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CTFE engine: rename copy → copy_intrinsic, move to intrinsics.rs
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@ -323,7 +323,7 @@ impl<'mir, 'tcx: 'mir, M: Machine<'mir, 'tcx>> InterpCx<'mir, 'tcx, M> {
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self.write_scalar(result, dest)?;
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}
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sym::copy => {
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self.copy(&args[0], &args[1], &args[2], /*nonoverlapping*/ false)?;
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self.copy_intrinsic(&args[0], &args[1], &args[2], /*nonoverlapping*/ false)?;
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}
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sym::offset => {
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let ptr = self.read_scalar(&args[0])?.check_init()?;
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@ -530,4 +530,36 @@ impl<'mir, 'tcx: 'mir, M: Machine<'mir, 'tcx>> InterpCx<'mir, 'tcx, M> {
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)?;
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Ok(offset_ptr)
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}
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/// Copy `count*size_of::<T>()` many bytes from `*src` to `*dst`.
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pub(crate) fn copy_intrinsic(
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&mut self,
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src: &OpTy<'tcx, <M as Machine<'mir, 'tcx>>::PointerTag>,
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dst: &OpTy<'tcx, <M as Machine<'mir, 'tcx>>::PointerTag>,
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count: &OpTy<'tcx, <M as Machine<'mir, 'tcx>>::PointerTag>,
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nonoverlapping: bool,
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) -> InterpResult<'tcx> {
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let count = self.read_scalar(&count)?.to_machine_usize(self)?;
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let layout = self.layout_of(src.layout.ty.builtin_deref(true).unwrap().ty)?;
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let (size, align) = (layout.size, layout.align.abi);
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let size = size.checked_mul(count, self).ok_or_else(|| {
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err_ub_format!(
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"overflow computing total size of `{}`",
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if nonoverlapping { "copy_nonoverlapping" } else { "copy" }
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)
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})?;
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// Make sure we check both pointers for an access of the total size and aligment,
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// *even if* the total size is 0.
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let src =
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self.memory.check_ptr_access(self.read_scalar(&src)?.check_init()?, size, align)?;
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let dst =
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self.memory.check_ptr_access(self.read_scalar(&dst)?.check_init()?, size, align)?;
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if let (Some(src), Some(dst)) = (src, dst) {
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self.memory.copy(src, dst, size, nonoverlapping)?;
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}
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Ok(())
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}
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}
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@ -2,7 +2,6 @@
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//!
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//! The main entry point is the `step` method.
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use crate::interpret::OpTy;
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use rustc_middle::mir;
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use rustc_middle::mir::interpret::{InterpResult, Scalar};
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use rustc_target::abi::LayoutOf;
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@ -119,7 +118,7 @@ impl<'mir, 'tcx: 'mir, M: Machine<'mir, 'tcx>> InterpCx<'mir, 'tcx, M> {
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let src = self.eval_operand(src, None)?;
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let dst = self.eval_operand(dst, None)?;
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let count = self.eval_operand(count, None)?;
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self.copy(&src, &dst, &count, /* nonoverlapping */ true)?;
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self.copy_intrinsic(&src, &dst, &count, /* nonoverlapping */ true)?;
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}
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// Statements we do not track.
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@ -149,37 +148,6 @@ impl<'mir, 'tcx: 'mir, M: Machine<'mir, 'tcx>> InterpCx<'mir, 'tcx, M> {
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Ok(())
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}
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pub(crate) fn copy(
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&mut self,
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src: &OpTy<'tcx, <M as Machine<'mir, 'tcx>>::PointerTag>,
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dst: &OpTy<'tcx, <M as Machine<'mir, 'tcx>>::PointerTag>,
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count: &OpTy<'tcx, <M as Machine<'mir, 'tcx>>::PointerTag>,
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nonoverlapping: bool,
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) -> InterpResult<'tcx> {
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let count = self.read_scalar(&count)?.to_machine_usize(self)?;
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let layout = self.layout_of(src.layout.ty.builtin_deref(true).unwrap().ty)?;
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let (size, align) = (layout.size, layout.align.abi);
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let size = size.checked_mul(count, self).ok_or_else(|| {
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err_ub_format!(
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"overflow computing total size of `{}`",
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if nonoverlapping { "copy_nonoverlapping" } else { "copy" }
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)
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})?;
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// Make sure we check both pointers for an access of the total size and aligment,
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// *even if* the total size is 0.
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let src =
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self.memory.check_ptr_access(self.read_scalar(&src)?.check_init()?, size, align)?;
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let dst =
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self.memory.check_ptr_access(self.read_scalar(&dst)?.check_init()?, size, align)?;
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if let (Some(src), Some(dst)) = (src, dst) {
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self.memory.copy(src, dst, size, nonoverlapping)?;
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}
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Ok(())
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}
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/// Evaluate an assignment statement.
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///
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/// There is no separate `eval_rvalue` function. Instead, the code for handling each rvalue
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