Skip to main content

rustc_hir_analysis/collect/
generics_of.rs

1use std::assert_matches;
2use std::ops::ControlFlow;
3
4use rustc_errors::{Diag, DiagCtxtHandle, Diagnostic, Level};
5use rustc_hir::def::DefKind;
6use rustc_hir::def_id::LocalDefId;
7use rustc_hir::intravisit::{self, Visitor, VisitorExt};
8use rustc_hir::{self as hir, AmbigArg, GenericParamKind, HirId, Node};
9use rustc_middle::span_bug;
10use rustc_middle::ty::{self, TyCtxt};
11use rustc_session::lint;
12use rustc_span::{Span, kw, sym};
13use tracing::{debug, instrument};
14
15use crate::middle::resolve_bound_vars as rbv;
16
17x;#[instrument(level = "debug", skip(tcx), ret)]
18pub(super) fn generics_of(tcx: TyCtxt<'_>, def_id: LocalDefId) -> ty::Generics {
19    use rustc_hir::*;
20
21    struct GenericParametersForbiddenHere {
22        msg: &'static str,
23    }
24
25    impl<'a> Diagnostic<'a, ()> for GenericParametersForbiddenHere {
26        fn into_diag(self, dcx: DiagCtxtHandle<'a>, level: Level) -> Diag<'a, ()> {
27            let Self { msg } = self;
28            Diag::new(dcx, level, msg)
29        }
30    }
31
32    // For an RPITIT, synthesize generics which are equal to the opaque's generics
33    // and parent fn's generics compressed into one list.
34    if let Some(ty::ImplTraitInTraitData::Trait { fn_def_id, opaque_def_id }) =
35        tcx.opt_rpitit_info(def_id.to_def_id())
36    {
37        debug!("RPITIT fn_def_id={fn_def_id:?} opaque_def_id={opaque_def_id:?}");
38        let trait_def_id = tcx.parent(fn_def_id);
39        let opaque_ty_generics = tcx.generics_of(opaque_def_id);
40        let opaque_ty_parent_count = opaque_ty_generics.parent_count;
41        let mut own_params = opaque_ty_generics.own_params.clone();
42
43        let parent_generics = tcx.generics_of(trait_def_id);
44        let parent_count = parent_generics.parent_count + parent_generics.own_params.len();
45
46        let mut trait_fn_params = tcx.generics_of(fn_def_id).own_params.clone();
47
48        for param in &mut own_params {
49            param.index = param.index + parent_count as u32 + trait_fn_params.len() as u32
50                - opaque_ty_parent_count as u32;
51        }
52
53        trait_fn_params.extend(own_params);
54        own_params = trait_fn_params;
55
56        let param_def_id_to_index =
57            own_params.iter().map(|param| (param.def_id, param.index)).collect();
58
59        return ty::Generics {
60            parent: Some(trait_def_id),
61            parent_count,
62            own_params,
63            param_def_id_to_index,
64            has_self: opaque_ty_generics.has_self,
65            has_late_bound_regions: opaque_ty_generics.has_late_bound_regions,
66        };
67    }
68
69    let hir_id = tcx.local_def_id_to_hir_id(def_id);
70    let node = tcx.hir_node(hir_id);
71
72    let parent_def_id = match node {
73        Node::ImplItem(_)
74        | Node::TraitItem(_)
75        | Node::Variant(_)
76        | Node::Ctor(..)
77        | Node::Field(_) => {
78            let parent_id = tcx.hir_get_parent_item(hir_id);
79            Some(parent_id.def_id)
80        }
81        // FIXME(#43408) always enable this once `lazy_normalization` is
82        // stable enough and does not need a feature gate anymore.
83        Node::AnonConst(_) => {
84            let parent_did = tcx.local_parent(def_id);
85            debug!(?parent_did);
86
87            let mut in_param_ty = false;
88            for (_parent, node) in tcx.hir_parent_iter(hir_id) {
89                if let Some(generics) = node.generics() {
90                    let mut visitor = AnonConstInParamTyDetector { in_param_ty: false, ct: hir_id };
91
92                    in_param_ty = visitor.visit_generics(generics).is_break();
93                    break;
94                }
95            }
96
97            match tcx.anon_const_kind(def_id) {
98                // Stable: anon consts are not able to use any generic parameters...
99                ty::AnonConstKind::MCG => None,
100                // we provide generics to repeat expr counts as a backwards compatibility hack. #76200
101                ty::AnonConstKind::RepeatExprCount => Some(parent_did),
102
103                // Even GCE anon const should not be allowed to use generic parameters as it would be
104                // trivially forward declared uses once desugared. E.g. `const N: [u8; ANON::<N>]`.
105                //
106                // We could potentially mirror the hack done for defaults of generic parameters but
107                // this case just doesn't come up much compared to `const N: u32 = ...`. Long term the
108                // hack for defaulted parameters should be removed eventually anyway.
109                ty::AnonConstKind::GCE if in_param_ty => None,
110                // GCE anon consts as a default for a generic parameter should have their provided generics
111                // "truncated" up to whatever generic parameter this anon const is within the default of.
112                //
113                // FIXME(generic_const_exprs): This only handles `const N: usize = /*defid*/` but not type
114                // parameter defaults, e.g. `T = Foo</*defid*/>`.
115                ty::AnonConstKind::GCE
116                    if let Some(param_id) =
117                        tcx.hir_opt_const_param_default_param_def_id(hir_id) =>
118                {
119                    // If the def_id we are calling generics_of on is an anon ct default i.e:
120                    //
121                    // struct Foo<const N: usize = { .. }>;
122                    //        ^^^       ^          ^^^^^^ def id of this anon const
123                    //        ^         ^ param_id
124                    //        ^ parent_def_id
125                    //
126                    // then we only want to return generics for params to the left of `N`. If we don't do that we
127                    // end up with that const looking like: `ty::ConstKind::Unevaluated(def_id, args: [N#0])`.
128                    //
129                    // This causes ICEs (#86580) when building the args for Foo in `fn foo() -> Foo { .. }` as
130                    // we instantiate the defaults with the partially built args when we build the args. Instantiating
131                    // the `N#0` on the unevaluated const indexes into the empty args we're in the process of building.
132                    //
133                    // We fix this by having this function return the parent's generics ourselves and truncating the
134                    // generics to only include non-forward declared params (with the exception of the `Self` ty)
135                    //
136                    // For the above code example that means we want `args: []`
137                    // For the following struct def we want `args: [N#0]` when generics_of is called on
138                    // the def id of the `{ N + 1 }` anon const
139                    // struct Foo<const N: usize, const M: usize = { N + 1 }>;
140                    //
141                    // This has some implications for how we get the predicates available to the anon const
142                    // see `explicit_predicates_of` for more information on this
143                    let generics = tcx.generics_of(parent_did);
144                    let param_def_idx = generics.param_def_id_to_index[&param_id.to_def_id()];
145                    // In the above example this would be .params[..N#0]
146                    let own_params = generics.params_to(param_def_idx as usize, tcx).to_owned();
147                    let param_def_id_to_index =
148                        own_params.iter().map(|param| (param.def_id, param.index)).collect();
149
150                    return ty::Generics {
151                        // we set the parent of these generics to be our parent's parent so that we
152                        // dont end up with args: [N, M, N] for the const default on a struct like this:
153                        // struct Foo<const N: usize, const M: usize = { ... }>;
154                        parent: generics.parent,
155                        parent_count: generics.parent_count,
156                        own_params,
157                        param_def_id_to_index,
158                        has_self: generics.has_self,
159                        has_late_bound_regions: generics.has_late_bound_regions,
160                    };
161                }
162                ty::AnonConstKind::GCE => Some(parent_did),
163
164                // Field defaults are allowed to use generic parameters, e.g. `field: u32 = /*defid: N + 1*/`
165                ty::AnonConstKind::NonTypeSystem
166                    if matches!(tcx.parent_hir_node(hir_id), Node::TyPat(_) | Node::Field(_)) =>
167                {
168                    Some(parent_did)
169                }
170                // Default to no generic parameters for other kinds of anon consts
171                ty::AnonConstKind::NonTypeSystem => None,
172            }
173        }
174        Node::ConstBlock(_)
175        | Node::Expr(&hir::Expr { kind: hir::ExprKind::Closure { .. }, .. }) => {
176            Some(tcx.typeck_root_def_id_local(def_id))
177        }
178        Node::OpaqueTy(&hir::OpaqueTy {
179            origin:
180                hir::OpaqueTyOrigin::FnReturn { parent: fn_def_id, in_trait_or_impl }
181                | hir::OpaqueTyOrigin::AsyncFn { parent: fn_def_id, in_trait_or_impl },
182            ..
183        }) => {
184            if in_trait_or_impl.is_some() {
185                assert_matches!(tcx.def_kind(fn_def_id), DefKind::AssocFn);
186            } else {
187                assert_matches!(tcx.def_kind(fn_def_id), DefKind::AssocFn | DefKind::Fn);
188            }
189            Some(fn_def_id)
190        }
191        Node::OpaqueTy(&hir::OpaqueTy {
192            origin: hir::OpaqueTyOrigin::TyAlias { parent, in_assoc_ty },
193            ..
194        }) => {
195            if in_assoc_ty {
196                assert_matches!(tcx.def_kind(parent), DefKind::AssocTy);
197            } else {
198                assert_matches!(tcx.def_kind(parent), DefKind::TyAlias);
199            }
200            debug!("generics_of: parent of opaque ty {:?} is {:?}", def_id, parent);
201            // Opaque types are always nested within another item, and
202            // inherit the generics of the item.
203            Some(parent)
204        }
205
206        // All of these nodes have no parent from which to inherit generics.
207        Node::Item(_) | Node::ForeignItem(_) => None,
208
209        // Params don't really have generics, but we use it when instantiating their value paths.
210        Node::GenericParam(_) => None,
211
212        Node::Synthetic => span_bug!(
213            tcx.def_span(def_id),
214            "synthetic HIR should have its `generics_of` explicitly fed"
215        ),
216
217        _ => span_bug!(tcx.def_span(def_id), "generics_of: unexpected node kind {node:?}"),
218    };
219
220    // Add in the self type parameter.
221    let opt_self = if let Node::Item(item) = node
222        && let ItemKind::Trait { .. } | ItemKind::TraitAlias(..) = item.kind
223    {
224        // Something of a hack: We reuse the node ID of the trait for the self type parameter.
225        Some(ty::GenericParamDef {
226            index: 0,
227            name: kw::SelfUpper,
228            def_id: def_id.to_def_id(),
229            pure_wrt_drop: false,
230            kind: ty::GenericParamDefKind::Type { has_default: false, synthetic: false },
231        })
232    } else {
233        None
234    };
235
236    let param_default_policy = param_default_policy(node);
237    let hir_generics = node.generics().unwrap_or(hir::Generics::empty());
238    let has_self = opt_self.is_some();
239    let mut parent_has_self = false;
240    let mut own_start = has_self as u32;
241    let parent_count = parent_def_id.map_or(0, |def_id| {
242        let generics = tcx.generics_of(def_id);
243        assert!(!has_self);
244        parent_has_self = generics.has_self;
245        own_start = generics.count() as u32;
246        generics.parent_count + generics.own_params.len()
247    });
248
249    let mut own_params: Vec<_> = Vec::with_capacity(hir_generics.params.len() + has_self as usize);
250
251    if let Some(opt_self) = opt_self {
252        own_params.push(opt_self);
253    }
254
255    let early_lifetimes = super::early_bound_lifetimes_from_generics(tcx, hir_generics);
256    own_params.extend(early_lifetimes.enumerate().map(|(i, param)| ty::GenericParamDef {
257        name: param.name.ident().name,
258        index: own_start + i as u32,
259        def_id: param.def_id.to_def_id(),
260        pure_wrt_drop: param.pure_wrt_drop,
261        kind: ty::GenericParamDefKind::Lifetime,
262    }));
263
264    // Now create the real type and const parameters.
265    let type_start = own_start - has_self as u32 + own_params.len() as u32;
266    let mut i: u32 = 0;
267    let mut next_index = || {
268        let prev = i;
269        i += 1;
270        prev + type_start
271    };
272
273    own_params.extend(hir_generics.params.iter().filter_map(|param| {
274        const MESSAGE: &str = "defaults for generic parameters are not allowed here";
275        let kind = match param.kind {
276            GenericParamKind::Lifetime { .. } => return None,
277            GenericParamKind::Type { default, synthetic } => {
278                if default.is_some() {
279                    match param_default_policy.expect("no policy for generic param default") {
280                        ParamDefaultPolicy::Allowed => {}
281                        ParamDefaultPolicy::FutureCompatForbidden => {
282                            tcx.emit_node_span_lint(
283                                lint::builtin::INVALID_TYPE_PARAM_DEFAULT,
284                                param.hir_id,
285                                param.span,
286                                GenericParametersForbiddenHere { msg: MESSAGE },
287                            );
288                        }
289                        ParamDefaultPolicy::Forbidden => {
290                            tcx.dcx().span_err(param.span, MESSAGE);
291                        }
292                    }
293                }
294
295                ty::GenericParamDefKind::Type { has_default: default.is_some(), synthetic }
296            }
297            GenericParamKind::Const { ty: _, default } => {
298                if default.is_some() {
299                    match param_default_policy.expect("no policy for generic param default") {
300                        ParamDefaultPolicy::Allowed => {}
301                        ParamDefaultPolicy::FutureCompatForbidden
302                        | ParamDefaultPolicy::Forbidden => {
303                            tcx.dcx().span_err(param.span, MESSAGE);
304                        }
305                    }
306                }
307
308                ty::GenericParamDefKind::Const { has_default: default.is_some() }
309            }
310        };
311        Some(ty::GenericParamDef {
312            index: next_index(),
313            name: param.name.ident().name,
314            def_id: param.def_id.to_def_id(),
315            pure_wrt_drop: param.pure_wrt_drop,
316            kind,
317        })
318    }));
319
320    // provide junk type parameter defs - the only place that
321    // cares about anything but the length is instantiation,
322    // and we don't do that for closures.
323    if let Node::Expr(&hir::Expr {
324        kind: hir::ExprKind::Closure(hir::Closure { kind, .. }), ..
325    }) = node
326    {
327        // See `ClosureArgsParts`, `CoroutineArgsParts`, and `CoroutineClosureArgsParts`
328        // for info on the usage of each of these fields.
329        let len = match kind {
330            // The args are: closure_kind, closure_signature, upvars.
331            ClosureKind::Closure => 3,
332            // The args are: coroutine_kind, resume_ty, yield_ty, return_ty, upvars.
333            ClosureKind::Coroutine(_) => 5,
334            // The args are: closure_kind, closure_signature_parts, upvars, bound_captures_by_ref.
335            ClosureKind::CoroutineClosure(_) => 4,
336        };
337
338        own_params.extend((0..len).map(|_| ty::GenericParamDef {
339            index: next_index(),
340            name: sym::empty, // dummy; exact value doesn't matter
341            def_id: def_id.to_def_id(),
342            pure_wrt_drop: false,
343            kind: ty::GenericParamDefKind::Type { has_default: false, synthetic: false },
344        }));
345    }
346
347    // provide junk type parameter defs for const blocks.
348    if let Node::ConstBlock(_) = node {
349        own_params.push(ty::GenericParamDef {
350            index: next_index(),
351            name: rustc_span::sym::const_ty_placeholder,
352            def_id: def_id.to_def_id(),
353            pure_wrt_drop: false,
354            kind: ty::GenericParamDefKind::Type { has_default: false, synthetic: false },
355        });
356    }
357
358    if let Node::OpaqueTy(&hir::OpaqueTy { .. }) = node {
359        assert!(own_params.is_empty());
360
361        let lifetimes = tcx.opaque_captured_lifetimes(def_id);
362        debug!(?lifetimes);
363
364        own_params.extend(lifetimes.iter().map(|&(_, param)| ty::GenericParamDef {
365            name: tcx.item_name(param.to_def_id()),
366            index: next_index(),
367            def_id: param.to_def_id(),
368            pure_wrt_drop: false,
369            kind: ty::GenericParamDefKind::Lifetime,
370        }))
371    }
372
373    let param_def_id_to_index =
374        own_params.iter().map(|param| (param.def_id, param.index)).collect();
375
376    ty::Generics {
377        parent: parent_def_id.map(LocalDefId::to_def_id),
378        parent_count,
379        own_params,
380        param_def_id_to_index,
381        has_self: has_self || parent_has_self,
382        has_late_bound_regions: has_late_bound_regions(tcx, node),
383    }
384}
385
386#[derive(#[automatically_derived]
impl ::core::clone::Clone for ParamDefaultPolicy {
    #[inline]
    fn clone(&self) -> ParamDefaultPolicy { *self }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for ParamDefaultPolicy { }Copy)]
387enum ParamDefaultPolicy {
388    Allowed,
389    /// Tracked in <https://github.com/rust-lang/rust/issues/36887>.
390    FutureCompatForbidden,
391    Forbidden,
392}
393
394fn param_default_policy(node: Node<'_>) -> Option<ParamDefaultPolicy> {
395    use rustc_hir::*;
396
397    Some(match node {
398        Node::Item(item) => match item.kind {
399            ItemKind::Trait { .. }
400            | ItemKind::TraitAlias(..)
401            | ItemKind::TyAlias(..)
402            | ItemKind::Enum(..)
403            | ItemKind::Struct(..)
404            | ItemKind::Union(..) => ParamDefaultPolicy::Allowed,
405            ItemKind::Fn { .. } | ItemKind::Impl(_) => ParamDefaultPolicy::FutureCompatForbidden,
406            // Re. GCI, we're not bound by backward compatibility.
407            ItemKind::Const(..) => ParamDefaultPolicy::Forbidden,
408            _ => return None,
409        },
410        Node::TraitItem(item) => match item.kind {
411            // Re. GATs and GACs (generic_const_items), we're not bound by backward compatibility.
412            TraitItemKind::Const(..) | TraitItemKind::Type(..) => ParamDefaultPolicy::Forbidden,
413            TraitItemKind::Fn(..) => ParamDefaultPolicy::FutureCompatForbidden,
414        },
415        Node::ImplItem(item) => match item.kind {
416            // Re. GATs and GACs (generic_const_items), we're not bound by backward compatibility.
417            ImplItemKind::Const(..) | ImplItemKind::Type(..) => ParamDefaultPolicy::Forbidden,
418            ImplItemKind::Fn(..) => ParamDefaultPolicy::FutureCompatForbidden,
419        },
420        // Generic params are (semantically) invalid on foreign items. Still, for maximum forward
421        // compatibility, let's hard-reject defaults on them.
422        Node::ForeignItem(_) => ParamDefaultPolicy::Forbidden,
423        Node::OpaqueTy(..) => ParamDefaultPolicy::Allowed,
424        _ => return None,
425    })
426}
427
428fn has_late_bound_regions<'tcx>(tcx: TyCtxt<'tcx>, node: Node<'tcx>) -> Option<Span> {
429    struct LateBoundRegionsDetector<'tcx> {
430        tcx: TyCtxt<'tcx>,
431        outer_index: ty::DebruijnIndex,
432    }
433
434    impl<'tcx> Visitor<'tcx> for LateBoundRegionsDetector<'tcx> {
435        type Result = ControlFlow<Span>;
436        fn visit_ty(&mut self, ty: &'tcx hir::Ty<'tcx, AmbigArg>) -> ControlFlow<Span> {
437            match ty.kind {
438                hir::TyKind::FnPtr(..) => {
439                    self.outer_index.shift_in(1);
440                    let res = intravisit::walk_ty(self, ty);
441                    self.outer_index.shift_out(1);
442                    res
443                }
444                hir::TyKind::UnsafeBinder(_) => {
445                    self.outer_index.shift_in(1);
446                    let res = intravisit::walk_ty(self, ty);
447                    self.outer_index.shift_out(1);
448                    res
449                }
450                _ => intravisit::walk_ty(self, ty),
451            }
452        }
453
454        fn visit_poly_trait_ref(&mut self, tr: &'tcx hir::PolyTraitRef<'tcx>) -> ControlFlow<Span> {
455            self.outer_index.shift_in(1);
456            let res = intravisit::walk_poly_trait_ref(self, tr);
457            self.outer_index.shift_out(1);
458            res
459        }
460
461        fn visit_lifetime(&mut self, lt: &'tcx hir::Lifetime) -> ControlFlow<Span> {
462            match self.tcx.named_bound_var(lt.hir_id) {
463                Some(rbv::ResolvedArg::StaticLifetime | rbv::ResolvedArg::EarlyBound(..)) => {
464                    ControlFlow::Continue(())
465                }
466                Some(rbv::ResolvedArg::LateBound(debruijn, _, _))
467                    if debruijn < self.outer_index =>
468                {
469                    ControlFlow::Continue(())
470                }
471                Some(
472                    rbv::ResolvedArg::LateBound(..)
473                    | rbv::ResolvedArg::Free(..)
474                    | rbv::ResolvedArg::Error(_),
475                )
476                | None => ControlFlow::Break(lt.ident.span),
477            }
478        }
479    }
480
481    fn has_late_bound_regions<'tcx>(
482        tcx: TyCtxt<'tcx>,
483        generics: &'tcx hir::Generics<'tcx>,
484        decl: &'tcx hir::FnDecl<'tcx>,
485    ) -> Option<Span> {
486        let mut visitor = LateBoundRegionsDetector { tcx, outer_index: ty::INNERMOST };
487        for param in generics.params {
488            if let GenericParamKind::Lifetime { .. } = param.kind {
489                if tcx.is_late_bound(param.hir_id) {
490                    return Some(param.span);
491                }
492            }
493        }
494        visitor.visit_fn_decl(decl).break_value()
495    }
496
497    let decl = node.fn_decl()?;
498    let generics = node.generics()?;
499    has_late_bound_regions(tcx, generics, decl)
500}
501
502struct AnonConstInParamTyDetector {
503    in_param_ty: bool,
504    ct: HirId,
505}
506
507impl<'v> Visitor<'v> for AnonConstInParamTyDetector {
508    type Result = ControlFlow<()>;
509
510    fn visit_generic_param(&mut self, p: &'v hir::GenericParam<'v>) -> Self::Result {
511        if let GenericParamKind::Const { ty, default: _ } = p.kind {
512            let prev = self.in_param_ty;
513            self.in_param_ty = true;
514            let res = self.visit_ty_unambig(ty);
515            self.in_param_ty = prev;
516            res
517        } else {
518            ControlFlow::Continue(())
519        }
520    }
521
522    fn visit_anon_const(&mut self, c: &'v hir::AnonConst) -> Self::Result {
523        if self.in_param_ty && self.ct == c.hir_id {
524            return ControlFlow::Break(());
525        }
526        intravisit::walk_anon_const(self, c)
527    }
528}