serai/processor/src/tests/mod.rs

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use std::{
sync::{Arc, RwLock},
collections::HashMap,
};
use async_trait::async_trait;
use rand_core::OsRng;
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use crate::{
NetworkError, Network,
coin::{Coin, Monero},
wallet::{WalletKeys, MemCoinDb, Wallet},
};
#[derive(Clone)]
struct LocalNetwork {
i: u16,
size: u16,
round: usize,
#[allow(clippy::type_complexity)]
rounds: Arc<RwLock<Vec<HashMap<u16, Vec<u8>>>>>,
}
impl LocalNetwork {
fn new(size: u16) -> Vec<LocalNetwork> {
let rounds = Arc::new(RwLock::new(vec![]));
let mut res = vec![];
for i in 1 ..= size {
res.push(LocalNetwork { i, size, round: 0, rounds: rounds.clone() });
}
res
}
}
#[async_trait]
impl Network for LocalNetwork {
async fn round(&mut self, data: Vec<u8>) -> Result<HashMap<u16, Vec<u8>>, NetworkError> {
{
let mut rounds = self.rounds.write().unwrap();
if rounds.len() == self.round {
rounds.push(HashMap::new());
}
rounds[self.round].insert(self.i, data);
}
while {
let read = self.rounds.try_read().unwrap();
read[self.round].len() != usize::from(self.size)
} {
tokio::task::yield_now().await;
}
let mut res = self.rounds.try_read().unwrap()[self.round].clone();
res.remove(&self.i);
self.round += 1;
Ok(res)
}
}
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async fn test_send<C: Coin + Clone>(coin: C, fee: C::Fee) {
// Mine blocks so there's a confirmed block
coin.mine_block().await;
let latest = coin.get_latest_block_number().await.unwrap();
let mut keys = frost::tests::key_gen::<_, C::Curve>(&mut OsRng);
let threshold = keys[&1].params().t();
let mut networks = LocalNetwork::new(threshold);
let mut wallets = vec![];
for i in 1 ..= threshold {
let mut wallet = Wallet::new(MemCoinDb::new(), coin.clone());
wallet.acknowledge_block(0, latest);
Utilize zeroize (#76) * Apply Zeroize to nonces used in Bulletproofs Also makes bit decomposition constant time for a given amount of outputs. * Fix nonce reuse for single-signer CLSAG * Attach Zeroize to most structures in Monero, and ZOnDrop to anything with private data * Zeroize private keys and nonces * Merge prepare_outputs and prepare_transactions * Ensure CLSAG is constant time * Pass by borrow where needed, bug fixes The past few commitments have been one in-progress chunk which I've broken up as best read. * Add Zeroize to FROST structs Still needs to zeroize internally, yet next step. Not quite as aggressive as Monero, partially due to the limitations of HashMaps, partially due to less concern about metadata, yet does still delete a few smaller items of metadata (group key, context string...). * Remove Zeroize from most Monero multisig structs These structs largely didn't have private data, just fields with private data, yet those fields implemented ZeroizeOnDrop making them already covered. While there is still traces of the transaction left in RAM, fully purging that was never the intent. * Use Zeroize within dleq bitvec doesn't offer Zeroize, so a manual zeroing has been implemented. * Use Zeroize for random_nonce It isn't perfect, due to the inability to zeroize the digest, and due to kp256 requiring a few transformations. It does the best it can though. Does move the per-curve random_nonce to a provided one, which is allowed as of https://github.com/cfrg/draft-irtf-cfrg-frost/pull/231. * Use Zeroize on FROST keygen/signing * Zeroize constant time multiexp. * Correct when FROST keygen zeroizes * Move the FROST keys Arc into FrostKeys Reduces amount of instances in memory. * Manually implement Debug for FrostCore to not leak the secret share * Misc bug fixes * clippy + multiexp test bug fixes * Correct FROST key gen share summation It leaked our own share for ourself. * Fix cross-group DLEq tests
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wallet.add_keys(&WalletKeys::new(keys.remove(&i).unwrap(), 0));
wallets.push(wallet);
}
// Get the chain to a length where blocks have sufficient confirmations
while (latest + (C::CONFIRMATIONS - 1)) > coin.get_latest_block_number().await.unwrap() {
coin.mine_block().await;
}
for wallet in wallets.iter_mut() {
// Poll to activate the keys
wallet.poll().await.unwrap();
}
coin.test_send(wallets[0].address()).await;
let mut futures = vec![];
for (network, wallet) in networks.iter_mut().zip(wallets.iter_mut()) {
wallet.poll().await.unwrap();
let latest = coin.get_latest_block_number().await.unwrap();
wallet.acknowledge_block(1, latest - (C::CONFIRMATIONS - 1));
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let signable = wallet
.prepare_sends(1, vec![(wallet.address(), 10000000000)], fee)
.await
.unwrap()
.1
.swap_remove(0);
futures.push(wallet.attempt_send(network, signable));
}
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println!("{:?}", hex::encode(futures::future::join_all(futures).await.swap_remove(0).unwrap().0));
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}
#[tokio::test]
async fn monero() {
let monero = Monero::new("http://127.0.0.1:18081".to_string()).await;
let fee = monero.get_fee().await;
test_send(monero, fee).await;
}