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362 lines
13 KiB
Rust
362 lines
13 KiB
Rust
use crate::ty::subst::{GenericArg, GenericArgKind};
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use crate::ty::{self, InferConst, Ty, TypeFlags};
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use std::slice;
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#[derive(Debug)]
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pub struct FlagComputation {
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pub flags: TypeFlags,
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/// see `Ty::outer_exclusive_binder` for details
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pub outer_exclusive_binder: ty::DebruijnIndex,
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}
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impl FlagComputation {
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fn new() -> FlagComputation {
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FlagComputation { flags: TypeFlags::empty(), outer_exclusive_binder: ty::INNERMOST }
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}
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#[allow(rustc::usage_of_ty_tykind)]
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pub fn for_kind(kind: &ty::TyKind<'_>) -> FlagComputation {
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let mut result = FlagComputation::new();
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result.add_kind(kind);
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result
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}
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pub fn for_predicate<'tcx>(binder: ty::Binder<'tcx, ty::PredicateKind<'_>>) -> FlagComputation {
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let mut result = FlagComputation::new();
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result.add_predicate(binder);
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result
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}
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pub fn for_const(c: ty::Const<'_>) -> TypeFlags {
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let mut result = FlagComputation::new();
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result.add_const(c);
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result.flags
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}
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fn add_flags(&mut self, flags: TypeFlags) {
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self.flags = self.flags | flags;
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}
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/// indicates that `self` refers to something at binding level `binder`
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fn add_bound_var(&mut self, binder: ty::DebruijnIndex) {
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let exclusive_binder = binder.shifted_in(1);
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self.add_exclusive_binder(exclusive_binder);
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}
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/// indicates that `self` refers to something *inside* binding
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/// level `binder` -- not bound by `binder`, but bound by the next
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/// binder internal to it
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fn add_exclusive_binder(&mut self, exclusive_binder: ty::DebruijnIndex) {
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self.outer_exclusive_binder = self.outer_exclusive_binder.max(exclusive_binder);
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}
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/// Adds the flags/depth from a set of types that appear within the current type, but within a
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/// region binder.
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fn bound_computation<T, F>(&mut self, value: ty::Binder<'_, T>, f: F)
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where
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F: FnOnce(&mut Self, T),
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{
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let mut computation = FlagComputation::new();
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if !value.bound_vars().is_empty() {
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computation.flags = computation.flags | TypeFlags::HAS_RE_LATE_BOUND;
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}
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f(&mut computation, value.skip_binder());
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self.add_flags(computation.flags);
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// The types that contributed to `computation` occurred within
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// a region binder, so subtract one from the region depth
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// within when adding the depth to `self`.
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let outer_exclusive_binder = computation.outer_exclusive_binder;
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if outer_exclusive_binder > ty::INNERMOST {
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self.add_exclusive_binder(outer_exclusive_binder.shifted_out(1));
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} // otherwise, this binder captures nothing
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}
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#[allow(rustc::usage_of_ty_tykind)]
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fn add_kind(&mut self, kind: &ty::TyKind<'_>) {
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match kind {
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&ty::Bool
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| &ty::Char
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| &ty::Int(_)
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| &ty::Float(_)
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| &ty::Uint(_)
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| &ty::Never
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| &ty::Str
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| &ty::Foreign(..) => {}
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&ty::Error(_) => self.add_flags(TypeFlags::HAS_ERROR),
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&ty::Param(_) => {
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self.add_flags(TypeFlags::HAS_TY_PARAM);
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self.add_flags(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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}
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&ty::Generator(_, ref substs, _) => {
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let substs = substs.as_generator();
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let should_remove_further_specializable =
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!self.flags.contains(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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self.add_substs(substs.parent_substs());
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if should_remove_further_specializable {
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self.flags -= TypeFlags::STILL_FURTHER_SPECIALIZABLE;
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}
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self.add_ty(substs.resume_ty());
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self.add_ty(substs.return_ty());
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self.add_ty(substs.witness());
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self.add_ty(substs.yield_ty());
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self.add_ty(substs.tupled_upvars_ty());
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}
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&ty::GeneratorWitness(ts) => {
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self.bound_computation(ts, |flags, ts| flags.add_tys(ts));
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}
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&ty::Closure(_, substs) => {
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let substs = substs.as_closure();
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let should_remove_further_specializable =
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!self.flags.contains(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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self.add_substs(substs.parent_substs());
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if should_remove_further_specializable {
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self.flags -= TypeFlags::STILL_FURTHER_SPECIALIZABLE;
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}
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self.add_ty(substs.sig_as_fn_ptr_ty());
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self.add_ty(substs.kind_ty());
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self.add_ty(substs.tupled_upvars_ty());
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}
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&ty::Bound(debruijn, _) => {
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self.add_bound_var(debruijn);
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}
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&ty::Placeholder(..) => {
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self.add_flags(TypeFlags::HAS_TY_PLACEHOLDER);
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self.add_flags(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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}
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&ty::Infer(infer) => {
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self.add_flags(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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match infer {
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ty::FreshTy(_) | ty::FreshIntTy(_) | ty::FreshFloatTy(_) => {
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self.add_flags(TypeFlags::HAS_TY_FRESH)
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}
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ty::TyVar(_) | ty::IntVar(_) | ty::FloatVar(_) => {
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self.add_flags(TypeFlags::HAS_TY_INFER)
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}
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}
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}
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&ty::Adt(_, substs) => {
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self.add_substs(substs);
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}
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&ty::Projection(data) => {
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self.add_flags(TypeFlags::HAS_TY_PROJECTION);
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self.add_projection_ty(data);
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}
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&ty::Opaque(_, substs) => {
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self.add_flags(TypeFlags::HAS_TY_OPAQUE);
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self.add_substs(substs);
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}
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&ty::Dynamic(obj, r, _) => {
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for predicate in obj.iter() {
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self.bound_computation(predicate, |computation, predicate| match predicate {
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ty::ExistentialPredicate::Trait(tr) => computation.add_substs(tr.substs),
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ty::ExistentialPredicate::Projection(p) => {
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computation.add_existential_projection(&p);
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}
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ty::ExistentialPredicate::AutoTrait(_) => {}
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});
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}
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self.add_region(r);
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}
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&ty::Array(tt, len) => {
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self.add_ty(tt);
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self.add_const(len);
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}
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&ty::Slice(tt) => self.add_ty(tt),
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&ty::RawPtr(ref m) => {
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self.add_ty(m.ty);
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}
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&ty::Ref(r, ty, _) => {
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self.add_region(r);
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self.add_ty(ty);
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}
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&ty::Tuple(types) => {
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self.add_tys(types);
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}
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&ty::FnDef(_, substs) => {
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self.add_substs(substs);
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}
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&ty::FnPtr(fn_sig) => self.bound_computation(fn_sig, |computation, fn_sig| {
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computation.add_tys(fn_sig.inputs());
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computation.add_ty(fn_sig.output());
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}),
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}
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}
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fn add_predicate(&mut self, binder: ty::Binder<'_, ty::PredicateKind<'_>>) {
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self.bound_computation(binder, |computation, atom| computation.add_predicate_atom(atom));
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}
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fn add_predicate_atom(&mut self, atom: ty::PredicateKind<'_>) {
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match atom {
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ty::PredicateKind::Clause(ty::Clause::Trait(trait_pred)) => {
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self.add_substs(trait_pred.trait_ref.substs);
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}
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ty::PredicateKind::Clause(ty::Clause::RegionOutlives(ty::OutlivesPredicate(a, b))) => {
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self.add_region(a);
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self.add_region(b);
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}
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ty::PredicateKind::Clause(ty::Clause::TypeOutlives(ty::OutlivesPredicate(
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ty,
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region,
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))) => {
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self.add_ty(ty);
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self.add_region(region);
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}
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ty::PredicateKind::Subtype(ty::SubtypePredicate { a_is_expected: _, a, b }) => {
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self.add_ty(a);
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self.add_ty(b);
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}
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ty::PredicateKind::Coerce(ty::CoercePredicate { a, b }) => {
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self.add_ty(a);
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self.add_ty(b);
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}
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ty::PredicateKind::Clause(ty::Clause::Projection(ty::ProjectionPredicate {
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projection_ty,
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term,
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})) => {
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self.add_projection_ty(projection_ty);
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match term.unpack() {
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ty::TermKind::Ty(ty) => self.add_ty(ty),
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ty::TermKind::Const(c) => self.add_const(c),
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}
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}
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ty::PredicateKind::WellFormed(arg) => {
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self.add_substs(slice::from_ref(&arg));
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}
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ty::PredicateKind::ObjectSafe(_def_id) => {}
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ty::PredicateKind::ClosureKind(_def_id, substs, _kind) => {
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self.add_substs(substs);
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}
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ty::PredicateKind::ConstEvaluatable(uv) => {
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self.add_const(uv);
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}
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ty::PredicateKind::ConstEquate(expected, found) => {
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self.add_const(expected);
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self.add_const(found);
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}
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ty::PredicateKind::TypeWellFormedFromEnv(ty) => {
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self.add_ty(ty);
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}
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ty::PredicateKind::Ambiguous => {}
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}
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}
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fn add_ty(&mut self, ty: Ty<'_>) {
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self.add_flags(ty.flags());
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self.add_exclusive_binder(ty.outer_exclusive_binder());
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}
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fn add_tys(&mut self, tys: &[Ty<'_>]) {
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for &ty in tys {
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self.add_ty(ty);
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}
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}
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fn add_region(&mut self, r: ty::Region<'_>) {
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self.add_flags(r.type_flags());
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if let ty::ReLateBound(debruijn, _) = *r {
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self.add_bound_var(debruijn);
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}
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}
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fn add_const(&mut self, c: ty::Const<'_>) {
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self.add_ty(c.ty());
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match c.kind() {
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ty::ConstKind::Unevaluated(uv) => {
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self.add_substs(uv.substs);
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self.add_flags(TypeFlags::HAS_CT_PROJECTION);
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}
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ty::ConstKind::Infer(infer) => {
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self.add_flags(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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match infer {
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InferConst::Fresh(_) => self.add_flags(TypeFlags::HAS_CT_FRESH),
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InferConst::Var(_) => self.add_flags(TypeFlags::HAS_CT_INFER),
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}
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}
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ty::ConstKind::Bound(debruijn, _) => {
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self.add_bound_var(debruijn);
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}
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ty::ConstKind::Param(_) => {
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self.add_flags(TypeFlags::HAS_CT_PARAM);
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self.add_flags(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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}
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ty::ConstKind::Placeholder(_) => {
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self.add_flags(TypeFlags::HAS_CT_PLACEHOLDER);
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self.add_flags(TypeFlags::STILL_FURTHER_SPECIALIZABLE);
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}
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ty::ConstKind::Value(_) => {}
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ty::ConstKind::Expr(e) => {
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use ty::Expr;
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match e {
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Expr::Binop(_, l, r) => {
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self.add_const(l);
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self.add_const(r);
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}
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Expr::UnOp(_, v) => self.add_const(v),
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Expr::FunctionCall(f, args) => {
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self.add_const(f);
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for arg in args {
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self.add_const(arg);
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}
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}
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Expr::Cast(_, c, t) => {
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self.add_ty(t);
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self.add_const(c);
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}
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}
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}
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ty::ConstKind::Error(_) => self.add_flags(TypeFlags::HAS_ERROR),
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}
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}
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fn add_existential_projection(&mut self, projection: &ty::ExistentialProjection<'_>) {
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self.add_substs(projection.substs);
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match projection.term.unpack() {
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ty::TermKind::Ty(ty) => self.add_ty(ty),
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ty::TermKind::Const(ct) => self.add_const(ct),
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}
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}
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fn add_projection_ty(&mut self, projection_ty: ty::ProjectionTy<'_>) {
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self.add_substs(projection_ty.substs);
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}
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fn add_substs(&mut self, substs: &[GenericArg<'_>]) {
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for kind in substs {
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match kind.unpack() {
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GenericArgKind::Type(ty) => self.add_ty(ty),
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GenericArgKind::Lifetime(lt) => self.add_region(lt),
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GenericArgKind::Const(ct) => self.add_const(ct),
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}
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}
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}
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}
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