Files
serai/substrate/tendermint/client/src/validators.rs

143 lines
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Rust
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use core::{marker::PhantomData, ops::Deref};
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use std::sync::{Arc, RwLock};
use sp_application_crypto::{
RuntimePublic as PublicTrait, Pair as PairTrait,
sr25519::{Public, Pair, Signature},
};
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use sp_staking::SessionIndex;
use sp_api::{BlockId, ProvideRuntimeApi};
use sc_client_api::HeaderBackend;
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use tendermint_machine::ext::{BlockNumber, Round, Weights, SignatureScheme};
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use sp_tendermint::TendermintApi;
use crate::TendermintClient;
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struct TendermintValidatorsStruct {
session: SessionIndex,
total_weight: u64,
weights: Vec<u64>,
keys: Pair, // TODO: sp_keystore
lookup: Vec<Public>,
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}
impl TendermintValidatorsStruct {
fn from_module<T: TendermintClient>(client: &Arc<T::Client>) -> TendermintValidatorsStruct {
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let last = client.info().best_hash;
let api = client.runtime_api();
let session = api.current_session(&BlockId::Hash(last)).unwrap();
let validators = api.validators(&BlockId::Hash(last)).unwrap();
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assert_eq!(validators.len(), 1);
let keys = Pair::from_string("//Alice", None).unwrap();
TendermintValidatorsStruct {
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session,
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// TODO
total_weight: validators.len().try_into().unwrap(),
weights: vec![1; validators.len()],
lookup: validators,
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keys,
}
}
}
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// Wrap every access of the validators struct in something which forces calling refresh
struct Refresh<T: TendermintClient> {
_tc: PhantomData<T>,
client: Arc<T::Client>,
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_refresh: Arc<RwLock<TendermintValidatorsStruct>>,
}
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impl<T: TendermintClient> Refresh<T> {
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// If the session has changed, re-create the struct with the data on it
fn refresh(&self) {
let session = self._refresh.read().unwrap().session;
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if session !=
self
.client
.runtime_api()
.current_session(&BlockId::Hash(self.client.info().best_hash))
.unwrap()
{
*self._refresh.write().unwrap() = TendermintValidatorsStruct::from_module::<T>(&self.client);
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}
}
}
impl<T: TendermintClient> Deref for Refresh<T> {
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type Target = RwLock<TendermintValidatorsStruct>;
fn deref(&self) -> &RwLock<TendermintValidatorsStruct> {
self.refresh();
&self._refresh
}
}
pub struct TendermintValidators<T: TendermintClient>(Refresh<T>);
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impl<T: TendermintClient> TendermintValidators<T> {
pub(crate) fn new(client: Arc<T::Client>) -> TendermintValidators<T> {
TendermintValidators(Refresh {
_tc: PhantomData,
_refresh: Arc::new(RwLock::new(TendermintValidatorsStruct::from_module::<T>(&client))),
client,
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})
}
}
impl<T: TendermintClient> SignatureScheme for TendermintValidators<T> {
type ValidatorId = u16;
type Signature = Signature;
type AggregateSignature = Vec<Signature>;
fn sign(&self, msg: &[u8]) -> Signature {
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self.0.read().unwrap().keys.sign(msg)
}
fn verify(&self, validator: u16, msg: &[u8], sig: &Signature) -> bool {
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self.0.read().unwrap().lookup[usize::try_from(validator).unwrap()].verify(&msg, sig)
}
fn aggregate(sigs: &[Signature]) -> Vec<Signature> {
sigs.to_vec()
}
fn verify_aggregate(&self, validators: &[u16], msg: &[u8], sigs: &Vec<Signature>) -> bool {
if validators.len() != sigs.len() {
return false;
}
for (v, sig) in validators.iter().zip(sigs.iter()) {
if !self.verify(*v, msg, sig) {
return false;
}
}
true
}
}
impl<T: TendermintClient> Weights for TendermintValidators<T> {
type ValidatorId = u16;
fn total_weight(&self) -> u64 {
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self.0.read().unwrap().total_weight
}
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fn weight(&self, id: u16) -> u64 {
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self.0.read().unwrap().weights[usize::try_from(id).unwrap()]
}
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// TODO
fn proposer(&self, number: BlockNumber, round: Round) -> u16 {
u16::try_from(
(number.0 + u64::from(round.0)) % u64::try_from(self.0.read().unwrap().lookup.len()).unwrap(),
)
.unwrap()
}
}