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Struct std::num::NonZeroU16
pub struct NonZeroU16(/* private fields */);
An integer that is known not to equal zero.
This enables some memory layout optimization. For example, Option<NonZeroU16>
is the same size as u16
:
use std::mem::size_of;
assert_eq!(size_of::<Option<core::num::NonZeroU16>>(), size_of::<u16>());
Layout
NonZeroU16
is guaranteed to have the same layout and bit validity as u16
with the exception that 0
is not a valid instance. Option<NonZeroU16>
is guaranteed to be compatible with u16
, including in FFI.
Thanks to the null pointer optimization, NonZeroU16
and Option<NonZeroU16>
are guaranteed to have the same size and alignment:
use std::num::NonZeroU16;
assert_eq!(size_of::<NonZeroU16>(), size_of::<Option<NonZeroU16>>());
assert_eq!(align_of::<NonZeroU16>(), align_of::<Option<NonZeroU16>>());
Implementations
impl NonZeroU16
pub const unsafe fn new_unchecked(n: u16) -> NonZeroU16
Creates a non-zero without checking whether the value is non-zero. This results in undefined behaviour if the value is zero.
Safety
The value must not be zero.
pub const fn new(n: u16) -> Option<NonZeroU16>
Creates a non-zero if the given value is not zero.
pub const fn get(self) -> u16
Returns the value as a primitive type.
impl NonZeroU16
pub const fn leading_zeros(self) -> u32
Returns the number of leading zeros in the binary representation of self
.
On many architectures, this function can perform better than leading_zeros()
on the underlying integer type, as special handling of zero can be avoided.
Examples
Basic usage:
let n = std::num::NonZeroU16::new(u16::MAX).unwrap();
assert_eq!(n.leading_zeros(), 0);
pub const fn trailing_zeros(self) -> u32
Returns the number of trailing zeros in the binary representation of self
.
On many architectures, this function can perform better than trailing_zeros()
on the underlying integer type, as special handling of zero can be avoided.
Examples
Basic usage:
let n = std::num::NonZeroU16::new(0b0101000).unwrap();
assert_eq!(n.trailing_zeros(), 3);
impl NonZeroU16
pub const fn checked_add(self, other: u16) -> Option<NonZeroU16>
Adds an unsigned integer to a non-zero value. Checks for overflow and returns None
on overflow. As a consequence, the result cannot wrap to zero.
Examples
let one = NonZeroU16::new(1)?;
let two = NonZeroU16::new(2)?;
let max = NonZeroU16::new(u16::MAX)?;
assert_eq!(Some(two), one.checked_add(1));
assert_eq!(None, max.checked_add(1));
pub const fn saturating_add(self, other: u16) -> NonZeroU16
Adds an unsigned integer to a non-zero value. Return NonZeroU16::MAX
on overflow.
Examples
let one = NonZeroU16::new(1)?;
let two = NonZeroU16::new(2)?;
let max = NonZeroU16::new(u16::MAX)?;
assert_eq!(two, one.saturating_add(1));
assert_eq!(max, max.saturating_add(1));
pub const unsafe fn unchecked_add(self, other: u16) -> NonZeroU16
nonzero_ops
#84186)
Adds an unsigned integer to a non-zero value, assuming overflow cannot occur. Overflow is unchecked, and it is undefined behaviour to overflow even if the result would wrap to a non-zero value. The behaviour is undefined as soon as self + rhs > u16::MAX
.
Examples
#![feature(nonzero_ops)]
let one = NonZeroU16::new(1)?;
let two = NonZeroU16::new(2)?;
assert_eq!(two, unsafe { one.unchecked_add(1) });
pub const fn checked_next_power_of_two(self) -> Option<NonZeroU16>
Returns the smallest power of two greater than or equal to n. Checks for overflow and returns None
if the next power of two is greater than the type’s maximum value. As a consequence, the result cannot wrap to zero.
Examples
let two = NonZeroU16::new(2)?;
let three = NonZeroU16::new(3)?;
let four = NonZeroU16::new(4)?;
let max = NonZeroU16::new(u16::MAX)?;
assert_eq!(Some(two), two.checked_next_power_of_two() );
assert_eq!(Some(four), three.checked_next_power_of_two() );
assert_eq!(None, max.checked_next_power_of_two() );
pub const fn ilog2(self) -> u32
Returns the base 2 logarithm of the number, rounded down.
This is the same operation as u16::ilog2
, except that it has no failure cases to worry about since this value can never be zero.
Examples
assert_eq!(NonZeroU16::new(7).unwrap().ilog2(), 2);
assert_eq!(NonZeroU16::new(8).unwrap().ilog2(), 3);
assert_eq!(NonZeroU16::new(9).unwrap().ilog2(), 3);
pub const fn ilog10(self) -> u32
Returns the base 10 logarithm of the number, rounded down.
This is the same operation as u16::ilog10
, except that it has no failure cases to worry about since this value can never be zero.
Examples
assert_eq!(NonZeroU16::new(99).unwrap().ilog10(), 1);
assert_eq!(NonZeroU16::new(100).unwrap().ilog10(), 2);
assert_eq!(NonZeroU16::new(101).unwrap().ilog10(), 2);
pub fn midpoint(self, rhs: NonZeroU16) -> NonZeroU16
num_midpoint
#110840)
Calculates the middle point of self
and rhs
.
midpoint(a, b)
is (a + b) >> 1
as if it were performed in a sufficiently-large signed integral type. This implies that the result is always rounded towards negative infinity and that no overflow will ever occur.
Examples
#![feature(num_midpoint)]
let one = NonZeroU16::new(1)?;
let two = NonZeroU16::new(2)?;
let four = NonZeroU16::new(4)?;
assert_eq!(one.midpoint(four), two);
assert_eq!(four.midpoint(one), two);
impl NonZeroU16
pub const fn checked_mul(self, other: NonZeroU16) -> Option<NonZeroU16>
Multiplies two non-zero integers together. Checks for overflow and returns None
on overflow. As a consequence, the result cannot wrap to zero.
Examples
let two = NonZeroU16::new(2)?;
let four = NonZeroU16::new(4)?;
let max = NonZeroU16::new(u16::MAX)?;
assert_eq!(Some(four), two.checked_mul(two));
assert_eq!(None, max.checked_mul(two));
pub const fn saturating_mul(self, other: NonZeroU16) -> NonZeroU16
Multiplies two non-zero integers together. Return NonZeroU16::MAX
on overflow.
Examples
let two = NonZeroU16::new(2)?;
let four = NonZeroU16::new(4)?;
let max = NonZeroU16::new(u16::MAX)?;
assert_eq!(four, two.saturating_mul(two));
assert_eq!(max, four.saturating_mul(max));
pub const unsafe fn unchecked_mul(self, other: NonZeroU16) -> NonZeroU16
nonzero_ops
#84186)
Multiplies two non-zero integers together, assuming overflow cannot occur. Overflow is unchecked, and it is undefined behaviour to overflow even if the result would wrap to a non-zero value. The behaviour is undefined as soon as self * rhs > u16::MAX
.
Examples
#![feature(nonzero_ops)]
let two = NonZeroU16::new(2)?;
let four = NonZeroU16::new(4)?;
assert_eq!(four, unsafe { two.unchecked_mul(two) });
pub const fn checked_pow(self, other: u32) -> Option<NonZeroU16>
Raises non-zero value to an integer power. Checks for overflow and returns None
on overflow. As a consequence, the result cannot wrap to zero.
Examples
let three = NonZeroU16::new(3)?;
let twenty_seven = NonZeroU16::new(27)?;
let half_max = NonZeroU16::new(u16::MAX / 2)?;
assert_eq!(Some(twenty_seven), three.checked_pow(3));
assert_eq!(None, half_max.checked_pow(3));
pub const fn saturating_pow(self, other: u32) -> NonZeroU16
Raise non-zero value to an integer power. Return NonZeroU16::MAX
on overflow.
Examples
let three = NonZeroU16::new(3)?;
let twenty_seven = NonZeroU16::new(27)?;
let max = NonZeroU16::new(u16::MAX)?;
assert_eq!(twenty_seven, three.saturating_pow(3));
assert_eq!(max, max.saturating_pow(3));
impl NonZeroU16
pub const fn is_power_of_two(self) -> bool
Returns true
if and only if self == (1 << k)
for some k
.
On many architectures, this function can perform better than is_power_of_two()
on the underlying integer type, as special handling of zero can be avoided.
Examples
Basic usage:
let eight = std::num::NonZeroU16::new(8).unwrap();
assert!(eight.is_power_of_two());
let ten = std::num::NonZeroU16::new(10).unwrap();
assert!(!ten.is_power_of_two());
impl NonZeroU16
pub const MIN: NonZeroU16 = _
The smallest value that can be represented by this non-zero integer type, 1.
Examples
assert_eq!(NonZeroU16::MIN.get(), 1u16);
pub const MAX: NonZeroU16 = _
The largest value that can be represented by this non-zero integer type, equal to u16::MAX
.
Examples
assert_eq!(NonZeroU16::MAX.get(), u16::MAX);
impl NonZeroU16
Trait Implementations
impl Binary for NonZeroU16
fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>
impl BitOr<NonZeroU16> for u16
type Output = NonZeroU16
|
operator.
fn bitor(self, rhs: NonZeroU16) -> <u16 as BitOr<NonZeroU16>>::Output
|
operation. Read more
impl BitOr<u16> for NonZeroU16
type Output = NonZeroU16
|
operator.
fn bitor(self, rhs: u16) -> <NonZeroU16 as BitOr<u16>>::Output
|
operation. Read more
impl BitOr for NonZeroU16
type Output = NonZeroU16
|
operator.
fn bitor(self, rhs: NonZeroU16) -> <NonZeroU16 as BitOr>::Output
|
operation. Read more
impl BitOrAssign<u16> for NonZeroU16
impl BitOrAssign for NonZeroU16
impl Clone for NonZeroU16
fn clone(&self) -> NonZeroU16
fn clone_from(&mut self, source: &Self)
source
. Read more
impl Debug for NonZeroU16
fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>
impl Display for NonZeroU16
fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>
impl Div<NonZeroU16> for u16
fn div(self, other: NonZeroU16) -> u16
This operation rounds towards zero, truncating any fractional part of the exact result, and cannot panic.
type Output = u16
/
operator.
impl From<NonZeroU16> for NonZeroI128
fn from(small: NonZeroU16) -> NonZeroI128
Converts NonZeroU16
to NonZeroI128
losslessly.
impl From<NonZeroU16> for NonZeroI32
fn from(small: NonZeroU16) -> NonZeroI32
Converts NonZeroU16
to NonZeroI32
losslessly.
impl From<NonZeroU16> for NonZeroI64
fn from(small: NonZeroU16) -> NonZeroI64
Converts NonZeroU16
to NonZeroI64
losslessly.
impl From<NonZeroU16> for NonZeroU128
fn from(small: NonZeroU16) -> NonZeroU128
Converts NonZeroU16
to NonZeroU128
losslessly.
impl From<NonZeroU16> for NonZeroU32
fn from(small: NonZeroU16) -> NonZeroU32
Converts NonZeroU16
to NonZeroU32
losslessly.
impl From<NonZeroU16> for NonZeroU64
fn from(small: NonZeroU16) -> NonZeroU64
Converts NonZeroU16
to NonZeroU64
losslessly.
impl From<NonZeroU16> for NonZeroUsize
fn from(small: NonZeroU16) -> NonZeroUsize
Converts NonZeroU16
to NonZeroUsize
losslessly.
impl From<NonZeroU16> for u16
fn from(nonzero: NonZeroU16) -> u16
Converts a NonZeroU16
into an u16
impl From<NonZeroU8> for NonZeroU16
fn from(small: NonZeroU8) -> NonZeroU16
Converts NonZeroU8
to NonZeroU16
losslessly.
impl FromStr for NonZeroU16
type Err = ParseIntError
fn from_str(src: &str) -> Result<NonZeroU16, <NonZeroU16 as FromStr>::Err>
s
to return a value of this type. Read more
impl Hash for NonZeroU16
fn hash<__H>(&self, state: &mut __H)
where
__H: Hasher,
fn hash_slice<H>(data: &[Self], state: &mut H)
where
H: Hasher,
Self: Sized,
impl LowerHex for NonZeroU16
fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>
impl Octal for NonZeroU16
fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>
impl Ord for NonZeroU16
fn cmp(&self, other: &NonZeroU16) -> Ordering
fn max(self, other: Self) -> Self
where
Self: Sized,
fn min(self, other: Self) -> Self
where
Self: Sized,
fn clamp(self, min: Self, max: Self) -> Self
where
Self: Sized + PartialOrd,
impl PartialEq for NonZeroU16
fn eq(&self, other: &NonZeroU16) -> bool
self
and other
values to be equal, and is used by ==
.
fn ne(&self, other: &Rhs) -> bool
!=
. The default implementation is almost always sufficient, and should not be overridden without very good reason.
impl PartialOrd for NonZeroU16
fn partial_cmp(&self, other: &NonZeroU16) -> Option<Ordering>
fn lt(&self, other: &Rhs) -> bool
fn le(&self, other: &Rhs) -> bool
self
and other
) and is used by the <=
operator. Read more
fn gt(&self, other: &Rhs) -> bool
fn ge(&self, other: &Rhs) -> bool
self
and other
) and is used by the >=
operator. Read more
impl Rem<NonZeroU16> for u16
fn rem(self, other: NonZeroU16) -> u16
This operation satisfies n % d == n - (n / d) * d
, and cannot panic.
type Output = u16
%
operator.
impl TryFrom<NonZeroI128> for NonZeroU16
fn try_from(
value: NonZeroI128
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroI128>>::Error>
Attempts to convert NonZeroI128
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroI16> for NonZeroU16
fn try_from(
value: NonZeroI16
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroI16>>::Error>
Attempts to convert NonZeroI16
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroI32> for NonZeroU16
fn try_from(
value: NonZeroI32
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroI32>>::Error>
Attempts to convert NonZeroI32
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroI64> for NonZeroU16
fn try_from(
value: NonZeroI64
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroI64>>::Error>
Attempts to convert NonZeroI64
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroI8> for NonZeroU16
fn try_from(
value: NonZeroI8
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroI8>>::Error>
Attempts to convert NonZeroI8
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroIsize> for NonZeroU16
fn try_from(
value: NonZeroIsize
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroIsize>>::Error>
Attempts to convert NonZeroIsize
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroU128> for NonZeroU16
fn try_from(
value: NonZeroU128
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroU128>>::Error>
Attempts to convert NonZeroU128
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroU16> for NonZeroI16
fn try_from(
value: NonZeroU16
) -> Result<NonZeroI16, <NonZeroI16 as TryFrom<NonZeroU16>>::Error>
Attempts to convert NonZeroU16
to NonZeroI16
.
type Error = TryFromIntError
impl TryFrom<NonZeroU16> for NonZeroI8
fn try_from(
value: NonZeroU16
) -> Result<NonZeroI8, <NonZeroI8 as TryFrom<NonZeroU16>>::Error>
Attempts to convert NonZeroU16
to NonZeroI8
.
type Error = TryFromIntError
impl TryFrom<NonZeroU16> for NonZeroIsize
fn try_from(
value: NonZeroU16
) -> Result<NonZeroIsize, <NonZeroIsize as TryFrom<NonZeroU16>>::Error>
Attempts to convert NonZeroU16
to NonZeroIsize
.
type Error = TryFromIntError
impl TryFrom<NonZeroU16> for NonZeroU8
fn try_from(
value: NonZeroU16
) -> Result<NonZeroU8, <NonZeroU8 as TryFrom<NonZeroU16>>::Error>
Attempts to convert NonZeroU16
to NonZeroU8
.
type Error = TryFromIntError
impl TryFrom<NonZeroU32> for NonZeroU16
fn try_from(
value: NonZeroU32
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroU32>>::Error>
Attempts to convert NonZeroU32
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroU64> for NonZeroU16
fn try_from(
value: NonZeroU64
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroU64>>::Error>
Attempts to convert NonZeroU64
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<NonZeroUsize> for NonZeroU16
fn try_from(
value: NonZeroUsize
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<NonZeroUsize>>::Error>
Attempts to convert NonZeroUsize
to NonZeroU16
.
type Error = TryFromIntError
impl TryFrom<u16> for NonZeroU16
fn try_from(
value: u16
) -> Result<NonZeroU16, <NonZeroU16 as TryFrom<u16>>::Error>
Attempts to convert u16
to NonZeroU16
.
type Error = TryFromIntError
impl UpperHex for NonZeroU16
fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>
impl Copy for NonZeroU16
impl Eq for NonZeroU16
impl StructuralEq for NonZeroU16
impl StructuralPartialEq for NonZeroU16
Auto Trait Implementations
impl RefUnwindSafe for NonZeroU16
impl Send for NonZeroU16
impl Sync for NonZeroU16
impl Unpin for NonZeroU16
impl UnwindSafe for NonZeroU16
Blanket Implementations
impl<T> Any for T
where
T: 'static + ?Sized,
impl<T> Borrow<T> for T
where
T: ?Sized,
impl<T> BorrowMut<T> for T
where
T: ?Sized,
impl<T> From<T> for T
fn from(t: T) -> T
Returns the argument unchanged.
impl<T, U> Into<U> for T
where
U: From<T>,
fn into(self) -> U
Calls U::from(self)
.
That is, this conversion is whatever the implementation of From<T> for U
chooses to do.
impl<T> ToOwned for T
where
T: Clone,
type Owned = T
fn to_owned(&self) -> T
fn clone_into(&self, target: &mut T)
impl<T> ToString for T
where
T: Display + ?Sized,
impl<T, U> TryFrom<U> for T
where
U: Into<T>,
type Error = Infallible
fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>
impl<T, U> TryInto<U> for T
where
U: TryFrom<T>,
type Error = <U as TryFrom<T>>::Error
fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>
© 2010 The Rust Project Developers
Licensed under the Apache License, Version 2.0 or the MIT license, at your option.
https://doc.rust-lang.org/std/num/struct.NonZeroU16.html