Use size_of_val
instead of manual calculation
Very minor thing that I happened to notice in passing, but it's both shorter and means it gets `mul nuw`, so why not.
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@ -46,7 +46,7 @@ pub fn size_and_align_of_dst<'a, 'tcx, Bx: BuilderMethods<'a, 'tcx>>(
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// NOTE: ideally, we want the effects of both `unchecked_smul` and `unchecked_umul`
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// NOTE: ideally, we want the effects of both `unchecked_smul` and `unchecked_umul`
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// (resulting in `mul nsw nuw` in LLVM IR), since we know that the multiplication
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// (resulting in `mul nsw nuw` in LLVM IR), since we know that the multiplication
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// cannot signed wrap, and that both operands are non-negative. But at the time of writing,
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// cannot signed wrap, and that both operands are non-negative. But at the time of writing,
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// `BuilderMethods` can't do this, and it doesn't seem to enable any further optimizations.
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// the `LLVM-C` binding can't do this, and it doesn't seem to enable any further optimizations.
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bx.unchecked_smul(info.unwrap(), bx.const_usize(unit.size.bytes())),
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bx.unchecked_smul(info.unwrap(), bx.const_usize(unit.size.bytes())),
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bx.const_usize(unit.align.abi.bytes()),
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bx.const_usize(unit.align.abi.bytes()),
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)
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)
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@ -834,7 +834,7 @@ fn hash<H: ~const Hasher>(&self, state: &mut H) {
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#[inline]
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#[inline]
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fn hash_slice<H: ~const Hasher>(data: &[$ty], state: &mut H) {
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fn hash_slice<H: ~const Hasher>(data: &[$ty], state: &mut H) {
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let newlen = data.len() * mem::size_of::<$ty>();
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let newlen = mem::size_of_val(data);
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let ptr = data.as_ptr() as *const u8;
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let ptr = data.as_ptr() as *const u8;
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// SAFETY: `ptr` is valid and aligned, as this macro is only used
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// SAFETY: `ptr` is valid and aligned, as this macro is only used
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// for numeric primitives which have no padding. The new slice only
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// for numeric primitives which have no padding. The new slice only
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