1use rustc_abi::ExternAbi;
2use rustc_ast::visit::AssocCtxt;
3use rustc_ast::*;
4use rustc_data_structures::fx::FxIndexMap;
5use rustc_errors::{E0570, ErrorGuaranteed, struct_span_code_err};
6use rustc_hir::attrs::{AttributeKind, EiiImplResolution};
7use rustc_hir::def::{DefKind, PerNS, Res};
8use rustc_hir::def_id::{CRATE_DEF_ID, LocalDefId};
9use rustc_hir::{
10 self as hir, HirId, ImplItemImplKind, LifetimeSource, PredicateOrigin, Target, find_attr,
11};
12use rustc_index::{IndexSlice, IndexVec};
13use rustc_middle::span_bug;
14use rustc_middle::ty::data_structures::IndexMap;
15use rustc_middle::ty::{ResolverAstLowering, TyCtxt};
16use rustc_span::def_id::DefId;
17use rustc_span::edit_distance::find_best_match_for_name;
18use rustc_span::{DUMMY_SP, DesugaringKind, Ident, Span, Symbol, kw, sym};
19use smallvec::{SmallVec, smallvec};
20use thin_vec::ThinVec;
21use tracing::instrument;
22
23use super::diagnostics::{
24 InvalidAbi, InvalidAbiSuggestion, TupleStructWithDefault, UnionWithDefault,
25};
26use super::stability::{enabled_names, gate_unstable_abi};
27use super::{
28 AstOwner, FnDeclKind, GenericArgsMode, ImplTraitContext, ImplTraitPosition, LoweringContext,
29 ParamMode, RelaxedBoundForbiddenReason, RelaxedBoundPolicy, ResolverAstLoweringExt,
30};
31use crate::diagnostics::ConstComptimeFn;
32
33pub(super) enum Owners<'a, 'hir> {
38 IndexVec(&'a mut IndexVec<LocalDefId, hir::MaybeOwner<'hir>>),
39 Map(&'a mut FxIndexMap<LocalDefId, hir::MaybeOwner<'hir>>),
40}
41
42impl<'hir> Owners<'_, 'hir> {
43 fn get_or_insert_mut(&mut self, def_id: LocalDefId) -> &mut hir::MaybeOwner<'hir> {
44 match self {
45 Owners::IndexVec(index_vec) => {
46 index_vec.ensure_contains_elem(def_id, || hir::MaybeOwner::Phantom)
47 }
48 Owners::Map(map) => map.entry(def_id).or_insert(hir::MaybeOwner::Phantom),
49 }
50 }
51}
52
53pub(super) struct ItemLowerer<'a, 'hir> {
54 pub(super) tcx: TyCtxt<'hir>,
55 pub(super) resolver: &'a ResolverAstLowering<'hir>,
56 pub(super) ast_index: &'a IndexSlice<LocalDefId, AstOwner<'a>>,
57 pub(super) owners: Owners<'a, 'hir>,
58}
59
60fn add_ty_alias_where_clause(
64 generics: &mut ast::Generics,
65 after_where_clause: &ast::WhereClause,
66 prefer_first: bool,
67) {
68 generics.where_clause.predicates.extend_from_slice(&after_where_clause.predicates);
69
70 let mut before = (generics.where_clause.has_where_token, generics.where_clause.span);
71 let mut after = (after_where_clause.has_where_token, after_where_clause.span);
72 if !prefer_first {
73 (before, after) = (after, before);
74 }
75 (generics.where_clause.has_where_token, generics.where_clause.span) =
76 if before.0 || !after.0 { before } else { after };
77}
78
79impl<'hir> ItemLowerer<'_, 'hir> {
80 fn with_lctx(
81 &mut self,
82 owner: NodeId,
83 f: impl for<'a> FnOnce(&mut LoweringContext<'a, 'hir>) -> hir::OwnerNode<'hir>,
84 ) {
85 let mut lctx = LoweringContext::new(self.tcx, self.resolver);
86 lctx.with_hir_id_owner(owner, |lctx| f(lctx));
87
88 for (def_id, info) in lctx.children {
89 let owner = self.owners.get_or_insert_mut(def_id);
90 if !#[allow(non_exhaustive_omitted_patterns)] match owner {
hir::MaybeOwner::Phantom => true,
_ => false,
} {
{
::core::panicking::panic_fmt(format_args!("duplicate copy of {0:?} in lctx.children",
def_id));
}
};assert!(
91 matches!(owner, hir::MaybeOwner::Phantom),
92 "duplicate copy of {def_id:?} in lctx.children"
93 );
94 *owner = info;
95 }
96 }
97
98 pub(super) fn lower_node(&mut self, def_id: LocalDefId) {
99 let owner = self.owners.get_or_insert_mut(def_id);
100 if let hir::MaybeOwner::Phantom = owner {
101 let node = self.ast_index[def_id];
102 match node {
103 AstOwner::NonOwner => {}
104 AstOwner::Crate(c) => {
105 match (&self.resolver.owner_def_id(CRATE_NODE_ID), &CRATE_DEF_ID) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val, &*right_val,
::core::option::Option::None);
}
}
};assert_eq!(self.resolver.owner_def_id(CRATE_NODE_ID), CRATE_DEF_ID);
106 self.with_lctx(CRATE_NODE_ID, |lctx| {
107 let module = lctx.lower_mod(&c.items, &c.spans);
108 lctx.lower_attrs(hir::CRATE_HIR_ID, &c.attrs, DUMMY_SP, Target::Crate);
110 hir::OwnerNode::Crate(module)
111 })
112 }
113 AstOwner::Item(item) => {
114 self.with_lctx(item.id, |lctx| hir::OwnerNode::Item(lctx.lower_item(item)))
115 }
116 AstOwner::AssocItem(item, ctxt) => {
117 self.with_lctx(item.id, |lctx| lctx.lower_assoc_item(item, ctxt))
118 }
119 AstOwner::ForeignItem(item) => self.with_lctx(item.id, |lctx| {
120 hir::OwnerNode::ForeignItem(lctx.lower_foreign_item(item))
121 }),
122 }
123 }
124 }
125}
126
127impl<'hir> LoweringContext<'_, 'hir> {
128 pub(super) fn lower_mod(
129 &mut self,
130 items: &[Box<Item>],
131 spans: &ModSpans,
132 ) -> &'hir hir::Mod<'hir> {
133 self.arena.alloc(hir::Mod {
134 spans: hir::ModSpans {
135 inner_span: self.lower_span(spans.inner_span),
136 inject_use_span: self.lower_span(spans.inject_use_span),
137 },
138 item_ids: self.arena.alloc_from_iter(items.iter().flat_map(|x| self.lower_item_ref(x))),
139 })
140 }
141
142 pub(super) fn lower_item_ref(&mut self, i: &Item) -> SmallVec<[hir::ItemId; 1]> {
143 let mut node_ids = {
let count = 0usize + 1usize;
let mut vec = ::smallvec::SmallVec::new();
if count <= vec.inline_size() {
vec.push(hir::ItemId { owner_id: self.owner_id(i.id) });
vec
} else {
::smallvec::SmallVec::from_vec(::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[hir::ItemId { owner_id: self.owner_id(i.id) }])))
}
}smallvec![hir::ItemId { owner_id: self.owner_id(i.id) }];
144 if let ItemKind::Use(use_tree) = &i.kind {
145 self.lower_item_id_use_tree(use_tree, &mut node_ids);
146 }
147 node_ids
148 }
149
150 fn lower_item_id_use_tree(&mut self, tree: &UseTree, vec: &mut SmallVec<[hir::ItemId; 1]>) {
151 match &tree.kind {
152 UseTreeKind::Nested { items, .. } => {
153 for &(ref nested, id) in items {
154 vec.push(hir::ItemId { owner_id: self.owner_id(id) });
155 self.lower_item_id_use_tree(nested, vec);
156 }
157 }
158 UseTreeKind::Simple(..) | UseTreeKind::Glob(_) => {}
159 }
160 }
161
162 fn lower_eii_decl(
163 &mut self,
164 id: NodeId,
165 name: Ident,
166 EiiDecl { foreign_item, impl_unsafe }: &EiiDecl,
167 ) -> Option<hir::attrs::EiiDecl> {
168 self.lower_path_simple_eii(id, foreign_item).map(|did| hir::attrs::EiiDecl {
169 foreign_item: did,
170 impl_unsafe: *impl_unsafe,
171 name,
172 })
173 }
174
175 fn lower_eii_impl(
176 &mut self,
177 EiiImpl {
178 node_id,
179 eii_macro_path,
180 impl_safety,
181 span,
182 inner_span,
183 is_default,
184 known_eii_macro_resolution,
185 }: &EiiImpl,
186 ) -> hir::attrs::EiiImpl {
187 let resolution = if let Some(target) = known_eii_macro_resolution
188 && let Some(decl) = self.lower_eii_decl(
189 *node_id,
190 eii_macro_path.segments.last().expect("at least one segment").ident,
192 target,
193 ) {
194 EiiImplResolution::Known(decl)
195 } else if let Some(macro_did) = self.lower_path_simple_eii(*node_id, eii_macro_path) {
196 EiiImplResolution::Macro(macro_did)
197 } else {
198 EiiImplResolution::Error(
199 self.dcx().span_delayed_bug(*span, "eii never resolved without errors given"),
200 )
201 };
202
203 hir::attrs::EiiImpl {
204 span: self.lower_span(*span),
205 inner_span: self.lower_span(*inner_span),
206 impl_marked_unsafe: self.lower_safety(*impl_safety, hir::Safety::Safe).is_unsafe(),
207 is_default: *is_default,
208 resolution,
209 }
210 }
211
212 fn generate_extra_attrs_for_item_kind(
213 &mut self,
214 id: NodeId,
215 i: &ItemKind,
216 ) -> Vec<hir::Attribute> {
217 match i {
218 ItemKind::Fn(Fn { eii_impls, .. }) | ItemKind::Static(StaticItem { eii_impls, .. })
219 if eii_impls.is_empty() =>
220 {
221 Vec::new()
222 }
223 ItemKind::Fn(Fn { eii_impls, .. }) | ItemKind::Static(StaticItem { eii_impls, .. }) => {
224 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[hir::Attribute::Parsed(AttributeKind::EiiImpls(eii_impls.iter().map(|i|
self.lower_eii_impl(i)).collect()))]))vec![hir::Attribute::Parsed(AttributeKind::EiiImpls(
225 eii_impls.iter().map(|i| self.lower_eii_impl(i)).collect(),
226 ))]
227 }
228 ItemKind::MacroDef(name, MacroDef { eii_declaration: Some(target), .. }) => self
229 .lower_eii_decl(id, *name, target)
230 .map(|decl| ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[hir::Attribute::Parsed(AttributeKind::EiiDeclaration(decl))]))vec![hir::Attribute::Parsed(AttributeKind::EiiDeclaration(decl))])
231 .unwrap_or_default(),
232
233 ItemKind::ExternCrate(..)
234 | ItemKind::Use(..)
235 | ItemKind::Const(..)
236 | ItemKind::ConstBlock(..)
237 | ItemKind::Mod(..)
238 | ItemKind::ForeignMod(..)
239 | ItemKind::GlobalAsm(..)
240 | ItemKind::TyAlias(..)
241 | ItemKind::Enum(..)
242 | ItemKind::Struct(..)
243 | ItemKind::Union(..)
244 | ItemKind::Trait(..)
245 | ItemKind::TraitAlias(..)
246 | ItemKind::Impl(..)
247 | ItemKind::MacCall(..)
248 | ItemKind::MacroDef(..)
249 | ItemKind::Delegation(..)
250 | ItemKind::DelegationMac(..) => Vec::new(),
251 }
252 }
253
254 fn lower_item(&mut self, i: &Item) -> &'hir hir::Item<'hir> {
255 let vis_span = self.lower_span(i.vis.span);
256 let hir_id = hir::HirId::make_owner(self.current_hir_id_owner.def_id);
257
258 let extra_hir_attributes = self.generate_extra_attrs_for_item_kind(i.id, &i.kind);
259 let attrs = self.lower_attrs_with_extra(
260 hir_id,
261 &i.attrs,
262 i.span,
263 Target::from_ast_item(i),
264 &extra_hir_attributes,
265 );
266
267 let kind = self.lower_item_kind(i.span, i.id, hir_id, attrs, vis_span, &i.kind);
268 let item = hir::Item {
269 owner_id: hir_id.expect_owner(),
270 kind,
271 vis_span,
272 span: self.lower_span(i.span),
273 has_delayed_lints: !self.delayed_lints.is_empty(),
274 eii: {
{
'done:
{
for i in attrs {
#[allow(unused_imports)]
use rustc_hir::attrs::AttributeKind::*;
let i: &rustc_hir::Attribute = i;
match i {
rustc_hir::Attribute::Parsed(EiiImpls(..) |
EiiDeclaration(..)) => {
break 'done Some(());
}
rustc_hir::Attribute::Unparsed(..) =>
{}
#[deny(unreachable_patterns)]
_ => {}
}
}
None
}
}.is_some()
}find_attr!(attrs, EiiImpls(..) | EiiDeclaration(..)),
275 };
276 self.arena.alloc(item)
277 }
278
279 fn lower_item_kind(
280 &mut self,
281 span: Span,
282 id: NodeId,
283 hir_id: hir::HirId,
284 attrs: &'hir [hir::Attribute],
285 vis_span: Span,
286 i: &ItemKind,
287 ) -> hir::ItemKind<'hir> {
288 match i {
289 ItemKind::ExternCrate(orig_name, ident) => {
290 let ident = self.lower_ident(*ident);
291 hir::ItemKind::ExternCrate(*orig_name, ident)
292 }
293 ItemKind::Use(use_tree) => {
294 let prefix = Path {
296 segments: ThinVec::new(),
297 span: use_tree.prefix.span.shrink_to_lo(),
298 tokens: None,
299 };
300
301 self.lower_use_tree(use_tree, &prefix, id, vis_span, attrs)
302 }
303 ItemKind::Static(ast::StaticItem {
304 ident,
305 ty,
306 safety: _,
307 mutability: m,
308 expr: e,
309 define_opaque,
310 eii_impls: _,
311 }) => {
312 let ident = self.lower_ident(*ident);
313 let ty = self
314 .lower_ty_alloc(ty, ImplTraitContext::Disallowed(ImplTraitPosition::StaticTy));
315 let body_id = self.lower_const_body(span, e.as_deref());
316 self.lower_define_opaque(hir_id, define_opaque);
317 hir::ItemKind::Static(*m, ident, ty, body_id)
318 }
319 ItemKind::Const(ConstItem {
320 defaultness: _,
321 ident,
322 generics,
323 ty,
324 rhs_kind,
325 define_opaque,
326 }) => {
327 let ident = self.lower_ident(*ident);
328 let (generics, (ty, rhs)) = self.lower_generics(
329 generics,
330 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
331 |this| {
332 let ty = this.lower_ty_alloc(
333 ty,
334 ImplTraitContext::Disallowed(ImplTraitPosition::ConstTy),
335 );
336 let rhs = this.lower_const_item_rhs(rhs_kind, span);
337 (ty, rhs)
338 },
339 );
340 self.lower_define_opaque(hir_id, &define_opaque);
341 hir::ItemKind::Const(ident, generics, ty, rhs)
342 }
343 ItemKind::ConstBlock(ConstBlockItem { span, id, block }) => hir::ItemKind::Const(
344 self.lower_ident(ConstBlockItem::IDENT),
345 hir::Generics::empty(),
346 self.arena.alloc(self.ty_tup(DUMMY_SP, &[])),
347 hir::ConstItemRhs::Body({
348 let body = hir::Expr {
349 hir_id: self.lower_node_id(*id),
350 kind: hir::ExprKind::Block(self.lower_block(block, false), None),
351 span: self.lower_span(*span),
352 };
353 self.record_body(&[], body)
354 }),
355 ),
356 ItemKind::Fn(Fn {
357 sig: FnSig { decl, header, span: fn_sig_span },
358 ident,
359 generics,
360 body,
361 contract,
362 define_opaque,
363 ..
364 }) => {
365 self.with_new_scopes(*fn_sig_span, |this| {
366 let coroutine_kind = header.coroutine_kind;
371 let body_id = this.lower_maybe_coroutine_body(
372 *fn_sig_span,
373 span,
374 hir_id,
375 decl,
376 coroutine_kind,
377 body.as_deref(),
378 attrs,
379 contract.as_deref(),
380 );
381
382 let itctx = ImplTraitContext::Universal;
383 let (generics, decl) = this.lower_generics(generics, itctx, |this| {
384 this.lower_fn_decl(decl, id, *fn_sig_span, FnDeclKind::Fn, coroutine_kind)
385 });
386 let sig = hir::FnSig {
387 decl,
388 header: this.lower_fn_header(*header, hir::Safety::Safe, attrs),
389 span: this.lower_span(*fn_sig_span),
390 };
391 this.lower_define_opaque(hir_id, define_opaque);
392 let ident = this.lower_ident(*ident);
393 hir::ItemKind::Fn {
394 ident,
395 sig,
396 generics,
397 body: body_id,
398 has_body: body.is_some(),
399 }
400 })
401 }
402 ItemKind::Mod(_, ident, mod_kind) => {
403 let ident = self.lower_ident(*ident);
404 match mod_kind {
405 ModKind::Loaded(items, _, spans) => {
406 hir::ItemKind::Mod(ident, self.lower_mod(items, spans))
407 }
408 ModKind::Unloaded => {
::core::panicking::panic_fmt(format_args!("`mod` items should have been loaded by now"));
}panic!("`mod` items should have been loaded by now"),
409 }
410 }
411 ItemKind::ForeignMod(fm) => hir::ItemKind::ForeignMod {
412 abi: fm.abi.map_or(ExternAbi::FALLBACK, |abi| self.lower_abi(abi)),
413 items: self
414 .arena
415 .alloc_from_iter(fm.items.iter().map(|x| self.lower_foreign_item_ref(x))),
416 },
417 ItemKind::GlobalAsm(asm) => {
418 let asm = self.lower_inline_asm(span, asm);
419 let fake_body =
420 self.lower_body(|this| (&[], this.expr(span, hir::ExprKind::InlineAsm(asm))));
421 hir::ItemKind::GlobalAsm { asm, fake_body }
422 }
423 ItemKind::TyAlias(TyAlias { ident, generics, after_where_clause, ty, .. }) => {
424 let ident = self.lower_ident(*ident);
433 let mut generics = generics.clone();
434 add_ty_alias_where_clause(&mut generics, after_where_clause, true);
435 let (generics, ty) = self.lower_generics(
436 &generics,
437 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
438 |this| match ty {
439 None => {
440 let guar = this.dcx().span_delayed_bug(
441 span,
442 "expected to lower type alias type, but it was missing",
443 );
444 this.arena.alloc(this.ty(span, hir::TyKind::Err(guar)))
445 }
446 Some(ty) => this.lower_ty_alloc(
447 ty,
448 ImplTraitContext::OpaqueTy {
449 origin: hir::OpaqueTyOrigin::TyAlias {
450 parent: this.owner.def_id,
451 in_assoc_ty: false,
452 },
453 },
454 ),
455 },
456 );
457 hir::ItemKind::TyAlias(ident, generics, ty)
458 }
459 ItemKind::Enum(ident, generics, enum_definition) => {
460 let ident = self.lower_ident(*ident);
461 let (generics, variants) = self.lower_generics(
462 generics,
463 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
464 |this| {
465 this.arena.alloc_from_iter(
466 enum_definition.variants.iter().map(|x| this.lower_variant(i, x)),
467 )
468 },
469 );
470 hir::ItemKind::Enum(ident, generics, hir::EnumDef { variants })
471 }
472 ItemKind::Struct(ident, generics, struct_def) => {
473 let ident = self.lower_ident(*ident);
474 let (generics, struct_def) = self.lower_generics(
475 generics,
476 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
477 |this| this.lower_variant_data(hir_id, i, struct_def),
478 );
479 hir::ItemKind::Struct(ident, generics, struct_def)
480 }
481 ItemKind::Union(ident, generics, vdata) => {
482 let ident = self.lower_ident(*ident);
483 let (generics, vdata) = self.lower_generics(
484 generics,
485 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
486 |this| this.lower_variant_data(hir_id, i, vdata),
487 );
488 hir::ItemKind::Union(ident, generics, vdata)
489 }
490 ItemKind::Impl(Impl {
491 generics: ast_generics,
492 of_trait,
493 self_ty: ty,
494 items: impl_items,
495 constness,
496 }) => {
497 let itctx = ImplTraitContext::Universal;
511 let (generics, (of_trait, lowered_ty)) =
512 self.lower_generics(ast_generics, itctx, |this| {
513 let of_trait = of_trait
514 .as_deref()
515 .map(|of_trait| this.lower_trait_impl_header(of_trait));
516
517 let lowered_ty = this.lower_ty_alloc(
518 ty,
519 ImplTraitContext::Disallowed(ImplTraitPosition::ImplSelf),
520 );
521
522 (of_trait, lowered_ty)
523 });
524
525 let new_impl_items = self
526 .arena
527 .alloc_from_iter(impl_items.iter().map(|item| self.lower_impl_item_ref(item)));
528
529 let constness = self.lower_constness(*constness);
530
531 hir::ItemKind::Impl(hir::Impl {
532 generics,
533 of_trait,
534 self_ty: lowered_ty,
535 items: new_impl_items,
536 constness,
537 })
538 }
539 ItemKind::Trait(Trait {
540 impl_restriction,
541 constness,
542 is_auto,
543 safety,
544 ident,
545 generics,
546 bounds,
547 items,
548 }) => {
549 let constness = self.lower_constness(*constness);
550 let impl_restriction = self.lower_impl_restriction(impl_restriction);
551 let ident = self.lower_ident(*ident);
552 let (generics, (safety, items, bounds)) = self.lower_generics(
553 generics,
554 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
555 |this| {
556 let bounds = this.lower_param_bounds(
557 bounds,
558 RelaxedBoundPolicy::Forbidden(RelaxedBoundForbiddenReason::SuperTrait),
559 ImplTraitContext::Disallowed(ImplTraitPosition::Bound),
560 );
561 let items = this.arena.alloc_from_iter(
562 items.iter().map(|item| this.lower_trait_item_ref(item)),
563 );
564 let safety = this.lower_safety(*safety, hir::Safety::Safe);
565 (safety, items, bounds)
566 },
567 );
568 hir::ItemKind::Trait {
569 impl_restriction,
570 constness,
571 is_auto: *is_auto,
572 safety,
573 ident,
574 generics,
575 bounds,
576 items,
577 }
578 }
579 ItemKind::TraitAlias(TraitAlias { constness, ident, generics, bounds }) => {
580 let constness = self.lower_constness(*constness);
581 let ident = self.lower_ident(*ident);
582 let (generics, bounds) = self.lower_generics(
583 generics,
584 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
585 |this| {
586 this.lower_param_bounds(
587 bounds,
588 RelaxedBoundPolicy::Forbidden(RelaxedBoundForbiddenReason::TraitAlias),
589 ImplTraitContext::Disallowed(ImplTraitPosition::Bound),
590 )
591 },
592 );
593 hir::ItemKind::TraitAlias(constness, ident, generics, bounds)
594 }
595 ItemKind::MacroDef(ident, MacroDef { body, macro_rules, eii_declaration: _ }) => {
596 let ident = self.lower_ident(*ident);
597 let body = Box::new(self.lower_delim_args(body));
598 let def_id = self.owner.def_id;
599 let def_kind = self.tcx.def_kind(def_id);
600 let DefKind::Macro(macro_kinds) = def_kind else {
601 {
::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
format_args!("expected DefKind::Macro for macro item, found {0}",
def_kind.descr(def_id.to_def_id()))));
};unreachable!(
602 "expected DefKind::Macro for macro item, found {}",
603 def_kind.descr(def_id.to_def_id())
604 );
605 };
606 let macro_def = self.arena.alloc(ast::MacroDef {
607 body,
608 macro_rules: *macro_rules,
609 eii_declaration: None,
610 });
611 hir::ItemKind::Macro(ident, macro_def, macro_kinds)
612 }
613 ItemKind::Delegation(delegation) => {
614 let delegation_results = self.lower_delegation(delegation, id);
615 hir::ItemKind::Fn {
616 sig: delegation_results.sig,
617 ident: delegation_results.ident,
618 generics: delegation_results.generics,
619 body: delegation_results.body_id,
620 has_body: true,
621 }
622 }
623 ItemKind::MacCall(..) | ItemKind::DelegationMac(..) => {
624 {
::core::panicking::panic_fmt(format_args!("macros should have been expanded by now"));
}panic!("macros should have been expanded by now")
625 }
626 }
627 }
628
629 fn lower_path_simple_eii(&mut self, id: NodeId, path: &Path) -> Option<DefId> {
630 let res = self.get_partial_res(id)?;
631 let Some(did) = res.expect_full_res().opt_def_id() else {
632 self.dcx().span_delayed_bug(path.span, "should have errored in resolve");
633 return None;
634 };
635
636 Some(did)
637 }
638
639 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("lower_use_tree",
"rustc_ast_lowering::item", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_ast_lowering/src/item.rs"),
::tracing_core::__macro_support::Option::Some(639u32),
::tracing_core::__macro_support::Option::Some("rustc_ast_lowering::item"),
::tracing_core::field::FieldSet::new(&["tree", "prefix",
"id", "vis_span", "attrs"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::DEBUG <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = meta.fields().iter();
meta.fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&tree)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&prefix)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&id)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&vis_span)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&attrs)
as &dyn Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: hir::ItemKind<'hir> = loop {};
return __tracing_attr_fake_return;
}
{
let path = &tree.prefix;
let segments =
prefix.segments.iter().chain(path.segments.iter()).cloned().collect();
match tree.kind {
UseTreeKind::Simple(rename) => {
let mut ident = tree.ident();
let mut path =
Path { segments, span: path.span, tokens: None };
if path.segments.len() > 1 &&
path.segments.last().unwrap().ident.name == kw::SelfLower {
let _ = path.segments.pop();
if rename.is_none() {
ident = path.segments.last().unwrap().ident;
}
}
let res = self.lower_import_res(id, path.span);
let path =
self.lower_use_path(res, &path, ParamMode::Explicit);
let ident = self.lower_ident(ident);
hir::ItemKind::Use(path, hir::UseKind::Single(ident))
}
UseTreeKind::Glob(_) => {
let res = self.expect_full_res(id);
let res = self.lower_res(res);
let res =
match res {
Res::Def(DefKind::Mod | DefKind::Trait, _) => {
PerNS { type_ns: Some(res), value_ns: None, macro_ns: None }
}
Res::Def(DefKind::Enum, _) => {
PerNS { type_ns: None, value_ns: Some(res), macro_ns: None }
}
Res::Err => {
let err = Some(Res::Err);
PerNS { type_ns: err, value_ns: err, macro_ns: err }
}
_ =>
::rustc_middle::util::bug::span_bug_fmt(path.span,
format_args!("bad glob res {0:?}", res)),
};
let path = Path { segments, span: path.span, tokens: None };
let path =
self.lower_use_path(res, &path, ParamMode::Explicit);
hir::ItemKind::Use(path, hir::UseKind::Glob)
}
UseTreeKind::Nested { items: ref trees, .. } => {
let span = prefix.span.to(path.span);
let prefix = Path { segments, span, tokens: None };
for &(ref use_tree, id) in trees {
let owner_id = self.owner_id(id);
self.with_hir_id_owner(id,
|this|
{
let kind =
this.lower_use_tree(use_tree, &prefix, id, vis_span, attrs);
if !attrs.is_empty() {
this.attrs.insert(hir::ItemLocalId::ZERO, attrs);
}
let item =
hir::Item {
owner_id,
kind,
vis_span,
span: this.lower_span(use_tree.span()),
has_delayed_lints: !this.delayed_lints.is_empty(),
eii: {
{
'done:
{
for i in attrs {
#[allow(unused_imports)]
use rustc_hir::attrs::AttributeKind::*;
let i: &rustc_hir::Attribute = i;
match i {
rustc_hir::Attribute::Parsed(EiiImpls(..) |
EiiDeclaration(..)) => {
break 'done Some(());
}
rustc_hir::Attribute::Unparsed(..) =>
{}
#[deny(unreachable_patterns)]
_ => {}
}
}
None
}
}.is_some()
},
};
hir::OwnerNode::Item(this.arena.alloc(item))
});
}
let path =
if trees.is_empty() &&
!(prefix.segments.is_empty() ||
prefix.segments.len() == 1 &&
prefix.segments[0].ident.name == kw::PathRoot) {
let res = self.lower_import_res(id, span);
self.lower_use_path(res, &prefix, ParamMode::Explicit)
} else {
let span = self.lower_span(span);
self.arena.alloc(hir::UsePath {
res: PerNS::default(),
segments: &[],
span,
})
};
hir::ItemKind::Use(path, hir::UseKind::ListStem)
}
}
}
}
}#[instrument(level = "debug", skip(self))]
640 fn lower_use_tree(
641 &mut self,
642 tree: &UseTree,
643 prefix: &Path,
644 id: NodeId,
645 vis_span: Span,
646 attrs: &'hir [hir::Attribute],
647 ) -> hir::ItemKind<'hir> {
648 let path = &tree.prefix;
649 let segments = prefix.segments.iter().chain(path.segments.iter()).cloned().collect();
650
651 match tree.kind {
652 UseTreeKind::Simple(rename) => {
653 let mut ident = tree.ident();
654
655 let mut path = Path { segments, span: path.span, tokens: None };
657
658 if path.segments.len() > 1
660 && path.segments.last().unwrap().ident.name == kw::SelfLower
661 {
662 let _ = path.segments.pop();
663 if rename.is_none() {
664 ident = path.segments.last().unwrap().ident;
665 }
666 }
667
668 let res = self.lower_import_res(id, path.span);
669 let path = self.lower_use_path(res, &path, ParamMode::Explicit);
670 let ident = self.lower_ident(ident);
671 hir::ItemKind::Use(path, hir::UseKind::Single(ident))
672 }
673 UseTreeKind::Glob(_) => {
674 let res = self.expect_full_res(id);
675 let res = self.lower_res(res);
676 let res = match res {
678 Res::Def(DefKind::Mod | DefKind::Trait, _) => {
679 PerNS { type_ns: Some(res), value_ns: None, macro_ns: None }
680 }
681 Res::Def(DefKind::Enum, _) => {
682 PerNS { type_ns: None, value_ns: Some(res), macro_ns: None }
683 }
684 Res::Err => {
685 let err = Some(Res::Err);
687 PerNS { type_ns: err, value_ns: err, macro_ns: err }
688 }
689 _ => span_bug!(path.span, "bad glob res {:?}", res),
690 };
691 let path = Path { segments, span: path.span, tokens: None };
692 let path = self.lower_use_path(res, &path, ParamMode::Explicit);
693 hir::ItemKind::Use(path, hir::UseKind::Glob)
694 }
695 UseTreeKind::Nested { items: ref trees, .. } => {
696 let span = prefix.span.to(path.span);
721 let prefix = Path { segments, span, tokens: None };
722
723 for &(ref use_tree, id) in trees {
725 let owner_id = self.owner_id(id);
726
727 self.with_hir_id_owner(id, |this| {
733 let kind = this.lower_use_tree(use_tree, &prefix, id, vis_span, attrs);
737 if !attrs.is_empty() {
738 this.attrs.insert(hir::ItemLocalId::ZERO, attrs);
739 }
740
741 let item = hir::Item {
742 owner_id,
743 kind,
744 vis_span,
745 span: this.lower_span(use_tree.span()),
746 has_delayed_lints: !this.delayed_lints.is_empty(),
747 eii: find_attr!(attrs, EiiImpls(..) | EiiDeclaration(..)),
748 };
749 hir::OwnerNode::Item(this.arena.alloc(item))
750 });
751 }
752
753 let path = if trees.is_empty()
755 && !(prefix.segments.is_empty()
756 || prefix.segments.len() == 1
757 && prefix.segments[0].ident.name == kw::PathRoot)
758 {
759 let res = self.lower_import_res(id, span);
762 self.lower_use_path(res, &prefix, ParamMode::Explicit)
763 } else {
764 let span = self.lower_span(span);
767 self.arena.alloc(hir::UsePath { res: PerNS::default(), segments: &[], span })
768 };
769 hir::ItemKind::Use(path, hir::UseKind::ListStem)
770 }
771 }
772 }
773
774 fn lower_assoc_item(&mut self, item: &AssocItem, ctxt: AssocCtxt) -> hir::OwnerNode<'hir> {
775 match ctxt {
779 AssocCtxt::Trait => hir::OwnerNode::TraitItem(self.lower_trait_item(item)),
780 AssocCtxt::Impl { of_trait } => {
781 hir::OwnerNode::ImplItem(self.lower_impl_item(item, of_trait))
782 }
783 }
784 }
785
786 fn lower_foreign_item(&mut self, i: &ForeignItem) -> &'hir hir::ForeignItem<'hir> {
787 let hir_id = hir::HirId::make_owner(self.current_hir_id_owner.def_id);
788 let owner_id = hir_id.expect_owner();
789 let attrs =
790 self.lower_attrs(hir_id, &i.attrs, i.span, Target::from_foreign_item_kind(&i.kind));
791 let (ident, kind) = match &i.kind {
792 ForeignItemKind::Fn(Fn { sig, ident, generics, define_opaque, .. }) => {
793 let fdec = &sig.decl;
794 let itctx = ImplTraitContext::Universal;
795 let (generics, (decl, fn_args)) = self.lower_generics(generics, itctx, |this| {
796 (
797 this.lower_fn_decl(fdec, i.id, sig.span, FnDeclKind::ExternFn, None),
799 this.lower_fn_params_to_idents(fdec),
800 )
801 });
802
803 let header = self.lower_fn_header(sig.header, hir::Safety::Unsafe, attrs);
805
806 if define_opaque.is_some() {
807 self.dcx().span_err(i.span, "foreign functions cannot define opaque types");
808 }
809
810 (
811 ident,
812 hir::ForeignItemKind::Fn(
813 hir::FnSig { header, decl, span: self.lower_span(sig.span) },
814 fn_args,
815 generics,
816 ),
817 )
818 }
819 ForeignItemKind::Static(StaticItem {
820 ident,
821 ty,
822 mutability,
823 expr: _,
824 safety,
825 define_opaque,
826 eii_impls: _,
827 }) => {
828 let ty = self
829 .lower_ty_alloc(ty, ImplTraitContext::Disallowed(ImplTraitPosition::StaticTy));
830 let safety = self.lower_safety(*safety, hir::Safety::Unsafe);
831 if define_opaque.is_some() {
832 self.dcx().span_err(i.span, "foreign statics cannot define opaque types");
833 }
834 (ident, hir::ForeignItemKind::Static(ty, *mutability, safety))
835 }
836 ForeignItemKind::TyAlias(TyAlias { ident, .. }) => (ident, hir::ForeignItemKind::Type),
837 ForeignItemKind::MacCall(_) => { ::core::panicking::panic_fmt(format_args!("macro shouldn\'t exist here")); }panic!("macro shouldn't exist here"),
838 };
839
840 let item = hir::ForeignItem {
841 owner_id,
842 ident: self.lower_ident(*ident),
843 kind,
844 vis_span: self.lower_span(i.vis.span),
845 span: self.lower_span(i.span),
846 has_delayed_lints: !self.delayed_lints.is_empty(),
847 };
848 self.arena.alloc(item)
849 }
850
851 fn lower_foreign_item_ref(&mut self, i: &ForeignItem) -> hir::ForeignItemId {
852 hir::ForeignItemId { owner_id: self.owner_id(i.id) }
853 }
854
855 fn lower_variant(&mut self, item_kind: &ItemKind, v: &Variant) -> hir::Variant<'hir> {
856 if v.ident.name == kw::Underscore && self.tcx.features().unnamed_enum_variants() {
857 self.dcx()
859 .struct_span_fatal(v.span, "unnamed enum variants are not yet implemented")
860 .emit()
861 }
862 let hir_id = self.lower_node_id(v.id);
863 self.lower_attrs(hir_id, &v.attrs, v.span, Target::Variant);
864 hir::Variant {
865 hir_id,
866 def_id: self.local_def_id(v.id),
867 data: self.lower_variant_data(hir_id, item_kind, &v.data),
868 disr_expr: v
869 .disr_expr
870 .as_ref()
871 .map(|e| self.lower_anon_const_to_anon_const(e, e.value.span)),
872 ident: self.lower_ident(v.ident),
873 span: self.lower_span(v.span),
874 }
875 }
876
877 fn lower_variant_data(
878 &mut self,
879 parent_id: hir::HirId,
880 item_kind: &ItemKind,
881 vdata: &VariantData,
882 ) -> hir::VariantData<'hir> {
883 match vdata {
884 VariantData::Struct { fields, recovered } => {
885 let fields = self
886 .arena
887 .alloc_from_iter(fields.iter().enumerate().map(|f| self.lower_field_def(f)));
888
889 if let ItemKind::Union(..) = item_kind {
890 for field in &fields[..] {
891 if let Some(default) = field.default {
892 if self.tcx.features().default_field_values() {
896 self.dcx().emit_err(UnionWithDefault { span: default.span });
897 } else {
898 let _ = self.dcx().span_delayed_bug(
899 default.span,
900 "expected union default field values feature gate error but none \
901 was produced",
902 );
903 }
904 }
905 }
906 }
907
908 hir::VariantData::Struct { fields, recovered: *recovered }
909 }
910 VariantData::Tuple(fields, id) => {
911 let ctor_id = self.lower_node_id(*id);
912 self.alias_attrs(ctor_id, parent_id);
913 let fields = self
914 .arena
915 .alloc_from_iter(fields.iter().enumerate().map(|f| self.lower_field_def(f)));
916 for field in &fields[..] {
917 if let Some(default) = field.default {
918 if self.tcx.features().default_field_values() {
923 self.dcx().emit_err(TupleStructWithDefault { span: default.span });
924 } else {
925 let _ = self.dcx().span_delayed_bug(
926 default.span,
927 "expected `default values on `struct` fields aren't supported` \
928 feature-gate error but none was produced",
929 );
930 }
931 }
932 }
933 hir::VariantData::Tuple(fields, ctor_id, self.local_def_id(*id))
934 }
935 VariantData::Unit(id) => {
936 let ctor_id = self.lower_node_id(*id);
937 self.alias_attrs(ctor_id, parent_id);
938 hir::VariantData::Unit(ctor_id, self.local_def_id(*id))
939 }
940 }
941 }
942
943 pub(super) fn lower_field_def(
944 &mut self,
945 (index, f): (usize, &FieldDef),
946 ) -> hir::FieldDef<'hir> {
947 let ty =
948 self.lower_ty_alloc(&f.ty, ImplTraitContext::Disallowed(ImplTraitPosition::FieldTy));
949 let hir_id = self.lower_node_id(f.id);
950 self.lower_attrs(hir_id, &f.attrs, f.span, Target::Field);
951 hir::FieldDef {
952 span: self.lower_span(f.span),
953 hir_id,
954 def_id: self.local_def_id(f.id),
955 ident: match f.ident {
956 Some(ident) => self.lower_ident(ident),
957 None => Ident::new(sym::integer(index), self.lower_span(f.span)),
959 },
960 vis_span: self.lower_span(f.vis.span),
961 default: f
962 .default
963 .as_ref()
964 .map(|v| self.lower_anon_const_to_anon_const(v, v.value.span)),
965 ty,
966 safety: self.lower_safety(f.safety, hir::Safety::Safe),
967 }
968 }
969
970 fn lower_trait_item(&mut self, i: &AssocItem) -> &'hir hir::TraitItem<'hir> {
971 let hir_id = hir::HirId::make_owner(self.current_hir_id_owner.def_id);
972 let attrs = self.lower_attrs(
973 hir_id,
974 &i.attrs,
975 i.span,
976 Target::from_assoc_item_kind(&i.kind, AssocCtxt::Trait),
977 );
978 let trait_item_def_id = hir_id.expect_owner();
979
980 let (ident, generics, kind, has_value) = match &i.kind {
981 AssocItemKind::Const(ConstItem {
982 ident,
983 generics,
984 ty,
985 rhs_kind,
986 define_opaque,
987 ..
988 }) => {
989 let (generics, kind) = self.lower_generics(
990 generics,
991 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
992 |this| {
993 let ty = this.lower_ty_alloc(
994 ty,
995 ImplTraitContext::Disallowed(ImplTraitPosition::ConstTy),
996 );
997 let rhs = if rhs_kind.has_expr() {
999 Some(this.lower_const_item_rhs(rhs_kind, i.span))
1000 } else {
1001 None
1002 };
1003 hir::TraitItemKind::Const(ty, rhs)
1004 },
1005 );
1006
1007 if define_opaque.is_some() {
1008 if rhs_kind.has_expr() {
1009 self.lower_define_opaque(hir_id, &define_opaque);
1010 } else {
1011 self.dcx().span_err(
1012 i.span,
1013 "only trait consts with default bodies can define opaque types",
1014 );
1015 }
1016 }
1017
1018 (*ident, generics, kind, rhs_kind.has_expr())
1019 }
1020 AssocItemKind::Fn(Fn { sig, ident, generics, body: None, define_opaque, .. }) => {
1021 let idents = self.lower_fn_params_to_idents(&sig.decl);
1024 let (generics, sig) = self.lower_method_sig(
1025 generics,
1026 sig,
1027 i.id,
1028 FnDeclKind::Trait,
1029 sig.header.coroutine_kind,
1030 attrs,
1031 );
1032 if define_opaque.is_some() {
1033 self.dcx().span_err(
1034 i.span,
1035 "only trait methods with default bodies can define opaque types",
1036 );
1037 }
1038 (
1039 *ident,
1040 generics,
1041 hir::TraitItemKind::Fn(sig, hir::TraitFn::Required(idents)),
1042 false,
1043 )
1044 }
1045 AssocItemKind::Fn(Fn {
1046 sig,
1047 ident,
1048 generics,
1049 body: Some(body),
1050 contract,
1051 define_opaque,
1052 ..
1053 }) => {
1054 let body_id = self.lower_maybe_coroutine_body(
1055 sig.span,
1056 i.span,
1057 hir_id,
1058 &sig.decl,
1059 sig.header.coroutine_kind,
1060 Some(body),
1061 attrs,
1062 contract.as_deref(),
1063 );
1064 let (generics, sig) = self.lower_method_sig(
1065 generics,
1066 sig,
1067 i.id,
1068 FnDeclKind::Trait,
1069 sig.header.coroutine_kind,
1070 attrs,
1071 );
1072 self.lower_define_opaque(hir_id, &define_opaque);
1073 (
1074 *ident,
1075 generics,
1076 hir::TraitItemKind::Fn(sig, hir::TraitFn::Provided(body_id)),
1077 true,
1078 )
1079 }
1080 AssocItemKind::Type(TyAlias {
1081 ident,
1082 generics,
1083 after_where_clause,
1084 bounds,
1085 ty,
1086 ..
1087 }) => {
1088 let mut generics = generics.clone();
1089 add_ty_alias_where_clause(&mut generics, after_where_clause, false);
1090 let (generics, kind) = self.lower_generics(
1091 &generics,
1092 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
1093 |this| {
1094 let ty = ty.as_ref().map(|x| {
1095 this.lower_ty_alloc(
1096 x,
1097 ImplTraitContext::Disallowed(ImplTraitPosition::AssocTy),
1098 )
1099 });
1100 hir::TraitItemKind::Type(
1101 this.lower_param_bounds(
1102 bounds,
1103 RelaxedBoundPolicy::Allowed(&mut Default::default()),
1104 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
1105 ),
1106 ty,
1107 )
1108 },
1109 );
1110 (*ident, generics, kind, ty.is_some())
1111 }
1112 AssocItemKind::Delegation(delegation) => {
1113 let delegation_results = self.lower_delegation(delegation, i.id);
1114 let item_kind = hir::TraitItemKind::Fn(
1115 delegation_results.sig,
1116 hir::TraitFn::Provided(delegation_results.body_id),
1117 );
1118 (delegation.ident, delegation_results.generics, item_kind, true)
1119 }
1120 AssocItemKind::MacCall(..) | AssocItemKind::DelegationMac(..) => {
1121 {
::core::panicking::panic_fmt(format_args!("macros should have been expanded by now"));
}panic!("macros should have been expanded by now")
1122 }
1123 };
1124
1125 let defaultness = match i.kind.defaultness() {
1126 Defaultness::Final(..) if !#[allow(non_exhaustive_omitted_patterns)] match i.kind {
AssocItemKind::Fn(..) => true,
_ => false,
}matches!(i.kind, AssocItemKind::Fn(..)) => {
1131 Defaultness::Implicit
1132 }
1133 defaultness => defaultness,
1134 };
1135 let (defaultness, _) = self
1136 .lower_defaultness(defaultness, has_value, || hir::Defaultness::Default { has_value });
1137
1138 let item = hir::TraitItem {
1139 owner_id: trait_item_def_id,
1140 ident: self.lower_ident(ident),
1141 generics,
1142 kind,
1143 span: self.lower_span(i.span),
1144 defaultness,
1145 has_delayed_lints: !self.delayed_lints.is_empty(),
1146 };
1147 self.arena.alloc(item)
1148 }
1149
1150 fn lower_trait_item_ref(&mut self, i: &AssocItem) -> hir::TraitItemId {
1151 hir::TraitItemId { owner_id: self.owner_id(i.id) }
1152 }
1153
1154 pub(crate) fn expr_err(&mut self, span: Span, guar: ErrorGuaranteed) -> hir::Expr<'hir> {
1156 self.expr(span, hir::ExprKind::Err(guar))
1157 }
1158
1159 fn lower_trait_impl_header(
1160 &mut self,
1161 trait_impl_header: &TraitImplHeader,
1162 ) -> &'hir hir::TraitImplHeader<'hir> {
1163 let TraitImplHeader { safety, polarity, defaultness, ref trait_ref } = *trait_impl_header;
1164 let safety = self.lower_safety(safety, hir::Safety::Safe);
1165 let polarity = match polarity {
1166 ImplPolarity::Positive => ImplPolarity::Positive,
1167 ImplPolarity::Negative(s) => ImplPolarity::Negative(self.lower_span(s)),
1168 };
1169 let has_val = true;
1172 let (defaultness, defaultness_span) =
1173 self.lower_defaultness(defaultness, has_val, || hir::Defaultness::Final);
1174 let modifiers = TraitBoundModifiers {
1175 constness: BoundConstness::Never,
1176 asyncness: BoundAsyncness::Normal,
1177 polarity: BoundPolarity::Positive,
1179 };
1180 let trait_ref = self.lower_trait_ref(
1181 modifiers,
1182 trait_ref,
1183 ImplTraitContext::Disallowed(ImplTraitPosition::Trait),
1184 );
1185
1186 self.arena.alloc(hir::TraitImplHeader {
1187 safety,
1188 polarity,
1189 defaultness,
1190 defaultness_span,
1191 trait_ref,
1192 })
1193 }
1194
1195 fn check_pin_drop_sugar_impl_item(
1196 &self,
1197 i: &AssocItem,
1198 ident: Ident,
1199 trait_item: Result<DefId, ErrorGuaranteed>,
1200 ) -> Ident {
1201 if let AssocItemKind::Fn(fn_kind) = &i.kind
1202 && fn_kind.is_pin_drop_sugar()
1203 {
1204 if let Ok(trait_item) = trait_item
1205 && self
1206 .tcx
1207 .lang_items()
1208 .drop_trait()
1209 .is_none_or(|drop_trait| self.tcx.parent(trait_item) != drop_trait)
1210 {
1211 self.dcx()
1212 .struct_span_err(
1213 i.span,
1214 "method `drop` with `&pin mut self` is only supported for the `Drop` trait",
1215 )
1216 .with_span_label(i.span, "not a `Drop::pin_drop` implementation")
1217 .emit();
1218 }
1219 return Ident::new(sym::pin_drop, ident.span);
1220 }
1221
1222 ident
1223 }
1224
1225 fn lower_impl_item(
1226 &mut self,
1227 i: &AssocItem,
1228 is_in_trait_impl: bool,
1229 ) -> &'hir hir::ImplItem<'hir> {
1230 let has_value = true;
1232 let (defaultness, _) =
1233 self.lower_defaultness(i.kind.defaultness(), has_value, || hir::Defaultness::Final);
1234 let hir_id = hir::HirId::make_owner(self.current_hir_id_owner.def_id);
1235 let attrs = self.lower_attrs(
1236 hir_id,
1237 &i.attrs,
1238 i.span,
1239 Target::from_assoc_item_kind(&i.kind, AssocCtxt::Impl { of_trait: is_in_trait_impl }),
1240 );
1241
1242 let (ident, (generics, kind)) = match &i.kind {
1243 AssocItemKind::Const(ConstItem {
1244 ident,
1245 generics,
1246 ty,
1247 rhs_kind,
1248 define_opaque,
1249 ..
1250 }) => (
1251 *ident,
1252 self.lower_generics(
1253 generics,
1254 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
1255 |this| {
1256 let ty = this.lower_ty_alloc(
1257 ty,
1258 ImplTraitContext::Disallowed(ImplTraitPosition::ConstTy),
1259 );
1260 this.lower_define_opaque(hir_id, &define_opaque);
1261 let rhs = this.lower_const_item_rhs(rhs_kind, i.span);
1262 hir::ImplItemKind::Const(ty, rhs)
1263 },
1264 ),
1265 ),
1266 AssocItemKind::Fn(Fn {
1267 sig, ident, generics, body, contract, define_opaque, ..
1268 }) => {
1269 let body_id = self.lower_maybe_coroutine_body(
1270 sig.span,
1271 i.span,
1272 hir_id,
1273 &sig.decl,
1274 sig.header.coroutine_kind,
1275 body.as_deref(),
1276 attrs,
1277 contract.as_deref(),
1278 );
1279 let (generics, sig) = self.lower_method_sig(
1280 generics,
1281 sig,
1282 i.id,
1283 if is_in_trait_impl { FnDeclKind::Impl } else { FnDeclKind::Inherent },
1284 sig.header.coroutine_kind,
1285 attrs,
1286 );
1287 self.lower_define_opaque(hir_id, &define_opaque);
1288
1289 (*ident, (generics, hir::ImplItemKind::Fn(sig, body_id)))
1290 }
1291 AssocItemKind::Type(TyAlias { ident, generics, after_where_clause, ty, .. }) => {
1292 let mut generics = generics.clone();
1293 add_ty_alias_where_clause(&mut generics, after_where_clause, false);
1294 (
1295 *ident,
1296 self.lower_generics(
1297 &generics,
1298 ImplTraitContext::Disallowed(ImplTraitPosition::Generic),
1299 |this| match ty {
1300 None => {
1301 let guar = this.dcx().span_delayed_bug(
1302 i.span,
1303 "expected to lower associated type, but it was missing",
1304 );
1305 let ty = this.arena.alloc(this.ty(i.span, hir::TyKind::Err(guar)));
1306 hir::ImplItemKind::Type(ty)
1307 }
1308 Some(ty) => {
1309 let ty = this.lower_ty_alloc(
1310 ty,
1311 ImplTraitContext::OpaqueTy {
1312 origin: hir::OpaqueTyOrigin::TyAlias {
1313 parent: this.owner.def_id,
1314 in_assoc_ty: true,
1315 },
1316 },
1317 );
1318 hir::ImplItemKind::Type(ty)
1319 }
1320 },
1321 ),
1322 )
1323 }
1324 AssocItemKind::Delegation(delegation) => {
1325 let delegation_results = self.lower_delegation(delegation, i.id);
1326 (
1327 delegation.ident,
1328 (
1329 delegation_results.generics,
1330 hir::ImplItemKind::Fn(delegation_results.sig, delegation_results.body_id),
1331 ),
1332 )
1333 }
1334 AssocItemKind::MacCall(..) | AssocItemKind::DelegationMac(..) => {
1335 {
::core::panicking::panic_fmt(format_args!("macros should have been expanded by now"));
}panic!("macros should have been expanded by now")
1336 }
1337 };
1338
1339 let span = self.lower_span(i.span);
1340 let (effective_ident, impl_kind) = if is_in_trait_impl {
1341 let trait_item_def_id = self
1342 .get_partial_res(i.id)
1343 .and_then(|r| r.expect_full_res().opt_def_id())
1344 .ok_or_else(|| {
1345 self.dcx()
1346 .span_delayed_bug(span, "could not resolve trait item being implemented")
1347 });
1348 let effective_ident = self.check_pin_drop_sugar_impl_item(i, ident, trait_item_def_id);
1349 (effective_ident, ImplItemImplKind::Trait { defaultness, trait_item_def_id })
1350 } else {
1351 (ident, ImplItemImplKind::Inherent { vis_span: self.lower_span(i.vis.span) })
1352 };
1353
1354 let item = hir::ImplItem {
1355 owner_id: hir_id.expect_owner(),
1356 ident: self.lower_ident(effective_ident),
1357 generics,
1358 impl_kind,
1359 kind,
1360 span,
1361 has_delayed_lints: !self.delayed_lints.is_empty(),
1362 };
1363 self.arena.alloc(item)
1364 }
1365
1366 fn lower_impl_item_ref(&mut self, i: &AssocItem) -> hir::ImplItemId {
1367 hir::ImplItemId { owner_id: self.owner_id(i.id) }
1368 }
1369
1370 fn lower_defaultness(
1371 &self,
1372 d: Defaultness,
1373 has_value: bool,
1374 implicit: impl FnOnce() -> hir::Defaultness,
1375 ) -> (hir::Defaultness, Option<Span>) {
1376 match d {
1377 Defaultness::Implicit => (implicit(), None),
1378 Defaultness::Default(sp) => {
1379 (hir::Defaultness::Default { has_value }, Some(self.lower_span(sp)))
1380 }
1381 Defaultness::Final(sp) => (hir::Defaultness::Final, Some(self.lower_span(sp))),
1382 }
1383 }
1384
1385 fn record_body(
1386 &mut self,
1387 params: &'hir [hir::Param<'hir>],
1388 value: hir::Expr<'hir>,
1389 ) -> hir::BodyId {
1390 let body = hir::Body { params, value: self.arena.alloc(value) };
1391 let id = body.id();
1392 match (&id.hir_id.owner, &self.current_hir_id_owner) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val, &*right_val,
::core::option::Option::None);
}
}
};assert_eq!(id.hir_id.owner, self.current_hir_id_owner);
1393 self.bodies.push((id.hir_id.local_id, self.arena.alloc(body)));
1394 id
1395 }
1396
1397 pub(super) fn lower_body(
1398 &mut self,
1399 f: impl FnOnce(&mut Self) -> (&'hir [hir::Param<'hir>], hir::Expr<'hir>),
1400 ) -> hir::BodyId {
1401 let prev_coroutine_kind = self.coroutine_kind.take();
1402 let task_context = self.task_context.take();
1403 let (parameters, result) = f(self);
1404 let body_id = self.record_body(parameters, result);
1405 self.task_context = task_context;
1406 self.coroutine_kind = prev_coroutine_kind;
1407 body_id
1408 }
1409
1410 fn lower_param(&mut self, param: &Param) -> hir::Param<'hir> {
1411 let hir_id = self.lower_node_id(param.id);
1412 self.lower_attrs(hir_id, ¶m.attrs, param.span, Target::Param);
1413 hir::Param {
1414 hir_id,
1415 pat: self.lower_pat(¶m.pat),
1416 ty_span: self.lower_span(param.ty.span),
1417 span: self.lower_span(param.span),
1418 }
1419 }
1420
1421 pub(super) fn lower_fn_body(
1422 &mut self,
1423 decl: &FnDecl,
1424 contract: Option<&FnContract>,
1425 body: impl FnOnce(&mut Self) -> hir::Expr<'hir>,
1426 ) -> hir::BodyId {
1427 self.lower_body(|this| {
1428 let params =
1429 this.arena.alloc_from_iter(decl.inputs.iter().map(|x| this.lower_param(x)));
1430
1431 if let Some(contract) = contract {
1433 (params, this.lower_contract(body, contract))
1434 } else {
1435 (params, body(this))
1436 }
1437 })
1438 }
1439
1440 fn lower_fn_body_block(
1441 &mut self,
1442 decl: &FnDecl,
1443 body: &Block,
1444 contract: Option<&FnContract>,
1445 ) -> hir::BodyId {
1446 self.lower_fn_body(decl, contract, |this| this.lower_block_expr(body))
1447 }
1448
1449 pub(super) fn lower_const_body(&mut self, span: Span, expr: Option<&Expr>) -> hir::BodyId {
1450 self.lower_body(|this| {
1451 (
1452 &[],
1453 match expr {
1454 Some(expr) => this.lower_expr_mut(expr),
1455 None => this.expr_err(span, this.dcx().span_delayed_bug(span, "no block")),
1456 },
1457 )
1458 })
1459 }
1460
1461 fn lower_maybe_coroutine_body(
1464 &mut self,
1465 fn_decl_span: Span,
1466 span: Span,
1467 fn_id: hir::HirId,
1468 decl: &FnDecl,
1469 coroutine_kind: Option<CoroutineKind>,
1470 body: Option<&Block>,
1471 attrs: &'hir [hir::Attribute],
1472 contract: Option<&FnContract>,
1473 ) -> hir::BodyId {
1474 let Some(body) = body else {
1475 return self.lower_fn_body(decl, contract, |this| {
1479 if {
{
'done:
{
for i in attrs {
#[allow(unused_imports)]
use rustc_hir::attrs::AttributeKind::*;
let i: &rustc_hir::Attribute = i;
match i {
rustc_hir::Attribute::Parsed(RustcIntrinsic) => {
break 'done Some(());
}
rustc_hir::Attribute::Unparsed(..) =>
{}
#[deny(unreachable_patterns)]
_ => {}
}
}
None
}
}.is_some()
}find_attr!(attrs, RustcIntrinsic) || this.tcx.is_sdylib_interface_build() {
1480 let span = this.lower_span(span);
1481 let empty_block = hir::Block {
1482 hir_id: this.next_id(),
1483 stmts: &[],
1484 expr: None,
1485 rules: hir::BlockCheckMode::DefaultBlock,
1486 span,
1487 targeted_by_break: false,
1488 };
1489 let loop_ = hir::ExprKind::Loop(
1490 this.arena.alloc(empty_block),
1491 None,
1492 hir::LoopSource::Loop,
1493 span,
1494 );
1495 hir::Expr { hir_id: this.next_id(), kind: loop_, span }
1496 } else {
1497 this.expr_err(span, this.dcx().has_errors().unwrap())
1498 }
1499 });
1500 };
1501 let Some(coroutine_kind) = coroutine_kind else {
1502 return self.lower_fn_body_block(decl, body, contract);
1504 };
1505 self.lower_body(|this| {
1507 let (parameters, expr) = this.lower_coroutine_body_with_moved_arguments(
1508 decl,
1509 |this| this.lower_block_expr(body),
1510 fn_decl_span,
1511 body.span,
1512 coroutine_kind,
1513 hir::CoroutineSource::Fn,
1514 );
1515
1516 let hir_id = expr.hir_id;
1518 this.maybe_forward_track_caller(body.span, fn_id, hir_id);
1519
1520 (parameters, expr)
1521 })
1522 }
1523
1524 pub(crate) fn lower_coroutine_body_with_moved_arguments(
1529 &mut self,
1530 decl: &FnDecl,
1531 lower_body: impl FnOnce(&mut LoweringContext<'_, 'hir>) -> hir::Expr<'hir>,
1532 fn_decl_span: Span,
1533 body_span: Span,
1534 coroutine_kind: CoroutineKind,
1535 coroutine_source: hir::CoroutineSource,
1536 ) -> (&'hir [hir::Param<'hir>], hir::Expr<'hir>) {
1537 let mut parameters: Vec<hir::Param<'_>> = Vec::new();
1538 let mut statements: Vec<hir::Stmt<'_>> = Vec::new();
1539
1540 for (index, parameter) in decl.inputs.iter().enumerate() {
1573 let parameter = self.lower_param(parameter);
1574 let span = parameter.pat.span;
1575
1576 let (ident, is_simple_parameter) = match parameter.pat.kind {
1579 hir::PatKind::Binding(hir::BindingMode(ByRef::No, _), _, ident, _) => (ident, true),
1580 hir::PatKind::Binding(_, _, ident, _) => (ident, false),
1584 hir::PatKind::Wild => (Ident::with_dummy_span(rustc_span::kw::Underscore), false),
1585 _ => {
1586 let name = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("__arg{0}", index))
})format!("__arg{index}");
1588 let ident = Ident::from_str(&name);
1589
1590 (ident, false)
1591 }
1592 };
1593
1594 let desugared_span = self.mark_span_with_reason(DesugaringKind::Async, span, None);
1595
1596 let stmt_attrs = self.attrs.get(¶meter.hir_id.local_id).copied();
1602 let (new_parameter_pat, new_parameter_id) = self.pat_ident(desugared_span, ident);
1603 let new_parameter = hir::Param {
1604 hir_id: parameter.hir_id,
1605 pat: new_parameter_pat,
1606 ty_span: self.lower_span(parameter.ty_span),
1607 span: self.lower_span(parameter.span),
1608 };
1609
1610 if is_simple_parameter {
1611 let expr = self.expr_ident(desugared_span, ident, new_parameter_id);
1615 let stmt = self.stmt_let_pat(
1616 stmt_attrs,
1617 desugared_span,
1618 Some(expr),
1619 parameter.pat,
1620 hir::LocalSource::AsyncFn,
1621 );
1622 statements.push(stmt);
1623 } else {
1624 let (move_pat, move_id) =
1640 self.pat_ident_binding_mode(desugared_span, ident, hir::BindingMode::MUT);
1641 let move_expr = self.expr_ident(desugared_span, ident, new_parameter_id);
1642 let move_stmt = self.stmt_let_pat(
1643 None,
1644 desugared_span,
1645 Some(move_expr),
1646 move_pat,
1647 hir::LocalSource::AsyncFn,
1648 );
1649
1650 let pattern_expr = self.expr_ident(desugared_span, ident, move_id);
1653 let pattern_stmt = self.stmt_let_pat(
1654 stmt_attrs,
1655 desugared_span,
1656 Some(pattern_expr),
1657 parameter.pat,
1658 hir::LocalSource::AsyncFn,
1659 );
1660
1661 statements.push(move_stmt);
1662 statements.push(pattern_stmt);
1663 };
1664
1665 parameters.push(new_parameter);
1666 }
1667
1668 let mkbody = |this: &mut LoweringContext<'_, 'hir>| {
1669 let user_body = lower_body(this);
1671
1672 let desugared_span =
1674 this.mark_span_with_reason(DesugaringKind::Async, user_body.span, None);
1675 let user_body = this.expr_drop_temps(desugared_span, this.arena.alloc(user_body));
1676
1677 let body = this.block_all(
1687 desugared_span,
1688 this.arena.alloc_from_iter(statements),
1689 Some(user_body),
1690 );
1691
1692 this.expr_block(body)
1693 };
1694 let desugaring_kind = match coroutine_kind {
1695 CoroutineKind::Async { .. } => hir::CoroutineDesugaring::Async,
1696 CoroutineKind::Gen { .. } => hir::CoroutineDesugaring::Gen,
1697 CoroutineKind::AsyncGen { .. } => hir::CoroutineDesugaring::AsyncGen,
1698 };
1699 let closure_id = coroutine_kind.closure_id();
1700
1701 let coroutine_expr = self.make_desugared_coroutine_expr(
1702 CaptureBy::Ref,
1707 closure_id,
1708 None,
1709 fn_decl_span,
1710 body_span,
1711 desugaring_kind,
1712 coroutine_source,
1713 mkbody,
1714 );
1715
1716 let expr = hir::Expr {
1717 hir_id: self.lower_node_id(closure_id),
1718 kind: coroutine_expr,
1719 span: self.lower_span(body_span),
1720 };
1721
1722 (self.arena.alloc_from_iter(parameters), expr)
1723 }
1724
1725 fn lower_method_sig(
1726 &mut self,
1727 generics: &Generics,
1728 sig: &FnSig,
1729 id: NodeId,
1730 kind: FnDeclKind,
1731 coroutine_kind: Option<CoroutineKind>,
1732 attrs: &[hir::Attribute],
1733 ) -> (&'hir hir::Generics<'hir>, hir::FnSig<'hir>) {
1734 let header = self.lower_fn_header(sig.header, hir::Safety::Safe, attrs);
1735 let itctx = ImplTraitContext::Universal;
1736 let (generics, decl) = self.lower_generics(generics, itctx, |this| {
1737 this.lower_fn_decl(&sig.decl, id, sig.span, kind, coroutine_kind)
1738 });
1739 (generics, hir::FnSig { header, decl, span: self.lower_span(sig.span) })
1740 }
1741
1742 pub(super) fn lower_fn_header(
1743 &mut self,
1744 h: FnHeader,
1745 default_safety: hir::Safety,
1746 attrs: &[hir::Attribute],
1747 ) -> hir::FnHeader {
1748 let asyncness = if let Some(CoroutineKind::Async { span, .. }) = h.coroutine_kind {
1749 hir::IsAsync::Async(self.lower_span(span))
1750 } else {
1751 hir::IsAsync::NotAsync
1752 };
1753
1754 let safety = self.lower_safety(h.safety, default_safety);
1755
1756 let safety = if {
{
'done:
{
for i in attrs {
#[allow(unused_imports)]
use rustc_hir::attrs::AttributeKind::*;
let i: &rustc_hir::Attribute = i;
match i {
rustc_hir::Attribute::Parsed(TargetFeature {
was_forced: false, .. }) => {
break 'done Some(());
}
rustc_hir::Attribute::Unparsed(..) =>
{}
#[deny(unreachable_patterns)]
_ => {}
}
}
None
}
}.is_some()
}find_attr!(attrs, TargetFeature { was_forced: false, .. })
1758 && safety.is_safe()
1759 && !self.tcx.sess.target.is_like_wasm
1760 {
1761 hir::HeaderSafety::SafeTargetFeatures
1762 } else {
1763 safety.into()
1764 };
1765
1766 let mut constness = self.lower_constness(h.constness);
1767 if let Some(&attr_span) = {
'done:
{
for i in attrs {
#[allow(unused_imports)]
use rustc_hir::attrs::AttributeKind::*;
let i: &rustc_hir::Attribute = i;
match i {
rustc_hir::Attribute::Parsed(RustcComptime(span)) => {
break 'done Some(span);
}
rustc_hir::Attribute::Unparsed(..) =>
{}
#[deny(unreachable_patterns)]
_ => {}
}
}
None
}
}find_attr!(attrs, RustcComptime(span) => span) {
1768 match std::mem::replace(&mut constness, rustc_hir::Constness::Const { always: true }) {
1769 rustc_hir::Constness::Const { always: true } => {
1770 {
::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
format_args!("lower_constness cannot produce comptime")));
}unreachable!("lower_constness cannot produce comptime")
1771 }
1772 rustc_hir::Constness::Const { always: false } => {
1774 let Const::Yes(span) = h.constness else { ::core::panicking::panic("internal error: entered unreachable code")unreachable!() };
1775 self.dcx().emit_err(ConstComptimeFn { span, attr_span });
1776 }
1777 rustc_hir::Constness::NotConst => {}
1779 }
1780 }
1781
1782 hir::FnHeader { safety, asyncness, constness, abi: self.lower_extern(h.ext) }
1783 }
1784
1785 pub(super) fn lower_abi(&mut self, abi_str: StrLit) -> ExternAbi {
1786 let ast::StrLit { symbol_unescaped, span, .. } = abi_str;
1787 let extern_abi = symbol_unescaped.as_str().parse().unwrap_or_else(|_| {
1788 self.error_on_invalid_abi(abi_str);
1789 ExternAbi::Rust
1790 });
1791 let tcx = self.tcx;
1792
1793 if !tcx.sess.target.is_abi_supported(extern_abi) {
1795 let mut err = {
tcx.dcx().struct_span_err(span,
::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0} is not a supported ABI for the current target",
extern_abi))
})).with_code(E0570)
}struct_span_code_err!(
1796 tcx.dcx(),
1797 span,
1798 E0570,
1799 "{extern_abi} is not a supported ABI for the current target",
1800 );
1801
1802 if let ExternAbi::Stdcall { unwind } = extern_abi {
1803 let c_abi = ExternAbi::C { unwind };
1804 let system_abi = ExternAbi::System { unwind };
1805 err.help(::alloc::__export::must_use({
::alloc::fmt::format(format_args!("if you need `extern {0}` on win32 and `extern {1}` everywhere else, use `extern {2}`",
extern_abi, c_abi, system_abi))
})format!("if you need `extern {extern_abi}` on win32 and `extern {c_abi}` everywhere else, \
1806 use `extern {system_abi}`"
1807 ));
1808 }
1809 err.emit();
1810 }
1811 gate_unstable_abi(tcx.sess, tcx.features(), span, extern_abi);
1814 extern_abi
1815 }
1816
1817 pub(super) fn lower_extern(&mut self, ext: Extern) -> ExternAbi {
1818 match ext {
1819 Extern::None => ExternAbi::Rust,
1820 Extern::Implicit(_) => ExternAbi::FALLBACK,
1821 Extern::Explicit(abi, _) => self.lower_abi(abi),
1822 }
1823 }
1824
1825 fn error_on_invalid_abi(&self, abi: StrLit) {
1826 let abi_names = enabled_names(self.tcx.features(), abi.span)
1827 .iter()
1828 .map(|s| Symbol::intern(s))
1829 .collect::<Vec<_>>();
1830 let suggested_name = find_best_match_for_name(&abi_names, abi.symbol_unescaped, None);
1831 self.dcx().emit_err(InvalidAbi {
1832 abi: abi.symbol_unescaped,
1833 span: abi.span,
1834 suggestion: suggested_name.map(|suggested_name| InvalidAbiSuggestion {
1835 span: abi.span,
1836 suggestion: suggested_name.to_string(),
1837 }),
1838 command: "rustc --print=calling-conventions".to_string(),
1839 });
1840 }
1841
1842 pub(super) fn lower_constness(&mut self, c: Const) -> hir::Constness {
1843 match c {
1844 Const::Yes(_) => hir::Constness::Const { always: false },
1845 Const::No => hir::Constness::NotConst,
1846 }
1847 }
1848
1849 pub(super) fn lower_safety(&self, s: Safety, default: hir::Safety) -> hir::Safety {
1850 match s {
1851 Safety::Unsafe(_) => hir::Safety::Unsafe,
1852 Safety::Default => default,
1853 Safety::Safe(_) => hir::Safety::Safe,
1854 }
1855 }
1856
1857 pub(super) fn lower_impl_restriction(
1858 &mut self,
1859 r: &ImplRestriction,
1860 ) -> &'hir hir::ImplRestriction<'hir> {
1861 let kind = match &r.kind {
1862 RestrictionKind::Unrestricted => hir::RestrictionKind::Unrestricted,
1863 RestrictionKind::Restricted { path, id, shorthand: _ } => {
1864 let res = self.get_partial_res(*id);
1865 if let Some(did) = res.and_then(|res| res.expect_full_res().opt_def_id()) {
1866 hir::RestrictionKind::Restricted(self.arena.alloc(hir::Path {
1867 res: did,
1868 segments: self.arena.alloc_from_iter(path.segments.iter().map(|segment| {
1869 self.lower_path_segment(
1870 path.span,
1871 segment,
1872 ParamMode::Explicit,
1873 GenericArgsMode::Err,
1874 ImplTraitContext::Disallowed(ImplTraitPosition::Path),
1875 None,
1876 )
1877 })),
1878 span: self.lower_span(path.span),
1879 }))
1880 } else {
1881 self.dcx().span_delayed_bug(path.span, "should have errored in resolve");
1882 hir::RestrictionKind::Unrestricted
1883 }
1884 }
1885 };
1886 self.arena.alloc(hir::ImplRestriction { kind, span: self.lower_span(r.span) })
1887 }
1888
1889 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("lower_generics",
"rustc_ast_lowering::item", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_ast_lowering/src/item.rs"),
::tracing_core::__macro_support::Option::Some(1891u32),
::tracing_core::__macro_support::Option::Some("rustc_ast_lowering::item"),
::tracing_core::field::FieldSet::new(&["generics", "itctx"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::DEBUG <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = meta.fields().iter();
meta.fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&generics)
as &dyn Value)),
(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&::tracing::field::debug(&itctx)
as &dyn Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: (&'hir hir::Generics<'hir>, T) =
loop {};
return __tracing_attr_fake_return;
}
{
if !self.impl_trait_defs.is_empty() {
::core::panicking::panic("assertion failed: self.impl_trait_defs.is_empty()")
};
if !self.impl_trait_bounds.is_empty() {
::core::panicking::panic("assertion failed: self.impl_trait_bounds.is_empty()")
};
let mut predicates: SmallVec<[hir::WherePredicate<'hir>; 4]> =
SmallVec::new();
let mut dedup_map: IndexMap<LocalDefId, _> = Default::default();
predicates.extend(generics.params.iter().filter_map(|param|
{
self.lower_generic_bound_predicate(param.ident, param.id,
¶m.kind, ¶m.bounds, param.colon_span, generics.span,
RelaxedBoundPolicy::Allowed(dedup_map.entry(self.local_def_id(param.id)).or_default()),
itctx, PredicateOrigin::GenericParam)
}));
predicates.extend(generics.where_clause.predicates.iter().map(|predicate|
{
self.lower_where_predicate(predicate, &generics.params,
&mut dedup_map)
}));
let mut params: SmallVec<[hir::GenericParam<'hir>; 4]> =
self.lower_generic_params_mut(&generics.params,
hir::GenericParamSource::Generics).collect();
let extra_lifetimes =
self.resolver.extra_lifetime_params(self.owner.id);
params.extend(extra_lifetimes.into_iter().map(|&(ident, node_id,
kind)|
{
self.lifetime_res_to_generic_param(ident, node_id, kind,
hir::GenericParamSource::Generics)
}));
let has_where_clause_predicates =
!generics.where_clause.predicates.is_empty();
let where_clause_span =
self.lower_span(generics.where_clause.span);
let span = self.lower_span(generics.span);
let res = f(self);
let impl_trait_defs = std::mem::take(&mut self.impl_trait_defs);
params.extend(impl_trait_defs.into_iter());
let impl_trait_bounds =
std::mem::take(&mut self.impl_trait_bounds);
predicates.extend(impl_trait_bounds.into_iter());
let lowered_generics =
self.arena.alloc(hir::Generics {
params: self.arena.alloc_from_iter(params),
predicates: self.arena.alloc_from_iter(predicates),
has_where_clause_predicates,
where_clause_span,
span,
});
(lowered_generics, res)
}
}
}#[instrument(level = "debug", skip(self, f))]
1892 fn lower_generics<T>(
1893 &mut self,
1894 generics: &Generics,
1895 itctx: ImplTraitContext,
1896 f: impl FnOnce(&mut Self) -> T,
1897 ) -> (&'hir hir::Generics<'hir>, T) {
1898 assert!(self.impl_trait_defs.is_empty());
1899 assert!(self.impl_trait_bounds.is_empty());
1900
1901 let mut predicates: SmallVec<[hir::WherePredicate<'hir>; 4]> = SmallVec::new();
1902 let mut dedup_map: IndexMap<LocalDefId, _> = Default::default();
1905 predicates.extend(generics.params.iter().filter_map(|param| {
1906 self.lower_generic_bound_predicate(
1907 param.ident,
1908 param.id,
1909 ¶m.kind,
1910 ¶m.bounds,
1911 param.colon_span,
1912 generics.span,
1913 RelaxedBoundPolicy::Allowed(
1914 dedup_map.entry(self.local_def_id(param.id)).or_default(),
1915 ),
1916 itctx,
1917 PredicateOrigin::GenericParam,
1918 )
1919 }));
1920 predicates.extend(generics.where_clause.predicates.iter().map(|predicate| {
1921 self.lower_where_predicate(predicate, &generics.params, &mut dedup_map)
1922 }));
1923
1924 let mut params: SmallVec<[hir::GenericParam<'hir>; 4]> = self
1925 .lower_generic_params_mut(&generics.params, hir::GenericParamSource::Generics)
1926 .collect();
1927
1928 let extra_lifetimes = self.resolver.extra_lifetime_params(self.owner.id);
1930 params.extend(extra_lifetimes.into_iter().map(|&(ident, node_id, kind)| {
1931 self.lifetime_res_to_generic_param(
1932 ident,
1933 node_id,
1934 kind,
1935 hir::GenericParamSource::Generics,
1936 )
1937 }));
1938
1939 let has_where_clause_predicates = !generics.where_clause.predicates.is_empty();
1940 let where_clause_span = self.lower_span(generics.where_clause.span);
1941 let span = self.lower_span(generics.span);
1942 let res = f(self);
1943
1944 let impl_trait_defs = std::mem::take(&mut self.impl_trait_defs);
1945 params.extend(impl_trait_defs.into_iter());
1946
1947 let impl_trait_bounds = std::mem::take(&mut self.impl_trait_bounds);
1948 predicates.extend(impl_trait_bounds.into_iter());
1949
1950 let lowered_generics = self.arena.alloc(hir::Generics {
1951 params: self.arena.alloc_from_iter(params),
1952 predicates: self.arena.alloc_from_iter(predicates),
1953 has_where_clause_predicates,
1954 where_clause_span,
1955 span,
1956 });
1957
1958 (lowered_generics, res)
1959 }
1960
1961 pub(super) fn lower_define_opaque(
1962 &mut self,
1963 hir_id: HirId,
1964 define_opaque: &Option<ThinVec<(NodeId, Path)>>,
1965 ) {
1966 match (&self.define_opaque, &None) {
(left_val, right_val) => {
if !(*left_val == *right_val) {
let kind = ::core::panicking::AssertKind::Eq;
::core::panicking::assert_failed(kind, &*left_val, &*right_val,
::core::option::Option::None);
}
}
};assert_eq!(self.define_opaque, None);
1967 if !hir_id.is_owner() {
::core::panicking::panic("assertion failed: hir_id.is_owner()")
};assert!(hir_id.is_owner());
1968 let Some(define_opaque) = define_opaque.as_ref() else {
1969 return;
1970 };
1971 let define_opaque = define_opaque.iter().filter_map(|(id, path)| {
1972 let res = self.get_partial_res(*id);
1973 let Some(did) = res.and_then(|res| res.expect_full_res().opt_def_id()) else {
1974 self.dcx().span_delayed_bug(path.span, "should have errored in resolve");
1975 return None;
1976 };
1977 let Some(did) = did.as_local() else {
1978 self.dcx().span_err(
1979 path.span,
1980 "only opaque types defined in the local crate can be defined",
1981 );
1982 return None;
1983 };
1984 Some((self.lower_span(path.span), did))
1985 });
1986 let define_opaque = self.arena.alloc_from_iter(define_opaque);
1987 self.define_opaque = Some(define_opaque);
1988 }
1989
1990 pub(super) fn lower_generic_bound_predicate(
1991 &mut self,
1992 ident: Ident,
1993 id: NodeId,
1994 kind: &GenericParamKind,
1995 bounds: &[GenericBound],
1996 colon_span: Option<Span>,
1997 parent_span: Span,
1998 rbp: RelaxedBoundPolicy<'_>,
1999 itctx: ImplTraitContext,
2000 origin: PredicateOrigin,
2001 ) -> Option<hir::WherePredicate<'hir>> {
2002 if bounds.is_empty() {
2004 return None;
2005 }
2006
2007 let bounds = self.lower_param_bounds(bounds, rbp, itctx);
2008
2009 let param_span = ident.span;
2010
2011 let span_start = colon_span.unwrap_or_else(|| param_span.shrink_to_hi());
2013 let span = bounds.iter().fold(span_start, |span_accum, bound| {
2014 match bound.span().find_ancestor_inside(parent_span) {
2015 Some(bound_span) => span_accum.to(bound_span),
2016 None => span_accum,
2017 }
2018 });
2019 let span = self.lower_span(span);
2020 let hir_id = self.next_id();
2021 let kind = self.arena.alloc(match kind {
2022 GenericParamKind::Const { .. } => return None,
2023 GenericParamKind::Type { .. } => {
2024 let def_id = self.local_def_id(id).to_def_id();
2025 let hir_id = self.next_id();
2026 let res = Res::Def(DefKind::TyParam, def_id);
2027 let ident = self.lower_ident(ident);
2028 let ty_path = self.arena.alloc(hir::Path {
2029 span: self.lower_span(param_span),
2030 res,
2031 segments: self
2032 .arena
2033 .alloc_from_iter([hir::PathSegment::new(ident, hir_id, res)]),
2034 });
2035 let ty_id = self.next_id();
2036 let bounded_ty =
2037 self.ty_path(ty_id, param_span, hir::QPath::Resolved(None, ty_path));
2038 hir::WherePredicateKind::BoundPredicate(hir::WhereBoundPredicate {
2039 bounded_ty: self.arena.alloc(bounded_ty),
2040 bounds,
2041 bound_generic_params: &[],
2042 origin,
2043 })
2044 }
2045 GenericParamKind::Lifetime => {
2046 let lt_id = self.next_node_id();
2047 let lifetime =
2048 self.new_named_lifetime(id, lt_id, ident, LifetimeSource::Other, ident.into());
2049 hir::WherePredicateKind::RegionPredicate(hir::WhereRegionPredicate {
2050 lifetime,
2051 bounds,
2052 in_where_clause: false,
2053 })
2054 }
2055 });
2056 Some(hir::WherePredicate { hir_id, span, kind })
2057 }
2058
2059 fn lower_where_predicate(
2060 &mut self,
2061 pred: &WherePredicate,
2062 params: &[ast::GenericParam],
2063 dedup_map: &mut IndexMap<LocalDefId, IndexMap<DefId, Span>>,
2064 ) -> hir::WherePredicate<'hir> {
2065 let hir_id = self.lower_node_id(pred.id);
2066 let span = self.lower_span(pred.span);
2067 self.lower_attrs(hir_id, &pred.attrs, span, Target::WherePredicate);
2068 let kind = self.arena.alloc(match &pred.kind {
2069 WherePredicateKind::BoundPredicate(WhereBoundPredicate {
2070 bound_generic_params,
2071 bounded_ty,
2072 bounds,
2073 }) => {
2074 let rbp = if bound_generic_params.is_empty()
2075 && let Some(res) =
2076 self.get_partial_res(bounded_ty.id).and_then(|r| r.full_res())
2077 && let Res::Def(DefKind::TyParam, def_id) = res
2078 && params.iter().any(|p| def_id == self.local_def_id(p.id).to_def_id())
2079 {
2080 RelaxedBoundPolicy::Allowed(dedup_map.entry(def_id.expect_local()).or_default())
2081 } else {
2082 RelaxedBoundPolicy::Forbidden(RelaxedBoundForbiddenReason::WhereBound)
2083 };
2084 hir::WherePredicateKind::BoundPredicate(hir::WhereBoundPredicate {
2085 bound_generic_params: self.lower_generic_params(
2086 bound_generic_params,
2087 hir::GenericParamSource::Binder,
2088 ),
2089 bounded_ty: self.lower_ty_alloc(
2090 bounded_ty,
2091 ImplTraitContext::Disallowed(ImplTraitPosition::Bound),
2092 ),
2093 bounds: self.lower_param_bounds(
2094 bounds,
2095 rbp,
2096 ImplTraitContext::Disallowed(ImplTraitPosition::Bound),
2097 ),
2098 origin: PredicateOrigin::WhereClause,
2099 })
2100 }
2101 WherePredicateKind::RegionPredicate(WhereRegionPredicate { lifetime, bounds }) => {
2102 hir::WherePredicateKind::RegionPredicate(hir::WhereRegionPredicate {
2103 lifetime: self.lower_lifetime(
2104 lifetime,
2105 LifetimeSource::Other,
2106 lifetime.ident.into(),
2107 ),
2108 bounds: self.lower_param_bounds(
2109 bounds,
2110 RelaxedBoundPolicy::Allowed(&mut Default::default()),
2111 ImplTraitContext::Disallowed(ImplTraitPosition::Bound),
2112 ),
2113 in_where_clause: true,
2114 })
2115 }
2116 });
2117 hir::WherePredicate { hir_id, span, kind }
2118 }
2119}