avoid unnecessary use of MaybeUninit::get_ref, and expand comment on the others

This commit is contained in:
Ralf Jung 2019-02-22 22:47:30 +01:00
parent 084ee7a875
commit d10366fe27
2 changed files with 5 additions and 1 deletions

View file

@ -15,6 +15,7 @@ fn float_to_decimal_common_exact<T>(fmt: &mut Formatter, num: &T,
// FIXME(#53491): Technically, this is calling `get_mut` on an uninitialized
// `MaybeUninit` (here and elsewhere in this file). Revisit this once
// we decided whether that is valid or not.
// Using `freeze` is *not enough*; `flt2dec::Part` is an enum!
let formatted = flt2dec::to_exact_fixed_str(flt2dec::strategy::grisu::format_exact,
*num, sign, precision,
false, buf.get_mut(), parts.get_mut());
@ -33,6 +34,7 @@ fn float_to_decimal_common_shortest<T>(fmt: &mut Formatter, num: &T,
// enough for f32 and f64
let mut buf = MaybeUninit::<[u8; flt2dec::MAX_SIG_DIGITS]>::uninitialized();
let mut parts = MaybeUninit::<[flt2dec::Part; 4]>::uninitialized();
// FIXME(#53491)
let formatted = flt2dec::to_shortest_str(flt2dec::strategy::grisu::format_shortest, *num,
sign, precision, false, buf.get_mut(),
parts.get_mut());
@ -71,6 +73,7 @@ fn float_to_exponential_common_exact<T>(fmt: &mut Formatter, num: &T,
unsafe {
let mut buf = MaybeUninit::<[u8; 1024]>::uninitialized(); // enough for f32 and f64
let mut parts = MaybeUninit::<[flt2dec::Part; 6]>::uninitialized();
// FIXME(#53491)
let formatted = flt2dec::to_exact_exp_str(flt2dec::strategy::grisu::format_exact,
*num, sign, precision,
upper, buf.get_mut(), parts.get_mut());
@ -90,6 +93,7 @@ fn float_to_exponential_common_shortest<T>(fmt: &mut Formatter,
// enough for f32 and f64
let mut buf = MaybeUninit::<[u8; flt2dec::MAX_SIG_DIGITS]>::uninitialized();
let mut parts = MaybeUninit::<[flt2dec::Part; 6]>::uninitialized();
// FIXME(#53491)
let formatted = flt2dec::to_shortest_exp_str(flt2dec::strategy::grisu::format_shortest,
*num, sign, (0, 0), upper,
buf.get_mut(), parts.get_mut());

View file

@ -301,7 +301,7 @@ pub unsafe fn swap<T>(x: *mut T, y: *mut T) {
// Perform the swap
copy_nonoverlapping(x, tmp.as_mut_ptr(), 1);
copy(y, x, 1); // `x` and `y` may overlap
copy_nonoverlapping(tmp.get_ref(), y, 1);
copy_nonoverlapping(tmp.as_ptr(), y, 1);
}
/// Swaps `count * size_of::<T>()` bytes between the two regions of memory