Skip to main content

rustc_resolve/
build_reduced_graph.rs

1//! After we obtain a fresh AST fragment from a macro, code in this module helps to integrate
2//! that fragment into the module structures that are already partially built.
3//!
4//! Items from the fragment are placed into modules,
5//! unexpanded macros in the fragment are visited and registered.
6//! Imports are also considered items and placed into modules here, but not resolved yet.
7
8use std::sync::Arc;
9
10use rustc_ast::visit::{self, AssocCtxt, Visitor, WalkItemKind};
11use rustc_ast::{
12    self as ast, AssocItem, AssocItemKind, Block, ConstItem, Delegation, Fn, ForeignItem,
13    ForeignItemKind, Inline, Item, ItemKind, NodeId, StaticItem, StmtKind, TraitAlias, TyAlias,
14};
15use rustc_attr_parsing::AttributeParser;
16use rustc_expand::base::ResolverExpand;
17use rustc_hir::Attribute;
18use rustc_hir::attrs::{AttributeKind, MacroUseArgs};
19use rustc_hir::def::{self, *};
20use rustc_hir::def_id::{CRATE_DEF_ID, DefId, LocalDefId};
21use rustc_index::bit_set::DenseBitSet;
22use rustc_metadata::creader::LoadedMacro;
23use rustc_middle::metadata::{ModChild, Reexport};
24use rustc_middle::ty::{TyCtxtFeed, Visibility};
25use rustc_middle::{bug, span_bug};
26use rustc_span::hygiene::{ExpnId, LocalExpnId, MacroKind};
27use rustc_span::{Ident, Span, Symbol, kw, sym};
28use thin_vec::ThinVec;
29use tracing::debug;
30
31use crate::Namespace::{MacroNS, TypeNS, ValueNS};
32use crate::def_collector::DefCollector;
33use crate::diagnostics::StructCtor;
34use crate::imports::{ImportData, ImportKind, OnUnknownData};
35use crate::macros::{MacroRulesDecl, MacroRulesScope, MacroRulesScopeRef};
36use crate::ref_mut::CmCell;
37use crate::{
38    BindingKey, Decl, DeclData, DeclKind, ExternModule, ExternPreludeEntry, Finalize, IdentKey,
39    LocalModule, MacroData, Module, ModuleKind, ModuleOrUniformRoot, ParentScope, PathResult, Res,
40    Resolver, Segment, Used, VisResolutionError, errors,
41};
42
43impl<'ra, 'tcx> Resolver<'ra, 'tcx> {
44    /// Attempt to put the declaration with the given name and namespace into the module,
45    /// and report an error in case of a collision.
46    pub(crate) fn plant_decl_into_local_module(
47        &mut self,
48        ident: IdentKey,
49        orig_ident_span: Span,
50        ns: Namespace,
51        decl: Decl<'ra>,
52    ) {
53        if let Err(old_decl) =
54            self.try_plant_decl_into_local_module(ident, orig_ident_span, ns, decl, false)
55        {
56            self.report_conflict(ident, ns, old_decl, decl);
57        }
58    }
59
60    /// Create a name definition from the given components, and put it into the local module.
61    fn define_local(
62        &mut self,
63        parent: LocalModule<'ra>,
64        orig_ident: Ident,
65        ns: Namespace,
66        res: Res,
67        vis: Visibility,
68        span: Span,
69        expn_id: LocalExpnId,
70    ) {
71        let decl =
72            self.arenas.new_def_decl(res, vis.to_def_id(), span, expn_id, Some(parent.to_module()));
73        let ident = IdentKey::new(orig_ident);
74        self.plant_decl_into_local_module(ident, orig_ident.span, ns, decl);
75    }
76
77    /// Create a name definition from the given components, and put it into the extern module.
78    fn define_extern(
79        &self,
80        parent: ExternModule<'ra>,
81        ident: IdentKey,
82        orig_ident_span: Span,
83        ns: Namespace,
84        child_index: usize,
85        res: Res,
86        vis: Visibility<DefId>,
87        span: Span,
88        expansion: LocalExpnId,
89        ambiguity: Option<Decl<'ra>>,
90    ) {
91        let decl = self.arenas.alloc_decl(DeclData {
92            kind: DeclKind::Def(res),
93            ambiguity: CmCell::new(ambiguity),
94            // External ambiguities always report the `AMBIGUOUS_GLOB_IMPORTS` lint at the moment.
95            warn_ambiguity: CmCell::new(true),
96            vis: CmCell::new(vis),
97            span,
98            expansion,
99            parent_module: Some(parent.to_module()),
100        });
101        // Even if underscore names cannot be looked up, we still need to add them to modules,
102        // because they can be fetched by glob imports from those modules, and bring traits
103        // into scope both directly and through glob imports.
104        let key =
105            BindingKey::new_disambiguated(ident, ns, || (child_index + 1).try_into().unwrap()); // 0 indicates no underscore
106        if self
107            .resolution_or_default(parent.to_module(), key, orig_ident_span)
108            .borrow_mut_unchecked()
109            .non_glob_decl
110            .replace(decl)
111            .is_some()
112        {
113            ::rustc_middle::util::bug::span_bug_fmt(span,
    format_args!("an external binding was already defined"));span_bug!(span, "an external binding was already defined");
114        }
115    }
116
117    /// Walks up the tree of definitions starting at `def_id`,
118    /// stopping at the first encountered module.
119    /// Parent block modules for arbitrary def-ids are not recorded for the local crate,
120    /// and are not preserved in metadata for foreign crates, so block modules are never
121    /// returned by this function.
122    ///
123    /// For the local crate ignoring block modules may be incorrect, so use this method with care.
124    ///
125    /// For foreign crates block modules can be ignored without introducing observable differences,
126    /// moreover they has to be ignored right now because they are not kept in metadata.
127    /// Foreign parent modules are used for resolving names used by foreign macros with def-site
128    /// hygiene, therefore block module ignorability relies on macros with def-site hygiene and
129    /// block module parents being unreachable from other crates.
130    /// Reachable macros with block module parents exist due to `#[macro_export] macro_rules!`,
131    /// but they cannot use def-site hygiene, so the assumption holds
132    /// (<https://github.com/rust-lang/rust/pull/77984#issuecomment-712445508>).
133    pub(crate) fn get_nearest_non_block_module(&self, mut def_id: DefId) -> Module<'ra> {
134        loop {
135            match self.get_module(def_id) {
136                Some(module) => return module,
137                None => def_id = self.tcx.parent(def_id),
138            }
139        }
140    }
141
142    pub(crate) fn expect_module(&self, def_id: DefId) -> Module<'ra> {
143        self.get_module(def_id).expect("argument `DefId` is not a module")
144    }
145
146    /// If `def_id` refers to a module (in resolver's sense, i.e. a module item, crate root, enum,
147    /// or trait), then this function returns that module's resolver representation, otherwise it
148    /// returns `None`.
149    pub(crate) fn get_module(&self, def_id: DefId) -> Option<Module<'ra>> {
150        match def_id.as_local() {
151            Some(local_def_id) => self.local_module_map.get(&local_def_id).map(|m| m.to_module()),
152            None => {
153                if let module @ Some(..) = self.extern_module_map.borrow().get(&def_id) {
154                    return module.map(|m| m.to_module());
155                }
156
157                // Query `def_kind` is not used because query system overhead is too expensive here.
158                let def_kind = self.cstore().def_kind_untracked(def_id);
159                if def_kind.is_module_like() {
160                    let parent = self.tcx.opt_parent(def_id).map(|parent_id| {
161                        self.get_nearest_non_block_module(parent_id).expect_extern()
162                    });
163                    // Query `expn_that_defined` is not used because
164                    // hashing spans in its result is expensive.
165                    let expn_id = self.cstore().expn_that_defined_untracked(self.tcx, def_id);
166                    let module = self.new_extern_module(
167                        parent,
168                        ModuleKind::Def(def_kind, def_id, Some(self.tcx.item_name(def_id))),
169                        expn_id,
170                        self.def_span(def_id),
171                        // FIXME: Account for `#[no_implicit_prelude]` attributes.
172                        parent.is_some_and(|module| module.no_implicit_prelude),
173                    );
174                    return Some(module.to_module());
175                }
176
177                None
178            }
179        }
180    }
181
182    pub(crate) fn expn_def_scope(&self, expn_id: ExpnId) -> Module<'ra> {
183        match expn_id.expn_data().macro_def_id {
184            Some(def_id) => self.macro_def_scope(def_id),
185            None => expn_id
186                .as_local()
187                .and_then(|expn_id| self.ast_transform_scopes.get(&expn_id).copied())
188                .unwrap_or(self.graph_root)
189                .to_module(),
190        }
191    }
192
193    pub(crate) fn macro_def_scope(&self, def_id: DefId) -> Module<'ra> {
194        if let Some(id) = def_id.as_local() {
195            self.local_macro_def_scopes[&id].to_module()
196        } else {
197            self.get_nearest_non_block_module(def_id)
198        }
199    }
200
201    pub(crate) fn get_macro(&self, res: Res) -> Option<&'ra MacroData> {
202        match res {
203            Res::Def(DefKind::Macro(..), def_id) => Some(self.get_macro_by_def_id(def_id)),
204            Res::NonMacroAttr(_) => Some(self.non_macro_attr),
205            _ => None,
206        }
207    }
208
209    pub(crate) fn get_macro_by_def_id(&self, def_id: DefId) -> &'ra MacroData {
210        // Local macros are always compiled.
211        match def_id.as_local() {
212            Some(local_def_id) => self.local_macro_map[&local_def_id],
213            None => *self.extern_macro_map.borrow_mut().entry(def_id).or_insert_with(|| {
214                let loaded_macro = self.cstore().load_macro_untracked(self.tcx, def_id);
215                let macro_data = match loaded_macro {
216                    LoadedMacro::MacroDef { def, ident, attrs, span, edition } => {
217                        self.compile_macro(&def, ident, &attrs, span, ast::DUMMY_NODE_ID, edition)
218                    }
219                    LoadedMacro::ProcMacro(ext) => MacroData::new(Arc::new(ext)),
220                };
221
222                self.arenas.alloc_macro(macro_data)
223            }),
224        }
225    }
226
227    /// Add every proc macro accessible from the current crate to the `macro_map` so diagnostics can
228    /// find them for suggestions.
229    pub(crate) fn register_macros_for_all_crates(&mut self) {
230        if !self.all_crate_macros_already_registered {
231            for def_id in self.cstore().all_proc_macro_def_ids(self.tcx) {
232                self.get_macro_by_def_id(def_id);
233            }
234            self.all_crate_macros_already_registered = true;
235        }
236    }
237
238    pub(crate) fn build_reduced_graph_external(&self, module: ExternModule<'ra>) {
239        let def_id = module.def_id();
240        let children = self.tcx.module_children(def_id);
241        for (i, child) in children.iter().enumerate() {
242            self.build_reduced_graph_for_external_crate_res(child, module, i, None)
243        }
244        for (i, child) in
245            self.cstore().ambig_module_children_untracked(self.tcx, def_id).enumerate()
246        {
247            self.build_reduced_graph_for_external_crate_res(
248                &child.main,
249                module,
250                children.len() + i,
251                Some(&child.second),
252            )
253        }
254    }
255
256    /// Builds the reduced graph for a single item in an external crate.
257    fn build_reduced_graph_for_external_crate_res(
258        &self,
259        child: &ModChild,
260        parent: ExternModule<'ra>,
261        child_index: usize,
262        ambig_child: Option<&ModChild>,
263    ) {
264        let child_span = |this: &Self, reexport_chain: &[Reexport], res: def::Res<_>| {
265            this.def_span(
266                reexport_chain
267                    .first()
268                    .and_then(|reexport| reexport.id())
269                    .unwrap_or_else(|| res.def_id()),
270            )
271        };
272        let ModChild { ident: orig_ident, res, vis, ref reexport_chain } = *child;
273        let ident = IdentKey::new(orig_ident);
274        let span = child_span(self, reexport_chain, res);
275        let res = res.expect_non_local();
276        let expansion = LocalExpnId::ROOT;
277        let ambig = ambig_child.map(|ambig_child| {
278            let ModChild { ident: _, res, vis, ref reexport_chain } = *ambig_child;
279            let span = child_span(self, reexport_chain, res);
280            let res = res.expect_non_local();
281            self.arenas.new_def_decl(res, vis, span, expansion, Some(parent.to_module()))
282        });
283
284        // Record primary definitions.
285        let define_extern = |ns| {
286            self.define_extern(
287                parent,
288                ident,
289                orig_ident.span,
290                ns,
291                child_index,
292                res,
293                vis,
294                span,
295                expansion,
296                ambig,
297            )
298        };
299        match res {
300            Res::Def(
301                DefKind::Mod
302                | DefKind::Enum
303                | DefKind::Trait
304                | DefKind::Struct
305                | DefKind::Union
306                | DefKind::Variant
307                | DefKind::TyAlias
308                | DefKind::ForeignTy
309                | DefKind::OpaqueTy
310                | DefKind::TraitAlias
311                | DefKind::AssocTy,
312                _,
313            )
314            | Res::PrimTy(..)
315            | Res::ToolMod => define_extern(TypeNS),
316            Res::Def(
317                DefKind::Fn
318                | DefKind::AssocFn
319                | DefKind::Static { .. }
320                | DefKind::Const { .. }
321                | DefKind::AssocConst { .. }
322                | DefKind::Ctor(..),
323                _,
324            ) => define_extern(ValueNS),
325            Res::Def(DefKind::Macro(..), _) | Res::NonMacroAttr(..) => define_extern(MacroNS),
326            Res::Def(
327                DefKind::TyParam
328                | DefKind::ConstParam
329                | DefKind::ExternCrate
330                | DefKind::Use
331                | DefKind::ForeignMod
332                | DefKind::AnonConst
333                | DefKind::InlineConst
334                | DefKind::Field
335                | DefKind::LifetimeParam
336                | DefKind::GlobalAsm
337                | DefKind::Closure
338                | DefKind::SyntheticCoroutineBody
339                | DefKind::Impl { .. },
340                _,
341            )
342            | Res::Local(..)
343            | Res::SelfTyParam { .. }
344            | Res::SelfTyAlias { .. }
345            | Res::SelfCtor(..)
346            | Res::OpenMod(..)
347            | Res::Err => ::rustc_middle::util::bug::bug_fmt(format_args!("unexpected resolution: {0:?}",
        res))bug!("unexpected resolution: {:?}", res),
348        }
349    }
350}
351
352impl<'ra, 'tcx> AsMut<Resolver<'ra, 'tcx>> for DefCollector<'_, 'ra, 'tcx> {
353    fn as_mut(&mut self) -> &mut Resolver<'ra, 'tcx> {
354        self.r
355    }
356}
357
358impl<'a, 'ra, 'tcx> DefCollector<'a, 'ra, 'tcx> {
359    fn res(&self, def_id: impl Into<DefId>) -> Res {
360        let def_id = def_id.into();
361        Res::Def(self.r.tcx.def_kind(def_id), def_id)
362    }
363
364    fn resolve_visibility(&mut self, vis: &ast::Visibility) -> Visibility {
365        self.try_resolve_visibility(vis, true).unwrap_or_else(|err| {
366            self.r.report_vis_error(err);
367            Visibility::Public
368        })
369    }
370
371    fn try_resolve_visibility<'ast>(
372        &mut self,
373        vis: &'ast ast::Visibility,
374        finalize: bool,
375    ) -> Result<Visibility, VisResolutionError<'ast>> {
376        let parent_scope = &self.parent_scope;
377        match vis.kind {
378            ast::VisibilityKind::Public => Ok(Visibility::Public),
379            ast::VisibilityKind::Inherited => {
380                Ok(match self.parent_scope.module.kind {
381                    // Any inherited visibility resolved directly inside an enum or trait
382                    // (i.e. variants, fields, and trait items) inherits from the visibility
383                    // of the enum or trait.
384                    ModuleKind::Def(DefKind::Enum | DefKind::Trait, def_id, _) => {
385                        self.r.tcx.visibility(def_id).expect_local()
386                    }
387                    // Otherwise, the visibility is restricted to the nearest parent `mod` item.
388                    _ => Visibility::Restricted(
389                        self.parent_scope.module.nearest_parent_mod().expect_local(),
390                    ),
391                })
392            }
393            ast::VisibilityKind::Restricted { ref path, id, .. } => {
394                // For visibilities we are not ready to provide correct implementation of "uniform
395                // paths" right now, so on 2018 edition we only allow module-relative paths for now.
396                // On 2015 edition visibilities are resolved as crate-relative by default,
397                // so we are prepending a root segment if necessary.
398                let ident = path.segments.get(0).expect("empty path in visibility").ident;
399                let crate_root = if ident.is_path_segment_keyword() {
400                    None
401                } else if ident.span.is_rust_2015() {
402                    Some(Segment::from_ident(Ident::new(
403                        kw::PathRoot,
404                        path.span.shrink_to_lo().with_ctxt(ident.span.ctxt()),
405                    )))
406                } else {
407                    return Err(VisResolutionError::Relative2018(ident.span, path));
408                };
409
410                let segments = crate_root
411                    .into_iter()
412                    .chain(path.segments.iter().map(|seg| seg.into()))
413                    .collect::<Vec<_>>();
414                let expected_found_error = |res| {
415                    Err(VisResolutionError::ExpectedFound(
416                        path.span,
417                        Segment::names_to_string(&segments),
418                        res,
419                    ))
420                };
421                match self.r.cm().resolve_path(
422                    &segments,
423                    None,
424                    parent_scope,
425                    finalize.then(|| Finalize::new(id, path.span)),
426                    None,
427                    None,
428                ) {
429                    PathResult::Module(ModuleOrUniformRoot::Module(module)) => {
430                        let res = module.res().expect("visibility resolved to unnamed block");
431                        if finalize {
432                            self.r.record_partial_res(id, PartialRes::new(res));
433                        }
434                        if module.is_normal() {
435                            match res {
436                                Res::Err => Ok(Visibility::Public),
437                                _ => {
438                                    let vis = Visibility::Restricted(res.def_id());
439                                    if self.r.is_accessible_from(vis, parent_scope.module) {
440                                        Ok(vis.expect_local())
441                                    } else {
442                                        Err(VisResolutionError::AncestorOnly(path.span))
443                                    }
444                                }
445                            }
446                        } else {
447                            expected_found_error(res)
448                        }
449                    }
450                    PathResult::Module(..) => Err(VisResolutionError::ModuleOnly(path.span)),
451                    PathResult::NonModule(partial_res) => {
452                        expected_found_error(partial_res.expect_full_res())
453                    }
454                    PathResult::Failed {
455                        span, label, suggestion, message, segment_name, ..
456                    } => Err(VisResolutionError::FailedToResolve(
457                        span,
458                        segment_name,
459                        label,
460                        suggestion,
461                        message,
462                    )),
463                    PathResult::Indeterminate => Err(VisResolutionError::Indeterminate(path.span)),
464                }
465            }
466        }
467    }
468
469    fn insert_field_idents(&mut self, def_id: LocalDefId, fields: &[ast::FieldDef]) {
470        if fields.iter().any(|field| field.is_placeholder) {
471            // The fields are not expanded yet.
472            return;
473        }
474        let field_name = |i, field: &ast::FieldDef| {
475            field.ident.unwrap_or_else(|| Ident::from_str_and_span(&::alloc::__export::must_use({ ::alloc::fmt::format(format_args!("{0}", i)) })format!("{i}"), field.span))
476        };
477        let field_names: Vec<_> =
478            fields.iter().enumerate().map(|(i, field)| field_name(i, field)).collect();
479        let defaults = fields
480            .iter()
481            .enumerate()
482            .filter_map(|(i, field)| field.default.as_ref().map(|_| field_name(i, field).name))
483            .collect();
484        self.r.field_names.insert(def_id, field_names);
485        self.r.field_defaults.insert(def_id, defaults);
486    }
487
488    fn insert_field_visibilities_local(&mut self, def_id: DefId, fields: &[ast::FieldDef]) {
489        let field_vis = fields
490            .iter()
491            .map(|field| field.vis.span.until(field.ident.map_or(field.ty.span, |i| i.span)))
492            .collect();
493        self.r.field_visibility_spans.insert(def_id, field_vis);
494    }
495
496    fn block_needs_anonymous_module(&self, block: &Block) -> bool {
497        // If any statements are items, we need to create an anonymous module
498        block
499            .stmts
500            .iter()
501            .any(|statement| #[allow(non_exhaustive_omitted_patterns)] match statement.kind {
    StmtKind::Item(_) | StmtKind::MacCall(_) => true,
    _ => false,
}matches!(statement.kind, StmtKind::Item(_) | StmtKind::MacCall(_)))
502    }
503
504    // Add an import to the current module.
505    fn add_import(
506        &mut self,
507        module_path: Vec<Segment>,
508        kind: ImportKind<'ra>,
509        span: Span,
510        item: &ast::Item,
511        root_span: Span,
512        root_id: NodeId,
513        vis: Visibility,
514    ) {
515        let current_module = self.parent_scope.module;
516        let import = self.r.arenas.alloc_import(ImportData {
517            kind,
518            parent_scope: self.parent_scope,
519            module_path,
520            imported_module: CmCell::new(None),
521            span,
522            use_span: item.span,
523            use_span_with_attributes: item.span_with_attributes(),
524            has_attributes: !item.attrs.is_empty(),
525            root_span,
526            root_id,
527            vis,
528            vis_span: item.vis.span,
529            on_unknown_attr: OnUnknownData::from_attrs(self.r.tcx, item),
530        });
531
532        self.r.indeterminate_imports.push(import);
533        match import.kind {
534            ImportKind::Single { target, .. } => {
535                // Don't add underscore imports to `single_imports`
536                // because they cannot define any usable names.
537                if target.name != kw::Underscore {
538                    self.r.per_ns(|this, ns| {
539                        let key = BindingKey::new(IdentKey::new(target), ns);
540                        this.resolution_or_default(current_module, key, target.span)
541                            .borrow_mut(this)
542                            .single_imports
543                            .insert(import);
544                    });
545                }
546            }
547            ImportKind::Glob { .. } => current_module.globs.borrow_mut(self.r).push(import),
548            _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
549        }
550    }
551
552    fn build_reduced_graph_for_use_tree(
553        &mut self,
554        // This particular use tree
555        use_tree: &ast::UseTree,
556        id: NodeId,
557        parent_prefix: &[Segment],
558        nested: bool,
559        list_stem: bool,
560        // The whole `use` item
561        item: &Item,
562        vis: Visibility,
563        root_span: Span,
564        feed: TyCtxtFeed<'tcx, LocalDefId>,
565    ) {
566        {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_resolve/src/build_reduced_graph.rs:566",
                        "rustc_resolve::build_reduced_graph",
                        ::tracing::Level::DEBUG,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_resolve/src/build_reduced_graph.rs"),
                        ::tracing_core::__macro_support::Option::Some(566u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_resolve::build_reduced_graph"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::DEBUG <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                let mut iter = __CALLSITE.metadata().fields().iter();
                __CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
                                    ::tracing::__macro_support::Option::Some(&format_args!("build_reduced_graph_for_use_tree(parent_prefix={0:?}, use_tree={1:?}, nested={2})",
                                                    parent_prefix, use_tree, nested) as &dyn Value))])
            });
    } else { ; }
};debug!(
567            "build_reduced_graph_for_use_tree(parent_prefix={:?}, use_tree={:?}, nested={})",
568            parent_prefix, use_tree, nested
569        );
570
571        // Top level use tree reuses the item's id and list stems reuse their parent
572        // use tree's ids, so in both cases their visibilities are already filled.
573        if nested && !list_stem {
574            self.r.feed_visibility(feed, vis);
575        }
576
577        let mut prefix_iter = parent_prefix
578            .iter()
579            .cloned()
580            .chain(use_tree.prefix.segments.iter().map(|seg| seg.into()))
581            .peekable();
582
583        // On 2015 edition imports are resolved as crate-relative by default,
584        // so prefixes are prepended with crate root segment if necessary.
585        // The root is prepended lazily, when the first non-empty prefix or terminating glob
586        // appears, so imports in braced groups can have roots prepended independently.
587        let crate_root = match prefix_iter.peek() {
588            Some(seg) if !seg.ident.is_path_segment_keyword() && seg.ident.span.is_rust_2015() => {
589                Some(seg.ident.span.ctxt())
590            }
591            None if let ast::UseTreeKind::Glob(span) = use_tree.kind
592                && span.is_rust_2015() =>
593            {
594                Some(span.ctxt())
595            }
596            _ => None,
597        }
598        .map(|ctxt| {
599            Segment::from_ident(Ident::new(
600                kw::PathRoot,
601                use_tree.prefix.span.shrink_to_lo().with_ctxt(ctxt),
602            ))
603        });
604
605        let prefix = crate_root.into_iter().chain(prefix_iter).collect::<Vec<_>>();
606        {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_resolve/src/build_reduced_graph.rs:606",
                        "rustc_resolve::build_reduced_graph",
                        ::tracing::Level::DEBUG,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_resolve/src/build_reduced_graph.rs"),
                        ::tracing_core::__macro_support::Option::Some(606u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_resolve::build_reduced_graph"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::DEBUG <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                let mut iter = __CALLSITE.metadata().fields().iter();
                __CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
                                    ::tracing::__macro_support::Option::Some(&format_args!("build_reduced_graph_for_use_tree: prefix={0:?}",
                                                    prefix) as &dyn Value))])
            });
    } else { ; }
};debug!("build_reduced_graph_for_use_tree: prefix={:?}", prefix);
607
608        match use_tree.kind {
609            ast::UseTreeKind::Simple(rename) => {
610                let mut module_path = prefix;
611                let source = module_path.pop().unwrap();
612
613                // If the identifier is `self` without a rename,
614                // then it is replaced with the parent identifier.
615                let ident = if source.ident.name == kw::SelfLower
616                    && rename.is_none()
617                    && let Some(parent) = module_path.last()
618                {
619                    Ident::new(parent.ident.name, source.ident.span)
620                } else {
621                    use_tree.ident()
622                };
623
624                match source.ident.name {
625                    kw::DollarCrate => {
626                        if !module_path.is_empty() {
627                            self.r.dcx().span_err(
628                                source.ident.span,
629                                "`$crate` in paths can only be used in start position",
630                            );
631                            return;
632                        }
633                    }
634                    kw::Crate => {
635                        if !module_path.is_empty() {
636                            self.r.dcx().span_err(
637                                source.ident.span,
638                                "`crate` in paths can only be used in start position",
639                            );
640                            return;
641                        }
642                    }
643                    kw::Super => {
644                        // Allow `self::super` as a valid prefix - `self` at position 0
645                        // followed by any number of `super` segments.
646                        let valid_prefix = module_path.iter().enumerate().all(|(i, seg)| {
647                            let name = seg.ident.name;
648                            name == kw::Super || (name == kw::SelfLower && i == 0)
649                        });
650
651                        if !valid_prefix {
652                            self.r.dcx().span_err(
653                                source.ident.span,
654                                "`super` in paths can only be used in start position, after `self`, or after another `super`",
655                            );
656                            return;
657                        }
658                    }
659                    // Deny `use ::{self};` after edition 2015
660                    kw::SelfLower
661                        if let Some(parent) = module_path.last()
662                            && parent.ident.name == kw::PathRoot
663                            && !self.r.path_root_is_crate_root(parent.ident) =>
664                    {
665                        self.r.dcx().span_err(use_tree.span(), "extern prelude cannot be imported");
666                        return;
667                    }
668                    _ => (),
669                }
670
671                // Deny `use ...::self::source [as target];` or `use ...::self::self [as target];`,
672                // but allow `use self::source [as target];` and `use self::self as target;`.
673                if let Some(parent) = module_path.last()
674                    && parent.ident.name == kw::SelfLower
675                    && module_path.len() > 1
676                {
677                    self.r.dcx().span_err(
678                        parent.ident.span,
679                        "`self` in paths can only be used in start position or last position",
680                    );
681                    return;
682                }
683
684                // Deny importing path-kw without renaming
685                if rename.is_none() && ident.is_path_segment_keyword() {
686                    let ident = use_tree.ident();
687                    self.r.dcx().emit_err(errors::UnnamedImport {
688                        span: ident.span,
689                        sugg: errors::UnnamedImportSugg { span: ident.span, ident },
690                    });
691                    return;
692                }
693
694                let kind = ImportKind::Single {
695                    source: source.ident,
696                    target: ident,
697                    decls: Default::default(),
698                    nested,
699                    id,
700                };
701
702                self.add_import(module_path, kind, use_tree.span(), item, root_span, item.id, vis);
703            }
704            ast::UseTreeKind::Glob(_) => {
705                if !ast::attr::contains_name(&item.attrs, sym::prelude_import) {
706                    let kind = ImportKind::Glob { max_vis: CmCell::new(None), id };
707                    self.add_import(prefix, kind, use_tree.span(), item, root_span, item.id, vis);
708                } else {
709                    // Resolve the prelude import early.
710                    let path_res =
711                        self.r.cm().maybe_resolve_path(&prefix, None, &self.parent_scope, None);
712                    if let PathResult::Module(ModuleOrUniformRoot::Module(module)) = path_res {
713                        self.r.prelude = Some(module);
714                    } else {
715                        self.r.dcx().span_err(use_tree.span(), "cannot resolve a prelude import");
716                    }
717                }
718            }
719            ast::UseTreeKind::Nested { ref items, .. } => {
720                for &(ref tree, id) in items {
721                    let feed = self.create_def(id, None, DefKind::Use, use_tree.span());
722                    self.build_reduced_graph_for_use_tree(
723                        // This particular use tree
724                        tree, id, &prefix, true, false, // The whole `use` item
725                        item, vis, root_span, feed,
726                    );
727                }
728
729                // Empty groups `a::b::{}` are turned into synthetic `self` imports
730                // `a::b::c::{self as _}`, so that their prefixes are correctly
731                // resolved and checked for privacy/stability/etc.
732                if items.is_empty()
733                    && !prefix.is_empty()
734                    && (prefix.len() > 1 || prefix[0].ident.name != kw::PathRoot)
735                {
736                    let new_span = prefix[prefix.len() - 1].ident.span;
737                    let tree = ast::UseTree {
738                        prefix: ast::Path::from_ident(Ident::new(kw::SelfLower, new_span)),
739                        kind: ast::UseTreeKind::Simple(Some(Ident::new(kw::Underscore, new_span))),
740                    };
741                    self.build_reduced_graph_for_use_tree(
742                        // This particular use tree
743                        &tree,
744                        id,
745                        &prefix,
746                        true,
747                        true,
748                        // The whole `use` item
749                        item,
750                        Visibility::Restricted(
751                            self.parent_scope.module.nearest_parent_mod().expect_local(),
752                        ),
753                        root_span,
754                        feed,
755                    );
756                }
757            }
758        }
759    }
760
761    fn build_reduced_graph_for_struct_variant(
762        &mut self,
763        fields: &[ast::FieldDef],
764        ident: Ident,
765        feed: TyCtxtFeed<'tcx, LocalDefId>,
766        adt_res: Res,
767        adt_vis: Visibility,
768        adt_span: Span,
769    ) {
770        let parent_scope = &self.parent_scope;
771        let parent = parent_scope.module.expect_local();
772        let expansion = parent_scope.expansion;
773
774        // Define a name in the type namespace if it is not anonymous.
775        self.r.define_local(parent, ident, TypeNS, adt_res, adt_vis, adt_span, expansion);
776        self.r.feed_visibility(feed, adt_vis);
777        let def_id = feed.key();
778
779        // Record field names for error reporting.
780        self.insert_field_idents(def_id, fields);
781        self.insert_field_visibilities_local(def_id.to_def_id(), fields);
782    }
783
784    /// Constructs the reduced graph for one item.
785    fn build_reduced_graph_for_item(&mut self, item: &'a Item, feed: TyCtxtFeed<'tcx, LocalDefId>) {
786        let parent_scope = &self.parent_scope;
787        let parent = parent_scope.module.expect_local();
788        let expansion = parent_scope.expansion;
789        let sp = item.span;
790        let vis = self.resolve_visibility(&item.vis);
791        let local_def_id = feed.key();
792        let def_id = local_def_id.to_def_id();
793        let def_kind = self.r.tcx.def_kind(def_id);
794        let res = Res::Def(def_kind, def_id);
795
796        self.r.feed_visibility(feed, vis);
797
798        match item.kind {
799            ItemKind::Use(ref use_tree) => {
800                self.build_reduced_graph_for_use_tree(
801                    // This particular use tree
802                    use_tree,
803                    item.id,
804                    &[],
805                    false,
806                    false,
807                    // The whole `use` item
808                    item,
809                    vis,
810                    use_tree.span(),
811                    feed,
812                );
813            }
814
815            ItemKind::ExternCrate(orig_name, ident) => {
816                self.build_reduced_graph_for_extern_crate(
817                    orig_name,
818                    item,
819                    ident,
820                    local_def_id,
821                    vis,
822                );
823            }
824
825            ItemKind::Mod(_, ident, ref mod_kind) => {
826                self.r.define_local(parent, ident, TypeNS, res, vis, sp, expansion);
827
828                if let ast::ModKind::Loaded(_, Inline::No { had_parse_error: Err(_) }, _) = mod_kind
829                {
830                    self.r.mods_with_parse_errors.insert(def_id);
831                }
832                let module = self.r.new_local_module(
833                    Some(parent),
834                    ModuleKind::Def(def_kind, def_id, Some(ident.name)),
835                    expansion.to_expn_id(),
836                    item.span,
837                    parent.no_implicit_prelude
838                        || ast::attr::contains_name(&item.attrs, sym::no_implicit_prelude),
839                );
840                self.parent_scope.module = module.to_module();
841            }
842
843            // These items live in the value namespace.
844            ItemKind::Const(box ConstItem { ident, .. })
845            | ItemKind::Delegation(box Delegation { ident, .. })
846            | ItemKind::Static(box StaticItem { ident, .. }) => {
847                self.r.define_local(parent, ident, ValueNS, res, vis, sp, expansion);
848            }
849            ItemKind::Fn(box Fn { ident, .. }) => {
850                self.r.define_local(parent, ident, ValueNS, res, vis, sp, expansion);
851
852                // Functions introducing procedural macros reserve a slot
853                // in the macro namespace as well (see #52225).
854                self.define_macro(item, feed);
855            }
856
857            // These items live in the type namespace.
858            ItemKind::TyAlias(box TyAlias { ident, .. })
859            | ItemKind::TraitAlias(box TraitAlias { ident, .. }) => {
860                self.r.define_local(parent, ident, TypeNS, res, vis, sp, expansion);
861            }
862
863            ItemKind::Enum(ident, _, _) | ItemKind::Trait(box ast::Trait { ident, .. }) => {
864                self.r.define_local(parent, ident, TypeNS, res, vis, sp, expansion);
865
866                let module = self.r.new_local_module(
867                    Some(parent),
868                    ModuleKind::Def(def_kind, def_id, Some(ident.name)),
869                    expansion.to_expn_id(),
870                    item.span,
871                    parent.no_implicit_prelude,
872                );
873                self.parent_scope.module = module.to_module();
874            }
875
876            // These items live in both the type and value namespaces.
877            ItemKind::Struct(ident, ref generics, ref vdata) => {
878                self.build_reduced_graph_for_struct_variant(
879                    vdata.fields(),
880                    ident,
881                    feed,
882                    res,
883                    vis,
884                    sp,
885                );
886
887                // If this is a tuple or unit struct, define a name
888                // in the value namespace as well.
889                if let Some((ctor_kind, ctor_node_id)) = CtorKind::from_ast(vdata) {
890                    // If the structure is marked as non_exhaustive then lower the visibility
891                    // to within the crate.
892                    let mut ctor_vis = if vis.is_public()
893                        && ast::attr::contains_name(&item.attrs, sym::non_exhaustive)
894                    {
895                        Visibility::Restricted(CRATE_DEF_ID)
896                    } else {
897                        vis
898                    };
899
900                    let mut field_visibilities = Vec::with_capacity(vdata.fields().len());
901
902                    for field in vdata.fields() {
903                        // NOTE: The field may be an expansion placeholder, but expansion sets
904                        // correct visibilities for unnamed field placeholders specifically, so the
905                        // constructor visibility should still be determined correctly.
906                        let field_vis = self
907                            .try_resolve_visibility(&field.vis, false)
908                            .unwrap_or(Visibility::Public);
909                        if ctor_vis.greater_than(field_vis, self.r.tcx) {
910                            ctor_vis = field_vis;
911                        }
912                        field_visibilities.push(field_vis.to_def_id());
913                    }
914                    // If this is a unit or tuple-like struct, register the constructor.
915                    let feed = self.create_def(
916                        ctor_node_id,
917                        None,
918                        DefKind::Ctor(CtorOf::Struct, ctor_kind),
919                        item.span,
920                    );
921
922                    let ctor_def_id = feed.key();
923                    let ctor_res = self.res(ctor_def_id);
924                    self.r.define_local(parent, ident, ValueNS, ctor_res, ctor_vis, sp, expansion);
925                    self.r.feed_visibility(feed, ctor_vis);
926                    // We need the field visibility spans also for the constructor for E0603.
927                    self.insert_field_visibilities_local(ctor_def_id.to_def_id(), vdata.fields());
928
929                    let ctor =
930                        StructCtor { res: ctor_res, vis: ctor_vis.to_def_id(), field_visibilities };
931                    self.r.struct_ctors.insert(local_def_id, ctor);
932                }
933                self.r.struct_generics.insert(local_def_id, generics.clone());
934            }
935
936            ItemKind::Union(ident, _, ref vdata) => {
937                self.build_reduced_graph_for_struct_variant(
938                    vdata.fields(),
939                    ident,
940                    feed,
941                    res,
942                    vis,
943                    sp,
944                );
945            }
946
947            // These items do not add names to modules.
948            ItemKind::Impl { .. }
949            | ItemKind::ForeignMod(..)
950            | ItemKind::GlobalAsm(..)
951            | ItemKind::ConstBlock(..) => {}
952
953            ItemKind::MacroDef(..) | ItemKind::MacCall(_) | ItemKind::DelegationMac(..) => {
954                ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
955            }
956        }
957    }
958
959    fn build_reduced_graph_for_extern_crate(
960        &mut self,
961        orig_name: Option<Symbol>,
962        item: &Item,
963        orig_ident: Ident,
964        local_def_id: LocalDefId,
965        vis: Visibility,
966    ) {
967        let sp = item.span;
968        let parent_scope = self.parent_scope;
969        let parent = parent_scope.module;
970        let expansion = parent_scope.expansion;
971
972        let (used, module, decl) = if orig_name.is_none() && orig_ident.name == kw::SelfLower {
973            self.r.dcx().emit_err(errors::ExternCrateSelfRequiresRenaming { span: sp });
974            return;
975        } else if orig_name == Some(kw::SelfLower) {
976            Some(self.r.graph_root.to_module())
977        } else {
978            let tcx = self.r.tcx;
979            let crate_id = self.r.cstore_mut().process_extern_crate(
980                self.r.tcx,
981                item,
982                local_def_id,
983                &tcx.definitions_untracked(),
984            );
985            crate_id.map(|crate_id| {
986                self.r.extern_crate_map.insert(local_def_id, crate_id);
987                self.r.expect_module(crate_id.as_def_id())
988            })
989        }
990        .map(|module| {
991            let used = self.process_macro_use_imports(item, module);
992            let decl = self.r.arenas.new_pub_def_decl(module.res().unwrap(), sp, expansion);
993            (used, Some(ModuleOrUniformRoot::Module(module)), decl)
994        })
995        .unwrap_or((true, None, self.r.dummy_decl));
996        let import = self.r.arenas.alloc_import(ImportData {
997            kind: ImportKind::ExternCrate { source: orig_name, target: orig_ident, id: item.id },
998            root_id: item.id,
999            parent_scope,
1000            imported_module: CmCell::new(module),
1001            has_attributes: !item.attrs.is_empty(),
1002            use_span_with_attributes: item.span_with_attributes(),
1003            use_span: item.span,
1004            root_span: item.span,
1005            span: item.span,
1006            module_path: Vec::new(),
1007            vis,
1008            vis_span: item.vis.span,
1009            on_unknown_attr: OnUnknownData::from_attrs(self.r.tcx, item),
1010        });
1011        if used {
1012            self.r.import_use_map.insert(import, Used::Other);
1013        }
1014        self.r.potentially_unused_imports.push(import);
1015        let import_decl = self.r.new_import_decl(decl, import);
1016        let ident = IdentKey::new(orig_ident);
1017        if ident.name != kw::Underscore && parent == self.r.graph_root.to_module() {
1018            // FIXME: this error is technically unnecessary now when extern prelude is split into
1019            // two scopes, remove it with lang team approval.
1020            if let Some(entry) = self.r.extern_prelude.get(&ident)
1021                && expansion != LocalExpnId::ROOT
1022                && orig_name.is_some()
1023                && entry.item_decl.is_none()
1024            {
1025                self.r.dcx().emit_err(
1026                    errors::MacroExpandedExternCrateCannotShadowExternArguments { span: item.span },
1027                );
1028            }
1029
1030            use indexmap::map::Entry;
1031            match self.r.extern_prelude.entry(ident) {
1032                Entry::Occupied(mut occupied) => {
1033                    let entry = occupied.get_mut();
1034                    if entry.item_decl.is_some() {
1035                        let msg = ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("extern crate `{0}` already in extern prelude",
                orig_ident))
    })format!("extern crate `{orig_ident}` already in extern prelude");
1036                        self.r.tcx.dcx().span_delayed_bug(item.span, msg);
1037                    } else {
1038                        entry.item_decl = Some((import_decl, orig_ident.span, orig_name.is_some()));
1039                    }
1040                    entry
1041                }
1042                Entry::Vacant(vacant) => vacant.insert(ExternPreludeEntry {
1043                    item_decl: Some((import_decl, orig_ident.span, true)),
1044                    flag_decl: None,
1045                }),
1046            };
1047        }
1048        self.r.plant_decl_into_local_module(ident, orig_ident.span, TypeNS, import_decl);
1049    }
1050
1051    /// Constructs the reduced graph for one foreign item.
1052    pub(crate) fn build_reduced_graph_for_foreign_item(
1053        &mut self,
1054        item: &ForeignItem,
1055        ident: Ident,
1056        feed: TyCtxtFeed<'tcx, LocalDefId>,
1057    ) {
1058        let local_def_id = feed.key();
1059        let def_id = local_def_id.to_def_id();
1060        let ns = match item.kind {
1061            ForeignItemKind::Fn(..) => ValueNS,
1062            ForeignItemKind::Static(..) => ValueNS,
1063            ForeignItemKind::TyAlias(..) => TypeNS,
1064            ForeignItemKind::MacCall(..) => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1065        };
1066        let parent = self.parent_scope.module.expect_local();
1067        let expansion = self.parent_scope.expansion;
1068        let vis = self.resolve_visibility(&item.vis);
1069        self.r.define_local(parent, ident, ns, self.res(def_id), vis, item.span, expansion);
1070        self.r.feed_visibility(feed, vis);
1071    }
1072
1073    fn build_reduced_graph_for_block(&mut self, block: &Block) {
1074        let parent = self.parent_scope.module.expect_local();
1075        let expansion = self.parent_scope.expansion;
1076        if self.block_needs_anonymous_module(block) {
1077            let module = self.r.new_local_module(
1078                Some(parent),
1079                ModuleKind::Block,
1080                expansion.to_expn_id(),
1081                block.span,
1082                parent.no_implicit_prelude,
1083            );
1084            self.r.block_map.insert(block.id, module);
1085            self.parent_scope.module = module.to_module(); // Descend into the block.
1086        }
1087    }
1088
1089    fn add_macro_use_decl(
1090        &mut self,
1091        name: Symbol,
1092        decl: Decl<'ra>,
1093        span: Span,
1094        allow_shadowing: bool,
1095    ) {
1096        if self.r.macro_use_prelude.insert(name, decl).is_some() && !allow_shadowing {
1097            self.r.dcx().emit_err(errors::MacroUseNameAlreadyInUse { span, name });
1098        }
1099    }
1100
1101    /// Returns `true` if we should consider the underlying `extern crate` to be used.
1102    fn process_macro_use_imports(&mut self, item: &Item, module: Module<'ra>) -> bool {
1103        let mut import_all = None;
1104        let mut single_imports = ThinVec::new();
1105        if let Some(Attribute::Parsed(AttributeKind::MacroUse { span, arguments })) =
1106            AttributeParser::parse_limited(self.r.tcx.sess, &item.attrs, &[sym::macro_use])
1107        {
1108            if self.parent_scope.module.parent.is_some() {
1109                self.r
1110                    .dcx()
1111                    .emit_err(errors::ExternCrateLoadingMacroNotAtCrateRoot { span: item.span });
1112            }
1113            if let ItemKind::ExternCrate(Some(orig_name), _) = item.kind
1114                && orig_name == kw::SelfLower
1115            {
1116                self.r.dcx().emit_err(errors::MacroUseExternCrateSelf { span });
1117            }
1118
1119            match arguments {
1120                MacroUseArgs::UseAll => import_all = Some(span),
1121                MacroUseArgs::UseSpecific(imports) => single_imports = imports,
1122            }
1123        }
1124
1125        let macro_use_import = |this: &Self, span, warn_private| {
1126            this.r.arenas.alloc_import(ImportData {
1127                kind: ImportKind::MacroUse { warn_private },
1128                root_id: item.id,
1129                parent_scope: this.parent_scope,
1130                imported_module: CmCell::new(Some(ModuleOrUniformRoot::Module(module))),
1131                use_span_with_attributes: item.span_with_attributes(),
1132                has_attributes: !item.attrs.is_empty(),
1133                use_span: item.span,
1134                root_span: span,
1135                span,
1136                module_path: Vec::new(),
1137                vis: Visibility::Restricted(CRATE_DEF_ID),
1138                vis_span: item.vis.span,
1139                on_unknown_attr: OnUnknownData::from_attrs(this.r.tcx, item),
1140            })
1141        };
1142
1143        let allow_shadowing = self.parent_scope.expansion == LocalExpnId::ROOT;
1144        if let Some(span) = import_all {
1145            let import = macro_use_import(self, span, false);
1146            self.r.potentially_unused_imports.push(import);
1147            module.for_each_child_mut(self, |this, ident, _, ns, binding| {
1148                if ns == MacroNS {
1149                    let import =
1150                        if this.r.is_accessible_from(binding.vis(), this.parent_scope.module) {
1151                            import
1152                        } else {
1153                            // FIXME: This branch is used for reporting the `private_macro_use` lint
1154                            // and should eventually be removed.
1155                            if this.r.macro_use_prelude.contains_key(&ident.name) {
1156                                // Do not override already existing entries with compatibility entries.
1157                                return;
1158                            }
1159                            macro_use_import(this, span, true)
1160                        };
1161                    let import_decl = this.r.new_import_decl(binding, import);
1162                    this.add_macro_use_decl(ident.name, import_decl, span, allow_shadowing);
1163                }
1164            });
1165        } else {
1166            for ident in single_imports.iter().cloned() {
1167                let result = self.r.cm().maybe_resolve_ident_in_module(
1168                    ModuleOrUniformRoot::Module(module),
1169                    ident,
1170                    MacroNS,
1171                    &self.parent_scope,
1172                    None,
1173                );
1174                if let Ok(binding) = result {
1175                    let import = macro_use_import(self, ident.span, false);
1176                    self.r.potentially_unused_imports.push(import);
1177                    let import_decl = self.r.new_import_decl(binding, import);
1178                    self.add_macro_use_decl(ident.name, import_decl, ident.span, allow_shadowing);
1179                } else {
1180                    self.r.dcx().emit_err(errors::ImportedMacroNotFound { span: ident.span });
1181                }
1182            }
1183        }
1184        import_all.is_some() || !single_imports.is_empty()
1185    }
1186
1187    /// Returns `true` if this attribute list contains `macro_use`.
1188    pub(crate) fn contains_macro_use(&self, attrs: &[ast::Attribute]) -> bool {
1189        for attr in attrs {
1190            if attr.has_name(sym::macro_escape) {
1191                let inner_attribute = #[allow(non_exhaustive_omitted_patterns)] match attr.style {
    ast::AttrStyle::Inner => true,
    _ => false,
}matches!(attr.style, ast::AttrStyle::Inner);
1192                self.r
1193                    .dcx()
1194                    .emit_warn(errors::MacroExternDeprecated { span: attr.span, inner_attribute });
1195            } else if !attr.has_name(sym::macro_use) {
1196                continue;
1197            }
1198
1199            if !attr.is_word() {
1200                self.r.dcx().emit_err(errors::ArgumentsMacroUseNotAllowed { span: attr.span });
1201            }
1202            return true;
1203        }
1204
1205        false
1206    }
1207
1208    pub(crate) fn visit_invoc(&mut self, id: NodeId) -> LocalExpnId {
1209        let invoc_id = id.placeholder_to_expn_id();
1210        let old_parent_scope = self.r.invocation_parent_scopes.insert(invoc_id, self.parent_scope);
1211        if !old_parent_scope.is_none() {
    {
        ::core::panicking::panic_fmt(format_args!("invocation data is reset for an invocation"));
    }
};assert!(old_parent_scope.is_none(), "invocation data is reset for an invocation");
1212        invoc_id
1213    }
1214
1215    /// Visit invocation in context in which it can emit a named item (possibly `macro_rules`)
1216    /// directly into its parent scope's module.
1217    pub(crate) fn visit_invoc_in_module(&mut self, id: NodeId) -> MacroRulesScopeRef<'ra> {
1218        let invoc_id = self.visit_invoc(id);
1219        self.parent_scope.module.unexpanded_invocations.borrow_mut(self.r).insert(invoc_id);
1220        self.r.arenas.alloc_macro_rules_scope(MacroRulesScope::Invocation(invoc_id))
1221    }
1222
1223    fn proc_macro_stub(
1224        &self,
1225        item: &ast::Item,
1226        fn_ident: Ident,
1227    ) -> Option<(MacroKind, Ident, Span)> {
1228        if ast::attr::contains_name(&item.attrs, sym::proc_macro) {
1229            return Some((MacroKind::Bang, fn_ident, item.span));
1230        } else if ast::attr::contains_name(&item.attrs, sym::proc_macro_attribute) {
1231            return Some((MacroKind::Attr, fn_ident, item.span));
1232        } else if let Some(attr) = ast::attr::find_by_name(&item.attrs, sym::proc_macro_derive)
1233            && let Some(meta_item_inner) =
1234                attr.meta_item_list().and_then(|list| list.get(0).cloned())
1235            && let Some(ident) = meta_item_inner.ident()
1236        {
1237            return Some((MacroKind::Derive, ident, ident.span));
1238        }
1239        None
1240    }
1241
1242    // Mark the given macro as unused unless its name starts with `_`.
1243    // Macro uses will remove items from this set, and the remaining
1244    // items will be reported as `unused_macros`.
1245    fn insert_unused_macro(&mut self, ident: Ident, def_id: LocalDefId, node_id: NodeId) {
1246        if !ident.as_str().starts_with('_') {
1247            self.r.unused_macros.insert(def_id, (node_id, ident));
1248            let nrules = self.r.local_macro_map[&def_id].nrules;
1249            self.r.unused_macro_rules.insert(node_id, DenseBitSet::new_filled(nrules));
1250        }
1251    }
1252
1253    fn define_macro(
1254        &mut self,
1255        item: &ast::Item,
1256        feed: TyCtxtFeed<'tcx, LocalDefId>,
1257    ) -> MacroRulesScopeRef<'ra> {
1258        let parent_scope = self.parent_scope;
1259        let expansion = parent_scope.expansion;
1260        let def_id = feed.key();
1261        let (res, orig_ident, span, macro_rules) = match &item.kind {
1262            ItemKind::MacroDef(ident, def) => {
1263                (self.res(def_id), *ident, item.span, def.macro_rules)
1264            }
1265            ItemKind::Fn(box ast::Fn { ident: fn_ident, .. }) => {
1266                match self.proc_macro_stub(item, *fn_ident) {
1267                    Some((macro_kind, ident, span)) => {
1268                        let macro_kinds = macro_kind.into();
1269                        let res = Res::Def(DefKind::Macro(macro_kinds), def_id.to_def_id());
1270                        let macro_data = MacroData::new(self.r.dummy_ext(macro_kind));
1271                        self.r.new_local_macro(def_id, macro_data);
1272                        self.r.proc_macro_stubs.insert(def_id);
1273                        (res, ident, span, false)
1274                    }
1275                    None => return parent_scope.macro_rules,
1276                }
1277            }
1278            _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1279        };
1280
1281        self.r.local_macro_def_scopes.insert(def_id, parent_scope.module.expect_local());
1282
1283        if macro_rules {
1284            let ident = IdentKey::new(orig_ident);
1285            self.r.macro_names.insert(ident);
1286            let is_macro_export = ast::attr::contains_name(&item.attrs, sym::macro_export);
1287            let vis = if is_macro_export {
1288                Visibility::Public
1289            } else {
1290                Visibility::Restricted(CRATE_DEF_ID)
1291            };
1292            let decl = self.r.arenas.new_def_decl(
1293                res,
1294                vis.to_def_id(),
1295                span,
1296                expansion,
1297                Some(parent_scope.module),
1298            );
1299            self.r.all_macro_rules.insert(ident.name);
1300            if is_macro_export {
1301                let import = self.r.arenas.alloc_import(ImportData {
1302                    kind: ImportKind::MacroExport,
1303                    root_id: item.id,
1304                    parent_scope: ParentScope {
1305                        module: self.r.graph_root.to_module(),
1306                        ..parent_scope
1307                    },
1308                    imported_module: CmCell::new(None),
1309                    has_attributes: false,
1310                    use_span_with_attributes: span,
1311                    use_span: span,
1312                    root_span: span,
1313                    span,
1314                    module_path: Vec::new(),
1315                    vis,
1316                    vis_span: item.vis.span,
1317                    on_unknown_attr: OnUnknownData::from_attrs(self.r.tcx, item),
1318                });
1319                self.r.import_use_map.insert(import, Used::Other);
1320                let import_decl = self.r.new_import_decl(decl, import);
1321                self.r.plant_decl_into_local_module(ident, orig_ident.span, MacroNS, import_decl);
1322            } else {
1323                self.r.check_reserved_macro_name(ident.name, orig_ident.span, res);
1324                self.insert_unused_macro(orig_ident, def_id, item.id);
1325            }
1326            self.r.feed_visibility(feed, vis);
1327            let scope = self.r.arenas.alloc_macro_rules_scope(MacroRulesScope::Def(
1328                self.r.arenas.alloc_macro_rules_decl(MacroRulesDecl {
1329                    parent_macro_rules_scope: parent_scope.macro_rules,
1330                    decl,
1331                    ident,
1332                    orig_ident_span: orig_ident.span,
1333                }),
1334            ));
1335            self.r.macro_rules_scopes.insert(def_id, scope);
1336            scope
1337        } else {
1338            let module = parent_scope.module.expect_local();
1339            let vis = match item.kind {
1340                // Visibilities must not be resolved non-speculatively twice
1341                // and we already resolved this one as a `fn` item visibility.
1342                ItemKind::Fn(..) => {
1343                    self.try_resolve_visibility(&item.vis, false).unwrap_or(Visibility::Public)
1344                }
1345                _ => self.resolve_visibility(&item.vis),
1346            };
1347            if !vis.is_public() {
1348                self.insert_unused_macro(orig_ident, def_id, item.id);
1349            }
1350            self.r.define_local(module, orig_ident, MacroNS, res, vis, span, expansion);
1351            self.r.feed_visibility(feed, vis);
1352            self.parent_scope.macro_rules
1353        }
1354    }
1355}
1356
1357impl<'a, 'ra, 'tcx> DefCollector<'a, 'ra, 'tcx> {
1358    pub(crate) fn brg_visit_item(&mut self, item: &'a Item, feed: TyCtxtFeed<'tcx, LocalDefId>) {
1359        let orig_module_scope = self.parent_scope.module;
1360        self.parent_scope.macro_rules = match item.kind {
1361            ItemKind::MacroDef(..) => {
1362                let macro_rules_scope = self.define_macro(item, feed);
1363                visit::walk_item(self, item);
1364                macro_rules_scope
1365            }
1366            _ => {
1367                let orig_macro_rules_scope = self.parent_scope.macro_rules;
1368                self.build_reduced_graph_for_item(item, feed);
1369                match item.kind {
1370                    ItemKind::Mod(..) => {
1371                        // Visit attributes after items for backward compatibility.
1372                        // This way they can use `macro_rules` defined later.
1373                        self.visit_vis(&item.vis);
1374                        item.kind.walk(&item.attrs, item.span, item.id, &item.vis, (), self);
1375                        for elem in &item.attrs {
    match ::rustc_ast_ir::visit::VisitorResult::branch(self.visit_attribute(elem))
        {
        core::ops::ControlFlow::Continue(()) =>
            (),
            #[allow(unreachable_code)]
            core::ops::ControlFlow::Break(r) => {
            return ::rustc_ast_ir::visit::VisitorResult::from_residual(r);
        }
    };
};visit::walk_list!(self, visit_attribute, &item.attrs);
1376                    }
1377                    _ => visit::walk_item(self, item),
1378                }
1379                match item.kind {
1380                    ItemKind::Mod(..) if self.contains_macro_use(&item.attrs) => {
1381                        self.parent_scope.macro_rules
1382                    }
1383                    _ => orig_macro_rules_scope,
1384                }
1385            }
1386        };
1387        self.parent_scope.module = orig_module_scope;
1388    }
1389
1390    /// Handle a macro call that itself can produce new `macro_rules` items
1391    /// in the current module.
1392    pub(crate) fn brg_visit_mac_call_in_module(&mut self, id: NodeId) {
1393        self.parent_scope.macro_rules = self.visit_invoc_in_module(id);
1394    }
1395
1396    pub(crate) fn brg_visit_block(&mut self, block: &'a Block) {
1397        let orig_current_module = self.parent_scope.module;
1398        let orig_current_macro_rules_scope = self.parent_scope.macro_rules;
1399        self.build_reduced_graph_for_block(block);
1400        visit::walk_block(self, block);
1401        self.parent_scope.module = orig_current_module;
1402        self.parent_scope.macro_rules = orig_current_macro_rules_scope;
1403    }
1404
1405    pub(crate) fn brg_visit_assoc_item(
1406        &mut self,
1407        item: &'a AssocItem,
1408        ctxt: AssocCtxt,
1409        ident: Ident,
1410        ns: Namespace,
1411        feed: TyCtxtFeed<'tcx, LocalDefId>,
1412    ) {
1413        let vis = self.resolve_visibility(&item.vis);
1414        let local_def_id = feed.key();
1415        let def_id = local_def_id.to_def_id();
1416
1417        if !(#[allow(non_exhaustive_omitted_patterns)] match ctxt {
    AssocCtxt::Impl { of_trait: true } => true,
    _ => false,
}matches!(ctxt, AssocCtxt::Impl { of_trait: true })
1418            && #[allow(non_exhaustive_omitted_patterns)] match item.vis.kind {
    ast::VisibilityKind::Inherited => true,
    _ => false,
}matches!(item.vis.kind, ast::VisibilityKind::Inherited))
1419        {
1420            // Trait impl item visibility is inherited from its trait when not specified
1421            // explicitly. In that case we cannot determine it here in early resolve,
1422            // so we leave a hole in the visibility table to be filled later.
1423            self.r.feed_visibility(feed, vis);
1424        }
1425
1426        if ctxt == AssocCtxt::Trait {
1427            let parent = self.parent_scope.module.expect_local();
1428            let expansion = self.parent_scope.expansion;
1429            self.r.define_local(parent, ident, ns, self.res(def_id), vis, item.span, expansion);
1430        } else if !#[allow(non_exhaustive_omitted_patterns)] match &item.kind {
    AssocItemKind::Delegation(deleg) if deleg.from_glob => true,
    _ => false,
}matches!(&item.kind, AssocItemKind::Delegation(deleg) if deleg.from_glob)
1431            && ident.name != kw::Underscore
1432        {
1433            // Don't add underscore names, they cannot be looked up anyway.
1434            let impl_def_id = self.r.tcx.local_parent(local_def_id);
1435            let key = BindingKey::new(IdentKey::new(ident), ns);
1436            self.r.impl_binding_keys.entry(impl_def_id).or_default().insert(key);
1437        }
1438
1439        visit::walk_assoc_item(self, item, ctxt);
1440    }
1441
1442    pub(crate) fn visit_assoc_item_mac_call(
1443        &mut self,
1444        item: &'a Item<AssocItemKind>,
1445        ctxt: AssocCtxt,
1446    ) {
1447        match ctxt {
1448            AssocCtxt::Trait => {
1449                self.visit_invoc_in_module(item.id);
1450            }
1451            AssocCtxt::Impl { .. } => {
1452                let invoc_id = item.id.placeholder_to_expn_id();
1453                if !self.r.glob_delegation_invoc_ids.contains(&invoc_id) {
1454                    self.r
1455                        .impl_unexpanded_invocations
1456                        .entry(self.r.invocation_parent(invoc_id))
1457                        .or_default()
1458                        .insert(invoc_id);
1459                }
1460                self.visit_invoc(item.id);
1461            }
1462        }
1463    }
1464
1465    pub(crate) fn brg_visit_field_def(
1466        &mut self,
1467        sf: &'a ast::FieldDef,
1468        feed: TyCtxtFeed<'tcx, LocalDefId>,
1469    ) {
1470        let vis = self.resolve_visibility(&sf.vis);
1471        self.r.feed_visibility(feed, vis);
1472        visit::walk_field_def(self, sf);
1473    }
1474
1475    // Constructs the reduced graph for one variant. Variants exist in the
1476    // type and value namespaces.
1477    pub(crate) fn brg_visit_variant(
1478        &mut self,
1479        variant: &'a ast::Variant,
1480        feed: TyCtxtFeed<'tcx, LocalDefId>,
1481    ) {
1482        let parent = self.parent_scope.module.expect_local();
1483        let expn_id = self.parent_scope.expansion;
1484        let ident = variant.ident;
1485
1486        // Define a name in the type namespace.
1487        let def_id = feed.key();
1488        let vis = self.resolve_visibility(&variant.vis);
1489        self.r.define_local(parent, ident, TypeNS, self.res(def_id), vis, variant.span, expn_id);
1490        self.r.feed_visibility(feed, vis);
1491
1492        // If the variant is marked as non_exhaustive then lower the visibility to within the crate.
1493        let ctor_vis =
1494            if vis.is_public() && ast::attr::contains_name(&variant.attrs, sym::non_exhaustive) {
1495                Visibility::Restricted(CRATE_DEF_ID)
1496            } else {
1497                vis
1498            };
1499
1500        // Define a constructor name in the value namespace.
1501        if let Some((ctor_kind, ctor_node_id)) = CtorKind::from_ast(&variant.data) {
1502            let feed = self.create_def(
1503                ctor_node_id,
1504                None,
1505                DefKind::Ctor(CtorOf::Variant, ctor_kind),
1506                variant.span,
1507            );
1508            let ctor_def_id = feed.key();
1509            let ctor_res = self.res(ctor_def_id);
1510            self.r.define_local(parent, ident, ValueNS, ctor_res, ctor_vis, variant.span, expn_id);
1511            self.r.feed_visibility(feed, ctor_vis);
1512        }
1513
1514        // Record field names for error reporting.
1515        self.insert_field_idents(def_id, variant.data.fields());
1516        self.insert_field_visibilities_local(def_id.to_def_id(), variant.data.fields());
1517
1518        visit::walk_variant(self, variant);
1519    }
1520}