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rustc_ast_lowering/
delegation.rs

1//! This module implements expansion of delegation items with early resolved paths.
2//! It includes a delegation to a free functions:
3//!
4//! ```ignore (illustrative)
5//! reuse module::name { target_expr_template }
6//! ```
7//!
8//! And delegation to a trait methods:
9//!
10//! ```ignore (illustrative)
11//! reuse <Type as Trait>::name { target_expr_template }
12//! ```
13//!
14//! After expansion for both cases we get:
15//!
16//! ```ignore (illustrative)
17//! fn name(
18//!     arg0: InferDelegation(sig_id, Input(0)),
19//!     arg1: InferDelegation(sig_id, Input(1)),
20//!     ...,
21//!     argN: InferDelegation(sig_id, Input(N)),
22//! ) -> InferDelegation(sig_id, Output) {
23//!     callee_path(target_expr_template(arg0), arg1, ..., argN)
24//! }
25//! ```
26//!
27//! Where `callee_path` is a path in delegation item e.g. `<Type as Trait>::name`.
28//! `sig_id` is a id of item from which the signature is inherited. It may be a delegation
29//! item id (`item_id`) in case of impl trait or path resolution id (`path_id`) otherwise.
30//!
31//! Since we do not have a proper way to obtain function type information by path resolution
32//! in AST, we mark each function parameter type as `InferDelegation` and inherit it during
33//! HIR ty lowering.
34//!
35//! Similarly generics, predicates and header are set to the "default" values.
36//! In case of discrepancy with callee function the `UnsupportedDelegation` error will
37//! also be emitted during HIR ty lowering.
38
39use std::iter;
40
41use ast::visit::Visitor;
42use hir::def::{DefKind, Res};
43use hir::{BodyId, HirId};
44use rustc_abi::ExternAbi;
45use rustc_ast as ast;
46use rustc_ast::*;
47use rustc_data_structures::fx::FxHashSet;
48use rustc_errors::ErrorGuaranteed;
49use rustc_hir::attrs::{AttributeKind, InlineAttr};
50use rustc_hir::def_id::DefId;
51use rustc_hir::{self as hir, FnDeclFlags};
52use rustc_middle::span_bug;
53use rustc_middle::ty::Asyncness;
54use rustc_span::symbol::kw;
55use rustc_span::{Ident, Span, Symbol};
56use smallvec::SmallVec;
57
58use crate::delegation::generics::{GenericsGenerationResult, GenericsGenerationResults};
59use crate::errors::{CycleInDelegationSignatureResolution, UnresolvedDelegationCallee};
60use crate::{
61    AllowReturnTypeNotation, GenericArgsMode, ImplTraitContext, ImplTraitPosition, LoweringContext,
62    ParamMode, ResolverAstLoweringExt,
63};
64
65mod generics;
66
67pub(crate) struct DelegationResults<'hir> {
68    pub body_id: hir::BodyId,
69    pub sig: hir::FnSig<'hir>,
70    pub ident: Ident,
71    pub generics: &'hir hir::Generics<'hir>,
72}
73
74struct AttrAdditionInfo {
75    pub equals: fn(&hir::Attribute) -> bool,
76    pub kind: AttrAdditionKind,
77}
78
79enum AttrAdditionKind {
80    Default { factory: fn(Span) -> hir::Attribute },
81    Inherit { factory: fn(Span, &hir::Attribute) -> hir::Attribute },
82}
83
84const PARENT_ID: hir::ItemLocalId = hir::ItemLocalId::ZERO;
85
86static ATTRS_ADDITIONS: &[AttrAdditionInfo] = &[
87    AttrAdditionInfo {
88        equals: |a| #[allow(non_exhaustive_omitted_patterns)] match a {
    hir::Attribute::Parsed(AttributeKind::MustUse { .. }) => true,
    _ => false,
}matches!(a, hir::Attribute::Parsed(AttributeKind::MustUse { .. })),
89        kind: AttrAdditionKind::Inherit {
90            factory: |span, original_attr| {
91                let reason = match original_attr {
92                    hir::Attribute::Parsed(AttributeKind::MustUse { reason, .. }) => *reason,
93                    _ => None,
94                };
95
96                hir::Attribute::Parsed(AttributeKind::MustUse { span, reason })
97            },
98        },
99    },
100    AttrAdditionInfo {
101        equals: |a| #[allow(non_exhaustive_omitted_patterns)] match a {
    hir::Attribute::Parsed(AttributeKind::Inline(..)) => true,
    _ => false,
}matches!(a, hir::Attribute::Parsed(AttributeKind::Inline(..))),
102        kind: AttrAdditionKind::Default {
103            factory: |span| hir::Attribute::Parsed(AttributeKind::Inline(InlineAttr::Hint, span)),
104        },
105    },
106];
107
108impl<'hir> LoweringContext<'_, 'hir> {
109    fn is_method(&self, def_id: DefId, span: Span) -> bool {
110        match self.tcx.def_kind(def_id) {
111            DefKind::Fn => false,
112            DefKind::AssocFn => self.tcx.associated_item(def_id).is_method(),
113            _ => ::rustc_middle::util::bug::span_bug_fmt(span,
    format_args!("unexpected DefKind for delegation item"))span_bug!(span, "unexpected DefKind for delegation item"),
114        }
115    }
116
117    pub(crate) fn lower_delegation(
118        &mut self,
119        delegation: &Delegation,
120        item_id: NodeId,
121    ) -> DelegationResults<'hir> {
122        let span = self.lower_span(delegation.path.segments.last().unwrap().ident.span);
123
124        // Delegation can be unresolved in illegal places such as function bodies in extern blocks (see #151356)
125        let sig_id = if let Some(delegation_info) =
126            self.resolver.delegation_info(self.local_def_id(item_id))
127        {
128            self.get_sig_id(delegation_info.resolution_node, span)
129        } else {
130            self.dcx().span_delayed_bug(
131                span,
132                ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("LoweringContext: the delegation {0:?} is unresolved",
                item_id))
    })format!("LoweringContext: the delegation {:?} is unresolved", item_id),
133            );
134
135            return self.generate_delegation_error(span, delegation);
136        };
137
138        match sig_id {
139            Ok(sig_id) => {
140                self.add_attrs_if_needed(span, sig_id);
141
142                let is_method = self.is_method(sig_id, span);
143
144                let (param_count, c_variadic) = self.param_count(sig_id);
145
146                let mut generics =
147                    self.uplift_delegation_generics(delegation, sig_id, item_id, is_method);
148
149                let body_id = self.lower_delegation_body(
150                    delegation,
151                    is_method,
152                    param_count,
153                    &mut generics,
154                    span,
155                );
156
157                let decl =
158                    self.lower_delegation_decl(sig_id, param_count, c_variadic, span, &generics);
159
160                let sig = self.lower_delegation_sig(sig_id, decl, span);
161                let ident = self.lower_ident(delegation.ident);
162
163                let generics = self.arena.alloc(hir::Generics {
164                    has_where_clause_predicates: false,
165                    params: self.arena.alloc_from_iter(generics.all_params(span, self)),
166                    predicates: self.arena.alloc_from_iter(generics.all_predicates(span, self)),
167                    span,
168                    where_clause_span: span,
169                });
170
171                DelegationResults { body_id, sig, ident, generics }
172            }
173            Err(_) => self.generate_delegation_error(span, delegation),
174        }
175    }
176
177    fn add_attrs_if_needed(&mut self, span: Span, sig_id: DefId) {
178        let new_attrs =
179            self.create_new_attrs(ATTRS_ADDITIONS, span, sig_id, self.attrs.get(&PARENT_ID));
180
181        if new_attrs.is_empty() {
182            return;
183        }
184
185        let new_arena_allocated_attrs = match self.attrs.get(&PARENT_ID) {
186            Some(existing_attrs) => self.arena.alloc_from_iter(
187                existing_attrs.iter().map(|a| a.clone()).chain(new_attrs.into_iter()),
188            ),
189            None => self.arena.alloc_from_iter(new_attrs.into_iter()),
190        };
191
192        self.attrs.insert(PARENT_ID, new_arena_allocated_attrs);
193    }
194
195    fn create_new_attrs(
196        &self,
197        candidate_additions: &[AttrAdditionInfo],
198        span: Span,
199        sig_id: DefId,
200        existing_attrs: Option<&&[hir::Attribute]>,
201    ) -> Vec<hir::Attribute> {
202        candidate_additions
203            .iter()
204            .filter_map(|addition_info| {
205                if let Some(existing_attrs) = existing_attrs
206                    && existing_attrs
207                        .iter()
208                        .any(|existing_attr| (addition_info.equals)(existing_attr))
209                {
210                    return None;
211                }
212
213                match addition_info.kind {
214                    AttrAdditionKind::Default { factory } => Some(factory(span)),
215                    AttrAdditionKind::Inherit { factory, .. } =>
216                    {
217                        #[allow(deprecated)]
218                        self.tcx
219                            .get_all_attrs(sig_id)
220                            .iter()
221                            .find_map(|a| (addition_info.equals)(a).then(|| factory(span, a)))
222                    }
223                }
224            })
225            .collect::<Vec<_>>()
226    }
227
228    fn get_sig_id(&self, mut node_id: NodeId, span: Span) -> Result<DefId, ErrorGuaranteed> {
229        let mut visited: FxHashSet<NodeId> = Default::default();
230        let mut path: SmallVec<[DefId; 1]> = Default::default();
231
232        loop {
233            visited.insert(node_id);
234
235            let Some(def_id) = self.get_resolution_id(node_id) else {
236                return Err(self.tcx.dcx().span_delayed_bug(
237                    span,
238                    ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("LoweringContext: couldn\'t resolve node {0:?} in delegation item",
                node_id))
    })format!(
239                        "LoweringContext: couldn't resolve node {:?} in delegation item",
240                        node_id
241                    ),
242                ));
243            };
244
245            path.push(def_id);
246
247            // If def_id is in local crate and it corresponds to another delegation
248            // it means that we refer to another delegation as a callee, so in order to obtain
249            // a signature DefId we obtain NodeId of the callee delegation and try to get signature from it.
250            if let Some(local_id) = def_id.as_local()
251                && let Some(delegation_info) = self.resolver.delegation_info(local_id)
252            {
253                node_id = delegation_info.resolution_node;
254                if visited.contains(&node_id) {
255                    // We encountered a cycle in the resolution, or delegation callee refers to non-existent
256                    // entity, in this case emit an error.
257                    return Err(match visited.len() {
258                        1 => self.dcx().emit_err(UnresolvedDelegationCallee { span }),
259                        _ => self.dcx().emit_err(CycleInDelegationSignatureResolution { span }),
260                    });
261                }
262            } else {
263                return Ok(path[0]);
264            }
265        }
266    }
267
268    fn get_resolution_id(&self, node_id: NodeId) -> Option<DefId> {
269        self.get_partial_res(node_id).and_then(|r| r.expect_full_res().opt_def_id())
270    }
271
272    // Function parameter count, including C variadic `...` if present.
273    fn param_count(&self, def_id: DefId) -> (usize, bool /*c_variadic*/) {
274        let sig = self.tcx.fn_sig(def_id).skip_binder().skip_binder();
275        (sig.inputs().len() + usize::from(sig.c_variadic()), sig.c_variadic())
276    }
277
278    fn lower_delegation_decl(
279        &mut self,
280        sig_id: DefId,
281        param_count: usize,
282        c_variadic: bool,
283        span: Span,
284        generics: &GenericsGenerationResults<'hir>,
285    ) -> &'hir hir::FnDecl<'hir> {
286        // The last parameter in C variadic functions is skipped in the signature,
287        // like during regular lowering.
288        let decl_param_count = param_count - c_variadic as usize;
289        let inputs = self.arena.alloc_from_iter((0..decl_param_count).map(|arg| hir::Ty {
290            hir_id: self.next_id(),
291            kind: hir::TyKind::InferDelegation(hir::InferDelegation::Sig(
292                sig_id,
293                hir::InferDelegationSig::Input(arg),
294            )),
295            span,
296        }));
297
298        let output = self.arena.alloc(hir::Ty {
299            hir_id: self.next_id(),
300            kind: hir::TyKind::InferDelegation(hir::InferDelegation::Sig(
301                sig_id,
302                hir::InferDelegationSig::Output(self.arena.alloc(hir::DelegationGenerics {
303                    child_args_segment_id: generics.child.args_segment_id,
304                    parent_args_segment_id: generics.parent.args_segment_id,
305                    self_ty_id: generics.self_ty_id,
306                    propagate_self_ty: generics.propagate_self_ty,
307                })),
308            )),
309            span,
310        });
311
312        self.arena.alloc(hir::FnDecl {
313            inputs,
314            output: hir::FnRetTy::Return(output),
315            fn_decl_kind: FnDeclFlags::default()
316                .set_lifetime_elision_allowed(true)
317                .set_c_variadic(c_variadic),
318        })
319    }
320
321    fn lower_delegation_sig(
322        &mut self,
323        sig_id: DefId,
324        decl: &'hir hir::FnDecl<'hir>,
325        span: Span,
326    ) -> hir::FnSig<'hir> {
327        let sig = self.tcx.fn_sig(sig_id).skip_binder().skip_binder();
328        let asyncness = match self.tcx.asyncness(sig_id) {
329            Asyncness::Yes => hir::IsAsync::Async(span),
330            Asyncness::No => hir::IsAsync::NotAsync,
331        };
332
333        let header = hir::FnHeader {
334            safety: if self.tcx.codegen_fn_attrs(sig_id).safe_target_features {
335                hir::HeaderSafety::SafeTargetFeatures
336            } else {
337                hir::HeaderSafety::Normal(sig.safety())
338            },
339            constness: self.tcx.constness(sig_id),
340            asyncness,
341            abi: sig.abi(),
342        };
343
344        hir::FnSig { decl, header, span }
345    }
346
347    fn generate_param(
348        &mut self,
349        is_method: bool,
350        idx: usize,
351        span: Span,
352    ) -> (hir::Param<'hir>, NodeId) {
353        let pat_node_id = self.next_node_id();
354        let pat_id = self.lower_node_id(pat_node_id);
355        // FIXME(cjgillot) AssocItem currently relies on self parameter being exactly named `self`.
356        let name = if is_method && idx == 0 {
357            kw::SelfLower
358        } else {
359            Symbol::intern(&::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("arg{0}", idx))
    })format!("arg{idx}"))
360        };
361        let ident = Ident::with_dummy_span(name);
362        let pat = self.arena.alloc(hir::Pat {
363            hir_id: pat_id,
364            kind: hir::PatKind::Binding(hir::BindingMode::NONE, pat_id, ident, None),
365            span,
366            default_binding_modes: false,
367        });
368
369        (hir::Param { hir_id: self.next_id(), pat, ty_span: span, span }, pat_node_id)
370    }
371
372    fn generate_arg(
373        &mut self,
374        is_method: bool,
375        idx: usize,
376        param_id: HirId,
377        span: Span,
378    ) -> hir::Expr<'hir> {
379        // FIXME(cjgillot) AssocItem currently relies on self parameter being exactly named `self`.
380        let name = if is_method && idx == 0 {
381            kw::SelfLower
382        } else {
383            Symbol::intern(&::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("arg{0}", idx))
    })format!("arg{idx}"))
384        };
385
386        let segments = self.arena.alloc_from_iter(iter::once(hir::PathSegment {
387            ident: Ident::with_dummy_span(name),
388            hir_id: self.next_id(),
389            res: Res::Local(param_id),
390            args: None,
391            infer_args: false,
392        }));
393
394        let path = self.arena.alloc(hir::Path { span, res: Res::Local(param_id), segments });
395        self.mk_expr(hir::ExprKind::Path(hir::QPath::Resolved(None, path)), span)
396    }
397
398    fn lower_delegation_body(
399        &mut self,
400        delegation: &Delegation,
401        is_method: bool,
402        param_count: usize,
403        generics: &mut GenericsGenerationResults<'hir>,
404        span: Span,
405    ) -> BodyId {
406        let block = delegation.body.as_deref();
407
408        self.lower_body(|this| {
409            let mut parameters: Vec<hir::Param<'_>> = Vec::with_capacity(param_count);
410            let mut args: Vec<hir::Expr<'_>> = Vec::with_capacity(param_count);
411
412            for idx in 0..param_count {
413                let (param, pat_node_id) = this.generate_param(is_method, idx, span);
414                parameters.push(param);
415
416                let arg = if let Some(block) = block
417                    && idx == 0
418                {
419                    let mut self_resolver = SelfResolver {
420                        ctxt: this,
421                        path_id: delegation.id,
422                        self_param_id: pat_node_id,
423                    };
424                    self_resolver.visit_block(block);
425                    // Target expr needs to lower `self` path.
426                    this.ident_and_label_to_local_id.insert(pat_node_id, param.pat.hir_id.local_id);
427                    this.lower_target_expr(&block)
428                } else {
429                    this.generate_arg(is_method, idx, param.pat.hir_id, span)
430                };
431                args.push(arg);
432            }
433
434            // If we have no params in signature function but user still wrote some code in
435            // delegation body, then add this code as first arg, eventually an error will be shown,
436            // also nested delegations may need to access information about this code (#154332),
437            // so it is better to leave this code as opposed to bodies of extern functions,
438            // which are completely erased from existence.
439            if param_count == 0
440                && let Some(block) = block
441            {
442                args.push(this.lower_target_expr(&block));
443            }
444
445            let final_expr = this.finalize_body_lowering(delegation, args, generics, span);
446
447            (this.arena.alloc_from_iter(parameters), final_expr)
448        })
449    }
450
451    // FIXME(fn_delegation): Alternatives for target expression lowering:
452    // https://github.com/rust-lang/rfcs/pull/3530#issuecomment-2197170600.
453    fn lower_target_expr(&mut self, block: &Block) -> hir::Expr<'hir> {
454        if let [stmt] = block.stmts.as_slice()
455            && let StmtKind::Expr(expr) = &stmt.kind
456        {
457            return self.lower_expr_mut(expr);
458        }
459
460        let block = self.lower_block(block, false);
461        self.mk_expr(hir::ExprKind::Block(block, None), block.span)
462    }
463
464    // Generates expression for the resulting body. If possible, `MethodCall` is used
465    // to allow autoref/autoderef for target expression. For example in:
466    //
467    // trait Trait : Sized {
468    //     fn by_value(self) -> i32 { 1 }
469    //     fn by_mut_ref(&mut self) -> i32 { 2 }
470    //     fn by_ref(&self) -> i32 { 3 }
471    // }
472    //
473    // struct NewType(SomeType);
474    // impl Trait for NewType {
475    //     reuse Trait::* { self.0 }
476    // }
477    //
478    // `self.0` will automatically coerce.
479    fn finalize_body_lowering(
480        &mut self,
481        delegation: &Delegation,
482        args: Vec<hir::Expr<'hir>>,
483        generics: &mut GenericsGenerationResults<'hir>,
484        span: Span,
485    ) -> hir::Expr<'hir> {
486        let args = self.arena.alloc_from_iter(args);
487
488        let has_generic_args =
489            delegation.path.segments.iter().rev().skip(1).any(|segment| segment.args.is_some());
490
491        let call = if self
492            .get_resolution_id(delegation.id)
493            .map(|def_id| self.is_method(def_id, span))
494            .unwrap_or_default()
495            && delegation.qself.is_none()
496            && !has_generic_args
497            && !args.is_empty()
498        {
499            let ast_segment = delegation.path.segments.last().unwrap();
500            let segment = self.lower_path_segment(
501                delegation.path.span,
502                ast_segment,
503                ParamMode::Optional,
504                GenericArgsMode::Err,
505                ImplTraitContext::Disallowed(ImplTraitPosition::Path),
506                None,
507            );
508
509            // FIXME(fn_delegation): proper support for parent generics propagation
510            // in method call scenario.
511            let segment = self.process_segment(span, &segment, &mut generics.child);
512            let segment = self.arena.alloc(segment);
513
514            self.arena.alloc(hir::Expr {
515                hir_id: self.next_id(),
516                kind: hir::ExprKind::MethodCall(segment, &args[0], &args[1..], span),
517                span,
518            })
519        } else {
520            let path = self.lower_qpath(
521                delegation.id,
522                &delegation.qself,
523                &delegation.path,
524                ParamMode::Optional,
525                AllowReturnTypeNotation::No,
526                ImplTraitContext::Disallowed(ImplTraitPosition::Path),
527                None,
528            );
529
530            let new_path = match path {
531                hir::QPath::Resolved(ty, path) => {
532                    let mut new_path = path.clone();
533                    let len = new_path.segments.len();
534
535                    new_path.segments = self.arena.alloc_from_iter(
536                        new_path.segments.iter().enumerate().map(|(idx, segment)| {
537                            if idx + 2 == len {
538                                self.process_segment(span, segment, &mut generics.parent)
539                            } else if idx + 1 == len {
540                                self.process_segment(span, segment, &mut generics.child)
541                            } else {
542                                segment.clone()
543                            }
544                        }),
545                    );
546
547                    hir::QPath::Resolved(ty, self.arena.alloc(new_path))
548                }
549                hir::QPath::TypeRelative(ty, segment) => {
550                    let segment = self.process_segment(span, segment, &mut generics.child);
551
552                    hir::QPath::TypeRelative(ty, self.arena.alloc(segment))
553                }
554            };
555
556            generics.self_ty_id = match new_path {
557                hir::QPath::Resolved(ty, _) => ty,
558                hir::QPath::TypeRelative(ty, _) => Some(ty),
559            }
560            .map(|ty| ty.hir_id);
561
562            let callee_path = self.arena.alloc(self.mk_expr(hir::ExprKind::Path(new_path), span));
563            self.arena.alloc(self.mk_expr(hir::ExprKind::Call(callee_path, args), span))
564        };
565
566        let block = self.arena.alloc(hir::Block {
567            stmts: &[],
568            expr: Some(call),
569            hir_id: self.next_id(),
570            rules: hir::BlockCheckMode::DefaultBlock,
571            span,
572            targeted_by_break: false,
573        });
574
575        self.mk_expr(hir::ExprKind::Block(block, None), span)
576    }
577
578    fn process_segment(
579        &mut self,
580        span: Span,
581        segment: &hir::PathSegment<'hir>,
582        result: &mut GenericsGenerationResult<'hir>,
583    ) -> hir::PathSegment<'hir> {
584        let details = result.generics.args_propagation_details();
585
586        let segment = if details.should_propagate {
587            let generics = result.generics.into_hir_generics(self, span);
588            let args = generics.into_generic_args(self, span);
589
590            // Needed for better error messages (`trait-impl-wrong-args-count.rs` test).
591            let args = if args.is_empty() { None } else { Some(args) };
592
593            hir::PathSegment { args, ..segment.clone() }
594        } else {
595            segment.clone()
596        };
597
598        if details.use_args_in_sig_inheritance {
599            result.args_segment_id = Some(segment.hir_id);
600        }
601
602        segment
603    }
604
605    fn generate_delegation_error(
606        &mut self,
607        span: Span,
608        delegation: &Delegation,
609    ) -> DelegationResults<'hir> {
610        let decl = self.arena.alloc(hir::FnDecl::dummy(span));
611
612        let header = self.generate_header_error();
613        let sig = hir::FnSig { decl, header, span };
614
615        let ident = self.lower_ident(delegation.ident);
616
617        let body_id = self.lower_body(|this| {
618            let path = this.lower_qpath(
619                delegation.id,
620                &delegation.qself,
621                &delegation.path,
622                ParamMode::Optional,
623                AllowReturnTypeNotation::No,
624                ImplTraitContext::Disallowed(ImplTraitPosition::Path),
625                None,
626            );
627
628            let callee_path = this.arena.alloc(this.mk_expr(hir::ExprKind::Path(path), span));
629            let args = if let Some(box block) = delegation.body.as_ref() {
630                this.arena.alloc_slice(&[this.lower_target_expr(block)])
631            } else {
632                &mut []
633            };
634
635            let call = this.arena.alloc(this.mk_expr(hir::ExprKind::Call(callee_path, args), span));
636
637            let block = this.arena.alloc(hir::Block {
638                stmts: &[],
639                expr: Some(call),
640                hir_id: this.next_id(),
641                rules: hir::BlockCheckMode::DefaultBlock,
642                span,
643                targeted_by_break: false,
644            });
645
646            (&[], this.mk_expr(hir::ExprKind::Block(block, None), span))
647        });
648
649        let generics = hir::Generics::empty();
650        DelegationResults { ident, generics, body_id, sig }
651    }
652
653    fn generate_header_error(&self) -> hir::FnHeader {
654        hir::FnHeader {
655            safety: hir::Safety::Safe.into(),
656            constness: hir::Constness::NotConst,
657            asyncness: hir::IsAsync::NotAsync,
658            abi: ExternAbi::Rust,
659        }
660    }
661
662    #[inline]
663    fn mk_expr(&mut self, kind: hir::ExprKind<'hir>, span: Span) -> hir::Expr<'hir> {
664        hir::Expr { hir_id: self.next_id(), kind, span }
665    }
666}
667
668struct SelfResolver<'a, 'b, 'hir> {
669    ctxt: &'a mut LoweringContext<'b, 'hir>,
670    path_id: NodeId,
671    self_param_id: NodeId,
672}
673
674impl SelfResolver<'_, '_, '_> {
675    fn try_replace_id(&mut self, id: NodeId) {
676        if let Some(res) = self.ctxt.get_partial_res(id)
677            && let Some(Res::Local(sig_id)) = res.full_res()
678            && sig_id == self.path_id
679        {
680            self.ctxt.partial_res_overrides.insert(id, self.self_param_id);
681        }
682    }
683}
684
685impl<'ast> Visitor<'ast> for SelfResolver<'_, '_, '_> {
686    fn visit_id(&mut self, id: NodeId) {
687        self.try_replace_id(id);
688    }
689}