590 lines
12 KiB
Rust
590 lines
12 KiB
Rust
use hir::{HasSource, InFile};
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use ra_syntax::{
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ast::{self, edit, make, AstNode, NameOwner},
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SmolStr,
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};
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use crate::{
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ast_transform::{self, AstTransform, QualifyPaths, SubstituteTypeParams},
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Assist, AssistCtx, AssistId,
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utils::{get_missing_impl_items, resolve_target_trait},
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};
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#[derive(PartialEq)]
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enum AddMissingImplMembersMode {
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DefaultMethodsOnly,
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NoDefaultMethods,
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}
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// Assist: add_impl_missing_members
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//
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// Adds scaffold for required impl members.
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//
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// ```
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// trait Trait<T> {
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// Type X;
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// fn foo(&self) -> T;
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// fn bar(&self) {}
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// }
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//
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// impl Trait<u32> for () {<|>
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//
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// }
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// ```
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// ->
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// ```
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// trait Trait<T> {
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// Type X;
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// fn foo(&self) -> T;
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// fn bar(&self) {}
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// }
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//
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// impl Trait<u32> for () {
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// fn foo(&self) -> u32 { unimplemented!() }
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//
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// }
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// ```
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pub(crate) fn add_missing_impl_members(ctx: AssistCtx) -> Option<Assist> {
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add_missing_impl_members_inner(
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ctx,
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AddMissingImplMembersMode::NoDefaultMethods,
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"add_impl_missing_members",
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"Implement missing members",
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)
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}
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// Assist: add_impl_default_members
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//
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// Adds scaffold for overriding default impl members.
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//
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// ```
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// trait Trait {
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// Type X;
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// fn foo(&self);
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// fn bar(&self) {}
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// }
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//
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// impl Trait for () {
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// Type X = ();
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// fn foo(&self) {}<|>
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//
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// }
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// ```
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// ->
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// ```
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// trait Trait {
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// Type X;
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// fn foo(&self);
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// fn bar(&self) {}
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// }
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//
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// impl Trait for () {
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// Type X = ();
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// fn foo(&self) {}
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// fn bar(&self) {}
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//
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// }
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// ```
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pub(crate) fn add_missing_default_members(ctx: AssistCtx) -> Option<Assist> {
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add_missing_impl_members_inner(
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ctx,
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AddMissingImplMembersMode::DefaultMethodsOnly,
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"add_impl_default_members",
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"Implement default members",
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)
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}
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fn add_missing_impl_members_inner(
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ctx: AssistCtx,
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mode: AddMissingImplMembersMode,
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assist_id: &'static str,
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label: &'static str,
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) -> Option<Assist> {
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let _p = ra_prof::profile("add_missing_impl_members_inner");
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let impl_node = ctx.find_node_at_offset::<ast::ImplBlock>()?;
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let impl_item_list = impl_node.item_list()?;
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let analyzer = ctx.source_analyzer(impl_node.syntax(), None);
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let trait_ = resolve_target_trait(ctx.db, &analyzer, &impl_node)?;
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let def_name = |item: &ast::ImplItem| -> Option<SmolStr> {
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match item {
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ast::ImplItem::FnDef(def) => def.name(),
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ast::ImplItem::TypeAliasDef(def) => def.name(),
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ast::ImplItem::ConstDef(def) => def.name(),
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}
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.map(|it| it.text().clone())
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};
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let missing_items = get_missing_impl_items(ctx.db, &analyzer, &impl_node)
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.iter()
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.map(|i| match i {
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hir::AssocItem::Function(i) => ast::ImplItem::FnDef(i.source(ctx.db).value),
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hir::AssocItem::TypeAlias(i) => ast::ImplItem::TypeAliasDef(i.source(ctx.db).value),
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hir::AssocItem::Const(i) => ast::ImplItem::ConstDef(i.source(ctx.db).value),
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})
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.filter(|t| def_name(&t).is_some())
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.filter(|t| match t {
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ast::ImplItem::FnDef(def) => match mode {
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AddMissingImplMembersMode::DefaultMethodsOnly => def.body().is_some(),
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AddMissingImplMembersMode::NoDefaultMethods => def.body().is_none(),
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}
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_ => mode == AddMissingImplMembersMode::NoDefaultMethods,
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})
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.collect::<Vec<_>>();
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if missing_items.is_empty() {
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return None;
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}
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let db = ctx.db;
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let file_id = ctx.frange.file_id;
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let trait_file_id = trait_.source(db).file_id;
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ctx.add_assist(AssistId(assist_id), label, |edit| {
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let n_existing_items = impl_item_list.impl_items().count();
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let module = hir::SourceAnalyzer::new(
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db,
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hir::InFile::new(file_id.into(), impl_node.syntax()),
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None,
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)
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.module();
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let ast_transform = QualifyPaths::new(db, module)
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.or(SubstituteTypeParams::for_trait_impl(db, trait_, impl_node));
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let items = missing_items
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.into_iter()
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.map(|it| ast_transform::apply(&*ast_transform, InFile::new(trait_file_id, it)))
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.map(|it| match it {
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ast::ImplItem::FnDef(def) => ast::ImplItem::FnDef(add_body(def)),
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_ => it,
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})
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.map(|it| edit::strip_attrs_and_docs(&it));
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let new_impl_item_list = impl_item_list.append_items(items);
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let cursor_position = {
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let first_new_item = new_impl_item_list.impl_items().nth(n_existing_items).unwrap();
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first_new_item.syntax().text_range().start()
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};
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edit.replace_ast(impl_item_list, new_impl_item_list);
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edit.set_cursor(cursor_position);
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})
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}
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fn add_body(fn_def: ast::FnDef) -> ast::FnDef {
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if fn_def.body().is_none() {
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fn_def.with_body(make::block_from_expr(make::expr_unimplemented()))
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} else {
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fn_def
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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 super::*;
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use crate::helpers::{check_assist, check_assist_not_applicable};
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#[test]
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fn test_add_missing_impl_members() {
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check_assist(
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add_missing_impl_members,
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"
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trait Foo {
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type Output;
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const CONST: usize = 42;
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fn foo(&self);
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fn bar(&self);
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fn baz(&self);
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}
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struct S;
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impl Foo for S {
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fn bar(&self) {}
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<|>
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}",
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"
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trait Foo {
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type Output;
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const CONST: usize = 42;
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fn foo(&self);
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fn bar(&self);
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fn baz(&self);
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}
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struct S;
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impl Foo for S {
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fn bar(&self) {}
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<|>type Output;
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const CONST: usize = 42;
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fn foo(&self) { unimplemented!() }
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fn baz(&self) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_copied_overriden_members() {
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check_assist(
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add_missing_impl_members,
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"
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trait Foo {
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fn foo(&self);
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fn bar(&self) -> bool { true }
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fn baz(&self) -> u32 { 42 }
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}
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struct S;
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impl Foo for S {
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fn bar(&self) {}
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<|>
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}",
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"
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trait Foo {
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fn foo(&self);
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fn bar(&self) -> bool { true }
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fn baz(&self) -> u32 { 42 }
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}
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struct S;
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impl Foo for S {
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fn bar(&self) {}
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<|>fn foo(&self) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_empty_impl_block() {
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check_assist(
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add_missing_impl_members,
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"
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trait Foo { fn foo(&self); }
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struct S;
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impl Foo for S { <|> }",
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"
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trait Foo { fn foo(&self); }
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struct S;
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impl Foo for S {
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<|>fn foo(&self) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn fill_in_type_params_1() {
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check_assist(
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add_missing_impl_members,
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"
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trait Foo<T> { fn foo(&self, t: T) -> &T; }
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struct S;
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impl Foo<u32> for S { <|> }",
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"
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trait Foo<T> { fn foo(&self, t: T) -> &T; }
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struct S;
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impl Foo<u32> for S {
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<|>fn foo(&self, t: u32) -> &u32 { unimplemented!() }
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}",
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);
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}
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#[test]
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fn fill_in_type_params_2() {
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check_assist(
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add_missing_impl_members,
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"
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trait Foo<T> { fn foo(&self, t: T) -> &T; }
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struct S;
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impl<U> Foo<U> for S { <|> }",
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"
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trait Foo<T> { fn foo(&self, t: T) -> &T; }
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struct S;
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impl<U> Foo<U> for S {
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<|>fn foo(&self, t: U) -> &U { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_cursor_after_empty_impl_block() {
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check_assist(
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add_missing_impl_members,
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"
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trait Foo { fn foo(&self); }
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struct S;
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impl Foo for S {}<|>",
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"
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trait Foo { fn foo(&self); }
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struct S;
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impl Foo for S {
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<|>fn foo(&self) { unimplemented!() }
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}",
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)
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}
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#[test]
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fn test_qualify_path_1() {
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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pub struct Bar;
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trait Foo { fn foo(&self, bar: Bar); }
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}
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struct S;
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impl foo::Foo for S { <|> }",
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"
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mod foo {
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pub struct Bar;
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trait Foo { fn foo(&self, bar: Bar); }
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}
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struct S;
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impl foo::Foo for S {
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<|>fn foo(&self, bar: foo::Bar) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_qualify_path_generic() {
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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pub struct Bar<T>;
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trait Foo { fn foo(&self, bar: Bar<u32>); }
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}
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struct S;
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impl foo::Foo for S { <|> }",
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"
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mod foo {
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pub struct Bar<T>;
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trait Foo { fn foo(&self, bar: Bar<u32>); }
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}
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struct S;
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impl foo::Foo for S {
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<|>fn foo(&self, bar: foo::Bar<u32>) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_qualify_path_and_substitute_param() {
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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pub struct Bar<T>;
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trait Foo<T> { fn foo(&self, bar: Bar<T>); }
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}
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struct S;
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impl foo::Foo<u32> for S { <|> }",
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"
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mod foo {
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pub struct Bar<T>;
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trait Foo<T> { fn foo(&self, bar: Bar<T>); }
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}
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struct S;
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impl foo::Foo<u32> for S {
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<|>fn foo(&self, bar: foo::Bar<u32>) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_substitute_param_no_qualify() {
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// when substituting params, the substituted param should not be qualified!
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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trait Foo<T> { fn foo(&self, bar: T); }
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pub struct Param;
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}
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struct Param;
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struct S;
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impl foo::Foo<Param> for S { <|> }",
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"
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mod foo {
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trait Foo<T> { fn foo(&self, bar: T); }
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pub struct Param;
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}
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struct Param;
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struct S;
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impl foo::Foo<Param> for S {
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<|>fn foo(&self, bar: Param) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_qualify_path_associated_item() {
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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pub struct Bar<T>;
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impl Bar<T> { type Assoc = u32; }
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trait Foo { fn foo(&self, bar: Bar<u32>::Assoc); }
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}
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struct S;
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impl foo::Foo for S { <|> }",
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"
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mod foo {
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pub struct Bar<T>;
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impl Bar<T> { type Assoc = u32; }
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trait Foo { fn foo(&self, bar: Bar<u32>::Assoc); }
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}
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struct S;
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impl foo::Foo for S {
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<|>fn foo(&self, bar: foo::Bar<u32>::Assoc) { unimplemented!() }
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}",
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);
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}
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#[test]
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fn test_qualify_path_nested() {
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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pub struct Bar<T>;
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pub struct Baz;
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trait Foo { fn foo(&self, bar: Bar<Baz>); }
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}
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struct S;
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impl foo::Foo for S { <|> }",
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"
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mod foo {
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pub struct Bar<T>;
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pub struct Baz;
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trait Foo { fn foo(&self, bar: Bar<Baz>); }
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}
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struct S;
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impl foo::Foo for S {
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<|>fn foo(&self, bar: foo::Bar<foo::Baz>) { unimplemented!() }
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}",
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);
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}
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|
|
#[test]
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fn test_qualify_path_fn_trait_notation() {
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check_assist(
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add_missing_impl_members,
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"
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mod foo {
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pub trait Fn<Args> { type Output; }
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trait Foo { fn foo(&self, bar: dyn Fn(u32) -> i32); }
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}
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struct S;
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impl foo::Foo for S { <|> }",
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"
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mod foo {
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pub trait Fn<Args> { type Output; }
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trait Foo { fn foo(&self, bar: dyn Fn(u32) -> i32); }
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}
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|
struct S;
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impl foo::Foo for S {
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<|>fn foo(&self, bar: dyn Fn(u32) -> i32) { unimplemented!() }
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}",
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);
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}
|
|
|
|
#[test]
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fn test_empty_trait() {
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check_assist_not_applicable(
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add_missing_impl_members,
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|
"
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trait Foo;
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struct S;
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impl Foo for S { <|> }",
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)
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}
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|
|
|
#[test]
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fn test_ignore_unnamed_trait_members_and_default_methods() {
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check_assist_not_applicable(
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add_missing_impl_members,
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|
"
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|
trait Foo {
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fn (arg: u32);
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fn valid(some: u32) -> bool { false }
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}
|
|
struct S;
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impl Foo for S { <|> }",
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)
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}
|
|
|
|
#[test]
|
|
fn test_with_docstring_and_attrs() {
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check_assist(
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add_missing_impl_members,
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r#"
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|
#[doc(alias = "test alias")]
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|
trait Foo {
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/// doc string
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type Output;
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|
|
|
#[must_use]
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fn foo(&self);
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}
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|
struct S;
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impl Foo for S {}<|>"#,
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r#"
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|
#[doc(alias = "test alias")]
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|
trait Foo {
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/// doc string
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|
type Output;
|
|
|
|
#[must_use]
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fn foo(&self);
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}
|
|
struct S;
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impl Foo for S {
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<|>type Output;
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fn foo(&self) { unimplemented!() }
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|
}"#,
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)
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}
|
|
|
|
#[test]
|
|
fn test_default_methods() {
|
|
check_assist(
|
|
add_missing_default_members,
|
|
"
|
|
trait Foo {
|
|
type Output;
|
|
|
|
const CONST: usize = 42;
|
|
|
|
fn valid(some: u32) -> bool { false }
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fn foo(some: u32) -> bool;
|
|
}
|
|
struct S;
|
|
impl Foo for S { <|> }",
|
|
"
|
|
trait Foo {
|
|
type Output;
|
|
|
|
const CONST: usize = 42;
|
|
|
|
fn valid(some: u32) -> bool { false }
|
|
fn foo(some: u32) -> bool;
|
|
}
|
|
struct S;
|
|
impl Foo for S {
|
|
<|>fn valid(some: u32) -> bool { false }
|
|
}",
|
|
)
|
|
}
|
|
}
|