Struct Signature
pub struct Signature { /* private fields */ }
Expand description
An Ethereum ECDSA signature.
Implementationsยง
ยงimpl Signature
impl Signature
pub fn decode_rlp_vrs(buf: &mut &[u8]) -> Result<Signature, Error>
pub fn decode_rlp_vrs(buf: &mut &[u8]) -> Result<Signature, Error>
Decode an RLP-encoded VRS signature.
ยงimpl Signature
impl Signature
pub const fn new(r: Uint<256, 4>, s: Uint<256, 4>, v: Parity) -> Signature
pub const fn new(r: Uint<256, 4>, s: Uint<256, 4>, v: Parity) -> Signature
Instantiate a new signature from r
, s
, and v
values.
pub fn into_inner(self) -> Signature<Secp256k1>
๐Deprecated: use Signature::to_k256
instead
pub fn into_inner(self) -> Signature<Secp256k1>
Signature::to_k256
insteadReturns the inner ECDSA signature.
pub fn from_signature_and_parity<T, E>(
sig: Signature<Secp256k1>,
parity: T,
) -> Result<Signature, SignatureError>
pub fn from_signature_and_parity<T, E>( sig: Signature<Secp256k1>, parity: T, ) -> Result<Signature, SignatureError>
Instantiate from a signature and recovery id
pub fn from_scalars_and_parity<T, E>(
r: FixedBytes<32>,
s: FixedBytes<32>,
parity: T,
) -> Result<Signature, SignatureError>
pub fn from_scalars_and_parity<T, E>( r: FixedBytes<32>, s: FixedBytes<32>, parity: T, ) -> Result<Signature, SignatureError>
Creates a Signature
from the serialized r
and s
scalar values, which comprise the
ECDSA signature, alongside a v
value, used to determine the recovery ID.
pub fn normalize_s(&self) -> Option<Signature>
pub fn normalize_s(&self) -> Option<Signature>
Normalizes the signature into โlow Sโ form as described in BIP 0062: Dealing with Malleability.
pub const fn recid(&self) -> RecoveryId
pub const fn recid(&self) -> RecoveryId
Returns the recovery ID.
pub fn recover_address_from_msg<T>(
&self,
msg: T,
) -> Result<Address, SignatureError>
pub fn recover_address_from_msg<T>( &self, msg: T, ) -> Result<Address, SignatureError>
pub fn recover_address_from_prehash(
&self,
prehash: &FixedBytes<32>,
) -> Result<Address, SignatureError>
pub fn recover_address_from_prehash( &self, prehash: &FixedBytes<32>, ) -> Result<Address, SignatureError>
Recovers an Address
from this signature and the given prehashed message.
pub fn recover_from_msg<T>(
&self,
msg: T,
) -> Result<VerifyingKey<Secp256k1>, SignatureError>
pub fn recover_from_msg<T>( &self, msg: T, ) -> Result<VerifyingKey<Secp256k1>, SignatureError>
Recovers a VerifyingKey
from this signature and the given message by first prefixing and
hashing the message according to EIP-191.
pub fn recover_from_prehash(
&self,
prehash: &FixedBytes<32>,
) -> Result<VerifyingKey<Secp256k1>, SignatureError>
pub fn recover_from_prehash( &self, prehash: &FixedBytes<32>, ) -> Result<VerifyingKey<Secp256k1>, SignatureError>
Recovers a VerifyingKey
from this signature and the given prehashed message.
pub fn from_bytes_and_parity<T, E>(
bytes: &[u8],
parity: T,
) -> Result<Signature, SignatureError>
pub fn from_bytes_and_parity<T, E>( bytes: &[u8], parity: T, ) -> Result<Signature, SignatureError>
Parses a signature from a byte slice, with a v value
ยงPanics
If the slice is not at least 64 bytes long.
pub fn from_rs_and_parity<T, E>(
r: Uint<256, 4>,
s: Uint<256, 4>,
parity: T,
) -> Result<Signature, SignatureError>
pub fn from_rs_and_parity<T, E>( r: Uint<256, 4>, s: Uint<256, 4>, parity: T, ) -> Result<Signature, SignatureError>
Instantiate from v, r, s.
pub fn with_chain_id(self, chain_id: u64) -> Signature
pub fn with_chain_id(self, chain_id: u64) -> Signature
Modifies the recovery ID by applying EIP-155 to a v
value.
pub fn with_parity_bool(self) -> Signature
pub fn with_parity_bool(self) -> Signature
Modifies the recovery ID by dropping any [EIP-155] v value, converting to a simple parity bool.
pub const fn chain_id(&self) -> Option<u64>
pub const fn chain_id(&self) -> Option<u64>
Returns the chain ID associated with the V value, if this signature is replay-protected by EIP-155.
pub const fn has_eip155_value(&self) -> bool
pub const fn has_eip155_value(&self) -> bool
Returns true if the signature is replay-protected by EIP-155.
This is true if the V value is 35 or greater. Values less than 35 are either not replay protected (27/28), or are invalid.
pub fn as_bytes(&self) -> [u8; 65]
pub fn as_bytes(&self) -> [u8; 65]
Returns the byte-array representation of this signature.
The first 32 bytes are the r
value, the second 32 bytes the s
value
and the final byte is the v
value in โElectrumโ notation.
pub fn with_parity<T>(self, parity: T) -> Signature
pub fn with_parity<T>(self, parity: T) -> Signature
Sets the recovery ID by normalizing a v
value.
pub fn rlp_rs_len(&self) -> usize
pub fn rlp_rs_len(&self) -> usize
Length of RLP RS field encoding
pub fn rlp_vrs_len(&self) -> usize
pub fn rlp_vrs_len(&self) -> usize
Length of RLP V field encoding
pub fn write_rlp_rs(&self, out: &mut dyn BufMut)
pub fn write_rlp_rs(&self, out: &mut dyn BufMut)
Write R and S to an RLP buffer in progress.
pub fn write_rlp_v(&self, out: &mut dyn BufMut)
pub fn write_rlp_v(&self, out: &mut dyn BufMut)
Write the V to an RLP buffer without using EIP-155.
pub fn write_rlp_vrs(&self, out: &mut dyn BufMut)
pub fn write_rlp_vrs(&self, out: &mut dyn BufMut)
Write the VRS to the output. The V will always be 27 or 28.
Trait Implementationsยง
ยงimpl<'a> Arbitrary<'a> for Signature
impl<'a> Arbitrary<'a> for Signature
ยงfn arbitrary(u: &mut Unstructured<'a>) -> Result<Signature, Error>
fn arbitrary(u: &mut Unstructured<'a>) -> Result<Signature, Error>
Self
from the given unstructured data. Read moreยงfn arbitrary_take_rest(u: Unstructured<'a>) -> Result<Self, Error>
fn arbitrary_take_rest(u: Unstructured<'a>) -> Result<Self, Error>
Self
from the entirety of the given
unstructured data. Read moreยงimpl Arbitrary for Signature
impl Arbitrary for Signature
ยงtype Parameters = ()
type Parameters = ()
arbitrary_with
accepts for configuration
of the generated Strategy
. Parameters must implement Default
.ยงtype Strategy = FilterMap<<(Uint<256, 4>, Uint<256, 4>, Parity) as Arbitrary>::Strategy, fn(_: (Uint<256, 4>, Uint<256, 4>, Parity)) -> Option<Signature>>
type Strategy = FilterMap<<(Uint<256, 4>, Uint<256, 4>, Parity) as Arbitrary>::Strategy, fn(_: (Uint<256, 4>, Uint<256, 4>, Parity)) -> Option<Signature>>
Strategy
used to generate values of type Self
.ยงfn arbitrary_with(
_: <Signature as Arbitrary>::Parameters,
) -> <Signature as Arbitrary>::Strategy
fn arbitrary_with( _: <Signature as Arbitrary>::Parameters, ) -> <Signature as Arbitrary>::Strategy
ยงimpl<'de> Deserialize<'de> for Signature
impl<'de> Deserialize<'de> for Signature
ยงfn deserialize<D>(
deserializer: D,
) -> Result<Signature, <D as Deserializer<'de>>::Error>where
D: Deserializer<'de>,
fn deserialize<D>(
deserializer: D,
) -> Result<Signature, <D as Deserializer<'de>>::Error>where
D: Deserializer<'de>,
ยงimpl Serialize for Signature
impl Serialize for Signature
ยงfn serialize<S>(
&self,
serializer: S,
) -> Result<<S as Serializer>::Ok, <S as Serializer>::Error>where
S: Serializer,
fn serialize<S>(
&self,
serializer: S,
) -> Result<<S as Serializer>::Ok, <S as Serializer>::Error>where
S: Serializer,
ยงimpl<'a> TryFrom<&'a [u8]> for Signature
impl<'a> TryFrom<&'a [u8]> for Signature
ยงfn try_from(
bytes: &'a [u8],
) -> Result<Signature, <Signature as TryFrom<&'a [u8]>>::Error>
fn try_from( bytes: &'a [u8], ) -> Result<Signature, <Signature as TryFrom<&'a [u8]>>::Error>
Parses a raw signature which is expected to be 65 bytes long where
the first 32 bytes is the r
value, the second 32 bytes the s
value
and the final byte is the v
value in โElectrumโ notation.
ยงtype Error = SignatureError
type Error = SignatureError
impl Copy for Signature
impl Eq for Signature
impl StructuralPartialEq for Signature
Auto Trait Implementationsยง
impl Freeze for Signature
impl RefUnwindSafe for Signature
impl Send for Signature
impl Sync for Signature
impl Unpin for Signature
impl UnwindSafe for Signature
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fn equivalent(&self, key: &K) -> bool
key
and return true
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impl<Q, K> Equivalent<K> for Q
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fn equivalent(&self, key: &K) -> bool
key
and return true
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fn equivalent(&self, key: &K) -> bool
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Layoutยง
Note: Most layout information is completely unstable and may even differ between compilations. The only exception is types with certain repr(...)
attributes. Please see the Rust Reference's โType Layoutโ chapter for details on type layout guarantees.
Size: 80 bytes