Trait gclient::ext::sp_core::sp_std::ops::Mul

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

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

The multiplication operator *.

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

§Examples

§Multipliable rational numbers

use std::ops::Mul;

// By the fundamental theorem of arithmetic, rational numbers in lowest
// terms are unique. So, by keeping `Rational`s in reduced form, we can
// derive `Eq` and `PartialEq`.
#[derive(Debug, Eq, PartialEq)]
struct Rational {
    numerator: usize,
    denominator: usize,
}

impl Rational {
    fn new(numerator: usize, denominator: usize) -> Self {
        if denominator == 0 {
            panic!("Zero is an invalid denominator!");
        }

        // Reduce to lowest terms by dividing by the greatest common
        // divisor.
        let gcd = gcd(numerator, denominator);
        Self {
            numerator: numerator / gcd,
            denominator: denominator / gcd,
        }
    }
}

impl Mul for Rational {
    // The multiplication of rational numbers is a closed operation.
    type Output = Self;

    fn mul(self, rhs: Self) -> Self {
        let numerator = self.numerator * rhs.numerator;
        let denominator = self.denominator * rhs.denominator;
        Self::new(numerator, denominator)
    }
}

// Euclid's two-thousand-year-old algorithm for finding the greatest common
// divisor.
fn gcd(x: usize, y: usize) -> usize {
    let mut x = x;
    let mut y = y;
    while y != 0 {
        let t = y;
        y = x % y;
        x = t;
    }
    x
}

assert_eq!(Rational::new(1, 2), Rational::new(2, 4));
assert_eq!(Rational::new(2, 3) * Rational::new(3, 4),
           Rational::new(1, 2));

§Multiplying vectors by scalars as in linear algebra

use std::ops::Mul;

struct Scalar { value: usize }

#[derive(Debug, PartialEq)]
struct Vector { value: Vec<usize> }

impl Mul<Scalar> for Vector {
    type Output = Self;

    fn mul(self, rhs: Scalar) -> Self::Output {
        Self { value: self.value.iter().map(|v| v * rhs.value).collect() }
    }
}

let vector = Vector { value: vec![2, 4, 6] };
let scalar = Scalar { value: 3 };
assert_eq!(vector * scalar, Vector { value: vec![6, 12, 18] });

Required Associated Types§

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type Output

The resulting type after applying the * operator.

Required Methods§

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

Performs the * operation.

§Example
assert_eq!(12 * 2, 24);

Implementors§

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impl Mul for Sign

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type Output = Sign

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impl Mul for f16

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type Output = f16

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impl Mul for f32

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type Output = f32

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impl Mul for f64

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type Output = f64

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impl Mul for f128

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type Output = f128

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impl Mul for i8

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type Output = i8

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impl Mul for i16

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type Output = i16

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impl Mul for i32

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type Output = i32

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impl Mul for i64

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type Output = i64

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impl Mul for i128

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type Output = i128

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impl Mul for isize

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impl Mul for u8

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type Output = u8

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impl Mul for u16

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type Output = u16

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impl Mul for u32

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type Output = u32

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impl Mul for u64

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type Output = u64

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impl Mul for u128

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type Output = u128

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impl Mul for usize

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impl Mul for gclient::ext::sp_runtime::biguint::BigUint

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impl Mul for FixedI64

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impl Mul for FixedI128

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impl Mul for FixedU64

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impl Mul for FixedU128

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impl Mul for PerU16

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impl Mul for Perbill

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impl Mul for Percent

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impl Mul for Permill

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impl Mul for Perquintill

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impl Mul for U256

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type Output = U256

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impl Mul for U512

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type Output = U512

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impl Mul for Saturating<i8>

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impl Mul for Saturating<i16>

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impl Mul for Saturating<i32>

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impl Mul for Saturating<i64>

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impl Mul for Saturating<i128>

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impl Mul for Saturating<isize>

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impl Mul for Saturating<u8>

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impl Mul for Saturating<u16>

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impl Mul for Saturating<u32>

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impl Mul for Saturating<u64>

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impl Mul for Saturating<u128>

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impl Mul for Saturating<usize>

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impl Mul for Wrapping<i8>

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impl Mul for Wrapping<i16>

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impl Mul for Wrapping<i32>

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impl Mul for Wrapping<i64>

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impl Mul for Wrapping<i128>

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impl Mul for Wrapping<isize>

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impl Mul for Wrapping<u8>

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impl Mul for Wrapping<u16>

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impl Mul for Wrapping<u32>

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impl Mul for Wrapping<u64>

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impl Mul for Wrapping<u128>

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impl Mul for Wrapping<usize>

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impl Mul for BigInt

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impl Mul for num_bigint::biguint::BigUint

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impl Mul for Field

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type Output = Field

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impl Mul for NonZeroU256

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type Output = NonZeroU256

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impl Mul for Scalar

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type Output = Scalar

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impl Mul for Scalar

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type Output = Scalar

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impl Mul for U128

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type Output = U128

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impl Mul<&f16> for &f16

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type Output = <f16 as Mul>::Output

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impl Mul<&f16> for f16

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type Output = <f16 as Mul>::Output

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impl Mul<&f32> for &f32

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type Output = <f32 as Mul>::Output

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impl Mul<&f32> for &Rgb

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type Output = Rgb

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impl Mul<&f32> for f32

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type Output = <f32 as Mul>::Output

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impl Mul<&f32> for Rgb

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type Output = Rgb

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impl Mul<&f64> for &f64

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type Output = <f64 as Mul>::Output

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impl Mul<&f64> for f64

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type Output = <f64 as Mul>::Output

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impl Mul<&f128> for &f128

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type Output = <f128 as Mul>::Output

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impl Mul<&f128> for f128

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type Output = <f128 as Mul>::Output

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impl Mul<&i8> for &i8

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type Output = <i8 as Mul>::Output

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impl Mul<&i8> for &BigInt

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impl Mul<&i8> for i8

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type Output = <i8 as Mul>::Output

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impl Mul<&i8> for BigInt

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impl Mul<&i16> for &i16

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type Output = <i16 as Mul>::Output

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impl Mul<&i16> for &BigInt

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impl Mul<&i16> for i16

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type Output = <i16 as Mul>::Output

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impl Mul<&i16> for BigInt

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impl Mul<&i32> for &i32

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type Output = <i32 as Mul>::Output

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impl Mul<&i32> for &BigInt

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impl Mul<&i32> for i32

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type Output = <i32 as Mul>::Output

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impl Mul<&i32> for BigInt

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impl Mul<&i64> for &i64

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type Output = <i64 as Mul>::Output

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impl Mul<&i64> for &BigInt

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impl Mul<&i64> for i64

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type Output = <i64 as Mul>::Output

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impl Mul<&i64> for BigInt

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impl Mul<&i128> for &i128

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type Output = <i128 as Mul>::Output

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impl Mul<&i128> for &BigInt

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impl Mul<&i128> for i128

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type Output = <i128 as Mul>::Output

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impl Mul<&i128> for BigInt

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impl Mul<&isize> for &isize

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type Output = <isize as Mul>::Output

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impl Mul<&isize> for &BigInt

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impl Mul<&isize> for isize

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type Output = <isize as Mul>::Output

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impl Mul<&isize> for BigInt

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impl Mul<&u8> for &u8

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type Output = <u8 as Mul>::Output

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impl Mul<&u8> for &BigInt

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impl Mul<&u8> for &num_bigint::biguint::BigUint

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impl Mul<&u8> for u8

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type Output = <u8 as Mul>::Output

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impl Mul<&u8> for BigInt

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impl Mul<&u8> for num_bigint::biguint::BigUint

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impl Mul<&u16> for &u16

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type Output = <u16 as Mul>::Output

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impl Mul<&u16> for &BigInt

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impl Mul<&u16> for &num_bigint::biguint::BigUint

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impl Mul<&u16> for u16

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type Output = <u16 as Mul>::Output

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impl Mul<&u16> for BigInt

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impl Mul<&u16> for num_bigint::biguint::BigUint

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impl Mul<&u32> for &u32

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type Output = <u32 as Mul>::Output

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impl Mul<&u32> for &BigInt

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impl Mul<&u32> for &num_bigint::biguint::BigUint

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impl Mul<&u32> for u32

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type Output = <u32 as Mul>::Output

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impl Mul<&u32> for BigInt

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impl Mul<&u32> for num_bigint::biguint::BigUint

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impl Mul<&u64> for &u64

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type Output = <u64 as Mul>::Output

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impl Mul<&u64> for &BigInt

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impl Mul<&u64> for &num_bigint::biguint::BigUint

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impl Mul<&u64> for u64

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type Output = <u64 as Mul>::Output

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impl Mul<&u64> for BigInt

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impl Mul<&u64> for num_bigint::biguint::BigUint

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impl Mul<&u128> for &u128

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type Output = <u128 as Mul>::Output

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impl Mul<&u128> for &BigInt

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impl Mul<&u128> for &num_bigint::biguint::BigUint

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impl Mul<&u128> for u128

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type Output = <u128 as Mul>::Output

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impl Mul<&u128> for BigInt

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impl Mul<&u128> for num_bigint::biguint::BigUint

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impl Mul<&usize> for &usize

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type Output = <usize as Mul>::Output

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impl Mul<&usize> for &BigInt

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impl Mul<&usize> for &num_bigint::biguint::BigUint

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impl Mul<&usize> for usize

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type Output = <usize as Mul>::Output

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impl Mul<&usize> for BigInt

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impl Mul<&usize> for num_bigint::biguint::BigUint

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impl Mul<&Saturating<i8>> for &Saturating<i8>

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impl Mul<&Saturating<i8>> for Saturating<i8>

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impl Mul<&Saturating<i16>> for &Saturating<i16>

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impl Mul<&Saturating<i16>> for Saturating<i16>

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impl Mul<&Saturating<i32>> for &Saturating<i32>

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impl Mul<&Saturating<i32>> for Saturating<i32>

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impl Mul<&Saturating<i64>> for &Saturating<i64>

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impl Mul<&Saturating<i64>> for Saturating<i64>

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impl Mul<&Saturating<i128>> for &Saturating<i128>

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impl Mul<&Saturating<i128>> for Saturating<i128>

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impl Mul<&Saturating<isize>> for &Saturating<isize>

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impl Mul<&Saturating<isize>> for Saturating<isize>

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impl Mul<&Saturating<u8>> for &Saturating<u8>

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impl Mul<&Saturating<u8>> for Saturating<u8>

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impl Mul<&Saturating<u16>> for &Saturating<u16>

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impl Mul<&Saturating<u16>> for Saturating<u16>

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impl Mul<&Saturating<u32>> for &Saturating<u32>

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impl Mul<&Saturating<u32>> for Saturating<u32>

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impl Mul<&Saturating<u64>> for &Saturating<u64>

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impl Mul<&Saturating<u64>> for Saturating<u64>

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impl Mul<&Saturating<u128>> for &Saturating<u128>

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impl Mul<&Saturating<u128>> for Saturating<u128>

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impl Mul<&Saturating<usize>> for &Saturating<usize>

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impl Mul<&Saturating<usize>> for Saturating<usize>

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impl Mul<&Wrapping<i8>> for &Wrapping<i8>

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type Output = <Wrapping<i8> as Mul>::Output

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impl Mul<&Wrapping<i8>> for Wrapping<i8>

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type Output = <Wrapping<i8> as Mul>::Output

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impl Mul<&Wrapping<i16>> for &Wrapping<i16>

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impl Mul<&Wrapping<i16>> for Wrapping<i16>

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impl Mul<&Wrapping<i32>> for &Wrapping<i32>

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impl Mul<&Wrapping<i32>> for Wrapping<i32>

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impl Mul<&Wrapping<i64>> for &Wrapping<i64>

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impl Mul<&Wrapping<i64>> for Wrapping<i64>

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impl Mul<&Wrapping<i128>> for &Wrapping<i128>

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impl Mul<&Wrapping<i128>> for Wrapping<i128>

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impl Mul<&Wrapping<isize>> for &Wrapping<isize>

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impl Mul<&Wrapping<isize>> for Wrapping<isize>

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impl Mul<&Wrapping<u8>> for &Wrapping<u8>

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type Output = <Wrapping<u8> as Mul>::Output

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impl Mul<&Wrapping<u8>> for Wrapping<u8>

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type Output = <Wrapping<u8> as Mul>::Output

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impl Mul<&Wrapping<u16>> for &Wrapping<u16>

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impl Mul<&Wrapping<u16>> for Wrapping<u16>

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impl Mul<&Wrapping<u32>> for &Wrapping<u32>

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impl Mul<&Wrapping<u32>> for Wrapping<u32>

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impl Mul<&Wrapping<u64>> for &Wrapping<u64>

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impl Mul<&Wrapping<u64>> for Wrapping<u64>

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impl Mul<&Wrapping<u128>> for &Wrapping<u128>

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impl Mul<&Wrapping<u128>> for Wrapping<u128>

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impl Mul<&Wrapping<usize>> for &Wrapping<usize>

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impl Mul<&Wrapping<usize>> for Wrapping<usize>

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impl Mul<&BigInt> for &i8

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impl Mul<&BigInt> for &i16

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impl Mul<&BigInt> for &i32

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impl Mul<&BigInt> for &i64

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impl Mul<&BigInt> for &i128

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impl Mul<&BigInt> for &isize

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impl Mul<&BigInt> for &u8

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impl Mul<&BigInt> for &u16

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impl Mul<&BigInt> for &u32

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impl Mul<&BigInt> for &u64

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impl Mul<&BigInt> for &u128

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impl Mul<&BigInt> for &usize

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impl Mul<&BigInt> for &BigInt

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impl Mul<&BigInt> for i8

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impl Mul<&BigInt> for i16

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impl Mul<&BigInt> for i32

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impl Mul<&BigInt> for i64

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impl Mul<&BigInt> for i128

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impl Mul<&BigInt> for isize

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impl Mul<&BigInt> for u8

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impl Mul<&BigInt> for u16

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impl Mul<&BigInt> for u32

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impl Mul<&BigInt> for u64

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impl Mul<&BigInt> for u128

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impl Mul<&BigInt> for usize

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impl Mul<&BigInt> for BigInt

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impl Mul<&BigUint> for &u8

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impl Mul<&BigUint> for &u16

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impl Mul<&BigUint> for &u32

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impl Mul<&BigUint> for &u64

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impl Mul<&BigUint> for &u128

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impl Mul<&BigUint> for &usize

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impl Mul<&BigUint> for &num_bigint::biguint::BigUint

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impl Mul<&BigUint> for u8

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impl Mul<&BigUint> for u16

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impl Mul<&BigUint> for u32

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impl Mul<&BigUint> for u64

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impl Mul<&BigUint> for u128

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impl Mul<&BigUint> for usize

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impl Mul<&BigUint> for num_bigint::biguint::BigUint

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impl Mul<&MontgomeryPoint> for &Scalar

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type Output = MontgomeryPoint

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impl Mul<&Rgb> for &f32

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type Output = Rgb

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impl Mul<&Rgb> for f32

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type Output = Rgb

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impl Mul<&Scalar> for &MontgomeryPoint

Multiply this MontgomeryPoint by a Scalar.

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type Output = MontgomeryPoint

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impl Mul<f32> for &Rgb

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type Output = Rgb

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impl Mul<f32> for Duration

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type Output = Duration

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impl Mul<f32> for Rgb

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type Output = Rgb

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impl Mul<f64> for Duration

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type Output = Duration

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impl Mul<i8> for &BigInt

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impl Mul<i8> for U256

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type Output = U256

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impl Mul<i8> for U512

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type Output = U512

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impl Mul<i8> for BigInt

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impl Mul<i8> for Duration

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type Output = Duration

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impl Mul<i8> for U128

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type Output = U128

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impl Mul<i16> for &BigInt

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impl Mul<i16> for U256

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type Output = U256

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impl Mul<i16> for U512

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type Output = U512

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impl Mul<i16> for BigInt

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impl Mul<i16> for Duration

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type Output = Duration

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impl Mul<i16> for U128

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type Output = U128

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impl Mul<i32> for &BigInt

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impl Mul<i32> for U256

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type Output = U256

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impl Mul<i32> for U512

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type Output = U512

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impl Mul<i32> for BigInt

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impl Mul<i32> for Duration

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type Output = Duration

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impl Mul<i32> for U128

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type Output = U128

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impl Mul<i64> for &BigInt

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impl Mul<i64> for U256

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type Output = U256

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impl Mul<i64> for U512

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type Output = U512

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impl Mul<i64> for BigInt

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impl Mul<i64> for U128

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type Output = U128

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impl Mul<i128> for &BigInt

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impl Mul<i128> for BigInt

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impl Mul<isize> for &BigInt

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impl Mul<isize> for U256

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type Output = U256

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impl Mul<isize> for U512

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type Output = U512

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impl Mul<isize> for BigInt

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impl Mul<isize> for U128

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type Output = U128

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impl Mul<u8> for &BigInt

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impl Mul<u8> for &num_bigint::biguint::BigUint

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impl Mul<u8> for U256

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type Output = U256

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impl Mul<u8> for U512

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type Output = U512

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impl Mul<u8> for BigInt

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impl Mul<u8> for num_bigint::biguint::BigUint

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impl Mul<u8> for Duration

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type Output = Duration

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impl Mul<u8> for U128

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type Output = U128

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impl Mul<u16> for &BigInt

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impl Mul<u16> for &num_bigint::biguint::BigUint

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impl Mul<u16> for U256

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type Output = U256

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impl Mul<u16> for U512

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type Output = U512

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impl Mul<u16> for BigInt

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impl Mul<u16> for num_bigint::biguint::BigUint

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impl Mul<u16> for Duration

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type Output = Duration

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impl Mul<u16> for U128

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type Output = U128

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impl Mul<u32> for &BigInt

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impl Mul<u32> for &num_bigint::biguint::BigUint

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impl Mul<u32> for gclient::ext::sp_runtime::scale_info::prelude::time::Duration

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impl Mul<u32> for U256

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type Output = U256

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impl Mul<u32> for U512

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type Output = U512

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impl Mul<u32> for BigInt

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impl Mul<u32> for num_bigint::biguint::BigUint

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impl Mul<u32> for Duration

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type Output = Duration

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impl Mul<u32> for U128

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type Output = U128

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impl Mul<u64> for &BigInt

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impl Mul<u64> for &num_bigint::biguint::BigUint

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impl Mul<u64> for U256

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type Output = U256

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impl Mul<u64> for U512

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type Output = U512

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impl Mul<u64> for BigInt

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impl Mul<u64> for num_bigint::biguint::BigUint

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impl Mul<u64> for U128

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type Output = U128

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impl Mul<u128> for &BigInt

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impl Mul<u128> for &num_bigint::biguint::BigUint

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impl Mul<u128> for BigInt

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impl Mul<u128> for num_bigint::biguint::BigUint

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impl Mul<usize> for &BigInt

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impl Mul<usize> for &num_bigint::biguint::BigUint

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impl Mul<usize> for U256

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type Output = U256

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impl Mul<usize> for U512

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type Output = U512

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impl Mul<usize> for BigInt

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impl Mul<usize> for num_bigint::biguint::BigUint

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impl Mul<usize> for U128

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type Output = U128

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impl Mul<Duration> for u32

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impl Mul<BigInt> for &i8

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impl Mul<BigInt> for &i16

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impl Mul<BigInt> for &i32

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impl Mul<BigInt> for &i64

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impl Mul<BigInt> for &i128

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impl Mul<BigInt> for &isize

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impl Mul<BigInt> for &u8

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impl Mul<BigInt> for &u16

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impl Mul<BigInt> for &u32

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impl Mul<BigInt> for &u64

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impl Mul<BigInt> for &u128

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impl Mul<BigInt> for &usize

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impl Mul<BigInt> for &BigInt

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impl Mul<BigInt> for i8

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impl Mul<BigInt> for i16

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impl Mul<BigInt> for i32

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impl Mul<BigInt> for i64

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impl Mul<BigInt> for i128

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impl Mul<BigInt> for isize

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impl Mul<BigInt> for u8

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impl Mul<BigInt> for u16

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impl Mul<BigInt> for u32

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impl Mul<BigInt> for u64

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impl Mul<BigInt> for u128

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impl Mul<BigInt> for usize

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impl Mul<BigUint> for &u8

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impl Mul<BigUint> for &u16

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impl Mul<BigUint> for &u32

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impl Mul<BigUint> for &u64

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impl Mul<BigUint> for &u128

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impl Mul<BigUint> for &usize

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impl Mul<BigUint> for &num_bigint::biguint::BigUint

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impl Mul<BigUint> for u8

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impl Mul<BigUint> for u16

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impl Mul<BigUint> for u32

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impl Mul<BigUint> for u64

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impl Mul<BigUint> for u128

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impl Mul<BigUint> for usize

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impl Mul<ATerm> for Z0

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impl Mul<B0> for UTerm

UTerm * B0 = UTerm

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impl Mul<B1> for UTerm

UTerm * B1 = UTerm

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impl Mul<Duration> for f32

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type Output = Duration

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impl Mul<Duration> for f64

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type Output = Duration

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impl Mul<Duration> for i8

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type Output = Duration

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impl Mul<Duration> for i16

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type Output = Duration

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impl Mul<Duration> for i32

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type Output = Duration

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impl Mul<Duration> for u8

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type Output = Duration

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impl Mul<Duration> for u16

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type Output = Duration

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impl Mul<Duration> for u32

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type Output = Duration

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impl Mul<EdwardsPoint> for Scalar

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type Output = EdwardsPoint

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impl Mul<MontgomeryPoint> for Scalar

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type Output = MontgomeryPoint

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impl Mul<Rgb> for &f32

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type Output = Rgb

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impl Mul<Rgb> for f32

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type Output = Rgb

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impl Mul<RistrettoPoint> for Scalar

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type Output = RistrettoPoint

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impl Mul<Scalar> for EdwardsPoint

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type Output = EdwardsPoint

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impl Mul<Scalar> for MontgomeryPoint

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type Output = MontgomeryPoint

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impl Mul<Scalar> for RistrettoPoint

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type Output = RistrettoPoint

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impl Mul<Weight> for u8

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type Output = Weight

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impl Mul<Weight> for u16

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type Output = Weight

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impl Mul<Weight> for u32

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type Output = Weight

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impl Mul<Weight> for u64

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type Output = Weight

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impl Mul<Weight> for PerU16

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type Output = Weight

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impl Mul<Weight> for Perbill

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type Output = Weight

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impl Mul<Weight> for Percent

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type Output = Weight

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impl Mul<Weight> for Permill

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type Output = Weight

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impl Mul<Weight> for Perquintill

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type Output = Weight

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impl<'a> Mul for &'a U256

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type Output = U256

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impl<'a> Mul for &'a U512

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type Output = U512

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impl<'a> Mul for &'a NonZeroU256

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type Output = NonZeroU256

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impl<'a> Mul for &'a U128

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type Output = U128

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impl<'a> Mul<&'a i8> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a i8> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a i8> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a i8> for U256

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type Output = U256

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impl<'a> Mul<&'a i8> for U512

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type Output = U512

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impl<'a> Mul<&'a i8> for U128

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type Output = U128

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impl<'a> Mul<&'a i16> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a i16> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a i16> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a i16> for U256

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type Output = U256

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impl<'a> Mul<&'a i16> for U512

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type Output = U512

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impl<'a> Mul<&'a i16> for U128

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type Output = U128

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impl<'a> Mul<&'a i32> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a i32> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a i32> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a i32> for U256

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type Output = U256

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impl<'a> Mul<&'a i32> for U512

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type Output = U512

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impl<'a> Mul<&'a i32> for U128

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type Output = U128

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impl<'a> Mul<&'a i64> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a i64> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a i64> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a i64> for U256

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type Output = U256

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impl<'a> Mul<&'a i64> for U512

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type Output = U512

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impl<'a> Mul<&'a i64> for U128

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type Output = U128

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impl<'a> Mul<&'a isize> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a isize> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a isize> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a isize> for U256

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type Output = U256

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impl<'a> Mul<&'a isize> for U512

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type Output = U512

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impl<'a> Mul<&'a isize> for U128

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type Output = U128

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impl<'a> Mul<&'a u8> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a u8> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a u8> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a u8> for U256

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type Output = U256

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impl<'a> Mul<&'a u8> for U512

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type Output = U512

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impl<'a> Mul<&'a u8> for U128

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type Output = U128

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impl<'a> Mul<&'a u16> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a u16> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a u16> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a u16> for U256

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type Output = U256

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impl<'a> Mul<&'a u16> for U512

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type Output = U512

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impl<'a> Mul<&'a u16> for U128

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type Output = U128

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impl<'a> Mul<&'a u32> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a u32> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a u32> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a u32> for U256

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type Output = U256

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impl<'a> Mul<&'a u32> for U512

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type Output = U512

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impl<'a> Mul<&'a u32> for U128

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type Output = U128

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impl<'a> Mul<&'a u64> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a u64> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a u64> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a u64> for U256

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type Output = U256

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impl<'a> Mul<&'a u64> for U512

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type Output = U512

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impl<'a> Mul<&'a u64> for U128

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type Output = U128

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impl<'a> Mul<&'a usize> for &'a U256

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type Output = U256

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impl<'a> Mul<&'a usize> for &'a U512

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type Output = U512

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impl<'a> Mul<&'a usize> for &'a U128

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type Output = U128

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impl<'a> Mul<&'a usize> for U256

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type Output = U256

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impl<'a> Mul<&'a usize> for U512

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type Output = U512

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impl<'a> Mul<&'a usize> for U128

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type Output = U128

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impl<'a> Mul<&'a U256> for U256

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type Output = U256

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impl<'a> Mul<&'a U512> for U512

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type Output = U512

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impl<'a> Mul<&'a NonZeroU256> for NonZeroU256

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type Output = NonZeroU256

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impl<'a> Mul<&'a U128> for U128

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type Output = U128

1.0.0 · source§

impl<'a> Mul<f16> for &'a f16

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type Output = <f16 as Mul>::Output

1.0.0 · source§

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

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type Output = <f32 as Mul>::Output

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

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type Output = <f64 as Mul>::Output

1.0.0 · source§

impl<'a> Mul<f128> for &'a f128

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type Output = <f128 as Mul>::Output

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

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type Output = <i8 as Mul>::Output

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impl<'a> Mul<i8> for &'a U256

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type Output = U256

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impl<'a> Mul<i8> for &'a U512

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type Output = U512

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impl<'a> Mul<i8> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <i16 as Mul>::Output

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impl<'a> Mul<i16> for &'a U256

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type Output = U256

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impl<'a> Mul<i16> for &'a U512

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type Output = U512

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impl<'a> Mul<i16> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <i32 as Mul>::Output

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impl<'a> Mul<i32> for &'a U256

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type Output = U256

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impl<'a> Mul<i32> for &'a U512

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type Output = U512

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impl<'a> Mul<i32> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <i64 as Mul>::Output

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impl<'a> Mul<i64> for &'a U256

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type Output = U256

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impl<'a> Mul<i64> for &'a U512

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type Output = U512

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impl<'a> Mul<i64> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <i128 as Mul>::Output

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

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type Output = <isize as Mul>::Output

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impl<'a> Mul<isize> for &'a U256

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type Output = U256

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impl<'a> Mul<isize> for &'a U512

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type Output = U512

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impl<'a> Mul<isize> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <u8 as Mul>::Output

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impl<'a> Mul<u8> for &'a U256

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type Output = U256

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impl<'a> Mul<u8> for &'a U512

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type Output = U512

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impl<'a> Mul<u8> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <u16 as Mul>::Output

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impl<'a> Mul<u16> for &'a U256

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type Output = U256

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impl<'a> Mul<u16> for &'a U512

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type Output = U512

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impl<'a> Mul<u16> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <u32 as Mul>::Output

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impl<'a> Mul<u32> for &'a U256

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type Output = U256

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impl<'a> Mul<u32> for &'a U512

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type Output = U512

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impl<'a> Mul<u32> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <u64 as Mul>::Output

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impl<'a> Mul<u64> for &'a U256

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type Output = U256

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impl<'a> Mul<u64> for &'a U512

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type Output = U512

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impl<'a> Mul<u64> for &'a U128

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type Output = U128

1.0.0 · source§

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

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type Output = <u128 as Mul>::Output

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

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type Output = <usize as Mul>::Output

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impl<'a> Mul<usize> for &'a U256

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type Output = U256

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impl<'a> Mul<usize> for &'a U512

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type Output = U512

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impl<'a> Mul<usize> for &'a U128

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type Output = U128

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impl<'a> Mul<U256> for &'a U256

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type Output = U256

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impl<'a> Mul<U512> for &'a U512

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type Output = U512

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.74.0 · source§

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

1.14.0 · source§

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

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type Output = <Wrapping<i8> as Mul>::Output

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

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type Output = <Wrapping<u8> as Mul>::Output

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

1.14.0 · source§

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

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impl<'a> Mul<EdwardsPoint> for &'a Scalar

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type Output = EdwardsPoint

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impl<'a> Mul<MontgomeryPoint> for &'a Scalar

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type Output = MontgomeryPoint

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impl<'a> Mul<NonZeroU256> for &'a NonZeroU256

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type Output = NonZeroU256

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impl<'a> Mul<RistrettoPoint> for &'a Scalar

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type Output = RistrettoPoint

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impl<'a> Mul<Scalar> for &'a EdwardsPoint

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type Output = EdwardsPoint

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impl<'a> Mul<Scalar> for &'a MontgomeryPoint

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type Output = MontgomeryPoint

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impl<'a> Mul<Scalar> for &'a RistrettoPoint

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type Output = RistrettoPoint

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

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type Output = Scalar

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impl<'a> Mul<U128> for &'a U128

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type Output = U128

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impl<'a, 'b> Mul<&'a EdwardsBasepointTable> for &'b Scalar

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'a EdwardsBasepointTableRadix32> for &'b Scalar

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'a EdwardsBasepointTableRadix64> for &'b Scalar

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'a EdwardsBasepointTableRadix128> for &'b Scalar

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'a EdwardsBasepointTableRadix256> for &'b Scalar

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'a Field> for &'b Field

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type Output = Field

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impl<'a, 'b> Mul<&'a RistrettoBasepointTable> for &'b Scalar

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type Output = RistrettoPoint

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

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type Output = Scalar

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impl<'a, 'b> Mul<&'b EdwardsPoint> for &'a Scalar

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b RistrettoPoint> for &'a Scalar

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type Output = RistrettoPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a EdwardsBasepointTable

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a EdwardsBasepointTableRadix32

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a EdwardsBasepointTableRadix64

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a EdwardsBasepointTableRadix128

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a EdwardsBasepointTableRadix256

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a EdwardsPoint

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type Output = EdwardsPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a RistrettoBasepointTable

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type Output = RistrettoPoint

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impl<'a, 'b> Mul<&'b Scalar> for &'a RistrettoPoint

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type Output = RistrettoPoint

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

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type Output = Scalar

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impl<'a, 'b, T> Mul<&'b Ratio<T>> for &'a Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<'a, 'b, T> Mul<&'b T> for &'a Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<'a, T> Mul<&'a Ratio<T>> for Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

source§

impl<'a, T> Mul<&'a T> for Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<'a, T> Mul<Ratio<T>> for &'a Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<'a, T> Mul<T> for &'a Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<'b> Mul<&'b EdwardsPoint> for Scalar

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type Output = EdwardsPoint

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impl<'b> Mul<&'b MontgomeryPoint> for Scalar

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type Output = MontgomeryPoint

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impl<'b> Mul<&'b RistrettoPoint> for Scalar

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type Output = RistrettoPoint

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impl<'b> Mul<&'b Scalar> for EdwardsPoint

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type Output = EdwardsPoint

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impl<'b> Mul<&'b Scalar> for MontgomeryPoint

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type Output = MontgomeryPoint

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impl<'b> Mul<&'b Scalar> for RistrettoPoint

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type Output = RistrettoPoint

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

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type Output = Scalar

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

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type Output = Simd<T, N>

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impl<I> Mul<I> for Z0
where I: Integer,

Z0 * I = Z0

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type Output = Z0

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impl<N> Mul<N> for PerU16
where N: Div<Output = N> + Clone + Mul<Output = N> + UniqueSaturatedInto<u16> + Add<Output = N> + Rem<Output = N> + Unsigned, u16: Into<N>,

Non-overflow multiplication.

This is tailored to be used with a balance type.

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type Output = N

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impl<N> Mul<N> for Perbill
where N: Div<Output = N> + Clone + Mul<Output = N> + UniqueSaturatedInto<u32> + Add<Output = N> + Rem<Output = N> + Unsigned, u32: Into<N>,

Non-overflow multiplication.

This is tailored to be used with a balance type.

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type Output = N

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impl<N> Mul<N> for Percent
where N: Div<Output = N> + Clone + Mul<Output = N> + UniqueSaturatedInto<u8> + Add<Output = N> + Rem<Output = N> + Unsigned, u8: Into<N>,

Non-overflow multiplication.

This is tailored to be used with a balance type.

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type Output = N

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impl<N> Mul<N> for Permill
where N: Div<Output = N> + Clone + Mul<Output = N> + UniqueSaturatedInto<u32> + Add<Output = N> + Rem<Output = N> + Unsigned, u32: Into<N>,

Non-overflow multiplication.

This is tailored to be used with a balance type.

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type Output = N

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impl<N> Mul<N> for Perquintill
where N: Div<Output = N> + Clone + Mul<Output = N> + UniqueSaturatedInto<u64> + Add<Output = N> + Rem<Output = N> + Unsigned, u64: Into<N>,

Non-overflow multiplication.

This is tailored to be used with a balance type.

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type Output = N

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impl<Rhs> Mul<Rhs> for ATerm

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impl<T> Mul for Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<T> Mul<T> for Ratio<T>
where T: Clone + Integer,

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type Output = Ratio<T>

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impl<T> Mul<T> for Bytes
where T: Into<Bytes>,

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type Output = Bytes

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impl<T> Mul<T> for F32
where T: Into<F32>,

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type Output = F32

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impl<T> Mul<T> for F64
where T: Into<F64>,

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type Output = F64

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impl<T> Mul<T> for Pages
where T: Into<Pages>,

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type Output = Pages

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impl<T> Mul<T> for Pages
where T: Into<Pages>,

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type Output = Pages

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impl<T> Mul<T> for Weight
where T: Mul<u64, Output = u64> + Copy,

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type Output = Weight

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impl<T> Mul<T> for Words
where T: Into<Words>,

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type Output = Words

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impl<T> Mul<T> for Words
where T: Into<Words>,

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type Output = Words

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impl<T, D> Mul for TypeWithDefault<T, D>
where T: Mul<Output = T>, D: Get<T>,

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

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type Output = Simd<T, N>

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

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type Output = Simd<T, N>

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impl<U> Mul<ATerm> for NInt<U>
where U: Unsigned + NonZero,

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impl<U> Mul<ATerm> for PInt<U>
where U: Unsigned + NonZero,

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

N * Z0 = Z0

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type Output = Z0

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

P * Z0 = Z0

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type Output = Z0

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impl<U> Mul<U> for UTerm
where U: Unsigned,

UTerm * U = UTerm

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

UInt * B0 = UTerm

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

UInt * B1 = UInt

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type Output = UInt<U, B>

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impl<U, B> Mul<UTerm> for UInt<U, B>
where U: Unsigned, B: Bit,

UInt<U, B> * UTerm = UTerm

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impl<Ul, B, Ur> Mul<UInt<Ur, B>> for UInt<Ul, B0>
where Ul: Unsigned + Mul<UInt<Ur, B>>, B: Bit, Ur: Unsigned,

UInt<Ul, B0> * UInt<Ur, B> = UInt<(Ul * UInt<Ur, B>), B0>

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type Output = UInt<<Ul as Mul<UInt<Ur, B>>>::Output, B0>

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impl<Ul, B, Ur> Mul<UInt<Ur, B>> for UInt<Ul, B1>
where Ul: Unsigned + Mul<UInt<Ur, B>>, B: Bit, Ur: Unsigned, UInt<<Ul as Mul<UInt<Ur, B>>>::Output, B0>: Add<UInt<Ur, B>>,

UInt<Ul, B1> * UInt<Ur, B> = UInt<(Ul * UInt<Ur, B>), B0> + UInt<Ur, B>

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type Output = <UInt<<Ul as Mul<UInt<Ur, B>>>::Output, B0> as Add<UInt<Ur, B>>>::Output

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impl<Ul, Ur> Mul<NInt<Ur>> for NInt<Ul>
where Ul: Unsigned + NonZero + Mul<Ur>, Ur: Unsigned + NonZero, <Ul as Mul<Ur>>::Output: Unsigned + NonZero,

N(Ul) * N(Ur) = P(Ul * Ur)

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

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

P(Ul) * N(Ur) = N(Ul * Ur)

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

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

N(Ul) * P(Ur) = N(Ul * Ur)

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

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impl<Ul, Ur> Mul<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Mul<Ur>, Ur: Unsigned + NonZero, <Ul as Mul<Ur>>::Output: Unsigned + NonZero,

P(Ul) * P(Ur) = P(Ul * Ur)

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

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impl<V, A> Mul<TArr<V, A>> for Z0
where Z0: Mul<A>,

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type Output = TArr<Z0, <Z0 as Mul<A>>::Output>

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impl<V, A, Rhs> Mul<Rhs> for TArr<V, A>
where V: Mul<Rhs>, A: Mul<Rhs>, Rhs: Copy,

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type Output = TArr<<V as Mul<Rhs>>::Output, <A as Mul<Rhs>>::Output>

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impl<V, A, U> Mul<TArr<V, A>> for NInt<U>
where U: Unsigned + NonZero, NInt<U>: Mul<A> + Mul<V>,

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type Output = TArr<<NInt<U> as Mul<V>>::Output, <NInt<U> as Mul<A>>::Output>

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impl<V, A, U> Mul<TArr<V, A>> for PInt<U>
where U: Unsigned + NonZero, PInt<U>: Mul<A> + Mul<V>,

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type Output = TArr<<PInt<U> as Mul<V>>::Output, <PInt<U> as Mul<A>>::Output>

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impl<const N: usize> Mul for Simd<f32, N>

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type Output = Simd<f32, N>

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impl<const N: usize> Mul for Simd<f64, N>

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type Output = Simd<f64, N>

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impl<const N: usize> Mul for Simd<i8, N>

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type Output = Simd<i8, N>

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impl<const N: usize> Mul for Simd<i16, N>

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type Output = Simd<i16, N>

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impl<const N: usize> Mul for Simd<i32, N>

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type Output = Simd<i32, N>

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impl<const N: usize> Mul for Simd<i64, N>

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type Output = Simd<i64, N>

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impl<const N: usize> Mul for Simd<isize, N>

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type Output = Simd<isize, N>

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impl<const N: usize> Mul for Simd<u8, N>

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type Output = Simd<u8, N>

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impl<const N: usize> Mul for Simd<u16, N>

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type Output = Simd<u16, N>

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impl<const N: usize> Mul for Simd<u32, N>

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type Output = Simd<u32, N>

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impl<const N: usize> Mul for Simd<u64, N>

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type Output = Simd<u64, N>

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impl<const N: usize> Mul for Simd<usize, N>

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type Output = Simd<usize, N>