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Improve documentation
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@ -480,10 +480,15 @@ impl<'ll, 'tcx> IntrinsicCallMethods<'tcx> for Builder<'_, 'll, 'tcx> {
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}
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_ if name.as_str().starts_with("simd_") => {
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// Unpack non-power-of-2 #[repr(packed)]
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// Unpack non-power-of-2 #[repr(packed, simd)] arguments.
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// This gives them the expected layout of a regular #[repr(simd)] vector.
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let mut loaded_args = Vec::new();
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for (ty, arg) in arg_tys.iter().zip(args) {
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loaded_args.push(
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// #[repr(packed, simd)] vectors are passed like arrays (as references,
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// with reduced alignment and no padding) rather than as immediates.
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// We can use a vector load to fix the layout and turn the argument
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// into an immediate.
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if ty.is_simd()
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&& let OperandValue::Ref(place) = arg.val
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{
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@ -36,12 +36,13 @@ fn main() {
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check_ty::<f64>();
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unsafe {
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// powers-of-two have no padding and work as usual
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// powers-of-two have no padding and have the same layout as #[repr(simd)]
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let x: Simd<f64, 4> =
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simd_add(Simd::<f64, 4>([0., 1., 2., 3.]), Simd::<f64, 4>([2., 2., 2., 2.]));
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assert_eq!(std::mem::transmute::<_, [f64; 4]>(x), [2., 3., 4., 5.]);
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// non-powers-of-two have padding and lesser alignment, but the intrinsic handles it
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// non-powers-of-two should have padding (which is removed by #[repr(packed)]),
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// but the intrinsic handles it
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let x: Simd<f64, 3> = simd_add(Simd::<f64, 3>([0., 1., 2.]), Simd::<f64, 3>([2., 2., 2.]));
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let arr: [f64; 3] = x.0;
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assert_eq!(arr, [2., 3., 4.]);
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