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miri assignment check: compare types after normalizing all late-bound regions away
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@ -14,11 +14,11 @@ use rustc_middle::mir::interpret::{
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sign_extend, truncate, AllocId, FrameInfo, GlobalId, InterpResult, Pointer, Scalar,
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};
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use rustc_middle::ty::layout::{self, TyAndLayout};
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use rustc_middle::ty::query::TyCtxtAt;
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use rustc_middle::ty::subst::SubstsRef;
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use rustc_middle::ty::{self, Ty, TyCtxt, TypeFoldable};
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use rustc_middle::ty::{
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self, fold::BottomUpFolder, query::TyCtxtAt, subst::SubstsRef, Ty, TyCtxt, TypeFoldable,
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};
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use rustc_span::source_map::DUMMY_SP;
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use rustc_target::abi::{Abi, Align, HasDataLayout, LayoutOf, Size, TargetDataLayout};
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use rustc_target::abi::{Align, HasDataLayout, LayoutOf, Size, TargetDataLayout};
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use super::{
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Immediate, MPlaceTy, Machine, MemPlace, MemPlaceMeta, Memory, OpTy, Operand, Place, PlaceTy,
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@ -213,6 +213,7 @@ impl<'mir, 'tcx, M: Machine<'mir, 'tcx>> LayoutOf for InterpCx<'mir, 'tcx, M> {
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/// Test if it is valid for a MIR assignment to assign `src`-typed place to `dest`-typed value.
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/// This test should be symmetric, as it is primarily about layout compatibility.
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pub(super) fn mir_assign_valid_types<'tcx>(
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tcx: TyCtxt<'tcx>,
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src: TyAndLayout<'tcx>,
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dest: TyAndLayout<'tcx>,
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) -> bool {
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@ -220,23 +221,42 @@ pub(super) fn mir_assign_valid_types<'tcx>(
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// Equal types, all is good.
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return true;
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}
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// Type-changing assignments can happen for (at least) two reasons:
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// - `&mut T` -> `&T` gets optimized from a reborrow to a mere assignment.
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// - Subtyping is used. While all normal lifetimes are erased, higher-ranked lifetime
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// bounds are still around and can lead to type differences.
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// There is no good way to check the latter, so we compare layouts instead -- but only
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// for values with `Scalar`/`ScalarPair` abi.
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// FIXME: Do something more accurate, type-based.
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match &src.abi {
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Abi::Scalar(..) | Abi::ScalarPair(..) => src.layout == dest.layout,
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_ => false,
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if src.layout != dest.layout {
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// Layout differs, definitely not equal.
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// We do this here because Miri would *do the wrong thing* if we allowed layout-changing
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// assignments.
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return false;
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}
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// Type-changing assignments can happen for (at least) two reasons:
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// 1. `&mut T` -> `&T` gets optimized from a reborrow to a mere assignment.
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// 2. Subtyping is used. While all normal lifetimes are erased, higher-ranked lifetime
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// bounds with their late-bound regions are still around and can lead to type differences.
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// Normalize both of them away.
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let normalize = |ty: Ty<'tcx>| {
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ty.fold_with(&mut BottomUpFolder {
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tcx,
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// Normalize all references to immutable.
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ty_op: |ty| match ty.kind {
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ty::Ref(_, pointee, _) => tcx.mk_imm_ref(tcx.lifetimes.re_erased, pointee),
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_ => ty,
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},
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// We just erase all late-bound regions, but this is not fully correct (FIXME):
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// lifetimes in invariant positions could matter (e.g. through associated types).
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// We rely on the fact that layout was confirmed to be equal above.
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lt_op: |_| tcx.lifetimes.re_erased,
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// Leave consts unchanged.
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ct_op: |ct| ct,
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})
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};
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normalize(src.ty) == normalize(dest.ty)
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}
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/// Use the already known layout if given (but sanity check in debug mode),
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/// or compute the layout.
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#[cfg_attr(not(debug_assertions), inline(always))]
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pub(super) fn from_known_layout<'tcx>(
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tcx: TyCtxt<'tcx>,
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known_layout: Option<TyAndLayout<'tcx>>,
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compute: impl FnOnce() -> InterpResult<'tcx, TyAndLayout<'tcx>>,
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) -> InterpResult<'tcx, TyAndLayout<'tcx>> {
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@ -246,7 +266,7 @@ pub(super) fn from_known_layout<'tcx>(
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if cfg!(debug_assertions) {
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let check_layout = compute()?;
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assert!(
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mir_assign_valid_types(check_layout, known_layout),
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mir_assign_valid_types(tcx, check_layout, known_layout),
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"expected type differs from actual type.\nexpected: {:?}\nactual: {:?}",
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known_layout.ty,
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check_layout.ty,
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@ -424,7 +444,7 @@ impl<'mir, 'tcx, M: Machine<'mir, 'tcx>> InterpCx<'mir, 'tcx, M> {
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// have to support that case (mostly by skipping all caching).
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match frame.locals.get(local).and_then(|state| state.layout.get()) {
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None => {
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let layout = from_known_layout(layout, || {
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let layout = from_known_layout(self.tcx.tcx, layout, || {
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let local_ty = frame.body.local_decls[local].ty;
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let local_ty =
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self.subst_from_frame_and_normalize_erasing_regions(frame, local_ty);
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@ -529,7 +529,7 @@ impl<'mir, 'tcx, M: Machine<'mir, 'tcx>> InterpCx<'mir, 'tcx, M> {
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ty::ConstKind::Value(val_val) => val_val,
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};
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// Other cases need layout.
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let layout = from_known_layout(layout, || self.layout_of(val.ty))?;
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let layout = from_known_layout(self.tcx.tcx, layout, || self.layout_of(val.ty))?;
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let op = match val_val {
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ConstValue::ByRef { alloc, offset } => {
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let id = self.tcx.alloc_map.lock().create_memory_alloc(alloc);
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@ -868,7 +868,7 @@ where
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// We do NOT compare the types for equality, because well-typed code can
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// actually "transmute" `&mut T` to `&T` in an assignment without a cast.
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assert!(
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mir_assign_valid_types(src.layout, dest.layout),
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mir_assign_valid_types(self.tcx.tcx, src.layout, dest.layout),
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"type mismatch when copying!\nsrc: {:?},\ndest: {:?}",
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src.layout.ty,
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dest.layout.ty,
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@ -922,7 +922,7 @@ where
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src: OpTy<'tcx, M::PointerTag>,
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dest: PlaceTy<'tcx, M::PointerTag>,
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) -> InterpResult<'tcx> {
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if mir_assign_valid_types(src.layout, dest.layout) {
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if mir_assign_valid_types(self.tcx.tcx, src.layout, dest.layout) {
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// Fast path: Just use normal `copy_op`
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return self.copy_op(src, dest);
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}
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