get rid of ConstPropUnsupported; use ZST marker structs instead
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5574b1df57
commit
82f4a1a9b9
4 changed files with 63 additions and 24 deletions
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@ -164,7 +164,7 @@ impl dyn Any {
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// Get `TypeId` of the type this function is instantiated with.
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let t = TypeId::of::<T>();
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// Get `TypeId` of the type in the trait object.
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// Get `TypeId` of the type in the trait object (`self`).
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let concrete = self.type_id();
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// Compare both `TypeId`s on equality.
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@ -14,7 +14,10 @@ use rustc_hir as hir;
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use rustc_macros::HashStable;
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use rustc_session::CtfeBacktrace;
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use rustc_span::{def_id::DefId, Pos, Span};
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use std::{any::Any, fmt};
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use std::{
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any::{Any, TypeId},
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fmt, mem,
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};
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#[derive(Debug, Copy, Clone, PartialEq, Eq, HashStable, RustcEncodable, RustcDecodable)]
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pub enum ErrorHandled {
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@ -451,9 +454,6 @@ impl fmt::Debug for UndefinedBehaviorInfo {
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pub enum UnsupportedOpInfo {
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/// Free-form case. Only for errors that are never caught!
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Unsupported(String),
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/// When const-prop encounters a situation it does not support, it raises this error.
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/// This must not allocate for performance reasons (hence `str`, not `String`).
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ConstPropUnsupported(&'static str),
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/// Accessing an unsupported foreign static.
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ReadForeignStatic(DefId),
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/// Could not find MIR for a function.
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@ -472,9 +472,6 @@ impl fmt::Debug for UnsupportedOpInfo {
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use UnsupportedOpInfo::*;
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match self {
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Unsupported(ref msg) => write!(f, "{}", msg),
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ConstPropUnsupported(ref msg) => {
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write!(f, "Constant propagation encountered an unsupported situation: {}", msg)
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}
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ReadForeignStatic(did) => {
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write!(f, "tried to read from foreign (extern) static {:?}", did)
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}
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@ -516,6 +513,35 @@ impl fmt::Debug for ResourceExhaustionInfo {
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}
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}
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/// A trait for machine-specific errors (or other "machine stop" conditions).
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pub trait MachineStopType: Any + fmt::Debug + Send {}
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impl MachineStopType for String {}
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// Copy-pasted from `any.rs`; there does not seem to be a way to re-use that.
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impl dyn MachineStopType {
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pub fn is<T: Any>(&self) -> bool {
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// Get `TypeId` of the type this function is instantiated with.
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let t = TypeId::of::<T>();
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// Get `TypeId` of the type in the trait object (`self`).
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let concrete = self.type_id();
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// Compare both `TypeId`s on equality.
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t == concrete
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}
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pub fn downcast_ref<T: Any>(&self) -> Option<&T> {
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if self.is::<T>() {
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// SAFETY: just checked whether we are pointing to the correct type, and we can rely on
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// that check for memory safety because `Any` is implemented for all types; no other
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// impls can exist as they would conflict with our impl.
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unsafe { Some(&*(self as *const dyn MachineStopType as *const T)) }
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} else {
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None
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}
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}
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}
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pub enum InterpError<'tcx> {
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/// The program caused undefined behavior.
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UndefinedBehavior(UndefinedBehaviorInfo),
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@ -529,7 +555,7 @@ pub enum InterpError<'tcx> {
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ResourceExhaustion(ResourceExhaustionInfo),
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/// Stop execution for a machine-controlled reason. This is never raised by
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/// the core engine itself.
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MachineStop(Box<dyn Any + Send>),
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MachineStop(Box<dyn MachineStopType>),
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}
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pub type InterpResult<'tcx, T = ()> = Result<T, InterpErrorInfo<'tcx>>;
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@ -549,7 +575,7 @@ impl fmt::Debug for InterpError<'_> {
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InvalidProgram(ref msg) => write!(f, "{:?}", msg),
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UndefinedBehavior(ref msg) => write!(f, "{:?}", msg),
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ResourceExhaustion(ref msg) => write!(f, "{:?}", msg),
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MachineStop(_) => bug!("unhandled MachineStop"),
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MachineStop(ref msg) => write!(f, "{:?}", msg),
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}
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}
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}
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@ -560,8 +586,9 @@ impl InterpError<'_> {
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/// waste of resources.
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pub fn allocates(&self) -> bool {
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match self {
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InterpError::MachineStop(_)
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| InterpError::Unsupported(UnsupportedOpInfo::Unsupported(_))
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// Zero-sized boxes to not allocate.
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InterpError::MachineStop(b) => mem::size_of_val(&**b) > 0,
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InterpError::Unsupported(UnsupportedOpInfo::Unsupported(_))
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| InterpError::UndefinedBehavior(UndefinedBehaviorInfo::ValidationFailure(_))
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| InterpError::UndefinedBehavior(UndefinedBehaviorInfo::Ub(_))
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| InterpError::UndefinedBehavior(UndefinedBehaviorInfo::UbExperimental(_)) => true,
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@ -92,8 +92,8 @@ mod value;
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pub use self::error::{
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struct_error, ConstEvalErr, ConstEvalRawResult, ConstEvalResult, ErrorHandled, FrameInfo,
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InterpError, InterpErrorInfo, InterpResult, InvalidProgramInfo, ResourceExhaustionInfo,
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UndefinedBehaviorInfo, UnsupportedOpInfo,
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InterpError, InterpErrorInfo, InterpResult, InvalidProgramInfo, MachineStopType,
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ResourceExhaustionInfo, UndefinedBehaviorInfo, UnsupportedOpInfo,
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};
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pub use self::value::{get_slice_bytes, ConstValue, RawConst, Scalar, ScalarMaybeUndef};
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@ -4,7 +4,7 @@
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use std::borrow::Cow;
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use std::cell::Cell;
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use rustc::mir::interpret::{InterpResult, Scalar};
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use rustc::mir::interpret::{InterpResult, MachineStopType, Scalar};
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use rustc::mir::visit::{
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MutVisitor, MutatingUseContext, NonMutatingUseContext, PlaceContext, Visitor,
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};
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@ -192,7 +192,10 @@ impl<'mir, 'tcx> interpret::Machine<'mir, 'tcx> for ConstPropMachine {
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_ret: Option<(PlaceTy<'tcx>, BasicBlock)>,
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_unwind: Option<BasicBlock>,
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) -> InterpResult<'tcx> {
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throw_unsup!(ConstPropUnsupported("calling intrinsics isn't supported in ConstProp"))
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#[derive(Debug)]
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struct ConstPropIntrinsic;
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impl MachineStopType for ConstPropIntrinsic {}
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throw_machine_stop!(ConstPropIntrinsic)
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}
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fn assert_panic(
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@ -204,7 +207,7 @@ impl<'mir, 'tcx> interpret::Machine<'mir, 'tcx> for ConstPropMachine {
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}
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fn ptr_to_int(_mem: &Memory<'mir, 'tcx, Self>, _ptr: Pointer) -> InterpResult<'tcx, u64> {
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throw_unsup!(ConstPropUnsupported("ptr-to-int casts aren't supported in ConstProp"))
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throw_unsup!(ReadPointerAsBytes)
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}
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fn binary_ptr_op(
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@ -213,11 +216,11 @@ impl<'mir, 'tcx> interpret::Machine<'mir, 'tcx> for ConstPropMachine {
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_left: ImmTy<'tcx>,
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_right: ImmTy<'tcx>,
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) -> InterpResult<'tcx, (Scalar, bool, Ty<'tcx>)> {
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#[derive(Debug)]
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struct ConstPropPtrOp;
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impl MachineStopType for ConstPropPtrOp {}
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// We can't do this because aliasing of memory can differ between const eval and llvm
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throw_unsup!(ConstPropUnsupported(
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"pointer arithmetic or comparisons aren't supported \
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in ConstProp"
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))
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throw_machine_stop!(ConstPropPtrOp)
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}
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#[inline(always)]
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@ -240,7 +243,10 @@ impl<'mir, 'tcx> interpret::Machine<'mir, 'tcx> for ConstPropMachine {
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_ecx: &mut InterpCx<'mir, 'tcx, Self>,
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_dest: PlaceTy<'tcx>,
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) -> InterpResult<'tcx> {
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throw_unsup!(ConstPropUnsupported("can't const prop `box` keyword"))
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#[derive(Debug)]
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struct ConstPropBox;
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impl MachineStopType for ConstPropBox {}
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throw_machine_stop!(ConstPropBox)
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}
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fn access_local(
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@ -251,7 +257,10 @@ impl<'mir, 'tcx> interpret::Machine<'mir, 'tcx> for ConstPropMachine {
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let l = &frame.locals[local];
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if l.value == LocalValue::Uninitialized {
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throw_unsup!(ConstPropUnsupported("tried to access an uninitialized local"));
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#[derive(Debug)]
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struct ConstPropUninitLocal;
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impl MachineStopType for ConstPropUninitLocal {}
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throw_machine_stop!(ConstPropUninitLocal)
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}
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l.access()
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@ -261,10 +270,13 @@ impl<'mir, 'tcx> interpret::Machine<'mir, 'tcx> for ConstPropMachine {
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_memory_extra: &(),
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allocation: &Allocation<Self::PointerTag, Self::AllocExtra>,
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) -> InterpResult<'tcx> {
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#[derive(Debug)]
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struct ConstPropGlobalMem;
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impl MachineStopType for ConstPropGlobalMem {}
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// if the static allocation is mutable or if it has relocations (it may be legal to mutate
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// the memory behind that in the future), then we can't const prop it
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if allocation.mutability == Mutability::Mut || allocation.relocations().len() > 0 {
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throw_unsup!(ConstPropUnsupported("can't eval mutable statics in ConstProp"));
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throw_machine_stop!(ConstPropGlobalMem)
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}
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Ok(())
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