pub struct BinomialExtensionField<F, const D: usize, A = F> { /* private fields */ }
Implementations§
Source§impl<R: PrimeCharacteristicRing> BinomialExtensionField<R, 2>
Convenience methods for complex extensions
impl<R: PrimeCharacteristicRing> BinomialExtensionField<R, 2>
Convenience methods for complex extensions
pub const fn new_complex(real: R, imag: R) -> Self
pub const fn new_real(real: R) -> Self
pub const fn new_imag(imag: R) -> Self
pub fn real(&self) -> R
pub fn imag(&self) -> R
pub fn conjugate(&self) -> Self
pub fn norm(&self) -> R
pub fn to_array(&self) -> [R; 2]
pub fn rotate<Ext: Algebra<R>>(&self, rhs: &Complex<Ext>) -> Complex<Ext>
Trait Implementations§
Source§impl<F, A, const D: usize> Add<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Add<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F, PF, const D: usize> Add<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
impl<F, PF, const D: usize> Add<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
Source§type Output = PackedBinomialExtensionField<F, PF, D>
type Output = PackedBinomialExtensionField<F, PF, D>
The resulting type after applying the
+
operator.Source§fn add(self, rhs: BinomialExtensionField<F, D>) -> Self
fn add(self, rhs: BinomialExtensionField<F, D>) -> Self
Performs the
+
operation. Read moreSource§impl<F, A, const D: usize> Add for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Add for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F, A, const D: usize> AddAssign<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> AddAssign<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§fn add_assign(&mut self, rhs: A)
fn add_assign(&mut self, rhs: A)
Performs the
+=
operation. Read moreSource§impl<F, PF, const D: usize> AddAssign<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
impl<F, PF, const D: usize> AddAssign<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
Source§fn add_assign(&mut self, rhs: BinomialExtensionField<F, D>)
fn add_assign(&mut self, rhs: BinomialExtensionField<F, D>)
Performs the
+=
operation. Read moreSource§impl<F, A, const D: usize> AddAssign for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> AddAssign for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§fn add_assign(&mut self, rhs: Self)
fn add_assign(&mut self, rhs: Self)
Performs the
+=
operation. Read moreSource§impl<F: BinomiallyExtendable<D>, A: Algebra<F>, const D: usize> BasedVectorSpace<A> for BinomialExtensionField<F, D, A>
impl<F: BinomiallyExtendable<D>, A: Algebra<F>, const D: usize> BasedVectorSpace<A> for BinomialExtensionField<F, D, A>
Source§const DIMENSION: usize = D
const DIMENSION: usize = D
The dimension of the vector space, i.e. the number of elements in
its basis.
Source§fn as_basis_coefficients_slice(&self) -> &[A]
fn as_basis_coefficients_slice(&self) -> &[A]
Fixes a basis for the algebra
A
and uses this to
map an element of A
to a slice of DIMENSION
F
elements. Read moreSource§fn from_basis_coefficients_fn<Fn: FnMut(usize) -> A>(f: Fn) -> Self
fn from_basis_coefficients_fn<Fn: FnMut(usize) -> A>(f: Fn) -> Self
Fixes a basis for the algebra
A
and uses this to
map DIMENSION
F
elements to an element of A
. Similar
to core:array::from_fn
, the DIMENSION
F
elements are
given by Fn(0), ..., Fn(DIMENSION - 1)
called in that order. Read moreSource§fn from_basis_coefficients_iter<I: ExactSizeIterator<Item = A>>(
iter: I,
) -> Option<Self>
fn from_basis_coefficients_iter<I: ExactSizeIterator<Item = A>>( iter: I, ) -> Option<Self>
Fixes a basis for the algebra
A
and uses this to
map DIMENSION
F
elements to an element of A
. Read moreSource§fn flatten_to_base(vec: Vec<Self>) -> Vec<A>
fn flatten_to_base(vec: Vec<Self>) -> Vec<A>
Source§fn reconstitute_from_base(vec: Vec<A>) -> Vec<Self>
fn reconstitute_from_base(vec: Vec<A>) -> Vec<Self>
Source§impl<F: Clone, const D: usize, A: Clone> Clone for BinomialExtensionField<F, D, A>
impl<F: Clone, const D: usize, A: Clone> Clone for BinomialExtensionField<F, D, A>
Source§fn clone(&self) -> BinomialExtensionField<F, D, A>
fn clone(&self) -> BinomialExtensionField<F, D, A>
Returns a duplicate of the value. Read more
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source
. Read moreSource§impl<'de, F, const D: usize, A> Deserialize<'de> for BinomialExtensionField<F, D, A>where
A: Deserialize<'de>,
impl<'de, F, const D: usize, A> Deserialize<'de> for BinomialExtensionField<F, D, A>where
A: Deserialize<'de>,
Source§fn deserialize<__D>(__deserializer: __D) -> Result<Self, __D::Error>where
__D: Deserializer<'de>,
fn deserialize<__D>(__deserializer: __D) -> Result<Self, __D::Error>where
__D: Deserializer<'de>,
Deserialize this value from the given Serde deserializer. Read more
Source§impl<F, const D: usize> Display for BinomialExtensionField<F, D>where
F: BinomiallyExtendable<D>,
impl<F, const D: usize> Display for BinomialExtensionField<F, D>where
F: BinomiallyExtendable<D>,
Source§impl<F: BinomiallyExtendable<D>, const D: usize> Distribution<BinomialExtensionField<F, D>> for StandardUniformwhere
Self: Distribution<F>,
impl<F: BinomiallyExtendable<D>, const D: usize> Distribution<BinomialExtensionField<F, D>> for StandardUniformwhere
Self: Distribution<F>,
Source§fn sample<R: Rng + ?Sized>(&self, rng: &mut R) -> BinomialExtensionField<F, D>
fn sample<R: Rng + ?Sized>(&self, rng: &mut R) -> BinomialExtensionField<F, D>
Generate a random value of
T
, using rng
as the source of randomness.Source§fn sample_iter<R>(self, rng: R) -> Iter<Self, R, T>
fn sample_iter<R>(self, rng: R) -> Iter<Self, R, T>
Create an iterator that generates random values of
T
, using rng
as
the source of randomness. Read moreSource§impl<F, const D: usize> Div for BinomialExtensionField<F, D>where
F: BinomiallyExtendable<D>,
impl<F, const D: usize> Div for BinomialExtensionField<F, D>where
F: BinomiallyExtendable<D>,
Source§impl<F, const D: usize> DivAssign for BinomialExtensionField<F, D>where
F: BinomiallyExtendable<D>,
impl<F, const D: usize> DivAssign for BinomialExtensionField<F, D>where
F: BinomiallyExtendable<D>,
Source§fn div_assign(&mut self, rhs: Self)
fn div_assign(&mut self, rhs: Self)
Performs the
/=
operation. Read moreSource§impl<F: BinomiallyExtendable<D>, const D: usize> ExtensionField<F> for BinomialExtensionField<F, D>
impl<F: BinomiallyExtendable<D>, const D: usize> ExtensionField<F> for BinomialExtensionField<F, D>
type ExtensionPacking = PackedBinomialExtensionField<F, <F as Field>::Packing, D>
Source§fn is_in_basefield(&self) -> bool
fn is_in_basefield(&self) -> bool
Determine if the given element lies in the base field.
Source§impl<F: BinomiallyExtendable<D>, const D: usize> Field for BinomialExtensionField<F, D>
impl<F: BinomiallyExtendable<D>, const D: usize> Field for BinomialExtensionField<F, D>
type Packing = BinomialExtensionField<F, D>
Source§fn try_inverse(&self) -> Option<Self>
fn try_inverse(&self) -> Option<Self>
The multiplicative inverse of this field element, if it exists. Read more
Source§fn div_2exp_u64(&self, exp: u64) -> Self
fn div_2exp_u64(&self, exp: u64) -> Self
Divide by a given power of two.
div_2exp_u64(a, exp) = a/2^exp
Read moreSource§fn add_slices(slice_1: &mut [Self], slice_2: &[Self])
fn add_slices(slice_1: &mut [Self], slice_2: &[Self])
Add two slices of field elements together, returning the result in the first slice. Read more
Source§fn is_zero(&self) -> bool
fn is_zero(&self) -> bool
Check if the given field element is equal to the unique additive identity (ZERO).
Source§impl<F: Field, PF: PackedField<Scalar = F>, const D: usize> From<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>
impl<F: Field, PF: PackedField<Scalar = F>, const D: usize> From<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>
Source§fn from(x: BinomialExtensionField<F, D>) -> Self
fn from(x: BinomialExtensionField<F, D>) -> Self
Converts to this type from the input type.
Source§impl<F: BinomiallyExtendable<D>, const D: usize> HasFrobenius<F> for BinomialExtensionField<F, D>
impl<F: BinomiallyExtendable<D>, const D: usize> HasFrobenius<F> for BinomialExtensionField<F, D>
Source§fn frobenius(&self) -> Self
fn frobenius(&self) -> Self
FrobeniusField automorphisms: x -> x^n, where n is the order of BaseField.
Source§fn repeated_frobenius(&self, count: usize) -> Self
fn repeated_frobenius(&self, count: usize) -> Self
Repeated Frobenius automorphisms: x -> x^(n^count).
Follows precomputation suggestion in Section 11.3.3 of the Handbook of Elliptic and Hyperelliptic Curve Cryptography.
Source§fn frobenius_inv(&self) -> Self
fn frobenius_inv(&self) -> Self
Compute the inverse of a given element making use of the Frobenius automorphism.
Algorithm 11.3.4 in Handbook of Elliptic and Hyperelliptic Curve Cryptography.
Source§fn galois_orbit(self) -> Vec<Self>
fn galois_orbit(self) -> Vec<Self>
Returns the full Galois orbit of the element under Frobenius. Read more
Source§impl<F, A, const D: usize> Mul<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Mul<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F, PF, const D: usize> Mul<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
impl<F, PF, const D: usize> Mul<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
Source§type Output = PackedBinomialExtensionField<F, PF, D>
type Output = PackedBinomialExtensionField<F, PF, D>
The resulting type after applying the
*
operator.Source§fn mul(self, rhs: BinomialExtensionField<F, D>) -> Self
fn mul(self, rhs: BinomialExtensionField<F, D>) -> Self
Performs the
*
operation. Read moreSource§impl<F, A, const D: usize> Mul for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Mul for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F, A, const D: usize> MulAssign<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> MulAssign<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§fn mul_assign(&mut self, rhs: A)
fn mul_assign(&mut self, rhs: A)
Performs the
*=
operation. Read moreSource§impl<F, PF, const D: usize> MulAssign<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
impl<F, PF, const D: usize> MulAssign<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
Source§fn mul_assign(&mut self, rhs: BinomialExtensionField<F, D>)
fn mul_assign(&mut self, rhs: BinomialExtensionField<F, D>)
Performs the
*=
operation. Read moreSource§impl<F, A, const D: usize> MulAssign for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> MulAssign for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§fn mul_assign(&mut self, rhs: Self)
fn mul_assign(&mut self, rhs: Self)
Performs the
*=
operation. Read moreSource§impl<F, A, const D: usize> Neg for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Neg for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F: Ord, const D: usize, A: Ord> Ord for BinomialExtensionField<F, D, A>
impl<F: Ord, const D: usize, A: Ord> Ord for BinomialExtensionField<F, D, A>
Source§fn cmp(&self, other: &BinomialExtensionField<F, D, A>) -> Ordering
fn cmp(&self, other: &BinomialExtensionField<F, D, A>) -> Ordering
1.21.0 · Source§fn max(self, other: Self) -> Selfwhere
Self: Sized,
fn max(self, other: Self) -> Selfwhere
Self: Sized,
Compares and returns the maximum of two values. Read more
Source§impl<F, const D: usize> PackedFieldExtension<F, BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, F::Packing, D>where
F: BinomiallyExtendable<D>,
impl<F, const D: usize> PackedFieldExtension<F, BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, F::Packing, D>where
F: BinomiallyExtendable<D>,
Source§fn from_ext_slice(ext_slice: &[BinomialExtensionField<F, D>]) -> Self
fn from_ext_slice(ext_slice: &[BinomialExtensionField<F, D>]) -> Self
Given a slice of extension field
EF
elements of length W
,
convert into the array [[F; D]; W]
transpose to
[[F; W]; D]
and then pack to get [PF; D]
.Source§fn to_ext_iter(
iter: impl IntoIterator<Item = Self>,
) -> impl Iterator<Item = BinomialExtensionField<F, D>>
fn to_ext_iter( iter: impl IntoIterator<Item = Self>, ) -> impl Iterator<Item = BinomialExtensionField<F, D>>
Given a iterator of packed extension field elements, convert to an iterator of
extension field elements. Read more
Source§fn packed_ext_powers(base: BinomialExtensionField<F, D>) -> Powers<Self> ⓘ
fn packed_ext_powers(base: BinomialExtensionField<F, D>) -> Powers<Self> ⓘ
Similar to
packed_powers
, construct an iterator which returns
powers of base
packed into PackedFieldExtension
elements.Source§impl<F: PartialEq, const D: usize, A: PartialEq> PartialEq for BinomialExtensionField<F, D, A>
impl<F: PartialEq, const D: usize, A: PartialEq> PartialEq for BinomialExtensionField<F, D, A>
Source§fn eq(&self, other: &BinomialExtensionField<F, D, A>) -> bool
fn eq(&self, other: &BinomialExtensionField<F, D, A>) -> bool
Tests for
self
and other
values to be equal, and is used by ==
.Source§impl<F: PartialOrd, const D: usize, A: PartialOrd> PartialOrd for BinomialExtensionField<F, D, A>
impl<F: PartialOrd, const D: usize, A: PartialOrd> PartialOrd for BinomialExtensionField<F, D, A>
Source§impl<F, A, const D: usize> PrimeCharacteristicRing for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> PrimeCharacteristicRing for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§type PrimeSubfield = <A as PrimeCharacteristicRing>::PrimeSubfield
type PrimeSubfield = <A as PrimeCharacteristicRing>::PrimeSubfield
The field
ℤ/p
where the characteristic of this ring is p.Source§fn from_prime_subfield(f: Self::PrimeSubfield) -> Self
fn from_prime_subfield(f: Self::PrimeSubfield) -> Self
Source§fn mul_2exp_u64(&self, exp: u64) -> Self
fn mul_2exp_u64(&self, exp: u64) -> Self
The elementary function
mul_2exp_u64(a, exp) = a * 2^{exp}
. Read moreSource§fn zero_vec(len: usize) -> Vec<Self>
fn zero_vec(len: usize) -> Vec<Self>
Allocates a vector of zero elements of length
len
. Many operating systems zero pages
before assigning them to a userspace process. In that case, our process should not need to
write zeros, which would be redundant. However, the compiler may not always recognize this. Read moreSource§fn from_usize(int: usize) -> Self
fn from_usize(int: usize) -> Self
Source§fn from_isize(int: isize) -> Self
fn from_isize(int: isize) -> Self
Source§fn xor(&self, y: &Self) -> Self
fn xor(&self, y: &Self) -> Self
Computes the arithmetic generalization of boolean
xor
. Read moreSource§fn xor3(&self, y: &Self, z: &Self) -> Self
fn xor3(&self, y: &Self, z: &Self) -> Self
Computes the arithmetic generalization of a triple
xor
. Read moreSource§fn bool_check(&self) -> Self
fn bool_check(&self) -> Self
The vanishing polynomial for boolean values:
x * (1 - x)
. Read moreSource§fn exp_const_u64<const POWER: u64>(&self) -> Self
fn exp_const_u64<const POWER: u64>(&self) -> Self
Exponentiation by a small constant power. Read more
Source§fn exp_power_of_2(&self, power_log: usize) -> Self
fn exp_power_of_2(&self, power_log: usize) -> Self
The elementary function
exp_power_of_2(a, power_log) = a^{2^power_log}
. Read moreSource§fn powers(&self) -> Powers<Self> ⓘ
fn powers(&self) -> Powers<Self> ⓘ
Construct an iterator which returns powers of
self
: self^0, self^1, self^2, ...
.Source§fn shifted_powers(&self, start: Self) -> Powers<Self> ⓘ
fn shifted_powers(&self, start: Self) -> Powers<Self> ⓘ
Construct an iterator which returns powers of
self
shifted by start
: start, start*self^1, start*self^2, ...
.Source§impl<F, A, const D: usize> Product for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Product for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F: BinomiallyExtendable<D>, const D: usize> RawDataSerializable for BinomialExtensionField<F, D>
impl<F: BinomiallyExtendable<D>, const D: usize> RawDataSerializable for BinomialExtensionField<F, D>
Source§const NUM_BYTES: usize
const NUM_BYTES: usize
The number of bytes which this field element occupies in memory.
Must be equal to the length of self.into_bytes().
Source§fn into_bytes(self) -> impl IntoIterator<Item = u8>
fn into_bytes(self) -> impl IntoIterator<Item = u8>
Convert a field element into a collection of bytes.
Source§fn into_byte_stream(
input: impl IntoIterator<Item = Self>,
) -> impl IntoIterator<Item = u8>
fn into_byte_stream( input: impl IntoIterator<Item = Self>, ) -> impl IntoIterator<Item = u8>
Convert an iterator of field elements into an iterator of bytes.
Source§fn into_u32_stream(
input: impl IntoIterator<Item = Self>,
) -> impl IntoIterator<Item = u32>
fn into_u32_stream( input: impl IntoIterator<Item = Self>, ) -> impl IntoIterator<Item = u32>
Convert an iterator of field elements into an iterator of u32s. Read more
Source§fn into_u64_stream(
input: impl IntoIterator<Item = Self>,
) -> impl IntoIterator<Item = u64>
fn into_u64_stream( input: impl IntoIterator<Item = Self>, ) -> impl IntoIterator<Item = u64>
Convert an iterator of field elements into an iterator of u64s. Read more
Source§fn into_parallel_byte_streams<const N: usize>(
input: impl IntoIterator<Item = [Self; N]>,
) -> impl IntoIterator<Item = [u8; N]>
fn into_parallel_byte_streams<const N: usize>( input: impl IntoIterator<Item = [Self; N]>, ) -> impl IntoIterator<Item = [u8; N]>
Convert an iterator of field element arrays into an iterator of byte arrays. Read more
Source§fn into_parallel_u32_streams<const N: usize>(
input: impl IntoIterator<Item = [Self; N]>,
) -> impl IntoIterator<Item = [u32; N]>
fn into_parallel_u32_streams<const N: usize>( input: impl IntoIterator<Item = [Self; N]>, ) -> impl IntoIterator<Item = [u32; N]>
Convert an iterator of field element arrays into an iterator of u32 arrays. Read more
Source§fn into_parallel_u64_streams<const N: usize>(
input: impl IntoIterator<Item = [Self; N]>,
) -> impl IntoIterator<Item = [u64; N]>
fn into_parallel_u64_streams<const N: usize>( input: impl IntoIterator<Item = [Self; N]>, ) -> impl IntoIterator<Item = [u64; N]>
Convert an iterator of field element arrays into an iterator of u64 arrays. Read more
Source§impl<F, A, const D: usize> Sub<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Sub<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F, PF, const D: usize> Sub<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
impl<F, PF, const D: usize> Sub<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
Source§type Output = PackedBinomialExtensionField<F, PF, D>
type Output = PackedBinomialExtensionField<F, PF, D>
The resulting type after applying the
-
operator.Source§fn sub(self, rhs: BinomialExtensionField<F, D>) -> Self
fn sub(self, rhs: BinomialExtensionField<F, D>) -> Self
Performs the
-
operation. Read moreSource§impl<F, A, const D: usize> Sub for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Sub for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F, A, const D: usize> SubAssign<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> SubAssign<A> for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§fn sub_assign(&mut self, rhs: A)
fn sub_assign(&mut self, rhs: A)
Performs the
-=
operation. Read moreSource§impl<F, PF, const D: usize> SubAssign<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
impl<F, PF, const D: usize> SubAssign<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>where
F: BinomiallyExtendable<D>,
PF: PackedField<Scalar = F>,
Source§fn sub_assign(&mut self, rhs: BinomialExtensionField<F, D>)
fn sub_assign(&mut self, rhs: BinomialExtensionField<F, D>)
Performs the
-=
operation. Read moreSource§impl<F, A, const D: usize> SubAssign for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> SubAssign for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§fn sub_assign(&mut self, rhs: Self)
fn sub_assign(&mut self, rhs: Self)
Performs the
-=
operation. Read moreSource§impl<F, A, const D: usize> Sum for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
impl<F, A, const D: usize> Sum for BinomialExtensionField<F, D, A>where
F: BinomiallyExtendable<D>,
A: Algebra<F>,
Source§impl<F: Field + HasTwoAdicBinomialExtension<D>, const D: usize> TwoAdicField for BinomialExtensionField<F, D>
impl<F: Field + HasTwoAdicBinomialExtension<D>, const D: usize> TwoAdicField for BinomialExtensionField<F, D>
Source§const TWO_ADICITY: usize = F::EXT_TWO_ADICITY
const TWO_ADICITY: usize = F::EXT_TWO_ADICITY
The number of factors of two in this field’s multiplicative group.
Source§fn two_adic_generator(bits: usize) -> Self
fn two_adic_generator(bits: usize) -> Self
Returns a generator of the multiplicative group of order
2^bits
.
Assumes bits <= TWO_ADICITY
, otherwise the result is undefined.impl<F: BinomiallyExtendable<D>, PF: PackedField<Scalar = F>, const D: usize> Algebra<BinomialExtensionField<F, D>> for PackedBinomialExtensionField<F, PF, D>
impl<F: BinomiallyExtendable<D>, const D: usize> Algebra<F> for BinomialExtensionField<F, D>
impl<F: Copy, const D: usize, A: Copy> Copy for BinomialExtensionField<F, D, A>
impl<F: Eq, const D: usize, A: Eq> Eq for BinomialExtensionField<F, D, A>
impl<F: BinomiallyExtendable<D>, const D: usize> Packable for BinomialExtensionField<F, D>
impl<F, const D: usize, A> StructuralPartialEq for BinomialExtensionField<F, D, A>
Auto Trait Implementations§
impl<F, const D: usize, A> Freeze for BinomialExtensionField<F, D, A>where
A: Freeze,
impl<F, const D: usize, A> RefUnwindSafe for BinomialExtensionField<F, D, A>where
A: RefUnwindSafe,
F: RefUnwindSafe,
impl<F, const D: usize, A> Send for BinomialExtensionField<F, D, A>
impl<F, const D: usize, A> Sync for BinomialExtensionField<F, D, A>
impl<F, const D: usize, A> Unpin for BinomialExtensionField<F, D, A>
impl<F, const D: usize, A> UnwindSafe for BinomialExtensionField<F, D, A>where
A: UnwindSafe,
F: UnwindSafe,
Blanket Implementations§
Source§impl<F> BasedVectorSpace<F> for Fwhere
F: PrimeCharacteristicRing,
impl<F> BasedVectorSpace<F> for Fwhere
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Source§const DIMENSION: usize = 1usize
const DIMENSION: usize = 1usize
The dimension of the vector space, i.e. the number of elements in
its basis.
Source§fn as_basis_coefficients_slice(&self) -> &[F]
fn as_basis_coefficients_slice(&self) -> &[F]
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fn from_basis_coefficients_fn<Fn>(f: Fn) -> F
Fixes a basis for the algebra
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and uses this to
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F
elements to an element of A
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Fixes a basis for the algebra
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Source§fn packed_powers(base: Self::Scalar) -> Powers<Self> ⓘ
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