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Ensure closure requirements are proven for inline const
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1d32b20170
commit
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@ -10,6 +10,7 @@ use rustc_data_structures::fx::{FxHashMap, FxHashSet};
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use rustc_data_structures::vec_map::VecMap;
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use rustc_errors::struct_span_err;
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use rustc_hir as hir;
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use rustc_hir::def::DefKind;
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use rustc_hir::def_id::LocalDefId;
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use rustc_hir::lang_items::LangItem;
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use rustc_index::vec::{Idx, IndexVec};
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@ -1532,6 +1533,8 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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}
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}
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TerminatorKind::SwitchInt { ref discr, switch_ty, .. } => {
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self.check_operand(discr, term_location);
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let discr_ty = discr.ty(body, tcx);
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if let Err(terr) = self.sub_types(
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discr_ty,
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@ -1554,6 +1557,11 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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// FIXME: check the values
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}
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TerminatorKind::Call { ref func, ref args, ref destination, from_hir_call, .. } => {
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self.check_operand(func, term_location);
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for arg in args {
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self.check_operand(arg, term_location);
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}
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let func_ty = func.ty(body, tcx);
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debug!("check_terminator: call, func_ty={:?}", func_ty);
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let sig = match func_ty.kind() {
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@ -1598,6 +1606,8 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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self.check_call_inputs(body, term, &sig, args, term_location, from_hir_call);
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}
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TerminatorKind::Assert { ref cond, ref msg, .. } => {
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self.check_operand(cond, term_location);
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let cond_ty = cond.ty(body, tcx);
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if cond_ty != tcx.types.bool {
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span_mirbug!(self, term, "bad Assert ({:?}, not bool", cond_ty);
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@ -1613,6 +1623,8 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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}
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}
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TerminatorKind::Yield { ref value, .. } => {
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self.check_operand(value, term_location);
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let value_ty = value.ty(body, tcx);
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match body.yield_ty() {
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None => span_mirbug!(self, term, "yield in non-generator"),
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@ -1941,15 +1953,51 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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}
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}
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fn check_operand(&mut self, op: &Operand<'tcx>, location: Location) {
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if let Operand::Constant(constant) = op {
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let maybe_uneval = match constant.literal {
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ConstantKind::Ty(ct) => match ct.val {
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ty::ConstKind::Unevaluated(uv) => Some(uv),
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_ => None,
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},
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_ => None,
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};
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if let Some(uv) = maybe_uneval {
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if uv.promoted.is_none() {
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let tcx = self.tcx();
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let def_id = uv.def.def_id_for_type_of();
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if tcx.def_kind(def_id) == DefKind::InlineConst {
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let predicates = self.prove_closure_bounds(
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tcx,
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def_id.expect_local(),
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uv.substs(tcx),
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location,
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);
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self.normalize_and_prove_instantiated_predicates(
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def_id,
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predicates,
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location.to_locations(),
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);
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}
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}
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}
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}
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}
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fn check_rvalue(&mut self, body: &Body<'tcx>, rvalue: &Rvalue<'tcx>, location: Location) {
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let tcx = self.tcx();
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match rvalue {
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Rvalue::Aggregate(ak, ops) => {
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for op in ops {
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self.check_operand(op, location);
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}
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self.check_aggregate_rvalue(&body, rvalue, ak, ops, location)
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}
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Rvalue::Repeat(operand, len) => {
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self.check_operand(operand, location);
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// If the length cannot be evaluated we must assume that the length can be larger
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// than 1.
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// If the length is larger than 1, the repeat expression will need to copy the
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@ -2000,7 +2048,22 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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}
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}
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Rvalue::NullaryOp(_, ty) | Rvalue::ShallowInitBox(_, ty) => {
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Rvalue::NullaryOp(_, ty) => {
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let trait_ref = ty::TraitRef {
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def_id: tcx.require_lang_item(LangItem::Sized, Some(self.last_span)),
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substs: tcx.mk_substs_trait(ty, &[]),
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};
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self.prove_trait_ref(
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trait_ref,
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location.to_locations(),
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ConstraintCategory::SizedBound,
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);
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}
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Rvalue::ShallowInitBox(operand, ty) => {
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self.check_operand(operand, location);
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let trait_ref = ty::TraitRef {
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def_id: tcx.require_lang_item(LangItem::Sized, Some(self.last_span)),
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substs: tcx.mk_substs_trait(ty, &[]),
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@ -2014,6 +2077,8 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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}
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Rvalue::Cast(cast_kind, op, ty) => {
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self.check_operand(op, location);
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match cast_kind {
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CastKind::Pointer(PointerCast::ReifyFnPointer) => {
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let fn_sig = op.ty(body, tcx).fn_sig(tcx);
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@ -2260,6 +2325,9 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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BinOp::Eq | BinOp::Ne | BinOp::Lt | BinOp::Le | BinOp::Gt | BinOp::Ge,
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box (left, right),
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) => {
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self.check_operand(left, location);
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self.check_operand(right, location);
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let ty_left = left.ty(body, tcx);
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match ty_left.kind() {
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// Types with regions are comparable if they have a common super-type.
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@ -2310,13 +2378,19 @@ impl<'a, 'tcx> TypeChecker<'a, 'tcx> {
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}
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}
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Rvalue::Use(operand) | Rvalue::UnaryOp(_, operand) => {
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self.check_operand(operand, location);
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}
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Rvalue::BinaryOp(_, box (left, right))
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| Rvalue::CheckedBinaryOp(_, box (left, right)) => {
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self.check_operand(left, location);
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self.check_operand(right, location);
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}
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Rvalue::AddressOf(..)
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| Rvalue::ThreadLocalRef(..)
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| Rvalue::Use(..)
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| Rvalue::Len(..)
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| Rvalue::BinaryOp(..)
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| Rvalue::CheckedBinaryOp(..)
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| Rvalue::UnaryOp(..)
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| Rvalue::Discriminant(..) => {}
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}
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}
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30
src/test/ui/inline-const/const-expr-lifetime-err.rs
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30
src/test/ui/inline-const/const-expr-lifetime-err.rs
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@ -0,0 +1,30 @@
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#![allow(incomplete_features)]
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#![feature(const_mut_refs)]
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#![feature(inline_const)]
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use std::marker::PhantomData;
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#[derive(PartialEq, Eq)]
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pub struct InvariantRef<'a, T: ?Sized>(&'a T, PhantomData<&'a mut &'a T>);
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impl<'a, T: ?Sized> InvariantRef<'a, T> {
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pub const fn new(r: &'a T) -> Self {
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InvariantRef(r, PhantomData)
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}
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}
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impl<'a> InvariantRef<'a, ()> {
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pub const NEW: Self = InvariantRef::new(&());
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}
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fn equate<T>(x: T, y: T){}
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fn foo<'a>() {
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let y = ();
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equate(InvariantRef::new(&y), const { InvariantRef::<'a>::NEW });
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//~^ ERROR `y` does not live long enough [E0597]
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}
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fn main() {
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foo();
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}
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src/test/ui/inline-const/const-expr-lifetime-err.stderr
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18
src/test/ui/inline-const/const-expr-lifetime-err.stderr
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@ -0,0 +1,18 @@
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error[E0597]: `y` does not live long enough
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--> $DIR/const-expr-lifetime-err.rs:24:30
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LL | fn foo<'a>() {
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| -- lifetime `'a` defined here
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LL | let y = ();
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LL | equate(InvariantRef::new(&y), const { InvariantRef::<'a>::NEW });
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| ------------------^^-
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| | |
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| | borrowed value does not live long enough
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| argument requires that `y` is borrowed for `'a`
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LL |
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LL | }
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| - `y` dropped here while still borrowed
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0597`.
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