213 lines
6.9 KiB
Rust
213 lines
6.9 KiB
Rust
#![allow(clippy::module_name_repetitions)]
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#![allow(clippy::let_unit_value)]
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#![allow(clippy::let_underscore_untyped)]
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#![allow(clippy::ptr_as_ptr)]
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use crate::{AnyBitPattern, NoUninit};
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use core::mem::{align_of, size_of};
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struct Cast<A, B>((A, B));
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impl<A, B> Cast<A, B> {
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const ASSERT_ALIGN_GREATER_THAN_EQUAL: () =
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assert!(align_of::<A>() >= align_of::<B>());
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const ASSERT_SIZE_EQUAL: () = assert!(size_of::<A>() == size_of::<B>());
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const ASSERT_SIZE_MULTIPLE_OF_OR_INPUT_ZST: () = assert!(
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(size_of::<A>() == 0)
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|| (size_of::<B>() != 0 && size_of::<A>() % size_of::<B>() == 0)
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);
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}
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/// Cast `A` into `B` if infalliable, or fail to compile.
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///
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/// Note that for this particular type of cast, alignment isn't a factor. The
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/// input value is semantically copied into the function and then returned to a
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/// new memory location which will have whatever the required alignment of the
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/// output type is.
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///
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/// ## Failure
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///
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/// * If the types don't have the same size this fails to compile.
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///
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/// ## Examples
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/// ```
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/// // compiles:
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/// let bytes: [u8; 2] = bytemuck::must_cast(12_u16);
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/// ```
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/// ```compile_fail,E0080
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/// // fails to compile (size mismatch):
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/// let bytes : [u8; 3] = bytemuck::must_cast(12_u16);
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/// ```
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#[inline]
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pub const fn must_cast<A: NoUninit, B: AnyBitPattern>(a: A) -> B {
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let _ = Cast::<A, B>::ASSERT_SIZE_EQUAL;
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unsafe { transmute!(A; B; a) }
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}
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/// Convert `&A` into `&B` if infalliable, or fail to compile.
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///
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/// ## Failure
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///
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/// * If the target type has a greater alignment requirement.
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/// * If the source type and target type aren't the same size.
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///
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/// ## Examples
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/// ```
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/// // compiles:
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/// let bytes: &[u8; 2] = bytemuck::must_cast_ref(&12_u16);
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/// ```
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/// ```compile_fail,E0080
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/// // fails to compile (size mismatch):
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/// let bytes : &[u8; 3] = bytemuck::must_cast_ref(&12_u16);
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/// ```
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/// ```compile_fail,E0080
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/// // fails to compile (alignment requirements increased):
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/// let bytes : &u16 = bytemuck::must_cast_ref(&[1u8, 2u8]);
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/// ```
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#[inline]
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pub const fn must_cast_ref<A: NoUninit, B: AnyBitPattern>(a: &A) -> &B {
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let _ = Cast::<A, B>::ASSERT_SIZE_EQUAL;
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let _ = Cast::<A, B>::ASSERT_ALIGN_GREATER_THAN_EQUAL;
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unsafe { &*(a as *const A as *const B) }
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}
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maybe_const_fn! {
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#[cfg(feature = "must_cast_extra")]
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/// Convert a `&mut A` into `&mut B` if infalliable, or fail to compile.
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///
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/// As [`must_cast_ref`], but `mut`.
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///
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/// ## Examples
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/// ```
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/// let mut i = 12_u16;
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/// // compiles:
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/// let bytes: &mut [u8; 2] = bytemuck::must_cast_mut(&mut i);
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/// ```
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/// ```compile_fail,E0080
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/// # let mut bytes: &mut [u8; 2] = &mut [1, 2];
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/// // fails to compile (alignment requirements increased):
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/// let i : &mut u16 = bytemuck::must_cast_mut(bytes);
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/// ```
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/// ```compile_fail,E0080
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/// # let mut i = 12_u16;
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/// // fails to compile (size mismatch):
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/// let bytes : &mut [u8; 3] = bytemuck::must_cast_mut(&mut i);
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/// ```
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#[inline]
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pub fn must_cast_mut<
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A: NoUninit + AnyBitPattern,
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B: NoUninit + AnyBitPattern,
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>(
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a: &mut A,
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) -> &mut B {
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let _ = Cast::<A, B>::ASSERT_SIZE_EQUAL;
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let _ = Cast::<A, B>::ASSERT_ALIGN_GREATER_THAN_EQUAL;
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unsafe { &mut *(a as *mut A as *mut B) }
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}
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}
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/// Convert `&[A]` into `&[B]` (possibly with a change in length) if
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/// infalliable, or fail to compile.
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///
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/// * `input.as_ptr() as usize == output.as_ptr() as usize`
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/// * `input.len() * size_of::<A>() == output.len() * size_of::<B>()`
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///
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/// ## Failure
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///
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/// * If the target type has a greater alignment requirement.
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/// * If the target element type doesn't evenly fit into the the current element
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/// type (eg: 3 `u16` values is 1.5 `u32` values, so that's a failure).
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/// * Similarly, you can't convert from a non-[ZST](https://doc.rust-lang.org/nomicon/exotic-sizes.html#zero-sized-types-zsts)
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/// to a ZST (e.g. 3 `u8` values is not any number of `()` values).
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///
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/// ## Examples
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/// ```
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/// let indicies: &[u16] = &[1, 2, 3];
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/// // compiles:
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/// let bytes: &[u8] = bytemuck::must_cast_slice(indicies);
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/// ```
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/// ```
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/// let zsts: &[()] = &[(), (), ()];
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/// // compiles:
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/// let bytes: &[u8] = bytemuck::must_cast_slice(zsts);
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/// ```
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/// ```compile_fail,E0080
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/// # let bytes : &[u8] = &[1, 0, 2, 0, 3, 0];
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/// // fails to compile (bytes.len() might not be a multiple of 2):
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/// let byte_pairs : &[[u8; 2]] = bytemuck::must_cast_slice(bytes);
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/// ```
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/// ```compile_fail,E0080
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/// # let byte_pairs : &[[u8; 2]] = &[[1, 0], [2, 0], [3, 0]];
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/// // fails to compile (alignment requirements increased):
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/// let indicies : &[u16] = bytemuck::must_cast_slice(byte_pairs);
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/// ```
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/// ```compile_fail,E0080
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/// let bytes: &[u8] = &[];
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/// // fails to compile: (bytes.len() might not be 0)
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/// let zsts: &[()] = bytemuck::must_cast_slice(bytes);
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/// ```
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#[inline]
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pub const fn must_cast_slice<A: NoUninit, B: AnyBitPattern>(a: &[A]) -> &[B] {
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let _ = Cast::<A, B>::ASSERT_SIZE_MULTIPLE_OF_OR_INPUT_ZST;
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let _ = Cast::<A, B>::ASSERT_ALIGN_GREATER_THAN_EQUAL;
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let new_len = if size_of::<A>() == size_of::<B>() {
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a.len()
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} else {
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a.len() * (size_of::<A>() / size_of::<B>())
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};
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unsafe { core::slice::from_raw_parts(a.as_ptr() as *const B, new_len) }
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}
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maybe_const_fn! {
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#[cfg(feature = "must_cast_extra")]
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/// Convert `&mut [A]` into `&mut [B]` (possibly with a change in length) if
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/// infalliable, or fail to compile.
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///
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/// As [`must_cast_slice`], but `&mut`.
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///
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/// ## Examples
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/// ```
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/// let mut indicies = [1, 2, 3];
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/// let indicies: &mut [u16] = &mut indicies;
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/// // compiles:
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/// let bytes: &mut [u8] = bytemuck::must_cast_slice_mut(indicies);
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/// ```
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/// ```
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/// let zsts: &mut [()] = &mut [(), (), ()];
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/// // compiles:
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/// let bytes: &mut [u8] = bytemuck::must_cast_slice_mut(zsts);
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/// ```
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/// ```compile_fail,E0080
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/// # let mut bytes = [1, 0, 2, 0, 3, 0];
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/// # let bytes : &mut [u8] = &mut bytes[..];
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/// // fails to compile (bytes.len() might not be a multiple of 2):
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/// let byte_pairs : &mut [[u8; 2]] = bytemuck::must_cast_slice_mut(bytes);
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/// ```
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/// ```compile_fail,E0080
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/// # let mut byte_pairs = [[1, 0], [2, 0], [3, 0]];
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/// # let byte_pairs : &mut [[u8; 2]] = &mut byte_pairs[..];
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/// // fails to compile (alignment requirements increased):
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/// let indicies : &mut [u16] = bytemuck::must_cast_slice_mut(byte_pairs);
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/// ```
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/// ```compile_fail,E0080
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/// let bytes: &mut [u8] = &mut [];
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/// // fails to compile: (bytes.len() might not be 0)
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/// let zsts: &mut [()] = bytemuck::must_cast_slice_mut(bytes);
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/// ```
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#[inline]
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pub fn must_cast_slice_mut<
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A: NoUninit + AnyBitPattern,
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B: NoUninit + AnyBitPattern,
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>(
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a: &mut [A],
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) -> &mut [B] {
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let _ = Cast::<A, B>::ASSERT_SIZE_MULTIPLE_OF_OR_INPUT_ZST;
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let _ = Cast::<A, B>::ASSERT_ALIGN_GREATER_THAN_EQUAL;
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let new_len = if size_of::<A>() == size_of::<B>() {
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a.len()
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} else {
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a.len() * (size_of::<A>() / size_of::<B>())
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};
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unsafe { core::slice::from_raw_parts_mut(a.as_mut_ptr() as *mut B, new_len) }
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}
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}
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