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1//! Helper routines for higher-ranked things. See the `doc` module at
2//! the end of the file for details.
3
c34b1796 4use super::combine::CombineFields;
29967ef6 5use super::{HigherRankedType, InferCtxt};
1a4d82fc 6
9fa01778 7use crate::infer::CombinedSnapshot;
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8use rustc_middle::ty::relate::{Relate, RelateResult, TypeRelation};
9use rustc_middle::ty::{self, Binder, TypeFoldable};
3157f602 10
dc9dc135 11impl<'a, 'tcx> CombineFields<'a, 'tcx> {
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12 pub fn higher_ranked_sub<T>(
13 &mut self,
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14 a: Binder<'tcx, T>,
15 b: Binder<'tcx, T>,
0731742a 16 a_is_expected: bool,
cdc7bbd5 17 ) -> RelateResult<'tcx, Binder<'tcx, T>>
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18 where
19 T: Relate<'tcx>,
1a4d82fc 20 {
0731742a 21 debug!("higher_ranked_sub(a={:?}, b={:?})", a, b);
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22
23 // Rather than checking the subtype relationship between `a` and `b`
24 // as-is, we need to do some extra work here in order to make sure
25 // that function subtyping works correctly with respect to regions
26 //
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27 // Note: this is a subtle algorithm. For a full explanation, please see
28 // the rustc dev guide:
29 // <https://rustc-dev-guide.rust-lang.org/borrow_check/region_inference/placeholders_and_universes.html>
1a4d82fc 30
0731742a 31 let span = self.trace.cause.span;
3157f602 32
f035d41b 33 self.infcx.commit_if_ok(|_| {
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34 // First, we instantiate each bound region in the supertype with a
35 // fresh placeholder region.
fc512014 36 let b_prime = self.infcx.replace_bound_vars_with_placeholders(b);
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37
38 // Next, we instantiate each bound region in the subtype
39 // with a fresh region variable. These region variables --
40 // but no other pre-existing region variables -- can name
41 // the placeholders.
0731742a 42 let (a_prime, _) =
fc512014 43 self.infcx.replace_bound_vars_with_fresh_vars(span, HigherRankedType, a);
1a4d82fc 44
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45 debug!("a_prime={:?}", a_prime);
46 debug!("b_prime={:?}", b_prime);
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47
48 // Compare types now that bound regions have been replaced.
f035d41b 49 let result = self.sub(a_is_expected).relate(a_prime, b_prime)?;
1a4d82fc 50
a7813a04 51 debug!("higher_ranked_sub: OK result={:?}", result);
1a4d82fc 52
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53 // We related `a_prime` and `b_prime`, which just had any bound vars
54 // replaced with placeholders or infer vars, respectively. Relating
55 // them should not introduce new bound vars.
56 Ok(ty::Binder::dummy(result))
ba9703b0 57 })
1a4d82fc 58 }
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59}
60
dc9dc135 61impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
9fa01778 62 /// Replaces all regions (resp. types) bound by `binder` with placeholder
a1dfa0c6 63 /// regions (resp. types) and return a map indicating which bound-region
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64 /// placeholder region. This is the first step of checking subtyping
65 /// when higher-ranked things are involved.
3157f602 66 ///
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67 /// **Important:** You have to be careful to not leak these placeholders,
68 /// for more information about how placeholders and HRTBs work, see
ba9703b0 69 /// the [rustc dev guide].
0531ce1d 70 ///
ba9703b0 71 /// [rustc dev guide]: https://rustc-dev-guide.rust-lang.org/traits/hrtb.html
cdc7bbd5 72 pub fn replace_bound_vars_with_placeholders<T>(&self, binder: ty::Binder<'tcx, T>) -> T
0bf4aa26 73 where
0731742a 74 T: TypeFoldable<'tcx>,
a7813a04 75 {
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76 // Figure out what the next universe will be, but don't actually create
77 // it until after we've done the substitution (in particular there may
78 // be no bound variables). This is a performance optimization, since the
79 // leak check for example can be skipped if no new universes are created
80 // (i.e., if there are no placeholders).
81 let next_universe = self.universe().next_universe();
0bf4aa26 82
fc512014 83 let fld_r = |br: ty::BoundRegion| {
a1dfa0c6 84 self.tcx.mk_region(ty::RePlaceholder(ty::PlaceholderRegion {
0bf4aa26 85 universe: next_universe,
fc512014 86 name: br.kind,
0bf4aa26 87 }))
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88 };
89
90 let fld_t = |bound_ty: ty::BoundTy| {
91 self.tcx.mk_ty(ty::Placeholder(ty::PlaceholderType {
92 universe: next_universe,
93 name: bound_ty.var,
94 }))
95 };
1a4d82fc 96
48663c56 97 let fld_c = |bound_var: ty::BoundVar, ty| {
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98 self.tcx.mk_const(ty::Const {
99 val: ty::ConstKind::Placeholder(ty::PlaceholderConst {
100 universe: next_universe,
fc512014 101 name: ty::BoundConst { var: bound_var, ty },
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102 }),
103 ty,
104 })
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105 };
106
107 let (result, map) = self.tcx.replace_bound_vars(binder, fld_r, fld_t, fld_c);
a1dfa0c6 108
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109 // If there were higher-ranked regions to replace, then actually create
110 // the next universe (this avoids needlessly creating universes).
111 if !map.is_empty() {
112 let n_u = self.create_next_universe();
113 assert_eq!(n_u, next_universe);
114 }
115
a1dfa0c6 116 debug!(
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117 "replace_bound_vars_with_placeholders(\
118 next_universe={:?}, \
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119 result={:?}, \
120 map={:?})",
fc512014 121 next_universe, result, map,
a1dfa0c6 122 );
1a4d82fc 123
29967ef6 124 result
1a4d82fc 125 }
1a4d82fc 126
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127 /// See `infer::region_constraints::RegionConstraintCollector::leak_check`.
128 pub fn leak_check(
0bf4aa26 129 &self,
0731742a 130 overly_polymorphic: bool,
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131 snapshot: &CombinedSnapshot<'_, 'tcx>,
132 ) -> RelateResult<'tcx, ()> {
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133 // If the user gave `-Zno-leak-check`, or we have been
134 // configured to skip the leak check, then skip the leak check
135 // completely. The leak check is deprecated. Any legitimate
136 // subtyping errors that it would have caught will now be
137 // caught later on, during region checking. However, we
138 // continue to use it for a transition period.
139 if self.tcx.sess.opts.debugging_opts.no_leak_check || self.skip_leak_check.get() {
140 return Ok(());
141 }
142
143 self.inner.borrow_mut().unwrap_region_constraints().leak_check(
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144 self.tcx,
145 overly_polymorphic,
f035d41b 146 self.universe(),
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147 snapshot,
148 )
3157f602 149 }
1a4d82fc 150}