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* add genesis liquidity implementation * add missing deposit event * fix CI issues * minor fixes * make math safer * fix fmt * implement block emissions * make remove liquidity an authorized call * implement setting initial values for coins * add genesis liquidity test & misc fixes * updato develop latest * fix rotation test * fix licencing * add fast-epoch feature * only create the pool when adding liquidity first time * add initial reward era test * test whole pre ec security emissions * fix clippy * add swap-to-staked-sri feature * rebase changes * fix tests * Remove accidentally commited ETH ABI files * fix some pr comments * Finish up fixing pr comments * exclude SRI from is_allowed check * Misc changes --------- Co-authored-by: akildemir <aeg_asd@hotmail.com> Co-authored-by: Luke Parker <lukeparker5132@gmail.com>
393 lines
13 KiB
Rust
393 lines
13 KiB
Rust
use rand_core::{RngCore, OsRng};
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use sp_core::{
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sr25519::{Public, Pair},
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Pair as PairTrait,
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};
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use serai_client::{
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primitives::{
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NETWORKS, NetworkId, BlockHash, insecure_pair_from_name, FAST_EPOCH_DURATION, TARGET_BLOCK_TIME,
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},
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validator_sets::{
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primitives::{Session, ValidatorSet, KeyPair},
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ValidatorSetsEvent,
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},
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in_instructions::{
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primitives::{Batch, SignedBatch, batch_message},
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SeraiInInstructions,
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},
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Amount, Serai,
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};
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mod common;
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use common::{
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tx::publish_tx,
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validator_sets::{allocate_stake, deallocate_stake, set_keys},
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};
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fn get_random_key_pair() -> KeyPair {
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let mut ristretto_key = [0; 32];
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OsRng.fill_bytes(&mut ristretto_key);
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let mut external_key = vec![0; 33];
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OsRng.fill_bytes(&mut external_key);
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KeyPair(Public(ristretto_key), external_key.try_into().unwrap())
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}
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async fn get_ordered_keys(serai: &Serai, network: NetworkId, accounts: &[Pair]) -> Vec<Pair> {
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// retrieve the current session validators so that we know the order of the keys
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// that is necessary for the correct musig signature.
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let validators = serai
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.as_of_latest_finalized_block()
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.await
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.unwrap()
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.validator_sets()
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.active_network_validators(network)
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.await
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.unwrap();
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// collect the pairs of the validators
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let mut pairs = vec![];
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for v in validators {
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let p = accounts.iter().find(|pair| pair.public() == v).unwrap().clone();
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pairs.push(p);
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}
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pairs
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}
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serai_test!(
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set_keys_test: (|serai: Serai| async move {
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let network = NetworkId::Bitcoin;
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let set = ValidatorSet { session: Session(0), network };
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let pair = insecure_pair_from_name("Alice");
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let public = pair.public();
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// Neither of these keys are validated
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// The external key is infeasible to validate on-chain, the Ristretto key is feasible
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// TODO: Should the Ristretto key be validated?
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let key_pair = get_random_key_pair();
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// Make sure the genesis is as expected
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assert_eq!(
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serai
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.as_of(serai.finalized_block_by_number(0).await.unwrap().unwrap().hash())
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.validator_sets()
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.new_set_events()
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.await
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.unwrap(),
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NETWORKS
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.iter()
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.copied()
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.map(|network| ValidatorSetsEvent::NewSet {
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set: ValidatorSet { session: Session(0), network }
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})
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.collect::<Vec<_>>(),
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);
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{
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let vs_serai = serai.as_of_latest_finalized_block().await.unwrap();
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let vs_serai = vs_serai.validator_sets();
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let participants = vs_serai.participants(set.network).await
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.unwrap()
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.unwrap()
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.into_iter()
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.map(|(k, _)| k)
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.collect::<Vec<_>>();
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let participants_ref: &[_] = participants.as_ref();
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assert_eq!(participants_ref, [public].as_ref());
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}
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let block = set_keys(&serai, set, key_pair.clone(), &[pair]).await;
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// While the set_keys function should handle this, it's beneficial to
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// independently test it
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let serai = serai.as_of(block);
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let serai = serai.validator_sets();
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assert_eq!(
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serai.key_gen_events().await.unwrap(),
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vec![ValidatorSetsEvent::KeyGen { set, key_pair: key_pair.clone() }]
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);
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assert_eq!(serai.keys(set).await.unwrap(), Some(key_pair));
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})
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);
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#[tokio::test]
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async fn validator_set_rotation() {
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use dockertest::{
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PullPolicy, StartPolicy, LogOptions, LogAction, LogPolicy, LogSource, Image,
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TestBodySpecification, DockerTest,
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};
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use std::collections::HashMap;
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serai_docker_tests::build("serai-fast-epoch".to_string());
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let handle = |name| format!("serai_client-serai_node-{name}");
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let composition = |name| {
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TestBodySpecification::with_image(
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Image::with_repository("serai-dev-serai-fast-epoch").pull_policy(PullPolicy::Never),
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)
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.replace_cmd(vec![
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"serai-node".to_string(),
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"--unsafe-rpc-external".to_string(),
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"--rpc-cors".to_string(),
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"all".to_string(),
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"--chain".to_string(),
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"local".to_string(),
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format!("--{name}"),
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])
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.replace_env(HashMap::from([
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("RUST_LOG".to_string(), "runtime=debug".to_string()),
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("KEY".to_string(), " ".to_string()),
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]))
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.set_publish_all_ports(true)
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.set_handle(handle(name))
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.set_start_policy(StartPolicy::Strict)
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.set_log_options(Some(LogOptions {
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action: LogAction::Forward,
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policy: LogPolicy::Always,
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source: LogSource::Both,
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}))
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};
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let mut test = DockerTest::new().with_network(dockertest::Network::Isolated);
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test.provide_container(composition("alice"));
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test.provide_container(composition("bob"));
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test.provide_container(composition("charlie"));
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test.provide_container(composition("dave"));
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test.provide_container(composition("eve"));
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test
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.run_async(|ops| async move {
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// Sleep until the Substrate RPC starts
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let alice = handle("alice");
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let alice_rpc = ops.handle(&alice).host_port(9944).unwrap();
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let alice_rpc = format!("http://{}:{}", alice_rpc.0, alice_rpc.1);
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// Sleep for some time
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tokio::time::sleep(core::time::Duration::from_secs(20)).await;
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let serai = Serai::new(alice_rpc.clone()).await.unwrap();
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// Make sure the genesis is as expected
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assert_eq!(
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serai
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.as_of(serai.finalized_block_by_number(0).await.unwrap().unwrap().hash())
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.validator_sets()
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.new_set_events()
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.await
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.unwrap(),
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NETWORKS
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.iter()
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.copied()
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.map(|network| ValidatorSetsEvent::NewSet {
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set: ValidatorSet { session: Session(0), network }
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})
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.collect::<Vec<_>>(),
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);
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// genesis accounts
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let accounts = vec![
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insecure_pair_from_name("Alice"),
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insecure_pair_from_name("Bob"),
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insecure_pair_from_name("Charlie"),
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insecure_pair_from_name("Dave"),
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insecure_pair_from_name("Eve"),
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];
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// amounts for single key share per network
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let key_shares = HashMap::from([
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(NetworkId::Serai, Amount(50_000 * 10_u64.pow(8))),
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(NetworkId::Bitcoin, Amount(1_000_000 * 10_u64.pow(8))),
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(NetworkId::Monero, Amount(100_000 * 10_u64.pow(8))),
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(NetworkId::Ethereum, Amount(1_000_000 * 10_u64.pow(8))),
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]);
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// genesis participants per network
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#[allow(clippy::redundant_closure_for_method_calls)]
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let default_participants =
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accounts[.. 4].to_vec().iter().map(|pair| pair.public()).collect::<Vec<_>>();
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let mut participants = HashMap::from([
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(NetworkId::Serai, default_participants.clone()),
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(NetworkId::Bitcoin, default_participants.clone()),
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(NetworkId::Monero, default_participants.clone()),
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(NetworkId::Ethereum, default_participants),
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]);
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// test the set rotation
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for (i, network) in NETWORKS.into_iter().enumerate() {
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let participants = participants.get_mut(&network).unwrap();
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// we start the chain with 4 default participants that has a single key share each
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participants.sort();
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verify_session_and_active_validators(&serai, network, 0, participants).await;
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// add 1 participant
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let last_participant = accounts[4].clone();
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let hash = allocate_stake(
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&serai,
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network,
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key_shares[&network],
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&last_participant,
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i.try_into().unwrap(),
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)
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.await;
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participants.push(last_participant.public());
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// the session at which set changes becomes active
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let activation_session = get_session_at_which_changes_activate(&serai, network, hash).await;
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// set the keys if it is an external set
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if network != NetworkId::Serai {
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let set = ValidatorSet { session: Session(0), network };
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let key_pair = get_random_key_pair();
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let pairs = get_ordered_keys(&serai, network, &accounts).await;
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set_keys(&serai, set, key_pair, &pairs).await;
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}
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// verify
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participants.sort();
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verify_session_and_active_validators(&serai, network, activation_session, participants)
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.await;
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// remove 1 participant
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let participant_to_remove = accounts[1].clone();
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let hash = deallocate_stake(
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&serai,
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network,
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key_shares[&network],
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&participant_to_remove,
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i.try_into().unwrap(),
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)
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.await;
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participants.swap_remove(
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participants.iter().position(|k| *k == participant_to_remove.public()).unwrap(),
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);
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let activation_session = get_session_at_which_changes_activate(&serai, network, hash).await;
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if network != NetworkId::Serai {
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// set the keys if it is an external set
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let set = ValidatorSet { session: Session(1), network };
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// we need the whole substrate key pair to sign the batch
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let (substrate_pair, key_pair) = {
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let pair = insecure_pair_from_name("session-1-key-pair");
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let public = pair.public();
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let mut external_key = vec![0; 33];
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OsRng.fill_bytes(&mut external_key);
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(pair, KeyPair(public, external_key.try_into().unwrap()))
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};
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let pairs = get_ordered_keys(&serai, network, &accounts).await;
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set_keys(&serai, set, key_pair, &pairs).await;
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// provide a batch to complete the handover and retire the previous set
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let mut block_hash = BlockHash([0; 32]);
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OsRng.fill_bytes(&mut block_hash.0);
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let batch = Batch { network, id: 0, block: block_hash, instructions: vec![] };
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publish_tx(
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&serai,
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&SeraiInInstructions::execute_batch(SignedBatch {
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batch: batch.clone(),
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signature: substrate_pair.sign(&batch_message(&batch)),
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}),
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)
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.await;
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}
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// verify
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participants.sort();
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verify_session_and_active_validators(&serai, network, activation_session, participants)
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.await;
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// check pending deallocations
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let pending = serai
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.as_of_latest_finalized_block()
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.await
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.unwrap()
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.validator_sets()
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.pending_deallocations(
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network,
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participant_to_remove.public(),
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Session(activation_session + 1),
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)
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.await
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.unwrap();
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assert_eq!(pending, Some(key_shares[&network]));
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}
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})
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.await;
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}
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async fn session_for_block(serai: &Serai, block: [u8; 32], network: NetworkId) -> u32 {
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serai.as_of(block).validator_sets().session(network).await.unwrap().unwrap().0
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}
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async fn verify_session_and_active_validators(
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serai: &Serai,
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network: NetworkId,
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session: u32,
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participants: &[Public],
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) {
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// wait until the active session.
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let block = tokio::time::timeout(
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core::time::Duration::from_secs(FAST_EPOCH_DURATION * TARGET_BLOCK_TIME * 2),
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async move {
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loop {
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let mut block = serai.latest_finalized_block_hash().await.unwrap();
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if session_for_block(serai, block, network).await < session {
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// Sleep a block
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tokio::time::sleep(core::time::Duration::from_secs(TARGET_BLOCK_TIME)).await;
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continue;
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}
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while session_for_block(serai, block, network).await > session {
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block = serai.block(block).await.unwrap().unwrap().header.parent_hash.0;
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}
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assert_eq!(session_for_block(serai, block, network).await, session);
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break block;
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}
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},
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)
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.await
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.unwrap();
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let serai_for_block = serai.as_of(block);
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// verify session
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let s = serai_for_block.validator_sets().session(network).await.unwrap().unwrap();
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assert_eq!(s.0, session);
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// verify participants
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let mut validators =
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serai_for_block.validator_sets().active_network_validators(network).await.unwrap();
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validators.sort();
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assert_eq!(validators, participants);
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// make sure finalization continues as usual after the changes
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let current_finalized_block = serai.latest_finalized_block().await.unwrap().header.number;
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tokio::time::timeout(core::time::Duration::from_secs(TARGET_BLOCK_TIME * 10), async move {
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let mut finalized_block = serai.latest_finalized_block().await.unwrap().header.number;
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while finalized_block <= current_finalized_block + 2 {
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tokio::time::sleep(core::time::Duration::from_secs(TARGET_BLOCK_TIME)).await;
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finalized_block = serai.latest_finalized_block().await.unwrap().header.number;
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}
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})
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.await
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.unwrap();
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// TODO: verify key shares as well?
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}
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async fn get_session_at_which_changes_activate(
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serai: &Serai,
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network: NetworkId,
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hash: [u8; 32],
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) -> u32 {
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let session = session_for_block(serai, hash, network).await;
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// changes should be active in the next session
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if network == NetworkId::Serai {
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// it takes 1 extra session for serai net to make the changes active.
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session + 2
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} else {
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session + 1
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}
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}
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