Primitive Type u321.0.0 [−]
The 32-bit unsigned integer type.
Methods
impl u32
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impl u32
pub const fn min_value() -> u32
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pub const fn min_value() -> u32
Returns the smallest value that can be represented by this integer type.
Examples
Basic usage:
assert_eq!(u32::min_value(), 0);Run
pub const fn max_value() -> u32
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pub const fn max_value() -> u32
Returns the largest value that can be represented by this integer type.
Examples
Basic usage:
assert_eq!(u32::max_value(), 4294967295);Run
pub fn from_str_radix(src: &str, radix: u32) -> Result<u32, ParseIntError>
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pub fn from_str_radix(src: &str, radix: u32) -> Result<u32, ParseIntError>
Converts a string slice in a given base to an integer.
The string is expected to be an optional +
sign
followed by digits.
Leading and trailing whitespace represent an error.
Digits are a subset of these characters, depending on radix
:
0-9
a-z
A-Z
Panics
This function panics if radix
is not in the range from 2 to 36.
Examples
Basic usage:
assert_eq!(u32::from_str_radix("A", 16), Ok(10));Run
pub fn count_ones(self) -> u32
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pub fn count_ones(self) -> u32
Returns the number of ones in the binary representation of self
.
Examples
Basic usage:
let n = 0b01001100u32; assert_eq!(n.count_ones(), 3);Run
pub fn count_zeros(self) -> u32
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pub fn count_zeros(self) -> u32
Returns the number of zeros in the binary representation of self
.
Examples
Basic usage:
assert_eq!(u32::max_value().count_zeros(), 0);Run
pub fn leading_zeros(self) -> u32
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pub fn leading_zeros(self) -> u32
Returns the number of leading zeros in the binary representation of self
.
Examples
Basic usage:
let n = u32::max_value() >> 2; assert_eq!(n.leading_zeros(), 2);Run
pub fn trailing_zeros(self) -> u32
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pub fn trailing_zeros(self) -> u32
Returns the number of trailing zeros in the binary representation
of self
.
Examples
Basic usage:
let n = 0b0101000u32; assert_eq!(n.trailing_zeros(), 3);Run
pub fn rotate_left(self, n: u32) -> u32
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pub fn rotate_left(self, n: u32) -> u32
Shifts the bits to the left by a specified amount, n
,
wrapping the truncated bits to the end of the resulting integer.
Please note this isn't the same operation as <<
!
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why u64
is used here.
let n = 0x0123456789ABCDEFu64; let m = 0x3456789ABCDEF012u64; assert_eq!(n.rotate_left(12), m);Run
pub fn rotate_right(self, n: u32) -> u32
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pub fn rotate_right(self, n: u32) -> u32
Shifts the bits to the right by a specified amount, n
,
wrapping the truncated bits to the beginning of the resulting
integer.
Please note this isn't the same operation as >>
!
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why u64
is used here.
let n = 0x0123456789ABCDEFu64; let m = 0xDEF0123456789ABCu64; assert_eq!(n.rotate_right(12), m);Run
pub fn swap_bytes(self) -> u32
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pub fn swap_bytes(self) -> u32
Reverses the byte order of the integer.
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why u16
is used here.
let n: u16 = 0b0000000_01010101; assert_eq!(n, 85); let m = n.swap_bytes(); assert_eq!(m, 0b01010101_00000000); assert_eq!(m, 21760);Run
pub fn reverse_bits(self) -> u32
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pub fn reverse_bits(self) -> u32
Reverses the bit pattern of the integer.
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why u16
is used here.
#![feature(reverse_bits)] let n: u16 = 0b0000000_01010101; assert_eq!(n, 85); let m = n.reverse_bits(); assert_eq!(m, 0b10101010_00000000); assert_eq!(m, 43520);Run
pub fn from_be(x: u32) -> u32
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pub fn from_be(x: u32) -> u32
Converts an integer from big endian to the target's endianness.
On big endian this is a no-op. On little endian the bytes are swapped.
Examples
Basic usage:
let n = 0x1Au32; if cfg!(target_endian = "big") { assert_eq!(u32::from_be(n), n) } else { assert_eq!(u32::from_be(n), n.swap_bytes()) }Run
pub fn from_le(x: u32) -> u32
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pub fn from_le(x: u32) -> u32
Converts an integer from little endian to the target's endianness.
On little endian this is a no-op. On big endian the bytes are swapped.
Examples
Basic usage:
let n = 0x1Au32; if cfg!(target_endian = "little") { assert_eq!(u32::from_le(n), n) } else { assert_eq!(u32::from_le(n), n.swap_bytes()) }Run
pub fn to_be(self) -> u32
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pub fn to_be(self) -> u32
Converts self
to big endian from the target's endianness.
On big endian this is a no-op. On little endian the bytes are swapped.
Examples
Basic usage:
let n = 0x1Au32; if cfg!(target_endian = "big") { assert_eq!(n.to_be(), n) } else { assert_eq!(n.to_be(), n.swap_bytes()) }Run
pub fn to_le(self) -> u32
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pub fn to_le(self) -> u32
Converts self
to little endian from the target's endianness.
On little endian this is a no-op. On big endian the bytes are swapped.
Examples
Basic usage:
let n = 0x1Au32; if cfg!(target_endian = "little") { assert_eq!(n.to_le(), n) } else { assert_eq!(n.to_le(), n.swap_bytes()) }Run
pub fn checked_add(self, rhs: u32) -> Option<u32>
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pub fn checked_add(self, rhs: u32) -> Option<u32>
Checked integer addition. Computes self + rhs
, returning None
if overflow occurred.
Examples
Basic usage:
assert_eq!((u32::max_value() - 2).checked_add(1), Some(u32::max_value() - 1)); assert_eq!((u32::max_value() - 2).checked_add(3),None);Run
pub fn checked_sub(self, rhs: u32) -> Option<u32>
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pub fn checked_sub(self, rhs: u32) -> Option<u32>
Checked integer subtraction. Computes self - rhs
, returning
None
if overflow occurred.
Examples
Basic usage:
assert_eq!(1u32.checked_sub(1), Some(0)); assert_eq!(0u32.checked_sub(1), None);Run
pub fn checked_mul(self, rhs: u32) -> Option<u32>
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pub fn checked_mul(self, rhs: u32) -> Option<u32>
Checked integer multiplication. Computes self * rhs
, returning
None
if overflow occurred.
Examples
Basic usage:
assert_eq!(5u32.checked_mul(1), Some(5)); assert_eq!(u32::max_value().checked_mul(2), None);Run
pub fn checked_div(self, rhs: u32) -> Option<u32>
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pub fn checked_div(self, rhs: u32) -> Option<u32>
Checked integer division. Computes self / rhs
, returning None
if rhs == 0
.
Examples
Basic usage:
assert_eq!(128u32.checked_div(2), Some(64)); assert_eq!(1u32.checked_div(0), None);Run
pub fn checked_rem(self, rhs: u32) -> Option<u32>
1.7.0[src]
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pub fn checked_rem(self, rhs: u32) -> Option<u32>
Checked integer remainder. Computes self % rhs
, returning None
if rhs == 0
.
Examples
Basic usage:
assert_eq!(5u32.checked_rem(2), Some(1)); assert_eq!(5u32.checked_rem(0), None);Run
pub fn checked_neg(self) -> Option<u32>
1.7.0[src]
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pub fn checked_neg(self) -> Option<u32>
Checked negation. Computes -self
, returning None
unless self == 0
.
Note that negating any positive integer will overflow.
Examples
Basic usage:
assert_eq!(0u32.checked_neg(), Some(0)); assert_eq!(1u32.checked_neg(), None);Run
pub fn checked_shl(self, rhs: u32) -> Option<u32>
1.7.0[src]
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pub fn checked_shl(self, rhs: u32) -> Option<u32>
Checked shift left. Computes self << rhs
, returning None
if rhs
is larger than or equal to the number of bits in self
.
Examples
Basic usage:
assert_eq!(0x1u32.checked_shl(4), Some(0x10)); assert_eq!(0x10u32.checked_shl(129), None);Run
pub fn checked_shr(self, rhs: u32) -> Option<u32>
1.7.0[src]
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pub fn checked_shr(self, rhs: u32) -> Option<u32>
Checked shift right. Computes self >> rhs
, returning None
if rhs
is larger than or equal to the number of bits in self
.
Examples
Basic usage:
assert_eq!(0x10u32.checked_shr(4), Some(0x1)); assert_eq!(0x10u32.checked_shr(129), None);Run
pub fn checked_pow(self, exp: u32) -> Option<u32>
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pub fn checked_pow(self, exp: u32) -> Option<u32>
Checked exponentiation. Computes self.pow(exp)
, returning None
if
overflow occurred.
Examples
Basic usage:
#![feature(no_panic_pow)] assert_eq!(2u32.checked_pow(5), Some(32)); assert_eq!(u32::max_value().checked_pow(2), None);Run
pub fn saturating_add(self, rhs: u32) -> u32
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pub fn saturating_add(self, rhs: u32) -> u32
Saturating integer addition. Computes self + rhs
, saturating at
the numeric bounds instead of overflowing.
Examples
Basic usage:
assert_eq!(100u32.saturating_add(1), 101); assert_eq!(200u8.saturating_add(127), 255);Run
pub fn saturating_sub(self, rhs: u32) -> u32
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pub fn saturating_sub(self, rhs: u32) -> u32
Saturating integer subtraction. Computes self - rhs
, saturating
at the numeric bounds instead of overflowing.
Examples
Basic usage:
assert_eq!(100u32.saturating_sub(27), 73); assert_eq!(13u32.saturating_sub(127), 0);Run
pub fn saturating_mul(self, rhs: u32) -> u32
1.7.0[src]
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pub fn saturating_mul(self, rhs: u32) -> u32
Saturating integer multiplication. Computes self * rhs
,
saturating at the numeric bounds instead of overflowing.
Examples
Basic usage:
use std::u32; assert_eq!(2u32.saturating_mul(10), 20); assert_eq!((u32::MAX).saturating_mul(10), u32::MAX);Run
pub fn saturating_pow(self, exp: u32) -> u32
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pub fn saturating_pow(self, exp: u32) -> u32
Saturating integer exponentiation. Computes self.pow(exp)
,
saturating at the numeric bounds instead of overflowing.
Examples
Basic usage:
#![feature(no_panic_pow)] use std::u32; assert_eq!(4u32.saturating_pow(3), 64); assert_eq!(u32::MAX.saturating_pow(2), u32::MAX);Run
pub fn wrapping_add(self, rhs: u32) -> u32
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pub fn wrapping_add(self, rhs: u32) -> u32
Wrapping (modular) addition. Computes self + rhs
,
wrapping around at the boundary of the type.
Examples
Basic usage:
assert_eq!(200u32.wrapping_add(55), 255); assert_eq!(200u32.wrapping_add(u32::max_value()), 199);Run
pub fn wrapping_sub(self, rhs: u32) -> u32
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pub fn wrapping_sub(self, rhs: u32) -> u32
Wrapping (modular) subtraction. Computes self - rhs
,
wrapping around at the boundary of the type.
Examples
Basic usage:
assert_eq!(100u32.wrapping_sub(100), 0); assert_eq!(100u32.wrapping_sub(u32::max_value()), 101);Run
pub fn wrapping_mul(self, rhs: u32) -> u32
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pub fn wrapping_mul(self, rhs: u32) -> u32
Wrapping (modular) multiplication. Computes self * rhs
, wrapping around at the boundary of the type.
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why u8
is used here.
assert_eq!(10u8.wrapping_mul(12), 120); assert_eq!(25u8.wrapping_mul(12), 44);Run
pub fn wrapping_div(self, rhs: u32) -> u32
1.2.0[src]
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pub fn wrapping_div(self, rhs: u32) -> u32
Wrapping (modular) division. Computes self / rhs
.
Wrapped division on unsigned types is just normal division.
There's no way wrapping could ever happen.
This function exists, so that all operations
are accounted for in the wrapping operations.
Examples
Basic usage:
assert_eq!(100u32.wrapping_div(10), 10);Run
pub fn wrapping_rem(self, rhs: u32) -> u32
1.2.0[src]
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pub fn wrapping_rem(self, rhs: u32) -> u32
Wrapping (modular) remainder. Computes self % rhs
.
Wrapped remainder calculation on unsigned types is
just the regular remainder calculation.
There's no way wrapping could ever happen.
This function exists, so that all operations
are accounted for in the wrapping operations.
Examples
Basic usage:
assert_eq!(100u32.wrapping_rem(10), 0);Run
pub fn wrapping_neg(self) -> u32
1.2.0[src]
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pub fn wrapping_neg(self) -> u32
Wrapping (modular) negation. Computes -self
,
wrapping around at the boundary of the type.
Since unsigned types do not have negative equivalents
all applications of this function will wrap (except for -0
).
For values smaller than the corresponding signed type's maximum
the result is the same as casting the corresponding signed value.
Any larger values are equivalent to MAX + 1 - (val - MAX - 1)
where
MAX
is the corresponding signed type's maximum.
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why i8
is used here.
assert_eq!(100i8.wrapping_neg(), -100); assert_eq!((-128i8).wrapping_neg(), -128);Run
pub fn wrapping_shl(self, rhs: u32) -> u32
1.2.0[src]
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pub fn wrapping_shl(self, rhs: u32) -> u32
Panic-free bitwise shift-left; yields self << mask(rhs)
,
where mask
removes any high-order bits of rhs
that
would cause the shift to exceed the bitwidth of the type.
Note that this is not the same as a rotate-left; the
RHS of a wrapping shift-left is restricted to the range
of the type, rather than the bits shifted out of the LHS
being returned to the other end. The primitive integer
types all implement a rotate_left
function, which may
be what you want instead.
Examples
Basic usage:
assert_eq!(1u32.wrapping_shl(7), 128); assert_eq!(1u32.wrapping_shl(128), 1);Run
pub fn wrapping_shr(self, rhs: u32) -> u32
1.2.0[src]
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pub fn wrapping_shr(self, rhs: u32) -> u32
Panic-free bitwise shift-right; yields self >> mask(rhs)
,
where mask
removes any high-order bits of rhs
that
would cause the shift to exceed the bitwidth of the type.
Note that this is not the same as a rotate-right; the
RHS of a wrapping shift-right is restricted to the range
of the type, rather than the bits shifted out of the LHS
being returned to the other end. The primitive integer
types all implement a rotate_right
function, which may
be what you want instead.
Examples
Basic usage:
assert_eq!(128u32.wrapping_shr(7), 1); assert_eq!(128u32.wrapping_shr(128), 128);Run
pub fn wrapping_pow(self, exp: u32) -> u32
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pub fn wrapping_pow(self, exp: u32) -> u32
Wrapping (modular) exponentiation. Computes self.pow(exp)
,
wrapping around at the boundary of the type.
Examples
Basic usage:
#![feature(no_panic_pow)] assert_eq!(3u32.wrapping_pow(5), 243); assert_eq!(3u8.wrapping_pow(6), 217);Run
pub fn overflowing_add(self, rhs: u32) -> (u32, bool)
1.7.0[src]
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pub fn overflowing_add(self, rhs: u32) -> (u32, bool)
Calculates self
+ rhs
Returns a tuple of the addition along with a boolean indicating whether an arithmetic overflow would occur. If an overflow would have occurred then the wrapped value is returned.
Examples
Basic usage
use std::u32; assert_eq!(5u32.overflowing_add(2), (7, false)); assert_eq!(u32::MAX.overflowing_add(1), (0, true));Run
pub fn overflowing_sub(self, rhs: u32) -> (u32, bool)
1.7.0[src]
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pub fn overflowing_sub(self, rhs: u32) -> (u32, bool)
Calculates self
- rhs
Returns a tuple of the subtraction along with a boolean indicating whether an arithmetic overflow would occur. If an overflow would have occurred then the wrapped value is returned.
Examples
Basic usage
use std::u32; assert_eq!(5u32.overflowing_sub(2), (3, false)); assert_eq!(0u32.overflowing_sub(1), (u32::MAX, true));Run
pub fn overflowing_mul(self, rhs: u32) -> (u32, bool)
1.7.0[src]
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pub fn overflowing_mul(self, rhs: u32) -> (u32, bool)
Calculates the multiplication of self
and rhs
.
Returns a tuple of the multiplication along with a boolean indicating whether an arithmetic overflow would occur. If an overflow would have occurred then the wrapped value is returned.
Examples
Basic usage:
Please note that this example is shared between integer types.
Which explains why u32
is used here.
assert_eq!(5u32.overflowing_mul(2), (10, false)); assert_eq!(1_000_000_000u32.overflowing_mul(10), (1410065408, true));Run
pub fn overflowing_div(self, rhs: u32) -> (u32, bool)
1.7.0[src]
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pub fn overflowing_div(self, rhs: u32) -> (u32, bool)
Calculates the divisor when self
is divided by rhs
.
Returns a tuple of the divisor along with a boolean indicating
whether an arithmetic overflow would occur. Note that for unsigned
integers overflow never occurs, so the second value is always
false
.
Panics
This function will panic if rhs
is 0.
Examples
Basic usage
assert_eq!(5u32.overflowing_div(2), (2, false));Run
pub fn overflowing_rem(self, rhs: u32) -> (u32, bool)
1.7.0[src]
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pub fn overflowing_rem(self, rhs: u32) -> (u32, bool)
Calculates the remainder when self
is divided by rhs
.
Returns a tuple of the remainder after dividing along with a boolean
indicating whether an arithmetic overflow would occur. Note that for
unsigned integers overflow never occurs, so the second value is
always false
.
Panics
This function will panic if rhs
is 0.
Examples
Basic usage
assert_eq!(5u32.overflowing_rem(2), (1, false));Run
pub fn overflowing_neg(self) -> (u32, bool)
1.7.0[src]
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pub fn overflowing_neg(self) -> (u32, bool)
Negates self in an overflowing fashion.
Returns !self + 1
using wrapping operations to return the value
that represents the negation of this unsigned value. Note that for
positive unsigned values overflow always occurs, but negating 0 does
not overflow.
Examples
Basic usage
assert_eq!(0u32.overflowing_neg(), (0, false)); assert_eq!(2u32.overflowing_neg(), (-2i32 as u32, true));Run
pub fn overflowing_shl(self, rhs: u32) -> (u32, bool)
1.7.0[src]
[−]
pub fn overflowing_shl(self, rhs: u32) -> (u32, bool)
Shifts self left by rhs
bits.
Returns a tuple of the shifted version of self along with a boolean indicating whether the shift value was larger than or equal to the number of bits. If the shift value is too large, then value is masked (N-1) where N is the number of bits, and this value is then used to perform the shift.
Examples
Basic usage
assert_eq!(0x1u32.overflowing_shl(4), (0x10, false)); assert_eq!(0x1u32.overflowing_shl(132), (0x10, true));Run
pub fn overflowing_shr(self, rhs: u32) -> (u32, bool)
1.7.0[src]
[−]
pub fn overflowing_shr(self, rhs: u32) -> (u32, bool)
Shifts self right by rhs
bits.
Returns a tuple of the shifted version of self along with a boolean indicating whether the shift value was larger than or equal to the number of bits. If the shift value is too large, then value is masked (N-1) where N is the number of bits, and this value is then used to perform the shift.
Examples
Basic usage
assert_eq!(0x10u32.overflowing_shr(4), (0x1, false)); assert_eq!(0x10u32.overflowing_shr(132), (0x1, true));Run
pub fn overflowing_pow(self, exp: u32) -> (u32, bool)
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pub fn overflowing_pow(self, exp: u32) -> (u32, bool)
Raises self to the power of exp
, using exponentiation by squaring.
Returns a tuple of the exponentiation along with a bool indicating whether an overflow happened.
Examples
Basic usage:
#![feature(no_panic_pow)] assert_eq!(3u32.overflowing_pow(5), (243, false)); assert_eq!(3u8.overflowing_pow(6), (217, true));Run
pub fn pow(self, exp: u32) -> u32
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[−]
pub fn pow(self, exp: u32) -> u32
Raises self to the power of exp
, using exponentiation by squaring.
Examples
Basic usage:
assert_eq!(2u32.pow(5), 32);Run
pub fn is_power_of_two(self) -> bool
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pub fn is_power_of_two(self) -> bool
Returns true
if and only if self == 2^k
for some k
.
Examples
Basic usage:
assert!(16u32.is_power_of_two()); assert!(!10u32.is_power_of_two());Run
pub fn next_power_of_two(self) -> u32
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pub fn next_power_of_two(self) -> u32
Returns the smallest power of two greater than or equal to self
.
When return value overflows (i.e. self > (1 << (N-1))
for type
uN
), it panics in debug mode and return value is wrapped to 0 in
release mode (the only situation in which method can return 0).
Examples
Basic usage:
assert_eq!(2u32.next_power_of_two(), 2); assert_eq!(3u32.next_power_of_two(), 4);Run
pub fn checked_next_power_of_two(self) -> Option<u32>
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[−]
pub fn checked_next_power_of_two(self) -> Option<u32>
Returns the smallest power of two greater than or equal to n
. If
the next power of two is greater than the type's maximum value,
None
is returned, otherwise the power of two is wrapped in Some
.
Examples
Basic usage:
assert_eq!(2u32.checked_next_power_of_two(), Some(2)); assert_eq!(3u32.checked_next_power_of_two(), Some(4)); assert_eq!(u32::max_value().checked_next_power_of_two(), None);Run
Trait Implementations
impl<'a> BitAnd<u32> for &'a u32
[src]
[+]
impl<'a> BitAnd<u32> for &'a u32
impl<'a> BitAnd<&'a u32> for u32
[src]
[+]
impl<'a> BitAnd<&'a u32> for u32
impl BitAnd<u32> for u32
[src]
[+]
impl BitAnd<u32> for u32
impl<'a, 'b> BitAnd<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> BitAnd<&'a u32> for &'b u32
impl ShlAssign<u8> for u32
1.8.0[src]
[+]
impl ShlAssign<u8> for u32
impl ShlAssign<u64> for u32
1.8.0[src]
[+]
impl ShlAssign<u64> for u32
impl ShlAssign<i32> for u32
1.8.0[src]
[+]
impl ShlAssign<i32> for u32
impl ShlAssign<u16> for u32
1.8.0[src]
[+]
impl ShlAssign<u16> for u32
impl<'a> ShlAssign<&'a i64> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a i64> for u32
impl ShlAssign<i64> for u32
1.8.0[src]
[+]
impl ShlAssign<i64> for u32
impl<'a> ShlAssign<&'a u64> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a u64> for u32
impl<'a> ShlAssign<&'a i128> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a i128> for u32
impl<'a> ShlAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a u32> for u32
impl<'a> ShlAssign<&'a i32> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a i32> for u32
impl<'a> ShlAssign<&'a i8> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a i8> for u32
impl ShlAssign<isize> for u32
1.8.0[src]
[+]
impl ShlAssign<isize> for u32
impl<'a> ShlAssign<&'a u8> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a u8> for u32
impl<'a> ShlAssign<&'a i16> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a i16> for u32
impl ShlAssign<u32> for u32
1.8.0[src]
[+]
impl ShlAssign<u32> for u32
impl ShlAssign<i8> for u32
1.8.0[src]
[+]
impl ShlAssign<i8> for u32
impl<'a> ShlAssign<&'a u16> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a u16> for u32
impl ShlAssign<u128> for u32
1.8.0[src]
[+]
impl ShlAssign<u128> for u32
impl<'a> ShlAssign<&'a u128> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a u128> for u32
impl ShlAssign<i128> for u32
1.8.0[src]
[+]
impl ShlAssign<i128> for u32
impl<'a> ShlAssign<&'a isize> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a isize> for u32
impl ShlAssign<i16> for u32
1.8.0[src]
[+]
impl ShlAssign<i16> for u32
impl ShlAssign<usize> for u32
1.8.0[src]
[+]
impl ShlAssign<usize> for u32
impl<'a> ShlAssign<&'a usize> for u32
1.22.0[src]
[+]
impl<'a> ShlAssign<&'a usize> for u32
impl Binary for u32
[src]
[+]
impl Binary for u32
impl<'a> Div<u32> for &'a u32
[src]
[+]
impl<'a> Div<u32> for &'a u32
impl Div<u32> for u32
[src]
[+]
impl Div<u32> for u32
impl<'a> Div<&'a u32> for u32
[src]
[+]
impl<'a> Div<&'a u32> for u32
impl<'a, 'b> Div<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Div<&'a u32> for &'b u32
impl BitOrAssign<u32> for u32
1.8.0[src]
[+]
impl BitOrAssign<u32> for u32
impl<'a> BitOrAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> BitOrAssign<&'a u32> for u32
impl Debug for u32
[src]
[+]
impl Debug for u32
impl Add<u32> for u32
[src]
[+]
impl Add<u32> for u32
impl<'a> Add<u32> for &'a u32
[src]
[+]
impl<'a> Add<u32> for &'a u32
impl<'a, 'b> Add<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Add<&'a u32> for &'b u32
impl<'a> Add<&'a u32> for u32
[src]
[+]
impl<'a> Add<&'a u32> for u32
impl<'a> Sum<&'a u32> for u32
1.12.0[src]
[+]
impl<'a> Sum<&'a u32> for u32
impl Sum<u32> for u32
1.12.0[src]
[+]
impl Sum<u32> for u32
impl TryFrom<u128> for u32
[src]
[+]
impl TryFrom<u128> for u32
impl TryFrom<i16> for u32
[src]
[+]
impl TryFrom<i16> for u32
impl TryFrom<i64> for u32
[src]
[+]
impl TryFrom<i64> for u32
impl TryFrom<i128> for u32
[src]
[+]
impl TryFrom<i128> for u32
impl TryFrom<i32> for u32
[src]
[+]
impl TryFrom<i32> for u32
impl TryFrom<u64> for u32
[src]
[+]
impl TryFrom<u64> for u32
impl TryFrom<i8> for u32
[src]
[+]
impl TryFrom<i8> for u32
impl TryFrom<isize> for u32
[src]
[+]
impl TryFrom<isize> for u32
impl DivAssign<u32> for u32
1.8.0[src]
[+]
impl DivAssign<u32> for u32
impl<'a> DivAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> DivAssign<&'a u32> for u32
impl SubAssign<u32> for u32
1.8.0[src]
[+]
impl SubAssign<u32> for u32
impl<'a> SubAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> SubAssign<&'a u32> for u32
impl Ord for u32
[src]
[+]
impl Ord for u32
impl<'a> BitXor<&'a u32> for u32
[src]
[+]
impl<'a> BitXor<&'a u32> for u32
impl<'a, 'b> BitXor<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> BitXor<&'a u32> for &'b u32
impl BitXor<u32> for u32
[src]
[+]
impl BitXor<u32> for u32
impl<'a> BitXor<u32> for &'a u32
[src]
[+]
impl<'a> BitXor<u32> for &'a u32
impl Hash for u32
[src]
[+]
impl Hash for u32
impl PartialEq<u32> for u32
[src]
[+]
impl PartialEq<u32> for u32
impl<'a> Not for &'a u32
[src]
[+]
impl<'a> Not for &'a u32
impl Not for u32
[src]
[+]
impl Not for u32
impl From<u8> for u32
1.5.0[src]
[+]
impl From<u8> for u32
impl From<u16> for u32
1.5.0[src]
[+]
impl From<u16> for u32
impl From<char> for u32
1.13.0[src]
[+]
impl From<char> for u32
impl FromStr for u32
[src]
[+]
impl FromStr for u32
impl LowerHex for u32
[src]
[+]
impl LowerHex for u32
impl Display for u32
[src]
[+]
impl Display for u32
impl Mul<u32> for u32
[src]
[+]
impl Mul<u32> for u32
impl<'a, 'b> Mul<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Mul<&'a u32> for &'b u32
impl<'a> Mul<&'a u32> for u32
[src]
[+]
impl<'a> Mul<&'a u32> for u32
impl<'a> Mul<u32> for &'a u32
[src]
[+]
impl<'a> Mul<u32> for &'a u32
impl<'a> Product<&'a u32> for u32
1.12.0[src]
[+]
impl<'a> Product<&'a u32> for u32
impl Product<u32> for u32
1.12.0[src]
[+]
impl Product<u32> for u32
impl BitXorAssign<u32> for u32
1.8.0[src]
[+]
impl BitXorAssign<u32> for u32
impl<'a> BitXorAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> BitXorAssign<&'a u32> for u32
impl<'a> BitAndAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> BitAndAssign<&'a u32> for u32
impl BitAndAssign<u32> for u32
1.8.0[src]
[+]
impl BitAndAssign<u32> for u32
impl<'a> BitOr<&'a u32> for u32
[src]
[+]
impl<'a> BitOr<&'a u32> for u32
impl BitOr<u32> for u32
[src]
[+]
impl BitOr<u32> for u32
impl<'a, 'b> BitOr<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> BitOr<&'a u32> for &'b u32
impl<'a> BitOr<u32> for &'a u32
[src]
[+]
impl<'a> BitOr<u32> for &'a u32
impl<'a> RemAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> RemAssign<&'a u32> for u32
impl RemAssign<u32> for u32
1.8.0[src]
[+]
impl RemAssign<u32> for u32
impl Step for u32
[src]
[+]
impl Step for u32
impl<'a> MulAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> MulAssign<&'a u32> for u32
impl MulAssign<u32> for u32
1.8.0[src]
[+]
impl MulAssign<u32> for u32
impl<'a> AddAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> AddAssign<&'a u32> for u32
impl AddAssign<u32> for u32
1.8.0[src]
[+]
impl AddAssign<u32> for u32
impl Default for u32
[src]
[+]
impl Default for u32
impl UpperHex for u32
[src]
[+]
impl UpperHex for u32
impl ShrAssign<u8> for u32
1.8.0[src]
[+]
impl ShrAssign<u8> for u32
impl<'a> ShrAssign<&'a u32> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a u32> for u32
impl<'a> ShrAssign<&'a i16> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a i16> for u32
impl<'a> ShrAssign<&'a u128> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a u128> for u32
impl ShrAssign<i64> for u32
1.8.0[src]
[+]
impl ShrAssign<i64> for u32
impl ShrAssign<i32> for u32
1.8.0[src]
[+]
impl ShrAssign<i32> for u32
impl ShrAssign<i128> for u32
1.8.0[src]
[+]
impl ShrAssign<i128> for u32
impl ShrAssign<u128> for u32
1.8.0[src]
[+]
impl ShrAssign<u128> for u32
impl ShrAssign<isize> for u32
1.8.0[src]
[+]
impl ShrAssign<isize> for u32
impl<'a> ShrAssign<&'a u16> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a u16> for u32
impl ShrAssign<u16> for u32
1.8.0[src]
[+]
impl ShrAssign<u16> for u32
impl ShrAssign<usize> for u32
1.8.0[src]
[+]
impl ShrAssign<usize> for u32
impl<'a> ShrAssign<&'a i32> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a i32> for u32
impl ShrAssign<u32> for u32
1.8.0[src]
[+]
impl ShrAssign<u32> for u32
impl ShrAssign<i8> for u32
1.8.0[src]
[+]
impl ShrAssign<i8> for u32
impl<'a> ShrAssign<&'a isize> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a isize> for u32
impl ShrAssign<i16> for u32
1.8.0[src]
[+]
impl ShrAssign<i16> for u32
impl<'a> ShrAssign<&'a i64> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a i64> for u32
impl ShrAssign<u64> for u32
1.8.0[src]
[+]
impl ShrAssign<u64> for u32
impl<'a> ShrAssign<&'a usize> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a usize> for u32
impl<'a> ShrAssign<&'a i8> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a i8> for u32
impl<'a> ShrAssign<&'a i128> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a i128> for u32
impl<'a> ShrAssign<&'a u8> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a u8> for u32
impl<'a> ShrAssign<&'a u64> for u32
1.22.0[src]
[+]
impl<'a> ShrAssign<&'a u64> for u32
impl PartialOrd<u32> for u32
[src]
[+]
impl PartialOrd<u32> for u32
impl Octal for u32
[src]
[+]
impl Octal for u32
impl<'a> Sub<&'a u32> for u32
[src]
[+]
impl<'a> Sub<&'a u32> for u32
impl<'a, 'b> Sub<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Sub<&'a u32> for &'b u32
impl Sub<u32> for u32
[src]
[+]
impl Sub<u32> for u32
impl<'a> Sub<u32> for &'a u32
[src]
[+]
impl<'a> Sub<u32> for &'a u32
impl<'a> Shr<&'a i64> for u32
[src]
[+]
impl<'a> Shr<&'a i64> for u32
impl<'a> Shr<&'a u8> for u32
[src]
[+]
impl<'a> Shr<&'a u8> for u32
impl<'a, 'b> Shr<&'a i8> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a i8> for &'b u32
impl<'a, 'b> Shr<&'a u64> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a u64> for &'b u32
impl Shr<u16> for u32
[src]
[+]
impl Shr<u16> for u32
impl<'a> Shr<i128> for &'a u32
[src]
[+]
impl<'a> Shr<i128> for &'a u32
impl Shr<i32> for u32
[src]
[+]
impl Shr<i32> for u32
impl<'a, 'b> Shr<&'a u16> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a u16> for &'b u32
impl<'a> Shr<i64> for &'a u32
[src]
[+]
impl<'a> Shr<i64> for &'a u32
impl Shr<i8> for u32
[src]
[+]
impl Shr<i8> for u32
impl<'a, 'b> Shr<&'a u8> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a u8> for &'b u32
impl<'a> Shr<&'a i16> for u32
[src]
[+]
impl<'a> Shr<&'a i16> for u32
impl<'a> Shr<u64> for &'a u32
[src]
[+]
impl<'a> Shr<u64> for &'a u32
impl<'a, 'b> Shr<&'a i16> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a i16> for &'b u32
impl<'a> Shr<&'a u16> for u32
[src]
[+]
impl<'a> Shr<&'a u16> for u32
impl<'a> Shr<&'a usize> for u32
[src]
[+]
impl<'a> Shr<&'a usize> for u32
impl<'a> Shr<&'a u128> for u32
[src]
[+]
impl<'a> Shr<&'a u128> for u32
impl<'a> Shr<&'a i32> for u32
[src]
[+]
impl<'a> Shr<&'a i32> for u32
impl<'a> Shr<&'a u32> for u32
[src]
[+]
impl<'a> Shr<&'a u32> for u32
impl<'a> Shr<&'a i128> for u32
[src]
[+]
impl<'a> Shr<&'a i128> for u32
impl Shr<u8> for u32
[src]
[+]
impl Shr<u8> for u32
impl<'a, 'b> Shr<&'a u128> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a u128> for &'b u32
impl Shr<isize> for u32
[src]
[+]
impl Shr<isize> for u32
impl<'a, 'b> Shr<&'a isize> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a isize> for &'b u32
impl Shr<u128> for u32
[src]
[+]
impl Shr<u128> for u32
impl Shr<u64> for u32
[src]
[+]
impl Shr<u64> for u32
impl<'a, 'b> Shr<&'a i128> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a i128> for &'b u32
impl<'a> Shr<&'a isize> for u32
[src]
[+]
impl<'a> Shr<&'a isize> for u32
impl<'a> Shr<u32> for &'a u32
[src]
[+]
impl<'a> Shr<u32> for &'a u32
impl Shr<i64> for u32
[src]
[+]
impl Shr<i64> for u32
impl<'a> Shr<u8> for &'a u32
[src]
[+]
impl<'a> Shr<u8> for &'a u32
impl<'a> Shr<&'a i8> for u32
[src]
[+]
impl<'a> Shr<&'a i8> for u32
impl<'a, 'b> Shr<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a u32> for &'b u32
impl Shr<i16> for u32
[src]
[+]
impl Shr<i16> for u32
impl<'a> Shr<u16> for &'a u32
[src]
[+]
impl<'a> Shr<u16> for &'a u32
impl<'a, 'b> Shr<&'a i32> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a i32> for &'b u32
impl<'a> Shr<u128> for &'a u32
[src]
[+]
impl<'a> Shr<u128> for &'a u32
impl<'a> Shr<isize> for &'a u32
[src]
[+]
impl<'a> Shr<isize> for &'a u32
impl<'a> Shr<usize> for &'a u32
[src]
[+]
impl<'a> Shr<usize> for &'a u32
impl<'a> Shr<i32> for &'a u32
[src]
[+]
impl<'a> Shr<i32> for &'a u32
impl Shr<i128> for u32
[src]
[+]
impl Shr<i128> for u32
impl<'a, 'b> Shr<&'a i64> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a i64> for &'b u32
impl<'a> Shr<&'a u64> for u32
[src]
[+]
impl<'a> Shr<&'a u64> for u32
impl Shr<usize> for u32
[src]
[+]
impl Shr<usize> for u32
impl Shr<u32> for u32
[src]
[+]
impl Shr<u32> for u32
impl<'a> Shr<i8> for &'a u32
[src]
[+]
impl<'a> Shr<i8> for &'a u32
impl<'a, 'b> Shr<&'a usize> for &'b u32
[src]
[+]
impl<'a, 'b> Shr<&'a usize> for &'b u32
impl<'a> Shr<i16> for &'a u32
[src]
[+]
impl<'a> Shr<i16> for &'a u32
impl Eq for u32
[src]
impl Eq for u32
impl Zeroable for u32
[src]
[+]
impl Zeroable for u32
impl<'a> Rem<&'a u32> for u32
[src]
[+]
impl<'a> Rem<&'a u32> for u32
impl<'a, 'b> Rem<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Rem<&'a u32> for &'b u32
impl Rem<u32> for u32
[src]
[+]
impl Rem<u32> for u32
impl<'a> Rem<u32> for &'a u32
[src]
[+]
impl<'a> Rem<u32> for &'a u32
impl Shl<i16> for u32
[src]
[+]
impl Shl<i16> for u32
impl Shl<i128> for u32
[src]
[+]
impl Shl<i128> for u32
impl<'a> Shl<&'a u16> for u32
[src]
[+]
impl<'a> Shl<&'a u16> for u32
impl Shl<u16> for u32
[src]
[+]
impl Shl<u16> for u32
impl<'a> Shl<i32> for &'a u32
[src]
[+]
impl<'a> Shl<i32> for &'a u32
impl<'a> Shl<isize> for &'a u32
[src]
[+]
impl<'a> Shl<isize> for &'a u32
impl Shl<u8> for u32
[src]
[+]
impl Shl<u8> for u32
impl<'a> Shl<u16> for &'a u32
[src]
[+]
impl<'a> Shl<u16> for &'a u32
impl<'a> Shl<&'a i128> for u32
[src]
[+]
impl<'a> Shl<&'a i128> for u32
impl Shl<isize> for u32
[src]
[+]
impl Shl<isize> for u32
impl<'a> Shl<&'a usize> for u32
[src]
[+]
impl<'a> Shl<&'a usize> for u32
impl Shl<i8> for u32
[src]
[+]
impl Shl<i8> for u32
impl<'a, 'b> Shl<&'a i16> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a i16> for &'b u32
impl<'a, 'b> Shl<&'a u32> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a u32> for &'b u32
impl<'a> Shl<u128> for &'a u32
[src]
[+]
impl<'a> Shl<u128> for &'a u32
impl<'a> Shl<&'a i64> for u32
[src]
[+]
impl<'a> Shl<&'a i64> for u32
impl<'a, 'b> Shl<&'a i32> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a i32> for &'b u32
impl<'a> Shl<&'a i16> for u32
[src]
[+]
impl<'a> Shl<&'a i16> for u32
impl<'a> Shl<i16> for &'a u32
[src]
[+]
impl<'a> Shl<i16> for &'a u32
impl<'a> Shl<&'a u128> for u32
[src]
[+]
impl<'a> Shl<&'a u128> for u32
impl<'a> Shl<&'a isize> for u32
[src]
[+]
impl<'a> Shl<&'a isize> for u32
impl Shl<u128> for u32
[src]
[+]
impl Shl<u128> for u32
impl Shl<i32> for u32
[src]
[+]
impl Shl<i32> for u32
impl<'a> Shl<i64> for &'a u32
[src]
[+]
impl<'a> Shl<i64> for &'a u32
impl<'a> Shl<u32> for &'a u32
[src]
[+]
impl<'a> Shl<u32> for &'a u32
impl<'a, 'b> Shl<&'a usize> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a usize> for &'b u32
impl<'a, 'b> Shl<&'a u64> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a u64> for &'b u32
impl<'a, 'b> Shl<&'a i128> for &'b u32
[src]
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impl<'a, 'b> Shl<&'a i128> for &'b u32
impl<'a, 'b> Shl<&'a u128> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a u128> for &'b u32
impl<'a> Shl<usize> for &'a u32
[src]
[+]
impl<'a> Shl<usize> for &'a u32
impl<'a, 'b> Shl<&'a isize> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a isize> for &'b u32
impl<'a> Shl<&'a i8> for u32
[src]
[+]
impl<'a> Shl<&'a i8> for u32
impl Shl<usize> for u32
[src]
[+]
impl Shl<usize> for u32
impl<'a> Shl<u64> for &'a u32
[src]
[+]
impl<'a> Shl<u64> for &'a u32
impl Shl<u32> for u32
[src]
[+]
impl Shl<u32> for u32
impl<'a, 'b> Shl<&'a i64> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a i64> for &'b u32
impl<'a> Shl<u8> for &'a u32
[src]
[+]
impl<'a> Shl<u8> for &'a u32
impl<'a, 'b> Shl<&'a u16> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a u16> for &'b u32
impl<'a> Shl<&'a u64> for u32
[src]
[+]
impl<'a> Shl<&'a u64> for u32
impl Shl<u64> for u32
[src]
[+]
impl Shl<u64> for u32
impl<'a> Shl<&'a u32> for u32
[src]
[+]
impl<'a> Shl<&'a u32> for u32
impl<'a> Shl<i128> for &'a u32
[src]
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impl<'a> Shl<i128> for &'a u32
impl Shl<i64> for u32
[src]
[+]
impl Shl<i64> for u32
impl<'a, 'b> Shl<&'a i8> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a i8> for &'b u32
impl<'a, 'b> Shl<&'a u8> for &'b u32
[src]
[+]
impl<'a, 'b> Shl<&'a u8> for &'b u32
impl<'a> Shl<i8> for &'a u32
[src]
[+]
impl<'a> Shl<i8> for &'a u32
impl<'a> Shl<&'a i32> for u32
[src]
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impl<'a> Shl<&'a i32> for u32
impl<'a> Shl<&'a u8> for u32
[src]
[+]
impl<'a> Shl<&'a u8> for u32
impl From<Ipv4Addr> for u32
1.1.0[src]
[+]
impl From<Ipv4Addr> for u32