Struct tet_libp2p::multihash::MultihashGeneric[]

pub struct MultihashGeneric<S> where
    S: Size
{ /* fields omitted */ }

A Multihash instance that only supports the basic functionality and no hashing.

With this Multihash implementation you can operate on Multihashes in a generic way, but no hasher implementation is associated with the code.

Example

use multihash::Multihash;

const Sha3_256: u64 = 0x16;
let digest_bytes = [
    0x16, 0x20, 0x64, 0x4b, 0xcc, 0x7e, 0x56, 0x43, 0x73, 0x04, 0x09, 0x99, 0xaa, 0xc8, 0x9e,
    0x76, 0x22, 0xf3, 0xca, 0x71, 0xfb, 0xa1, 0xd9, 0x72, 0xfd, 0x94, 0xa3, 0x1c, 0x3b, 0xfb,
    0xf2, 0x4e, 0x39, 0x38,
];
let mh = Multihash::from_bytes(&digest_bytes).unwrap();
assert_eq!(mh.code(), Sha3_256);
assert_eq!(mh.size(), 32);
assert_eq!(mh.digest(), &digest_bytes[2..]);

Implementations

impl<S> Multihash<S> where
    S: Size

pub fn wrap(code: u64, input_digest: &[u8]) -> Result<Multihash<S>, Error>

Wraps the digest in a multihash.

pub fn code(&self) -> u64

Returns the code of the multihash.

pub fn size(&self) -> u8

Returns the size of the digest.

pub fn digest(&self) -> &[u8]

Returns the digest.

pub fn read<R>(r: R) -> Result<Multihash<S>, Error> where
    R: Read,
    Multihash<S>: Sized

Reads a multihash from a byte stream.

pub fn from_bytes(bytes: &[u8]) -> Result<Multihash<S>, Error> where
    Multihash<S>: Sized

Parses a multihash from a bytes.

You need to make sure the passed in bytes have the correct length. The digest length needs to match the size value of the multihash.

pub fn write<W>(&self, w: W) -> Result<(), Error> where
    W: Write

Writes a multihash to a byte stream.

pub fn to_bytes(&self) -> Vec<u8, Global>

Returns the bytes of a multihash.

Trait Implementations

impl AsRef<Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>> for PeerId[src]

impl<S> Clone for Multihash<S> where
    S: Size + Clone

impl<S> Copy for Multihash<S> where
    S: Size,
    <S as ArrayLength<u8>>::ArrayType: Copy

impl<S> Debug for Multihash<S> where
    S: Size + Debug

impl<S> Default for Multihash<S> where
    S: Size + Default

impl<S> Eq for Multihash<S> where
    S: Size + Eq

impl From<Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>> for Key<Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>>[src]

impl From<Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>> for Key[src]

impl From<PeerId> for Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>[src]

impl From<PeerId> for Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>

impl<S> Hash for Multihash<S> where
    S: Size

impl<S> Ord for Multihash<S> where
    S: Size + Ord

impl<S> PartialEq<Multihash<S>> for Multihash<S> where
    S: Size + PartialEq<S>, 

impl<S> PartialOrd<Multihash<S>> for Multihash<S> where
    S: Size + PartialOrd<S>, 

impl<S> StructuralEq for Multihash<S> where
    S: Size

impl<S> StructuralPartialEq for Multihash<S> where
    S: Size

impl TryFrom<Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>> for PeerId[src]

type Error = Multihash<UInt<UInt<UInt<UInt<UInt<UInt<UInt<UTerm, B1>, B0>, B0>, B0>, B0>, B0>, B0>>

The type returned in the event of a conversion error.

Auto Trait Implementations

impl<S> RefUnwindSafe for Multihash<S> where
    <S as ArrayLength<u8>>::ArrayType: RefUnwindSafe

impl<S> Send for Multihash<S>

impl<S> Sync for Multihash<S>

impl<S> Unpin for Multihash<S> where
    <S as ArrayLength<u8>>::ArrayType: Unpin

impl<S> UnwindSafe for Multihash<S> where
    <S as ArrayLength<u8>>::ArrayType: UnwindSafe

Blanket Implementations

impl<T> Any for T where
    T: 'static + ?Sized
[src]

impl<T> Borrow<T> for T where
    T: ?Sized
[src]

impl<T> BorrowMut<T> for T where
    T: ?Sized
[src]

impl<T> CallHasher for T where
    T: Hash

impl<T> From<T> for T[src]

impl<T, U> Into<U> for T where
    U: From<T>, 
[src]

impl<T> Same<T> for T

type Output = T

Should always be Self

impl<T> ToOwned for T where
    T: Clone
[src]

type Owned = T

The resulting type after obtaining ownership.

impl<T, U> TryFrom<U> for T where
    U: Into<T>, 
[src]

type Error = Infallible

The type returned in the event of a conversion error.

impl<T, U> TryInto<U> for T where
    U: TryFrom<T>, 
[src]

type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.

impl<V, T> VZip<V> for T where
    V: MultiLane<T>,