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https://github.com/rust-lang/rust-analyzer
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Merge #4270
4270: Improve derive macro completion r=edwin0cheng a=SomeoneToIgnore * Adds completions for standard derive macros (considering their dependencies on each other, so we don't get compile errors) * Adds completions for custom derive macros that are in scope, if the proc macro feature is enabled in the settings * Separates macro completion from other completions to avoid incorrect completion propositions Co-authored-by: Kirill Bulatov <mail4score@gmail.com>
This commit is contained in:
commit
2474f42ae9
5 changed files with 308 additions and 40 deletions
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@ -19,7 +19,7 @@ use hir_def::{
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use hir_expand::{
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diagnostics::DiagnosticSink,
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name::{name, AsName},
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MacroDefId,
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MacroDefId, MacroDefKind,
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};
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use hir_ty::{
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autoderef, display::HirFormatter, expr::ExprValidator, method_resolution, ApplicationTy,
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@ -762,13 +762,12 @@ impl MacroDef {
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/// Indicate it is a proc-macro
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pub fn is_proc_macro(&self) -> bool {
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match self.id.kind {
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hir_expand::MacroDefKind::Declarative => false,
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hir_expand::MacroDefKind::BuiltIn(_) => false,
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hir_expand::MacroDefKind::BuiltInDerive(_) => false,
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hir_expand::MacroDefKind::BuiltInEager(_) => false,
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hir_expand::MacroDefKind::CustomDerive(_) => true,
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}
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matches!(self.id.kind, MacroDefKind::CustomDerive(_))
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}
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/// Indicate it is a derive macro
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pub fn is_derive_macro(&self) -> bool {
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matches!(self.id.kind, MacroDefKind::CustomDerive(_) | MacroDefKind::BuiltInDerive(_))
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}
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}
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@ -65,21 +65,23 @@ pub(crate) fn completions(
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let ctx = CompletionContext::new(db, position, config)?;
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let mut acc = Completions::default();
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complete_fn_param::complete_fn_param(&mut acc, &ctx);
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complete_keyword::complete_expr_keyword(&mut acc, &ctx);
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complete_keyword::complete_use_tree_keyword(&mut acc, &ctx);
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complete_snippet::complete_expr_snippet(&mut acc, &ctx);
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complete_snippet::complete_item_snippet(&mut acc, &ctx);
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complete_qualified_path::complete_qualified_path(&mut acc, &ctx);
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complete_unqualified_path::complete_unqualified_path(&mut acc, &ctx);
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complete_dot::complete_dot(&mut acc, &ctx);
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complete_record::complete_record(&mut acc, &ctx);
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complete_pattern::complete_pattern(&mut acc, &ctx);
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complete_postfix::complete_postfix(&mut acc, &ctx);
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complete_macro_in_item_position::complete_macro_in_item_position(&mut acc, &ctx);
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complete_trait_impl::complete_trait_impl(&mut acc, &ctx);
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complete_attribute::complete_attribute(&mut acc, &ctx);
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if ctx.attribute_under_caret.is_some() {
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complete_attribute::complete_attribute(&mut acc, &ctx);
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} else {
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complete_fn_param::complete_fn_param(&mut acc, &ctx);
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complete_keyword::complete_expr_keyword(&mut acc, &ctx);
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complete_keyword::complete_use_tree_keyword(&mut acc, &ctx);
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complete_snippet::complete_expr_snippet(&mut acc, &ctx);
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complete_snippet::complete_item_snippet(&mut acc, &ctx);
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complete_qualified_path::complete_qualified_path(&mut acc, &ctx);
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complete_unqualified_path::complete_unqualified_path(&mut acc, &ctx);
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complete_dot::complete_dot(&mut acc, &ctx);
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complete_record::complete_record(&mut acc, &ctx);
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complete_pattern::complete_pattern(&mut acc, &ctx);
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complete_postfix::complete_postfix(&mut acc, &ctx);
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complete_macro_in_item_position::complete_macro_in_item_position(&mut acc, &ctx);
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complete_trait_impl::complete_trait_impl(&mut acc, &ctx);
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}
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Some(acc)
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}
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@ -5,23 +5,26 @@
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use super::completion_context::CompletionContext;
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use super::completion_item::{CompletionItem, CompletionItemKind, CompletionKind, Completions};
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use ast::AttrInput;
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use ra_syntax::{
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ast::{Attr, AttrKind},
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AstNode,
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ast::{self, AttrKind},
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AstNode, SyntaxKind,
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};
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use rustc_hash::FxHashSet;
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pub(super) fn complete_attribute(acc: &mut Completions, ctx: &CompletionContext) {
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if !ctx.is_attribute {
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return;
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pub(super) fn complete_attribute(acc: &mut Completions, ctx: &CompletionContext) -> Option<()> {
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let attribute = ctx.attribute_under_caret.as_ref()?;
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match (attribute.path(), attribute.input()) {
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(Some(path), Some(AttrInput::TokenTree(token_tree))) if path.to_string() == "derive" => {
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complete_derive(acc, ctx, token_tree)
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}
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_ => complete_attribute_start(acc, ctx, attribute),
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}
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Some(())
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}
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let is_inner = ctx
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.original_token
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.ancestors()
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.find_map(Attr::cast)
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.map(|attr| attr.kind() == AttrKind::Inner)
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.unwrap_or(false);
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fn complete_attribute_start(acc: &mut Completions, ctx: &CompletionContext, attribute: &ast::Attr) {
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for attr_completion in ATTRIBUTES {
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let mut item = CompletionItem::new(
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CompletionKind::Attribute,
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@ -37,7 +40,7 @@ pub(super) fn complete_attribute(acc: &mut Completions, ctx: &CompletionContext)
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_ => {}
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}
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if is_inner || !attr_completion.should_be_inner {
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if attribute.kind() == AttrKind::Inner || !attr_completion.should_be_inner {
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acc.add(item);
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}
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}
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@ -126,6 +129,106 @@ const ATTRIBUTES: &[AttrCompletion] = &[
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},
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];
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fn complete_derive(acc: &mut Completions, ctx: &CompletionContext, derive_input: ast::TokenTree) {
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if let Ok(existing_derives) = parse_derive_input(derive_input) {
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for derive_completion in DEFAULT_DERIVE_COMPLETIONS
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.into_iter()
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.filter(|completion| !existing_derives.contains(completion.label))
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{
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let mut label = derive_completion.label.to_owned();
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for dependency in derive_completion
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.dependencies
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.into_iter()
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.filter(|&&dependency| !existing_derives.contains(dependency))
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{
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label.push_str(", ");
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label.push_str(dependency);
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}
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acc.add(
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CompletionItem::new(CompletionKind::Attribute, ctx.source_range(), label)
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.kind(CompletionItemKind::Attribute),
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);
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}
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for custom_derive_name in get_derive_names_in_scope(ctx).difference(&existing_derives) {
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acc.add(
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CompletionItem::new(
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CompletionKind::Attribute,
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ctx.source_range(),
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custom_derive_name,
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)
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.kind(CompletionItemKind::Attribute),
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);
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}
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}
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}
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fn parse_derive_input(derive_input: ast::TokenTree) -> Result<FxHashSet<String>, ()> {
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match (derive_input.left_delimiter_token(), derive_input.right_delimiter_token()) {
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(Some(left_paren), Some(right_paren))
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if left_paren.kind() == SyntaxKind::L_PAREN
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&& right_paren.kind() == SyntaxKind::R_PAREN =>
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{
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let mut input_derives = FxHashSet::default();
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let mut current_derive = String::new();
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for token in derive_input
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.syntax()
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.children_with_tokens()
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.filter_map(|token| token.into_token())
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.skip_while(|token| token != &left_paren)
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.skip(1)
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.take_while(|token| token != &right_paren)
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{
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if SyntaxKind::COMMA == token.kind() {
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if !current_derive.is_empty() {
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input_derives.insert(current_derive);
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current_derive = String::new();
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}
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} else {
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current_derive.push_str(token.to_string().trim());
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}
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}
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if !current_derive.is_empty() {
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input_derives.insert(current_derive);
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}
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Ok(input_derives)
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}
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_ => Err(()),
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}
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}
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fn get_derive_names_in_scope(ctx: &CompletionContext) -> FxHashSet<String> {
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let mut result = FxHashSet::default();
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ctx.scope().process_all_names(&mut |name, scope_def| {
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if let hir::ScopeDef::MacroDef(mac) = scope_def {
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if mac.is_derive_macro() {
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result.insert(name.to_string());
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}
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}
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});
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result
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}
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struct DeriveCompletion {
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label: &'static str,
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dependencies: &'static [&'static str],
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}
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/// Standard Rust derives and the information about their dependencies
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/// (the dependencies are needed so that the main derive don't break the compilation when added)
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const DEFAULT_DERIVE_COMPLETIONS: &[DeriveCompletion] = &[
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DeriveCompletion { label: "Clone", dependencies: &[] },
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DeriveCompletion { label: "Copy", dependencies: &["Clone"] },
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DeriveCompletion { label: "Debug", dependencies: &[] },
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DeriveCompletion { label: "Default", dependencies: &[] },
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DeriveCompletion { label: "Hash", dependencies: &[] },
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DeriveCompletion { label: "PartialEq", dependencies: &[] },
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DeriveCompletion { label: "Eq", dependencies: &["PartialEq"] },
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DeriveCompletion { label: "PartialOrd", dependencies: &["PartialEq"] },
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DeriveCompletion { label: "Ord", dependencies: &["PartialOrd", "Eq", "PartialEq"] },
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];
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#[cfg(test)]
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mod tests {
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use crate::completion::{test_utils::do_completion, CompletionItem, CompletionKind};
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@ -135,6 +238,170 @@ mod tests {
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do_completion(code, CompletionKind::Attribute)
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}
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#[test]
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fn empty_derive_completion() {
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assert_debug_snapshot!(
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do_attr_completion(
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r"
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#[derive(<|>)]
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struct Test {}
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",
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),
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@r###"
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[
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CompletionItem {
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label: "Clone",
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source_range: 30..30,
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delete: 30..30,
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insert: "Clone",
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kind: Attribute,
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},
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CompletionItem {
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label: "Copy, Clone",
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source_range: 30..30,
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delete: 30..30,
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insert: "Copy, Clone",
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kind: Attribute,
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},
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CompletionItem {
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label: "Debug",
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source_range: 30..30,
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delete: 30..30,
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insert: "Debug",
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kind: Attribute,
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},
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CompletionItem {
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label: "Default",
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source_range: 30..30,
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delete: 30..30,
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insert: "Default",
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kind: Attribute,
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},
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CompletionItem {
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label: "Eq, PartialEq",
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source_range: 30..30,
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delete: 30..30,
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insert: "Eq, PartialEq",
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kind: Attribute,
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},
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CompletionItem {
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label: "Hash",
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source_range: 30..30,
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delete: 30..30,
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insert: "Hash",
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kind: Attribute,
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},
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CompletionItem {
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label: "Ord, PartialOrd, Eq, PartialEq",
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source_range: 30..30,
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delete: 30..30,
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insert: "Ord, PartialOrd, Eq, PartialEq",
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kind: Attribute,
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},
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CompletionItem {
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label: "PartialEq",
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source_range: 30..30,
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delete: 30..30,
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insert: "PartialEq",
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kind: Attribute,
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},
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CompletionItem {
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label: "PartialOrd, PartialEq",
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source_range: 30..30,
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delete: 30..30,
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insert: "PartialOrd, PartialEq",
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kind: Attribute,
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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 no_completion_for_incorrect_derive() {
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assert_debug_snapshot!(
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do_attr_completion(
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r"
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#[derive{<|>)]
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struct Test {}
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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 derive_with_input_completion() {
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assert_debug_snapshot!(
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do_attr_completion(
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r"
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#[derive(serde::Serialize, PartialEq, <|>)]
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struct Test {}
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",
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),
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@r###"
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[
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CompletionItem {
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label: "Clone",
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source_range: 59..59,
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delete: 59..59,
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insert: "Clone",
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kind: Attribute,
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},
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CompletionItem {
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label: "Copy, Clone",
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source_range: 59..59,
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delete: 59..59,
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insert: "Copy, Clone",
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kind: Attribute,
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},
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CompletionItem {
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label: "Debug",
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source_range: 59..59,
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delete: 59..59,
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insert: "Debug",
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kind: Attribute,
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},
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CompletionItem {
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label: "Default",
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source_range: 59..59,
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delete: 59..59,
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insert: "Default",
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kind: Attribute,
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},
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CompletionItem {
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label: "Eq",
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source_range: 59..59,
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delete: 59..59,
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insert: "Eq",
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kind: Attribute,
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},
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CompletionItem {
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label: "Hash",
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source_range: 59..59,
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delete: 59..59,
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insert: "Hash",
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kind: Attribute,
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},
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CompletionItem {
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label: "Ord, PartialOrd, Eq",
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source_range: 59..59,
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delete: 59..59,
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insert: "Ord, PartialOrd, Eq",
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kind: Attribute,
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},
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CompletionItem {
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label: "PartialOrd",
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source_range: 59..59,
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delete: 59..59,
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insert: "PartialOrd",
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kind: Attribute,
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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 test_attribute_completion() {
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assert_debug_snapshot!(
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|
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@ -58,7 +58,7 @@ pub(crate) struct CompletionContext<'a> {
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pub(super) is_macro_call: bool,
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pub(super) is_path_type: bool,
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pub(super) has_type_args: bool,
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pub(super) is_attribute: bool,
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pub(super) attribute_under_caret: Option<ast::Attr>,
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}
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impl<'a> CompletionContext<'a> {
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|
@ -116,7 +116,7 @@ impl<'a> CompletionContext<'a> {
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is_path_type: false,
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has_type_args: false,
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dot_receiver_is_ambiguous_float_literal: false,
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is_attribute: false,
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attribute_under_caret: None,
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};
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let mut original_file = original_file.syntax().clone();
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|
@ -200,6 +200,7 @@ impl<'a> CompletionContext<'a> {
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Some(ty)
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})
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.flatten();
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self.attribute_under_caret = find_node_at_offset(&file_with_fake_ident, offset);
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// First, let's try to complete a reference to some declaration.
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if let Some(name_ref) = find_node_at_offset::<ast::NameRef>(&file_with_fake_ident, offset) {
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|
@ -318,7 +319,6 @@ impl<'a> CompletionContext<'a> {
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.and_then(|it| it.syntax().parent().and_then(ast::CallExpr::cast))
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.is_some();
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self.is_macro_call = path.syntax().parent().and_then(ast::MacroCall::cast).is_some();
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self.is_attribute = path.syntax().parent().and_then(ast::Attr::cast).is_some();
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self.is_path_type = path.syntax().parent().and_then(ast::PathType::cast).is_some();
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self.has_type_args = segment.type_arg_list().is_some();
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|
|
|
@ -467,7 +467,7 @@ impl ast::TokenTree {
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pub fn right_delimiter_token(&self) -> Option<SyntaxToken> {
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self.syntax().last_child_or_token()?.into_token().filter(|it| match it.kind() {
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T!['{'] | T!['('] | T!['['] => true,
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T!['}'] | T![')'] | T![']'] => true,
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_ => false,
|
||||
})
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||||
}
|
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|
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