1mod auto_trait;
25mod blanket_impl;
26pub(crate) mod cfg;
27pub(crate) mod inline;
28mod render_macro_matchers;
29mod simplify;
30pub(crate) mod types;
31pub(crate) mod utils;
32
33use std::borrow::Cow;
34use std::collections::BTreeMap;
35use std::mem;
36
37use rustc_data_structures::fx::{FxHashMap, FxHashSet, FxIndexMap, FxIndexSet, IndexEntry};
38use rustc_data_structures::thin_vec::ThinVec;
39use rustc_errors::codes::*;
40use rustc_errors::{FatalError, struct_span_code_err};
41use rustc_hir as hir;
42use rustc_hir::attrs::{AttributeKind, DocAttribute, DocInline};
43use rustc_hir::def::{CtorKind, DefKind, MacroKinds, Res};
44use rustc_hir::def_id::{DefId, DefIdMap, DefIdSet, LOCAL_CRATE, LocalDefId};
45use rustc_hir::{LangItem, PredicateOrigin, find_attr};
46use rustc_hir_analysis::{lower_const_arg_for_rustdoc, lower_ty};
47use rustc_middle::metadata::Reexport;
48use rustc_middle::middle::resolve_bound_vars as rbv;
49use rustc_middle::ty::{
50 self, AdtKind, GenericArgsRef, Ty, TyCtxt, TypeVisitableExt, TypingMode, Unnormalized,
51};
52use rustc_middle::{bug, span_bug};
53use rustc_span::ExpnKind;
54use rustc_span::hygiene::{AstPass, MacroKind};
55use rustc_span::symbol::{Ident, Symbol, kw};
56use rustc_trait_selection::traits::wf::object_region_bounds;
57use tracing::{debug, instrument};
58use utils::*;
59
60pub(crate) use self::cfg::{CfgInfo, extract_cfg_from_attrs};
61pub(crate) use self::types::*;
62pub(crate) use self::utils::{krate, register_res, synthesize_auto_trait_and_blanket_impls};
63use crate::core::DocContext;
64use crate::formats::item_type::ItemType;
65use crate::visit_ast;
66
67pub(crate) fn clean_doc_module<'tcx>(
68 doc: &visit_ast::Module<'tcx>,
69 cx: &mut DocContext<'tcx>,
70) -> Item {
71 let mut items: Vec<Item> = vec![];
72 let mut inserted = FxHashSet::default();
73 items.extend(doc.foreigns.iter().map(|visit_ast::Foreign { item, renamed, import_id }| {
74 let item = clean_maybe_renamed_foreign_item(cx, item, *renamed, *import_id);
75 if let Some(name) = item.name
76 && (cx.document_hidden() || !item.is_doc_hidden())
77 {
78 inserted.insert((item.type_(), name));
79 }
80 item
81 }));
82 items.extend(doc.mods.iter().filter_map(|x| {
83 if !inserted.insert((ItemType::Module, x.name)) {
84 return None;
85 }
86 let item = clean_doc_module(x, cx);
87 if !cx.document_hidden() && item.is_doc_hidden() {
88 inserted.remove(&(ItemType::Module, x.name));
92 }
93 Some(item)
94 }));
95
96 items.extend(doc.items.values().flat_map(
102 |visit_ast::ItemEntry { item, renamed, import_ids }| {
103 if matches!(item.kind, hir::ItemKind::Use(_, hir::UseKind::Glob)) {
105 return Vec::new();
106 }
107 let v = clean_maybe_renamed_item(cx, item, *renamed, import_ids);
108 for item in &v {
109 if let Some(name) = item.name
110 && (cx.document_hidden() || !item.is_doc_hidden())
111 {
112 inserted.insert((item.type_(), name));
113 }
114 }
115 v
116 },
117 ));
118 items.extend(doc.inlined_foreigns.iter().flat_map(
119 |((_, renamed), visit_ast::InlinedForeign { res, import_id })| {
120 let Some(def_id) = res.opt_def_id() else { return Vec::new() };
121 let name = renamed.unwrap_or_else(|| cx.tcx.item_name(def_id));
122 let import = cx.tcx.hir_expect_item(*import_id);
123 match import.kind {
124 hir::ItemKind::Use(path, kind) => {
125 let hir::UsePath { segments, span, .. } = *path;
126 let path = hir::Path { segments, res: *res, span };
127 clean_use_statement_inner(
128 import,
129 Some(name),
130 &path,
131 kind,
132 cx,
133 &mut Default::default(),
134 )
135 }
136 _ => unreachable!(),
137 }
138 },
139 ));
140 items.extend(doc.items.values().flat_map(
141 |visit_ast::ItemEntry { item, renamed, import_ids: _ }| {
142 if let hir::ItemKind::Use(path, hir::UseKind::Glob) = item.kind {
144 clean_use_statement(item, *renamed, path, hir::UseKind::Glob, cx, &mut inserted)
145 } else {
146 Vec::new()
148 }
149 },
150 ));
151
152 let span = Span::new({
156 let where_outer = doc.where_outer(cx.tcx);
157 let sm = cx.sess().source_map();
158 let outer = sm.lookup_char_pos(where_outer.lo());
159 let inner = sm.lookup_char_pos(doc.where_inner.lo());
160 if outer.file.start_pos == inner.file.start_pos {
161 where_outer
163 } else {
164 doc.where_inner
166 }
167 });
168
169 let kind = ModuleItem(Module { items, span });
170 generate_item_with_correct_attrs(
171 cx,
172 kind,
173 doc.def_id.to_def_id(),
174 doc.name,
175 doc.import_id.as_slice(),
176 doc.renamed,
177 )
178}
179
180fn is_glob_import(tcx: TyCtxt<'_>, import_id: LocalDefId) -> bool {
181 if let hir::Node::Item(item) = tcx.hir_node_by_def_id(import_id)
182 && let hir::ItemKind::Use(_, use_kind) = item.kind
183 {
184 use_kind == hir::UseKind::Glob
185 } else {
186 false
187 }
188}
189
190pub(crate) fn macro_reexport_is_inline(
192 tcx: TyCtxt<'_>,
193 import_id: LocalDefId,
194 def_id: DefId,
195) -> bool {
196 if !matches!(tcx.def_kind(def_id), DefKind::Macro(MacroKinds::BANG)) {
197 return false;
198 }
199
200 for reexport_def_id in reexport_chain(tcx, import_id, def_id).iter().flat_map(|r| r.id()) {
201 let is_hidden = tcx.is_doc_hidden(reexport_def_id);
202 let is_inline = find_attr!(
203 inline::load_attrs(tcx, reexport_def_id),
204 Doc(d)
205 if d.inline.first().is_some_and(|(inline, _)| *inline == DocInline::Inline)
206 );
207
208 if is_hidden {
210 return false;
211 }
212 if is_inline {
213 return true;
214 }
215 }
216 false
217}
218
219fn generate_item_with_correct_attrs(
220 cx: &mut DocContext<'_>,
221 kind: ItemKind,
222 def_id: DefId,
223 name: Symbol,
224 import_ids: &[LocalDefId],
225 renamed: Option<Symbol>,
226) -> Item {
227 let tcx = cx.tcx;
228 let target_attrs = inline::load_attrs(tcx, def_id);
229 let attrs = if !import_ids.is_empty() {
230 let mut attrs = Vec::with_capacity(import_ids.len());
231 let mut is_inline = false;
232
233 for import_id in import_ids.iter().copied() {
234 let import_is_inline = find_attr!(
240 inline::load_attrs(tcx, import_id.to_def_id()),
241 Doc(d)
242 if d.inline.first().is_some_and(|(inline, _)| *inline == DocInline::Inline)
243 ) || (is_glob_import(tcx, import_id)
244 && (cx.document_hidden() || !tcx.is_doc_hidden(def_id)))
245 || macro_reexport_is_inline(tcx, import_id, def_id);
246 attrs.extend(get_all_import_attributes(cx, import_id, def_id, is_inline));
247 is_inline = is_inline || import_is_inline;
248 }
249 let keep_target_cfg = is_inline || matches!(kind, ItemKind::TypeAliasItem(..));
250 add_without_unwanted_attributes(&mut attrs, target_attrs, keep_target_cfg, None);
251 attrs
252 } else {
253 target_attrs.iter().map(|attr| (Cow::Borrowed(attr), None)).collect()
255 };
256 let attrs = Attributes::from_hir_iter(attrs.iter().map(|(attr, did)| (&**attr, *did)), false);
257
258 let name = renamed.or(Some(name));
259 let mut item = Item::from_def_id_and_attrs_and_parts(def_id, name, kind, attrs, None);
260 item.inner.inline_stmt_id = import_ids.first().copied();
262 item
263}
264
265fn clean_generic_bound<'tcx>(
266 bound: &hir::GenericBound<'tcx>,
267 cx: &mut DocContext<'tcx>,
268) -> Option<GenericBound> {
269 Some(match bound {
270 hir::GenericBound::Outlives(lt) => GenericBound::Outlives(clean_lifetime(lt, cx)),
271 hir::GenericBound::Trait(t) => {
272 if let hir::BoundConstness::Maybe(_) = t.modifiers.constness
274 && cx.tcx.lang_items().destruct_trait() == Some(t.trait_ref.trait_def_id().unwrap())
275 {
276 return None;
277 }
278
279 GenericBound::TraitBound(clean_poly_trait_ref(t, cx), t.modifiers)
280 }
281 hir::GenericBound::Use(args, ..) => {
282 GenericBound::Use(args.iter().map(|arg| clean_precise_capturing_arg(arg, cx)).collect())
283 }
284 })
285}
286
287pub(crate) fn clean_trait_ref_with_constraints<'tcx>(
288 cx: &mut DocContext<'tcx>,
289 trait_ref: ty::PolyTraitRef<'tcx>,
290 constraints: ThinVec<AssocItemConstraint>,
291) -> Path {
292 let kind = ItemType::from_def_id(trait_ref.def_id(), cx.tcx);
293 if !matches!(kind, ItemType::Trait | ItemType::TraitAlias) {
294 span_bug!(cx.tcx.def_span(trait_ref.def_id()), "`TraitRef` had unexpected kind {kind:?}");
295 }
296 inline::record_extern_fqn(cx, trait_ref.def_id(), kind);
297 let path = clean_middle_path(
298 cx,
299 trait_ref.def_id(),
300 true,
301 constraints,
302 trait_ref.map_bound(|tr| tr.args),
303 );
304
305 debug!(?trait_ref);
306
307 path
308}
309
310fn clean_poly_trait_ref_with_constraints<'tcx>(
311 cx: &mut DocContext<'tcx>,
312 poly_trait_ref: ty::PolyTraitRef<'tcx>,
313 constraints: ThinVec<AssocItemConstraint>,
314) -> GenericBound {
315 GenericBound::TraitBound(
316 PolyTrait {
317 trait_: clean_trait_ref_with_constraints(cx, poly_trait_ref, constraints),
318 generic_params: clean_bound_vars(poly_trait_ref.bound_vars(), cx.tcx),
319 },
320 hir::TraitBoundModifiers::NONE,
321 )
322}
323
324fn clean_lifetime(lifetime: &hir::Lifetime, cx: &DocContext<'_>) -> Lifetime {
325 if let Some(
326 rbv::ResolvedArg::EarlyBound(did)
327 | rbv::ResolvedArg::LateBound(_, _, did)
328 | rbv::ResolvedArg::Free(_, did),
329 ) = cx.tcx.named_bound_var(lifetime.hir_id)
330 && let Some(lt) = cx.args.get(&did.to_def_id()).and_then(|arg| arg.as_lt())
331 {
332 return *lt;
333 }
334 Lifetime(lifetime.ident.name)
335}
336
337pub(crate) fn clean_precise_capturing_arg(
338 arg: &hir::PreciseCapturingArg<'_>,
339 cx: &DocContext<'_>,
340) -> PreciseCapturingArg {
341 match arg {
342 hir::PreciseCapturingArg::Lifetime(lt) => {
343 PreciseCapturingArg::Lifetime(clean_lifetime(lt, cx))
344 }
345 hir::PreciseCapturingArg::Param(param) => PreciseCapturingArg::Param(param.ident.name),
346 }
347}
348
349pub(crate) fn clean_const_item_rhs<'tcx>(
350 ct_rhs: hir::ConstItemRhs<'tcx>,
351 parent: DefId,
352) -> ConstantKind {
353 match ct_rhs {
354 hir::ConstItemRhs::Body(body) => ConstantKind::Local { def_id: parent, body },
355 hir::ConstItemRhs::TypeConst(ct) => clean_const(ct),
356 }
357}
358
359pub(crate) fn clean_const<'tcx>(constant: &hir::ConstArg<'tcx>) -> ConstantKind {
360 match &constant.kind {
361 hir::ConstArgKind::Path(qpath) => {
362 ConstantKind::Path { path: qpath_to_string(qpath).into() }
363 }
364 hir::ConstArgKind::Struct(..) => {
365 ConstantKind::Path { path: "/* STRUCT EXPR */".to_string().into() }
367 }
368 hir::ConstArgKind::TupleCall(..) => {
369 ConstantKind::Path { path: "/* TUPLE CALL */".to_string().into() }
370 }
371 hir::ConstArgKind::Tup(..) => {
372 ConstantKind::Path { path: "/* TUPLE EXPR */".to_string().into() }
374 }
375 hir::ConstArgKind::Array(..) => {
376 ConstantKind::Path { path: "/* ARRAY EXPR */".to_string().into() }
377 }
378 hir::ConstArgKind::Anon(anon) => ConstantKind::Anonymous { body: anon.body },
379 hir::ConstArgKind::Infer(..) | hir::ConstArgKind::Error(..) => ConstantKind::Infer,
380 hir::ConstArgKind::Literal { .. } => {
381 ConstantKind::Path { path: "/* LITERAL */".to_string().into() }
382 }
383 }
384}
385
386pub(crate) fn clean_middle_const<'tcx>(
387 constant: ty::Binder<'tcx, ty::Const<'tcx>>,
388) -> ConstantKind {
389 ConstantKind::TyConst { expr: constant.skip_binder().to_string().into() }
391}
392
393pub(crate) fn clean_middle_region<'tcx>(
394 region: ty::Region<'tcx>,
395 tcx: TyCtxt<'tcx>,
396) -> Option<Lifetime> {
397 region.get_name(tcx).map(Lifetime)
398}
399
400fn clean_where_predicate<'tcx>(
401 predicate: &hir::WherePredicate<'tcx>,
402 cx: &mut DocContext<'tcx>,
403) -> Option<WherePredicate> {
404 if !predicate.kind.in_where_clause() {
405 return None;
406 }
407 Some(match predicate.kind {
408 hir::WherePredicateKind::BoundPredicate(wbp) => {
409 let bound_params = wbp
410 .bound_generic_params
411 .iter()
412 .map(|param| clean_generic_param(cx, None, param))
413 .collect();
414 WherePredicate::BoundPredicate {
415 ty: clean_ty(wbp.bounded_ty, cx),
416 bounds: wbp.bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect(),
417 bound_params,
418 }
419 }
420
421 hir::WherePredicateKind::RegionPredicate(wrp) => WherePredicate::RegionPredicate {
422 lifetime: clean_lifetime(wrp.lifetime, cx),
423 bounds: wrp.bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect(),
424 },
425
426 hir::WherePredicateKind::EqPredicate(_) => bug!("EqPredicate"),
429 })
430}
431
432pub(crate) fn clean_predicate<'tcx>(
433 predicate: ty::Clause<'tcx>,
434 cx: &mut DocContext<'tcx>,
435) -> Option<WherePredicate> {
436 let bound_predicate = predicate.kind();
437 match bound_predicate.skip_binder() {
438 ty::ClauseKind::Trait(pred) => clean_poly_trait_predicate(bound_predicate.rebind(pred), cx),
439 ty::ClauseKind::RegionOutlives(pred) => Some(clean_region_outlives_predicate(pred, cx.tcx)),
440 ty::ClauseKind::TypeOutlives(pred) => {
441 Some(clean_type_outlives_predicate(bound_predicate.rebind(pred), cx))
442 }
443 ty::ClauseKind::Projection(pred) => {
444 Some(clean_projection_predicate(bound_predicate.rebind(pred), cx))
445 }
446 ty::ClauseKind::ConstEvaluatable(..)
448 | ty::ClauseKind::WellFormed(..)
449 | ty::ClauseKind::ConstArgHasType(..)
450 | ty::ClauseKind::UnstableFeature(..)
451 | ty::ClauseKind::HostEffect(_) => None,
453 }
454}
455
456fn clean_poly_trait_predicate<'tcx>(
457 pred: ty::PolyTraitPredicate<'tcx>,
458 cx: &mut DocContext<'tcx>,
459) -> Option<WherePredicate> {
460 if Some(pred.skip_binder().def_id()) == cx.tcx.lang_items().destruct_trait() {
463 return None;
464 }
465
466 let poly_trait_ref = pred.map_bound(|pred| pred.trait_ref);
467 Some(WherePredicate::BoundPredicate {
468 ty: clean_middle_ty(poly_trait_ref.self_ty(), cx, None, None),
469 bounds: vec![clean_poly_trait_ref_with_constraints(cx, poly_trait_ref, ThinVec::new())],
470 bound_params: Vec::new(),
471 })
472}
473
474fn clean_region_outlives_predicate<'tcx>(
475 pred: ty::RegionOutlivesPredicate<'tcx>,
476 tcx: TyCtxt<'tcx>,
477) -> WherePredicate {
478 let ty::OutlivesPredicate(a, b) = pred;
479
480 WherePredicate::RegionPredicate {
481 lifetime: clean_middle_region(a, tcx).expect("failed to clean lifetime"),
482 bounds: vec![GenericBound::Outlives(
483 clean_middle_region(b, tcx).expect("failed to clean bounds"),
484 )],
485 }
486}
487
488fn clean_type_outlives_predicate<'tcx>(
489 pred: ty::Binder<'tcx, ty::TypeOutlivesPredicate<'tcx>>,
490 cx: &mut DocContext<'tcx>,
491) -> WherePredicate {
492 let ty::OutlivesPredicate(ty, lt) = pred.skip_binder();
493
494 WherePredicate::BoundPredicate {
495 ty: clean_middle_ty(pred.rebind(ty), cx, None, None),
496 bounds: vec![GenericBound::Outlives(
497 clean_middle_region(lt, cx.tcx).expect("failed to clean lifetimes"),
498 )],
499 bound_params: Vec::new(),
500 }
501}
502
503fn clean_middle_term<'tcx>(
504 term: ty::Binder<'tcx, ty::Term<'tcx>>,
505 cx: &mut DocContext<'tcx>,
506) -> Term {
507 match term.skip_binder().kind() {
508 ty::TermKind::Ty(ty) => Term::Type(clean_middle_ty(term.rebind(ty), cx, None, None)),
509 ty::TermKind::Const(c) => Term::Constant(clean_middle_const(term.rebind(c))),
510 }
511}
512
513fn clean_hir_term<'tcx>(
514 assoc_item: Option<DefId>,
515 term: &hir::Term<'tcx>,
516 cx: &mut DocContext<'tcx>,
517) -> Term {
518 match term {
519 hir::Term::Ty(ty) => Term::Type(clean_ty(ty, cx)),
520 hir::Term::Const(c) => {
521 let ty = cx.tcx.type_of(assoc_item.unwrap()).instantiate_identity().skip_norm_wip();
523 let ct = lower_const_arg_for_rustdoc(cx.tcx, c, ty);
524 Term::Constant(clean_middle_const(ty::Binder::dummy(ct)))
525 }
526 }
527}
528
529fn clean_projection_predicate<'tcx>(
530 pred: ty::Binder<'tcx, ty::ProjectionPredicate<'tcx>>,
531 cx: &mut DocContext<'tcx>,
532) -> WherePredicate {
533 WherePredicate::EqPredicate {
534 lhs: clean_projection(pred.map_bound(|p| p.projection_term), cx, None),
535 rhs: clean_middle_term(pred.map_bound(|p| p.term), cx),
536 }
537}
538
539fn clean_projection<'tcx>(
540 proj: ty::Binder<'tcx, ty::AliasTerm<'tcx>>,
541 cx: &mut DocContext<'tcx>,
542 parent_def_id: Option<DefId>,
543) -> QPathData {
544 let trait_ = clean_trait_ref_with_constraints(
545 cx,
546 proj.map_bound(|proj| proj.trait_ref(cx.tcx)),
547 ThinVec::new(),
548 );
549 let self_type = clean_middle_ty(proj.map_bound(|proj| proj.self_ty()), cx, None, None);
550 let self_def_id = match parent_def_id {
551 Some(parent_def_id) => cx.tcx.opt_parent(parent_def_id).or(Some(parent_def_id)),
552 None => self_type.def_id(&cx.cache),
553 };
554 let should_fully_qualify = should_fully_qualify_path(self_def_id, &trait_, &self_type);
555
556 QPathData {
557 assoc: projection_to_path_segment(proj, cx),
558 self_type,
559 should_fully_qualify,
560 trait_: Some(trait_),
561 }
562}
563
564fn should_fully_qualify_path(self_def_id: Option<DefId>, trait_: &Path, self_type: &Type) -> bool {
565 !trait_.segments.is_empty()
566 && self_def_id
567 .zip(Some(trait_.def_id()))
568 .map_or(!self_type.is_self_type(), |(id, trait_)| id != trait_)
569}
570
571fn projection_to_path_segment<'tcx>(
572 proj: ty::Binder<'tcx, ty::AliasTerm<'tcx>>,
573 cx: &mut DocContext<'tcx>,
574) -> PathSegment {
575 let def_id = proj.skip_binder().def_id();
576 let generics = cx.tcx.generics_of(def_id);
577 PathSegment {
578 name: cx.tcx.item_name(def_id),
579 args: GenericArgs::AngleBracketed {
580 args: clean_middle_generic_args(
581 cx,
582 proj.map_bound(|ty| &ty.args[generics.parent_count..]),
583 false,
584 def_id,
585 ),
586 constraints: Default::default(),
587 },
588 }
589}
590
591fn clean_generic_param_def(
592 def: &ty::GenericParamDef,
593 defaults: ParamDefaults,
594 cx: &mut DocContext<'_>,
595) -> GenericParamDef {
596 let (name, kind) = match def.kind {
597 ty::GenericParamDefKind::Lifetime => {
598 (def.name, GenericParamDefKind::Lifetime { outlives: ThinVec::new() })
599 }
600 ty::GenericParamDefKind::Type { has_default, synthetic, .. } => {
601 let default = if let ParamDefaults::Yes = defaults
602 && has_default
603 {
604 Some(clean_middle_ty(
605 ty::Binder::dummy(
606 cx.tcx.type_of(def.def_id).instantiate_identity().skip_norm_wip(),
607 ),
608 cx,
609 Some(def.def_id),
610 None,
611 ))
612 } else {
613 None
614 };
615 (
616 def.name,
617 GenericParamDefKind::Type {
618 bounds: ThinVec::new(), default: default.map(Box::new),
620 synthetic,
621 },
622 )
623 }
624 ty::GenericParamDefKind::Const { has_default } => (
625 def.name,
626 GenericParamDefKind::Const {
627 ty: Box::new(clean_middle_ty(
628 ty::Binder::dummy(
629 cx.tcx.type_of(def.def_id).instantiate_identity().skip_norm_wip(),
630 ),
631 cx,
632 Some(def.def_id),
633 None,
634 )),
635 default: if let ParamDefaults::Yes = defaults
636 && has_default
637 {
638 Some(Box::new(
639 cx.tcx
640 .const_param_default(def.def_id)
641 .instantiate_identity()
642 .skip_norm_wip()
643 .to_string(),
644 ))
645 } else {
646 None
647 },
648 },
649 ),
650 };
651
652 GenericParamDef { name, def_id: def.def_id, kind }
653}
654
655enum ParamDefaults {
657 Yes,
658 No,
659}
660
661fn clean_generic_param<'tcx>(
662 cx: &mut DocContext<'tcx>,
663 generics: Option<&hir::Generics<'tcx>>,
664 param: &hir::GenericParam<'tcx>,
665) -> GenericParamDef {
666 let (name, kind) = match param.kind {
667 hir::GenericParamKind::Lifetime { .. } => {
668 let outlives = if let Some(generics) = generics {
669 generics
670 .outlives_for_param(param.def_id)
671 .filter(|bp| !bp.in_where_clause)
672 .flat_map(|bp| bp.bounds)
673 .map(|bound| match bound {
674 hir::GenericBound::Outlives(lt) => clean_lifetime(lt, cx),
675 _ => panic!(),
676 })
677 .collect()
678 } else {
679 ThinVec::new()
680 };
681 (param.name.ident().name, GenericParamDefKind::Lifetime { outlives })
682 }
683 hir::GenericParamKind::Type { ref default, synthetic } => {
684 let bounds = if let Some(generics) = generics {
685 generics
686 .bounds_for_param(param.def_id)
687 .filter(|bp| bp.origin != PredicateOrigin::WhereClause)
688 .flat_map(|bp| bp.bounds)
689 .filter_map(|x| clean_generic_bound(x, cx))
690 .collect()
691 } else {
692 ThinVec::new()
693 };
694 (
695 param.name.ident().name,
696 GenericParamDefKind::Type {
697 bounds,
698 default: default.map(|t| clean_ty(t, cx)).map(Box::new),
699 synthetic,
700 },
701 )
702 }
703 hir::GenericParamKind::Const { ty, default } => (
704 param.name.ident().name,
705 GenericParamDefKind::Const {
706 ty: Box::new(clean_ty(ty, cx)),
707 default: default.map(|ct| {
708 Box::new(
709 lower_const_arg_for_rustdoc(cx.tcx, ct, lower_ty(cx.tcx, ty)).to_string(),
710 )
711 }),
712 },
713 ),
714 };
715
716 GenericParamDef { name, def_id: param.def_id.to_def_id(), kind }
717}
718
719fn is_impl_trait(param: &hir::GenericParam<'_>) -> bool {
723 match param.kind {
724 hir::GenericParamKind::Type { synthetic, .. } => synthetic,
725 _ => false,
726 }
727}
728
729fn is_elided_lifetime(param: &hir::GenericParam<'_>) -> bool {
733 matches!(
734 param.kind,
735 hir::GenericParamKind::Lifetime { kind: hir::LifetimeParamKind::Elided(_) }
736 )
737}
738
739pub(crate) fn clean_generics<'tcx>(
740 gens: &hir::Generics<'tcx>,
741 cx: &mut DocContext<'tcx>,
742) -> Generics {
743 let impl_trait_params = gens
744 .params
745 .iter()
746 .filter(|param| is_impl_trait(param))
747 .map(|param| {
748 let param = clean_generic_param(cx, Some(gens), param);
749 match param.kind {
750 GenericParamDefKind::Lifetime { .. } => unreachable!(),
751 GenericParamDefKind::Type { ref bounds, .. } => {
752 cx.impl_trait_bounds.insert(param.def_id.into(), bounds.to_vec());
753 }
754 GenericParamDefKind::Const { .. } => unreachable!(),
755 }
756 param
757 })
758 .collect::<Vec<_>>();
759
760 let mut bound_predicates = FxIndexMap::default();
761 let mut region_predicates = FxIndexMap::default();
762 let mut eq_predicates = ThinVec::default();
763 for pred in gens.predicates.iter().filter_map(|x| clean_where_predicate(x, cx)) {
764 match pred {
765 WherePredicate::BoundPredicate { ty, bounds, bound_params } => {
766 match bound_predicates.entry(ty) {
767 IndexEntry::Vacant(v) => {
768 v.insert((bounds, bound_params));
769 }
770 IndexEntry::Occupied(mut o) => {
771 for bound in bounds {
773 if !o.get().0.contains(&bound) {
774 o.get_mut().0.push(bound);
775 }
776 }
777 for bound_param in bound_params {
778 if !o.get().1.contains(&bound_param) {
779 o.get_mut().1.push(bound_param);
780 }
781 }
782 }
783 }
784 }
785 WherePredicate::RegionPredicate { lifetime, bounds } => {
786 match region_predicates.entry(lifetime) {
787 IndexEntry::Vacant(v) => {
788 v.insert(bounds);
789 }
790 IndexEntry::Occupied(mut o) => {
791 for bound in bounds {
793 if !o.get().contains(&bound) {
794 o.get_mut().push(bound);
795 }
796 }
797 }
798 }
799 }
800 WherePredicate::EqPredicate { lhs, rhs } => {
801 eq_predicates.push(WherePredicate::EqPredicate { lhs, rhs });
802 }
803 }
804 }
805
806 let mut params = ThinVec::with_capacity(gens.params.len());
807 for p in gens.params.iter().filter(|p| !is_impl_trait(p) && !is_elided_lifetime(p)) {
811 let mut p = clean_generic_param(cx, Some(gens), p);
812 match &mut p.kind {
813 GenericParamDefKind::Lifetime { outlives } => {
814 if let Some(region_pred) = region_predicates.get_mut(&Lifetime(p.name)) {
815 for outlive in outlives.drain(..) {
817 let outlive = GenericBound::Outlives(outlive);
818 if !region_pred.contains(&outlive) {
819 region_pred.push(outlive);
820 }
821 }
822 }
823 }
824 GenericParamDefKind::Type { bounds, synthetic: false, .. } => {
825 if let Some(bound_pred) = bound_predicates.get_mut(&Type::Generic(p.name)) {
826 for bound in bounds.drain(..) {
828 if !bound_pred.0.contains(&bound) {
829 bound_pred.0.push(bound);
830 }
831 }
832 }
833 }
834 GenericParamDefKind::Type { .. } | GenericParamDefKind::Const { .. } => {
835 }
837 }
838 params.push(p);
839 }
840 params.extend(impl_trait_params);
841
842 Generics {
843 params,
844 where_predicates: bound_predicates
845 .into_iter()
846 .map(|(ty, (bounds, bound_params))| WherePredicate::BoundPredicate {
847 ty,
848 bounds,
849 bound_params,
850 })
851 .chain(
852 region_predicates
853 .into_iter()
854 .map(|(lifetime, bounds)| WherePredicate::RegionPredicate { lifetime, bounds }),
855 )
856 .chain(eq_predicates)
857 .collect(),
858 }
859}
860
861fn clean_ty_generics<'tcx>(cx: &mut DocContext<'tcx>, def_id: DefId) -> Generics {
862 clean_ty_generics_inner(cx, cx.tcx.generics_of(def_id), cx.tcx.explicit_predicates_of(def_id))
863}
864
865fn clean_ty_generics_inner<'tcx>(
866 cx: &mut DocContext<'tcx>,
867 gens: &ty::Generics,
868 preds: ty::GenericPredicates<'tcx>,
869) -> Generics {
870 let mut impl_trait = BTreeMap::<u32, Vec<GenericBound>>::default();
873
874 let params: ThinVec<_> = gens
875 .own_params
876 .iter()
877 .filter(|param| match param.kind {
878 ty::GenericParamDefKind::Lifetime => !param.is_anonymous_lifetime(),
879 ty::GenericParamDefKind::Type { synthetic, .. } => {
880 if param.name == kw::SelfUpper {
881 debug_assert_eq!(param.index, 0);
882 return false;
883 }
884 if synthetic {
885 impl_trait.insert(param.index, vec![]);
886 return false;
887 }
888 true
889 }
890 ty::GenericParamDefKind::Const { .. } => true,
891 })
892 .map(|param| clean_generic_param_def(param, ParamDefaults::Yes, cx))
893 .collect();
894
895 let mut impl_trait_proj =
897 FxHashMap::<u32, Vec<(DefId, PathSegment, ty::Binder<'_, ty::Term<'_>>)>>::default();
898
899 let where_predicates = preds
900 .predicates
901 .iter()
902 .flat_map(|(pred, _)| {
903 let mut proj_pred = None;
904 let param_idx = {
905 let bound_p = pred.kind();
906 match bound_p.skip_binder() {
907 ty::ClauseKind::Trait(pred) if let ty::Param(param) = pred.self_ty().kind() => {
908 Some(param.index)
909 }
910 ty::ClauseKind::TypeOutlives(ty::OutlivesPredicate(ty, _reg))
911 if let ty::Param(param) = ty.kind() =>
912 {
913 Some(param.index)
914 }
915 ty::ClauseKind::Projection(p)
916 if let ty::Param(param) = p.projection_term.self_ty().kind() =>
917 {
918 proj_pred = Some(bound_p.rebind(p));
919 Some(param.index)
920 }
921 _ => None,
922 }
923 };
924
925 if let Some(param_idx) = param_idx
926 && let Some(bounds) = impl_trait.get_mut(¶m_idx)
927 {
928 let pred = clean_predicate(*pred, cx)?;
929
930 bounds.extend(pred.get_bounds().into_iter().flatten().cloned());
931
932 if let Some(pred) = proj_pred {
933 let lhs = clean_projection(pred.map_bound(|p| p.projection_term), cx, None);
934 impl_trait_proj.entry(param_idx).or_default().push((
935 lhs.trait_.unwrap().def_id(),
936 lhs.assoc,
937 pred.map_bound(|p| p.term),
938 ));
939 }
940
941 return None;
942 }
943
944 Some(pred)
945 })
946 .collect::<Vec<_>>();
947
948 for (idx, mut bounds) in impl_trait {
949 let mut has_sized = false;
950 bounds.retain(|b| {
951 if b.is_sized_bound(cx.tcx) {
952 has_sized = true;
953 false
954 } else if b.is_meta_sized_bound(cx.tcx) {
955 false
958 } else {
959 true
960 }
961 });
962 if !has_sized {
963 bounds.push(GenericBound::maybe_sized(cx));
964 }
965
966 bounds.sort_by_key(|b| !b.is_trait_bound());
968
969 if bounds.first().is_none_or(|b| !b.is_trait_bound()) {
972 bounds.insert(0, GenericBound::sized(cx));
973 }
974
975 if let Some(proj) = impl_trait_proj.remove(&idx) {
976 for (trait_did, name, rhs) in proj {
977 let rhs = clean_middle_term(rhs, cx);
978 simplify::merge_bounds(cx.tcx, &mut bounds, trait_did, name, &rhs);
979 }
980 }
981
982 cx.impl_trait_bounds.insert(idx.into(), bounds);
983 }
984
985 let where_predicates =
988 where_predicates.into_iter().flat_map(|p| clean_predicate(*p, cx)).collect();
989
990 let mut generics = Generics { params, where_predicates };
991 simplify::sized_bounds(cx, &mut generics);
992 generics.where_predicates = simplify::where_clauses(cx.tcx, generics.where_predicates);
993 generics
994}
995
996fn clean_ty_alias_inner_type<'tcx>(
997 ty: Ty<'tcx>,
998 cx: &mut DocContext<'tcx>,
999 ret: &mut Vec<Item>,
1000) -> Option<TypeAliasInnerType> {
1001 let ty::Adt(adt_def, args) = ty.kind() else {
1002 return None;
1003 };
1004
1005 if !adt_def.did().is_local() {
1006 cx.with_param_env(adt_def.did(), |cx| {
1007 inline::build_impls(cx, adt_def.did(), None, ret);
1008 });
1009 }
1010
1011 Some(if adt_def.is_enum() {
1012 let variants: rustc_index::IndexVec<_, _> = adt_def
1013 .variants()
1014 .iter()
1015 .map(|variant| clean_variant_def_with_args(variant, args, cx))
1016 .collect();
1017
1018 if !adt_def.did().is_local() {
1019 inline::record_extern_fqn(cx, adt_def.did(), ItemType::Enum);
1020 }
1021
1022 TypeAliasInnerType::Enum {
1023 variants,
1024 is_non_exhaustive: adt_def.is_variant_list_non_exhaustive(),
1025 }
1026 } else {
1027 let variant = adt_def
1028 .variants()
1029 .iter()
1030 .next()
1031 .unwrap_or_else(|| bug!("a struct or union should always have one variant def"));
1032
1033 let fields: Vec<_> =
1034 clean_variant_def_with_args(variant, args, cx).kind.inner_items().cloned().collect();
1035
1036 if adt_def.is_struct() {
1037 if !adt_def.did().is_local() {
1038 inline::record_extern_fqn(cx, adt_def.did(), ItemType::Struct);
1039 }
1040 TypeAliasInnerType::Struct { ctor_kind: variant.ctor_kind(), fields }
1041 } else {
1042 if !adt_def.did().is_local() {
1043 inline::record_extern_fqn(cx, adt_def.did(), ItemType::Union);
1044 }
1045 TypeAliasInnerType::Union { fields }
1046 }
1047 })
1048}
1049
1050fn clean_proc_macro<'tcx>(
1051 item: &hir::Item<'tcx>,
1052 name: &mut Symbol,
1053 kind: MacroKind,
1054 tcx: TyCtxt<'tcx>,
1055) -> ItemKind {
1056 if kind != MacroKind::Derive {
1057 return ProcMacroItem(ProcMacro { kind, helpers: vec![] });
1058 }
1059 let attrs = tcx.hir_attrs(item.hir_id());
1060 let Some((trait_name, helper_attrs)) = find_attr!(attrs, ProcMacroDerive { trait_name, helper_attrs, ..} => (*trait_name, helper_attrs))
1061 else {
1062 return ProcMacroItem(ProcMacro { kind, helpers: vec![] });
1063 };
1064 *name = trait_name;
1065 let helpers = helper_attrs.iter().copied().collect();
1066
1067 ProcMacroItem(ProcMacro { kind, helpers })
1068}
1069
1070fn clean_fn_or_proc_macro<'tcx>(
1071 item: &hir::Item<'tcx>,
1072 sig: &hir::FnSig<'tcx>,
1073 generics: &hir::Generics<'tcx>,
1074 body_id: hir::BodyId,
1075 name: &mut Symbol,
1076 cx: &mut DocContext<'tcx>,
1077) -> ItemKind {
1078 let attrs = cx.tcx.hir_attrs(item.hir_id());
1079 let macro_kind = if find_attr!(attrs, ProcMacro) {
1080 Some(MacroKind::Bang)
1081 } else if find_attr!(attrs, ProcMacroDerive { .. }) {
1082 Some(MacroKind::Derive)
1083 } else if find_attr!(attrs, ProcMacroAttribute) {
1084 Some(MacroKind::Attr)
1085 } else {
1086 None
1087 };
1088
1089 match macro_kind {
1090 Some(kind) => clean_proc_macro(item, name, kind, cx.tcx),
1091 None => {
1092 let mut func = clean_function(cx, sig, generics, ParamsSrc::Body(body_id));
1093 clean_fn_decl_legacy_const_generics(&mut func, attrs);
1094 FunctionItem(func)
1095 }
1096 }
1097}
1098
1099fn clean_fn_decl_legacy_const_generics(func: &mut Function, attrs: &[hir::Attribute]) {
1103 let Some(indexes) = find_attr!(attrs, RustcLegacyConstGenerics{fn_indexes,..} => fn_indexes)
1104 else {
1105 return;
1106 };
1107
1108 for (pos, (index, _)) in indexes.iter().enumerate() {
1109 let GenericParamDef { name, kind, .. } = func.generics.params.remove(0);
1110 if let GenericParamDefKind::Const { ty, .. } = kind {
1111 func.decl
1112 .inputs
1113 .insert(*index, Parameter { name: Some(name), type_: *ty, is_const: true });
1114 } else {
1115 panic!("unexpected non const in position {pos}");
1116 }
1117 }
1118}
1119
1120enum ParamsSrc<'tcx> {
1121 Body(hir::BodyId),
1122 Idents(&'tcx [Option<Ident>]),
1123}
1124
1125fn clean_function<'tcx>(
1126 cx: &mut DocContext<'tcx>,
1127 sig: &hir::FnSig<'tcx>,
1128 generics: &hir::Generics<'tcx>,
1129 params: ParamsSrc<'tcx>,
1130) -> Box<Function> {
1131 let (generics, decl) = enter_impl_trait(cx, |cx| {
1132 let generics = clean_generics(generics, cx);
1134 let params = match params {
1135 ParamsSrc::Body(body_id) => clean_params_via_body(cx, sig.decl.inputs, body_id),
1136 ParamsSrc::Idents(idents) => clean_params(cx, sig.decl.inputs, idents, |ident| {
1138 Some(ident.map_or(kw::Underscore, |ident| ident.name))
1139 }),
1140 };
1141 let decl = clean_fn_decl_with_params(cx, sig.decl, Some(&sig.header), params);
1142 (generics, decl)
1143 });
1144 Box::new(Function { decl, generics })
1145}
1146
1147fn clean_params<'tcx>(
1148 cx: &mut DocContext<'tcx>,
1149 types: &[hir::Ty<'tcx>],
1150 idents: &[Option<Ident>],
1151 postprocess: impl Fn(Option<Ident>) -> Option<Symbol>,
1152) -> Vec<Parameter> {
1153 types
1154 .iter()
1155 .enumerate()
1156 .map(|(i, ty)| Parameter {
1157 name: postprocess(idents[i]),
1158 type_: clean_ty(ty, cx),
1159 is_const: false,
1160 })
1161 .collect()
1162}
1163
1164fn clean_params_via_body<'tcx>(
1165 cx: &mut DocContext<'tcx>,
1166 types: &[hir::Ty<'tcx>],
1167 body_id: hir::BodyId,
1168) -> Vec<Parameter> {
1169 types
1170 .iter()
1171 .zip(cx.tcx.hir_body(body_id).params)
1172 .map(|(ty, param)| Parameter {
1173 name: Some(name_from_pat(param.pat)),
1174 type_: clean_ty(ty, cx),
1175 is_const: false,
1176 })
1177 .collect()
1178}
1179
1180fn clean_fn_decl_with_params<'tcx>(
1181 cx: &mut DocContext<'tcx>,
1182 decl: &hir::FnDecl<'tcx>,
1183 header: Option<&hir::FnHeader>,
1184 params: Vec<Parameter>,
1185) -> FnDecl {
1186 let mut output = match decl.output {
1187 hir::FnRetTy::Return(typ) => clean_ty(typ, cx),
1188 hir::FnRetTy::DefaultReturn(..) => Type::Tuple(Vec::new()),
1189 };
1190 if let Some(header) = header
1191 && header.is_async()
1192 {
1193 output = output.sugared_async_return_type();
1194 }
1195 FnDecl { inputs: params, output, c_variadic: decl.c_variadic() }
1196}
1197
1198fn clean_poly_fn_sig<'tcx>(
1199 cx: &mut DocContext<'tcx>,
1200 did: Option<DefId>,
1201 sig: ty::PolyFnSig<'tcx>,
1202) -> FnDecl {
1203 let mut output = clean_middle_ty(sig.output(), cx, None, None);
1204
1205 if let Some(did) = did
1209 && let Type::ImplTrait(_) = output
1210 && cx.tcx.asyncness(did).is_async()
1211 {
1212 output = output.sugared_async_return_type();
1213 }
1214
1215 let mut idents = did.map(|did| cx.tcx.fn_arg_idents(did)).unwrap_or_default().iter().copied();
1216
1217 let fallback = did.map(|_| kw::Underscore);
1222
1223 let params = sig
1224 .inputs()
1225 .iter()
1226 .map(|ty| Parameter {
1227 name: idents.next().flatten().map(|ident| ident.name).or(fallback),
1228 type_: clean_middle_ty(ty.map_bound(|ty| *ty), cx, None, None),
1229 is_const: false,
1230 })
1231 .collect();
1232
1233 FnDecl { inputs: params, output, c_variadic: sig.skip_binder().c_variadic() }
1234}
1235
1236fn clean_trait_ref<'tcx>(trait_ref: &hir::TraitRef<'tcx>, cx: &mut DocContext<'tcx>) -> Path {
1237 let path = clean_path(trait_ref.path, cx);
1238 register_res(cx, path.res);
1239 path
1240}
1241
1242fn clean_poly_trait_ref<'tcx>(
1243 poly_trait_ref: &hir::PolyTraitRef<'tcx>,
1244 cx: &mut DocContext<'tcx>,
1245) -> PolyTrait {
1246 PolyTrait {
1247 trait_: clean_trait_ref(&poly_trait_ref.trait_ref, cx),
1248 generic_params: poly_trait_ref
1249 .bound_generic_params
1250 .iter()
1251 .filter(|p| !is_elided_lifetime(p))
1252 .map(|x| clean_generic_param(cx, None, x))
1253 .collect(),
1254 }
1255}
1256
1257fn clean_trait_item<'tcx>(trait_item: &hir::TraitItem<'tcx>, cx: &mut DocContext<'tcx>) -> Item {
1258 let local_did = trait_item.owner_id.to_def_id();
1259 cx.with_param_env(local_did, |cx| {
1260 let inner = match trait_item.kind {
1261 hir::TraitItemKind::Const(ty, Some(default), _) => {
1262 ProvidedAssocConstItem(Box::new(Constant {
1263 generics: enter_impl_trait(cx, |cx| clean_generics(trait_item.generics, cx)),
1264 kind: clean_const_item_rhs(default, local_did),
1265 type_: clean_ty(ty, cx),
1266 }))
1267 }
1268 hir::TraitItemKind::Const(ty, None, _) => {
1269 let generics = enter_impl_trait(cx, |cx| clean_generics(trait_item.generics, cx));
1270 RequiredAssocConstItem(generics, Box::new(clean_ty(ty, cx)))
1271 }
1272 hir::TraitItemKind::Fn(ref sig, hir::TraitFn::Provided(body)) => {
1273 let m = clean_function(cx, sig, trait_item.generics, ParamsSrc::Body(body));
1274 MethodItem(m, Defaultness::from_trait_item(trait_item.defaultness))
1275 }
1276 hir::TraitItemKind::Fn(ref sig, hir::TraitFn::Required(idents)) => {
1277 let m = clean_function(cx, sig, trait_item.generics, ParamsSrc::Idents(idents));
1278 RequiredMethodItem(m, Defaultness::from_trait_item(trait_item.defaultness))
1279 }
1280 hir::TraitItemKind::Type(bounds, Some(default)) => {
1281 let generics = enter_impl_trait(cx, |cx| clean_generics(trait_item.generics, cx));
1282 let bounds = bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect();
1283 let item_type =
1284 clean_middle_ty(ty::Binder::dummy(lower_ty(cx.tcx, default)), cx, None, None);
1285 AssocTypeItem(
1286 Box::new(TypeAlias {
1287 type_: clean_ty(default, cx),
1288 generics,
1289 inner_type: None,
1290 item_type: Some(item_type),
1291 }),
1292 bounds,
1293 )
1294 }
1295 hir::TraitItemKind::Type(bounds, None) => {
1296 let generics = enter_impl_trait(cx, |cx| clean_generics(trait_item.generics, cx));
1297 let bounds = bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect();
1298 RequiredAssocTypeItem(generics, bounds)
1299 }
1300 };
1301 Item::from_def_id_and_parts(local_did, Some(trait_item.ident.name), inner, cx.tcx)
1302 })
1303}
1304
1305pub(crate) fn clean_impl_item<'tcx>(
1306 impl_: &hir::ImplItem<'tcx>,
1307 cx: &mut DocContext<'tcx>,
1308) -> Item {
1309 let local_did = impl_.owner_id.to_def_id();
1310 cx.with_param_env(local_did, |cx| {
1311 let inner = match impl_.kind {
1312 hir::ImplItemKind::Const(ty, expr) => ImplAssocConstItem(Box::new(Constant {
1313 generics: clean_generics(impl_.generics, cx),
1314 kind: clean_const_item_rhs(expr, local_did),
1315 type_: clean_ty(ty, cx),
1316 })),
1317 hir::ImplItemKind::Fn(ref sig, body) => {
1318 let m = clean_function(cx, sig, impl_.generics, ParamsSrc::Body(body));
1319 let defaultness = match impl_.impl_kind {
1320 hir::ImplItemImplKind::Inherent { .. } => hir::Defaultness::Final,
1321 hir::ImplItemImplKind::Trait { defaultness, .. } => defaultness,
1322 };
1323 MethodItem(m, Defaultness::from_impl_item(defaultness))
1324 }
1325 hir::ImplItemKind::Type(hir_ty) => {
1326 let type_ = clean_ty(hir_ty, cx);
1327 let generics = clean_generics(impl_.generics, cx);
1328 let item_type =
1329 clean_middle_ty(ty::Binder::dummy(lower_ty(cx.tcx, hir_ty)), cx, None, None);
1330 AssocTypeItem(
1331 Box::new(TypeAlias {
1332 type_,
1333 generics,
1334 inner_type: None,
1335 item_type: Some(item_type),
1336 }),
1337 Vec::new(),
1338 )
1339 }
1340 };
1341
1342 Item::from_def_id_and_parts(local_did, Some(impl_.ident.name), inner, cx.tcx)
1343 })
1344}
1345
1346pub(crate) fn clean_middle_assoc_item(assoc_item: &ty::AssocItem, cx: &mut DocContext<'_>) -> Item {
1347 let tcx = cx.tcx;
1348 let kind = match assoc_item.kind {
1349 ty::AssocKind::Const { .. } => {
1350 let ty = clean_middle_ty(
1351 ty::Binder::dummy(
1352 tcx.type_of(assoc_item.def_id).instantiate_identity().skip_norm_wip(),
1353 ),
1354 cx,
1355 Some(assoc_item.def_id),
1356 None,
1357 );
1358
1359 let mut generics = clean_ty_generics(cx, assoc_item.def_id);
1360 simplify::move_bounds_to_generic_parameters(&mut generics);
1361
1362 match assoc_item.container {
1363 ty::AssocContainer::InherentImpl | ty::AssocContainer::TraitImpl(_) => {
1364 ImplAssocConstItem(Box::new(Constant {
1365 generics,
1366 kind: ConstantKind::Extern { def_id: assoc_item.def_id },
1367 type_: ty,
1368 }))
1369 }
1370 ty::AssocContainer::Trait => {
1371 if tcx.defaultness(assoc_item.def_id).has_value() {
1372 ProvidedAssocConstItem(Box::new(Constant {
1373 generics,
1374 kind: ConstantKind::Extern { def_id: assoc_item.def_id },
1375 type_: ty,
1376 }))
1377 } else {
1378 RequiredAssocConstItem(generics, Box::new(ty))
1379 }
1380 }
1381 }
1382 }
1383 ty::AssocKind::Fn { has_self, .. } => {
1384 let mut item = inline::build_function(cx, assoc_item.def_id);
1385
1386 if has_self {
1387 let self_ty = match assoc_item.container {
1388 ty::AssocContainer::InherentImpl | ty::AssocContainer::TraitImpl(_) => tcx
1389 .type_of(assoc_item.container_id(tcx))
1390 .instantiate_identity()
1391 .skip_norm_wip(),
1392 ty::AssocContainer::Trait => tcx.types.self_param,
1393 };
1394 let self_param_ty = tcx
1395 .fn_sig(assoc_item.def_id)
1396 .instantiate_identity()
1397 .skip_norm_wip()
1398 .input(0)
1399 .skip_binder();
1400 if self_param_ty == self_ty {
1401 item.decl.inputs[0].type_ = SelfTy;
1402 } else if let ty::Ref(_, ty, _) = *self_param_ty.kind()
1403 && ty == self_ty
1404 {
1405 match item.decl.inputs[0].type_ {
1406 BorrowedRef { ref mut type_, .. } => **type_ = SelfTy,
1407 _ => unreachable!(),
1408 }
1409 }
1410 }
1411
1412 let defaultness = assoc_item.defaultness(tcx);
1413 let (provided, defaultness) = match assoc_item.container {
1414 ty::AssocContainer::Trait => {
1415 (defaultness.has_value(), Defaultness::from_trait_item(defaultness))
1416 }
1417 ty::AssocContainer::InherentImpl | ty::AssocContainer::TraitImpl(_) => {
1418 (true, Defaultness::from_impl_item(defaultness))
1419 }
1420 };
1421
1422 if provided {
1423 MethodItem(item, defaultness)
1424 } else {
1425 RequiredMethodItem(item, defaultness)
1426 }
1427 }
1428 ty::AssocKind::Type { .. } => {
1429 let my_name = assoc_item.name();
1430
1431 fn param_eq_arg(param: &GenericParamDef, arg: &GenericArg) -> bool {
1432 match (¶m.kind, arg) {
1433 (GenericParamDefKind::Type { .. }, GenericArg::Type(Type::Generic(ty)))
1434 if *ty == param.name =>
1435 {
1436 true
1437 }
1438 (GenericParamDefKind::Lifetime { .. }, GenericArg::Lifetime(Lifetime(lt)))
1439 if *lt == param.name =>
1440 {
1441 true
1442 }
1443 (GenericParamDefKind::Const { .. }, GenericArg::Const(c)) => match &**c {
1444 ConstantKind::TyConst { expr } => **expr == *param.name.as_str(),
1445 _ => false,
1446 },
1447 _ => false,
1448 }
1449 }
1450
1451 let mut predicates = tcx.explicit_predicates_of(assoc_item.def_id).predicates;
1452 if let ty::AssocContainer::Trait = assoc_item.container {
1453 let bounds = tcx
1454 .explicit_item_bounds(assoc_item.def_id)
1455 .iter_identity_copied()
1456 .map(Unnormalized::skip_norm_wip);
1457 predicates = tcx.arena.alloc_from_iter(bounds.chain(predicates.iter().copied()));
1458 }
1459 let mut generics = clean_ty_generics_inner(
1460 cx,
1461 tcx.generics_of(assoc_item.def_id),
1462 ty::GenericPredicates { parent: None, predicates },
1463 );
1464 simplify::move_bounds_to_generic_parameters(&mut generics);
1465
1466 if let ty::AssocContainer::Trait = assoc_item.container {
1467 let mut bounds: Vec<GenericBound> = Vec::new();
1472 generics.where_predicates.retain_mut(|pred| match *pred {
1473 WherePredicate::BoundPredicate {
1474 ty:
1475 QPath(box QPathData {
1476 ref assoc,
1477 ref self_type,
1478 trait_: Some(ref trait_),
1479 ..
1480 }),
1481 bounds: ref mut pred_bounds,
1482 ..
1483 } => {
1484 if assoc.name != my_name {
1485 return true;
1486 }
1487 if trait_.def_id() != assoc_item.container_id(tcx) {
1488 return true;
1489 }
1490 if *self_type != SelfTy {
1491 return true;
1492 }
1493 match &assoc.args {
1494 GenericArgs::AngleBracketed { args, constraints } => {
1495 if !constraints.is_empty()
1496 || generics
1497 .params
1498 .iter()
1499 .zip(args.iter())
1500 .any(|(param, arg)| !param_eq_arg(param, arg))
1501 {
1502 return true;
1503 }
1504 }
1505 GenericArgs::Parenthesized { .. } => {
1506 }
1509 GenericArgs::ReturnTypeNotation => {
1510 }
1512 }
1513 bounds.extend(mem::take(pred_bounds));
1514 false
1515 }
1516 _ => true,
1517 });
1518
1519 bounds.retain(|b| {
1520 !b.is_meta_sized_bound(tcx)
1523 });
1524
1525 match bounds.iter().position(|b| b.is_sized_bound(tcx)) {
1531 Some(i) => {
1532 bounds.remove(i);
1533 }
1534 None => bounds.push(GenericBound::maybe_sized(cx)),
1535 }
1536
1537 if tcx.defaultness(assoc_item.def_id).has_value() {
1538 AssocTypeItem(
1539 Box::new(TypeAlias {
1540 type_: clean_middle_ty(
1541 ty::Binder::dummy(
1542 tcx.type_of(assoc_item.def_id)
1543 .instantiate_identity()
1544 .skip_norm_wip(),
1545 ),
1546 cx,
1547 Some(assoc_item.def_id),
1548 None,
1549 ),
1550 generics,
1551 inner_type: None,
1552 item_type: None,
1553 }),
1554 bounds,
1555 )
1556 } else {
1557 RequiredAssocTypeItem(generics, bounds)
1558 }
1559 } else {
1560 AssocTypeItem(
1561 Box::new(TypeAlias {
1562 type_: clean_middle_ty(
1563 ty::Binder::dummy(
1564 tcx.type_of(assoc_item.def_id)
1565 .instantiate_identity()
1566 .skip_norm_wip(),
1567 ),
1568 cx,
1569 Some(assoc_item.def_id),
1570 None,
1571 ),
1572 generics,
1573 inner_type: None,
1574 item_type: None,
1575 }),
1576 Vec::new(),
1579 )
1580 }
1581 }
1582 };
1583
1584 Item::from_def_id_and_parts(assoc_item.def_id, Some(assoc_item.name()), kind, tcx)
1585}
1586
1587fn first_non_private_clean_path<'tcx>(
1588 cx: &mut DocContext<'tcx>,
1589 path: &hir::Path<'tcx>,
1590 new_path_segments: &'tcx [hir::PathSegment<'tcx>],
1591 new_path_span: rustc_span::Span,
1592) -> Path {
1593 let new_hir_path =
1594 hir::Path { segments: new_path_segments, res: path.res, span: new_path_span };
1595 let mut new_clean_path = clean_path(&new_hir_path, cx);
1596 if let Some(path_last) = path.segments.last().as_ref()
1601 && let Some(new_path_last) = new_clean_path.segments[..].last_mut()
1602 && let Some(path_last_args) = path_last.args.as_ref()
1603 && path_last.args.is_some()
1604 {
1605 assert!(new_path_last.args.is_empty());
1606 new_path_last.args = clean_generic_args(None, path_last_args, cx);
1607 }
1608 new_clean_path
1609}
1610
1611fn first_non_private<'tcx>(
1616 cx: &mut DocContext<'tcx>,
1617 hir_id: hir::HirId,
1618 path: &hir::Path<'tcx>,
1619) -> Option<Path> {
1620 let target_def_id = path.res.opt_def_id()?;
1621 let (parent_def_id, ident) = match &path.segments {
1622 [] => return None,
1623 [leaf] => (cx.tcx.local_parent(hir_id.owner.def_id), leaf.ident),
1625 [parent, leaf] if parent.ident.name == kw::SelfLower => {
1627 (cx.tcx.local_parent(hir_id.owner.def_id), leaf.ident)
1628 }
1629 [parent, leaf] if matches!(parent.ident.name, kw::Crate | kw::PathRoot) => {
1631 (LOCAL_CRATE.as_def_id().as_local()?, leaf.ident)
1632 }
1633 [parent, leaf] if parent.ident.name == kw::Super => {
1634 let parent_mod = cx.tcx.parent_module(hir_id);
1635 if let Some(super_parent) = cx.tcx.opt_local_parent(parent_mod.to_local_def_id()) {
1636 (super_parent, leaf.ident)
1637 } else {
1638 (LOCAL_CRATE.as_def_id().as_local()?, leaf.ident)
1640 }
1641 }
1642 [.., parent, leaf] => (parent.res.opt_def_id()?.as_local()?, leaf.ident),
1644 };
1645 for child in
1647 cx.tcx.module_children_local(parent_def_id).iter().filter(move |c| c.ident == ident)
1648 {
1649 if let Res::Def(DefKind::Ctor(..), _) | Res::SelfCtor(..) = child.res {
1650 continue;
1651 }
1652
1653 if let Some(def_id) = child.res.opt_def_id()
1654 && target_def_id == def_id
1655 {
1656 let mut last_path_res = None;
1657 'reexps: for reexp in child.reexport_chain.iter() {
1658 if let Some(use_def_id) = reexp.id()
1659 && let Some(local_use_def_id) = use_def_id.as_local()
1660 && let hir::Node::Item(item) = cx.tcx.hir_node_by_def_id(local_use_def_id)
1661 && let hir::ItemKind::Use(path, hir::UseKind::Single(_)) = item.kind
1662 {
1663 for res in path.res.present_items() {
1664 if let Res::Def(DefKind::Ctor(..), _) | Res::SelfCtor(..) = res {
1665 continue;
1666 }
1667 if (cx.document_hidden() ||
1668 !cx.tcx.is_doc_hidden(use_def_id)) &&
1669 cx.tcx.local_visibility(local_use_def_id).is_public()
1673 {
1674 break 'reexps;
1675 }
1676 last_path_res = Some((path, res));
1677 continue 'reexps;
1678 }
1679 }
1680 }
1681 if !child.reexport_chain.is_empty() {
1682 if let Some((new_path, _)) = last_path_res {
1688 return Some(first_non_private_clean_path(
1689 cx,
1690 path,
1691 new_path.segments,
1692 new_path.span,
1693 ));
1694 }
1695 return None;
1700 }
1701 }
1702 }
1703 None
1704}
1705
1706fn clean_qpath<'tcx>(hir_ty: &hir::Ty<'tcx>, cx: &mut DocContext<'tcx>) -> Type {
1707 let hir::Ty { hir_id, span, ref kind } = *hir_ty;
1708 let hir::TyKind::Path(qpath) = kind else { unreachable!() };
1709
1710 match qpath {
1711 hir::QPath::Resolved(None, path) => {
1712 if let Res::Def(DefKind::TyParam, did) = path.res {
1713 if let Some(new_ty) = cx.args.get(&did).and_then(|p| p.as_ty()).cloned() {
1714 return new_ty;
1715 }
1716 if let Some(bounds) = cx.impl_trait_bounds.remove(&did.into()) {
1717 return ImplTrait(bounds);
1718 }
1719 }
1720
1721 if let Some(expanded) = maybe_expand_private_type_alias(cx, path) {
1722 expanded
1723 } else {
1724 let path = if let Some(path) = first_non_private(cx, hir_id, path) {
1726 path
1727 } else {
1728 clean_path(path, cx)
1729 };
1730 resolve_type(cx, path)
1731 }
1732 }
1733 hir::QPath::Resolved(Some(qself), p) => {
1734 let ty = lower_ty(cx.tcx, hir_ty);
1736 if !ty.has_escaping_bound_vars()
1738 && let Some(normalized_value) = normalize(cx, ty::Binder::dummy(ty))
1739 {
1740 return clean_middle_ty(normalized_value, cx, None, None);
1741 }
1742
1743 let trait_segments = &p.segments[..p.segments.len() - 1];
1744 let trait_def = cx.tcx.parent(p.res.def_id());
1745 let trait_ = self::Path {
1746 res: Res::Def(DefKind::Trait, trait_def),
1747 segments: trait_segments.iter().map(|x| clean_path_segment(x, cx)).collect(),
1748 };
1749 register_res(cx, trait_.res);
1750 let self_def_id = DefId::local(qself.hir_id.owner.def_id.local_def_index);
1751 let self_type = clean_ty(qself, cx);
1752 let should_fully_qualify =
1753 should_fully_qualify_path(Some(self_def_id), &trait_, &self_type);
1754 Type::QPath(Box::new(QPathData {
1755 assoc: clean_path_segment(p.segments.last().expect("segments were empty"), cx),
1756 should_fully_qualify,
1757 self_type,
1758 trait_: Some(trait_),
1759 }))
1760 }
1761 hir::QPath::TypeRelative(qself, segment) => {
1762 let ty = lower_ty(cx.tcx, hir_ty);
1763 let self_type = clean_ty(qself, cx);
1764
1765 let (trait_, should_fully_qualify) = match ty.kind() {
1766 ty::Alias(proj @ ty::AliasTy { kind: ty::Projection { .. }, .. }) => {
1767 let res = Res::Def(DefKind::Trait, proj.trait_ref(cx.tcx).def_id);
1768 let trait_ = clean_path(&hir::Path { span, res, segments: &[] }, cx);
1769 register_res(cx, trait_.res);
1770 let self_def_id = res.opt_def_id();
1771 let should_fully_qualify =
1772 should_fully_qualify_path(self_def_id, &trait_, &self_type);
1773
1774 (Some(trait_), should_fully_qualify)
1775 }
1776 ty::Alias(ty::AliasTy { kind: ty::Inherent { .. }, .. }) => (None, false),
1777 ty::Error(_) => return Type::Infer,
1779 _ => bug!("clean: expected associated type, found `{ty:?}`"),
1780 };
1781
1782 Type::QPath(Box::new(QPathData {
1783 assoc: clean_path_segment(segment, cx),
1784 should_fully_qualify,
1785 self_type,
1786 trait_,
1787 }))
1788 }
1789 }
1790}
1791
1792fn maybe_expand_private_type_alias<'tcx>(
1793 cx: &mut DocContext<'tcx>,
1794 path: &hir::Path<'tcx>,
1795) -> Option<Type> {
1796 let Res::Def(DefKind::TyAlias, def_id) = path.res else { return None };
1797 let def_id = def_id.as_local()?;
1799 let alias = if !cx.cache.effective_visibilities.is_exported(cx.tcx, def_id.to_def_id())
1800 && !cx.current_type_aliases.contains_key(&def_id.to_def_id())
1801 {
1802 &cx.tcx.hir_expect_item(def_id).kind
1803 } else {
1804 return None;
1805 };
1806 let hir::ItemKind::TyAlias(_, generics, ty) = alias else { return None };
1807
1808 let final_seg = &path.segments.last().expect("segments were empty");
1809 let mut args = DefIdMap::default();
1810 let generic_args = final_seg.args();
1811
1812 let mut indices: hir::GenericParamCount = Default::default();
1813 for param in generics.params.iter() {
1814 match param.kind {
1815 hir::GenericParamKind::Lifetime { .. } => {
1816 let mut j = 0;
1817 let lifetime = generic_args.args.iter().find_map(|arg| match arg {
1818 hir::GenericArg::Lifetime(lt) => {
1819 if indices.lifetimes == j {
1820 return Some(lt);
1821 }
1822 j += 1;
1823 None
1824 }
1825 _ => None,
1826 });
1827 if let Some(lt) = lifetime {
1828 let lt = if !lt.is_anonymous() {
1829 clean_lifetime(lt, cx)
1830 } else {
1831 Lifetime::elided()
1832 };
1833 args.insert(param.def_id.to_def_id(), GenericArg::Lifetime(lt));
1834 }
1835 indices.lifetimes += 1;
1836 }
1837 hir::GenericParamKind::Type { ref default, .. } => {
1838 let mut j = 0;
1839 let type_ = generic_args.args.iter().find_map(|arg| match arg {
1840 hir::GenericArg::Type(ty) => {
1841 if indices.types == j {
1842 return Some(ty.as_unambig_ty());
1843 }
1844 j += 1;
1845 None
1846 }
1847 _ => None,
1848 });
1849 if let Some(ty) = type_.or(*default) {
1850 args.insert(param.def_id.to_def_id(), GenericArg::Type(clean_ty(ty, cx)));
1851 }
1852 indices.types += 1;
1853 }
1854 hir::GenericParamKind::Const { .. } => {}
1856 }
1857 }
1858
1859 Some(cx.enter_alias(args, def_id.to_def_id(), |cx| {
1860 cx.with_param_env(def_id.to_def_id(), |cx| clean_ty(ty, cx))
1861 }))
1862}
1863
1864pub(crate) fn clean_ty<'tcx>(ty: &hir::Ty<'tcx>, cx: &mut DocContext<'tcx>) -> Type {
1865 use rustc_hir::*;
1866
1867 match ty.kind {
1868 TyKind::Never => Primitive(PrimitiveType::Never),
1869 TyKind::Ptr(ref m) => RawPointer(m.mutbl, Box::new(clean_ty(m.ty, cx))),
1870 TyKind::Ref(l, ref m) => {
1871 let lifetime = if l.is_anonymous() { None } else { Some(clean_lifetime(l, cx)) };
1872 BorrowedRef { lifetime, mutability: m.mutbl, type_: Box::new(clean_ty(m.ty, cx)) }
1873 }
1874 TyKind::Slice(ty) => Slice(Box::new(clean_ty(ty, cx))),
1875 TyKind::Pat(inner_ty, pat) => {
1876 let pat = match lower_ty(cx.tcx, ty).kind() {
1879 ty::Pat(_, pat) => format!("{pat:?}").into_boxed_str(),
1880 _ => format!("{pat:?}").into(),
1881 };
1882 Type::Pat(Box::new(clean_ty(inner_ty, cx)), pat)
1883 }
1884 TyKind::FieldOf(ty, hir::TyFieldPath { variant, field }) => {
1885 let field_str = if let Some(variant) = variant {
1886 format!("{variant}.{field}")
1887 } else {
1888 format!("{field}")
1889 };
1890 Type::FieldOf(Box::new(clean_ty(ty, cx)), field_str.into())
1891 }
1892 TyKind::Array(ty, const_arg) => {
1893 let length = match const_arg.kind {
1901 hir::ConstArgKind::Infer(..) | hir::ConstArgKind::Error(..) => "_".to_string(),
1902 hir::ConstArgKind::Anon(hir::AnonConst { def_id, .. }) => {
1903 let ct = lower_const_arg_for_rustdoc(cx.tcx, const_arg, cx.tcx.types.usize);
1904 let typing_env = ty::TypingEnv::post_analysis(cx.tcx, *def_id);
1905 let ct =
1906 cx.tcx.normalize_erasing_regions(typing_env, Unnormalized::new_wip(ct));
1907 print_const(cx.tcx, ct)
1908 }
1909 hir::ConstArgKind::Struct(..)
1910 | hir::ConstArgKind::Path(..)
1911 | hir::ConstArgKind::TupleCall(..)
1912 | hir::ConstArgKind::Tup(..)
1913 | hir::ConstArgKind::Array(..)
1914 | hir::ConstArgKind::Literal { .. } => {
1915 let ct = lower_const_arg_for_rustdoc(cx.tcx, const_arg, cx.tcx.types.usize);
1916 print_const(cx.tcx, ct)
1917 }
1918 };
1919 Array(Box::new(clean_ty(ty, cx)), length.into())
1920 }
1921 TyKind::Tup(tys) => Tuple(tys.iter().map(|ty| clean_ty(ty, cx)).collect()),
1922 TyKind::OpaqueDef(ty) => {
1923 ImplTrait(ty.bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect())
1924 }
1925 TyKind::Path(_) => clean_qpath(ty, cx),
1926 TyKind::TraitObject(bounds, lifetime) => {
1927 let bounds = bounds.iter().map(|bound| clean_poly_trait_ref(bound, cx)).collect();
1928 let lifetime = if !lifetime.is_elided() {
1929 Some(clean_lifetime(lifetime.pointer(), cx))
1930 } else {
1931 None
1932 };
1933 DynTrait(bounds, lifetime)
1934 }
1935 TyKind::FnPtr(barefn) => BareFunction(Box::new(clean_bare_fn_ty(barefn, cx))),
1936 TyKind::UnsafeBinder(unsafe_binder_ty) => {
1937 UnsafeBinder(Box::new(clean_unsafe_binder_ty(unsafe_binder_ty, cx)))
1938 }
1939 TyKind::Infer(())
1941 | TyKind::Err(_)
1942 | TyKind::InferDelegation(..)
1943 | TyKind::TraitAscription(_) => Infer,
1944 }
1945}
1946
1947fn normalize<'tcx>(
1949 cx: &DocContext<'tcx>,
1950 ty: ty::Binder<'tcx, Ty<'tcx>>,
1951) -> Option<ty::Binder<'tcx, Ty<'tcx>>> {
1952 if !cx.tcx.sess.opts.unstable_opts.normalize_docs {
1954 return None;
1955 }
1956
1957 use rustc_middle::traits::ObligationCause;
1958 use rustc_trait_selection::infer::TyCtxtInferExt;
1959 use rustc_trait_selection::traits::query::normalize::QueryNormalizeExt;
1960
1961 let infcx = cx.tcx.infer_ctxt().build(TypingMode::non_body_analysis());
1963 let normalized = infcx
1964 .at(&ObligationCause::dummy(), cx.param_env)
1965 .query_normalize(ty)
1966 .map(|resolved| infcx.resolve_vars_if_possible(resolved.value));
1967 match normalized {
1968 Ok(normalized_value) => {
1969 debug!("normalized {ty:?} to {normalized_value:?}");
1970 Some(normalized_value)
1971 }
1972 Err(err) => {
1973 debug!("failed to normalize {ty:?}: {err:?}");
1974 None
1975 }
1976 }
1977}
1978
1979fn clean_trait_object_lifetime_bound<'tcx>(
1980 region: ty::Region<'tcx>,
1981 container: Option<ContainerTy<'_, 'tcx>>,
1982 preds: &'tcx ty::List<ty::PolyExistentialPredicate<'tcx>>,
1983 tcx: TyCtxt<'tcx>,
1984) -> Option<Lifetime> {
1985 if can_elide_trait_object_lifetime_bound(region, container, preds, tcx) {
1986 return None;
1987 }
1988
1989 match region.kind() {
1993 ty::ReStatic => Some(Lifetime::statik()),
1994 ty::ReEarlyParam(region) => Some(Lifetime(region.name)),
1995 ty::ReBound(_, ty::BoundRegion { kind: ty::BoundRegionKind::Named(def_id), .. }) => {
1996 Some(Lifetime(tcx.item_name(def_id)))
1997 }
1998 ty::ReBound(..)
1999 | ty::ReLateParam(_)
2000 | ty::ReVar(_)
2001 | ty::RePlaceholder(_)
2002 | ty::ReErased
2003 | ty::ReError(_) => None,
2004 }
2005}
2006
2007fn can_elide_trait_object_lifetime_bound<'tcx>(
2008 region: ty::Region<'tcx>,
2009 container: Option<ContainerTy<'_, 'tcx>>,
2010 preds: &'tcx ty::List<ty::PolyExistentialPredicate<'tcx>>,
2011 tcx: TyCtxt<'tcx>,
2012) -> bool {
2013 let default = container
2018 .map_or(ObjectLifetimeDefault::Empty, |container| container.object_lifetime_default(tcx));
2019
2020 match default {
2023 ObjectLifetimeDefault::Static => return region.kind() == ty::ReStatic,
2024 ObjectLifetimeDefault::Arg(default) => {
2026 return region.get_name(tcx) == default.get_name(tcx);
2027 }
2028 ObjectLifetimeDefault::Ambiguous => return false,
2032 ObjectLifetimeDefault::Empty => {}
2034 }
2035
2036 match *object_region_bounds(tcx, preds) {
2038 [] => region.kind() == ty::ReStatic,
2046 [object_region] => object_region.get_name(tcx) == region.get_name(tcx),
2050 _ => false,
2054 }
2055}
2056
2057#[derive(Debug)]
2058pub(crate) enum ContainerTy<'a, 'tcx> {
2059 Ref(ty::Region<'tcx>),
2060 Regular {
2061 ty: DefId,
2062 args: ty::Binder<'tcx, &'a [ty::GenericArg<'tcx>]>,
2065 arg: usize,
2066 },
2067}
2068
2069impl<'tcx> ContainerTy<'_, 'tcx> {
2070 fn object_lifetime_default(self, tcx: TyCtxt<'tcx>) -> ObjectLifetimeDefault<'tcx> {
2071 match self {
2072 Self::Ref(region) => ObjectLifetimeDefault::Arg(region),
2073 Self::Regular { ty: container, args, arg: index } => {
2074 let (DefKind::Struct
2075 | DefKind::Union
2076 | DefKind::Enum
2077 | DefKind::TyAlias
2078 | DefKind::Trait) = tcx.def_kind(container)
2079 else {
2080 return ObjectLifetimeDefault::Empty;
2081 };
2082
2083 let generics = tcx.generics_of(container);
2084 debug_assert_eq!(generics.parent_count, 0);
2085
2086 let param = generics.own_params[index].def_id;
2087 let default = tcx.object_lifetime_default(param);
2088 match default {
2089 rbv::ObjectLifetimeDefault::Param(lifetime) => {
2090 let index = generics.param_def_id_to_index[&lifetime];
2093 let arg = args.skip_binder()[index as usize].expect_region();
2094 ObjectLifetimeDefault::Arg(arg)
2095 }
2096 rbv::ObjectLifetimeDefault::Empty => ObjectLifetimeDefault::Empty,
2097 rbv::ObjectLifetimeDefault::Static => ObjectLifetimeDefault::Static,
2098 rbv::ObjectLifetimeDefault::Ambiguous => ObjectLifetimeDefault::Ambiguous,
2099 }
2100 }
2101 }
2102 }
2103}
2104
2105#[derive(Debug, Clone, Copy)]
2106pub(crate) enum ObjectLifetimeDefault<'tcx> {
2107 Empty,
2108 Static,
2109 Ambiguous,
2110 Arg(ty::Region<'tcx>),
2111}
2112
2113#[instrument(level = "trace", skip(cx), ret)]
2114pub(crate) fn clean_middle_ty<'tcx>(
2115 bound_ty: ty::Binder<'tcx, Ty<'tcx>>,
2116 cx: &mut DocContext<'tcx>,
2117 parent_def_id: Option<DefId>,
2118 container: Option<ContainerTy<'_, 'tcx>>,
2119) -> Type {
2120 let bound_ty = normalize(cx, bound_ty).unwrap_or(bound_ty);
2121 match *bound_ty.skip_binder().kind() {
2122 ty::Never => Primitive(PrimitiveType::Never),
2123 ty::Bool => Primitive(PrimitiveType::Bool),
2124 ty::Char => Primitive(PrimitiveType::Char),
2125 ty::Int(int_ty) => Primitive(int_ty.into()),
2126 ty::Uint(uint_ty) => Primitive(uint_ty.into()),
2127 ty::Float(float_ty) => Primitive(float_ty.into()),
2128 ty::Str => Primitive(PrimitiveType::Str),
2129 ty::Slice(ty) => Slice(Box::new(clean_middle_ty(bound_ty.rebind(ty), cx, None, None))),
2130 ty::Pat(ty, pat) => Type::Pat(
2131 Box::new(clean_middle_ty(bound_ty.rebind(ty), cx, None, None)),
2132 format!("{pat:?}").into_boxed_str(),
2133 ),
2134 ty::Array(ty, n) => {
2135 let n = cx.tcx.normalize_erasing_regions(cx.typing_env(), Unnormalized::new_wip(n));
2136 let n = print_const(cx.tcx, n);
2137 Array(Box::new(clean_middle_ty(bound_ty.rebind(ty), cx, None, None)), n.into())
2138 }
2139 ty::RawPtr(ty, mutbl) => {
2140 RawPointer(mutbl, Box::new(clean_middle_ty(bound_ty.rebind(ty), cx, None, None)))
2141 }
2142 ty::Ref(r, ty, mutbl) => BorrowedRef {
2143 lifetime: clean_middle_region(r, cx.tcx),
2144 mutability: mutbl,
2145 type_: Box::new(clean_middle_ty(
2146 bound_ty.rebind(ty),
2147 cx,
2148 None,
2149 Some(ContainerTy::Ref(r)),
2150 )),
2151 },
2152 ty::FnDef(..) | ty::FnPtr(..) => {
2153 let sig = bound_ty.skip_binder().fn_sig(cx.tcx);
2155 let decl = clean_poly_fn_sig(cx, None, sig);
2156 let generic_params = clean_bound_vars(sig.bound_vars(), cx.tcx);
2157
2158 BareFunction(Box::new(BareFunctionDecl {
2159 safety: sig.safety(),
2160 generic_params,
2161 decl,
2162 abi: sig.abi(),
2163 }))
2164 }
2165 ty::UnsafeBinder(inner) => {
2166 let generic_params = clean_bound_vars(inner.bound_vars(), cx.tcx);
2167 let ty = clean_middle_ty(inner.into(), cx, None, None);
2168 UnsafeBinder(Box::new(UnsafeBinderTy { generic_params, ty }))
2169 }
2170 ty::Adt(def, args) => {
2171 let did = def.did();
2172 let kind = match def.adt_kind() {
2173 AdtKind::Struct => ItemType::Struct,
2174 AdtKind::Union => ItemType::Union,
2175 AdtKind::Enum => ItemType::Enum,
2176 };
2177 inline::record_extern_fqn(cx, did, kind);
2178 let path = clean_middle_path(cx, did, false, ThinVec::new(), bound_ty.rebind(args));
2179 Type::Path { path }
2180 }
2181 ty::Foreign(did) => {
2182 inline::record_extern_fqn(cx, did, ItemType::ForeignType);
2183 let path = clean_middle_path(
2184 cx,
2185 did,
2186 false,
2187 ThinVec::new(),
2188 ty::Binder::dummy(ty::GenericArgs::empty()),
2189 );
2190 Type::Path { path }
2191 }
2192 ty::Dynamic(obj, reg) => {
2193 let mut dids = obj.auto_traits();
2197 let did = obj
2198 .principal_def_id()
2199 .or_else(|| dids.next())
2200 .unwrap_or_else(|| panic!("found trait object `{bound_ty:?}` with no traits?"));
2201 let args = match obj.principal() {
2202 Some(principal) => principal.map_bound(|p| p.args),
2203 _ => ty::Binder::dummy(ty::GenericArgs::empty()),
2205 };
2206
2207 inline::record_extern_fqn(cx, did, ItemType::Trait);
2208
2209 let lifetime = clean_trait_object_lifetime_bound(reg, container, obj, cx.tcx);
2210
2211 let mut bounds = dids
2212 .map(|did| {
2213 let empty = ty::Binder::dummy(ty::GenericArgs::empty());
2214 let path = clean_middle_path(cx, did, false, ThinVec::new(), empty);
2215 inline::record_extern_fqn(cx, did, ItemType::Trait);
2216 PolyTrait { trait_: path, generic_params: Vec::new() }
2217 })
2218 .collect::<Vec<_>>();
2219
2220 let constraints = obj
2221 .projection_bounds()
2222 .map(|pb| AssocItemConstraint {
2223 assoc: projection_to_path_segment(
2224 pb.map_bound(|pb| {
2225 pb.with_self_ty(cx.tcx, cx.tcx.types.trait_object_dummy_self)
2226 .projection_term
2227 }),
2228 cx,
2229 ),
2230 kind: AssocItemConstraintKind::Equality {
2231 term: clean_middle_term(pb.map_bound(|pb| pb.term), cx),
2232 },
2233 })
2234 .collect();
2235
2236 let late_bound_regions: FxIndexSet<_> = obj
2237 .iter()
2238 .flat_map(|pred| pred.bound_vars())
2239 .filter_map(|var| match var {
2240 ty::BoundVariableKind::Region(ty::BoundRegionKind::Named(def_id)) => {
2241 let name = cx.tcx.item_name(def_id);
2242 if name != kw::UnderscoreLifetime {
2243 Some(GenericParamDef::lifetime(def_id, name))
2244 } else {
2245 None
2246 }
2247 }
2248 _ => None,
2249 })
2250 .collect();
2251 let late_bound_regions = late_bound_regions.into_iter().collect();
2252
2253 let path = clean_middle_path(cx, did, false, constraints, args);
2254 bounds.insert(0, PolyTrait { trait_: path, generic_params: late_bound_regions });
2255
2256 DynTrait(bounds, lifetime)
2257 }
2258 ty::Tuple(t) => {
2259 Tuple(t.iter().map(|t| clean_middle_ty(bound_ty.rebind(t), cx, None, None)).collect())
2260 }
2261
2262 ty::Alias(alias_ty @ ty::AliasTy { kind: ty::Projection { def_id }, args, .. }) => {
2263 if cx.tcx.is_impl_trait_in_trait(def_id) {
2264 clean_middle_opaque_bounds(cx, def_id, args)
2265 } else {
2266 Type::QPath(Box::new(clean_projection(
2267 bound_ty.rebind(alias_ty.into()),
2268 cx,
2269 parent_def_id,
2270 )))
2271 }
2272 }
2273
2274 ty::Alias(alias_ty @ ty::AliasTy { kind: ty::Inherent { def_id }, .. }) => {
2275 let alias_ty = bound_ty.rebind(alias_ty);
2276 let self_type = clean_middle_ty(alias_ty.map_bound(|ty| ty.self_ty()), cx, None, None);
2277
2278 Type::QPath(Box::new(QPathData {
2279 assoc: PathSegment {
2280 name: cx.tcx.item_name(def_id),
2281 args: GenericArgs::AngleBracketed {
2282 args: clean_middle_generic_args(
2283 cx,
2284 alias_ty.map_bound(|ty| ty.args.as_slice()),
2285 true,
2286 def_id,
2287 ),
2288 constraints: Default::default(),
2289 },
2290 },
2291 should_fully_qualify: false,
2292 self_type,
2293 trait_: None,
2294 }))
2295 }
2296
2297 ty::Alias(ty::AliasTy { kind: ty::Free { def_id }, args, .. }) => {
2298 if cx.tcx.features().lazy_type_alias() {
2299 let path =
2302 clean_middle_path(cx, def_id, false, ThinVec::new(), bound_ty.rebind(args));
2303 Type::Path { path }
2304 } else {
2305 let ty = cx.tcx.type_of(def_id).instantiate(cx.tcx, args).skip_norm_wip();
2306 clean_middle_ty(bound_ty.rebind(ty), cx, None, None)
2307 }
2308 }
2309
2310 ty::Param(ref p) => {
2311 if let Some(bounds) = cx.impl_trait_bounds.remove(&p.index.into()) {
2312 ImplTrait(bounds)
2313 } else if p.name == kw::SelfUpper {
2314 SelfTy
2315 } else {
2316 Generic(p.name)
2317 }
2318 }
2319
2320 ty::Bound(_, ref ty) => match ty.kind {
2321 ty::BoundTyKind::Param(def_id) => Generic(cx.tcx.item_name(def_id)),
2322 ty::BoundTyKind::Anon => panic!("unexpected anonymous bound type variable"),
2323 },
2324
2325 ty::Alias(ty::AliasTy { kind: ty::Opaque { def_id }, args, .. }) => {
2326 if cx.current_type_aliases.contains_key(&def_id) {
2328 let path =
2329 clean_middle_path(cx, def_id, false, ThinVec::new(), bound_ty.rebind(args));
2330 Type::Path { path }
2331 } else {
2332 *cx.current_type_aliases.entry(def_id).or_insert(0) += 1;
2333 let ty = clean_middle_opaque_bounds(cx, def_id, args);
2336 if let Some(count) = cx.current_type_aliases.get_mut(&def_id) {
2337 *count -= 1;
2338 if *count == 0 {
2339 cx.current_type_aliases.remove(&def_id);
2340 }
2341 }
2342 ty
2343 }
2344 }
2345
2346 ty::Closure(..) => panic!("Closure"),
2347 ty::CoroutineClosure(..) => panic!("CoroutineClosure"),
2348 ty::Coroutine(..) => panic!("Coroutine"),
2349 ty::Placeholder(..) => panic!("Placeholder"),
2350 ty::CoroutineWitness(..) => panic!("CoroutineWitness"),
2351 ty::Infer(..) => panic!("Infer"),
2352
2353 ty::Error(_) => FatalError.raise(),
2354 }
2355}
2356
2357fn clean_middle_opaque_bounds<'tcx>(
2358 cx: &mut DocContext<'tcx>,
2359 impl_trait_def_id: DefId,
2360 args: ty::GenericArgsRef<'tcx>,
2361) -> Type {
2362 let mut has_sized = false;
2363
2364 let bounds: Vec<_> = cx
2365 .tcx
2366 .explicit_item_bounds(impl_trait_def_id)
2367 .iter_instantiated_copied(cx.tcx, args)
2368 .map(Unnormalized::skip_norm_wip)
2369 .collect();
2370
2371 let mut bounds = bounds
2372 .iter()
2373 .filter_map(|(bound, _)| {
2374 let bound_predicate = bound.kind();
2375 let trait_ref = match bound_predicate.skip_binder() {
2376 ty::ClauseKind::Trait(tr) => bound_predicate.rebind(tr.trait_ref),
2377 ty::ClauseKind::TypeOutlives(ty::OutlivesPredicate(_ty, reg)) => {
2378 return clean_middle_region(reg, cx.tcx).map(GenericBound::Outlives);
2379 }
2380 _ => return None,
2381 };
2382
2383 if cx.tcx.is_lang_item(trait_ref.def_id(), LangItem::MetaSized) {
2386 return None;
2387 }
2388
2389 if let Some(sized) = cx.tcx.lang_items().sized_trait()
2390 && trait_ref.def_id() == sized
2391 {
2392 has_sized = true;
2393 return None;
2394 }
2395
2396 let bindings: ThinVec<_> = bounds
2397 .iter()
2398 .filter_map(|(bound, _)| {
2399 let bound = bound.kind();
2400 if let ty::ClauseKind::Projection(proj_pred) = bound.skip_binder()
2401 && proj_pred.projection_term.trait_ref(cx.tcx) == trait_ref.skip_binder()
2402 {
2403 return Some(AssocItemConstraint {
2404 assoc: projection_to_path_segment(
2405 bound.rebind(proj_pred.projection_term),
2406 cx,
2407 ),
2408 kind: AssocItemConstraintKind::Equality {
2409 term: clean_middle_term(bound.rebind(proj_pred.term), cx),
2410 },
2411 });
2412 }
2413 None
2414 })
2415 .collect();
2416
2417 Some(clean_poly_trait_ref_with_constraints(cx, trait_ref, bindings))
2418 })
2419 .collect::<Vec<_>>();
2420
2421 if !has_sized {
2422 bounds.push(GenericBound::maybe_sized(cx));
2423 }
2424
2425 bounds.sort_by_key(|b| !b.is_trait_bound());
2427
2428 if bounds.first().is_none_or(|b| !b.is_trait_bound()) {
2431 bounds.insert(0, GenericBound::sized(cx));
2432 }
2433
2434 if let Some(args) = cx.tcx.rendered_precise_capturing_args(impl_trait_def_id) {
2435 bounds.push(GenericBound::Use(
2436 args.iter()
2437 .map(|arg| match arg {
2438 hir::PreciseCapturingArgKind::Lifetime(lt) => {
2439 PreciseCapturingArg::Lifetime(Lifetime(*lt))
2440 }
2441 hir::PreciseCapturingArgKind::Param(param) => {
2442 PreciseCapturingArg::Param(*param)
2443 }
2444 })
2445 .collect(),
2446 ));
2447 }
2448
2449 ImplTrait(bounds)
2450}
2451
2452pub(crate) fn clean_field<'tcx>(field: &hir::FieldDef<'tcx>, cx: &mut DocContext<'tcx>) -> Item {
2453 clean_field_with_def_id(
2454 field.def_id.to_def_id(),
2455 field.ident.name,
2456 clean_ty(field.ty, cx),
2457 cx.tcx,
2458 )
2459}
2460
2461pub(crate) fn clean_middle_field(field: &ty::FieldDef, cx: &mut DocContext<'_>) -> Item {
2462 clean_field_with_def_id(
2463 field.did,
2464 field.name,
2465 clean_middle_ty(
2466 ty::Binder::dummy(cx.tcx.type_of(field.did).instantiate_identity().skip_norm_wip()),
2467 cx,
2468 Some(field.did),
2469 None,
2470 ),
2471 cx.tcx,
2472 )
2473}
2474
2475pub(crate) fn clean_field_with_def_id(
2476 def_id: DefId,
2477 name: Symbol,
2478 ty: Type,
2479 tcx: TyCtxt<'_>,
2480) -> Item {
2481 Item::from_def_id_and_parts(def_id, Some(name), StructFieldItem(ty), tcx)
2482}
2483
2484pub(crate) fn clean_variant_def(variant: &ty::VariantDef, cx: &mut DocContext<'_>) -> Item {
2485 let discriminant = match variant.discr {
2486 ty::VariantDiscr::Explicit(def_id) => Some(Discriminant { expr: None, value: def_id }),
2487 ty::VariantDiscr::Relative(_) => None,
2488 };
2489
2490 let kind = match variant.ctor_kind() {
2491 Some(CtorKind::Const) => VariantKind::CLike,
2492 Some(CtorKind::Fn) => VariantKind::Tuple(
2493 variant.fields.iter().map(|field| clean_middle_field(field, cx)).collect(),
2494 ),
2495 None => VariantKind::Struct(VariantStruct {
2496 fields: variant.fields.iter().map(|field| clean_middle_field(field, cx)).collect(),
2497 }),
2498 };
2499
2500 Item::from_def_id_and_parts(
2501 variant.def_id,
2502 Some(variant.name),
2503 VariantItem(Variant { kind, discriminant }),
2504 cx.tcx,
2505 )
2506}
2507
2508pub(crate) fn clean_variant_def_with_args<'tcx>(
2509 variant: &ty::VariantDef,
2510 args: &GenericArgsRef<'tcx>,
2511 cx: &mut DocContext<'tcx>,
2512) -> Item {
2513 let discriminant = match variant.discr {
2514 ty::VariantDiscr::Explicit(def_id) => Some(Discriminant { expr: None, value: def_id }),
2515 ty::VariantDiscr::Relative(_) => None,
2516 };
2517
2518 use rustc_middle::traits::ObligationCause;
2519 use rustc_trait_selection::infer::TyCtxtInferExt;
2520 use rustc_trait_selection::traits::query::normalize::QueryNormalizeExt;
2521
2522 let infcx = cx.tcx.infer_ctxt().build(TypingMode::non_body_analysis());
2523 let kind = match variant.ctor_kind() {
2524 Some(CtorKind::Const) => VariantKind::CLike,
2525 Some(CtorKind::Fn) => VariantKind::Tuple(
2526 variant
2527 .fields
2528 .iter()
2529 .map(|field| {
2530 let ty = cx.tcx.type_of(field.did).instantiate(cx.tcx, args).skip_norm_wip();
2531
2532 let ty = infcx
2536 .at(&ObligationCause::dummy(), cx.param_env)
2537 .query_normalize(ty)
2538 .map(|normalized| normalized.value)
2539 .unwrap_or(ty);
2540
2541 clean_field_with_def_id(
2542 field.did,
2543 field.name,
2544 clean_middle_ty(ty::Binder::dummy(ty), cx, Some(field.did), None),
2545 cx.tcx,
2546 )
2547 })
2548 .collect(),
2549 ),
2550 None => VariantKind::Struct(VariantStruct {
2551 fields: variant
2552 .fields
2553 .iter()
2554 .map(|field| {
2555 let ty = cx.tcx.type_of(field.did).instantiate(cx.tcx, args).skip_norm_wip();
2556
2557 let ty = infcx
2561 .at(&ObligationCause::dummy(), cx.param_env)
2562 .query_normalize(ty)
2563 .map(|normalized| normalized.value)
2564 .unwrap_or(ty);
2565
2566 clean_field_with_def_id(
2567 field.did,
2568 field.name,
2569 clean_middle_ty(ty::Binder::dummy(ty), cx, Some(field.did), None),
2570 cx.tcx,
2571 )
2572 })
2573 .collect(),
2574 }),
2575 };
2576
2577 Item::from_def_id_and_parts(
2578 variant.def_id,
2579 Some(variant.name),
2580 VariantItem(Variant { kind, discriminant }),
2581 cx.tcx,
2582 )
2583}
2584
2585fn clean_variant_data<'tcx>(
2586 variant: &hir::VariantData<'tcx>,
2587 disr_expr: &Option<&hir::AnonConst>,
2588 cx: &mut DocContext<'tcx>,
2589) -> Variant {
2590 let discriminant = disr_expr
2591 .map(|disr| Discriminant { expr: Some(disr.body), value: disr.def_id.to_def_id() });
2592
2593 let kind = match variant {
2594 hir::VariantData::Struct { fields, .. } => VariantKind::Struct(VariantStruct {
2595 fields: fields.iter().map(|x| clean_field(x, cx)).collect(),
2596 }),
2597 hir::VariantData::Tuple(..) => {
2598 VariantKind::Tuple(variant.fields().iter().map(|x| clean_field(x, cx)).collect())
2599 }
2600 hir::VariantData::Unit(..) => VariantKind::CLike,
2601 };
2602
2603 Variant { discriminant, kind }
2604}
2605
2606fn clean_path<'tcx>(path: &hir::Path<'tcx>, cx: &mut DocContext<'tcx>) -> Path {
2607 Path {
2608 res: path.res,
2609 segments: path.segments.iter().map(|x| clean_path_segment(x, cx)).collect(),
2610 }
2611}
2612
2613fn clean_generic_args<'tcx>(
2614 trait_did: Option<DefId>,
2615 generic_args: &hir::GenericArgs<'tcx>,
2616 cx: &mut DocContext<'tcx>,
2617) -> GenericArgs {
2618 match generic_args.parenthesized {
2619 hir::GenericArgsParentheses::No => {
2620 let args = generic_args
2621 .args
2622 .iter()
2623 .map(|arg| match arg {
2624 hir::GenericArg::Lifetime(lt) if !lt.is_anonymous() => {
2625 GenericArg::Lifetime(clean_lifetime(lt, cx))
2626 }
2627 hir::GenericArg::Lifetime(_) => GenericArg::Lifetime(Lifetime::elided()),
2628 hir::GenericArg::Type(ty) => GenericArg::Type(clean_ty(ty.as_unambig_ty(), cx)),
2629 hir::GenericArg::Const(ct) => {
2630 GenericArg::Const(Box::new(clean_const(ct.as_unambig_ct())))
2631 }
2632 hir::GenericArg::Infer(_inf) => GenericArg::Infer,
2633 })
2634 .collect();
2635 let constraints = generic_args
2636 .constraints
2637 .iter()
2638 .map(|c| {
2639 clean_assoc_item_constraint(
2640 trait_did.expect("only trait ref has constraints"),
2641 c,
2642 cx,
2643 )
2644 })
2645 .collect::<ThinVec<_>>();
2646 GenericArgs::AngleBracketed { args, constraints }
2647 }
2648 hir::GenericArgsParentheses::ParenSugar => {
2649 let Some((inputs, output)) = generic_args.paren_sugar_inputs_output() else {
2650 bug!();
2651 };
2652 let inputs = inputs.iter().map(|x| clean_ty(x, cx)).collect();
2653 let output = match output.kind {
2654 hir::TyKind::Tup(&[]) => None,
2655 _ => Some(Box::new(clean_ty(output, cx))),
2656 };
2657 GenericArgs::Parenthesized { inputs, output }
2658 }
2659 hir::GenericArgsParentheses::ReturnTypeNotation => GenericArgs::ReturnTypeNotation,
2660 }
2661}
2662
2663fn clean_path_segment<'tcx>(
2664 path: &hir::PathSegment<'tcx>,
2665 cx: &mut DocContext<'tcx>,
2666) -> PathSegment {
2667 let trait_did = match path.res {
2668 hir::def::Res::Def(DefKind::Trait | DefKind::TraitAlias, did) => Some(did),
2669 _ => None,
2670 };
2671 PathSegment { name: path.ident.name, args: clean_generic_args(trait_did, path.args(), cx) }
2672}
2673
2674fn clean_bare_fn_ty<'tcx>(
2675 bare_fn: &hir::FnPtrTy<'tcx>,
2676 cx: &mut DocContext<'tcx>,
2677) -> BareFunctionDecl {
2678 let (generic_params, decl) = enter_impl_trait(cx, |cx| {
2679 let generic_params = bare_fn
2681 .generic_params
2682 .iter()
2683 .filter(|p| !is_elided_lifetime(p))
2684 .map(|x| clean_generic_param(cx, None, x))
2685 .collect();
2686 let filter = |ident: Option<Ident>| {
2690 ident.map(|ident| ident.name).filter(|&ident| ident != kw::Underscore)
2691 };
2692 let fallback =
2693 bare_fn.param_idents.iter().copied().find_map(filter).map(|_| kw::Underscore);
2694 let params = clean_params(cx, bare_fn.decl.inputs, bare_fn.param_idents, |ident| {
2695 filter(ident).or(fallback)
2696 });
2697 let decl = clean_fn_decl_with_params(cx, bare_fn.decl, None, params);
2698 (generic_params, decl)
2699 });
2700 BareFunctionDecl { safety: bare_fn.safety, abi: bare_fn.abi, decl, generic_params }
2701}
2702
2703fn clean_unsafe_binder_ty<'tcx>(
2704 unsafe_binder_ty: &hir::UnsafeBinderTy<'tcx>,
2705 cx: &mut DocContext<'tcx>,
2706) -> UnsafeBinderTy {
2707 let generic_params = unsafe_binder_ty
2708 .generic_params
2709 .iter()
2710 .filter(|p| !is_elided_lifetime(p))
2711 .map(|x| clean_generic_param(cx, None, x))
2712 .collect();
2713 let ty = clean_ty(unsafe_binder_ty.inner_ty, cx);
2714 UnsafeBinderTy { generic_params, ty }
2715}
2716
2717pub(crate) fn reexport_chain(
2718 tcx: TyCtxt<'_>,
2719 import_def_id: LocalDefId,
2720 target_def_id: DefId,
2721) -> &[Reexport] {
2722 for child in tcx.module_children_local(tcx.local_parent(import_def_id)) {
2723 if child.res.opt_def_id() == Some(target_def_id)
2724 && child.reexport_chain.first().and_then(|r| r.id()) == Some(import_def_id.to_def_id())
2725 {
2726 return &child.reexport_chain;
2727 }
2728 }
2729 &[]
2730}
2731
2732fn get_all_import_attributes<'hir>(
2734 cx: &mut DocContext<'hir>,
2735 import_def_id: LocalDefId,
2736 target_def_id: DefId,
2737 is_inline: bool,
2738) -> Vec<(Cow<'hir, hir::Attribute>, Option<DefId>)> {
2739 let mut attrs = Vec::new();
2740 let mut first = true;
2741 for def_id in reexport_chain(cx.tcx, import_def_id, target_def_id)
2742 .iter()
2743 .flat_map(|reexport| reexport.id())
2744 {
2745 let import_attrs = inline::load_attrs(cx.tcx, def_id);
2746 if first {
2747 attrs = import_attrs.iter().map(|attr| (Cow::Borrowed(attr), Some(def_id))).collect();
2749 first = false;
2750 } else if cx.document_hidden() || !cx.tcx.is_doc_hidden(def_id) {
2752 add_without_unwanted_attributes(&mut attrs, import_attrs, is_inline, Some(def_id));
2753 }
2754 }
2755 attrs
2756}
2757
2758fn add_without_unwanted_attributes<'hir>(
2779 attrs: &mut Vec<(Cow<'hir, hir::Attribute>, Option<DefId>)>,
2780 new_attrs: &'hir [hir::Attribute],
2781 is_inline: bool,
2782 import_parent: Option<DefId>,
2783) {
2784 for attr in new_attrs {
2785 match attr {
2786 hir::Attribute::Parsed(AttributeKind::DocComment { .. }) => {
2787 attrs.push((Cow::Borrowed(attr), import_parent));
2788 }
2789 hir::Attribute::Parsed(AttributeKind::Doc(box d)) => {
2790 let DocAttribute {
2792 first_span: _,
2793 aliases,
2794 hidden,
2795 inline,
2796 cfg,
2797 auto_cfg: _,
2798 auto_cfg_change: _,
2799 fake_variadic: _,
2800 keyword: _,
2801 attribute: _,
2802 masked: _,
2803 notable_trait: _,
2804 search_unbox: _,
2805 html_favicon_url: _,
2806 html_logo_url: _,
2807 html_playground_url: _,
2808 html_root_url: _,
2809 html_no_source: _,
2810 issue_tracker_base_url: _,
2811 rust_logo: _,
2812 test_attrs: _,
2813 no_crate_inject: _,
2814 } = d;
2815 let mut attr = DocAttribute::default();
2816 if is_inline {
2817 attr.cfg = cfg.clone();
2818 } else {
2819 attr.inline = inline.clone();
2820 attr.hidden = hidden.clone();
2821 }
2822 attr.aliases = aliases.clone();
2823 attrs.push((
2824 Cow::Owned(hir::Attribute::Parsed(AttributeKind::Doc(Box::new(attr)))),
2825 import_parent,
2826 ));
2827 }
2828
2829 hir::Attribute::Parsed(AttributeKind::CfgTrace(..)) if !is_inline => {}
2831 _ => {
2833 attrs.push((Cow::Borrowed(attr), import_parent));
2834 }
2835 }
2836 }
2837}
2838
2839fn clean_maybe_renamed_item<'tcx>(
2840 cx: &mut DocContext<'tcx>,
2841 item: &hir::Item<'tcx>,
2842 renamed: Option<Symbol>,
2843 import_ids: &[LocalDefId],
2844) -> Vec<Item> {
2845 use hir::ItemKind;
2846 fn get_name(tcx: TyCtxt<'_>, item: &hir::Item<'_>, renamed: Option<Symbol>) -> Option<Symbol> {
2847 renamed.or_else(|| tcx.hir_opt_name(item.hir_id()))
2848 }
2849
2850 let def_id = item.owner_id.to_def_id();
2851 cx.with_param_env(def_id, |cx| {
2852 match item.kind {
2855 ItemKind::Impl(ref impl_) => {
2856 return clean_impl(impl_, item.owner_id.def_id, cx, renamed.is_some());
2860 }
2861 ItemKind::Use(path, kind) => {
2862 return clean_use_statement(
2863 item,
2864 get_name(cx.tcx, item, renamed),
2865 path,
2866 kind,
2867 cx,
2868 &mut FxHashSet::default(),
2869 );
2870 }
2871 _ => {}
2872 }
2873
2874 let mut name = get_name(cx.tcx, item, renamed).unwrap();
2875
2876 let kind = match item.kind {
2877 ItemKind::Static(mutability, _, ty, body_id) => StaticItem(Static {
2878 type_: Box::new(clean_ty(ty, cx)),
2879 mutability,
2880 expr: Some(body_id),
2881 }),
2882 ItemKind::Const(_, generics, ty, rhs) => ConstantItem(Box::new(Constant {
2883 generics: clean_generics(generics, cx),
2884 type_: clean_ty(ty, cx),
2885 kind: clean_const_item_rhs(rhs, def_id),
2886 })),
2887 ItemKind::TyAlias(_, generics, ty) => {
2888 *cx.current_type_aliases.entry(def_id).or_insert(0) += 1;
2889 let rustdoc_ty = clean_ty(ty, cx);
2890 let type_ =
2891 clean_middle_ty(ty::Binder::dummy(lower_ty(cx.tcx, ty)), cx, None, None);
2892 let generics = clean_generics(generics, cx);
2893 if let Some(count) = cx.current_type_aliases.get_mut(&def_id) {
2894 *count -= 1;
2895 if *count == 0 {
2896 cx.current_type_aliases.remove(&def_id);
2897 }
2898 }
2899
2900 let ty = cx.tcx.type_of(def_id).instantiate_identity().skip_norm_wip();
2901
2902 let mut ret = Vec::new();
2903 let inner_type = clean_ty_alias_inner_type(ty, cx, &mut ret);
2904
2905 ret.push(generate_item_with_correct_attrs(
2906 cx,
2907 TypeAliasItem(Box::new(TypeAlias {
2908 generics,
2909 inner_type,
2910 type_: rustdoc_ty,
2911 item_type: Some(type_),
2912 })),
2913 item.owner_id.def_id.to_def_id(),
2914 name,
2915 import_ids,
2916 renamed,
2917 ));
2918 return ret;
2919 }
2920 ItemKind::Enum(_, generics, def) => EnumItem(Enum {
2921 variants: def.variants.iter().map(|v| clean_variant(v, cx)).collect(),
2922 generics: clean_generics(generics, cx),
2923 }),
2924 ItemKind::TraitAlias(_, _, generics, bounds) => TraitAliasItem(TraitAlias {
2925 generics: clean_generics(generics, cx),
2926 bounds: bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect(),
2927 }),
2928 ItemKind::Union(_, generics, variant_data) => UnionItem(Union {
2929 generics: clean_generics(generics, cx),
2930 fields: variant_data.fields().iter().map(|x| clean_field(x, cx)).collect(),
2931 }),
2932 ItemKind::Struct(_, generics, variant_data) => StructItem(Struct {
2933 ctor_kind: variant_data.ctor_kind(),
2934 generics: clean_generics(generics, cx),
2935 fields: variant_data.fields().iter().map(|x| clean_field(x, cx)).collect(),
2936 }),
2937 ItemKind::Macro(_, macro_def, MacroKinds::BANG) => MacroItem(Macro {
2940 source: display_macro_source(cx.tcx, name, macro_def),
2941 macro_rules: macro_def.macro_rules,
2942 }),
2943 ItemKind::Macro(_, _, MacroKinds::ATTR) => {
2944 clean_proc_macro(item, &mut name, MacroKind::Attr, cx.tcx)
2945 }
2946 ItemKind::Macro(_, _, MacroKinds::DERIVE) => {
2947 clean_proc_macro(item, &mut name, MacroKind::Derive, cx.tcx)
2948 }
2949 ItemKind::Macro(_, _, _) => todo!("Handle macros with multiple kinds"),
2950 ItemKind::Fn { ref sig, generics, body: body_id, .. } => {
2952 clean_fn_or_proc_macro(item, sig, generics, body_id, &mut name, cx)
2953 }
2954 ItemKind::Trait { generics, bounds, items: item_ids, .. } => {
2956 let items = item_ids
2957 .iter()
2958 .map(|&ti| clean_trait_item(cx.tcx.hir_trait_item(ti), cx))
2959 .collect();
2960
2961 TraitItem(Box::new(Trait {
2962 def_id,
2963 items,
2964 generics: clean_generics(generics, cx),
2965 bounds: bounds.iter().filter_map(|x| clean_generic_bound(x, cx)).collect(),
2966 }))
2967 }
2968 ItemKind::ExternCrate(orig_name, _) => {
2969 return clean_extern_crate(item, name, orig_name, cx);
2970 }
2971 _ => span_bug!(item.span, "not yet converted"),
2972 };
2973
2974 vec![generate_item_with_correct_attrs(
2975 cx,
2976 kind,
2977 item.owner_id.def_id.to_def_id(),
2978 name,
2979 import_ids,
2980 renamed,
2981 )]
2982 })
2983}
2984
2985fn clean_variant<'tcx>(variant: &hir::Variant<'tcx>, cx: &mut DocContext<'tcx>) -> Item {
2986 let kind = VariantItem(clean_variant_data(&variant.data, &variant.disr_expr, cx));
2987 Item::from_def_id_and_parts(variant.def_id.to_def_id(), Some(variant.ident.name), kind, cx.tcx)
2988}
2989
2990fn clean_impl<'tcx>(
2991 impl_: &hir::Impl<'tcx>,
2992 def_id: LocalDefId,
2993 cx: &mut DocContext<'tcx>,
2994 is_inlined: bool,
2998) -> Vec<Item> {
2999 let tcx = cx.tcx;
3000 let mut ret = Vec::new();
3001 let trait_ = match impl_.of_trait {
3002 Some(t) => {
3003 if is_inlined {
3004 return vec![Item::from_def_id_and_parts(
3005 def_id.to_def_id(),
3006 None,
3007 PlaceholderImplItem,
3008 tcx,
3009 )];
3010 }
3011 Some(clean_trait_ref(&t.trait_ref, cx))
3012 }
3013 None => None,
3014 };
3015 let items = impl_
3016 .items
3017 .iter()
3018 .map(|&ii| clean_impl_item(tcx.hir_impl_item(ii), cx))
3019 .collect::<Vec<_>>();
3020
3021 if trait_.as_ref().is_some_and(|t| tcx.lang_items().deref_trait() == Some(t.def_id()))
3024 && tcx.impl_polarity(def_id) != ty::ImplPolarity::Negative
3025 {
3026 build_deref_target_impls(cx, &items, &mut ret);
3027 }
3028
3029 let for_ = clean_ty(impl_.self_ty, cx);
3030 let type_alias =
3031 for_.def_id(&cx.cache).and_then(|alias_def_id: DefId| match tcx.def_kind(alias_def_id) {
3032 DefKind::TyAlias => Some(clean_middle_ty(
3033 ty::Binder::dummy(tcx.type_of(def_id).instantiate_identity().skip_norm_wip()),
3034 cx,
3035 Some(def_id.to_def_id()),
3036 None,
3037 )),
3038 _ => None,
3039 });
3040 let is_deprecated = tcx
3041 .lookup_deprecation(def_id.to_def_id())
3042 .is_some_and(|deprecation| deprecation.is_in_effect());
3043 let mut make_item = |trait_: Option<Path>, for_: Type, items: Vec<Item>| {
3044 let kind = ImplItem(Box::new(Impl {
3045 safety: match impl_.of_trait {
3046 Some(of_trait) => of_trait.safety,
3047 None => hir::Safety::Safe,
3048 },
3049 generics: clean_generics(impl_.generics, cx),
3050 trait_,
3051 for_,
3052 items,
3053 polarity: if impl_.of_trait.is_some() {
3054 tcx.impl_polarity(def_id)
3055 } else {
3056 ty::ImplPolarity::Positive
3057 },
3058 kind: if utils::has_doc_flag(tcx, def_id.to_def_id(), |d| d.fake_variadic.is_some()) {
3059 ImplKind::FakeVariadic
3060 } else {
3061 ImplKind::Normal
3062 },
3063 is_deprecated,
3064 }));
3065 Item::from_def_id_and_parts(def_id.to_def_id(), None, kind, tcx)
3066 };
3067 if let Some(type_alias) = type_alias {
3068 ret.push(make_item(trait_.clone(), type_alias, items.clone()));
3069 }
3070 ret.push(make_item(trait_, for_, items));
3071 ret
3072}
3073
3074fn clean_extern_crate<'tcx>(
3075 krate: &hir::Item<'tcx>,
3076 name: Symbol,
3077 orig_name: Option<Symbol>,
3078 cx: &mut DocContext<'tcx>,
3079) -> Vec<Item> {
3080 let cnum = cx.tcx.extern_mod_stmt_cnum(krate.owner_id.def_id).unwrap_or(LOCAL_CRATE);
3082 let crate_def_id = cnum.as_def_id();
3084 let attrs = cx.tcx.hir_attrs(krate.hir_id());
3085 let ty_vis = cx.tcx.visibility(krate.owner_id);
3086 let please_inline = ty_vis.is_public()
3087 && attrs.iter().any(|a| {
3088 matches!(
3089 a,
3090 hir::Attribute::Parsed(AttributeKind::Doc(d))
3091 if d.inline.first().is_some_and(|(i, _)| *i == DocInline::Inline))
3092 })
3093 && !cx.is_json_output();
3094
3095 let krate_owner_def_id = krate.owner_id.def_id;
3096
3097 if please_inline
3098 && let Some(items) = inline::try_inline(
3099 cx,
3100 Res::Def(DefKind::Mod, crate_def_id),
3101 name,
3102 Some((attrs, Some(krate_owner_def_id))),
3103 &mut Default::default(),
3104 )
3105 {
3106 return items;
3107 }
3108
3109 vec![Item::from_def_id_and_parts(
3110 krate_owner_def_id.to_def_id(),
3111 Some(name),
3112 ExternCrateItem { src: orig_name },
3113 cx.tcx,
3114 )]
3115}
3116
3117fn clean_use_statement<'tcx>(
3118 import: &hir::Item<'tcx>,
3119 name: Option<Symbol>,
3120 path: &hir::UsePath<'tcx>,
3121 kind: hir::UseKind,
3122 cx: &mut DocContext<'tcx>,
3123 inlined_names: &mut FxHashSet<(ItemType, Symbol)>,
3124) -> Vec<Item> {
3125 let mut items = Vec::new();
3126 let hir::UsePath { segments, ref res, span } = *path;
3127 for res in res.present_items() {
3128 let path = hir::Path { segments, res, span };
3129 items.append(&mut clean_use_statement_inner(import, name, &path, kind, cx, inlined_names));
3130 }
3131 items
3132}
3133
3134fn clean_use_statement_inner<'tcx>(
3135 import: &hir::Item<'tcx>,
3136 name: Option<Symbol>,
3137 path: &hir::Path<'tcx>,
3138 kind: hir::UseKind,
3139 cx: &mut DocContext<'tcx>,
3140 inlined_names: &mut FxHashSet<(ItemType, Symbol)>,
3141) -> Vec<Item> {
3142 if should_ignore_res(path.res) {
3143 return Vec::new();
3144 }
3145 if import.span.ctxt().outer_expn_data().kind == ExpnKind::AstPass(AstPass::StdImports) {
3149 return Vec::new();
3150 }
3151
3152 let visibility = cx.tcx.visibility(import.owner_id);
3153 let attrs = cx.tcx.hir_attrs(import.hir_id());
3154 let inline_attr = find_attr!(
3155 attrs,
3156 Doc(d) if d.inline.first().is_some_and(|(i, _)| *i == DocInline::Inline) => d
3157 )
3158 .and_then(|d| d.inline.first());
3159 let pub_underscore = visibility.is_public() && name == Some(kw::Underscore);
3160 let current_mod = cx.tcx.parent_module_from_def_id(import.owner_id.def_id);
3161 let import_def_id = import.owner_id.def_id;
3162
3163 let parent_mod = cx.tcx.parent_module_from_def_id(current_mod.to_local_def_id());
3167
3168 let is_visible_from_parent_mod =
3174 visibility.is_accessible_from(parent_mod, cx.tcx) && !current_mod.is_top_level_module();
3175
3176 if pub_underscore && let Some((_, inline_span)) = inline_attr {
3177 struct_span_code_err!(
3178 cx.tcx.dcx(),
3179 *inline_span,
3180 E0780,
3181 "anonymous imports cannot be inlined"
3182 )
3183 .with_span_label(import.span, "anonymous import")
3184 .emit();
3185 }
3186
3187 let mut denied = cx.is_json_output()
3192 || !(visibility.is_public() || (cx.document_private() && is_visible_from_parent_mod))
3193 || pub_underscore
3194 || attrs.iter().any(|a| matches!(
3195 a,
3196 hir::Attribute::Parsed(AttributeKind::Doc(d))
3197 if d.hidden.is_some() || d.inline.first().is_some_and(|(i, _)| *i == DocInline::NoInline)
3198 ));
3199
3200 let path = clean_path(path, cx);
3203 let inner = if kind == hir::UseKind::Glob {
3204 if !denied {
3205 let mut visited = DefIdSet::default();
3206 if let Some(items) = inline::try_inline_glob(
3207 cx,
3208 path.res,
3209 current_mod,
3210 &mut visited,
3211 inlined_names,
3212 import,
3213 ) {
3214 return items;
3215 }
3216 }
3217 Import::new_glob(resolve_use_source(cx, path), true)
3218 } else {
3219 let name = name.unwrap();
3220 if inline_attr.is_none()
3221 && let Res::Def(DefKind::Mod, did) = path.res
3222 && !did.is_local()
3223 && did.is_crate_root()
3224 {
3225 denied = true;
3228 }
3229 if !denied
3230 && let Some(mut items) = inline::try_inline(
3231 cx,
3232 path.res,
3233 name,
3234 Some((attrs, Some(import_def_id))),
3235 &mut Default::default(),
3236 )
3237 {
3238 items.push(Item::from_def_id_and_parts(
3239 import_def_id.to_def_id(),
3240 None,
3241 ImportItem(Import::new_simple(name, resolve_use_source(cx, path), false)),
3242 cx.tcx,
3243 ));
3244 return items;
3245 }
3246 Import::new_simple(name, resolve_use_source(cx, path), true)
3247 };
3248
3249 vec![Item::from_def_id_and_parts(import_def_id.to_def_id(), None, ImportItem(inner), cx.tcx)]
3250}
3251
3252fn clean_maybe_renamed_foreign_item<'tcx>(
3253 cx: &mut DocContext<'tcx>,
3254 item: &hir::ForeignItem<'tcx>,
3255 renamed: Option<Symbol>,
3256 import_id: Option<LocalDefId>,
3257) -> Item {
3258 let def_id = item.owner_id.to_def_id();
3259 cx.with_param_env(def_id, |cx| {
3260 let kind = match item.kind {
3261 hir::ForeignItemKind::Fn(sig, idents, generics) => ForeignFunctionItem(
3262 clean_function(cx, &sig, generics, ParamsSrc::Idents(idents)),
3263 sig.header.safety(),
3264 ),
3265 hir::ForeignItemKind::Static(ty, mutability, safety) => ForeignStaticItem(
3266 Static { type_: Box::new(clean_ty(ty, cx)), mutability, expr: None },
3267 safety,
3268 ),
3269 hir::ForeignItemKind::Type => ForeignTypeItem,
3270 };
3271
3272 let mut clean_item = generate_item_with_correct_attrs(
3273 cx,
3274 kind,
3275 item.owner_id.def_id.to_def_id(),
3276 item.ident.name,
3277 import_id.as_slice(),
3278 renamed,
3279 );
3280 let mut attrs = Attributes::from_hir(inline::load_attrs(
3282 cx.tcx,
3283 cx.tcx.hir_owner_parent(item.owner_id).owner.to_def_id(),
3284 ));
3285 attrs.merge_with(std::mem::take(&mut clean_item.inner.attrs));
3286 clean_item.inner.attrs = attrs;
3287 clean_item
3288 })
3289}
3290
3291fn clean_assoc_item_constraint<'tcx>(
3292 trait_did: DefId,
3293 constraint: &hir::AssocItemConstraint<'tcx>,
3294 cx: &mut DocContext<'tcx>,
3295) -> AssocItemConstraint {
3296 AssocItemConstraint {
3297 assoc: PathSegment {
3298 name: constraint.ident.name,
3299 args: clean_generic_args(None, constraint.gen_args, cx),
3300 },
3301 kind: match constraint.kind {
3302 hir::AssocItemConstraintKind::Equality { ref term } => {
3303 let assoc_tag = match term {
3304 hir::Term::Ty(_) => ty::AssocTag::Type,
3305 hir::Term::Const(_) => ty::AssocTag::Const,
3306 };
3307 let assoc_item = cx
3308 .tcx
3309 .associated_items(trait_did)
3310 .find_by_ident_and_kind(cx.tcx, constraint.ident, assoc_tag, trait_did)
3311 .map(|item| item.def_id);
3312 AssocItemConstraintKind::Equality { term: clean_hir_term(assoc_item, term, cx) }
3313 }
3314 hir::AssocItemConstraintKind::Bound { bounds } => AssocItemConstraintKind::Bound {
3315 bounds: bounds.iter().filter_map(|b| clean_generic_bound(b, cx)).collect(),
3316 },
3317 },
3318 }
3319}
3320
3321fn clean_bound_vars<'tcx>(
3322 bound_vars: &ty::List<ty::BoundVariableKind<'tcx>>,
3323 tcx: TyCtxt<'tcx>,
3324) -> Vec<GenericParamDef> {
3325 bound_vars
3326 .into_iter()
3327 .filter_map(|var| match var {
3328 ty::BoundVariableKind::Region(ty::BoundRegionKind::Named(def_id)) => {
3329 let name = tcx.item_name(def_id);
3330 if name != kw::UnderscoreLifetime {
3331 Some(GenericParamDef::lifetime(def_id, name))
3332 } else {
3333 None
3334 }
3335 }
3336 ty::BoundVariableKind::Ty(ty::BoundTyKind::Param(def_id)) => {
3337 let name = tcx.item_name(def_id);
3338 Some(GenericParamDef {
3339 name,
3340 def_id,
3341 kind: GenericParamDefKind::Type {
3342 bounds: ThinVec::new(),
3343 default: None,
3344 synthetic: false,
3345 },
3346 })
3347 }
3348 ty::BoundVariableKind::Const => None,
3350 _ => None,
3351 })
3352 .collect()
3353}