737 lines
15 KiB
Rust
737 lines
15 KiB
Rust
//! Completion for associated items in a trait implementation.
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//!
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//! This module adds the completion items related to implementing associated
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//! items within a `impl Trait for Struct` block. The current context node
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//! must be within either a `FN`, `TYPE_ALIAS`, or `CONST` node
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//! and an direct child of an `IMPL`.
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//!
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//! # Examples
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//!
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//! Considering the following trait `impl`:
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//!
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//! ```ignore
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//! trait SomeTrait {
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//! fn foo();
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//! }
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//!
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//! impl SomeTrait for () {
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//! fn f<|>
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//! }
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//! ```
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//!
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//! may result in the completion of the following method:
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//!
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//! ```ignore
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//! # trait SomeTrait {
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//! # fn foo();
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//! # }
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//!
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//! impl SomeTrait for () {
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//! fn foo() {}<|>
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//! }
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//! ```
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use hir::{self, HasAttrs, HasSource};
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use ide_db::traits::get_missing_assoc_items;
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use syntax::{
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ast::{self, edit, Impl},
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display::function_declaration,
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AstNode, SyntaxKind, SyntaxNode, TextRange, T,
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};
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use text_edit::TextEdit;
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use crate::{
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CompletionContext,
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CompletionItem,
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CompletionItemKind,
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CompletionKind,
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Completions,
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// display::function_declaration,
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};
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#[derive(Debug, PartialEq, Eq)]
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enum ImplCompletionKind {
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All,
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Fn,
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TypeAlias,
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Const,
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}
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pub(crate) fn complete_trait_impl(acc: &mut Completions, ctx: &CompletionContext) {
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if let Some((kind, trigger, impl_def)) = completion_match(ctx) {
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get_missing_assoc_items(&ctx.sema, &impl_def).into_iter().for_each(|item| match item {
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hir::AssocItem::Function(fn_item)
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if kind == ImplCompletionKind::All || kind == ImplCompletionKind::Fn =>
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{
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add_function_impl(&trigger, acc, ctx, fn_item)
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}
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hir::AssocItem::TypeAlias(type_item)
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if kind == ImplCompletionKind::All || kind == ImplCompletionKind::TypeAlias =>
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{
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add_type_alias_impl(&trigger, acc, ctx, type_item)
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}
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hir::AssocItem::Const(const_item)
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if kind == ImplCompletionKind::All || kind == ImplCompletionKind::Const =>
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{
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add_const_impl(&trigger, acc, ctx, const_item)
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}
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_ => {}
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});
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}
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}
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fn completion_match(ctx: &CompletionContext) -> Option<(ImplCompletionKind, SyntaxNode, Impl)> {
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let mut token = ctx.token.clone();
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// For keywork without name like `impl .. { fn <|> }`, the current position is inside
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// the whitespace token, which is outside `FN` syntax node.
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// We need to follow the previous token in this case.
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if token.kind() == SyntaxKind::WHITESPACE {
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token = token.prev_token()?;
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}
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let impl_item_offset = match token.kind() {
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// `impl .. { const <|> }`
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// ERROR 0
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// CONST_KW <- *
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SyntaxKind::CONST_KW => 0,
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// `impl .. { fn/type <|> }`
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// FN/TYPE_ALIAS 0
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// FN_KW <- *
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SyntaxKind::FN_KW | SyntaxKind::TYPE_KW => 0,
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// `impl .. { fn/type/const foo<|> }`
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// FN/TYPE_ALIAS/CONST 1
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// NAME 0
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// IDENT <- *
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SyntaxKind::IDENT if token.parent().kind() == SyntaxKind::NAME => 1,
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// `impl .. { foo<|> }`
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// MACRO_CALL 3
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// PATH 2
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// PATH_SEGMENT 1
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// NAME_REF 0
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// IDENT <- *
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SyntaxKind::IDENT if token.parent().kind() == SyntaxKind::NAME_REF => 3,
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_ => return None,
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};
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let impl_item = token.ancestors().nth(impl_item_offset)?;
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// Must directly belong to an impl block.
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// IMPL
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// ASSOC_ITEM_LIST
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// <item>
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let impl_def = ast::Impl::cast(impl_item.parent()?.parent()?)?;
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let kind = match impl_item.kind() {
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// `impl ... { const <|> fn/type/const }`
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_ if token.kind() == SyntaxKind::CONST_KW => ImplCompletionKind::Const,
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SyntaxKind::CONST | SyntaxKind::ERROR => ImplCompletionKind::Const,
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SyntaxKind::TYPE_ALIAS => ImplCompletionKind::TypeAlias,
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SyntaxKind::FN => ImplCompletionKind::Fn,
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SyntaxKind::MACRO_CALL => ImplCompletionKind::All,
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_ => return None,
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};
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Some((kind, impl_item, impl_def))
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}
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fn add_function_impl(
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fn_def_node: &SyntaxNode,
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acc: &mut Completions,
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ctx: &CompletionContext,
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func: hir::Function,
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) {
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let fn_name = func.name(ctx.db).to_string();
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let label = if func.assoc_fn_params(ctx.db).is_empty() {
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format!("fn {}()", fn_name)
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} else {
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format!("fn {}(..)", fn_name)
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};
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let builder = CompletionItem::new(CompletionKind::Magic, ctx.source_range(), label)
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.lookup_by(fn_name)
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.set_documentation(func.docs(ctx.db));
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let completion_kind = if func.self_param(ctx.db).is_some() {
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CompletionItemKind::Method
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} else {
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CompletionItemKind::Function
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};
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let range = TextRange::new(fn_def_node.text_range().start(), ctx.source_range().end());
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let function_decl = function_declaration(&func.source(ctx.db).value);
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match ctx.config.snippet_cap {
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Some(cap) => {
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let snippet = format!("{} {{\n $0\n}}", function_decl);
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builder.snippet_edit(cap, TextEdit::replace(range, snippet))
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}
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None => {
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let header = format!("{} {{", function_decl);
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builder.text_edit(TextEdit::replace(range, header))
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}
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}
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.kind(completion_kind)
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.add_to(acc);
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}
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fn add_type_alias_impl(
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type_def_node: &SyntaxNode,
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acc: &mut Completions,
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ctx: &CompletionContext,
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type_alias: hir::TypeAlias,
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) {
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let alias_name = type_alias.name(ctx.db).to_string();
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let snippet = format!("type {} = ", alias_name);
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let range = TextRange::new(type_def_node.text_range().start(), ctx.source_range().end());
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CompletionItem::new(CompletionKind::Magic, ctx.source_range(), snippet.clone())
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.text_edit(TextEdit::replace(range, snippet))
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.lookup_by(alias_name)
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.kind(CompletionItemKind::TypeAlias)
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.set_documentation(type_alias.docs(ctx.db))
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.add_to(acc);
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}
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fn add_const_impl(
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const_def_node: &SyntaxNode,
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acc: &mut Completions,
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ctx: &CompletionContext,
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const_: hir::Const,
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) {
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let const_name = const_.name(ctx.db).map(|n| n.to_string());
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if let Some(const_name) = const_name {
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let snippet = make_const_compl_syntax(&const_.source(ctx.db).value);
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let range = TextRange::new(const_def_node.text_range().start(), ctx.source_range().end());
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CompletionItem::new(CompletionKind::Magic, ctx.source_range(), snippet.clone())
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.text_edit(TextEdit::replace(range, snippet))
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.lookup_by(const_name)
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.kind(CompletionItemKind::Const)
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.set_documentation(const_.docs(ctx.db))
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.add_to(acc);
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}
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}
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fn make_const_compl_syntax(const_: &ast::Const) -> String {
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let const_ = edit::remove_attrs_and_docs(const_);
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let const_start = const_.syntax().text_range().start();
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let const_end = const_.syntax().text_range().end();
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let start =
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const_.syntax().first_child_or_token().map_or(const_start, |f| f.text_range().start());
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let end = const_
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.syntax()
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.children_with_tokens()
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.find(|s| s.kind() == T![;] || s.kind() == T![=])
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.map_or(const_end, |f| f.text_range().start());
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let len = end - start;
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let range = TextRange::new(0.into(), len);
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let syntax = const_.syntax().text().slice(range).to_string();
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format!("{} = ", syntax.trim_end())
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}
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#[cfg(test)]
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mod tests {
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use expect_test::{expect, Expect};
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use crate::{
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test_utils::{check_edit, completion_list},
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CompletionKind,
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};
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fn check(ra_fixture: &str, expect: Expect) {
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let actual = completion_list(ra_fixture, CompletionKind::Magic);
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expect.assert_eq(&actual)
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}
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#[test]
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fn name_ref_function_type_const() {
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check(
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r#"
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trait Test {
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type TestType;
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const TEST_CONST: u16;
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fn test();
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}
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struct T;
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impl Test for T {
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t<|>
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}
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"#,
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expect![["
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ta type TestType = \n\
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ct const TEST_CONST: u16 = \n\
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fn fn test()
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"]],
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);
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}
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#[test]
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fn no_completion_inside_fn() {
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check(
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r"
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trait Test { fn test(); fn test2(); }
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struct T;
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impl Test for T {
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fn test() {
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t<|>
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}
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { fn test(); fn test2(); }
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struct T;
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impl Test for T {
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fn test() {
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fn t<|>
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}
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { fn test(); fn test2(); }
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struct T;
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impl Test for T {
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fn test() {
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fn <|>
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}
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}
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",
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expect![[""]],
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);
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// https://github.com/rust-analyzer/rust-analyzer/pull/5976#issuecomment-692332191
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check(
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r"
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trait Test { fn test(); fn test2(); }
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struct T;
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impl Test for T {
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fn test() {
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foo.<|>
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}
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { fn test(_: i32); fn test2(); }
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struct T;
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impl Test for T {
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fn test(t<|>)
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { fn test(_: fn()); fn test2(); }
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struct T;
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impl Test for T {
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fn test(f: fn <|>)
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}
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",
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expect![[""]],
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);
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}
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#[test]
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fn no_completion_inside_const() {
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check(
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r"
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trait Test { const TEST: fn(); const TEST2: u32; type Test; fn test(); }
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struct T;
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impl Test for T {
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const TEST: fn <|>
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { const TEST: u32; const TEST2: u32; type Test; fn test(); }
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struct T;
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impl Test for T {
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const TEST: T<|>
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { const TEST: u32; const TEST2: u32; type Test; fn test(); }
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struct T;
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impl Test for T {
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const TEST: u32 = f<|>
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { const TEST: u32; const TEST2: u32; type Test; fn test(); }
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struct T;
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impl Test for T {
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const TEST: u32 = {
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t<|>
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};
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { const TEST: u32; const TEST2: u32; type Test; fn test(); }
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struct T;
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impl Test for T {
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const TEST: u32 = {
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fn <|>
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};
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { const TEST: u32; const TEST2: u32; type Test; fn test(); }
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struct T;
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impl Test for T {
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const TEST: u32 = {
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fn t<|>
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};
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}
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",
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expect![[""]],
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);
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}
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#[test]
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fn no_completion_inside_type() {
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check(
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r"
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trait Test { type Test; type Test2; fn test(); }
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struct T;
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impl Test for T {
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type Test = T<|>;
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}
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",
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expect![[""]],
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);
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check(
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r"
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trait Test { type Test; type Test2; fn test(); }
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struct T;
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impl Test for T {
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type Test = fn <|>;
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}
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",
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expect![[""]],
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);
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}
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#[test]
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fn name_ref_single_function() {
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check_edit(
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"test",
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r#"
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trait Test {
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fn test();
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}
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struct T;
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impl Test for T {
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t<|>
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}
|
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"#,
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r#"
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trait Test {
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fn test();
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}
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|
struct T;
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|
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impl Test for T {
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fn test() {
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$0
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}
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}
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"#,
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);
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}
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#[test]
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fn single_function() {
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check_edit(
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"test",
|
|
r#"
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|
trait Test {
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fn test();
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}
|
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struct T;
|
|
|
|
impl Test for T {
|
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fn t<|>
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}
|
|
"#,
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|
r#"
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|
trait Test {
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fn test();
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}
|
|
struct T;
|
|
|
|
impl Test for T {
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fn test() {
|
|
$0
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|
}
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}
|
|
"#,
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);
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}
|
|
|
|
#[test]
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fn hide_implemented_fn() {
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check(
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r#"
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trait Test {
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fn foo();
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fn foo_bar();
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}
|
|
struct T;
|
|
|
|
impl Test for T {
|
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fn foo() {}
|
|
fn f<|>
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|
}
|
|
"#,
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expect![[r#"
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fn fn foo_bar()
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"#]],
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);
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}
|
|
|
|
#[test]
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|
fn generic_fn() {
|
|
check_edit(
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"foo",
|
|
r#"
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|
trait Test {
|
|
fn foo<T>();
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}
|
|
struct T;
|
|
|
|
impl Test for T {
|
|
fn f<|>
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|
}
|
|
"#,
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|
r#"
|
|
trait Test {
|
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fn foo<T>();
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}
|
|
struct T;
|
|
|
|
impl Test for T {
|
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fn foo<T>() {
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|
$0
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}
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}
|
|
"#,
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);
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check_edit(
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"foo",
|
|
r#"
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|
trait Test {
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fn foo<T>() where T: Into<String>;
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|
}
|
|
struct T;
|
|
|
|
impl Test for T {
|
|
fn f<|>
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|
}
|
|
"#,
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|
r#"
|
|
trait Test {
|
|
fn foo<T>() where T: Into<String>;
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|
}
|
|
struct T;
|
|
|
|
impl Test for T {
|
|
fn foo<T>()
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|
where T: Into<String> {
|
|
$0
|
|
}
|
|
}
|
|
"#,
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);
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}
|
|
|
|
#[test]
|
|
fn associated_type() {
|
|
check_edit(
|
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"SomeType",
|
|
r#"
|
|
trait Test {
|
|
type SomeType;
|
|
}
|
|
|
|
impl Test for () {
|
|
type S<|>
|
|
}
|
|
"#,
|
|
"
|
|
trait Test {
|
|
type SomeType;
|
|
}
|
|
|
|
impl Test for () {
|
|
type SomeType = \n\
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|
}
|
|
",
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn associated_const() {
|
|
check_edit(
|
|
"SOME_CONST",
|
|
r#"
|
|
trait Test {
|
|
const SOME_CONST: u16;
|
|
}
|
|
|
|
impl Test for () {
|
|
const S<|>
|
|
}
|
|
"#,
|
|
"
|
|
trait Test {
|
|
const SOME_CONST: u16;
|
|
}
|
|
|
|
impl Test for () {
|
|
const SOME_CONST: u16 = \n\
|
|
}
|
|
",
|
|
);
|
|
|
|
check_edit(
|
|
"SOME_CONST",
|
|
r#"
|
|
trait Test {
|
|
const SOME_CONST: u16 = 92;
|
|
}
|
|
|
|
impl Test for () {
|
|
const S<|>
|
|
}
|
|
"#,
|
|
"
|
|
trait Test {
|
|
const SOME_CONST: u16 = 92;
|
|
}
|
|
|
|
impl Test for () {
|
|
const SOME_CONST: u16 = \n\
|
|
}
|
|
",
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn complete_without_name() {
|
|
let test = |completion: &str, hint: &str, completed: &str, next_sibling: &str| {
|
|
println!(
|
|
"completion='{}', hint='{}', next_sibling='{}'",
|
|
completion, hint, next_sibling
|
|
);
|
|
|
|
check_edit(
|
|
completion,
|
|
&format!(
|
|
r#"
|
|
trait Test {{
|
|
type Foo;
|
|
const CONST: u16;
|
|
fn bar();
|
|
}}
|
|
struct T;
|
|
|
|
impl Test for T {{
|
|
{}
|
|
{}
|
|
}}
|
|
"#,
|
|
hint, next_sibling
|
|
),
|
|
&format!(
|
|
r#"
|
|
trait Test {{
|
|
type Foo;
|
|
const CONST: u16;
|
|
fn bar();
|
|
}}
|
|
struct T;
|
|
|
|
impl Test for T {{
|
|
{}
|
|
{}
|
|
}}
|
|
"#,
|
|
completed, next_sibling
|
|
),
|
|
)
|
|
};
|
|
|
|
// Enumerate some possible next siblings.
|
|
for next_sibling in &[
|
|
"",
|
|
"fn other_fn() {}", // `const <|> fn` -> `const fn`
|
|
"type OtherType = i32;",
|
|
"const OTHER_CONST: i32 = 0;",
|
|
"async fn other_fn() {}",
|
|
"unsafe fn other_fn() {}",
|
|
"default fn other_fn() {}",
|
|
"default type OtherType = i32;",
|
|
"default const OTHER_CONST: i32 = 0;",
|
|
] {
|
|
test("bar", "fn <|>", "fn bar() {\n $0\n}", next_sibling);
|
|
test("Foo", "type <|>", "type Foo = ", next_sibling);
|
|
test("CONST", "const <|>", "const CONST: u16 = ", next_sibling);
|
|
}
|
|
}
|
|
}
|