDatabase, frange: FileRange) -> TextRange {
let src = db.parse(frange.file_id).tree();
let root = InFile::new(frange.file_id.into(), src.syntax());
try_extend_selection(db, root, frange.range).unwrap_or(frange.range)
}
fn try_extend_selection(
db: &RootDatabase,
root: InFile<&SyntaxNode>,
range: TextRange,
) -> Option<TextRange> {
let string_kinds = [COMMENT, STRING, RAW_STRING, BYTE_STRING, RAW_BYTE_STRING];
let list_kinds = [
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RECORD_FIELD_PAT_LIST,
MATCH_ARM_LIST,
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RECORD_FIELD_DEF_LIST,
TUPLE_FIELD_DEF_LIST,
RECORD_FIELD_LIST,
ENUM_VARIANT_LIST,
USE_TREE_LIST,
TYPE_PARAM_LIST,
TYPE_ARG_LIST,
TYPE_BOUND_LIST,
PARAM_LIST,
ARG_LIST,
ARRAY_EXPR,
TUPLE_EXPR,
TUPLE_TYPE,
WHERE_CLAUSE,
];
if range.is_empty() {
let offset = range.start();
let mut leaves = root.value.token_at_offset(offset);
if leaves.clone().all(|it| it.kind() == WHITESPACE) {
return Some(extend_ws(root.value, leaves.next()?, offset));
}
let leaf_range = match leaves {
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TokenAtOffset::None => return None,
TokenAtOffset::Single(l) => {
if string_kinds.contains(&l.kind()) {
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extend_single_word_in_comment_or_string(&l, offset)
.unwrap_or_else(|| l.text_range())
} else {
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l.text_range()
}
}
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TokenAtOffset::Between(l, r) => pick_best(l, r).text_range(),
};
return Some(leaf_range);
};
let node = match find_covering_element(root.value, range) {
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NodeOrToken::Token(token) => {
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if token.text_range() != range {
return Some(token.text_range());
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}
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if let Some(comment) = ast::Comment::cast(token.clone()) {
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if let Some(range) = extend_comments(comment) {
return Some(range);
}
}
token.parent()
}
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NodeOrToken::Node(node) => node,
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};
// if we are in single token_tree, we maybe live in macro or attr
if node.kind() == TOKEN_TREE {
if let Some(macro_call) = node.ancestors().find_map(ast::MacroCall::cast) {
if let Some(range) = extend_tokens_from_range(db, &root, macro_call, range) {
return Some(range);
}
}
}
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if node.text_range() != range {
return Some(node.text_range());
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}
// Using shallowest node with same range allows us to traverse siblings.
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let node = node.ancestors().take_while(|n| n.text_range() == node.text_range()).last().unwrap();
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if node.parent().map(|n| list_kinds.contains(&n.kind())) == Some(true) {
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if let Some(range) = extend_list_item(&node) {
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return Some(range);
}
}
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node.parent().map(|it| it.text_range())
}
fn extend_tokens_from_range(
db: &RootDatabase,
root: &InFile<&SyntaxNode>,
macro_call: ast::MacroCall,
original_range: TextRange,
) -> Option<TextRange> {
let analyzer = hir::SourceAnalyzer::new(db, root.clone(), None);
let expansion = analyzer.expand(db, root.with_value(&macro_call))?;
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// compute original mapped token range
let range = macro_call
.syntax()
.descendants_with_tokens()
.filter_map(|n| match n {
NodeOrToken::Token(token) if token.text_range().is_subrange(&original_range) => {
expansion
.map_token_down(db, root.with_value(&token))
.map(|node| node.value.text_range())
}
_ => None,
})
.fold1(|x, y| union_range(x, y))?;
let src = db.parse_or_expand(expansion.file_id())?;
let parent = shallow_node(&find_covering_element(&src, range))?.parent()?;
// compute parent mapped token range
let range = macro_call
.syntax()
.descendants_with_tokens()
.filter_map(|n| match n {
NodeOrToken::Token(token) => {
expansion.map_token_down(db, root.with_value(&token)).and_then(|node| {
if node.value.text_range().is_subrange(&parent.text_range()) {
Some(token.text_range())
} else {
None
}
})
}
_ => None,
})
.fold1(|x, y| union_range(x, y))?;
if original_range.is_subrange(&range) && original_range != range {
Some(range)
} else {
None
}
}
fn union_range(range: TextRange, r: TextRange) -> TextRange {
let start = range.start().min(r.start());
let end = range.end().max(r.end());
TextRange::from_to(start, end)
}
fn shallow_node(node: &SyntaxElement) -> Option<SyntaxNode> {
node.ancestors().take_while(|n| n.text_range() == node.text_range()).last()
}
fn extend_single_word_in_comment_or_string(
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leaf: &SyntaxToken,
offset: TextUnit,
) -> Option<TextRange> {
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let text: &str = leaf.text();
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let cursor_position: u32 = (offset - leaf.text_range().start()).into();
let (before, after) = text.split_at(cursor_position as usize);
fn non_word_char(c: char) -> bool {
!(c.is_alphanumeric() || c == '_')
}
let start_idx = before.rfind(non_word_char)? as u32;
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let end_idx = after.find(non_word_char).unwrap_or_else(|| after.len()) as u32;
let from: TextUnit = (start_idx + 1).into();
let to: TextUnit = (cursor_position + end_idx).into();
let range = TextRange::from_to(from, to);
if range.is_empty() {
None
} else {
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Some(range + leaf.text_range().start())
}
}
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fn extend_ws(root: &SyntaxNode, ws: SyntaxToken, offset: TextUnit) -> TextRange {
let ws_text = ws.text();
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let suffix = TextRange::from_to(offset, ws.text_range().end()) - ws.text_range().start();
let prefix = TextRange::from_to(ws.text_range().start(), offset) - ws.text_range().start();
let ws_suffix = &ws_text.as_str()[suffix];
let ws_prefix = &ws_text.as_str()[prefix];
if ws_text.contains('\n') && !ws_suffix.contains('\n') {
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if let Some(node) = ws.next_sibling_or_token() {
let start = match ws_prefix.rfind('\n') {
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Some(idx) => ws.text_range().start() + TextUnit::from((idx + 1) as u32),
None => node.text_range().start(),
};
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let end = if root.text().char_at(node.text_range().end()) == Some('\n') {
node.text_range().end() + TextUnit::of_char('\n')
} else {
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node.text_range().end()
};
return TextRange::from_to(start, end);
}
}
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ws.text_range()
}
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fn pick_best(l: SyntaxToken, r: SyntaxToken) -> SyntaxToken {
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return if priority(&r) > priority(&l) { r } else { l };
fn priority(n: &SyntaxToken) -> usize {
match n.kind() {
WHITESPACE => 0,
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IDENT | T![self] | T![super] | T![crate] | LIFETIME => 2,
_ => 1,
}
}
}
/// Extend list item selection to include nearby delimiter and whitespace.
fn extend_list_item(node: &SyntaxNode) -> Option<TextRange> {
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fn is_single_line_ws(node: &SyntaxToken) -> bool {
node.kind() == WHITESPACE && !node.text().contains('\n')
}
fn nearby_delimiter(
delimiter_kind: SyntaxKind,
node: &SyntaxNode,
dir: Direction,
) -> Option<SyntaxToken> {
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node.siblings_with_tokens(dir)
.skip(1)
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.skip_while(|node| match node {
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NodeOrToken::Node(_) => false,
NodeOrToken::Token(it) => is_single_line_ws(it),
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})
.next()
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.and_then(|it| it.into_token())
.filter(|node| node.kind() == delimiter_kind)
}
let delimiter = match node.kind() {
TYPE_BOUND => T![+],
_ => T![,],
};
if let Some(delimiter_node) = nearby_delimiter(delimiter, node, Direction::Next) {
// Include any following whitespace when delimiter is after list item.
let final_node = delimiter_node
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.next_sibling_or_token()
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.and_then(|it| it.into_token())
.filter(|node| is_single_line_ws(node))
.unwrap_or(delimiter_node);
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return Some(TextRange::from_to(node.text_range().start(), final_node.text_range().end()));
}
if let Some(delimiter_node) = nearby_delimiter(delimiter, node, Direction::Prev) {
return Some(TextRange::from_to(
delimiter_node.text_range().start(),
node.text_range().end(),
));
}
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None
}
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fn extend_comments(comment: ast::Comment) -> Option<TextRange> {
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let prev = adj_comments(&comment, Direction::Prev);
let next = adj_comments(&comment, Direction::Next);
if prev != next {
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Some(TextRange::from_to(
prev.syntax().text_range().start(),
next.syntax().text_range().end(),
))
} else {
None
}
}
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fn adj_comments(comment: &ast::Comment, dir: Direction) -> ast::Comment {
let mut res = comment.clone();
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for element in comment.syntax().siblings_with_tokens(dir) {
let token = match element.as_token() {
None => break,
Some(token) => token,
};
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if let Some(c) = ast::Comment::cast(token.clone()) {
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res = c
} else if token.kind() != WHITESPACE || token.text().contains("\n\n") {
break;
}
}
res
}
#[cfg(test)]
mod tests {
use super::*;
use crate::mock_analysis::single_file;
use test_utils::extract_offset;
fn do_check(before: &str, afters: &[&str]) {
let (cursor, before) = extract_offset(before);
let (analysis, file_id) = single_file(&before);
let range = TextRange::offset_len(cursor, 0.into());
let mut frange = FileRange { file_id: file_id, range };
for &after in afters {
frange.range = analysis.extend_selection(frange).unwrap();
let actual = &before[frange.range];
assert_eq!(after, actual);
}
}
#[test]
fn test_extend_selection_arith() {
do_check(r#"fn foo() { <|>1 + 1 }"#, &["1", "1 + 1", "{ 1 + 1 }"]);
}
#[test]
fn test_extend_selection_list() {
do_check(r#"fn foo(<|>x: i32) {}"#, &["x", "x: i32"]);
do_check(r#"fn foo(<|>x: i32, y: i32) {}"#, &["x", "x: i32", "x: i32, "]);
do_check(r#"fn foo(<|>x: i32,y: i32) {}"#, &["x", "x: i32", "x: i32,", "(x: i32,y: i32)"]);
do_check(r#"fn foo(x: i32, <|>y: i32) {}"#, &["y", "y: i32", ", y: i32"]);
do_check(r#"fn foo(x: i32, <|>y: i32, ) {}"#, &["y", "y: i32", "y: i32, "]);
do_check(r#"fn foo(x: i32,<|>y: i32) {}"#, &["y", "y: i32", ",y: i32"]);
do_check(r#"const FOO: [usize; 2] = [ 22<|> , 33];"#, &["22", "22 , "]);
do_check(r#"const FOO: [usize; 2] = [ 22 , 33<|>];"#, &["33", ", 33"]);
do_check(r#"const FOO: [usize; 2] = [ 22 , 33<|> ,];"#, &["33", "33 ,", "[ 22 , 33 ,]"]);
do_check(r#"fn main() { (1, 2<|>) }"#, &["2", ", 2", "(1, 2)"]);
do_check(
r#"
const FOO: [usize; 2] = [
22,
<|>33,
]"#,
&["33", "33,"],
);
do_check(
r#"
const FOO: [usize; 2] = [
22
, 33<|>,
]"#,
&["33", "33,"],
);
}
#[test]
fn test_extend_selection_start_of_the_line() {
do_check(
r#"
impl S {
<|> fn foo() {
}
}"#,
&[" fn foo() {\n\n }\n"],
);
}
#[test]
fn test_extend_selection_doc_comments() {
do_check(
r#"
struct A;
/// bla
/// bla
struct B {
<|>
}
"#,
&["\n \n", "{\n \n}", "/// bla\n/// bla\nstruct B {\n \n}"],
)
}
#[test]
fn test_extend_selection_comments() {
do_check(
r#"
fn bar(){}
// fn foo() {
// 1 + <|>1
// }
// fn foo(){}
"#,
&["1", "// 1 + 1", "// fn foo() {\n// 1 + 1\n// }"],
);
do_check(
r#"
// #[derive(Debug, Clone, Copy, PartialEq, Eq)]
// pub enum Direction {
// <|> Next,
// Prev
// }
"#,
&[
"// Next,",
"// #[derive(Debug, Clone, Copy, PartialEq, Eq)]\n// pub enum Direction {\n// Next,\n// Prev\n// }",
],
);
do_check(
r#"
/*
foo
_bar1<|>*/
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"#,
&["_bar1", "/*\nfoo\n_bar1*/"],
);
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do_check(r#"//!<|>foo_2 bar"#, &["foo_2", "//!foo_2 bar"]);
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do_check(r#"/<|>/foo bar"#, &["//foo bar"]);
}
#[test]
fn test_extend_selection_prefer_idents() {
do_check(
r#"
fn main() { foo<|>+bar;}
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"#,
&["foo", "foo+bar"],
);
do_check(
r#"
fn main() { foo+<|>bar;}
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"#,
&["bar", "foo+bar"],
);
}
#[test]
fn test_extend_selection_prefer_lifetimes() {
do_check(r#"fn foo<<|>'a>() {}"#, &["'a", "<'a>"]);
do_check(r#"fn foo<'a<|>>() {}"#, &["'a", "<'a>"]);
}
#[test]
fn test_extend_selection_select_first_word() {
do_check(r#"// foo bar b<|>az quxx"#, &["baz", "// foo bar baz quxx"]);
do_check(
r#"
impl S {
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fn foo() {
// hel<|>lo world
}
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}
"#,
&["hello", "// hello world"],
);
}
#[test]
fn test_extend_selection_string() {
do_check(
r#"
fn bar(){}
" fn f<|>oo() {"
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"#,
&["foo", "\" fn foo() {\""],
);
}
#[test]
fn test_extend_trait_bounds_list_in_where_clause() {
do_check(
r#"
fn foo<R>()
where
R: req::Request + 'static,
R::Params: DeserializeOwned<|> + panic::UnwindSafe + 'static,
R::Result: Serialize + 'static,
"#,
&[
"DeserializeOwned",
"DeserializeOwned + ",
"DeserializeOwned + panic::UnwindSafe + 'static",
"R::Params: DeserializeOwned + panic::UnwindSafe + 'static",
"R::Params: DeserializeOwned + panic::UnwindSafe + 'static,",
],
);
do_check(r#"fn foo<T>() where T: <|>Copy"#, &["Copy"]);
do_check(r#"fn foo<T>() where T: <|>Copy + Display"#, &["Copy", "Copy + "]);
do_check(r#"fn foo<T>() where T: <|>Copy +Display"#, &["Copy", "Copy +"]);
do_check(r#"fn foo<T>() where T: <|>Copy+Display"#, &["Copy", "Copy+"]);
do_check(r#"fn foo<T>() where T: Copy + <|>Display"#, &["Display", "+ Display"]);
do_check(r#"fn foo<T>() where T: Copy + <|>Display + Sync"#, &["Display", "Display + "]);
do_check(r#"fn foo<T>() where T: Copy +<|>Display"#, &["Display", "+Display"]);
}
#[test]
fn test_extend_trait_bounds_list_inline() {
do_check(r#"fn foo<T: <|>Copy>() {}"#, &["Copy"]);
do_check(r#"fn foo<T: <|>Copy + Display>() {}"#, &["Copy", "Copy + "]);
do_check(r#"fn foo<T: <|>Copy +Display>() {}"#, &["Copy", "Copy +"]);
do_check(r#"fn foo<T: <|>Copy+Display>() {}"#, &["Copy", "Copy+"]);
do_check(r#"fn foo<T: Copy + <|>Display>() {}"#, &["Display", "+ Display"]);
do_check(r#"fn foo<T: Copy + <|>Display + Sync>() {}"#, &["Display", "Display + "]);
do_check(r#"fn foo<T: Copy +<|>Display>() {}"#, &["Display", "+Display"]);
do_check(
r#"fn foo<T: Copy<|> + Display, U: Copy>() {}"#,
&[
"Copy",
"Copy + ",
"Copy + Display",
"T: Copy + Display",
"T: Copy + Display, ",
"<T: Copy + Display, U: Copy>",
],
);
}
#[test]
fn test_extend_selection_on_tuple_in_type() {
do_check(
r#"fn main() { let _: (krate, <|>_crate_def_map, module_id) = (); }"#,
&["_crate_def_map", "_crate_def_map, ", "(krate, _crate_def_map, module_id)"],
);
// white space variations
do_check(
r#"fn main() { let _: (krate,<|>_crate_def_map,module_id) = (); }"#,
&["_crate_def_map", "_crate_def_map,", "(krate,_crate_def_map,module_id)"],
);
do_check(
r#"
fn main() { let _: (
krate,
_crate<|>_def_map,
module_id
) = (); }"#,
&[
"_crate_def_map",
"_crate_def_map,",
"(\n krate,\n _crate_def_map,\n module_id\n)",
],
);
}
#[test]
fn test_extend_selection_on_tuple_in_rvalue() {
do_check(
r#"fn main() { let var = (krate, _crate_def_map<|>, module_id); }"#,
&["_crate_def_map", "_crate_def_map, ", "(krate, _crate_def_map, module_id)"],
);
// white space variations
do_check(
r#"fn main() { let var = (krate,_crate<|>_def_map,module_id); }"#,
&["_crate_def_map", "_crate_def_map,", "(krate,_crate_def_map,module_id)"],
);
do_check(
r#"
fn main() { let var = (
krate,
_crate_def_map<|>,
module_id
); }"#,
&[
"_crate_def_map",
"_crate_def_map,",
"(\n krate,\n _crate_def_map,\n module_id\n)",
],
);
}
#[test]
fn extend_selection_inside_macros() {
do_check(
r#"macro_rules! foo { ($item:item) => {$item} }
foo!{fn hello(na<|>me:usize){}}"#,
&[
"name",
"name:usize",
"(name:usize)",
"fn hello(name:usize){}",
"{fn hello(name:usize){}}",
"foo!{fn hello(name:usize){}}",
],
);
}
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}