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Remove no_completions_required from CompletionContext
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119ba82e4b
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0b54d31359
@ -163,6 +163,7 @@ fn add_keyword(acc: &mut Completions, ctx: &CompletionContext, kw: &str, snippet
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match ctx.config.snippet_cap {
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Some(cap) => {
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if snippet.ends_with('}') && ctx.incomplete_let {
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// complete block expression snippets with a trailing semicolon, if inside an incomplete let
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cov_mark::hit!(let_semi);
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item.insert_snippet(cap, format!("{};", snippet));
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} else {
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@ -8,7 +8,7 @@
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//! show up for normal completions, or they won't show completions other than lifetimes depending
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//! on the fixture input.
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use hir::{known, ScopeDef};
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use syntax::ast;
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use syntax::{ast, TokenText};
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use crate::{
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completions::Completions,
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@ -19,24 +19,24 @@ use crate::{
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pub(crate) fn complete_lifetime(acc: &mut Completions, ctx: &CompletionContext) {
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let lp = match &ctx.lifetime_ctx {
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Some(LifetimeContext::Lifetime) => None,
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Some(LifetimeContext::LifetimeParam(param)) => param.as_ref(),
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Some(LifetimeContext::LifetimeParam { is_decl: false, param }) => Some(param),
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_ => return,
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};
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let lp_string;
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let param_lifetime = match (&ctx.name_syntax, lp.and_then(|lp| lp.lifetime())) {
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(Some(ast::NameLike::Lifetime(lt)), Some(lp)) if lp == lt.clone() => return,
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(Some(_), Some(lp)) => {
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lp_string = lp.to_string();
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Some(&*lp_string)
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}
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(Some(_), Some(lp)) => Some(lp),
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_ => None,
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};
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let param_lifetime = param_lifetime.as_ref().map(ast::Lifetime::text);
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let param_lifetime = param_lifetime.as_ref().map(TokenText::as_str);
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ctx.scope.process_all_names(&mut |name, res| {
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if let ScopeDef::GenericParam(hir::GenericParam::LifetimeParam(_)) = res {
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if param_lifetime != Some(&*name.to_smol_str()) {
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acc.add_lifetime(ctx, name);
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}
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if matches!(
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res,
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ScopeDef::GenericParam(hir::GenericParam::LifetimeParam(_))
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if param_lifetime != Some(&*name.to_smol_str())
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) {
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acc.add_lifetime(ctx, name);
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}
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});
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if param_lifetime.is_none() {
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@ -195,6 +195,12 @@ fn foo2<'lifetime, T>() where T: Trait<Item = 'a$0> {}
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fn complete_lifetime_in_param_list() {
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check(
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r#"
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fn foo<'$0>() {}
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"#,
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expect![[r#""#]],
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);
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check(
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r#"
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fn foo<'a$0>() {}
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"#,
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expect![[r#""#]],
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@ -24,8 +24,8 @@ use text_edit::Indel;
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use crate::{
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patterns::{
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determine_location, determine_prev_sibling, for_is_prev2, inside_impl_trait_block,
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is_in_loop_body, previous_token, ImmediateLocation, ImmediatePrevSibling,
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determine_location, determine_prev_sibling, for_is_prev2, is_in_loop_body, previous_token,
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ImmediateLocation, ImmediatePrevSibling,
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},
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CompletionConfig,
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};
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@ -94,7 +94,7 @@ pub(super) struct PatternContext {
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#[derive(Debug)]
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pub(super) enum LifetimeContext {
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LifetimeParam(Option<ast::LifetimeParam>),
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LifetimeParam { is_decl: bool, param: ast::LifetimeParam },
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Lifetime,
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LabelRef,
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LabelDef,
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@ -115,6 +115,7 @@ pub(crate) struct CompletionContext<'a> {
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pub(super) db: &'a RootDatabase,
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pub(super) config: &'a CompletionConfig,
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pub(super) position: FilePosition,
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/// The token before the cursor, in the original file.
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pub(super) original_token: SyntaxToken,
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/// The token before the cursor, in the macro-expanded file.
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@ -146,32 +147,22 @@ pub(crate) struct CompletionContext<'a> {
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pub(super) existing_derives: FxHashSet<hir::Macro>,
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pub(super) locals: Vec<(Name, Local)>,
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no_completion_required: bool,
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}
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impl<'a> CompletionContext<'a> {
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/// Checks whether completions in that particular case don't make much sense.
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/// Examples:
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/// - `fn $0` -- we expect function name, it's unlikely that "hint" will be helpful.
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/// Exception for this case is `impl Trait for Foo`, where we would like to hint trait method names.
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/// - `for _ i$0` -- obviously, it'll be "in" keyword.
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pub(crate) fn no_completion_required(&self) -> bool {
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self.no_completion_required
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}
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/// The range of the identifier that is being completed.
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pub(crate) fn source_range(&self) -> TextRange {
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// check kind of macro-expanded token, but use range of original token
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let kind = self.token.kind();
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if kind == IDENT || kind == LIFETIME_IDENT || kind == UNDERSCORE || kind.is_keyword() {
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self.original_token.text_range()
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} else if kind == CHAR {
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// assume we are completing a lifetime but the user has only typed the '
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cov_mark::hit!(completes_if_lifetime_without_idents);
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TextRange::at(self.original_token.text_range().start(), TextSize::from(1))
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} else {
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TextRange::empty(self.position.offset)
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match kind {
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CHAR => {
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// assume we are completing a lifetime but the user has only typed the '
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cov_mark::hit!(completes_if_lifetime_without_idents);
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TextRange::at(self.original_token.text_range().start(), TextSize::from(1))
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}
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IDENT | LIFETIME_IDENT | UNDERSCORE => self.original_token.text_range(),
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_ if kind.is_keyword() => self.original_token.text_range(),
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_ => TextRange::empty(self.position.offset),
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}
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}
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@ -453,7 +444,6 @@ impl<'a> CompletionContext<'a> {
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path_context: None,
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locals,
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incomplete_let: false,
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no_completion_required: false,
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existing_derives: Default::default(),
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};
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ctx.expand_and_fill(
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@ -740,14 +730,16 @@ impl<'a> CompletionContext<'a> {
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) {
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let fake_ident_token = file_with_fake_ident.token_at_offset(offset).right_biased().unwrap();
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let syntax_element = NodeOrToken::Token(fake_ident_token);
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self.previous_token = previous_token(syntax_element.clone());
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self.no_completion_required = {
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let inside_impl_trait_block = inside_impl_trait_block(syntax_element.clone());
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let fn_is_prev = self.previous_token_is(T![fn]);
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let for_is_prev2 = for_is_prev2(syntax_element.clone());
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(fn_is_prev && !inside_impl_trait_block) || for_is_prev2
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};
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if for_is_prev2(syntax_element.clone()) {
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// for pat $0
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// there is nothing to complete here except `in` keyword
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// don't bother populating the context
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// FIXME: the completion calculations should end up good enough
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// such that this special case becomes unnecessary
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return;
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}
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self.previous_token = previous_token(syntax_element.clone());
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self.fake_attribute_under_caret = syntax_element.ancestors().find_map(ast::Attr::cast);
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self.incomplete_let =
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@ -755,9 +747,7 @@ impl<'a> CompletionContext<'a> {
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it.syntax().text_range().end() == syntax_element.text_range().end()
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});
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let (expected_type, expected_name) = self.expected_type_and_name();
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self.expected_type = expected_type;
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self.expected_name = expected_name;
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(self.expected_type, self.expected_name) = self.expected_type_and_name();
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// Overwrite the path kind for derives
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if let Some((original_file, file_with_fake_ident, offset)) = derive_ctx {
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@ -808,8 +798,7 @@ impl<'a> CompletionContext<'a> {
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match name_like {
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ast::NameLike::Lifetime(lifetime) => {
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self.lifetime_ctx =
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Self::classify_lifetime(&self.sema, original_file, lifetime, offset);
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self.lifetime_ctx = Self::classify_lifetime(&self.sema, original_file, lifetime);
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}
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ast::NameLike::NameRef(name_ref) => {
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if let Some((path_ctx, pat_ctx)) =
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@ -826,10 +815,9 @@ impl<'a> CompletionContext<'a> {
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}
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fn classify_lifetime(
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sema: &Semantics<RootDatabase>,
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original_file: &SyntaxNode,
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_sema: &Semantics<RootDatabase>,
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_original_file: &SyntaxNode,
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lifetime: ast::Lifetime,
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offset: TextSize,
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) -> Option<LifetimeContext> {
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let parent = lifetime.syntax().parent()?;
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if parent.kind() == ERROR {
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@ -838,7 +826,10 @@ impl<'a> CompletionContext<'a> {
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Some(match_ast! {
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match parent {
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ast::LifetimeParam(_) => LifetimeContext::LifetimeParam(sema.find_node_at_offset_with_macros(original_file, offset)),
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ast::LifetimeParam(param) => LifetimeContext::LifetimeParam {
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is_decl: param.lifetime().as_ref() == Some(&lifetime),
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param
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},
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ast::BreakExpr(_) => LifetimeContext::LabelRef,
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ast::ContinueExpr(_) => LifetimeContext::LabelRef,
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ast::Label(_) => LifetimeContext::LabelDef,
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@ -144,12 +144,6 @@ pub fn completions(
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) -> Option<Completions> {
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let ctx = CompletionContext::new(db, position, config)?;
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if ctx.no_completion_required() {
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cov_mark::hit!(no_completion_required);
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// No work required here.
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return None;
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}
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let mut acc = Completions::default();
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completions::attribute::complete_attribute(&mut acc, &ctx);
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completions::attribute::complete_derive(&mut acc, &ctx);
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@ -15,7 +15,7 @@ use syntax::{
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};
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#[cfg(test)]
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use crate::tests::{check_pattern_is_applicable, check_pattern_is_not_applicable};
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use crate::tests::check_pattern_is_applicable;
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/// Immediate previous node to what we are completing.
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#[derive(Copy, Clone, Debug, PartialEq, Eq)]
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@ -291,24 +291,6 @@ fn find_node_with_range<N: AstNode>(syntax: &SyntaxNode, range: TextRange) -> Op
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syntax.covering_element(range).ancestors().find_map(N::cast)
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}
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pub(crate) fn inside_impl_trait_block(element: SyntaxElement) -> bool {
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// Here we search `impl` keyword up through the all ancestors, unlike in `has_impl_parent`,
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// where we only check the first parent with different text range.
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element
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.ancestors()
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.find(|it| it.kind() == IMPL)
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.map(|it| ast::Impl::cast(it).unwrap())
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.map(|it| it.trait_().is_some())
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.unwrap_or(false)
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}
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#[test]
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fn test_inside_impl_trait_block() {
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check_pattern_is_applicable(r"impl Foo for Bar { f$0 }", inside_impl_trait_block);
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check_pattern_is_applicable(r"impl Foo for Bar { fn f$0 }", inside_impl_trait_block);
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check_pattern_is_not_applicable(r"impl A { f$0 }", inside_impl_trait_block);
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check_pattern_is_not_applicable(r"impl A { fn f$0 }", inside_impl_trait_block);
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}
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pub(crate) fn previous_token(element: SyntaxElement) -> Option<SyntaxToken> {
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element.into_token().and_then(previous_non_trivia_token)
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}
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@ -154,10 +154,12 @@ fn render_completion_list(completions: Vec<CompletionItem>) -> String {
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.collect()
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}
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#[track_caller]
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pub(crate) fn check_edit(what: &str, ra_fixture_before: &str, ra_fixture_after: &str) {
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check_edit_with_config(TEST_CONFIG, what, ra_fixture_before, ra_fixture_after)
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}
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#[track_caller]
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pub(crate) fn check_edit_with_config(
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config: CompletionConfig,
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what: &str,
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@ -199,32 +201,14 @@ pub(crate) fn check_pattern_is_applicable(code: &str, check: impl FnOnce(SyntaxE
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assert!(check(NodeOrToken::Token(token)));
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}
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pub(crate) fn check_pattern_is_not_applicable(code: &str, check: fn(SyntaxElement) -> bool) {
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let (db, pos) = position(code);
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let sema = Semantics::new(&db);
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let original_file = sema.parse(pos.file_id);
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let token = original_file.syntax().token_at_offset(pos.offset).left_biased().unwrap();
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assert!(!check(NodeOrToken::Token(token)));
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}
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pub(crate) fn get_all_items(config: CompletionConfig, code: &str) -> Vec<CompletionItem> {
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let (db, position) = position(code);
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crate::completions(&db, &config, position).map_or_else(Vec::default, Into::into)
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}
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fn check_no_completion(ra_fixture: &str) {
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let (db, position) = position(ra_fixture);
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assert!(
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crate::completions(&db, &TEST_CONFIG, position).is_none(),
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"Completions were generated, but weren't expected"
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);
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}
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#[test]
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fn test_no_completions_required() {
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cov_mark::check!(no_completion_required);
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check_no_completion(r#"fn foo() { for i i$0 }"#);
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assert_eq!(completion_list(r#"fn foo() { for i i$0 }"#), String::new());
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}
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#[test]
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