1use std::cmp::Ordering;
11use std::fmt::{self, Display, Write};
12use std::iter::{self, once};
13use std::slice;
14
15use itertools::{Either, Itertools};
16use rustc_abi::ExternAbi;
17use rustc_ast::join_path_syms;
18use rustc_data_structures::fx::FxHashSet;
19use rustc_hir as hir;
20use rustc_hir::def::{DefKind, MacroKinds};
21use rustc_hir::def_id::{DefId, LOCAL_CRATE};
22use rustc_hir::{ConstStability, StabilityLevel, StableSince};
23use rustc_metadata::creader::CStore;
24use rustc_middle::ty::{self, TyCtxt, TypingMode};
25use rustc_span::Symbol;
26use rustc_span::symbol::kw;
27use tracing::{debug, trace};
28
29use super::url_parts_builder::UrlPartsBuilder;
30use crate::clean::types::ExternalLocation;
31use crate::clean::utils::find_nearest_parent_module;
32use crate::clean::{self, ExternalCrate, PrimitiveType};
33use crate::display::{Joined as _, MaybeDisplay as _, WithOpts, Wrapped};
34use crate::formats::cache::Cache;
35use crate::formats::item_type::ItemType;
36use crate::html::escape::{Escape, EscapeBodyText};
37use crate::html::render::Context;
38use crate::passes::collect_intra_doc_links::UrlFragment;
39
40pub(crate) fn print_generic_bounds(
41 bounds: &[clean::GenericBound],
42 cx: &Context<'_>,
43) -> impl Display {
44 fmt::from_fn(move |f| {
45 let mut bounds_dup = FxHashSet::default();
46
47 bounds
48 .iter()
49 .filter(move |b| bounds_dup.insert(*b))
50 .map(|bound| print_generic_bound(bound, cx))
51 .joined(" + ", f)
52 })
53}
54
55pub(crate) fn print_generic_param_def(
56 generic_param: &clean::GenericParamDef,
57 cx: &Context<'_>,
58) -> impl Display {
59 fmt::from_fn(move |f| match &generic_param.kind {
60 clean::GenericParamDefKind::Lifetime { outlives } => {
61 write!(f, "{}", generic_param.name)?;
62
63 if !outlives.is_empty() {
64 f.write_str(": ")?;
65 outlives.iter().map(|lt| print_lifetime(lt)).joined(" + ", f)?;
66 }
67
68 Ok(())
69 }
70 clean::GenericParamDefKind::Type { bounds, default, .. } => {
71 f.write_str(generic_param.name.as_str())?;
72
73 if !bounds.is_empty() {
74 f.write_str(": ")?;
75 print_generic_bounds(bounds, cx).fmt(f)?;
76 }
77
78 if let Some(ty) = default {
79 f.write_str(" = ")?;
80 print_type(ty, cx).fmt(f)?;
81 }
82
83 Ok(())
84 }
85 clean::GenericParamDefKind::Const { ty, default, .. } => {
86 write!(f, "const {}: ", generic_param.name)?;
87 print_type(ty, cx).fmt(f)?;
88
89 if let Some(default) = default {
90 f.write_str(" = ")?;
91 if f.alternate() {
92 write!(f, "{default}")?;
93 } else {
94 write!(f, "{}", Escape(default))?;
95 }
96 }
97
98 Ok(())
99 }
100 })
101}
102
103pub(crate) fn print_generics(generics: &clean::Generics, cx: &Context<'_>) -> impl Display {
104 let mut real_params = generics.params.iter().filter(|p| !p.is_synthetic_param()).peekable();
105 if real_params.peek().is_none() {
106 None
107 } else {
108 Some(Wrapped::with_angle_brackets().wrap_fn(move |f| {
109 real_params.clone().map(|g| print_generic_param_def(g, cx)).joined(", ", f)
110 }))
111 }
112 .maybe_display()
113}
114
115#[derive(Clone, Copy, PartialEq, Eq)]
116pub(crate) enum Ending {
117 Newline,
118 NoNewline,
119}
120
121fn print_where_predicate(predicate: &clean::WherePredicate, cx: &Context<'_>) -> impl Display {
122 fmt::from_fn(move |f| {
123 match predicate {
124 clean::WherePredicate::BoundPredicate { ty, bounds, bound_params } => {
125 print_higher_ranked_params_with_space(bound_params, cx, "for").fmt(f)?;
126 print_type(ty, cx).fmt(f)?;
127 f.write_str(":")?;
128 if !bounds.is_empty() {
129 f.write_str(" ")?;
130 print_generic_bounds(bounds, cx).fmt(f)?;
131 }
132 Ok(())
133 }
134 clean::WherePredicate::RegionPredicate { lifetime, bounds } => {
135 write!(f, "{}:", print_lifetime(lifetime))?;
138 if !bounds.is_empty() {
139 write!(f, " {}", print_generic_bounds(bounds, cx))?;
140 }
141 Ok(())
142 }
143 clean::WherePredicate::EqPredicate { lhs, rhs } => {
144 let opts = WithOpts::from(f);
145 write!(
146 f,
147 "{} == {}",
148 opts.display(print_qpath_data(lhs, cx)),
149 opts.display(print_term(rhs, cx)),
150 )
151 }
152 }
153 })
154}
155
156pub(crate) fn print_where_clause(
160 gens: &clean::Generics,
161 cx: &Context<'_>,
162 indent: usize,
163 ending: Ending,
164) -> Option<impl Display> {
165 if gens.where_predicates.is_empty() {
166 return None;
167 }
168
169 Some(fmt::from_fn(move |f| {
170 let where_preds = fmt::from_fn(|f| {
171 gens.where_predicates
172 .iter()
173 .map(|predicate| {
174 fmt::from_fn(|f| {
175 if f.alternate() {
176 f.write_str(" ")?;
177 } else {
178 f.write_str("\n")?;
179 }
180 print_where_predicate(predicate, cx).fmt(f)
181 })
182 })
183 .joined(",", f)
184 });
185
186 let clause = if f.alternate() {
187 if ending == Ending::Newline {
188 format!(" where{where_preds},")
189 } else {
190 format!(" where{where_preds}")
191 }
192 } else {
193 let mut br_with_padding = String::with_capacity(6 * indent + 28);
194 br_with_padding.push('\n');
195
196 let where_indent = 3;
197 let padding_amount = if ending == Ending::Newline {
198 indent + 4
199 } else if indent == 0 {
200 4
201 } else {
202 indent + where_indent + "where ".len()
203 };
204
205 for _ in 0..padding_amount {
206 br_with_padding.push(' ');
207 }
208 let where_preds = where_preds.to_string().replace('\n', &br_with_padding);
209
210 if ending == Ending::Newline {
211 let mut clause = " ".repeat(indent.saturating_sub(1));
212 write!(clause, "<div class=\"where\">where{where_preds},</div>")?;
213 clause
214 } else {
215 if indent == 0 {
217 format!("\n<span class=\"where\">where{where_preds}</span>")
218 } else {
219 let where_preds = where_preds.replacen(&br_with_padding, " ", 1);
221
222 let mut clause = br_with_padding;
223 clause.truncate(indent + 1 + where_indent);
225
226 write!(clause, "<span class=\"where\">where{where_preds}</span>")?;
227 clause
228 }
229 }
230 };
231 write!(f, "{clause}")
232 }))
233}
234
235#[inline]
236pub(crate) fn print_lifetime(lt: &clean::Lifetime) -> &str {
237 lt.0.as_str()
238}
239
240pub(crate) fn print_constant_kind(
241 constant_kind: &clean::ConstantKind,
242 tcx: TyCtxt<'_>,
243) -> impl Display {
244 let expr = constant_kind.expr(tcx);
245 fmt::from_fn(
246 move |f| {
247 if f.alternate() { f.write_str(&expr) } else { write!(f, "{}", Escape(&expr)) }
248 },
249 )
250}
251
252fn print_poly_trait(poly_trait: &clean::PolyTrait, cx: &Context<'_>) -> impl Display {
253 fmt::from_fn(move |f| {
254 print_higher_ranked_params_with_space(&poly_trait.generic_params, cx, "for").fmt(f)?;
255 print_path(&poly_trait.trait_, cx).fmt(f)
256 })
257}
258
259pub(crate) fn print_generic_bound(
260 generic_bound: &clean::GenericBound,
261 cx: &Context<'_>,
262) -> impl Display {
263 fmt::from_fn(move |f| match generic_bound {
264 clean::GenericBound::Outlives(lt) => f.write_str(print_lifetime(lt)),
265 clean::GenericBound::TraitBound(ty, modifiers) => {
266 let hir::TraitBoundModifiers { polarity, constness: _ } = modifiers;
268 f.write_str(match polarity {
269 hir::BoundPolarity::Positive => "",
270 hir::BoundPolarity::Maybe(_) => "?",
271 hir::BoundPolarity::Negative(_) => "!",
272 })?;
273 print_poly_trait(ty, cx).fmt(f)
274 }
275 clean::GenericBound::Use(args) => {
276 f.write_str("use")?;
277 Wrapped::with_angle_brackets()
278 .wrap_fn(|f| args.iter().map(|arg| arg.name()).joined(", ", f))
279 .fmt(f)
280 }
281 })
282}
283
284fn print_generic_args(generic_args: &clean::GenericArgs, cx: &Context<'_>) -> impl Display {
285 fmt::from_fn(move |f| {
286 match generic_args {
287 clean::GenericArgs::AngleBracketed { args, constraints } => {
288 if !args.is_empty() || !constraints.is_empty() {
289 Wrapped::with_angle_brackets()
290 .wrap_fn(|f| {
291 [Either::Left(args), Either::Right(constraints)]
292 .into_iter()
293 .flat_map(Either::factor_into_iter)
294 .map(|either| {
295 either.map_either(
296 |arg| print_generic_arg(arg, cx),
297 |constraint| print_assoc_item_constraint(constraint, cx),
298 )
299 })
300 .joined(", ", f)
301 })
302 .fmt(f)?;
303 }
304 }
305 clean::GenericArgs::Parenthesized { inputs, output } => {
306 Wrapped::with_parens()
307 .wrap_fn(|f| inputs.iter().map(|ty| print_type(ty, cx)).joined(", ", f))
308 .fmt(f)?;
309 if let Some(ref ty) = *output {
310 f.write_str(if f.alternate() { " -> " } else { " -> " })?;
311 print_type(ty, cx).fmt(f)?;
312 }
313 }
314 clean::GenericArgs::ReturnTypeNotation => {
315 f.write_str("(..)")?;
316 }
317 }
318 Ok(())
319 })
320}
321
322#[derive(PartialEq, Eq)]
324pub(crate) enum HrefError {
325 DocumentationNotBuilt,
344 Private,
346 NotInExternalCache,
348 UnnamableItem,
350}
351
352pub(crate) struct HrefInfo {
354 pub(crate) url: String,
356 pub(crate) kind: ItemType,
358 pub(crate) rust_path: Vec<Symbol>,
360}
361
362fn generate_macro_def_id_path(
365 def_id: DefId,
366 cx: &Context<'_>,
367 root_path: Option<&str>,
368) -> Result<HrefInfo, HrefError> {
369 let tcx = cx.tcx();
370 let crate_name = tcx.crate_name(def_id.krate);
371 let cache = cx.cache();
372
373 let cstore = CStore::from_tcx(tcx);
374 if !cstore.has_crate_data(def_id.krate) {
376 debug!("No data for crate {crate_name}");
377 return Err(HrefError::NotInExternalCache);
378 }
379 let DefKind::Macro(kinds) = tcx.def_kind(def_id) else {
380 unreachable!();
381 };
382 let item_type = if kinds == MacroKinds::DERIVE {
383 ItemType::ProcDerive
384 } else if kinds == MacroKinds::ATTR {
385 ItemType::ProcAttribute
386 } else {
387 ItemType::Macro
388 };
389 let path = clean::inline::get_item_path(tcx, def_id, item_type);
390 let [module_path @ .., last] = path.as_slice() else {
393 debug!("macro path is empty!");
394 return Err(HrefError::NotInExternalCache);
395 };
396 if module_path.is_empty() {
397 debug!("macro path too short: missing crate prefix (got 1 element, need at least 2)");
398 return Err(HrefError::NotInExternalCache);
399 }
400
401 let url = match cache.extern_locations[&def_id.krate] {
402 ExternalLocation::Remote { ref url, is_absolute } => {
403 let mut prefix = remote_url_prefix(url, is_absolute, cx.current.len());
404 prefix.extend(module_path.iter().copied());
405 prefix.push_fmt(format_args!("{}.{last}.html", item_type.as_str()));
406 prefix.finish()
407 }
408 ExternalLocation::Local => {
409 format!(
411 "{root_path}{path}/{item_type}.{last}.html",
412 root_path = root_path.unwrap_or(""),
413 path = fmt::from_fn(|f| module_path.iter().joined("/", f)),
414 item_type = item_type.as_str(),
415 )
416 }
417 ExternalLocation::Unknown => {
418 debug!("crate {crate_name} not in cache when linkifying macros");
419 return Err(HrefError::NotInExternalCache);
420 }
421 };
422 Ok(HrefInfo { url, kind: item_type, rust_path: path })
423}
424
425fn generate_item_def_id_path(
426 mut def_id: DefId,
427 original_def_id: DefId,
428 cx: &Context<'_>,
429 root_path: Option<&str>,
430) -> Result<HrefInfo, HrefError> {
431 use rustc_middle::traits::ObligationCause;
432 use rustc_trait_selection::infer::TyCtxtInferExt;
433 use rustc_trait_selection::traits::query::normalize::QueryNormalizeExt;
434
435 let tcx = cx.tcx();
436 let crate_name = tcx.crate_name(def_id.krate);
437
438 if def_id != original_def_id && matches!(tcx.def_kind(def_id), DefKind::Impl { .. }) {
441 let infcx = tcx.infer_ctxt().build(TypingMode::non_body_analysis());
442 def_id = infcx
443 .at(&ObligationCause::dummy(), tcx.param_env(def_id))
444 .query_normalize(ty::Binder::dummy(
445 tcx.type_of(def_id).instantiate_identity().skip_norm_wip(),
446 ))
447 .map(|resolved| infcx.resolve_vars_if_possible(resolved.value))
448 .ok()
449 .and_then(|normalized| normalized.skip_binder().ty_adt_def())
450 .map(|adt| adt.did())
451 .unwrap_or(def_id);
452 }
453
454 let relative = clean::inline::item_relative_path(tcx, def_id);
455 let fqp: Vec<Symbol> = once(crate_name).chain(relative).collect();
456
457 let shortty = ItemType::from_def_id(def_id, tcx);
458 let module_fqp = to_module_fqp(shortty, &fqp);
459
460 let (parts, is_absolute) = url_parts(cx.cache(), def_id, module_fqp, &cx.current)?;
461 let mut url = make_href(root_path, shortty, parts, &fqp, is_absolute);
462
463 if def_id != original_def_id {
464 let kind = ItemType::from_def_id(original_def_id, tcx);
465 url = format!("{url}#{kind}.{}", tcx.item_name(original_def_id))
466 };
467 Ok(HrefInfo { url, kind: shortty, rust_path: fqp })
468}
469
470fn is_unnamable(tcx: TyCtxt<'_>, did: DefId) -> bool {
472 let mut cur_did = did;
473 while let Some(parent) = tcx.opt_parent(cur_did) {
474 match tcx.def_kind(parent) {
475 DefKind::Mod | DefKind::ForeignMod => cur_did = parent,
477 DefKind::Impl { .. } => return false,
483 _ => return true,
485 }
486 }
487 return false;
488}
489
490fn to_module_fqp(shortty: ItemType, fqp: &[Symbol]) -> &[Symbol] {
491 if shortty == ItemType::Module { fqp } else { &fqp[..fqp.len() - 1] }
492}
493
494fn remote_url_prefix(url: &str, is_absolute: bool, depth: usize) -> UrlPartsBuilder {
495 let url = url.trim_end_matches('/');
496 if is_absolute {
497 UrlPartsBuilder::singleton(url)
498 } else {
499 let extra = depth.saturating_sub(1);
500 let mut b: UrlPartsBuilder = iter::repeat_n("..", extra).collect();
501 b.push(url);
502 b
503 }
504}
505
506fn url_parts(
507 cache: &Cache,
508 def_id: DefId,
509 module_fqp: &[Symbol],
510 relative_to: &[Symbol],
511) -> Result<(UrlPartsBuilder, bool), HrefError> {
512 match cache.extern_locations[&def_id.krate] {
513 ExternalLocation::Remote { ref url, is_absolute } => {
514 let mut builder = remote_url_prefix(url, is_absolute, relative_to.len());
515 builder.extend(module_fqp.iter().copied());
516 Ok((builder, is_absolute))
517 }
518 ExternalLocation::Local => Ok((href_relative_parts(module_fqp, relative_to), false)),
519 ExternalLocation::Unknown => Err(HrefError::DocumentationNotBuilt),
520 }
521}
522
523fn make_href(
524 root_path: Option<&str>,
525 shortty: ItemType,
526 mut url_parts: UrlPartsBuilder,
527 fqp: &[Symbol],
528 is_absolute: bool,
529) -> String {
530 if !is_absolute && let Some(root_path) = root_path {
532 let root = root_path.trim_end_matches('/');
533 url_parts.push_front(root);
534 }
535 debug!(?url_parts);
536 match shortty {
537 ItemType::Module => {
538 url_parts.push("index.html");
539 }
540 _ => {
541 let last = fqp.last().unwrap();
542 url_parts.push_fmt(format_args!("{shortty}.{last}.html"));
543 }
544 }
545 url_parts.finish()
546}
547
548pub(crate) fn href_with_root_path(
549 original_did: DefId,
550 cx: &Context<'_>,
551 root_path: Option<&str>,
552) -> Result<HrefInfo, HrefError> {
553 let tcx = cx.tcx();
554 let def_kind = tcx.def_kind(original_did);
555 let did = match def_kind {
556 DefKind::AssocTy | DefKind::AssocFn | DefKind::AssocConst { .. } | DefKind::Variant => {
557 tcx.parent(original_did)
559 }
560 DefKind::Ctor(..) => return href_with_root_path(tcx.parent(original_did), cx, root_path),
563 DefKind::ExternCrate => {
564 if let Some(local_did) = original_did.as_local() {
566 tcx.extern_mod_stmt_cnum(local_did).unwrap_or(LOCAL_CRATE).as_def_id()
567 } else {
568 original_did
569 }
570 }
571 _ => original_did,
572 };
573 if is_unnamable(cx.tcx(), did) {
574 return Err(HrefError::UnnamableItem);
575 }
576 let cache = cx.cache();
577 let relative_to = &cx.current;
578
579 if !original_did.is_local() {
580 if root_path.is_some() {
583 if tcx.is_doc_hidden(original_did) {
584 return Err(HrefError::Private);
585 }
586 } else if !cache.effective_visibilities.is_directly_public(tcx, did)
587 && !cache.document_private
588 && !cache.primitive_locations.values().any(|&id| id == did)
589 {
590 return Err(HrefError::Private);
591 }
592 }
593
594 let (fqp, shortty, url_parts, is_absolute) = match cache.paths.get(&did) {
595 Some(&(ref fqp, shortty)) => (
596 fqp,
597 shortty,
598 {
599 let module_fqp = to_module_fqp(shortty, fqp.as_slice());
600 debug!(?fqp, ?shortty, ?module_fqp);
601 href_relative_parts(module_fqp, relative_to)
602 },
603 false,
604 ),
605 None => {
606 let def_id_to_get = if root_path.is_some() { original_did } else { did };
610 if let Some(&(ref fqp, shortty)) = cache.external_paths.get(&def_id_to_get) {
611 let module_fqp = to_module_fqp(shortty, fqp);
612 let (parts, is_absolute) = url_parts(cache, did, module_fqp, relative_to)?;
613 (fqp, shortty, parts, is_absolute)
614 } else if matches!(def_kind, DefKind::Macro(_)) {
615 return generate_macro_def_id_path(did, cx, root_path);
616 } else if did.is_local() {
617 return Err(HrefError::Private);
618 } else {
619 return generate_item_def_id_path(did, original_did, cx, root_path);
620 }
621 }
622 };
623 Ok(HrefInfo {
624 url: make_href(root_path, shortty, url_parts, fqp, is_absolute),
625 kind: shortty,
626 rust_path: fqp.clone(),
627 })
628}
629
630pub(crate) fn href(did: DefId, cx: &Context<'_>) -> Result<HrefInfo, HrefError> {
631 href_with_root_path(did, cx, None)
632}
633
634pub(crate) fn href_relative_parts(fqp: &[Symbol], relative_to_fqp: &[Symbol]) -> UrlPartsBuilder {
638 for (i, (f, r)) in fqp.iter().zip(relative_to_fqp.iter()).enumerate() {
639 if f != r {
641 let dissimilar_part_count = relative_to_fqp.len() - i;
642 let fqp_module = &fqp[i..];
643 return iter::repeat_n("..", dissimilar_part_count)
644 .chain(fqp_module.iter().map(|s| s.as_str()))
645 .collect();
646 }
647 }
648 match relative_to_fqp.len().cmp(&fqp.len()) {
649 Ordering::Less => {
650 fqp[relative_to_fqp.len()..fqp.len()].iter().copied().collect()
652 }
653 Ordering::Greater => {
654 let dissimilar_part_count = relative_to_fqp.len() - fqp.len();
656 iter::repeat_n("..", dissimilar_part_count).collect()
657 }
658 Ordering::Equal => {
659 UrlPartsBuilder::new()
661 }
662 }
663}
664
665pub(crate) fn link_tooltip(
666 did: DefId,
667 fragment: &Option<UrlFragment>,
668 cx: &Context<'_>,
669) -> impl fmt::Display {
670 fmt::from_fn(move |f| {
671 let cache = cx.cache();
672 let Some((fqp, shortty)) = cache.paths.get(&did).or_else(|| cache.external_paths.get(&did))
673 else {
674 return Ok(());
675 };
676 let fqp = if *shortty == ItemType::Primitive {
677 slice::from_ref(fqp.last().unwrap())
679 } else {
680 fqp
681 };
682 if let &Some(UrlFragment::Item(id)) = fragment {
683 write!(f, "{} ", cx.tcx().def_descr(id))?;
684 for component in fqp {
685 write!(f, "{component}::")?;
686 }
687 write!(f, "{}", cx.tcx().item_name(id))?;
688 } else if !fqp.is_empty() {
689 write!(f, "{shortty} ")?;
690 write!(f, "{}", join_path_syms(fqp))?;
691 }
692 Ok(())
693 })
694}
695
696fn resolved_path(
698 w: &mut fmt::Formatter<'_>,
699 did: DefId,
700 path: &clean::Path,
701 print_all: bool,
702 use_absolute: bool,
703 cx: &Context<'_>,
704) -> fmt::Result {
705 let last = path.segments.last().unwrap();
706
707 if print_all {
708 for seg in &path.segments[..path.segments.len() - 1] {
709 write!(w, "{}::", if seg.name == kw::PathRoot { "" } else { seg.name.as_str() })?;
710 }
711 }
712 if w.alternate() {
713 write!(w, "{}{:#}", last.name, print_generic_args(&last.args, cx))?;
714 } else {
715 let path = fmt::from_fn(|f| {
716 if use_absolute {
717 if let Ok(HrefInfo { rust_path, .. }) = href(did, cx) {
718 write!(
719 f,
720 "{path}::{anchor}",
721 path = join_path_syms(&rust_path[..rust_path.len() - 1]),
722 anchor = print_anchor(did, *rust_path.last().unwrap(), cx)
723 )
724 } else {
725 write!(f, "{}", last.name)
726 }
727 } else {
728 write!(f, "{}", print_anchor(did, last.name, cx))
729 }
730 });
731 write!(w, "{path}{args}", args = print_generic_args(&last.args, cx))?;
732 }
733 Ok(())
734}
735
736fn primitive_link(
737 f: &mut fmt::Formatter<'_>,
738 prim: clean::PrimitiveType,
739 name: fmt::Arguments<'_>,
740 cx: &Context<'_>,
741) -> fmt::Result {
742 primitive_link_fragment(f, prim, name, "", cx)
743}
744
745fn primitive_link_fragment(
746 f: &mut fmt::Formatter<'_>,
747 prim: clean::PrimitiveType,
748 name: fmt::Arguments<'_>,
749 fragment: &str,
750 cx: &Context<'_>,
751) -> fmt::Result {
752 let m = &cx.cache();
753 let mut needs_termination = false;
754 if !f.alternate() {
755 match m.primitive_locations.get(&prim) {
756 Some(&def_id) if def_id.is_local() => {
757 let len = cx.current.len();
758 let path = fmt::from_fn(|f| {
759 if len == 0 {
760 let cname_sym = ExternalCrate { crate_num: def_id.krate }.name(cx.tcx());
761 write!(f, "{cname_sym}/")?;
762 } else {
763 for _ in 0..(len - 1) {
764 f.write_str("../")?;
765 }
766 }
767 Ok(())
768 });
769 write!(
770 f,
771 "<a class=\"primitive\" href=\"{path}primitive.{}.html{fragment}\">",
772 prim.as_sym()
773 )?;
774 needs_termination = true;
775 }
776 Some(&def_id) => {
777 let loc = match m.extern_locations[&def_id.krate] {
778 ExternalLocation::Remote { ref url, is_absolute } => {
779 let cname_sym = ExternalCrate { crate_num: def_id.krate }.name(cx.tcx());
780 let mut builder = remote_url_prefix(url, is_absolute, cx.current.len());
781 builder.push(cname_sym.as_str());
782 Some(builder)
783 }
784 ExternalLocation::Local => {
785 let cname_sym = ExternalCrate { crate_num: def_id.krate }.name(cx.tcx());
786 Some(if cx.current.first() == Some(&cname_sym) {
787 iter::repeat_n("..", cx.current.len() - 1).collect()
788 } else {
789 iter::repeat_n("..", cx.current.len())
790 .chain(iter::once(cname_sym.as_str()))
791 .collect()
792 })
793 }
794 ExternalLocation::Unknown => None,
795 };
796 if let Some(mut loc) = loc {
797 loc.push_fmt(format_args!("primitive.{}.html", prim.as_sym()));
798 write!(f, "<a class=\"primitive\" href=\"{}{fragment}\">", loc.finish())?;
799 needs_termination = true;
800 }
801 }
802 None => {}
803 }
804 }
805 Display::fmt(&name, f)?;
806 if needs_termination {
807 write!(f, "</a>")?;
808 }
809 Ok(())
810}
811
812fn print_tybounds(
813 bounds: &[clean::PolyTrait],
814 lt: &Option<clean::Lifetime>,
815 cx: &Context<'_>,
816) -> impl Display {
817 fmt::from_fn(move |f| {
818 bounds.iter().map(|bound| print_poly_trait(bound, cx)).joined(" + ", f)?;
819 if let Some(lt) = lt {
820 write!(f, " + {}", print_lifetime(lt))?;
823 }
824 Ok(())
825 })
826}
827
828fn print_higher_ranked_params_with_space(
829 params: &[clean::GenericParamDef],
830 cx: &Context<'_>,
831 keyword: &'static str,
832) -> impl Display {
833 fmt::from_fn(move |f| {
834 if !params.is_empty() {
835 f.write_str(keyword)?;
836 Wrapped::with_angle_brackets()
837 .wrap_fn(|f| {
838 params.iter().map(|lt| print_generic_param_def(lt, cx)).joined(", ", f)
839 })
840 .fmt(f)?;
841 f.write_char(' ')?;
842 }
843 Ok(())
844 })
845}
846
847pub(crate) fn fragment(did: DefId, tcx: TyCtxt<'_>) -> impl Display {
848 fmt::from_fn(move |f| {
849 let def_kind = tcx.def_kind(did);
850 match def_kind {
851 DefKind::AssocTy | DefKind::AssocFn | DefKind::AssocConst { .. } | DefKind::Variant => {
852 let item_type = ItemType::from_def_id(did, tcx);
853 write!(f, "#{}.{}", item_type.as_str(), tcx.item_name(did))
854 }
855 DefKind::Field => {
856 let parent_def_id = tcx.parent(did);
857 f.write_char('#')?;
858 if tcx.def_kind(parent_def_id) == DefKind::Variant {
859 write!(f, "variant.{}.field", tcx.item_name(parent_def_id).as_str())?;
860 } else {
861 f.write_str("structfield")?;
862 };
863 write!(f, ".{}", tcx.item_name(did))
864 }
865 _ => Ok(()),
866 }
867 })
868}
869
870pub(crate) fn print_anchor(did: DefId, text: Symbol, cx: &Context<'_>) -> impl Display {
871 fmt::from_fn(move |f| {
872 if let Ok(HrefInfo { url, kind, rust_path }) = href(did, cx) {
873 write!(
874 f,
875 r#"<a class="{kind}" href="{url}{anchor}" title="{kind} {path}">{text}</a>"#,
876 anchor = fragment(did, cx.tcx()),
877 path = join_path_syms(rust_path),
878 text = EscapeBodyText(text.as_str()),
879 )
880 } else {
881 f.write_str(text.as_str())
882 }
883 })
884}
885
886fn fmt_type(
887 t: &clean::Type,
888 f: &mut fmt::Formatter<'_>,
889 use_absolute: bool,
890 cx: &Context<'_>,
891) -> fmt::Result {
892 trace!("fmt_type(t = {t:?})");
893
894 match t {
895 clean::Generic(name) => f.write_str(name.as_str()),
896 clean::SelfTy => f.write_str("Self"),
897 clean::Type::Path { path } => {
898 let did = path.def_id();
900 resolved_path(f, did, path, path.is_assoc_ty(), use_absolute, cx)
901 }
902 clean::DynTrait(bounds, lt) => {
903 f.write_str("dyn ")?;
904 print_tybounds(bounds, lt, cx).fmt(f)
905 }
906 clean::Infer => write!(f, "_"),
907 clean::Primitive(clean::PrimitiveType::Never) => {
908 primitive_link(f, PrimitiveType::Never, format_args!("!"), cx)
909 }
910 &clean::Primitive(prim) => primitive_link(f, prim, format_args!("{}", prim.as_sym()), cx),
911 clean::BareFunction(decl) => {
912 print_higher_ranked_params_with_space(&decl.generic_params, cx, "for").fmt(f)?;
913 decl.safety.print_with_space().fmt(f)?;
914 print_abi_with_space(decl.abi).fmt(f)?;
915 if f.alternate() {
916 f.write_str("fn")?;
917 } else {
918 primitive_link(f, PrimitiveType::Fn, format_args!("fn"), cx)?;
919 }
920 print_fn_decl(&decl.decl, cx).fmt(f)
921 }
922 clean::UnsafeBinder(binder) => {
923 print_higher_ranked_params_with_space(&binder.generic_params, cx, "unsafe").fmt(f)?;
924 print_type(&binder.ty, cx).fmt(f)
925 }
926 clean::Tuple(typs) => match &typs[..] {
927 &[] => primitive_link(f, PrimitiveType::Unit, format_args!("()"), cx),
928 [one] => {
929 if let clean::Generic(name) = one {
930 primitive_link(f, PrimitiveType::Tuple, format_args!("({name},)"), cx)
931 } else {
932 write!(f, "(")?;
933 print_type(one, cx).fmt(f)?;
934 write!(f, ",)")
935 }
936 }
937 many => {
938 let generic_names: Vec<Symbol> = many
939 .iter()
940 .filter_map(|t| match t {
941 clean::Generic(name) => Some(*name),
942 _ => None,
943 })
944 .collect();
945 let is_generic = generic_names.len() == many.len();
946 if is_generic {
947 primitive_link(
948 f,
949 PrimitiveType::Tuple,
950 format_args!(
951 "{}",
952 Wrapped::with_parens()
953 .wrap_fn(|f| generic_names.iter().joined(", ", f))
954 ),
955 cx,
956 )
957 } else {
958 Wrapped::with_parens()
959 .wrap_fn(|f| many.iter().map(|item| print_type(item, cx)).joined(", ", f))
960 .fmt(f)
961 }
962 }
963 },
964 clean::Slice(box clean::Generic(name)) => {
965 primitive_link(f, PrimitiveType::Slice, format_args!("[{name}]"), cx)
966 }
967 clean::Slice(t) => Wrapped::with_square_brackets().wrap(print_type(t, cx)).fmt(f),
968 clean::Type::Pat(t, pat) => {
969 fmt::Display::fmt(&print_type(t, cx), f)?;
970 write!(f, " is {pat}")
971 }
972 clean::Type::FieldOf(t, field) => {
973 write!(f, "field_of!(")?;
974 fmt::Display::fmt(&print_type(t, cx), f)?;
975 write!(f, ", {field})")
976 }
977 clean::Array(box clean::Generic(name), n) if !f.alternate() => primitive_link(
978 f,
979 PrimitiveType::Array,
980 format_args!("[{name}; {n}]", n = Escape(n)),
981 cx,
982 ),
983 clean::Array(t, n) => Wrapped::with_square_brackets()
984 .wrap(fmt::from_fn(|f| {
985 print_type(t, cx).fmt(f)?;
986 f.write_str("; ")?;
987 if f.alternate() {
988 f.write_str(n)
989 } else {
990 primitive_link(f, PrimitiveType::Array, format_args!("{n}", n = Escape(n)), cx)
991 }
992 }))
993 .fmt(f),
994 clean::RawPointer(m, t) => {
995 let m = m.ptr_str();
996
997 if matches!(**t, clean::Generic(_)) || t.is_assoc_ty() {
998 primitive_link(
999 f,
1000 clean::PrimitiveType::RawPointer,
1001 format_args!("*{m} {ty}", ty = WithOpts::from(f).display(print_type(t, cx))),
1002 cx,
1003 )
1004 } else {
1005 primitive_link(f, clean::PrimitiveType::RawPointer, format_args!("*{m} "), cx)?;
1006 print_type(t, cx).fmt(f)
1007 }
1008 }
1009 clean::BorrowedRef { lifetime: l, mutability, type_: ty } => {
1010 let lt = fmt::from_fn(|f| match l {
1011 Some(l) => write!(f, "{} ", print_lifetime(l)),
1012 _ => Ok(()),
1013 });
1014 let m = mutability.print_with_space();
1015 let amp = if f.alternate() { "&" } else { "&" };
1016
1017 if let clean::Generic(name) = **ty {
1018 return primitive_link(
1019 f,
1020 PrimitiveType::Reference,
1021 format_args!("{amp}{lt}{m}{name}"),
1022 cx,
1023 );
1024 }
1025
1026 write!(f, "{amp}{lt}{m}")?;
1027
1028 let needs_parens = match **ty {
1029 clean::DynTrait(ref bounds, ref trait_lt)
1030 if bounds.len() > 1 || trait_lt.is_some() =>
1031 {
1032 true
1033 }
1034 clean::ImplTrait(ref bounds) if bounds.len() > 1 => true,
1035 _ => false,
1036 };
1037 Wrapped::with_parens()
1038 .when(needs_parens)
1039 .wrap_fn(|f| fmt_type(ty, f, use_absolute, cx))
1040 .fmt(f)
1041 }
1042 clean::ImplTrait(bounds) => {
1043 f.write_str("impl ")?;
1044 print_generic_bounds(bounds, cx).fmt(f)
1045 }
1046 clean::QPath(qpath) => print_qpath_data(qpath, cx).fmt(f),
1047 }
1048}
1049
1050pub(crate) fn print_type(type_: &clean::Type, cx: &Context<'_>) -> impl Display {
1051 fmt::from_fn(move |f| fmt_type(type_, f, false, cx))
1052}
1053
1054pub(crate) fn print_path(path: &clean::Path, cx: &Context<'_>) -> impl Display {
1055 fmt::from_fn(move |f| resolved_path(f, path.def_id(), path, false, false, cx))
1056}
1057
1058fn print_qpath_data(qpath_data: &clean::QPathData, cx: &Context<'_>) -> impl Display {
1059 let clean::QPathData { ref assoc, ref self_type, should_fully_qualify, ref trait_ } =
1060 *qpath_data;
1061
1062 fmt::from_fn(move |f| {
1063 if let Some(trait_) = trait_
1067 && should_fully_qualify
1068 {
1069 let opts = WithOpts::from(f);
1070 Wrapped::with_angle_brackets()
1071 .wrap(format_args!(
1072 "{} as {}",
1073 opts.display(print_type(self_type, cx)),
1074 opts.display(print_path(trait_, cx))
1075 ))
1076 .fmt(f)?
1077 } else {
1078 print_type(self_type, cx).fmt(f)?;
1079 }
1080 f.write_str("::")?;
1081 if !f.alternate() {
1092 let parent_href = match trait_ {
1105 Some(trait_) => href(trait_.def_id(), cx).ok(),
1106 None => self_type.def_id(cx.cache()).and_then(|did| href(did, cx).ok()),
1107 };
1108
1109 if let Some(HrefInfo { url, rust_path, .. }) = parent_href {
1110 write!(
1111 f,
1112 "<a class=\"associatedtype\" href=\"{url}#{shortty}.{name}\" \
1113 title=\"type {path}::{name}\">{name}</a>",
1114 shortty = ItemType::AssocType,
1115 name = assoc.name,
1116 path = join_path_syms(rust_path),
1117 )
1118 } else {
1119 write!(f, "{}", assoc.name)
1120 }
1121 } else {
1122 write!(f, "{}", assoc.name)
1123 }?;
1124
1125 print_generic_args(&assoc.args, cx).fmt(f)
1126 })
1127}
1128
1129pub(crate) fn print_impl(
1130 impl_: &clean::Impl,
1131 use_absolute: bool,
1132 cx: &Context<'_>,
1133) -> impl Display {
1134 fmt::from_fn(move |f| {
1135 f.write_str("impl")?;
1136 print_generics(&impl_.generics, cx).fmt(f)?;
1137 f.write_str(" ")?;
1138
1139 if let Some(ref ty) = impl_.trait_ {
1140 if impl_.is_negative_trait_impl() {
1141 f.write_char('!')?;
1142 }
1143 if impl_.kind.is_fake_variadic()
1144 && let Some(generics) = ty.generics()
1145 && let Ok(inner_type) = generics.exactly_one()
1146 {
1147 let last = ty.last();
1148 if f.alternate() {
1149 write!(f, "{last}")?;
1150 } else {
1151 write!(f, "{}", print_anchor(ty.def_id(), last, cx))?;
1152 };
1153 Wrapped::with_angle_brackets()
1154 .wrap_fn(|f| impl_.print_type(inner_type, f, use_absolute, cx))
1155 .fmt(f)?;
1156 } else {
1157 print_path(ty, cx).fmt(f)?;
1158 }
1159 f.write_str(" for ")?;
1160 }
1161
1162 if let Some(ty) = impl_.kind.as_blanket_ty() {
1163 fmt_type(ty, f, use_absolute, cx)?;
1164 } else {
1165 impl_.print_type(&impl_.for_, f, use_absolute, cx)?;
1166 }
1167
1168 print_where_clause(&impl_.generics, cx, 0, Ending::Newline).maybe_display().fmt(f)
1169 })
1170}
1171
1172impl clean::Impl {
1173 fn print_type(
1174 &self,
1175 type_: &clean::Type,
1176 f: &mut fmt::Formatter<'_>,
1177 use_absolute: bool,
1178 cx: &Context<'_>,
1179 ) -> Result<(), fmt::Error> {
1180 if let clean::Type::Tuple(types) = type_
1181 && let [clean::Type::Generic(name)] = &types[..]
1182 && (self.kind.is_fake_variadic() || self.kind.is_auto())
1183 {
1184 primitive_link_fragment(
1187 f,
1188 PrimitiveType::Tuple,
1189 format_args!("({name}₁, {name}₂, …, {name}ₙ)"),
1190 "#trait-implementations-1",
1191 cx,
1192 )?;
1193 } else if let clean::Type::Array(ty, len) = type_
1194 && let clean::Type::Generic(name) = &**ty
1195 && &len[..] == "1"
1196 && (self.kind.is_fake_variadic() || self.kind.is_auto())
1197 {
1198 primitive_link(f, PrimitiveType::Array, format_args!("[{name}; N]"), cx)?;
1199 } else if let clean::BareFunction(bare_fn) = &type_
1200 && let [clean::Parameter { type_: clean::Type::Generic(name), .. }] =
1201 &bare_fn.decl.inputs[..]
1202 && (self.kind.is_fake_variadic() || self.kind.is_auto())
1203 {
1204 print_higher_ranked_params_with_space(&bare_fn.generic_params, cx, "for").fmt(f)?;
1208 bare_fn.safety.print_with_space().fmt(f)?;
1209 print_abi_with_space(bare_fn.abi).fmt(f)?;
1210 let ellipsis = if bare_fn.decl.c_variadic { ", ..." } else { "" };
1211 primitive_link_fragment(
1212 f,
1213 PrimitiveType::Tuple,
1214 format_args!("fn({name}₁, {name}₂, …, {name}ₙ{ellipsis})"),
1215 "#trait-implementations-1",
1216 cx,
1217 )?;
1218 if !bare_fn.decl.output.is_unit() {
1220 write!(f, " -> ")?;
1221 fmt_type(&bare_fn.decl.output, f, use_absolute, cx)?;
1222 }
1223 } else if let clean::Type::Path { path } = type_
1224 && let Some(generics) = path.generics()
1225 && let Ok(ty) = generics.exactly_one()
1226 && self.kind.is_fake_variadic()
1227 {
1228 print_anchor(path.def_id(), path.last(), cx).fmt(f)?;
1229 Wrapped::with_angle_brackets()
1230 .wrap_fn(|f| self.print_type(ty, f, use_absolute, cx))
1231 .fmt(f)?;
1232 } else {
1233 fmt_type(type_, f, use_absolute, cx)?;
1234 }
1235 Ok(())
1236 }
1237}
1238
1239pub(crate) fn print_params(params: &[clean::Parameter], cx: &Context<'_>) -> impl Display {
1240 fmt::from_fn(move |f| {
1241 params
1242 .iter()
1243 .map(|param| {
1244 fmt::from_fn(|f| {
1245 if let Some(name) = param.name {
1246 write!(f, "{name}: ")?;
1247 }
1248 print_type(¶m.type_, cx).fmt(f)
1249 })
1250 })
1251 .joined(", ", f)
1252 })
1253}
1254
1255struct WriteCounter(usize);
1257
1258impl std::fmt::Write for WriteCounter {
1259 fn write_str(&mut self, s: &str) -> fmt::Result {
1260 self.0 += s.len();
1261 Ok(())
1262 }
1263}
1264
1265#[derive(Clone, Copy)]
1267struct Indent(usize);
1268
1269impl Display for Indent {
1270 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1271 for _ in 0..self.0 {
1272 f.write_char(' ')?;
1273 }
1274 Ok(())
1275 }
1276}
1277
1278fn print_parameter(parameter: &clean::Parameter, cx: &Context<'_>) -> impl fmt::Display {
1279 fmt::from_fn(move |f| {
1280 if let Some(self_ty) = parameter.to_receiver() {
1281 match self_ty {
1282 clean::SelfTy => f.write_str("self"),
1283 clean::BorrowedRef { lifetime, mutability, type_: box clean::SelfTy } => {
1284 f.write_str(if f.alternate() { "&" } else { "&" })?;
1285 if let Some(lt) = lifetime {
1286 write!(f, "{lt} ", lt = print_lifetime(lt))?;
1287 }
1288 write!(f, "{mutability}self", mutability = mutability.print_with_space())
1289 }
1290 _ => {
1291 f.write_str("self: ")?;
1292 print_type(self_ty, cx).fmt(f)
1293 }
1294 }
1295 } else {
1296 if parameter.is_const {
1297 write!(f, "const ")?;
1298 }
1299 if let Some(name) = parameter.name {
1300 write!(f, "{name}: ")?;
1301 }
1302 print_type(¶meter.type_, cx).fmt(f)
1303 }
1304 })
1305}
1306
1307fn print_fn_decl(fn_decl: &clean::FnDecl, cx: &Context<'_>) -> impl Display {
1308 fmt::from_fn(move |f| {
1309 let ellipsis = if fn_decl.c_variadic { ", ..." } else { "" };
1310 Wrapped::with_parens()
1311 .wrap_fn(|f| {
1312 print_params(&fn_decl.inputs, cx).fmt(f)?;
1313 f.write_str(ellipsis)
1314 })
1315 .fmt(f)?;
1316 fn_decl.print_output(cx).fmt(f)
1317 })
1318}
1319
1320pub(crate) fn full_print_fn_decl(
1327 fn_decl: &clean::FnDecl,
1328 header_len: usize,
1329 indent: usize,
1330 cx: &Context<'_>,
1331) -> impl Display {
1332 fmt::from_fn(move |f| {
1333 let mut counter = WriteCounter(0);
1335 write!(&mut counter, "{:#}", fmt::from_fn(|f| { fn_decl.inner_full_print(None, f, cx) }))?;
1336 let line_wrapping_indent = if header_len + counter.0 > 80 { Some(indent) } else { None };
1338 fn_decl.inner_full_print(line_wrapping_indent, f, cx)
1341 })
1342}
1343
1344impl clean::FnDecl {
1345 fn inner_full_print(
1346 &self,
1347 line_wrapping_indent: Option<usize>,
1350 f: &mut fmt::Formatter<'_>,
1351 cx: &Context<'_>,
1352 ) -> fmt::Result {
1353 Wrapped::with_parens()
1354 .wrap_fn(|f| {
1355 if !self.inputs.is_empty() {
1356 let line_wrapping_indent = line_wrapping_indent.map(|n| Indent(n + 4));
1357
1358 if let Some(indent) = line_wrapping_indent {
1359 write!(f, "\n{indent}")?;
1360 }
1361
1362 let sep = fmt::from_fn(|f| {
1363 if let Some(indent) = line_wrapping_indent {
1364 write!(f, ",\n{indent}")
1365 } else {
1366 f.write_str(", ")
1367 }
1368 });
1369
1370 self.inputs.iter().map(|param| print_parameter(param, cx)).joined(sep, f)?;
1371
1372 if line_wrapping_indent.is_some() {
1373 writeln!(f, ",")?
1374 }
1375
1376 if self.c_variadic {
1377 match line_wrapping_indent {
1378 None => write!(f, ", ...")?,
1379 Some(indent) => writeln!(f, "{indent}...")?,
1380 };
1381 }
1382 }
1383
1384 if let Some(n) = line_wrapping_indent {
1385 write!(f, "{}", Indent(n))?
1386 }
1387
1388 Ok(())
1389 })
1390 .fmt(f)?;
1391
1392 self.print_output(cx).fmt(f)
1393 }
1394
1395 fn print_output(&self, cx: &Context<'_>) -> impl Display {
1396 fmt::from_fn(move |f| {
1397 if self.output.is_unit() {
1398 return Ok(());
1399 }
1400
1401 f.write_str(if f.alternate() { " -> " } else { " -> " })?;
1402 print_type(&self.output, cx).fmt(f)
1403 })
1404 }
1405}
1406
1407pub(crate) fn visibility_print_with_space(item: &clean::Item, cx: &Context<'_>) -> impl Display {
1408 fmt::from_fn(move |f| {
1409 let Some(vis) = item.visibility(cx.tcx()) else {
1410 return Ok(());
1411 };
1412
1413 match vis {
1414 ty::Visibility::Public => f.write_str("pub ")?,
1415 ty::Visibility::Restricted(vis_did) => {
1416 let parent_module =
1420 find_nearest_parent_module(cx.tcx(), item.item_id.expect_def_id());
1421
1422 if vis_did.is_crate_root() {
1423 f.write_str("pub(crate) ")?;
1424 } else if parent_module == Some(vis_did) {
1425 } else if parent_module
1428 .and_then(|parent| find_nearest_parent_module(cx.tcx(), parent))
1429 == Some(vis_did)
1430 {
1431 f.write_str("pub(super) ")?;
1432 } else {
1433 let path = cx.tcx().def_path(vis_did);
1434 debug!("path={path:?}");
1435 let last_name = path.data.last().unwrap().data.get_opt_name().unwrap();
1437 let anchor = print_anchor(vis_did, last_name, cx);
1438
1439 f.write_str("pub(in ")?;
1440 for seg in &path.data[..path.data.len() - 1] {
1441 write!(f, "{}::", seg.data.get_opt_name().unwrap())?;
1442 }
1443 write!(f, "{anchor}) ")?;
1444 }
1445 }
1446 }
1447 Ok(())
1448 })
1449}
1450
1451pub(crate) trait PrintWithSpace {
1452 fn print_with_space(&self) -> &str;
1453}
1454
1455impl PrintWithSpace for hir::Safety {
1456 fn print_with_space(&self) -> &str {
1457 self.prefix_str()
1458 }
1459}
1460
1461impl PrintWithSpace for hir::HeaderSafety {
1462 fn print_with_space(&self) -> &str {
1463 match self {
1464 hir::HeaderSafety::SafeTargetFeatures => "",
1465 hir::HeaderSafety::Normal(safety) => safety.print_with_space(),
1466 }
1467 }
1468}
1469
1470impl PrintWithSpace for hir::IsAsync {
1471 fn print_with_space(&self) -> &str {
1472 match self {
1473 hir::IsAsync::Async(_) => "async ",
1474 hir::IsAsync::NotAsync => "",
1475 }
1476 }
1477}
1478
1479impl PrintWithSpace for hir::Mutability {
1480 fn print_with_space(&self) -> &str {
1481 match self {
1482 hir::Mutability::Not => "",
1483 hir::Mutability::Mut => "mut ",
1484 }
1485 }
1486}
1487
1488pub(crate) fn print_constness_with_space(
1489 c: &hir::Constness,
1490 overall_stab: Option<StableSince>,
1491 const_stab: Option<ConstStability>,
1492) -> &'static str {
1493 match c {
1494 hir::Constness::Const => match (overall_stab, const_stab) {
1495 (_, Some(ConstStability { level: StabilityLevel::Stable { .. }, .. }))
1497 | (_, None)
1499 | (None, Some(ConstStability { level: StabilityLevel::Unstable { .. }, .. })) => {
1501 "const "
1502 }
1503 (Some(_), Some(ConstStability { level: StabilityLevel::Unstable { .. }, .. })) => "",
1505 },
1506 hir::Constness::NotConst => "",
1508 }
1509}
1510
1511pub(crate) fn print_import(import: &clean::Import, cx: &Context<'_>) -> impl Display {
1512 fmt::from_fn(move |f| match import.kind {
1513 clean::ImportKind::Simple(name) => {
1514 if name == import.source.path.last() {
1515 write!(f, "use {};", print_import_source(&import.source, cx))
1516 } else {
1517 write!(
1518 f,
1519 "use {source} as {name};",
1520 source = print_import_source(&import.source, cx)
1521 )
1522 }
1523 }
1524 clean::ImportKind::Glob => {
1525 if import.source.path.segments.is_empty() {
1526 write!(f, "use *;")
1527 } else {
1528 write!(f, "use {}::*;", print_import_source(&import.source, cx))
1529 }
1530 }
1531 })
1532}
1533
1534fn print_import_source(import_source: &clean::ImportSource, cx: &Context<'_>) -> impl Display {
1535 fmt::from_fn(move |f| match import_source.did {
1536 Some(did) => resolved_path(f, did, &import_source.path, true, false, cx),
1537 _ => {
1538 for seg in &import_source.path.segments[..import_source.path.segments.len() - 1] {
1539 write!(f, "{}::", seg.name)?;
1540 }
1541 let name = import_source.path.last();
1542 if let hir::def::Res::PrimTy(p) = import_source.path.res {
1543 primitive_link(f, PrimitiveType::from(p), format_args!("{name}"), cx)?;
1544 } else {
1545 f.write_str(name.as_str())?;
1546 }
1547 Ok(())
1548 }
1549 })
1550}
1551
1552fn print_assoc_item_constraint(
1553 assoc_item_constraint: &clean::AssocItemConstraint,
1554 cx: &Context<'_>,
1555) -> impl Display {
1556 fmt::from_fn(move |f| {
1557 f.write_str(assoc_item_constraint.assoc.name.as_str())?;
1558 print_generic_args(&assoc_item_constraint.assoc.args, cx).fmt(f)?;
1559 match assoc_item_constraint.kind {
1560 clean::AssocItemConstraintKind::Equality { ref term } => {
1561 f.write_str(" = ")?;
1562 print_term(term, cx).fmt(f)?;
1563 }
1564 clean::AssocItemConstraintKind::Bound { ref bounds } => {
1565 if !bounds.is_empty() {
1566 f.write_str(": ")?;
1567 print_generic_bounds(bounds, cx).fmt(f)?;
1568 }
1569 }
1570 }
1571 Ok(())
1572 })
1573}
1574
1575pub(crate) fn print_abi_with_space(abi: ExternAbi) -> impl Display {
1576 fmt::from_fn(move |f| {
1577 let quot = if f.alternate() { "\"" } else { """ };
1578 match abi {
1579 ExternAbi::Rust => Ok(()),
1580 abi => write!(f, "extern {0}{1}{0} ", quot, abi.name()),
1581 }
1582 })
1583}
1584
1585fn print_generic_arg(generic_arg: &clean::GenericArg, cx: &Context<'_>) -> impl Display {
1586 fmt::from_fn(move |f| match generic_arg {
1587 clean::GenericArg::Lifetime(lt) => f.write_str(print_lifetime(lt)),
1588 clean::GenericArg::Type(ty) => print_type(ty, cx).fmt(f),
1589 clean::GenericArg::Const(ct) => print_constant_kind(ct, cx.tcx()).fmt(f),
1590 clean::GenericArg::Infer => f.write_char('_'),
1591 })
1592}
1593
1594fn print_term(term: &clean::Term, cx: &Context<'_>) -> impl Display {
1595 fmt::from_fn(move |f| match term {
1596 clean::Term::Type(ty) => print_type(ty, cx).fmt(f),
1597 clean::Term::Constant(ct) => print_constant_kind(ct, cx.tcx()).fmt(f),
1598 })
1599}