pub struct Public(Public);Expand description
A generic AppPublic wrapper type over $public crypto; this has no specific App.
Tuple Fields§
§0: PublicImplementations§
Source§impl Public
impl Public
Sourcepub fn into_inner(self) -> Public
pub fn into_inner(self) -> Public
Convert into wrapped generic public key type.
Trait Implementations§
Source§impl AppCrypto for Public
impl AppCrypto for Public
Source§impl ByteArray for Public
impl ByteArray for Public
§fn from_slice(data: &[u8]) -> Result<Self, ()>
fn from_slice(data: &[u8]) -> Result<Self, ()>
Self::LEN bytes long.§fn to_raw_vec(&self) -> Vec<u8> ⓘ
fn to_raw_vec(&self) -> Vec<u8> ⓘ
Vec<u8> filled with raw data.Source§impl Decode for Public
impl Decode for Public
Source§fn decode<__CodecInputEdqy: Input>(
__codec_input_edqy: &mut __CodecInputEdqy,
) -> Result<Self, Error>
fn decode<__CodecInputEdqy: Input>( __codec_input_edqy: &mut __CodecInputEdqy, ) -> Result<Self, Error>
§fn decode_into<I>(
input: &mut I,
dst: &mut MaybeUninit<Self>,
) -> Result<DecodeFinished, Error>where
I: Input,
fn decode_into<I>(
input: &mut I,
dst: &mut MaybeUninit<Self>,
) -> Result<DecodeFinished, Error>where
I: Input,
§fn skip<I>(input: &mut I) -> Result<(), Error>where
I: Input,
fn skip<I>(input: &mut I) -> Result<(), Error>where
I: Input,
§fn encoded_fixed_size() -> Option<usize>
fn encoded_fixed_size() -> Option<usize>
Source§impl<'de> Deserialize<'de> for Public
impl<'de> Deserialize<'de> for Public
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>,
Source§impl Encode for Public
impl Encode for Public
Source§fn size_hint(&self) -> usize
fn size_hint(&self) -> usize
Source§fn encode_to<__CodecOutputEdqy: Output + ?Sized>(
&self,
__codec_dest_edqy: &mut __CodecOutputEdqy,
)
fn encode_to<__CodecOutputEdqy: Output + ?Sized>( &self, __codec_dest_edqy: &mut __CodecOutputEdqy, )
Source§fn using_encoded<__CodecOutputReturn, __CodecUsingEncodedCallback: FnOnce(&[u8]) -> __CodecOutputReturn>(
&self,
f: __CodecUsingEncodedCallback,
) -> __CodecOutputReturn
fn using_encoded<__CodecOutputReturn, __CodecUsingEncodedCallback: FnOnce(&[u8]) -> __CodecOutputReturn>( &self, f: __CodecUsingEncodedCallback, ) -> __CodecOutputReturn
§fn encoded_size(&self) -> usize
fn encoded_size(&self) -> usize
Source§impl MaxEncodedLen for Public
impl MaxEncodedLen for Public
Source§fn max_encoded_len() -> usize
fn max_encoded_len() -> usize
Source§impl Ord for Public
impl Ord for Public
Source§impl PartialOrd for Public
impl PartialOrd for Public
Source§impl Wraps for Public
impl Wraps for Public
Source§type Inner = CryptoBytes<sp_core::::sr25519::Public::{constant#0}, Sr25519PublicTag>
type Inner = CryptoBytes<sp_core::::sr25519::Public::{constant#0}, Sr25519PublicTag>
§fn as_inner_ref(&self) -> &Self::Inner
fn as_inner_ref(&self) -> &Self::Inner
impl DecodeWithMemTracking for Public
impl EncodeLike for Public
impl Eq for Public
impl Public for Public
impl StructuralPartialEq for Public
Auto Trait Implementations§
impl Freeze for Public
impl RefUnwindSafe for Public
impl Send for Public
impl Sync for Public
impl Unpin for Public
impl UnwindSafe for Public
Blanket Implementations§
§impl<T, U> AsByteSlice<T> for U
impl<T, U> AsByteSlice<T> for U
fn as_byte_slice(&self) -> &[u8] ⓘ
§impl<T, U> AsMutByteSlice<T> for U
impl<T, U> AsMutByteSlice<T> for U
fn as_mut_byte_slice(&mut self) -> &mut [u8] ⓘ
§impl<U> AsMutSliceOf for U
impl<U> AsMutSliceOf for U
fn as_mut_slice_of<T>(&mut self) -> Result<&mut [T], Error>where
T: FromByteSlice,
§impl<U> AsSliceOf for U
impl<U> AsSliceOf for U
fn as_slice_of<T>(&self) -> Result<&[T], Error>where
T: FromByteSlice,
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
§impl<T> BoundToRuntimeAppPublic for Twhere
T: RuntimeAppPublic,
impl<T> BoundToRuntimeAppPublic for Twhere
T: RuntimeAppPublic,
§impl<T> CheckedConversion for T
impl<T> CheckedConversion for T
§fn checked_from<T>(t: T) -> Option<Self>where
Self: TryFrom<T>,
fn checked_from<T>(t: T) -> Option<Self>where
Self: TryFrom<T>,
§fn checked_into<T>(self) -> Option<T>where
Self: TryInto<T>,
fn checked_into<T>(self) -> Option<T>where
Self: TryInto<T>,
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
§impl<T> DecodeAll for Twhere
T: Decode,
impl<T> DecodeAll for Twhere
T: Decode,
§fn decode_all(input: &mut &[u8]) -> Result<T, Error>
fn decode_all(input: &mut &[u8]) -> Result<T, Error>
Self and consume all of the given input data. Read more§impl<T> DecodeLimit for Twhere
T: Decode,
impl<T> DecodeLimit for Twhere
T: Decode,
§impl<T> DecodeWithMemLimit for Twhere
T: DecodeWithMemTracking,
impl<T> DecodeWithMemLimit for Twhere
T: DecodeWithMemTracking,
§impl<T> DefensiveMax<T> for Twhere
T: PartialOrd,
impl<T> DefensiveMax<T> for Twhere
T: PartialOrd,
§fn defensive_max(self, other: T) -> T
fn defensive_max(self, other: T) -> T
§fn defensive_strict_max(self, other: T) -> T
fn defensive_strict_max(self, other: T) -> T
§impl<T> DefensiveMin<T> for Twhere
T: PartialOrd,
impl<T> DefensiveMin<T> for Twhere
T: PartialOrd,
§fn defensive_min(self, other: T) -> T
fn defensive_min(self, other: T) -> T
§fn defensive_strict_min(self, other: T) -> T
fn defensive_strict_min(self, other: T) -> T
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
§impl<T> Hashable for Twhere
T: Codec,
impl<T> Hashable for Twhere
T: Codec,
§impl<T> Instrument for T
impl<T> Instrument for T
§fn instrument(self, span: Span) -> Instrumented<Self>
fn instrument(self, span: Span) -> Instrumented<Self>
§fn in_current_span(self) -> Instrumented<Self>
fn in_current_span(self) -> Instrumented<Self>
Source§impl<T> IntoEither for T
impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self>
fn into_either(self, into_left: bool) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left is true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§impl<T, U, Tag> IntoTag<U, Tag> for Twhere
U: FromTag<T, Tag>,
Tag: DiscriminantTag,
impl<T, U, Tag> IntoTag<U, Tag> for Twhere
U: FromTag<T, Tag>,
Tag: DiscriminantTag,
§impl<Src, Dest> IntoTuple<Dest> for Srcwhere
Dest: FromTuple<Src>,
impl<Src, Dest> IntoTuple<Dest> for Srcwhere
Dest: FromTuple<Src>,
fn into_tuple(self) -> Dest
§impl<T> IsType<T> for T
impl<T> IsType<T> for T
§impl<T, Outer> IsWrappedBy<Outer> for T
impl<T, Outer> IsWrappedBy<Outer> for T
§impl<T> KeyedVec for Twhere
T: Codec,
impl<T> KeyedVec for Twhere
T: Codec,
Source§impl<T, Time> Logging<Time> for Twhere
Time: Time,
impl<T, Time> Logging<Time> for Twhere
Time: Time,
Source§const FALLBACK_TARGET: &'static str = "routine"
const FALLBACK_TARGET: &'static str = "routine"
Default logging target if none is provided.
Most routines, especially offchain workers or background tasks, use this target for simplicity.
It allows a consistent place to look for routine logs without requiring every call to specify a target.
Note: This target is only a conveninence and may be somewhat vague. To ensure errors can still be traced accurately, the logged messages should include additional metadata (e.g., module name, error index, or contextual info) so that the source of the error can be identified even if the target is generic.
Source§type Logger = DispatchError
type Logger = DispatchError
The type taken and returned for logging.
We simply return the same [DispatchError] that was logged,
so logging does not change control flow or error propagation.
DispatchError is used because in Substrate it encompasses all
runtime errors - including module errors, token errors, arithmetic
issues, and transactional boundaries - making it the universal
substrate-side error representation.
Source§type Level = LogLevel
type Level = LogLevel
The log level type.
We use the LogLevel enum to standardize severity levels
(Info, Warn, Error, Debug) across all routine logs.
Source§fn log(
level: <T as Logging<Time>>::Level,
err: &<T as Logging<Time>>::Logger,
timestamp: Time,
target: Option<&str>,
fmt: Option<fn(Time, &<T as Logging<Time>>::Level, &str, &str) -> String>,
) -> <T as Logging<Time>>::Logger
fn log( level: <T as Logging<Time>>::Level, err: &<T as Logging<Time>>::Logger, timestamp: Time, target: Option<&str>, fmt: Option<fn(Time, &<T as Logging<Time>>::Level, &str, &str) -> String>, ) -> <T as Logging<Time>>::Logger
Source§fn info(
err: &Self::Logger,
timestamp: Timestamp,
target: Option<&str>,
fmt: Option<fn(Timestamp, &Self::Level, &str, &str) -> String>,
) -> Self::Loggerwhere
Self: Sized,
fn info(
err: &Self::Logger,
timestamp: Timestamp,
target: Option<&str>,
fmt: Option<fn(Timestamp, &Self::Level, &str, &str) -> String>,
) -> Self::Loggerwhere
Self: Sized,
Source§fn warn(
err: &Self::Logger,
timestamp: Timestamp,
target: Option<&str>,
fmt: Option<fn(Timestamp, &Self::Level, &str, &str) -> String>,
) -> Self::Loggerwhere
Self: Sized,
fn warn(
err: &Self::Logger,
timestamp: Timestamp,
target: Option<&str>,
fmt: Option<fn(Timestamp, &Self::Level, &str, &str) -> String>,
) -> Self::Loggerwhere
Self: Sized,
§impl<T> RuntimeAppPublic for T
impl<T> RuntimeAppPublic for T
§type Signature = <T as AppCrypto>::Signature
type Signature = <T as AppCrypto>::Signature
§fn generate_pair(seed: Option<Vec<u8>>) -> T
fn generate_pair(seed: Option<Vec<u8>>) -> T
seed and store it in the keystore. Read more§fn sign<M>(&self, msg: &M) -> Option<<T as RuntimeAppPublic>::Signature>
fn sign<M>(&self, msg: &M) -> Option<<T as RuntimeAppPublic>::Signature>
§fn verify<M>(
&self,
msg: &M,
signature: &<T as RuntimeAppPublic>::Signature,
) -> bool
fn verify<M>( &self, msg: &M, signature: &<T as RuntimeAppPublic>::Signature, ) -> bool
§fn to_raw_vec(&self) -> Vec<u8> ⓘ
fn to_raw_vec(&self) -> Vec<u8> ⓘ
Self as raw vec.§impl<T> SaturatedConversion for T
impl<T> SaturatedConversion for T
§fn saturated_from<T>(t: T) -> Selfwhere
Self: UniqueSaturatedFrom<T>,
fn saturated_from<T>(t: T) -> Selfwhere
Self: UniqueSaturatedFrom<T>,
§fn saturated_into<T>(self) -> Twhere
Self: UniqueSaturatedInto<T>,
fn saturated_into<T>(self) -> Twhere
Self: UniqueSaturatedInto<T>,
T. Read more§impl<T> Ss58Codec for T
impl<T> Ss58Codec for T
§fn from_string(s: &str) -> Result<T, PublicError>
fn from_string(s: &str) -> Result<T, PublicError>
§fn from_string_with_version(
s: &str,
) -> Result<(T, Ss58AddressFormat), PublicError>
fn from_string_with_version( s: &str, ) -> Result<(T, Ss58AddressFormat), PublicError>
§fn format_is_allowed(f: Ss58AddressFormat) -> bool
fn format_is_allowed(f: Ss58AddressFormat) -> bool
from_ss58check family only decode for
allowed identifiers. By default just refuses the two reserved identifiers.§fn from_ss58check(s: &str) -> Result<Self, PublicError>
fn from_ss58check(s: &str) -> Result<Self, PublicError>
§fn from_ss58check_with_version(
s: &str,
) -> Result<(Self, Ss58AddressFormat), PublicError>
fn from_ss58check_with_version( s: &str, ) -> Result<(Self, Ss58AddressFormat), PublicError>
§fn to_ss58check_with_version(&self, version: Ss58AddressFormat) -> String
fn to_ss58check_with_version(&self, version: Ss58AddressFormat) -> String
§fn to_ss58check(&self) -> String
fn to_ss58check(&self) -> String
Source§impl<T> ToHex for T
impl<T> ToHex for T
Source§fn encode_hex<U>(&self) -> Uwhere
U: FromIterator<char>,
fn encode_hex<U>(&self) -> Uwhere
U: FromIterator<char>,
self into the result. Lower case
letters are used (e.g. f9b4ca)Source§fn encode_hex_upper<U>(&self) -> Uwhere
U: FromIterator<char>,
fn encode_hex_upper<U>(&self) -> Uwhere
U: FromIterator<char>,
self into the result. Upper case
letters are used (e.g. F9B4CA)§impl<T, U> TryIntoKey<U> for Twhere
U: TryFromKey<T>,
impl<T, U> TryIntoKey<U> for Twhere
U: TryFromKey<T>,
type Error = <U as TryFromKey<T>>::Error
fn try_into_key(self) -> Result<U, <U as TryFromKey<T>>::Error>
§impl<Inner, Outer, T> UncheckedFrom<T> for Outerwhere
Outer: Wraps<Inner = Inner>,
Inner: IsWrappedBy<Outer> + UncheckedFrom<T>,
impl<Inner, Outer, T> UncheckedFrom<T> for Outerwhere
Outer: Wraps<Inner = Inner>,
Inner: IsWrappedBy<Outer> + UncheckedFrom<T>,
§fn unchecked_from(t: T) -> Outer
fn unchecked_from(t: T) -> Outer
T to Self. This is not guaranteed to be
whatever counts as a valid instance of T and it’s up to the caller to
ensure that it makes sense.§impl<S, T> UncheckedInto<T> for Swhere
T: UncheckedFrom<S>,
impl<S, T> UncheckedInto<T> for Swhere
T: UncheckedFrom<S>,
§fn unchecked_into(self) -> T
fn unchecked_into(self) -> T
unchecked_from.§impl<T, S> UniqueSaturatedInto<T> for S
impl<T, S> UniqueSaturatedInto<T> for S
§fn unique_saturated_into(self) -> T
fn unique_saturated_into(self) -> T
T.