269 lines
7.8 KiB
Rust
269 lines
7.8 KiB
Rust
use join_to_string::join;
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use ra_syntax::{
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algo::{find_covering_node, find_leaf_at_offset},
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ast::{self, AstNode, AttrsOwner, NameOwner, TypeParamsOwner},
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Direction, SourceFileNode,
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SyntaxKind::{COMMA, WHITESPACE},
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SyntaxNodeRef, TextRange, TextUnit,
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};
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use crate::{find_node_at_offset, Edit, EditBuilder};
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#[derive(Debug)]
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pub struct LocalEdit {
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pub edit: Edit,
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pub cursor_position: Option<TextUnit>,
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}
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pub fn flip_comma<'a>(
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file: &'a SourceFileNode,
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offset: TextUnit,
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) -> Option<impl FnOnce() -> LocalEdit + 'a> {
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let syntax = file.syntax();
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let comma = find_leaf_at_offset(syntax, offset).find(|leaf| leaf.kind() == COMMA)?;
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let prev = non_trivia_sibling(comma, Direction::Prev)?;
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let next = non_trivia_sibling(comma, Direction::Next)?;
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Some(move || {
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let mut edit = EditBuilder::new();
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edit.replace(prev.range(), next.text().to_string());
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edit.replace(next.range(), prev.text().to_string());
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LocalEdit {
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edit: edit.finish(),
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cursor_position: None,
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}
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})
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}
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pub fn add_derive<'a>(
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file: &'a SourceFileNode,
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offset: TextUnit,
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) -> Option<impl FnOnce() -> LocalEdit + 'a> {
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let nominal = find_node_at_offset::<ast::NominalDef>(file.syntax(), offset)?;
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Some(move || {
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let derive_attr = nominal
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.attrs()
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.filter_map(|x| x.as_call())
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.filter(|(name, _arg)| name == "derive")
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.map(|(_name, arg)| arg)
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.next();
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let mut edit = EditBuilder::new();
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let offset = match derive_attr {
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None => {
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let node_start = nominal.syntax().range().start();
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edit.insert(node_start, "#[derive()]\n".to_string());
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node_start + TextUnit::of_str("#[derive(")
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}
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Some(tt) => tt.syntax().range().end() - TextUnit::of_char(')'),
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};
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LocalEdit {
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edit: edit.finish(),
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cursor_position: Some(offset),
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}
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})
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}
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pub fn add_impl<'a>(
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file: &'a SourceFileNode,
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offset: TextUnit,
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) -> Option<impl FnOnce() -> LocalEdit + 'a> {
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let nominal = find_node_at_offset::<ast::NominalDef>(file.syntax(), offset)?;
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let name = nominal.name()?;
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Some(move || {
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let type_params = nominal.type_param_list();
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let mut edit = EditBuilder::new();
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let start_offset = nominal.syntax().range().end();
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let mut buf = String::new();
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buf.push_str("\n\nimpl");
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if let Some(type_params) = type_params {
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type_params.syntax().text().push_to(&mut buf);
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}
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buf.push_str(" ");
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buf.push_str(name.text().as_str());
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if let Some(type_params) = type_params {
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let lifetime_params = type_params
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.lifetime_params()
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.filter_map(|it| it.lifetime())
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.map(|it| it.text());
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let type_params = type_params
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.type_params()
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.filter_map(|it| it.name())
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.map(|it| it.text());
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join(lifetime_params.chain(type_params))
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.surround_with("<", ">")
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.to_buf(&mut buf);
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}
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buf.push_str(" {\n");
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let offset = start_offset + TextUnit::of_str(&buf);
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buf.push_str("\n}");
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edit.insert(start_offset, buf);
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LocalEdit {
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edit: edit.finish(),
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cursor_position: Some(offset),
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}
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})
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}
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pub fn introduce_variable<'a>(
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file: &'a SourceFileNode,
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range: TextRange,
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) -> Option<impl FnOnce() -> LocalEdit + 'a> {
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let node = find_covering_node(file.syntax(), range);
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let expr = node.ancestors().filter_map(ast::Expr::cast).next()?;
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let anchor_stmt = ahchor_stmt(expr)?;
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let indent = anchor_stmt.prev_sibling()?;
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if indent.kind() != WHITESPACE {
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return None;
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}
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return Some(move || {
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let mut buf = String::new();
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let mut edit = EditBuilder::new();
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buf.push_str("let var_name = ");
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expr.syntax().text().push_to(&mut buf);
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if expr.syntax().range().start() == anchor_stmt.range().start() {
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edit.replace(expr.syntax().range(), buf);
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} else {
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buf.push_str(";");
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indent.text().push_to(&mut buf);
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edit.replace(expr.syntax().range(), "var_name".to_string());
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edit.insert(anchor_stmt.range().start(), buf);
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}
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let cursor_position = anchor_stmt.range().start() + TextUnit::of_str("let ");
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LocalEdit {
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edit: edit.finish(),
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cursor_position: Some(cursor_position),
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}
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});
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/// Statement or last in the block expression, which will follow
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/// the freshly introduced var.
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fn ahchor_stmt(expr: ast::Expr) -> Option<SyntaxNodeRef> {
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expr.syntax().ancestors().find(|&node| {
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if ast::Stmt::cast(node).is_some() {
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return true;
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}
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if let Some(expr) = node
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.parent()
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.and_then(ast::Block::cast)
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.and_then(|it| it.expr())
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{
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if expr.syntax() == node {
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return true;
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}
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}
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false
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})
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}
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}
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fn non_trivia_sibling(node: SyntaxNodeRef, direction: Direction) -> Option<SyntaxNodeRef> {
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node.siblings(direction)
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.skip(1)
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.find(|node| !node.kind().is_trivia())
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use crate::test_utils::{check_action, check_action_range};
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#[test]
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fn test_swap_comma() {
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check_action(
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"fn foo(x: i32,<|> y: Result<(), ()>) {}",
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"fn foo(y: Result<(), ()>,<|> x: i32) {}",
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|file, off| flip_comma(file, off).map(|f| f()),
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)
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}
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#[test]
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fn test_add_derive() {
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check_action(
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"struct Foo { a: i32, <|>}",
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"#[derive(<|>)]\nstruct Foo { a: i32, }",
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|file, off| add_derive(file, off).map(|f| f()),
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);
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check_action(
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"struct Foo { <|> a: i32, }",
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"#[derive(<|>)]\nstruct Foo { a: i32, }",
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|file, off| add_derive(file, off).map(|f| f()),
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);
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check_action(
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"#[derive(Clone)]\nstruct Foo { a: i32<|>, }",
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"#[derive(Clone<|>)]\nstruct Foo { a: i32, }",
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|file, off| add_derive(file, off).map(|f| f()),
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);
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}
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#[test]
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fn test_add_impl() {
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check_action(
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"struct Foo {<|>}\n",
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"struct Foo {}\n\nimpl Foo {\n<|>\n}\n",
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|file, off| add_impl(file, off).map(|f| f()),
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);
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check_action(
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"struct Foo<T: Clone> {<|>}",
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"struct Foo<T: Clone> {}\n\nimpl<T: Clone> Foo<T> {\n<|>\n}",
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|file, off| add_impl(file, off).map(|f| f()),
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);
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check_action(
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"struct Foo<'a, T: Foo<'a>> {<|>}",
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"struct Foo<'a, T: Foo<'a>> {}\n\nimpl<'a, T: Foo<'a>> Foo<'a, T> {\n<|>\n}",
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|file, off| add_impl(file, off).map(|f| f()),
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);
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}
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#[test]
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fn test_intrdoduce_var_simple() {
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check_action_range(
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"
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fn foo() {
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foo(<|>1 + 1<|>);
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}",
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"
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fn foo() {
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let <|>var_name = 1 + 1;
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foo(var_name);
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}",
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|file, range| introduce_variable(file, range).map(|f| f()),
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);
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}
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#[test]
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fn test_intrdoduce_var_expr_stmt() {
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check_action_range(
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"
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fn foo() {
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<|>1 + 1<|>;
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}",
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"
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fn foo() {
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let <|>var_name = 1 + 1;
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}",
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|file, range| introduce_variable(file, range).map(|f| f()),
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);
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}
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#[test]
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fn test_intrdoduce_var_last_expr() {
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check_action_range(
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"
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fn foo() {
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bar(<|>1 + 1<|>)
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}",
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"
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fn foo() {
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let <|>var_name = 1 + 1;
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bar(var_name)
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}",
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|file, range| introduce_variable(file, range).map(|f| f()),
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);
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}
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}
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