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mentioned items: also handle vtables
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ee4b758161
commit
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@ -319,7 +319,11 @@ impl<'tcx> CoroutineInfo<'tcx> {
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pub enum MentionedItem<'tcx> {
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Fn(DefId, GenericArgsRef<'tcx>),
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Drop(Ty<'tcx>),
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// FIXME: add Vtable { source_ty: Ty<'tcx>, target_ty: Ty<'tcx> },
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/// Unsizing casts might require vtables, so we have to record them.
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UnsizeCast {
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source_ty: Ty<'tcx>,
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target_ty: Ty<'tcx>,
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},
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// FIXME: do we have to add closures?
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}
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@ -1,6 +1,6 @@
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use rustc_middle::mir::visit::Visitor;
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use rustc_middle::mir::{self, ConstOperand, Location, MentionedItem, MirPass};
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use rustc_middle::ty::{self, TyCtxt};
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use rustc_middle::ty::{self, adjustment::PointerCoercion, TyCtxt};
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use rustc_session::Session;
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use rustc_span::source_map::Spanned;
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@ -54,4 +54,28 @@ impl<'tcx> Visitor<'tcx> for MentionedItemsVisitor<'_, 'tcx> {
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_ => {}
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}
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}
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fn visit_rvalue(&mut self, rvalue: &mir::Rvalue<'tcx>, location: Location) {
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self.super_rvalue(rvalue, location);
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match *rvalue {
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// We need to detect unsizing casts that required vtables.
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mir::Rvalue::Cast(
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mir::CastKind::PointerCoercion(PointerCoercion::Unsize),
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ref operand,
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target_ty,
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)
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| mir::Rvalue::Cast(mir::CastKind::DynStar, ref operand, target_ty) => {
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let span = self.body.source_info(location).span;
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self.mentioned_items.push(Spanned {
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node: MentionedItem::UnsizeCast {
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source_ty: operand.ty(self.body, self.tcx),
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target_ty,
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},
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span,
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});
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}
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// Function pointer casts are already handled by `visit_constant` above.
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_ => {}
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}
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}
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}
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@ -736,7 +736,7 @@ impl<'a, 'tcx> MirUsedCollector<'a, 'tcx> {
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where
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T: TypeFoldable<TyCtxt<'tcx>>,
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{
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debug!("monomorphize: self.instance={:?}", self.instance);
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trace!("monomorphize: self.instance={:?}", self.instance);
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self.instance.instantiate_mir_and_normalize_erasing_regions(
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self.tcx,
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ty::ParamEnv::reveal_all(),
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@ -1342,13 +1342,16 @@ fn create_mono_items_for_vtable_methods<'tcx>(
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) {
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assert!(!trait_ty.has_escaping_bound_vars() && !impl_ty.has_escaping_bound_vars());
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if let ty::Dynamic(trait_ty, ..) = trait_ty.kind() {
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let ty::Dynamic(trait_ty, ..) = trait_ty.kind() else {
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bug!("create_mono_items_for_vtable_methods: {trait_ty:?} not a trait type");
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};
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if let Some(principal) = trait_ty.principal() {
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let poly_trait_ref = principal.with_self_ty(tcx, impl_ty);
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assert!(!poly_trait_ref.has_escaping_bound_vars());
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// Walk all methods of the trait, including those of its supertraits
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let entries = tcx.vtable_entries(poly_trait_ref);
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debug!(?entries);
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let methods = entries
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.iter()
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.filter_map(|entry| match entry {
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@ -1370,7 +1373,6 @@ fn create_mono_items_for_vtable_methods<'tcx>(
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// Also add the destructor.
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visit_drop_use(tcx, impl_ty, false, source, output);
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}
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}
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//=-----------------------------------------------------------------------------
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@ -1693,7 +1695,8 @@ fn collect_items_of_instance<'tcx>(
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}
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}
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/// `item` must be already monomorphized
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/// `item` must be already monomorphized.
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#[instrument(skip(tcx, span, output), level = "debug")]
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fn visit_mentioned_item<'tcx>(
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tcx: TyCtxt<'tcx>,
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item: &MentionedItem<'tcx>,
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@ -1712,6 +1715,18 @@ fn visit_mentioned_item<'tcx>(
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MentionedItem::Drop(ty) => {
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visit_drop_use(tcx, ty, /*is_direct_call*/ true, span, output);
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}
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MentionedItem::UnsizeCast { source_ty, target_ty } => {
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let (source_ty, target_ty) =
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find_vtable_types_for_unsizing(tcx.at(span), source_ty, target_ty);
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// This could also be a different Unsize instruction, like
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// from a fixed sized array to a slice. But we are only
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// interested in things that produce a vtable.
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if (target_ty.is_trait() && !source_ty.is_trait())
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|| (target_ty.is_dyn_star() && !source_ty.is_dyn_star())
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{
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create_mono_items_for_vtable_methods(tcx, target_ty, source_ty, span, output);
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}
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}
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}
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}
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@ -1,21 +1,21 @@
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error[E0080]: evaluation of `Fail::<i32>::C` failed
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--> $DIR/collect-in-dead-vtable.rs:11:19
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--> $DIR/collect-in-dead-vtable.rs:8:19
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LL | const C: () = panic!();
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| ^^^^^^^^ the evaluated program panicked at 'explicit panic', $DIR/collect-in-dead-vtable.rs:11:19
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| ^^^^^^^^ the evaluated program panicked at 'explicit panic', $DIR/collect-in-dead-vtable.rs:8:19
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= note: this error originates in the macro `$crate::panic::panic_2015` which comes from the expansion of the macro `panic` (in Nightly builds, run with -Z macro-backtrace for more info)
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note: erroneous constant encountered
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--> $DIR/collect-in-dead-vtable.rs:25:21
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--> $DIR/collect-in-dead-vtable.rs:21:21
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LL | let _ = Fail::<T>::C;
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| ^^^^^^^^^^^^
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note: the above error was encountered while instantiating `fn <std::vec::Vec<i32> as MyTrait>::not_called`
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--> $DIR/collect-in-dead-vtable.rs:34:40
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--> $DIR/collect-in-dead-vtable.rs:30:40
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LL | let gen_vtable: &dyn MyTrait = &v; // vtable "appears" here
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LL | let gen_vtable: &dyn MyTrait = &v; // vtable is "mentioned" here
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| ^^
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error: aborting due to 1 previous error
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@ -0,0 +1,23 @@
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error[E0080]: evaluation of `Fail::<i32>::C` failed
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--> $DIR/collect-in-dead-vtable.rs:8:19
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LL | const C: () = panic!();
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| ^^^^^^^^ the evaluated program panicked at 'explicit panic', $DIR/collect-in-dead-vtable.rs:8:19
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= note: this error originates in the macro `$crate::panic::panic_2015` which comes from the expansion of the macro `panic` (in Nightly builds, run with -Z macro-backtrace for more info)
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note: erroneous constant encountered
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--> $DIR/collect-in-dead-vtable.rs:21:21
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LL | let _ = Fail::<T>::C;
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| ^^^^^^^^^^^^
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note: the above error was encountered while instantiating `fn <std::vec::Vec<i32> as MyTrait>::not_called`
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--> $DIR/collect-in-dead-vtable.rs:30:40
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LL | let gen_vtable: &dyn MyTrait = &v; // vtable is "mentioned" here
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| ^^
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error: aborting due to 1 previous error
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For more information about this error, try `rustc --explain E0080`.
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@ -1,14 +1,11 @@
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//@revisions: noopt opt
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//@[noopt] build-fail
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//@ build-fail
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//@[opt] compile-flags: -O
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//FIXME: `opt` revision currently does not stop with an error due to
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//<https://github.com/rust-lang/rust/issues/107503>.
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//@[opt] build-pass
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//! This fails without optimizations, so it should also fail with optimizations.
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struct Fail<T>(T);
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impl<T> Fail<T> {
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const C: () = panic!(); //[noopt]~ERROR evaluation of `Fail::<i32>::C` failed
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const C: () = panic!(); //~ERROR evaluation of `Fail::<i32>::C` failed
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}
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trait MyTrait {
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@ -17,8 +14,7 @@ trait MyTrait {
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// This function is not actually called, but it is mentioned in a vtable in a function that is
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// called. Make sure we still find this error.
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// This relies on mono-item collection checking `required_consts` in functions that are referenced
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// in vtables that syntactically appear in collected functions (even inside dead code).
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// This ensures that we are properly considering vtables when gathering "mentioned" items.
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impl<T> MyTrait for Vec<T> {
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fn not_called(&self) {
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if false {
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@ -31,7 +27,7 @@ impl<T> MyTrait for Vec<T> {
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fn called<T>() {
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if false {
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let v: Vec<T> = Vec::new();
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let gen_vtable: &dyn MyTrait = &v; // vtable "appears" here
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let gen_vtable: &dyn MyTrait = &v; // vtable is "mentioned" here
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}
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}
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