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https://github.com/rust-lang/rust.git
synced 2024-11-29 02:03:53 +00:00
Rename ResolvedVisibility -> Visibility
This commit is contained in:
parent
e1a2961273
commit
50ebff257d
@ -118,7 +118,7 @@ impl_froms!(
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BuiltinType
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);
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pub use hir_def::{attr::Attrs, visibility::ResolvedVisibility};
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pub use hir_def::{attr::Attrs, visibility::Visibility};
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impl Module {
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pub(crate) fn new(krate: Crate, crate_module_id: LocalModuleId) -> Module {
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@ -256,7 +256,7 @@ impl StructField {
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}
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impl HasVisibility for StructField {
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fn visibility(&self, db: &impl HirDatabase) -> ResolvedVisibility {
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fn visibility(&self, db: &impl HirDatabase) -> Visibility {
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let struct_field_id: hir_def::StructFieldId = (*self).into();
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let visibility = db.visibility(struct_field_id.into());
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let parent_id: hir_def::VariantId = self.parent.into();
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@ -1052,7 +1052,7 @@ impl<T: Into<AttrDef> + Copy> Docs for T {
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}
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pub trait HasVisibility {
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fn visibility(&self, db: &impl HirDatabase) -> ResolvedVisibility;
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fn visibility(&self, db: &impl HirDatabase) -> Visibility;
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fn visible_from(&self, db: &impl HirDatabase, module: Module) -> bool {
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let vis = self.visibility(db);
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vis.visible_from(db, module.id)
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@ -543,7 +543,7 @@ where
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};
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self.body.item_scope.define_def(def);
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if let Some(name) = name {
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let vis = crate::visibility::ResolvedVisibility::Public; // FIXME determine correctly
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let vis = crate::visibility::Visibility::Public; // FIXME determine correctly
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self.body
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.item_scope
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.push_res(name.as_name(), crate::per_ns::PerNs::from_def(def, vis));
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@ -6,8 +6,8 @@ use once_cell::sync::Lazy;
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use rustc_hash::FxHashMap;
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use crate::{
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per_ns::PerNs, visibility::ResolvedVisibility, AdtId, BuiltinType, ImplId, MacroDefId,
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ModuleDefId, TraitId,
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per_ns::PerNs, visibility::Visibility, AdtId, BuiltinType, ImplId, MacroDefId, ModuleDefId,
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TraitId,
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};
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#[derive(Debug, Default, PartialEq, Eq)]
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@ -33,9 +33,7 @@ pub struct ItemScope {
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static BUILTIN_SCOPE: Lazy<FxHashMap<Name, PerNs>> = Lazy::new(|| {
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BuiltinType::ALL
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.iter()
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.map(|(name, ty)| {
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(name.clone(), PerNs::types(ty.clone().into(), ResolvedVisibility::Public))
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})
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.map(|(name, ty)| (name.clone(), PerNs::types(ty.clone().into(), Visibility::Public)))
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.collect()
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});
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@ -159,7 +157,7 @@ impl ItemScope {
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}
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impl PerNs {
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pub(crate) fn from_def(def: ModuleDefId, v: ResolvedVisibility) -> PerNs {
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pub(crate) fn from_def(def: ModuleDefId, v: Visibility) -> PerNs {
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match def {
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ModuleDefId::ModuleId(_) => PerNs::types(def, v),
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ModuleDefId::FunctionId(_) => PerNs::values(def, v),
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@ -24,7 +24,7 @@ use crate::{
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},
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path::{ModPath, PathKind},
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per_ns::PerNs,
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visibility::ResolvedVisibility,
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visibility::Visibility,
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AdtId, AstId, ConstLoc, ContainerId, EnumLoc, EnumVariantId, FunctionLoc, ImplLoc, Intern,
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LocalModuleId, ModuleDefId, ModuleId, StaticLoc, StructLoc, TraitLoc, TypeAliasLoc, UnionLoc,
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};
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@ -109,7 +109,7 @@ struct MacroDirective {
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struct DefCollector<'a, DB> {
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db: &'a DB,
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def_map: CrateDefMap,
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glob_imports: FxHashMap<LocalModuleId, Vec<(LocalModuleId, ResolvedVisibility)>>,
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glob_imports: FxHashMap<LocalModuleId, Vec<(LocalModuleId, Visibility)>>,
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unresolved_imports: Vec<ImportDirective>,
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resolved_imports: Vec<ImportDirective>,
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unexpanded_macros: Vec<MacroDirective>,
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@ -217,8 +217,8 @@ where
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if export {
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self.update(
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self.def_map.root,
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&[(name, PerNs::macros(macro_, ResolvedVisibility::Public))],
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ResolvedVisibility::Public,
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&[(name, PerNs::macros(macro_, Visibility::Public))],
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Visibility::Public,
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);
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}
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}
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@ -358,7 +358,7 @@ where
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let vis = self
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.def_map
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.resolve_visibility(self.db, module_id, &directive.import.visibility)
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.unwrap_or(ResolvedVisibility::Public);
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.unwrap_or(Visibility::Public);
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if import.is_glob {
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log::debug!("glob import: {:?}", import);
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@ -461,12 +461,7 @@ where
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}
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}
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fn update(
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&mut self,
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module_id: LocalModuleId,
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resolutions: &[(Name, PerNs)],
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vis: ResolvedVisibility,
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) {
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fn update(&mut self, module_id: LocalModuleId, resolutions: &[(Name, PerNs)], vis: Visibility) {
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self.update_recursive(module_id, resolutions, vis, 0)
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}
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@ -476,7 +471,7 @@ where
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resolutions: &[(Name, PerNs)],
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// All resolutions are imported with this visibility; the visibilies in
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// the `PerNs` values are ignored and overwritten
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vis: ResolvedVisibility,
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vis: Visibility,
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depth: usize,
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) {
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if depth > 100 {
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@ -749,7 +744,7 @@ where
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.def_collector
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.def_map
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.resolve_visibility(self.def_collector.db, self.module_id, visibility)
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.unwrap_or(ResolvedVisibility::Public);
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.unwrap_or(Visibility::Public);
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let modules = &mut self.def_collector.def_map.modules;
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let res = modules.alloc(ModuleData::default());
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modules[res].parent = Some(self.module_id);
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@ -825,7 +820,7 @@ where
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.def_collector
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.def_map
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.resolve_visibility(self.def_collector.db, self.module_id, vis)
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.unwrap_or(ResolvedVisibility::Public);
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.unwrap_or(Visibility::Public);
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self.def_collector.update(self.module_id, &[(name, PerNs::from_def(def, vis))], vis)
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}
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@ -21,7 +21,7 @@ use crate::{
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nameres::{BuiltinShadowMode, CrateDefMap},
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path::{ModPath, PathKind},
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per_ns::PerNs,
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visibility::{RawVisibility, ResolvedVisibility},
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visibility::{RawVisibility, Visibility},
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AdtId, CrateId, EnumVariantId, LocalModuleId, ModuleDefId, ModuleId,
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};
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@ -64,7 +64,7 @@ impl CrateDefMap {
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pub(super) fn resolve_name_in_extern_prelude(&self, name: &Name) -> PerNs {
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self.extern_prelude
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.get(name)
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.map_or(PerNs::none(), |&it| PerNs::types(it, ResolvedVisibility::Public))
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.map_or(PerNs::none(), |&it| PerNs::types(it, Visibility::Public))
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}
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pub(crate) fn resolve_visibility(
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@ -72,7 +72,7 @@ impl CrateDefMap {
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db: &impl DefDatabase,
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original_module: LocalModuleId,
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visibility: &RawVisibility,
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) -> Option<ResolvedVisibility> {
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) -> Option<Visibility> {
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match visibility {
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RawVisibility::Module(path) => {
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let (result, remaining) =
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@ -82,14 +82,14 @@ impl CrateDefMap {
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}
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let types = result.take_types()?;
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match types {
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ModuleDefId::ModuleId(m) => Some(ResolvedVisibility::Module(m)),
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ModuleDefId::ModuleId(m) => Some(Visibility::Module(m)),
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_ => {
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// error: visibility needs to refer to module
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None
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}
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}
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}
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RawVisibility::Public => Some(ResolvedVisibility::Public),
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RawVisibility::Public => Some(Visibility::Public),
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}
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}
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@ -119,18 +119,18 @@ impl CrateDefMap {
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tested_by!(macro_dollar_crate_self);
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PerNs::types(
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ModuleId { krate: self.krate, local_id: self.root }.into(),
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ResolvedVisibility::Public,
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Visibility::Public,
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)
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} else {
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let def_map = db.crate_def_map(krate);
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let module = ModuleId { krate, local_id: def_map.root };
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tested_by!(macro_dollar_crate_other);
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PerNs::types(module.into(), ResolvedVisibility::Public)
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PerNs::types(module.into(), Visibility::Public)
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}
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}
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PathKind::Crate => PerNs::types(
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ModuleId { krate: self.krate, local_id: self.root }.into(),
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ResolvedVisibility::Public,
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Visibility::Public,
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),
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// plain import or absolute path in 2015: crate-relative with
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// fallback to extern prelude (with the simplification in
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@ -161,7 +161,7 @@ impl CrateDefMap {
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if let Some(local_id) = m {
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PerNs::types(
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ModuleId { krate: self.krate, local_id }.into(),
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ResolvedVisibility::Public,
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Visibility::Public,
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)
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} else {
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log::debug!("super path in root module");
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@ -176,7 +176,7 @@ impl CrateDefMap {
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};
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if let Some(def) = self.extern_prelude.get(&segment) {
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log::debug!("absolute path {:?} resolved to crate {:?}", path, def);
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PerNs::types(*def, ResolvedVisibility::Public)
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PerNs::types(*def, Visibility::Public)
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} else {
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return ResolvePathResult::empty(ReachedFixedPoint::No); // extern crate declarations can add to the extern prelude
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}
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@ -225,7 +225,7 @@ impl CrateDefMap {
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match enum_data.variant(&segment) {
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Some(local_id) => {
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let variant = EnumVariantId { parent: e, local_id };
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PerNs::both(variant.into(), variant.into(), ResolvedVisibility::Public)
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PerNs::both(variant.into(), variant.into(), Visibility::Public)
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}
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None => {
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return ResolvePathResult::with(
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@ -274,12 +274,12 @@ impl CrateDefMap {
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let from_legacy_macro = self[module]
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.scope
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.get_legacy_macro(name)
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.map_or_else(PerNs::none, |m| PerNs::macros(m, ResolvedVisibility::Public));
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.map_or_else(PerNs::none, |m| PerNs::macros(m, Visibility::Public));
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let from_scope = self[module].scope.get(name, shadow);
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let from_extern_prelude = self
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.extern_prelude
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.get(name)
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.map_or(PerNs::none(), |&it| PerNs::types(it, ResolvedVisibility::Public));
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.map_or(PerNs::none(), |&it| PerNs::types(it, Visibility::Public));
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let from_prelude = self.resolve_in_prelude(db, name, shadow);
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from_legacy_macro.or(from_scope).or(from_extern_prelude).or(from_prelude)
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@ -5,13 +5,13 @@
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use hir_expand::MacroDefId;
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use crate::{visibility::ResolvedVisibility, ModuleDefId};
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use crate::{visibility::Visibility, ModuleDefId};
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#[derive(Debug, Copy, Clone, PartialEq, Eq)]
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pub struct PerNs {
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pub types: Option<(ModuleDefId, ResolvedVisibility)>,
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pub values: Option<(ModuleDefId, ResolvedVisibility)>,
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pub macros: Option<(MacroDefId, ResolvedVisibility)>,
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pub types: Option<(ModuleDefId, Visibility)>,
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pub values: Option<(ModuleDefId, Visibility)>,
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pub macros: Option<(MacroDefId, Visibility)>,
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}
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impl Default for PerNs {
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@ -25,19 +25,19 @@ impl PerNs {
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PerNs { types: None, values: None, macros: None }
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}
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pub fn values(t: ModuleDefId, v: ResolvedVisibility) -> PerNs {
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pub fn values(t: ModuleDefId, v: Visibility) -> PerNs {
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PerNs { types: None, values: Some((t, v)), macros: None }
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}
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pub fn types(t: ModuleDefId, v: ResolvedVisibility) -> PerNs {
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pub fn types(t: ModuleDefId, v: Visibility) -> PerNs {
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PerNs { types: Some((t, v)), values: None, macros: None }
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}
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pub fn both(types: ModuleDefId, values: ModuleDefId, v: ResolvedVisibility) -> PerNs {
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pub fn both(types: ModuleDefId, values: ModuleDefId, v: Visibility) -> PerNs {
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PerNs { types: Some((types, v)), values: Some((values, v)), macros: None }
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}
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pub fn macros(macro_: MacroDefId, v: ResolvedVisibility) -> PerNs {
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pub fn macros(macro_: MacroDefId, v: Visibility) -> PerNs {
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PerNs { types: None, values: None, macros: Some((macro_, v)) }
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}
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@ -49,7 +49,7 @@ impl PerNs {
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self.types.map(|it| it.0)
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}
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pub fn take_types_vis(self) -> Option<(ModuleDefId, ResolvedVisibility)> {
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pub fn take_types_vis(self) -> Option<(ModuleDefId, Visibility)> {
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self.types
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}
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@ -61,7 +61,7 @@ impl PerNs {
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self.macros.map(|it| it.0)
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}
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pub fn filter_visibility(self, mut f: impl FnMut(ResolvedVisibility) -> bool) -> PerNs {
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pub fn filter_visibility(self, mut f: impl FnMut(Visibility) -> bool) -> PerNs {
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PerNs {
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types: self.types.filter(|(_, v)| f(*v)),
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values: self.values.filter(|(_, v)| f(*v)),
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@ -69,7 +69,7 @@ impl PerNs {
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}
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}
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pub fn with_visibility(self, vis: ResolvedVisibility) -> PerNs {
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pub fn with_visibility(self, vis: Visibility) -> PerNs {
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PerNs {
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types: self.types.map(|(it, _)| (it, vis)),
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values: self.values.map(|(it, _)| (it, vis)),
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@ -19,7 +19,7 @@ use crate::{
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nameres::CrateDefMap,
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path::{ModPath, PathKind},
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per_ns::PerNs,
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visibility::{RawVisibility, ResolvedVisibility},
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visibility::{RawVisibility, Visibility},
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AdtId, AssocContainerId, ConstId, ContainerId, DefWithBodyId, EnumId, EnumVariantId,
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FunctionId, GenericDefId, HasModule, ImplId, LocalModuleId, Lookup, ModuleDefId, ModuleId,
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StaticId, StructId, TraitId, TypeAliasId, TypeParamId, VariantId,
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@ -236,7 +236,7 @@ impl Resolver {
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&self,
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db: &impl DefDatabase,
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visibility: &RawVisibility,
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) -> Option<ResolvedVisibility> {
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) -> Option<Visibility> {
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match visibility {
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RawVisibility::Module(_) => {
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let (item_map, module) = match self.module() {
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@ -245,7 +245,7 @@ impl Resolver {
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};
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item_map.resolve_visibility(db, module, visibility)
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}
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RawVisibility::Public => Some(ResolvedVisibility::Public),
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RawVisibility::Public => Some(Visibility::Public),
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}
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}
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@ -466,16 +466,10 @@ impl Scope {
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f(name.clone(), ScopeDef::PerNs(def));
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});
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m.crate_def_map[m.module_id].scope.legacy_macros().for_each(|(name, macro_)| {
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f(
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name.clone(),
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ScopeDef::PerNs(PerNs::macros(macro_, ResolvedVisibility::Public)),
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);
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f(name.clone(), ScopeDef::PerNs(PerNs::macros(macro_, Visibility::Public)));
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});
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m.crate_def_map.extern_prelude.iter().for_each(|(name, &def)| {
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f(
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name.clone(),
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ScopeDef::PerNs(PerNs::types(def.into(), ResolvedVisibility::Public)),
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);
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f(name.clone(), ScopeDef::PerNs(PerNs::types(def.into(), Visibility::Public)));
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});
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if let Some(prelude) = m.crate_def_map.prelude {
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let prelude_def_map = db.crate_def_map(prelude.krate);
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|
@ -109,26 +109,26 @@ impl RawVisibility {
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&self,
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db: &impl DefDatabase,
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resolver: &crate::resolver::Resolver,
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) -> ResolvedVisibility {
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) -> Visibility {
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// we fall back to public visibility (i.e. fail open) if the path can't be resolved
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resolver.resolve_visibility(db, self).unwrap_or(ResolvedVisibility::Public)
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resolver.resolve_visibility(db, self).unwrap_or(Visibility::Public)
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}
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}
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/// Visibility of an item, with the path resolved.
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#[derive(Debug, Copy, Clone, PartialEq, Eq)]
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pub enum ResolvedVisibility {
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pub enum Visibility {
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/// Visibility is restricted to a certain module.
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Module(ModuleId),
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/// Visibility is unrestricted.
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Public,
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}
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impl ResolvedVisibility {
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impl Visibility {
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pub fn visible_from(self, db: &impl DefDatabase, from_module: ModuleId) -> bool {
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let to_module = match self {
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ResolvedVisibility::Module(m) => m,
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ResolvedVisibility::Public => return true,
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Visibility::Module(m) => m,
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Visibility::Public => return true,
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};
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// if they're not in the same crate, it can't be visible
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if from_module.krate != to_module.krate {
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@ -144,8 +144,8 @@ impl ResolvedVisibility {
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from_module: crate::LocalModuleId,
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) -> bool {
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let to_module = match self {
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ResolvedVisibility::Module(m) => m,
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ResolvedVisibility::Public => return true,
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Visibility::Module(m) => m,
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Visibility::Public => return true,
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};
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// from_module needs to be a descendant of to_module
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let mut ancestors = std::iter::successors(Some(from_module), |m| {
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|
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