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Rename struct_tail_erasing_lifetimes to struct_tail_for_codegen
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@ -107,7 +107,7 @@ pub(crate) fn has_ptr_meta<'tcx>(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> bool {
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return false;
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}
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let tail = tcx.struct_tail_erasing_lifetimes(ty, ParamEnv::reveal_all());
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let tail = tcx.struct_tail_for_codegen(ty, ParamEnv::reveal_all());
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match tail.kind() {
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ty::Foreign(..) => false,
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ty::Str | ty::Slice(..) | ty::Dynamic(..) => true,
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@ -22,7 +22,7 @@ pub(crate) fn unsized_info<'tcx>(
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old_info: Option<Value>,
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) -> Value {
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let (source, target) =
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fx.tcx.struct_lockstep_tails_erasing_lifetimes(source, target, ParamEnv::reveal_all());
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fx.tcx.struct_lockstep_tails_for_codegen(source, target, ParamEnv::reveal_all());
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match (&source.kind(), &target.kind()) {
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(&ty::Array(_, len), &ty::Slice(_)) => fx
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.bcx
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@ -532,7 +532,7 @@ impl<'a, 'll, 'tcx> BuilderMethods<'a, 'tcx> for Builder<'a, 'll, 'tcx> {
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#[instrument(level = "trace", skip(self))]
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fn load_operand(&mut self, place: PlaceRef<'tcx, &'ll Value>) -> OperandRef<'tcx, &'ll Value> {
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if place.layout.is_unsized() {
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let tail = self.tcx.struct_tail_erasing_lifetimes(place.layout.ty, self.param_env());
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let tail = self.tcx.struct_tail_for_codegen(place.layout.ty, self.param_env());
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if matches!(tail.kind(), ty::Foreign(..)) {
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// Unsized locals and, at least conceptually, even unsized arguments must be copied
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// around, which requires dynamically determining their size. Therefore, we cannot
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@ -62,7 +62,7 @@ pub(crate) fn fat_pointer_kind<'ll, 'tcx>(
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cx: &CodegenCx<'ll, 'tcx>,
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pointee_ty: Ty<'tcx>,
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) -> Option<FatPtrKind> {
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let pointee_tail_ty = cx.tcx.struct_tail_erasing_lifetimes(pointee_ty, cx.param_env());
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let pointee_tail_ty = cx.tcx.struct_tail_for_codegen(pointee_ty, cx.param_env());
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let layout = cx.layout_of(pointee_tail_ty);
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trace!(
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"fat_pointer_kind: {:?} has layout {:?} (is_unsized? {})",
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@ -143,7 +143,7 @@ pub fn unsized_info<'a, 'tcx, Bx: BuilderMethods<'a, 'tcx>>(
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) -> Bx::Value {
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let cx = bx.cx();
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let (source, target) =
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cx.tcx().struct_lockstep_tails_erasing_lifetimes(source, target, bx.param_env());
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cx.tcx().struct_lockstep_tails_for_codegen(source, target, bx.param_env());
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match (source.kind(), target.kind()) {
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(&ty::Array(_, len), &ty::Slice(_)) => {
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cx.const_usize(len.eval_target_usize(cx.tcx(), ty::ParamEnv::reveal_all()))
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@ -91,7 +91,7 @@ pub trait DerivedTypeMethods<'tcx>: BaseTypeMethods<'tcx> + MiscMethods<'tcx> {
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return false;
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}
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let tail = self.tcx().struct_tail_erasing_lifetimes(ty, param_env);
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let tail = self.tcx().struct_tail_for_codegen(ty, param_env);
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match tail.kind() {
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ty::Foreign(..) => false,
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ty::Str | ty::Slice(..) | ty::Dynamic(..) => true,
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@ -678,9 +678,8 @@ impl<'tcx, M: Machine<'tcx>> InterpCx<'tcx, M> {
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} else {
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// Doesn't have to be a `dyn Trait`, but the unsized tail must be `dyn Trait`.
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// (For that reason we also cannot use `unpack_dyn_trait`.)
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let receiver_tail = self
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.tcx
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.struct_tail_erasing_lifetimes(receiver_place.layout.ty, self.param_env);
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let receiver_tail =
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self.tcx.struct_tail_for_codegen(receiver_place.layout.ty, self.param_env);
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let ty::Dynamic(receiver_trait, _, ty::Dyn) = receiver_tail.kind() else {
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span_bug!(
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self.cur_span(),
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@ -386,7 +386,7 @@ impl<'tcx, M: Machine<'tcx>> InterpCx<'tcx, M> {
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) -> InterpResult<'tcx> {
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// A<Struct> -> A<Trait> conversion
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let (src_pointee_ty, dest_pointee_ty) =
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self.tcx.struct_lockstep_tails_erasing_lifetimes(source_ty, cast_ty, self.param_env);
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self.tcx.struct_lockstep_tails_for_codegen(source_ty, cast_ty, self.param_env);
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match (&src_pointee_ty.kind(), &dest_pointee_ty.kind()) {
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(&ty::Array(_, length), &ty::Slice(_)) => {
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@ -343,7 +343,7 @@ impl<'rt, 'tcx, M: Machine<'tcx>> ValidityVisitor<'rt, 'tcx, M> {
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meta: MemPlaceMeta<M::Provenance>,
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pointee: TyAndLayout<'tcx>,
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) -> InterpResult<'tcx> {
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let tail = self.ecx.tcx.struct_tail_erasing_lifetimes(pointee.ty, self.ecx.param_env);
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let tail = self.ecx.tcx.struct_tail_for_codegen(pointee.ty, self.ecx.param_env);
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match tail.kind() {
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ty::Dynamic(data, _, ty::Dyn) => {
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let vtable = meta.unwrap_meta().to_pointer(self.ecx)?;
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@ -22,7 +22,7 @@ where
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};
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let ty = place.ty(local_decls, tcx).ty;
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let unsized_tail = || tcx.struct_tail_erasing_lifetimes(ty, param_env);
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let unsized_tail = || tcx.struct_tail_for_codegen(ty, param_env);
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match tcx.layout_of(param_env.and(ty)) {
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Ok(layout)
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if layout.align.abi <= pack
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@ -1276,7 +1276,7 @@ fn check_item_type(
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UnsizedHandling::Forbid => true,
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UnsizedHandling::Allow => false,
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UnsizedHandling::AllowIfForeignTail => {
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let tail = tcx.struct_tail_erasing_lifetimes(item_ty, wfcx.param_env);
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let tail = tcx.struct_tail_for_codegen(item_ty, wfcx.param_env);
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!matches!(tail.kind(), ty::Foreign(_))
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}
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};
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@ -869,7 +869,7 @@ where
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metadata
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}
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} else {
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match tcx.struct_tail_erasing_lifetimes(pointee, cx.param_env()).kind() {
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match tcx.struct_tail_for_codegen(pointee, cx.param_env()).kind() {
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ty::Slice(_) | ty::Str => tcx.types.usize,
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ty::Dynamic(data, _, ty::Dyn) => mk_dyn_vtable(data.principal()),
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_ => bug!("TyAndLayout::field({:?}): not applicable", this),
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@ -1348,7 +1348,7 @@ impl<'tcx> TyCtxt<'tcx> {
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layout = layout.field(&cx, index);
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if !layout.is_sized() {
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// If it is not sized, then the tail must still have at least a known static alignment.
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let tail = self.struct_tail_erasing_lifetimes(layout.ty, param_env);
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let tail = self.struct_tail_for_codegen(layout.ty, param_env);
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if !matches!(tail.kind(), ty::Slice(..)) {
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bug!(
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"offset of not-statically-aligned field (type {:?}) cannot be computed statically",
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@ -186,11 +186,7 @@ impl<'tcx> TyCtxt<'tcx> {
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/// Should only be called if `ty` has no inference variables and does not
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/// need its lifetimes preserved (e.g. as part of codegen); otherwise
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/// normalization attempt may cause compiler bugs.
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pub fn struct_tail_erasing_lifetimes(
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self,
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ty: Ty<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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) -> Ty<'tcx> {
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pub fn struct_tail_for_codegen(self, ty: Ty<'tcx>, param_env: ty::ParamEnv<'tcx>) -> Ty<'tcx> {
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let tcx = self;
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tcx.struct_tail_with_normalize(ty, |ty| tcx.normalize_erasing_regions(param_env, ty), || {})
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}
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@ -203,7 +199,7 @@ impl<'tcx> TyCtxt<'tcx> {
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/// handle `<T as Trait>::Assoc` and `impl Trait`); pass the identity
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/// function to indicate no normalization should take place.
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///
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/// See also `struct_tail_erasing_lifetimes`, which is suitable for use
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/// See also `struct_tail_for_codegen`, which is suitable for use
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/// during codegen.
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pub fn struct_tail_with_normalize(
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self,
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@ -272,13 +268,13 @@ impl<'tcx> TyCtxt<'tcx> {
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/// Same as applying `struct_tail` on `source` and `target`, but only
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/// keeps going as long as the two types are instances of the same
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/// structure definitions.
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/// For `(Foo<Foo<T>>, Foo<dyn Trait>)`, the result will be `(Foo<T>, Trait)`,
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/// For `(Foo<Foo<T>>, Foo<dyn Trait>)`, the result will be `(Foo<T>, dyn Trait)`,
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/// whereas struct_tail produces `T`, and `Trait`, respectively.
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///
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/// Should only be called if the types have no inference variables and do
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/// not need their lifetimes preserved (e.g., as part of codegen); otherwise,
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/// normalization attempt may cause compiler bugs.
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pub fn struct_lockstep_tails_erasing_lifetimes(
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pub fn struct_lockstep_tails_for_codegen(
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self,
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source: Ty<'tcx>,
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target: Ty<'tcx>,
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@ -296,7 +292,7 @@ impl<'tcx> TyCtxt<'tcx> {
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/// For `(Foo<Foo<T>>, Foo<dyn Trait>)`, the result will be `(Foo<T>, Trait)`,
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/// whereas struct_tail produces `T`, and `Trait`, respectively.
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///
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/// See also `struct_lockstep_tails_erasing_lifetimes`, which is suitable for use
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/// See also `struct_lockstep_tails_for_codegen`, which is suitable for use
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/// during codegen.
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pub fn struct_lockstep_tails_with_normalize(
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self,
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@ -1019,7 +1019,7 @@ fn find_vtable_types_for_unsizing<'tcx>(
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if ty.is_sized(tcx.tcx, param_env) {
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return false;
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}
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let tail = tcx.struct_tail_erasing_lifetimes(ty, param_env);
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let tail = tcx.struct_tail_for_codegen(ty, param_env);
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match tail.kind() {
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ty::Foreign(..) => false,
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ty::Str | ty::Slice(..) | ty::Dynamic(..) => true,
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@ -1029,7 +1029,7 @@ fn find_vtable_types_for_unsizing<'tcx>(
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if type_has_metadata(inner_source) {
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(inner_source, inner_target)
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} else {
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tcx.struct_lockstep_tails_erasing_lifetimes(inner_source, inner_target, param_env)
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tcx.struct_lockstep_tails_for_codegen(inner_source, inner_target, param_env)
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}
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};
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@ -549,7 +549,7 @@ fn fn_abi_sanity_check<'tcx>(
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// With metadata. Must be unsized and not on the stack.
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assert!(arg.layout.is_unsized() && !on_stack);
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// Also, must not be `extern` type.
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let tail = cx.tcx.struct_tail_erasing_lifetimes(arg.layout.ty, cx.param_env());
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let tail = cx.tcx.struct_tail_for_codegen(arg.layout.ty, cx.param_env());
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if matches!(tail.kind(), ty::Foreign(..)) {
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// These types do not have metadata, so having `meta_attrs` is bogus.
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// Conceptually, unsized arguments must be copied around, which requires dynamically
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@ -244,7 +244,7 @@ fn layout_of_uncached<'tcx>(
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metadata
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} else {
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let unsized_part = tcx.struct_tail_erasing_lifetimes(pointee, param_env);
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let unsized_part = tcx.struct_tail_for_codegen(pointee, param_env);
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match unsized_part.kind() {
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ty::Foreign(..) => {
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@ -142,7 +142,7 @@ fn check_rvalue<'tcx>(
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// We cannot allow this for now.
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return Err((span, "unsizing casts are only allowed for references right now".into()));
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};
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let unsized_ty = tcx.struct_tail_erasing_lifetimes(pointee_ty, tcx.param_env(def_id));
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let unsized_ty = tcx.struct_tail_for_codegen(pointee_ty, tcx.param_env(def_id));
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if let ty::Slice(_) | ty::Str = unsized_ty.kind() {
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check_operand(tcx, op, span, body, msrv)?;
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// Casting/coercing things to slices is fine.
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