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//! Miscellaneous minor utilities.
#![allow(dead_code)]
#![allow(unused_macros)]
use core::ffi::c_void;
use core::mem::{align_of, size_of};
use core::ptr::{null, null_mut, NonNull};
/// Convert a `&T` into a `*const T` without using an `as`.
#[inline]
pub(crate) const fn as_ptr<T>(t: &T) -> *const T {
t
}
/// Convert a `&mut T` into a `*mut T` without using an `as`.
#[inline]
pub(crate) fn as_mut_ptr<T>(t: &mut T) -> *mut T {
t
}
/// Convert an `Option<&T>` into a possibly-null `*const T`.
#[inline]
pub(crate) const fn option_as_ptr<T>(t: Option<&T>) -> *const T {
match t {
Some(t) => t,
None => null(),
}
}
/// Convert an `Option<&mut T>` into a possibly-null `*mut T`.
#[inline]
pub(crate) fn option_as_mut_ptr<T>(t: Option<&mut T>) -> *mut T {
match t {
Some(t) => t,
None => null_mut(),
}
}
/// Convert a `*mut c_void` to a `*mut T`, checking that it is not null,
/// misaligned, or pointing to a region of memory that wraps around the address
/// space.
pub(crate) fn check_raw_pointer<T>(value: *mut c_void) -> Option<NonNull<T>> {
if (value as usize).checked_add(size_of::<T>()).is_none()
|| (value as usize) % align_of::<T>() != 0
{
return None;
}
NonNull::new(value.cast())
}
/// Create an array value containing all default values, inferring the type.
#[inline]
pub(crate) fn default_array<T: Default + Copy, const N: usize>() -> [T; N] {
[T::default(); N]
}
/// Create a union value containing a default value in one of its arms.
///
/// The field names a union field which must have the same size as the union
/// itself.
macro_rules! default_union {
($union:ident, $field:ident) => {{
let u = $union {
$field: Default::default(),
};
// Assert that the given field initializes the whole union.
#[cfg(test)]
unsafe {
let field_value = u.$field;
assert_eq!(
core::mem::size_of_val(&u),
core::mem::size_of_val(&field_value)
);
const_assert_eq!(memoffset::offset_of_union!($union, $field), 0);
}
u
}};
}