aead::consts

Type Alias P777

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pub type P777 = PInt<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B1>, B0>, B0>, B0>, B0>, B1>, B0>, B0>, B1>>;

Aliased Type§

struct P777 { /* private fields */ }

Implementations

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impl<U> PInt<U>
where U: Unsigned + NonZero,

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pub fn new() -> PInt<U>

Instantiates a singleton representing this strictly positive integer.

Trait Implementations

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

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type Output = PInt<U>

The absolute value.
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impl<Ul, Ur> Add<NInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Cmp<Ur> + PrivateIntegerAdd<<Ul as Cmp<Ur>>::Output, Ur>, Ur: Unsigned + NonZero,

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

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

The resulting type after applying the + operator.
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fn add(self, rhs: NInt<Ur>) -> <PInt<Ul> as Add<NInt<Ur>>>::Output

Performs the + operation. Read more
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impl<Ul, Ur> Add<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Add<Ur>, Ur: Unsigned + NonZero, <Ul as Add<Ur>>::Output: Unsigned + NonZero,

P(Ul) + P(Ur) = P(Ul + Ur)

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

The resulting type after applying the + operator.
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fn add(self, _: PInt<Ur>) -> <PInt<Ul> as Add<PInt<Ur>>>::Output

Performs the + operation. Read more
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impl<U> Add<Z0> for PInt<U>
where U: Unsigned + NonZero,

PInt + Z0 = PInt

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type Output = PInt<U>

The resulting type after applying the + operator.
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fn add(self, _: Z0) -> <PInt<U> as Add<Z0>>::Output

Performs the + operation. Read more
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impl<U> Clone for PInt<U>
where U: Clone + Unsigned + NonZero,

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fn clone(&self) -> PInt<U>

Returns a copy of the value. Read more
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fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl<P, N> Cmp<NInt<N>> for PInt<P>
where P: Unsigned + NonZero, N: Unsigned + NonZero,

X > - Y

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type Output = Greater

The result of the comparison. It should only ever be one of Greater, Less, or Equal.
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impl<Pl, Pr> Cmp<PInt<Pr>> for PInt<Pl>
where Pl: Cmp<Pr> + Unsigned + NonZero, Pr: Unsigned + NonZero,

X <==> Y

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type Output = <Pl as Cmp<Pr>>::Output

The result of the comparison. It should only ever be one of Greater, Less, or Equal.
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impl<U> Cmp<Z0> for PInt<U>
where U: Unsigned + NonZero,

X > 0

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type Output = Greater

The result of the comparison. It should only ever be one of Greater, Less, or Equal.
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impl<U> Debug for PInt<U>
where U: Debug + Unsigned + NonZero,

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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
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impl<U> Default for PInt<U>
where U: Default + Unsigned + NonZero,

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fn default() -> PInt<U>

Returns the “default value” for a type. Read more
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impl<Ul, Ur> Div<NInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Cmp<Ur>, Ur: Unsigned + NonZero, PInt<Ul>: PrivateDivInt<<Ul as Cmp<Ur>>::Output, NInt<Ur>>,

$A<Ul> / $B<Ur> = $R<Ul / Ur>

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type Output = <PInt<Ul> as PrivateDivInt<<Ul as Cmp<Ur>>::Output, NInt<Ur>>>::Output

The resulting type after applying the / operator.
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fn div(self, rhs: NInt<Ur>) -> <PInt<Ul> as Div<NInt<Ur>>>::Output

Performs the / operation. Read more
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impl<Ul, Ur> Div<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Cmp<Ur>, Ur: Unsigned + NonZero, PInt<Ul>: PrivateDivInt<<Ul as Cmp<Ur>>::Output, PInt<Ur>>,

$A<Ul> / $B<Ur> = $R<Ul / Ur>

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type Output = <PInt<Ul> as PrivateDivInt<<Ul as Cmp<Ur>>::Output, PInt<Ur>>>::Output

The resulting type after applying the / operator.
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fn div(self, rhs: PInt<Ur>) -> <PInt<Ul> as Div<PInt<Ur>>>::Output

Performs the / operation. Read more
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impl<U1, U2> Gcd<NInt<U2>> for PInt<U1>
where U1: Unsigned + NonZero + Gcd<U2>, U2: Unsigned + NonZero, <U1 as Gcd<U2>>::Output: Unsigned + NonZero,

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type Output = PInt<<U1 as Gcd<U2>>::Output>

The greatest common divisor.
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impl<U1, U2> Gcd<PInt<U2>> for PInt<U1>
where U1: Unsigned + NonZero + Gcd<U2>, U2: Unsigned + NonZero, <U1 as Gcd<U2>>::Output: Unsigned + NonZero,

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type Output = PInt<<U1 as Gcd<U2>>::Output>

The greatest common divisor.
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impl<U> Gcd<Z0> for PInt<U>
where U: Unsigned + NonZero,

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type Output = PInt<U>

The greatest common divisor.
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impl<U> Hash for PInt<U>
where U: Hash + Unsigned + NonZero,

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fn hash<__H>(&self, state: &mut __H)
where __H: Hasher,

Feeds this value into the given Hasher. Read more
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fn hash_slice<H>(data: &[Self], state: &mut H)
where H: Hasher, Self: Sized,

Feeds a slice of this type into the given Hasher. Read more
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impl<U> Integer for PInt<U>
where U: Unsigned + NonZero,

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const I8: i8 = U::I8

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const I16: i16 = U::I16

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const I32: i32 = U::I32

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const I64: i64 = U::I64

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const ISIZE: isize = U::ISIZE

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fn to_i8() -> i8

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fn to_i16() -> i16

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fn to_i32() -> i32

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fn to_i64() -> i64

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fn to_isize() -> isize

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impl<Ul, Ur> Max<NInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero, Ur: Unsigned + NonZero,

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type Output = PInt<Ul>

The type of the maximum of Self and Rhs
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fn max(self, _: NInt<Ur>) -> <PInt<Ul> as Max<NInt<Ur>>>::Output

Method returning the maximum
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impl<Ul, Ur> Max<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Max<Ur>, Ur: Unsigned + NonZero, <Ul as Max<Ur>>::Output: Unsigned + NonZero,

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

The type of the maximum of Self and Rhs
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fn max(self, rhs: PInt<Ur>) -> <PInt<Ul> as Max<PInt<Ur>>>::Output

Method returning the maximum
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impl<U> Max<Z0> for PInt<U>
where U: Unsigned + NonZero,

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type Output = PInt<U>

The type of the maximum of Self and Rhs
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fn max(self, _: Z0) -> <PInt<U> as Max<Z0>>::Output

Method returning the maximum
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impl<Ul, Ur> Min<NInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero, Ur: Unsigned + NonZero,

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type Output = NInt<Ur>

The type of the minimum of Self and Rhs
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fn min(self, rhs: NInt<Ur>) -> <PInt<Ul> as Min<NInt<Ur>>>::Output

Method returning the minimum
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impl<Ul, Ur> Min<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Min<Ur>, Ur: Unsigned + NonZero, <Ul as Min<Ur>>::Output: Unsigned + NonZero,

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

The type of the minimum of Self and Rhs
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fn min(self, rhs: PInt<Ur>) -> <PInt<Ul> as Min<PInt<Ur>>>::Output

Method returning the minimum
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impl<U> Min<Z0> for PInt<U>
where U: Unsigned + NonZero,

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type Output = Z0

The type of the minimum of Self and Rhs
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fn min(self, rhs: Z0) -> <PInt<U> as Min<Z0>>::Output

Method returning the minimum
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impl<U> Mul<ATerm> for PInt<U>
where U: Unsigned + NonZero,

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type Output = ATerm

The resulting type after applying the * operator.
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fn mul(self, _: ATerm) -> <PInt<U> as Mul<ATerm>>::Output

Performs the * operation. Read more
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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>

The resulting type after applying the * operator.
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fn mul(self, _: NInt<Ur>) -> <PInt<Ul> as Mul<NInt<Ur>>>::Output

Performs the * operation. Read more
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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>

The resulting type after applying the * operator.
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fn mul(self, _: PInt<Ur>) -> <PInt<Ul> as Mul<PInt<Ur>>>::Output

Performs the * operation. Read more
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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>

The resulting type after applying the * operator.
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fn mul(self, rhs: TArr<V, A>) -> <PInt<U> as Mul<TArr<V, A>>>::Output

Performs the * operation. Read more
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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

The resulting type after applying the * operator.
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fn mul(self, _: Z0) -> <PInt<U> as Mul<Z0>>::Output

Performs the * operation. Read more
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impl<U> Neg for PInt<U>
where U: Unsigned + NonZero,

-PInt = NInt

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type Output = NInt<U>

The resulting type after applying the - operator.
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fn neg(self) -> <PInt<U> as Neg>::Output

Performs the unary - operation. Read more
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impl<U> Ord for PInt<U>
where U: Ord + Unsigned + NonZero,

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fn cmp(&self, other: &PInt<U>) -> Ordering

This method returns an Ordering between self and other. Read more
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fn max(self, other: Self) -> Self
where Self: Sized,

Compares and returns the maximum of two values. Read more
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fn min(self, other: Self) -> Self
where Self: Sized,

Compares and returns the minimum of two values. Read more
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fn clamp(self, min: Self, max: Self) -> Self
where Self: Sized,

Restrict a value to a certain interval. Read more
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impl<U> PartialEq for PInt<U>
where U: PartialEq + Unsigned + NonZero,

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fn eq(&self, other: &PInt<U>) -> bool

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl<U> PartialOrd for PInt<U>

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fn partial_cmp(&self, other: &PInt<U>) -> Option<Ordering>

This method returns an ordering between self and other values if one exists. Read more
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fn lt(&self, other: &Rhs) -> bool

Tests less than (for self and other) and is used by the < operator. Read more
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fn le(&self, other: &Rhs) -> bool

Tests less than or equal to (for self and other) and is used by the <= operator. Read more
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fn gt(&self, other: &Rhs) -> bool

Tests greater than (for self and other) and is used by the > operator. Read more
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fn ge(&self, other: &Rhs) -> bool

Tests greater than or equal to (for self and other) and is used by the >= operator. Read more
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impl<Ul, Ur> Pow<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Pow<Ur>, Ur: Unsigned + NonZero, <Ul as Pow<Ur>>::Output: Unsigned + NonZero,

P(Ul)^P(Ur) = P(Ul^Ur)

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

The result of the exponentiation.
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fn powi(self, _: PInt<Ur>) -> <PInt<Ul> as Pow<PInt<Ur>>>::Output

This function isn’t used in this crate, but may be useful for others. It is implemented for primitives. Read more
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impl<U> Pow<Z0> for PInt<U>
where U: Unsigned + NonZero,

P^0 = 1

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type Output = PInt<UInt<UTerm, B1>>

The result of the exponentiation.
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fn powi(self, _: Z0) -> <PInt<U> as Pow<Z0>>::Output

This function isn’t used in this crate, but may be useful for others. It is implemented for primitives. Read more
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impl<Ul, Ur> Rem<NInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Rem<Ur>, Ur: Unsigned + NonZero, PInt<Ul>: PrivateRem<<Ul as Rem<Ur>>::Output, NInt<Ur>>,

$A<Ul> % $B<Ur> = $R<Ul % Ur>

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type Output = <PInt<Ul> as PrivateRem<<Ul as Rem<Ur>>::Output, NInt<Ur>>>::Output

The resulting type after applying the % operator.
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fn rem(self, rhs: NInt<Ur>) -> <PInt<Ul> as Rem<NInt<Ur>>>::Output

Performs the % operation. Read more
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impl<Ul, Ur> Rem<PInt<Ur>> for PInt<Ul>
where Ul: Unsigned + NonZero + Rem<Ur>, Ur: Unsigned + NonZero, PInt<Ul>: PrivateRem<<Ul as Rem<Ur>>::Output, PInt<Ur>>,

$A<Ul> % $B<Ur> = $R<Ul % Ur>

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type Output = <PInt<Ul> as PrivateRem<<Ul as Rem<Ur>>::Output, PInt<Ur>>>::Output

The resulting type after applying the % operator.
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fn rem(self, rhs: PInt<Ur>) -> <PInt<Ul> as Rem<PInt<Ur>>>::Output

Performs the % operation. Read more
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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>

The resulting type after applying the - operator.
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fn sub(self, _: NInt<Ur>) -> <PInt<Ul> as Sub<NInt<Ur>>>::Output

Performs the - operation. Read more
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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

The resulting type after applying the - operator.
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fn sub(self, rhs: PInt<Ur>) -> <PInt<Ul> as Sub<PInt<Ur>>>::Output

Performs the - operation. Read more
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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>

The resulting type after applying the - operator.
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fn sub(self, _: Z0) -> <PInt<U> as Sub<Z0>>::Output

Performs the - operation. Read more
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impl<U> ToInt<i16> for PInt<U>
where U: Unsigned + NonZero,

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fn to_int() -> i16

Method returning the concrete value for the type.
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impl<U> ToInt<i32> for PInt<U>
where U: Unsigned + NonZero,

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fn to_int() -> i32

Method returning the concrete value for the type.
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impl<U> ToInt<i64> for PInt<U>
where U: Unsigned + NonZero,

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fn to_int() -> i64

Method returning the concrete value for the type.
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impl<U> ToInt<i8> for PInt<U>
where U: Unsigned + NonZero,

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fn to_int() -> i8

Method returning the concrete value for the type.
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impl<U> Copy for PInt<U>
where U: Copy + Unsigned + NonZero,

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

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

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impl<U> PowerOfTwo for PInt<U>

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