[−][src]Struct sp_core::H512
Fixed-size uninterpreted hash type with 64 bytes (512 bits) size.
Methods
impl H512[src]
pub const fn repeat_byte(byte: u8) -> H512[src]
Returns a new fixed hash where all bits are set to the given byte.
pub const fn zero() -> H512[src]
Returns a new zero-initialized fixed hash.
pub const fn len_bytes() -> usize[src]
Returns the size of this hash in bytes.
pub fn as_bytes(&self) -> &[u8][src]
Extracts a byte slice containing the entire fixed hash.
pub fn as_bytes_mut(&mut self) -> &mut [u8][src]
Extracts a mutable byte slice containing the entire fixed hash.
pub const fn as_fixed_bytes(&self) -> &[u8; 64][src]
Extracts a reference to the byte array containing the entire fixed hash.
pub fn as_fixed_bytes_mut(&mut self) -> &mut [u8; 64][src]
Extracts a reference to the byte array containing the entire fixed hash.
pub const fn to_fixed_bytes(self) -> [u8; 64][src]
Returns the inner bytes array.
pub fn as_ptr(&self) -> *const u8[src]
Returns a constant raw pointer to the value.
pub fn as_mut_ptr(&mut self) -> *mut u8[src]
Returns a mutable raw pointer to the value.
pub fn assign_from_slice(&mut self, src: &[u8])[src]
Assign the bytes from the byte slice src to self.
Note
The given bytes are interpreted in big endian order.
Panics
If the length of src and the number of bytes in self do not match.
pub fn from_slice(src: &[u8]) -> H512[src]
Create a new fixed-hash from the given slice src.
Note
The given bytes are interpreted in big endian order.
Panics
If the length of src and the number of bytes in Self do not match.
pub fn covers(&self, b: &H512) -> bool[src]
Returns true if all bits set in b are also set in self.
pub fn is_zero(&self) -> bool[src]
Returns true if no bits are set.
impl H512[src]
Utilities using the byteorder crate.
pub fn to_low_u64_be(&self) -> u64[src]
Returns the lowest 8 bytes interpreted as big-endian.
Note
For hash type with less than 8 bytes the missing bytes are interpreted as being zero.
pub fn to_low_u64_le(&self) -> u64[src]
Returns the lowest 8 bytes interpreted as little-endian.
Note
For hash type with less than 8 bytes the missing bytes are interpreted as being zero.
pub fn to_low_u64_ne(&self) -> u64[src]
Returns the lowest 8 bytes interpreted as native-endian.
Note
For hash type with less than 8 bytes the missing bytes are interpreted as being zero.
pub fn from_low_u64_be(val: u64) -> H512[src]
Creates a new hash type from the given u64 value.
Note
- The given
u64value is interpreted as big endian. - Ignores the most significant bits of the given value if the hash type has less than 8 bytes.
pub fn from_low_u64_le(val: u64) -> H512[src]
Creates a new hash type from the given u64 value.
Note
- The given
u64value is interpreted as little endian. - Ignores the most significant bits of the given value if the hash type has less than 8 bytes.
pub fn from_low_u64_ne(val: u64) -> H512[src]
Creates a new hash type from the given u64 value.
Note
- The given
u64value is interpreted as native endian. - Ignores the most significant bits of the given value if the hash type has less than 8 bytes.
impl H512[src]
Utilities using the rand crate.
pub fn randomize_using<R>(&mut self, rng: &mut R) where
R: Rng + ?Sized, [src]
R: Rng + ?Sized,
Assign self to a cryptographically random value using the
given random number generator.
pub fn randomize(&mut self)[src]
Assign self to a cryptographically random value.
pub fn random_using<R>(rng: &mut R) -> H512 where
R: Rng + ?Sized, [src]
R: Rng + ?Sized,
Create a new hash with cryptographically random content using the given random number generator.
pub fn random() -> H512[src]
Create a new hash with cryptographically random content.
Trait Implementations
impl AsMut<[u8]> for H512[src]
impl AsRef<[u8]> for H512[src]
impl<'l, 'r> BitAnd<&'r H512> for &'l H512[src]
type Output = H512
The resulting type after applying the & operator.
fn bitand(self, rhs: &'r H512) -> <&'l H512 as BitAnd<&'r H512>>::Output[src]
impl BitAnd<H512> for H512[src]
type Output = H512
The resulting type after applying the & operator.
fn bitand(self, rhs: H512) -> <H512 as BitAnd<H512>>::Output[src]
impl<'r> BitAndAssign<&'r H512> for H512[src]
fn bitand_assign(&mut self, rhs: &'r H512)[src]
impl BitAndAssign<H512> for H512[src]
fn bitand_assign(&mut self, rhs: H512)[src]
impl<'l, 'r> BitOr<&'r H512> for &'l H512[src]
type Output = H512
The resulting type after applying the | operator.
fn bitor(self, rhs: &'r H512) -> <&'l H512 as BitOr<&'r H512>>::Output[src]
impl BitOr<H512> for H512[src]
type Output = H512
The resulting type after applying the | operator.
fn bitor(self, rhs: H512) -> <H512 as BitOr<H512>>::Output[src]
impl<'r> BitOrAssign<&'r H512> for H512[src]
fn bitor_assign(&mut self, rhs: &'r H512)[src]
impl BitOrAssign<H512> for H512[src]
fn bitor_assign(&mut self, rhs: H512)[src]
impl<'l, 'r> BitXor<&'r H512> for &'l H512[src]
type Output = H512
The resulting type after applying the ^ operator.
fn bitxor(self, rhs: &'r H512) -> <&'l H512 as BitXor<&'r H512>>::Output[src]
impl BitXor<H512> for H512[src]
type Output = H512
The resulting type after applying the ^ operator.
fn bitxor(self, rhs: H512) -> <H512 as BitXor<H512>>::Output[src]
impl<'r> BitXorAssign<&'r H512> for H512[src]
fn bitxor_assign(&mut self, rhs: &'r H512)[src]
impl BitXorAssign<H512> for H512[src]
fn bitxor_assign(&mut self, rhs: H512)[src]
impl Clone for H512[src]
impl Copy for H512[src]
impl Debug for H512[src]
impl Decode for H512[src]
impl Default for H512[src]
impl<'de> Deserialize<'de> for H512[src]
fn deserialize<D>(
deserializer: D
) -> Result<H512, <D as Deserializer<'de>>::Error> where
D: Deserializer<'de>, [src]
deserializer: D
) -> Result<H512, <D as Deserializer<'de>>::Error> where
D: Deserializer<'de>,
impl Display for H512[src]
impl Encode for H512[src]
fn using_encoded<R, F>(&self, f: F) -> R where
F: FnOnce(&[u8]) -> R, [src]
F: FnOnce(&[u8]) -> R,
fn size_hint(&self) -> usize[src]
fn encode_to<T>(&self, dest: &mut T) where
T: Output, [src]
T: Output,
fn encode(&self) -> Vec<u8>[src]
impl EncodeLike<H512> for H512[src]
impl Eq for H512[src]
impl<'a> From<&'a [u8; 64]> for H512[src]
fn from(bytes: &'a [u8; 64]) -> H512[src]
Constructs a hash type from the given reference to the bytes array of fixed length.
Note
The given bytes are interpreted in big endian order.
impl<'a> From<&'a mut [u8; 64]> for H512[src]
fn from(bytes: &'a mut [u8; 64]) -> H512[src]
Constructs a hash type from the given reference to the mutable bytes array of fixed length.
Note
The given bytes are interpreted in big endian order.
impl From<[u8; 64]> for H512[src]
fn from(bytes: [u8; 64]) -> H512[src]
Constructs a hash type from the given bytes array of fixed length.
Note
The given bytes are interpreted in big endian order.
impl From<Signature> for H512[src]
impl From<Signature> for H512[src]
impl FromStr for H512[src]
type Err = FromHexError
The associated error which can be returned from parsing.
fn from_str(input: &str) -> Result<H512, FromHexError>[src]
impl Hash for H512[src]
fn hash<H>(&self, state: &mut H) where
H: Hasher, [src]
H: Hasher,
fn hash_slice<H>(data: &[Self], state: &mut H) where
H: Hasher, 1.3.0[src]
H: Hasher,
impl<I> Index<I> for H512 where
I: SliceIndex<[u8]>, [src]
I: SliceIndex<[u8]>,
type Output = <I as SliceIndex<[u8]>>::Output
The returned type after indexing.
fn index(&self, index: I) -> &<I as SliceIndex<[u8]>>::Output[src]
impl<I> IndexMut<I> for H512 where
I: SliceIndex<[u8], Output = [u8]>, [src]
I: SliceIndex<[u8], Output = [u8]>,
impl LowerHex for H512[src]
impl MallocSizeOf for H512[src]
fn size_of(&self, &mut MallocSizeOfOps) -> usize[src]
impl Ord for H512[src]
fn cmp(&self, other: &H512) -> Ordering[src]
#[must_use]fn max(self, other: Self) -> Self1.21.0[src]
#[must_use]fn min(self, other: Self) -> Self1.21.0[src]
#[must_use]fn clamp(self, min: Self, max: Self) -> Self[src]
impl PartialEq<H512> for H512[src]
impl PartialOrd<H512> for H512[src]
fn partial_cmp(&self, other: &H512) -> Option<Ordering>[src]
#[must_use]fn lt(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn le(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn gt(&self, other: &Rhs) -> bool1.0.0[src]
#[must_use]fn ge(&self, other: &Rhs) -> bool1.0.0[src]
impl PassBy for H512[src]
impl PassByInner for H512[src]
type Inner = [u8; 64]
The inner type that is wrapped by Self.
fn inner(&self) -> &<H512 as PassByInner>::Inner[src]
fn into_inner(self) -> <H512 as PassByInner>::Inner[src]
fn from_inner(inner: <H512 as PassByInner>::Inner) -> H512[src]
impl Serialize for H512[src]
fn serialize<S>(
&self,
serializer: S
) -> Result<<S as Serializer>::Ok, <S as Serializer>::Error> where
S: Serializer, [src]
&self,
serializer: S
) -> Result<<S as Serializer>::Ok, <S as Serializer>::Error> where
S: Serializer,
impl UpperHex for H512[src]
Auto Trait Implementations
impl RefUnwindSafe for H512
impl Send for H512
impl Sync for H512
impl Unpin for H512
impl UnwindSafe for H512
Blanket Implementations
impl<T> Any for T where
T: 'static + ?Sized, [src]
T: 'static + ?Sized,
impl<T, U> AsByteSlice<T> for U where
T: ToByteSlice,
U: AsRef<[T]> + ?Sized,
T: ToByteSlice,
U: AsRef<[T]> + ?Sized,
fn as_byte_slice(&self) -> &[u8]
impl<T, U> AsMutByteSlice<T> for U where
T: ToMutByteSlice,
U: AsMut<[T]> + ?Sized,
T: ToMutByteSlice,
U: AsMut<[T]> + ?Sized,
fn as_mut_byte_slice(&mut self) -> &mut [u8]
impl<U> AsMutSliceOf for U where
U: AsMut<[u8]> + ?Sized,
U: AsMut<[u8]> + ?Sized,
fn as_mut_slice_of<T>(&mut self) -> Result<&mut [T], Error> where
T: FromByteSlice,
T: FromByteSlice,
impl<U> AsSliceOf for U where
U: AsRef<[u8]> + ?Sized,
U: AsRef<[u8]> + ?Sized,
fn as_slice_of<T>(&self) -> Result<&[T], Error> where
T: FromByteSlice,
T: FromByteSlice,
impl<T> Borrow<T> for T where
T: ?Sized, [src]
T: ?Sized,
impl<T> BorrowMut<T> for T where
T: ?Sized, [src]
T: ?Sized,
fn borrow_mut(&mut self) -> &mut T[src]
impl<T> Clear for T where
T: InitializableFromZeroed + ?Sized,
T: InitializableFromZeroed + ?Sized,
fn clear(&mut self)
impl<S> Codec for S where
S: Encode + Decode, [src]
S: Encode + Decode,
impl<T, X> Decode for X where
T: Decode + Into<X>,
X: WrapperTypeDecode<Wrapped = T>, [src]
T: Decode + Into<X>,
X: WrapperTypeDecode<Wrapped = T>,
impl<T> DecodeAll for T where
T: Decode, [src]
T: Decode,
impl<T> DeserializeOwned for T where
T: Deserialize<'de>, [src]
T: Deserialize<'de>,
impl<T, X> Encode for X where
T: Encode + ?Sized,
X: WrapperTypeEncode<Target = T>, [src]
T: Encode + ?Sized,
X: WrapperTypeEncode<Target = T>,
fn size_hint(&self) -> usize[src]
fn using_encoded<R, F>(&self, f: F) -> R where
F: FnOnce(&[u8]) -> R, [src]
F: FnOnce(&[u8]) -> R,
fn encode(&self) -> Vec<u8>[src]
fn encode_to<W>(&self, dest: &mut W) where
W: Output, [src]
W: Output,
impl<'_, '_, T> EncodeLike<&'_ &'_ T> for T where
T: Encode, [src]
T: Encode,
impl<'_, T> EncodeLike<&'_ T> for T where
T: Encode, [src]
T: Encode,
impl<'_, T> EncodeLike<&'_ mut T> for T where
T: Encode, [src]
T: Encode,
impl<T> EncodeLike<Arc<T>> for T where
T: Encode, [src]
T: Encode,
impl<T> EncodeLike<Box<T>> for T where
T: Encode, [src]
T: Encode,
impl<'a, T> EncodeLike<Cow<'a, T>> for T where
T: Encode + ToOwned, [src]
T: Encode + ToOwned,
impl<T> EncodeLike<Rc<T>> for T where
T: Encode, [src]
T: Encode,
impl<T> From<T> for T[src]
impl<T> FromFFIValue for T where
T: PassBy, [src]
T: PassBy,
type SelfInstance = T
As Self can be an unsized type, it needs to be represented by a sized type at the host. This SelfInstance is the sized type. Read more
fn from_ffi_value(
context: &mut dyn FunctionContext,
arg: <<T as PassBy>::PassBy as RIType>::FFIType
) -> Result<T, String>[src]
context: &mut dyn FunctionContext,
arg: <<T as PassBy>::PassBy as RIType>::FFIType
) -> Result<T, String>
impl<S> FullCodec for S where
S: Decode + FullEncode, [src]
S: Decode + FullEncode,
impl<S> FullEncode for S where
S: Encode + EncodeLike<S>, [src]
S: Encode + EncodeLike<S>,
impl<T> InitializableFromZeroed for T where
T: Default,
T: Default,
unsafe fn initialize(place: *mut T)
impl<T, U> Into<U> for T where
U: From<T>, [src]
U: From<T>,
impl<T> IntoFFIValue for T where
T: PassBy, [src]
T: PassBy,
fn into_ffi_value(
self,
context: &mut dyn FunctionContext
) -> Result<<<T as PassBy>::PassBy as RIType>::FFIType, String>[src]
self,
context: &mut dyn FunctionContext
) -> Result<<<T as PassBy>::PassBy as RIType>::FFIType, String>
impl<T, Outer> IsWrappedBy<Outer> for T where
Outer: AsRef<T> + AsMut<T> + From<T>,
T: From<Outer>, [src]
Outer: AsRef<T> + AsMut<T> + From<T>,
T: From<Outer>,
fn from_ref(&Outer) -> &T[src]
Get a reference to the inner from the outer.
fn from_mut(&mut Outer) -> &mut T[src]
Get a mutable reference to the inner from the outer.
impl<T> KeyedVec for T where
T: Codec, [src]
T: Codec,
impl<T> MallocSizeOfExt for T where
T: MallocSizeOf, [src]
T: MallocSizeOf,
fn malloc_size_of(&self) -> usize[src]
impl<T> MaybeDebug for T where
T: Debug, [src]
T: Debug,
impl<T> MaybeRefUnwindSafe for T where
T: RefUnwindSafe,
T: RefUnwindSafe,
impl<T> RIType for T where
T: PassBy, [src]
T: PassBy,
type FFIType = <<T as PassBy>::PassBy as RIType>::FFIType
The ffi type that is used to represent Self.
impl<T> Same<T> for T
type Output = T
Should always be Self
impl<T> ToHex for T where
T: AsRef<[u8]>, [src]
T: AsRef<[u8]>,
fn encode_hex<U>(&self) -> U where
U: FromIterator<char>, [src]
U: FromIterator<char>,
fn encode_hex_upper<U>(&self) -> U where
U: FromIterator<char>, [src]
U: FromIterator<char>,
impl<T> ToOwned for T where
T: Clone, [src]
T: Clone,
type Owned = T
The resulting type after obtaining ownership.
fn to_owned(&self) -> T[src]
fn clone_into(&self, target: &mut T)[src]
impl<T> ToString for T where
T: Display + ?Sized, [src]
T: Display + ?Sized,
impl<T, U> TryFrom<U> for T where
U: Into<T>, [src]
U: Into<T>,
type Error = Infallible
The type returned in the event of a conversion error.
fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>[src]
impl<T, U> TryInto<U> for T where
U: TryFrom<T>, [src]
U: TryFrom<T>,
type Error = <U as TryFrom<T>>::Error
The type returned in the event of a conversion error.
fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>[src]
impl<S, T> UncheckedInto<T> for S where
T: UncheckedFrom<S>, [src]
T: UncheckedFrom<S>,
fn unchecked_into(Self) -> T[src]
impl<V, T> VZip<V> for T where
V: MultiLane<T>,
V: MultiLane<T>,