2020-08-02 14:56:54 -05:00
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use hir::{MacroDef, ModuleDef, Name, PathResolution, ScopeDef, SemanticsScope};
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use ra_ide_db::{
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defs::{classify_name_ref, Definition, NameRefClass},
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RootDatabase,
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};
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use ra_syntax::{ast, match_ast, AstNode, SyntaxNode, SyntaxToken, T};
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use crate::{
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assist_context::{AssistBuilder, AssistContext, Assists},
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AssistId, AssistKind,
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};
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// Assist: expand_glob_import
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//
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// Expands glob imports.
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//
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// ```
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// mod foo {
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// pub struct Bar;
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// pub struct Baz;
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// }
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//
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// use foo::*<|>;
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//
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// fn qux(bar: Bar, baz: Baz) {}
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// ```
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// ->
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// ```
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// mod foo {
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// pub struct Bar;
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// pub struct Baz;
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// }
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//
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2020-08-02 15:07:56 -05:00
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// use foo::{Baz, Bar};
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2020-08-02 14:56:54 -05:00
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//
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// fn qux(bar: Bar, baz: Baz) {}
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// ```
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pub(crate) fn expand_glob_import(acc: &mut Assists, ctx: &AssistContext) -> Option<()> {
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let star = ctx.find_token_at_offset(T![*])?;
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let mod_path = find_mod_path(&star)?;
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let source_file = ctx.source_file();
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let scope = ctx.sema.scope_at_offset(source_file.syntax(), ctx.offset());
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let defs_in_mod = find_defs_in_mod(ctx, scope, &mod_path)?;
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let name_refs_in_source_file =
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source_file.syntax().descendants().filter_map(ast::NameRef::cast).collect();
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let used_names = find_used_names(ctx, defs_in_mod, name_refs_in_source_file);
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let parent = star.parent().parent()?;
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acc.add(
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AssistId("expand_glob_import", AssistKind::RefactorRewrite),
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"Expand glob import",
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parent.text_range(),
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|builder| {
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replace_ast(builder, &parent, mod_path, used_names);
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},
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)
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}
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fn find_mod_path(star: &SyntaxToken) -> Option<ast::Path> {
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2020-08-03 05:04:20 -05:00
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star.ancestors().find_map(|n| ast::UseTree::cast(n).and_then(|u| u.path()))
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2020-08-02 14:56:54 -05:00
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}
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#[derive(PartialEq)]
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enum Def {
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ModuleDef(ModuleDef),
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MacroDef(MacroDef),
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}
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impl Def {
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fn name(&self, db: &RootDatabase) -> Option<Name> {
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match self {
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Def::ModuleDef(def) => def.name(db),
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Def::MacroDef(def) => def.name(db),
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}
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}
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}
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fn find_defs_in_mod(
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ctx: &AssistContext,
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from: SemanticsScope<'_>,
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path: &ast::Path,
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) -> Option<Vec<Def>> {
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let hir_path = ctx.sema.lower_path(&path)?;
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let module = if let Some(PathResolution::Def(ModuleDef::Module(module))) =
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from.resolve_hir_path_qualifier(&hir_path)
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{
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module
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} else {
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return None;
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};
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let module_scope = module.scope(ctx.db(), from.module());
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let mut defs = vec![];
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for (_, def) in module_scope {
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match def {
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ScopeDef::ModuleDef(def) => defs.push(Def::ModuleDef(def)),
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ScopeDef::MacroDef(def) => defs.push(Def::MacroDef(def)),
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_ => continue,
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}
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}
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Some(defs)
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}
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fn find_used_names(
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ctx: &AssistContext,
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defs_in_mod: Vec<Def>,
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name_refs_in_source_file: Vec<ast::NameRef>,
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) -> Vec<Name> {
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let defs_in_source_file = name_refs_in_source_file
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.iter()
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.filter_map(|r| classify_name_ref(&ctx.sema, r))
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.filter_map(|rc| match rc {
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NameRefClass::Definition(Definition::ModuleDef(def)) => Some(Def::ModuleDef(def)),
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NameRefClass::Definition(Definition::Macro(def)) => Some(Def::MacroDef(def)),
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_ => None,
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})
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.collect::<Vec<Def>>();
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defs_in_mod
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.iter()
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.filter(|d| defs_in_source_file.contains(d))
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.filter_map(|d| d.name(ctx.db()))
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.collect()
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}
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fn replace_ast(
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builder: &mut AssistBuilder,
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node: &SyntaxNode,
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path: ast::Path,
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used_names: Vec<Name>,
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) {
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let new_use_tree_list = ast::make::use_tree_list(used_names.iter().map(|n| {
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ast::make::use_tree(ast::make::path_from_text(&n.to_string()), None, None, false)
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}));
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match_ast! {
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match node {
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ast::UseTree(use_tree) => {
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builder.replace_ast(use_tree, make_use_tree(path, new_use_tree_list));
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},
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ast::UseTreeList(use_tree_list) => {
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builder.replace_ast(use_tree_list, new_use_tree_list);
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},
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2020-08-02 15:07:36 -05:00
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ast::Use(use_item) => {
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2020-08-02 14:56:54 -05:00
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builder.replace_ast(use_item, ast::make::use_item(make_use_tree(path, new_use_tree_list)));
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},
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_ => {},
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}
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}
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fn make_use_tree(path: ast::Path, use_tree_list: ast::UseTreeList) -> ast::UseTree {
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ast::make::use_tree(path, Some(use_tree_list), None, false)
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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 crate::tests::{check_assist, check_assist_not_applicable};
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use super::*;
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#[test]
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fn expanding_glob_import() {
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check_assist(
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expand_glob_import,
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r"
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mod foo {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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pub fn f() {}
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}
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use foo::*<|>;
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fn qux(bar: Bar, baz: Baz) {
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f();
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}
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",
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r"
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mod foo {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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pub fn f() {}
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}
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use foo::{Baz, Bar, f};
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fn qux(bar: Bar, baz: Baz) {
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f();
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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 expanding_glob_import_with_existing_explicit_names() {
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check_assist(
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expand_glob_import,
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r"
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mod foo {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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pub fn f() {}
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}
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use foo::{*<|>, f};
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fn qux(bar: Bar, baz: Baz) {
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f();
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}
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",
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r"
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mod foo {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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pub fn f() {}
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}
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use foo::{Baz, Bar, f};
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fn qux(bar: Bar, baz: Baz) {
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f();
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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 expanding_nested_glob_import() {
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check_assist(
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expand_glob_import,
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r"
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mod foo {
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mod bar {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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pub fn f() {}
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}
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mod baz {
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pub fn g() {}
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}
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}
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use foo::{bar::{*<|>, f}, baz::*};
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fn qux(bar: Bar, baz: Baz) {
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f();
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g();
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}
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",
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r"
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mod foo {
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mod bar {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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pub fn f() {}
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}
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mod baz {
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pub fn g() {}
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}
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}
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use foo::{bar::{Baz, Bar, f}, baz::*};
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fn qux(bar: Bar, baz: Baz) {
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f();
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g();
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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 expanding_glob_import_with_macro_defs() {
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check_assist(
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expand_glob_import,
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r"
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//- /lib.rs crate:foo
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#[macro_export]
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macro_rules! bar {
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() => ()
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}
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pub fn baz() {}
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//- /main.rs crate:main deps:foo
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use foo::*<|>;
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fn main() {
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bar!();
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baz();
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}
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",
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r"
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use foo::{bar, baz};
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fn main() {
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bar!();
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baz();
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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 expanding_is_not_applicable_if_cursor_is_not_in_star_token() {
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check_assist_not_applicable(
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expand_glob_import,
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r"
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mod foo {
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pub struct Bar;
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pub struct Baz;
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pub struct Qux;
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}
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use foo::Bar<|>;
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fn qux(bar: Bar, baz: Baz) {}
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",
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)
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}
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}
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