Use FxHashMap

This commit is contained in:
jackh726 2021-09-09 23:28:20 -04:00
parent 0a3c6bb887
commit 47035e4d08
5 changed files with 21 additions and 17 deletions

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@ -85,7 +85,7 @@ pub struct RegionInferenceContext<'tcx> {
FxHashMap<Location, FxHashMap<(RegionVid, RegionVid), (ConstraintCategory, Span)>>,
/// Map universe indexes to information on why we created it.
universe_causes: IndexVec<ty::UniverseIndex, UniverseInfo<'tcx>>,
universe_causes: FxHashMap<ty::UniverseIndex, UniverseInfo<'tcx>>,
/// Contains the minimum universe of any variable within the same
/// SCC. We will ensure that no SCC contains values that are not
@ -256,7 +256,7 @@ impl<'tcx> RegionInferenceContext<'tcx> {
Location,
FxHashMap<(RegionVid, RegionVid), (ConstraintCategory, Span)>,
>,
universe_causes: IndexVec<ty::UniverseIndex, UniverseInfo<'tcx>>,
universe_causes: FxHashMap<ty::UniverseIndex, UniverseInfo<'tcx>>,
type_tests: Vec<TypeTest<'tcx>>,
liveness_constraints: LivenessValues<RegionVid>,
elements: &Rc<RegionValueElements>,
@ -2149,7 +2149,7 @@ impl<'tcx> RegionInferenceContext<'tcx> {
}
crate fn universe_info(&self, universe: ty::UniverseIndex) -> UniverseInfo<'tcx> {
self.universe_causes[universe].clone()
self.universe_causes[&universe].clone()
}
}

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@ -50,9 +50,10 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
None => UniverseInfo::other(),
};
for u in old_universe..universe {
let info_universe =
self.borrowck_context.constraints.universe_causes.push(universe_info.clone());
assert_eq!(u.as_u32() + 1, info_universe.as_u32());
self.borrowck_context
.constraints
.universe_causes
.insert(u + 1, universe_info.clone());
}
}
@ -70,9 +71,12 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
let (instantiated, _) =
self.infcx.instantiate_canonical_with_fresh_inference_vars(span, canonical);
for _ in 0..canonical.max_universe.as_u32() {
for u in 0..canonical.max_universe.as_u32() {
let info = UniverseInfo::other();
self.borrowck_context.constraints.universe_causes.push(info);
self.borrowck_context
.constraints
.universe_causes
.insert(ty::UniverseIndex::from_u32(u), info);
}
instantiated

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@ -194,6 +194,8 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
b
}
};
// Note: if we have to introduce new placeholders during normalization above, then we won't have
// added those universes to the universe info, which we would want in `relate_tys`.
if let Err(terr) =
self.eq_types(a, b, Locations::All(span), ConstraintCategory::BoringNoLocation)
{

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@ -136,6 +136,8 @@ pub(crate) fn type_check<'mir, 'tcx>(
upvars: &[Upvar<'tcx>],
) -> MirTypeckResults<'tcx> {
let implicit_region_bound = infcx.tcx.mk_region(ty::ReVar(universal_regions.fr_fn_body));
let mut universe_causes = FxHashMap::default();
universe_causes.insert(ty::UniverseIndex::from_u32(0), UniverseInfo::other());
let mut constraints = MirTypeckRegionConstraints {
placeholder_indices: PlaceholderIndices::default(),
placeholder_index_to_region: IndexVec::default(),
@ -144,7 +146,7 @@ pub(crate) fn type_check<'mir, 'tcx>(
member_constraints: MemberConstraintSet::default(),
closure_bounds_mapping: Default::default(),
type_tests: Vec::default(),
universe_causes: IndexVec::from_elem_n(UniverseInfo::other(), 1),
universe_causes,
};
let CreateResult {
@ -159,9 +161,9 @@ pub(crate) fn type_check<'mir, 'tcx>(
&mut constraints,
);
for _ in ty::UniverseIndex::ROOT..infcx.universe() {
for u in ty::UniverseIndex::ROOT..infcx.universe() {
let info = UniverseInfo::other();
constraints.universe_causes.push(info);
constraints.universe_causes.insert(u, info);
}
let mut borrowck_context = BorrowCheckContext {
@ -924,7 +926,7 @@ crate struct MirTypeckRegionConstraints<'tcx> {
crate closure_bounds_mapping:
FxHashMap<Location, FxHashMap<(RegionVid, RegionVid), (ConstraintCategory, Span)>>,
crate universe_causes: IndexVec<ty::UniverseIndex, UniverseInfo<'tcx>>,
crate universe_causes: FxHashMap<ty::UniverseIndex, UniverseInfo<'tcx>>,
crate type_tests: Vec<TypeTest<'tcx>>,
}

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@ -81,14 +81,10 @@ impl TypeRelatingDelegate<'tcx> for NllTypeRelatingDelegate<'_, '_, 'tcx> {
fn create_next_universe(&mut self) -> ty::UniverseIndex {
let universe = self.infcx.create_next_universe();
// FIXME: If we relate tys after normalizing with late-bound regions, there will
// be extra universes. A proper solution would be to somehow track those universes
// during projection, but here we just treat those as "other"
self.borrowck_context
.constraints
.universe_causes
.ensure_contains_elem(universe, || UniverseInfo::other());
self.borrowck_context.constraints.universe_causes[universe] = self.universe_info.clone();
.insert(universe, self.universe_info.clone());
universe
}