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rollup merge of #20707: nikomatsakis/issue-20582
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11e265c2e0
@ -468,7 +468,7 @@ pub fn skolemize_late_bound_regions<'a,'tcx,T>(infcx: &InferCtxt<'a,'tcx>,
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* when higher-ranked things are involved. See `doc.rs` for more details.
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*/
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let (result, map) = ty::replace_late_bound_regions(infcx.tcx, binder, |br, _| {
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let (result, map) = ty::replace_late_bound_regions(infcx.tcx, binder, |br| {
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infcx.region_vars.new_skolemized(br, &snapshot.region_vars_snapshot)
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});
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@ -1048,7 +1048,7 @@ impl<'a, 'tcx> InferCtxt<'a, 'tcx> {
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ty::replace_late_bound_regions(
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self.tcx,
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value,
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|br, _| self.next_region_var(LateBoundRegion(span, br, lbrct)))
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|br| self.next_region_var(LateBoundRegion(span, br, lbrct)))
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}
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/// See `verify_generic_bound` method in `region_inference`
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@ -6686,7 +6686,7 @@ pub fn liberate_late_bound_regions<'tcx, T>(
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{
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replace_late_bound_regions(
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tcx, value,
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|br, _| ty::ReFree(ty::FreeRegion{scope: scope, bound_region: br})).0
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|br| ty::ReFree(ty::FreeRegion{scope: scope, bound_region: br})).0
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}
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pub fn count_late_bound_regions<'tcx, T>(
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@ -6695,7 +6695,7 @@ pub fn count_late_bound_regions<'tcx, T>(
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-> uint
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where T : TypeFoldable<'tcx> + Repr<'tcx>
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{
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let (_, skol_map) = replace_late_bound_regions(tcx, value, |_, _| ty::ReStatic);
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let (_, skol_map) = replace_late_bound_regions(tcx, value, |_| ty::ReStatic);
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skol_map.len()
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}
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@ -6726,7 +6726,7 @@ pub fn erase_late_bound_regions<'tcx, T>(
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-> T
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where T : TypeFoldable<'tcx> + Repr<'tcx>
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{
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replace_late_bound_regions(tcx, value, |_, _| ty::ReStatic).0
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replace_late_bound_regions(tcx, value, |_| ty::ReStatic).0
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}
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/// Rewrite any late-bound regions so that they are anonymous. Region numbers are
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@ -6744,9 +6744,9 @@ pub fn anonymize_late_bound_regions<'tcx, T>(
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where T : TypeFoldable<'tcx> + Repr<'tcx>,
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{
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let mut counter = 0;
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ty::Binder(replace_late_bound_regions(tcx, sig, |_, db| {
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ty::Binder(replace_late_bound_regions(tcx, sig, |_| {
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counter += 1;
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ReLateBound(db, BrAnon(counter))
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ReLateBound(ty::DebruijnIndex::new(1), BrAnon(counter))
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}).0)
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}
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@ -6757,7 +6757,7 @@ pub fn replace_late_bound_regions<'tcx, T, F>(
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mut mapf: F)
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-> (T, FnvHashMap<ty::BoundRegion,ty::Region>)
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where T : TypeFoldable<'tcx> + Repr<'tcx>,
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F : FnMut(BoundRegion, DebruijnIndex) -> ty::Region,
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F : FnMut(BoundRegion) -> ty::Region,
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{
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debug!("replace_late_bound_regions({})", binder.repr(tcx));
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@ -6769,8 +6769,19 @@ pub fn replace_late_bound_regions<'tcx, T, F>(
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debug!("region={}", region.repr(tcx));
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match region {
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ty::ReLateBound(debruijn, br) if debruijn.depth == current_depth => {
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* map.entry(br).get().unwrap_or_else(
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|vacant_entry| vacant_entry.insert(mapf(br, debruijn)))
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let region =
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* map.entry(br).get().unwrap_or_else(
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|vacant_entry| vacant_entry.insert(mapf(br)));
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if let ty::ReLateBound(debruijn1, br) = region {
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// If the callback returns a late-bound region,
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// that region should always use depth 1. Then we
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// adjust it to the correct depth.
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assert_eq!(debruijn1.depth, 1);
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ty::ReLateBound(debruijn, br)
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} else {
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region
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}
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}
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_ => {
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region
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@ -862,7 +862,10 @@ impl<'a, 'tcx> TypeFolder<'tcx> for RegionFolder<'a, 'tcx>
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///////////////////////////////////////////////////////////////////////////
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// Region eraser
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//
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// Replaces all free regions with 'static. Useful in trans.
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// Replaces all free regions with 'static. Useful in contexts, such as
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// method probing, where precise region relationships are not
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// important. Note that in trans you should use
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// `common::erase_regions` instead.
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pub struct RegionEraser<'a, 'tcx: 'a> {
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tcx: &'a ty::ctxt<'tcx>,
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@ -1183,8 +1183,8 @@ impl<'tcx, T> UserString<'tcx> for ty::Binder<T>
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// the output. We'll probably want to tweak this over time to
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// decide just how much information to give.
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let mut names = Vec::new();
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let (unbound_value, _) = ty::replace_late_bound_regions(tcx, self, |br, debruijn| {
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ty::ReLateBound(debruijn, match br {
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let (unbound_value, _) = ty::replace_late_bound_regions(tcx, self, |br| {
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ty::ReLateBound(ty::DebruijnIndex::new(1), match br {
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ty::BrNamed(_, name) => {
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names.push(token::get_name(name));
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br
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@ -281,8 +281,15 @@ pub fn kind_for_unboxed_closure(ccx: &CrateContext, closure_id: ast::DefId)
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pub fn decl_rust_fn<'a, 'tcx>(ccx: &CrateContext<'a, 'tcx>,
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fn_ty: Ty<'tcx>, name: &str) -> ValueRef {
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debug!("decl_rust_fn(fn_ty={}, name={:?})",
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fn_ty.repr(ccx.tcx()),
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name);
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let fn_ty = monomorphize::normalize_associated_type(ccx.tcx(), &fn_ty);
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debug!("decl_rust_fn: fn_ty={} (after normalized associated types)",
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fn_ty.repr(ccx.tcx()));
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let function_type; // placeholder so that the memory ownership works out ok
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let (sig, abi, env) = match fn_ty.sty {
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@ -305,10 +312,12 @@ pub fn decl_rust_fn<'a, 'tcx>(ccx: &CrateContext<'a, 'tcx>,
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let sig = ty::erase_late_bound_regions(ccx.tcx(), sig);
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let sig = ty::Binder(sig);
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debug!("decl_rust_fn: sig={} (after erasing regions)",
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sig.repr(ccx.tcx()));
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let llfty = type_of_rust_fn(ccx, env, &sig, abi);
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debug!("decl_rust_fn(sig={}, type={})",
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sig.repr(ccx.tcx()),
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debug!("decl_rust_fn: llfty={}",
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ccx.tn().type_to_string(llfty));
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let llfn = decl_fn(ccx, name, llvm::CCallConv, llfty, sig.0.output /* (1) */);
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@ -265,7 +265,7 @@ pub fn trans_fn_pointer_shim<'a, 'tcx>(
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let _icx = push_ctxt("trans_fn_pointer_shim");
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let tcx = ccx.tcx();
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let bare_fn_ty = normalize_ty(tcx, bare_fn_ty);
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let bare_fn_ty = erase_regions(tcx, &bare_fn_ty);
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match ccx.fn_pointer_shims().borrow().get(&bare_fn_ty) {
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Some(&llval) => { return llval; }
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None => { }
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@ -466,7 +466,7 @@ pub fn get_or_create_declaration_if_unboxed_closure<'a, 'tcx>(ccx: &CrateContext
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// Normalize type so differences in regions and typedefs don't cause
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// duplicate declarations
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let function_type = normalize_ty(ccx.tcx(), function_type);
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let function_type = erase_regions(ccx.tcx(), &function_type);
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let params = match function_type.sty {
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ty::ty_unboxed_closure(_, _, ref substs) => substs.types.clone(),
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_ => unreachable!()
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@ -58,16 +58,21 @@ use util::nodemap::FnvHashSet;
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pub use trans::context::CrateContext;
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/// Returns an equivalent type with all the typedefs and self regions removed.
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pub fn normalize_ty<'tcx>(cx: &ty::ctxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
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let u = TypeNormalizer(cx).fold_ty(ty);
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debug!("normalize_ty({}) = {}",
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ty.repr(cx), u.repr(cx));
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return u;
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/// Returns an equivalent value with all free regions removed (note
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/// that late-bound regions remain, because they are important for
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/// subtyping, but they are anonymized and normalized as well). This
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/// is a stronger, caching version of `ty_fold::erase_regions`.
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pub fn erase_regions<'tcx,T>(cx: &ty::ctxt<'tcx>, value: &T) -> T
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where T : TypeFoldable<'tcx> + Repr<'tcx>
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{
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let value1 = value.fold_with(&mut RegionEraser(cx));
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debug!("erase_regions({}) = {}",
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value.repr(cx), value1.repr(cx));
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return value1;
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struct TypeNormalizer<'a, 'tcx: 'a>(&'a ty::ctxt<'tcx>);
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struct RegionEraser<'a, 'tcx: 'a>(&'a ty::ctxt<'tcx>);
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impl<'a, 'tcx> TypeFolder<'tcx> for TypeNormalizer<'a, 'tcx> {
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impl<'a, 'tcx> TypeFolder<'tcx> for RegionEraser<'a, 'tcx> {
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fn tcx(&self) -> &ty::ctxt<'tcx> { self.0 }
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fn fold_ty(&mut self, ty: Ty<'tcx>) -> Ty<'tcx> {
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@ -84,7 +89,6 @@ pub fn normalize_ty<'tcx>(cx: &ty::ctxt<'tcx>, ty: Ty<'tcx>) -> Ty<'tcx> {
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fn fold_binder<T>(&mut self, t: &ty::Binder<T>) -> ty::Binder<T>
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where T : TypeFoldable<'tcx> + Repr<'tcx>
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{
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// FIXME(#20526) this should replace `enter_region_binder`/`exit_region_binder`.
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let u = ty::anonymize_late_bound_regions(self.tcx(), t);
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ty_fold::super_fold_binder(self, &u)
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}
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@ -989,7 +993,7 @@ pub fn fulfill_obligation<'a, 'tcx>(ccx: &CrateContext<'a, 'tcx>,
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let tcx = ccx.tcx();
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// Remove any references to regions; this helps improve caching.
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let trait_ref = ty_fold::erase_regions(tcx, trait_ref);
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let trait_ref = erase_regions(tcx, &trait_ref);
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// First check the cache.
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match ccx.trait_cache().borrow().get(&trait_ref) {
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@ -313,8 +313,10 @@ pub fn normalize_associated_type<'tcx,T>(tcx: &ty::ctxt<'tcx>, value: &T) -> T
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{
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debug!("normalize_associated_type(t={})", value.repr(tcx));
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let value = erase_regions(tcx, value);
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if !value.has_projection_types() {
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return value.clone();
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return value;
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}
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// FIXME(#20304) -- cache
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@ -324,7 +326,7 @@ pub fn normalize_associated_type<'tcx,T>(tcx: &ty::ctxt<'tcx>, value: &T) -> T
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let mut selcx = traits::SelectionContext::new(&infcx, &typer);
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let cause = traits::ObligationCause::dummy();
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let traits::Normalized { value: result, obligations } =
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traits::normalize(&mut selcx, cause, value);
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traits::normalize(&mut selcx, cause, &value);
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debug!("normalize_associated_type: result={} obligations={}",
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result.repr(tcx),
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@ -285,7 +285,7 @@ pub fn type_of<'a, 'tcx>(cx: &CrateContext<'a, 'tcx>, t: Ty<'tcx>) -> Type {
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// Rust types are defined as the same LLVM types. If we don't do
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// this then, e.g. `Option<{myfield: bool}>` would be a different
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// type than `Option<myrec>`.
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let t_norm = normalize_ty(cx.tcx(), t);
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let t_norm = erase_regions(cx.tcx(), &t);
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if t != t_norm {
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let llty = type_of(cx, t_norm);
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@ -0,0 +1,27 @@
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// Copyright 2015 The Rust Project Developers. See the COPYRIGHT
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// file at the top-level directory of this distribution and at
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// http://rust-lang.org/COPYRIGHT.
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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// Regression test for #20582. This test caused an ICE related to
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// inconsistent region erasure in trans.
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struct Foo<'a> {
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buf: &'a[u8]
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}
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impl<'a> Iterator for Foo<'a> {
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type Item = &'a[u8];
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fn next(&mut self) -> Option<<Self as Iterator>::Item> {
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Some(self.buf)
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}
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}
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fn main() {
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}
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