Simplify and improve perf of import_assets::import_for_item
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18591ae5c8
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@ -1,14 +1,14 @@
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//! Look up accessible paths for items.
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use hir::{
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AsAssocItem, AssocItem, AssocItemContainer, Crate, ItemInNs, ModPath, Module, ModuleDef,
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AsAssocItem, AssocItem, AssocItemContainer, Crate, ItemInNs, ModPath, Module, ModuleDef, Name,
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PathResolution, PrefixKind, ScopeDef, Semantics, SemanticsScope, Type,
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};
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use itertools::Itertools;
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use rustc_hash::FxHashSet;
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use itertools::{EitherOrBoth, Itertools};
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use rustc_hash::{FxHashMap, FxHashSet};
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use syntax::{
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ast::{self, make, HasName},
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utils::path_to_string_stripping_turbo_fish,
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AstNode, SyntaxNode,
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AstNode, SmolStr, SyntaxNode,
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};
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use crate::{
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@ -51,18 +51,11 @@ pub struct TraitImportCandidate {
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#[derive(Debug)]
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pub struct PathImportCandidate {
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/// Optional qualifier before name.
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pub qualifier: Option<FirstSegmentUnresolved>,
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pub qualifier: Option<Vec<SmolStr>>,
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/// The name the item (struct, trait, enum, etc.) should have.
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pub name: NameToImport,
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}
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/// A qualifier that has a first segment and it's unresolved.
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#[derive(Debug)]
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pub struct FirstSegmentUnresolved {
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fist_segment: ast::NameRef,
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full_qualifier: ast::Path,
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}
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/// A name that will be used during item lookups.
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#[derive(Debug, Clone)]
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pub enum NameToImport {
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@ -348,60 +341,71 @@ fn path_applicable_imports(
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})
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.collect()
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}
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Some(first_segment_unresolved) => {
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let unresolved_qualifier =
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path_to_string_stripping_turbo_fish(&first_segment_unresolved.full_qualifier);
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let unresolved_first_segment = first_segment_unresolved.fist_segment.text();
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items_locator::items_with_name(
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sema,
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current_crate,
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path_candidate.name.clone(),
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AssocSearchMode::Include,
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Some(DEFAULT_QUERY_SEARCH_LIMIT.inner()),
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)
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.filter_map(|item| {
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import_for_item(
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sema.db,
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mod_path,
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&unresolved_first_segment,
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&unresolved_qualifier,
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item,
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)
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})
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.collect()
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}
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Some(qualifier) => items_locator::items_with_name(
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sema,
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current_crate,
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path_candidate.name.clone(),
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AssocSearchMode::Include,
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Some(DEFAULT_QUERY_SEARCH_LIMIT.inner()),
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)
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.filter_map(|item| import_for_item(sema.db, mod_path, &qualifier, item))
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.collect(),
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}
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}
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fn import_for_item(
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db: &RootDatabase,
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mod_path: impl Fn(ItemInNs) -> Option<ModPath>,
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unresolved_first_segment: &str,
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unresolved_qualifier: &str,
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unresolved_qualifier: &[SmolStr],
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original_item: ItemInNs,
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) -> Option<LocatedImport> {
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let _p = profile::span("import_assets::import_for_item");
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let [first_segment, ..] = unresolved_qualifier else { return None };
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let original_item_candidate = item_for_path_search(db, original_item)?;
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let import_path_candidate = mod_path(original_item_candidate)?;
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let import_path_string = import_path_candidate.display(db).to_string();
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let item_as_assoc = item_as_assoc(db, original_item);
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let expected_import_end = if item_as_assoc(db, original_item).is_some() {
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unresolved_qualifier.to_string()
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} else {
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format!("{unresolved_qualifier}::{}", item_name(db, original_item)?.display(db))
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let (original_item_candidate, trait_item_to_import) = match item_as_assoc {
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Some(assoc_item) => match assoc_item.container(db) {
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AssocItemContainer::Trait(trait_) => {
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let trait_ = ItemInNs::from(ModuleDef::from(trait_));
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(trait_, Some(trait_))
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}
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AssocItemContainer::Impl(impl_) => {
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(ItemInNs::from(ModuleDef::from(impl_.self_ty(db).as_adt()?)), None)
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}
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},
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None => (original_item, None),
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};
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if !import_path_string.contains(unresolved_first_segment)
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|| !import_path_string.ends_with(&expected_import_end)
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{
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let import_path_candidate = mod_path(original_item_candidate)?;
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let mut import_path_candidate_segments = import_path_candidate.segments().iter().rev();
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let predicate = |it: EitherOrBoth<&SmolStr, &Name>| match it {
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// segments match, check next one
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EitherOrBoth::Both(a, b) if b.as_str() == Some(&**a) => None,
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// segments mismatch / qualifier is longer than the path, bail out
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EitherOrBoth::Both(..) | EitherOrBoth::Left(_) => Some(false),
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// all segments match and we have exhausted the qualifier, proceed
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EitherOrBoth::Right(_) => Some(true),
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};
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if item_as_assoc.is_none() {
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let item_name = item_name(db, original_item)?.as_text()?;
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let last_segment = import_path_candidate_segments.next()?;
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if last_segment.as_str() != Some(&*item_name) {
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return None;
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}
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}
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let ends_with = unresolved_qualifier
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.iter()
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.rev()
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.zip_longest(import_path_candidate_segments)
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.find_map(predicate)
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.unwrap_or(true);
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if !ends_with {
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return None;
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}
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let segment_import =
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find_import_for_segment(db, original_item_candidate, unresolved_first_segment)?;
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let trait_item_to_import = item_as_assoc(db, original_item)
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.and_then(|assoc| assoc.containing_trait(db))
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.map(|trait_| ItemInNs::from(ModuleDef::from(trait_)));
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let segment_import = find_import_for_segment(db, original_item_candidate, first_segment)?;
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Some(match (segment_import == original_item_candidate, trait_item_to_import) {
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(true, Some(_)) => {
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// FIXME we should be able to import both the trait and the segment,
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@ -424,18 +428,22 @@ fn import_for_item(
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pub fn item_for_path_search(db: &RootDatabase, item: ItemInNs) -> Option<ItemInNs> {
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Some(match item {
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ItemInNs::Types(_) | ItemInNs::Values(_) => match item_as_assoc(db, item) {
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Some(assoc_item) => match assoc_item.container(db) {
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AssocItemContainer::Trait(trait_) => ItemInNs::from(ModuleDef::from(trait_)),
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AssocItemContainer::Impl(impl_) => {
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ItemInNs::from(ModuleDef::from(impl_.self_ty(db).as_adt()?))
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}
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},
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Some(assoc_item) => item_for_path_search_assoc(db, assoc_item)?,
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None => item,
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},
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ItemInNs::Macros(_) => item,
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})
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}
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fn item_for_path_search_assoc(db: &RootDatabase, assoc_item: AssocItem) -> Option<ItemInNs> {
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Some(match assoc_item.container(db) {
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AssocItemContainer::Trait(trait_) => ItemInNs::from(ModuleDef::from(trait_)),
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AssocItemContainer::Impl(impl_) => {
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ItemInNs::from(ModuleDef::from(impl_.self_ty(db).as_adt()?))
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}
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})
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}
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fn find_import_for_segment(
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db: &RootDatabase,
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original_item: ItemInNs,
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@ -512,6 +520,7 @@ fn trait_applicable_items(
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.collect();
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let mut located_imports = FxHashSet::default();
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let mut trait_import_paths = FxHashMap::default();
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if trait_assoc_item {
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trait_candidate.receiver_ty.iterate_path_candidates(
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@ -529,11 +538,14 @@ fn trait_applicable_items(
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}
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let located_trait = assoc.containing_trait(db)?;
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let trait_item = ItemInNs::from(ModuleDef::from(located_trait));
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let original_item = assoc_to_item(assoc);
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let import_path = trait_import_paths
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.entry(trait_item)
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.or_insert_with(|| mod_path(trait_item))
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.clone()?;
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located_imports.insert(LocatedImport::new(
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mod_path(trait_item)?,
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import_path,
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trait_item,
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original_item,
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assoc_to_item(assoc),
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));
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}
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None::<()>
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@ -551,11 +563,14 @@ fn trait_applicable_items(
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if required_assoc_items.contains(&assoc) {
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let located_trait = assoc.containing_trait(db)?;
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let trait_item = ItemInNs::from(ModuleDef::from(located_trait));
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let original_item = assoc_to_item(assoc);
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let import_path = trait_import_paths
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.entry(trait_item)
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.or_insert_with(|| mod_path(trait_item))
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.clone()?;
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located_imports.insert(LocatedImport::new(
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mod_path(trait_item)?,
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import_path,
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trait_item,
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original_item,
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assoc_to_item(assoc),
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));
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}
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None::<()>
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@ -653,18 +668,13 @@ fn path_import_candidate(
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Some(match qualifier {
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Some(qualifier) => match sema.resolve_path(&qualifier) {
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None => {
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let qualifier_start =
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qualifier.syntax().descendants().find_map(ast::NameRef::cast)?;
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let qualifier_start_path =
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qualifier_start.syntax().ancestors().find_map(ast::Path::cast)?;
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if sema.resolve_path(&qualifier_start_path).is_none() {
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ImportCandidate::Path(PathImportCandidate {
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qualifier: Some(FirstSegmentUnresolved {
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fist_segment: qualifier_start,
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full_qualifier: qualifier,
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}),
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name,
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})
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if qualifier.first_qualifier().map_or(true, |it| sema.resolve_path(&it).is_none()) {
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let mut qualifier = qualifier
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.segments_of_this_path_only_rev()
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.map(|seg| seg.name_ref().map(|name| SmolStr::new(name.text())))
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.collect::<Option<Vec<_>>>()?;
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qualifier.reverse();
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ImportCandidate::Path(PathImportCandidate { qualifier: Some(qualifier), name })
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} else {
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return None;
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}
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@ -275,10 +275,19 @@ pub fn first_qualifier_or_self(&self) -> ast::Path {
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successors(Some(self.clone()), ast::Path::qualifier).last().unwrap()
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}
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pub fn first_qualifier(&self) -> Option<ast::Path> {
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successors(self.qualifier(), ast::Path::qualifier).last()
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}
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pub fn first_segment(&self) -> Option<ast::PathSegment> {
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self.first_qualifier_or_self().segment()
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}
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// FIXME: Check usages of Self::segments, they might be wrong because of the logic of the bloew function
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pub fn segments_of_this_path_only_rev(&self) -> impl Iterator<Item = ast::PathSegment> + Clone {
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self.qualifiers_and_self().filter_map(|it| it.segment())
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}
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pub fn segments(&self) -> impl Iterator<Item = ast::PathSegment> + Clone {
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successors(self.first_segment(), |p| {
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p.parent_path().parent_path().and_then(|p| p.segment())
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@ -289,6 +298,10 @@ pub fn qualifiers(&self) -> impl Iterator<Item = ast::Path> + Clone {
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successors(self.qualifier(), |p| p.qualifier())
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}
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pub fn qualifiers_and_self(&self) -> impl Iterator<Item = ast::Path> + Clone {
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successors(Some(self.clone()), |p| p.qualifier())
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}
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pub fn top_path(&self) -> ast::Path {
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let mut this = self.clone();
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while let Some(path) = this.parent_path() {
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@ -1,48 +1,8 @@
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//! A set of utils methods to reuse on other abstraction levels
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use itertools::Itertools;
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use crate::{ast, match_ast, AstNode, SyntaxKind};
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pub fn path_to_string_stripping_turbo_fish(path: &ast::Path) -> String {
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path.syntax()
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.children()
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.filter_map(|node| {
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match_ast! {
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match node {
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ast::PathSegment(it) => {
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Some(it.name_ref()?.to_string())
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},
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ast::Path(it) => {
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Some(path_to_string_stripping_turbo_fish(&it))
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},
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_ => None,
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}
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}
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})
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.join("::")
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}
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use crate::SyntaxKind;
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pub fn is_raw_identifier(name: &str) -> bool {
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let is_keyword = SyntaxKind::from_keyword(name).is_some();
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is_keyword && !matches!(name, "self" | "crate" | "super" | "Self")
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}
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#[cfg(test)]
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mod tests {
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use super::path_to_string_stripping_turbo_fish;
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use crate::ast::make;
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#[test]
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fn turbofishes_are_stripped() {
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assert_eq!("Vec", path_to_string_stripping_turbo_fish(&make::path_from_text("Vec::<i32>")),);
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assert_eq!(
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"Vec::new",
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path_to_string_stripping_turbo_fish(&make::path_from_text("Vec::<i32>::new")),
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);
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assert_eq!(
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"Vec::new",
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path_to_string_stripping_turbo_fish(&make::path_from_text("Vec::new()")),
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);
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}
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}
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