Trait core::ops::BitXor

1.0.0 · source ·
pub trait BitXor<Rhs = Self> {
    type Output;

    // Required method
    fn bitxor(self, rhs: Rhs) -> Self::Output;
}
Expand description

The bitwise XOR operator ^.

Note that Rhs is Self by default, but this is not mandatory.

Examples

An implementation of BitXor that lifts ^ to a wrapper around bool.

use std::ops::BitXor;

#[derive(Debug, PartialEq)]
struct Scalar(bool);

impl BitXor for Scalar {
    type Output = Self;

    // rhs is the "right-hand side" of the expression `a ^ b`
    fn bitxor(self, rhs: Self) -> Self::Output {
        Self(self.0 ^ rhs.0)
    }
}

assert_eq!(Scalar(true) ^ Scalar(true), Scalar(false));
assert_eq!(Scalar(true) ^ Scalar(false), Scalar(true));
assert_eq!(Scalar(false) ^ Scalar(true), Scalar(true));
assert_eq!(Scalar(false) ^ Scalar(false), Scalar(false));
Run

An implementation of BitXor trait for a wrapper around Vec<bool>.

use std::ops::BitXor;

#[derive(Debug, PartialEq)]
struct BooleanVector(Vec<bool>);

impl BitXor for BooleanVector {
    type Output = Self;

    fn bitxor(self, Self(rhs): Self) -> Self::Output {
        let Self(lhs) = self;
        assert_eq!(lhs.len(), rhs.len());
        Self(
            lhs.iter()
                .zip(rhs.iter())
                .map(|(x, y)| *x ^ *y)
                .collect()
        )
    }
}

let bv1 = BooleanVector(vec![true, true, false, false]);
let bv2 = BooleanVector(vec![true, false, true, false]);
let expected = BooleanVector(vec![false, true, true, false]);
assert_eq!(bv1 ^ bv2, expected);
Run

Required Associated Types§

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type Output

The resulting type after applying the ^ operator.

Required Methods§

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fn bitxor(self, rhs: Rhs) -> Self::Output

Performs the ^ operation.

Examples
assert_eq!(true ^ false, true);
assert_eq!(true ^ true, false);
assert_eq!(5u8 ^ 1u8, 4);
assert_eq!(5u8 ^ 2u8, 7);
Run

Implementors§

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impl BitXor<&bool> for &bool

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impl BitXor<&bool> for bool

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impl BitXor<&i8> for &i8

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type Output = <i8 as BitXor<i8>>::Output

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impl BitXor<&i8> for i8

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type Output = <i8 as BitXor<i8>>::Output

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impl BitXor<&i16> for &i16

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type Output = <i16 as BitXor<i16>>::Output

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impl BitXor<&i16> for i16

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type Output = <i16 as BitXor<i16>>::Output

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impl BitXor<&i32> for &i32

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type Output = <i32 as BitXor<i32>>::Output

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impl BitXor<&i32> for i32

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type Output = <i32 as BitXor<i32>>::Output

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impl BitXor<&i64> for &i64

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type Output = <i64 as BitXor<i64>>::Output

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impl BitXor<&i64> for i64

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type Output = <i64 as BitXor<i64>>::Output

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impl BitXor<&i128> for &i128

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impl BitXor<&i128> for i128

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impl BitXor<&isize> for &isize

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impl BitXor<&isize> for isize

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impl BitXor<&u8> for &u8

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type Output = <u8 as BitXor<u8>>::Output

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impl BitXor<&u8> for u8

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type Output = <u8 as BitXor<u8>>::Output

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impl BitXor<&u16> for &u16

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type Output = <u16 as BitXor<u16>>::Output

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impl BitXor<&u16> for u16

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type Output = <u16 as BitXor<u16>>::Output

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impl BitXor<&u32> for &u32

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type Output = <u32 as BitXor<u32>>::Output

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impl BitXor<&u32> for u32

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type Output = <u32 as BitXor<u32>>::Output

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impl BitXor<&u64> for &u64

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type Output = <u64 as BitXor<u64>>::Output

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impl BitXor<&u64> for u64

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type Output = <u64 as BitXor<u64>>::Output

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impl BitXor<&u128> for &u128

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impl BitXor<&u128> for u128

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impl BitXor<&usize> for &usize

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impl BitXor<&usize> for usize

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impl BitXor<&Saturating<i8>> for &Saturating<i8>

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impl BitXor<&Saturating<i8>> for Saturating<i8>

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impl BitXor<&Saturating<i16>> for &Saturating<i16>

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impl BitXor<&Saturating<i16>> for Saturating<i16>

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impl BitXor<&Saturating<i32>> for &Saturating<i32>

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impl BitXor<&Saturating<i32>> for Saturating<i32>

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impl BitXor<&Saturating<i64>> for &Saturating<i64>

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impl BitXor<&Saturating<i64>> for Saturating<i64>

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impl BitXor<&Saturating<i128>> for &Saturating<i128>

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impl BitXor<&Saturating<i128>> for Saturating<i128>

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impl BitXor<&Saturating<isize>> for &Saturating<isize>

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impl BitXor<&Saturating<isize>> for Saturating<isize>

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impl BitXor<&Saturating<u8>> for &Saturating<u8>

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impl BitXor<&Saturating<u8>> for Saturating<u8>

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impl BitXor<&Saturating<u16>> for &Saturating<u16>

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impl BitXor<&Saturating<u16>> for Saturating<u16>

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impl BitXor<&Saturating<u32>> for &Saturating<u32>

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impl BitXor<&Saturating<u32>> for Saturating<u32>

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impl BitXor<&Saturating<u64>> for &Saturating<u64>

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impl BitXor<&Saturating<u64>> for Saturating<u64>

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impl BitXor<&Saturating<u128>> for &Saturating<u128>

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impl BitXor<&Saturating<u128>> for Saturating<u128>

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impl BitXor<&Saturating<usize>> for &Saturating<usize>

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impl BitXor<&Saturating<usize>> for Saturating<usize>

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impl BitXor<&Wrapping<i8>> for &Wrapping<i8>

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impl BitXor<&Wrapping<i8>> for Wrapping<i8>

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impl BitXor<&Wrapping<i16>> for &Wrapping<i16>

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impl BitXor<&Wrapping<i16>> for Wrapping<i16>

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impl BitXor<&Wrapping<i32>> for &Wrapping<i32>

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impl BitXor<&Wrapping<i32>> for Wrapping<i32>

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impl BitXor<&Wrapping<i64>> for &Wrapping<i64>

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impl BitXor<&Wrapping<i64>> for Wrapping<i64>

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impl BitXor<&Wrapping<i128>> for &Wrapping<i128>

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impl BitXor<&Wrapping<i128>> for Wrapping<i128>

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impl BitXor<&Wrapping<isize>> for &Wrapping<isize>

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impl BitXor<&Wrapping<isize>> for Wrapping<isize>

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impl BitXor<&Wrapping<u8>> for &Wrapping<u8>

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impl BitXor<&Wrapping<u8>> for Wrapping<u8>

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impl BitXor<&Wrapping<u16>> for &Wrapping<u16>

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impl BitXor<&Wrapping<u16>> for Wrapping<u16>

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impl BitXor<&Wrapping<u32>> for &Wrapping<u32>

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impl BitXor<&Wrapping<u32>> for Wrapping<u32>

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impl BitXor<&Wrapping<u64>> for &Wrapping<u64>

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impl BitXor<&Wrapping<u64>> for Wrapping<u64>

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impl BitXor<&Wrapping<u128>> for &Wrapping<u128>

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impl BitXor<&Wrapping<u128>> for Wrapping<u128>

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impl BitXor<&Wrapping<usize>> for &Wrapping<usize>

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impl BitXor<&Wrapping<usize>> for Wrapping<usize>

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impl BitXor<bool> for bool

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type Output = bool

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impl BitXor<i8> for i8

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type Output = i8

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impl BitXor<i16> for i16

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type Output = i16

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impl BitXor<i32> for i32

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type Output = i32

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impl BitXor<i64> for i64

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type Output = i64

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impl BitXor<i128> for i128

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type Output = i128

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impl BitXor<isize> for isize

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impl BitXor<u8> for u8

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type Output = u8

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impl BitXor<u16> for u16

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type Output = u16

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impl BitXor<u32> for u32

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type Output = u32

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impl BitXor<u64> for u64

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type Output = u64

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impl BitXor<u128> for u128

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type Output = u128

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impl BitXor<usize> for usize

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impl BitXor<Saturating<i8>> for Saturating<i8>

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impl BitXor<Saturating<i16>> for Saturating<i16>

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impl BitXor<Saturating<i32>> for Saturating<i32>

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impl BitXor<Saturating<i64>> for Saturating<i64>

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impl BitXor<Saturating<i128>> for Saturating<i128>

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impl BitXor<Saturating<isize>> for Saturating<isize>

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impl BitXor<Saturating<u8>> for Saturating<u8>

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impl BitXor<Saturating<u16>> for Saturating<u16>

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impl BitXor<Saturating<u32>> for Saturating<u32>

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impl BitXor<Saturating<u64>> for Saturating<u64>

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impl BitXor<Saturating<u128>> for Saturating<u128>

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impl BitXor<Saturating<usize>> for Saturating<usize>

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impl BitXor<Wrapping<i8>> for Wrapping<i8>

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impl BitXor<Wrapping<i16>> for Wrapping<i16>

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impl BitXor<Wrapping<i32>> for Wrapping<i32>

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impl BitXor<Wrapping<i64>> for Wrapping<i64>

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impl BitXor<Wrapping<i128>> for Wrapping<i128>

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impl BitXor<Wrapping<isize>> for Wrapping<isize>

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impl BitXor<Wrapping<u8>> for Wrapping<u8>

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impl BitXor<Wrapping<u16>> for Wrapping<u16>

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impl BitXor<Wrapping<u32>> for Wrapping<u32>

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impl BitXor<Wrapping<u64>> for Wrapping<u64>

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impl BitXor<Wrapping<u128>> for Wrapping<u128>

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impl BitXor<Wrapping<usize>> for Wrapping<usize>

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impl<'a> BitXor<bool> for &'a bool

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impl<'a> BitXor<i8> for &'a i8

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type Output = <i8 as BitXor<i8>>::Output

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impl<'a> BitXor<i16> for &'a i16

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type Output = <i16 as BitXor<i16>>::Output

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impl<'a> BitXor<i32> for &'a i32

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type Output = <i32 as BitXor<i32>>::Output

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impl<'a> BitXor<i64> for &'a i64

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type Output = <i64 as BitXor<i64>>::Output

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impl<'a> BitXor<i128> for &'a i128

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impl<'a> BitXor<isize> for &'a isize

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impl<'a> BitXor<u8> for &'a u8

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type Output = <u8 as BitXor<u8>>::Output

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impl<'a> BitXor<u16> for &'a u16

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type Output = <u16 as BitXor<u16>>::Output

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impl<'a> BitXor<u32> for &'a u32

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type Output = <u32 as BitXor<u32>>::Output

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impl<'a> BitXor<u64> for &'a u64

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type Output = <u64 as BitXor<u64>>::Output

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impl<'a> BitXor<u128> for &'a u128

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impl<'a> BitXor<usize> for &'a usize

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impl<'a> BitXor<Saturating<i8>> for &'a Saturating<i8>

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impl<'a> BitXor<Saturating<i16>> for &'a Saturating<i16>

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impl<'a> BitXor<Saturating<i32>> for &'a Saturating<i32>

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impl<'a> BitXor<Saturating<i64>> for &'a Saturating<i64>

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impl<'a> BitXor<Saturating<i128>> for &'a Saturating<i128>

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impl<'a> BitXor<Saturating<isize>> for &'a Saturating<isize>

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impl<'a> BitXor<Saturating<u8>> for &'a Saturating<u8>

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impl<'a> BitXor<Saturating<u16>> for &'a Saturating<u16>

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impl<'a> BitXor<Saturating<u32>> for &'a Saturating<u32>

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impl<'a> BitXor<Saturating<u64>> for &'a Saturating<u64>

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impl<'a> BitXor<Saturating<u128>> for &'a Saturating<u128>

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impl<'a> BitXor<Saturating<usize>> for &'a Saturating<usize>

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impl<'a> BitXor<Wrapping<i8>> for &'a Wrapping<i8>

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impl<'a> BitXor<Wrapping<i16>> for &'a Wrapping<i16>

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impl<'a> BitXor<Wrapping<i32>> for &'a Wrapping<i32>

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impl<'a> BitXor<Wrapping<i64>> for &'a Wrapping<i64>

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impl<'a> BitXor<Wrapping<i128>> for &'a Wrapping<i128>

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impl<'a> BitXor<Wrapping<isize>> for &'a Wrapping<isize>

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impl<'a> BitXor<Wrapping<u8>> for &'a Wrapping<u8>

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impl<'a> BitXor<Wrapping<u16>> for &'a Wrapping<u16>

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impl<'a> BitXor<Wrapping<u32>> for &'a Wrapping<u32>

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impl<'a> BitXor<Wrapping<u64>> for &'a Wrapping<u64>

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impl<'a> BitXor<Wrapping<u128>> for &'a Wrapping<u128>

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impl<'a> BitXor<Wrapping<usize>> for &'a Wrapping<usize>

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impl<'lhs, 'rhs, T, const LANES: usize> BitXor<&'rhs Simd<T, LANES>> for &'lhs Simd<T, LANES>where T: SimdElement, Simd<T, LANES>: BitXor<Simd<T, LANES>, Output = Simd<T, LANES>>, LaneCount<LANES>: SupportedLaneCount,

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type Output = Simd<T, LANES>

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impl<T, const LANES: usize> BitXor<&Simd<T, LANES>> for Simd<T, LANES>where T: SimdElement, Simd<T, LANES>: BitXor<Simd<T, LANES>, Output = Simd<T, LANES>>, LaneCount<LANES>: SupportedLaneCount,

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type Output = Simd<T, LANES>

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impl<T, const LANES: usize> BitXor<bool> for core::core_simd::masks::Mask<T, LANES>where T: MaskElement, LaneCount<LANES>: SupportedLaneCount,

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type Output = Mask<T, LANES>

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impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for core::core_simd::masks::mask_impl::Mask<T, LANES>where T: MaskElement, LaneCount<LANES>: SupportedLaneCount,

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type Output = Mask<T, LANES>

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impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for boolwhere T: MaskElement, LaneCount<LANES>: SupportedLaneCount,

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type Output = Mask<T, LANES>

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impl<T, const LANES: usize> BitXor<Mask<T, LANES>> for core::core_simd::masks::Mask<T, LANES>where T: MaskElement, LaneCount<LANES>: SupportedLaneCount,

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type Output = Mask<T, LANES>

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impl<T, const LANES: usize> BitXor<Simd<T, LANES>> for &Simd<T, LANES>where T: SimdElement, Simd<T, LANES>: BitXor<Simd<T, LANES>, Output = Simd<T, LANES>>, LaneCount<LANES>: SupportedLaneCount,

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type Output = Simd<T, LANES>

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impl<const N: usize> BitXor<Simd<i8, N>> for Simd<i8, N>where i8: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<i8, N>

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impl<const N: usize> BitXor<Simd<i16, N>> for Simd<i16, N>where i16: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<i16, N>

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impl<const N: usize> BitXor<Simd<i32, N>> for Simd<i32, N>where i32: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<i32, N>

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impl<const N: usize> BitXor<Simd<i64, N>> for Simd<i64, N>where i64: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<i64, N>

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impl<const N: usize> BitXor<Simd<isize, N>> for Simd<isize, N>where isize: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<isize, N>

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impl<const N: usize> BitXor<Simd<u8, N>> for Simd<u8, N>where u8: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<u8, N>

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impl<const N: usize> BitXor<Simd<u16, N>> for Simd<u16, N>where u16: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<u16, N>

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impl<const N: usize> BitXor<Simd<u32, N>> for Simd<u32, N>where u32: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<u32, N>

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impl<const N: usize> BitXor<Simd<u64, N>> for Simd<u64, N>where u64: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<u64, N>

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impl<const N: usize> BitXor<Simd<usize, N>> for Simd<usize, N>where usize: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<usize, N>