Trait oberon::inner_types::elliptic_curve::ops::Sub

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

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

The subtraction operator -.

Note that Rhs is Self by default, but this is not mandatory. For example, std::time::SystemTime implements Sub<Duration>, which permits operations of the form SystemTime = SystemTime - Duration.

Examples

Subtractable points

use std::ops::Sub;

#[derive(Debug, Copy, Clone, PartialEq)]
struct Point {
    x: i32,
    y: i32,
}

impl Sub for Point {
    type Output = Self;

    fn sub(self, other: Self) -> Self::Output {
        Self {
            x: self.x - other.x,
            y: self.y - other.y,
        }
    }
}

assert_eq!(Point { x: 3, y: 3 } - Point { x: 2, y: 3 },
           Point { x: 1, y: 0 });

Implementing Sub with generics

Here is an example of the same Point struct implementing the Sub trait using generics.

use std::ops::Sub;

#[derive(Debug, PartialEq)]
struct Point<T> {
    x: T,
    y: T,
}

// Notice that the implementation uses the associated type `Output`.
impl<T: Sub<Output = T>> Sub for Point<T> {
    type Output = Self;

    fn sub(self, other: Self) -> Self::Output {
        Point {
            x: self.x - other.x,
            y: self.y - other.y,
        }
    }
}

assert_eq!(Point { x: 2, y: 3 } - Point { x: 1, y: 0 },
           Point { x: 1, y: 3 });

Required Associated Types§

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type Output

The resulting type after applying the - operator.

Required Methods§

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

Performs the - operation.

Example
assert_eq!(12 - 1, 11);

Implementors§

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impl Sub<&f32> for &f32

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type Output = <f32 as Sub<f32>>::Output

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impl Sub<&f32> for f32

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type Output = <f32 as Sub<f32>>::Output

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impl Sub<&f64> for &f64

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type Output = <f64 as Sub<f64>>::Output

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impl Sub<&f64> for f64

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type Output = <f64 as Sub<f64>>::Output

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impl Sub<&i8> for &i8

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

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impl Sub<&i8> for i8

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

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impl Sub<&i16> for &i16

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

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impl Sub<&i16> for i16

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

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impl Sub<&i32> for &i32

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

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impl Sub<&i32> for i32

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

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impl Sub<&i64> for &i64

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

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impl Sub<&i64> for i64

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

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impl Sub<&i128> for &i128

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type Output = <i128 as Sub<i128>>::Output

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impl Sub<&i128> for i128

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type Output = <i128 as Sub<i128>>::Output

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impl Sub<&isize> for &isize

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type Output = <isize as Sub<isize>>::Output

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impl Sub<&isize> for isize

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type Output = <isize as Sub<isize>>::Output

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impl Sub<&u8> for &u8

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

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impl Sub<&u8> for u8

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

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impl Sub<&u16> for &u16

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

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impl Sub<&u16> for u16

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

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impl Sub<&u32> for &u32

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

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impl Sub<&u32> for u32

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

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impl Sub<&u64> for &u64

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

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impl Sub<&u64> for u64

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

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impl Sub<&u128> for &u128

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type Output = <u128 as Sub<u128>>::Output

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impl Sub<&u128> for u128

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type Output = <u128 as Sub<u128>>::Output

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impl Sub<&usize> for &usize

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type Output = <usize as Sub<usize>>::Output

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impl Sub<&usize> for usize

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type Output = <usize as Sub<usize>>::Output

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impl Sub<&Checked<Limb>> for &Checked<Limb>

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impl Sub<&Checked<Limb>> for Checked<Limb>

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impl Sub<&Wrapping<Limb>> for &oberon::inner_types::elliptic_curve::bigint::Wrapping<Limb>

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impl Sub<&Wrapping<Limb>> for oberon::inner_types::elliptic_curve::bigint::Wrapping<Limb>

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impl Sub<&Saturating<i8>> for &Saturating<i8>

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impl Sub<&Saturating<i8>> for Saturating<i8>

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impl Sub<&Saturating<i16>> for &Saturating<i16>

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impl Sub<&Saturating<i16>> for Saturating<i16>

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impl Sub<&Saturating<i32>> for &Saturating<i32>

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impl Sub<&Saturating<i32>> for Saturating<i32>

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impl Sub<&Saturating<i64>> for &Saturating<i64>

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impl Sub<&Saturating<i64>> for Saturating<i64>

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impl Sub<&Saturating<i128>> for &Saturating<i128>

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impl Sub<&Saturating<i128>> for Saturating<i128>

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impl Sub<&Saturating<isize>> for &Saturating<isize>

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impl Sub<&Saturating<isize>> for Saturating<isize>

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impl Sub<&Saturating<u8>> for &Saturating<u8>

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impl Sub<&Saturating<u8>> for Saturating<u8>

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impl Sub<&Saturating<u16>> for &Saturating<u16>

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impl Sub<&Saturating<u16>> for Saturating<u16>

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impl Sub<&Saturating<u32>> for &Saturating<u32>

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impl Sub<&Saturating<u32>> for Saturating<u32>

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impl Sub<&Saturating<u64>> for &Saturating<u64>

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impl Sub<&Saturating<u64>> for Saturating<u64>

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impl Sub<&Saturating<u128>> for &Saturating<u128>

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impl Sub<&Saturating<u128>> for Saturating<u128>

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impl Sub<&Saturating<usize>> for &Saturating<usize>

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impl Sub<&Saturating<usize>> for Saturating<usize>

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impl Sub<&Wrapping<i8>> for &core::num::wrapping::Wrapping<i8>

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impl Sub<&Wrapping<i8>> for core::num::wrapping::Wrapping<i8>

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impl Sub<&Wrapping<i16>> for &core::num::wrapping::Wrapping<i16>

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impl Sub<&Wrapping<i16>> for core::num::wrapping::Wrapping<i16>

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impl Sub<&Wrapping<i32>> for &core::num::wrapping::Wrapping<i32>

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impl Sub<&Wrapping<i32>> for core::num::wrapping::Wrapping<i32>

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impl Sub<&Wrapping<i64>> for &core::num::wrapping::Wrapping<i64>

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impl Sub<&Wrapping<i64>> for core::num::wrapping::Wrapping<i64>

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impl Sub<&Wrapping<i128>> for &core::num::wrapping::Wrapping<i128>

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impl Sub<&Wrapping<i128>> for core::num::wrapping::Wrapping<i128>

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impl Sub<&Wrapping<isize>> for &core::num::wrapping::Wrapping<isize>

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impl Sub<&Wrapping<isize>> for core::num::wrapping::Wrapping<isize>

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impl Sub<&Wrapping<u8>> for &core::num::wrapping::Wrapping<u8>

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impl Sub<&Wrapping<u8>> for core::num::wrapping::Wrapping<u8>

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impl Sub<&Wrapping<u16>> for &core::num::wrapping::Wrapping<u16>

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impl Sub<&Wrapping<u16>> for core::num::wrapping::Wrapping<u16>

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impl Sub<&Wrapping<u32>> for &core::num::wrapping::Wrapping<u32>

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impl Sub<&Wrapping<u32>> for core::num::wrapping::Wrapping<u32>

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impl Sub<&Wrapping<u64>> for &core::num::wrapping::Wrapping<u64>

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impl Sub<&Wrapping<u64>> for core::num::wrapping::Wrapping<u64>

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impl Sub<&Wrapping<u128>> for &core::num::wrapping::Wrapping<u128>

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impl Sub<&Wrapping<u128>> for core::num::wrapping::Wrapping<u128>

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impl Sub<&Wrapping<usize>> for &core::num::wrapping::Wrapping<usize>

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impl Sub<&Wrapping<usize>> for core::num::wrapping::Wrapping<usize>

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impl Sub<f32> for f32

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type Output = f32

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impl Sub<f64> for f64

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type Output = f64

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impl Sub<i8> for i8

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type Output = i8

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impl Sub<i16> for i16

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type Output = i16

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impl Sub<i32> for i32

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type Output = i32

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impl Sub<i64> for i64

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type Output = i64

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impl Sub<i128> for i128

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type Output = i128

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impl Sub<isize> for isize

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impl Sub<u8> for u8

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type Output = u8

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impl Sub<u16> for u16

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type Output = u16

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impl Sub<u32> for u32

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type Output = u32

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impl Sub<u64> for u64

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type Output = u64

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impl Sub<u128> for u128

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type Output = u128

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impl Sub<usize> for usize

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impl Sub<Blinding> for Token

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impl Sub<G1Affine> for G1Projective

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impl Sub<G1Projective> for G1Affine

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impl Sub<G1Projective> for G1Projective

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impl Sub<G2Affine> for G2Projective

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impl Sub<G2Projective> for G2Affine

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impl Sub<G2Projective> for G2Projective

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impl Sub<Gt> for Gt

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type Output = Gt

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impl Sub<Scalar> for Scalar

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impl Sub<ATerm> for ATerm

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impl Sub<B0> for UTerm

UTerm - B0 = Term

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impl Sub<B1> for UInt<UTerm, B1>

UInt<UTerm, B1> - B1 = UTerm

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impl Sub<UTerm> for UTerm

UTerm - UTerm = UTerm

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impl Sub<Z0> for Z0

Z0 - Z0 = Z0

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type Output = Z0

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impl Sub<Checked<Limb>> for &Checked<Limb>

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impl Sub<Checked<Limb>> for Checked<Limb>

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impl Sub<Wrapping<Limb>> for &oberon::inner_types::elliptic_curve::bigint::Wrapping<Limb>

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impl Sub<Wrapping<Limb>> for oberon::inner_types::elliptic_curve::bigint::Wrapping<Limb>

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impl Sub<Assume> for Assume

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impl Sub<Saturating<i8>> for Saturating<i8>

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impl Sub<Saturating<i16>> for Saturating<i16>

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impl Sub<Saturating<i32>> for Saturating<i32>

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impl Sub<Saturating<i64>> for Saturating<i64>

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impl Sub<Saturating<i128>> for Saturating<i128>

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impl Sub<Saturating<isize>> for Saturating<isize>

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impl Sub<Saturating<u8>> for Saturating<u8>

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impl Sub<Saturating<u16>> for Saturating<u16>

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impl Sub<Saturating<u32>> for Saturating<u32>

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impl Sub<Saturating<u64>> for Saturating<u64>

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impl Sub<Saturating<u128>> for Saturating<u128>

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impl Sub<Saturating<usize>> for Saturating<usize>

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impl Sub<Wrapping<i8>> for core::num::wrapping::Wrapping<i8>

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impl Sub<Wrapping<i16>> for core::num::wrapping::Wrapping<i16>

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impl Sub<Wrapping<i32>> for core::num::wrapping::Wrapping<i32>

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impl Sub<Wrapping<i64>> for core::num::wrapping::Wrapping<i64>

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impl Sub<Wrapping<i128>> for core::num::wrapping::Wrapping<i128>

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impl Sub<Wrapping<isize>> for core::num::wrapping::Wrapping<isize>

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impl Sub<Wrapping<u8>> for core::num::wrapping::Wrapping<u8>

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impl Sub<Wrapping<u16>> for core::num::wrapping::Wrapping<u16>

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impl Sub<Wrapping<u32>> for core::num::wrapping::Wrapping<u32>

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impl Sub<Wrapping<u64>> for core::num::wrapping::Wrapping<u64>

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impl Sub<Wrapping<u128>> for core::num::wrapping::Wrapping<u128>

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impl Sub<Wrapping<usize>> for core::num::wrapping::Wrapping<usize>

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impl Sub<Duration> for Duration

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impl Sub<Duration> for Instant

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impl Sub<Duration> for SystemTime

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impl Sub<Instant> for Instant

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impl<'a> Sub<f32> for &'a f32

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type Output = <f32 as Sub<f32>>::Output

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impl<'a> Sub<f64> for &'a f64

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type Output = <f64 as Sub<f64>>::Output

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

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

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

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

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

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

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

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

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

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type Output = <i128 as Sub<i128>>::Output

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

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type Output = <isize as Sub<isize>>::Output

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

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

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

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

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

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

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

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

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

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type Output = <u128 as Sub<u128>>::Output

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

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type Output = <usize as Sub<usize>>::Output

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impl<'a> Sub<Blinding> for &'a Token

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impl<'a> Sub<G1Affine> for &'a G1Projective

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impl<'a> Sub<G1Projective> for &'a G1Affine

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impl<'a> Sub<G1Projective> for &'a G1Projective

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impl<'a> Sub<G2Affine> for &'a G2Projective

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impl<'a> Sub<G2Projective> for &'a G2Affine

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impl<'a> Sub<G2Projective> for &'a G2Projective

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impl<'a> Sub<Gt> for &'a Gt

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type Output = Gt

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impl<'a> Sub<Scalar> for &'a Scalar

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

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

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

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

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

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

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

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

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

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

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

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

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impl<'a> Sub<Wrapping<i8>> for &'a core::num::wrapping::Wrapping<i8>

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impl<'a> Sub<Wrapping<i16>> for &'a core::num::wrapping::Wrapping<i16>

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impl<'a> Sub<Wrapping<i32>> for &'a core::num::wrapping::Wrapping<i32>

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impl<'a> Sub<Wrapping<i64>> for &'a core::num::wrapping::Wrapping<i64>

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impl<'a> Sub<Wrapping<i128>> for &'a core::num::wrapping::Wrapping<i128>

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impl<'a> Sub<Wrapping<isize>> for &'a core::num::wrapping::Wrapping<isize>

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impl<'a> Sub<Wrapping<u8>> for &'a core::num::wrapping::Wrapping<u8>

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impl<'a> Sub<Wrapping<u16>> for &'a core::num::wrapping::Wrapping<u16>

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impl<'a> Sub<Wrapping<u32>> for &'a core::num::wrapping::Wrapping<u32>

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impl<'a> Sub<Wrapping<u64>> for &'a core::num::wrapping::Wrapping<u64>

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impl<'a> Sub<Wrapping<u128>> for &'a core::num::wrapping::Wrapping<u128>

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impl<'a> Sub<Wrapping<usize>> for &'a core::num::wrapping::Wrapping<usize>

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impl<'a, 'b> Sub<&'b Blinding> for &'a Token

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impl<'a, 'b> Sub<&'b G1Affine> for &'a G1Projective

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impl<'a, 'b> Sub<&'b G1Projective> for &'a G1Affine

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impl<'a, 'b> Sub<&'b G1Projective> for &'a G1Projective

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impl<'a, 'b> Sub<&'b G2Affine> for &'a G2Projective

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impl<'a, 'b> Sub<&'b G2Projective> for &'a G2Affine

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impl<'a, 'b> Sub<&'b G2Projective> for &'a G2Projective

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impl<'a, 'b> Sub<&'b Gt> for &'a Gt

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type Output = Gt

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impl<'a, 'b> Sub<&'b Scalar> for &'a Scalar

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impl<'b> Sub<&'b Blinding> for Token

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impl<'b> Sub<&'b G1Affine> for G1Projective

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impl<'b> Sub<&'b G1Projective> for G1Affine

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impl<'b> Sub<&'b G1Projective> for G1Projective

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impl<'b> Sub<&'b G2Affine> for G2Projective

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impl<'b> Sub<&'b G2Projective> for G2Affine

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impl<'b> Sub<&'b G2Projective> for G2Projective

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impl<'b> Sub<&'b Gt> for Gt

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type Output = Gt

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impl<'b> Sub<&'b Scalar> for Scalar

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

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type Output = Simd<T, LANES>

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impl<C> Sub<&ScalarPrimitive<C>> for ScalarPrimitive<C>where C: Curve,

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impl<C> Sub<ScalarPrimitive<C>> for ScalarPrimitive<C>where C: Curve,

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impl<MOD, const LIMBS: usize> Sub<&Residue<MOD, LIMBS>> for &Residue<MOD, LIMBS>where MOD: ResidueParams<LIMBS>,

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type Output = Residue<MOD, LIMBS>

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impl<MOD, const LIMBS: usize> Sub<&Residue<MOD, LIMBS>> for Residue<MOD, LIMBS>where MOD: ResidueParams<LIMBS>,

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type Output = Residue<MOD, LIMBS>

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impl<MOD, const LIMBS: usize> Sub<Residue<MOD, LIMBS>> for &Residue<MOD, LIMBS>where MOD: ResidueParams<LIMBS>,

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type Output = Residue<MOD, LIMBS>

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impl<MOD, const LIMBS: usize> Sub<Residue<MOD, LIMBS>> for Residue<MOD, LIMBS>where MOD: ResidueParams<LIMBS>,

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type Output = Residue<MOD, LIMBS>

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impl<T, A> Sub<&BTreeSet<T, A>> for &BTreeSet<T, A>where T: Ord + Clone, A: Allocator + Clone,

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type Output = BTreeSet<T, A>

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impl<T, S> Sub<&HashSet<T, S>> for &HashSet<T, S>where T: Eq + Hash + Clone, S: BuildHasher + Default,

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type Output = HashSet<T, S>

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

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type Output = Simd<T, LANES>

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impl<U> Sub<B1> for UInt<U, B0>where U: Unsigned + Sub<B1>, <U as Sub<B1>>::Output: Unsigned,

UInt<U, B0> - B1 = UInt<U - B1, B1>

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type Output = UInt<<U as Sub<B1>>::Output, B1>

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impl<U> Sub<NInt<U>> for Z0where U: Unsigned + NonZero,

Z0 - N = P

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type Output = PInt<U>

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impl<U> Sub<PInt<U>> for Z0where U: Unsigned + NonZero,

Z0 - P = N

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type Output = NInt<U>

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impl<U> Sub<Z0> for NInt<U>where U: Unsigned + NonZero,

NInt - Z0 = NInt

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type Output = NInt<U>

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impl<U> Sub<Z0> for PInt<U>where U: Unsigned + NonZero,

PInt - Z0 = PInt

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type Output = PInt<U>

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impl<U, B> Sub<B0> for UInt<U, B>where U: Unsigned, B: Bit,

UInt - B0 = UInt

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type Output = UInt<U, B>

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impl<U, B> Sub<B1> for UInt<UInt<U, B>, B1>where U: Unsigned, B: Bit,

UInt<U, B1> - B1 = UInt<U, B0>

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type Output = UInt<UInt<U, B>, B0>

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impl<Ul, Bl, Ur> Sub<Ur> for UInt<Ul, Bl>where Ul: Unsigned, Bl: Bit, Ur: Unsigned, UInt<Ul, Bl>: PrivateSub<Ur>, <UInt<Ul, Bl> as PrivateSub<Ur>>::Output: Trim,

Subtracting unsigned integers. We just do our PrivateSub and then Trim the output.

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type Output = <<UInt<Ul, Bl> as PrivateSub<Ur>>::Output as Trim>::Output

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impl<Ul, Ur> Sub<NInt<Ur>> for NInt<Ul>where Ul: Unsigned + NonZero, Ur: Unsigned + NonZero + Cmp<Ul> + PrivateIntegerAdd<<Ur as Cmp<Ul>>::Output, Ul>,

N(Ul) - N(Ur): We resolve this with our PrivateAdd

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type Output = <Ur as PrivateIntegerAdd<<Ur as Cmp<Ul>>::Output, Ul>>::Output

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impl<Ul, Ur> Sub<NInt<Ur>> for PInt<Ul>where Ul: Unsigned + NonZero + Add<Ur>, Ur: Unsigned + NonZero, <Ul as Add<Ur>>::Output: Unsigned + NonZero,

P(Ul) - N(Ur) = P(Ul + Ur)

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type Output = PInt<<Ul as Add<Ur>>::Output>

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impl<Ul, Ur> Sub<PInt<Ur>> for NInt<Ul>where Ul: Unsigned + NonZero + Add<Ur>, Ur: Unsigned + NonZero, <Ul as Add<Ur>>::Output: Unsigned + NonZero,

N(Ul) - P(Ur) = N(Ul + Ur)

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type Output = NInt<<Ul as Add<Ur>>::Output>

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impl<Ul, Ur> Sub<PInt<Ur>> for PInt<Ul>where Ul: Unsigned + NonZero + Cmp<Ur> + PrivateIntegerAdd<<Ul as Cmp<Ur>>::Output, Ur>, Ur: Unsigned + NonZero,

P(Ul) - P(Ur): We resolve this with our PrivateAdd

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type Output = <Ul as PrivateIntegerAdd<<Ul as Cmp<Ur>>::Output, Ur>>::Output

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impl<Vl, Al, Vr, Ar> Sub<TArr<Vr, Ar>> for TArr<Vl, Al>where Vl: Sub<Vr>, Al: Sub<Ar>,

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type Output = TArr<<Vl as Sub<Vr>>::Output, <Al as Sub<Ar>>::Output>

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impl<const LIMBS: usize> Sub<&DynResidue<LIMBS>> for &DynResidue<LIMBS>

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type Output = DynResidue<LIMBS>

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impl<const LIMBS: usize> Sub<&DynResidue<LIMBS>> for DynResidue<LIMBS>

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type Output = DynResidue<LIMBS>

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impl<const LIMBS: usize> Sub<&Checked<Uint<LIMBS>>> for &Checked<Uint<LIMBS>>

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type Output = Checked<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<&Checked<Uint<LIMBS>>> for Checked<Uint<LIMBS>>

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type Output = Checked<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<&Wrapping<Uint<LIMBS>>> for &oberon::inner_types::elliptic_curve::bigint::Wrapping<Uint<LIMBS>>

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type Output = Wrapping<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<&Wrapping<Uint<LIMBS>>> for oberon::inner_types::elliptic_curve::bigint::Wrapping<Uint<LIMBS>>

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type Output = Wrapping<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<DynResidue<LIMBS>> for &DynResidue<LIMBS>

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type Output = DynResidue<LIMBS>

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impl<const LIMBS: usize> Sub<DynResidue<LIMBS>> for DynResidue<LIMBS>

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type Output = DynResidue<LIMBS>

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impl<const LIMBS: usize> Sub<Checked<Uint<LIMBS>>> for &Checked<Uint<LIMBS>>

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type Output = Checked<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<Checked<Uint<LIMBS>>> for Checked<Uint<LIMBS>>

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type Output = Checked<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<Wrapping<Uint<LIMBS>>> for &oberon::inner_types::elliptic_curve::bigint::Wrapping<Uint<LIMBS>>

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type Output = Wrapping<Uint<LIMBS>>

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impl<const LIMBS: usize> Sub<Wrapping<Uint<LIMBS>>> for oberon::inner_types::elliptic_curve::bigint::Wrapping<Uint<LIMBS>>

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type Output = Wrapping<Uint<LIMBS>>

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impl<const N: usize> Sub<Simd<f32, N>> for Simd<f32, N>where f32: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<f32, N>

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impl<const N: usize> Sub<Simd<f64, N>> for Simd<f64, N>where f64: SimdElement, LaneCount<N>: SupportedLaneCount,

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type Output = Simd<f64, N>

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

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type Output = Simd<usize, N>