xmr-btc-swap/swap/tests/testutils/mod.rs

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use crate::testutils;
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use bitcoin_harness::Bitcoind;
use futures::Future;
use get_port::get_port;
use libp2p::{core::Multiaddr, PeerId};
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use monero_harness::{image, Monero};
use rand::rngs::OsRng;
use std::{path::PathBuf, sync::Arc};
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use swap::{
bitcoin,
config::Config,
database::Database,
monero, network,
network::transport::build,
protocol::{alice, alice::AliceState, bob, bob::BobState},
seed::Seed,
SwapAmounts,
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};
use tempfile::tempdir;
use testcontainers::{clients::Cli, Container};
use tracing_core::dispatcher::DefaultGuard;
use tracing_log::LogTracer;
use uuid::Uuid;
pub struct Alice {
pub event_loop_handle: alice::EventLoopHandle,
pub btc_wallet: Arc<bitcoin::Wallet>,
pub xmr_wallet: Arc<monero::Wallet>,
pub config: Config,
pub db: Database,
pub state: AliceState,
pub xmr_starting_balance: monero::Amount,
pub btc_starting_balance: bitcoin::Amount,
// test context (state we have to keep to simulate restart)
pub swap_id: Uuid,
}
pub struct Bob {
pub state: BobState,
pub event_loop_handle: bob::EventLoopHandle,
pub db: Database,
pub bitcoin_wallet: Arc<bitcoin::Wallet>,
pub monero_wallet: Arc<monero::Wallet>,
pub swap_id: Uuid,
pub btc_starting_balance: bitcoin::Amount,
pub xmr_starting_balance: monero::Amount,
}
pub struct AliceFactory {
listen_address: Multiaddr,
peer_id: PeerId,
seed: Seed,
db_path: PathBuf,
swap_id: Uuid,
// Stuff that should probably not be in here...
swap_amounts: SwapAmounts,
btc_wallet: Arc<bitcoin::Wallet>,
xmr_wallet: Arc<monero::Wallet>,
config: Config,
xmr_starting_balance: monero::Amount,
btc_starting_balance: bitcoin::Amount,
}
impl AliceFactory {
pub fn peer_id(&self) -> PeerId {
self.peer_id.clone()
}
pub fn listen_address(&self) -> Multiaddr {
self.listen_address.clone()
}
pub async fn new(
config: Config,
swap_amounts: SwapAmounts,
swap_id: Uuid,
monero: &Monero,
bitcoind: &Bitcoind<'_>,
xmr_starting_balance: monero::Amount,
btc_starting_balance: bitcoin::Amount,
) -> Self {
let port = get_port().expect("Failed to find a free port");
let listen_address: Multiaddr = format!("/ip4/127.0.0.1/tcp/{}", port)
.parse()
.expect("failed to parse Alice's address");
let seed = Seed::random().unwrap();
let db_path = tempdir().unwrap().path().to_path_buf();
let alice_xmr_starting_balance = swap_amounts.xmr * 10;
let (btc_wallet, xmr_wallet) = init_wallets(
"alice",
bitcoind,
monero,
None,
Some(alice_xmr_starting_balance),
config,
)
.await;
// TODO: This should be done by changing the production code
let network_seed = network::Seed::new(seed);
let identity = network_seed.derive_libp2p_identity();
let peer_id = PeerId::from(identity.public());
Self {
seed,
db_path,
listen_address,
peer_id,
swap_id,
swap_amounts,
btc_wallet,
xmr_wallet,
config,
xmr_starting_balance,
btc_starting_balance,
}
}
pub async fn new_alice(&self) -> Alice {
let initial_state = init_alice_state(
self.swap_amounts.btc,
self.swap_amounts.xmr,
self.btc_wallet.clone(),
self.config,
)
.await;
let (mut event_loop, event_loop_handle) =
init_alice_event_loop(self.listen_address.clone(), self.seed);
tokio::spawn(async move { event_loop.run().await });
let db = Database::open(self.db_path.as_path()).unwrap();
Alice {
event_loop_handle,
btc_wallet: self.btc_wallet.clone(),
xmr_wallet: self.xmr_wallet.clone(),
config: self.config,
db,
state: initial_state,
xmr_starting_balance: self.xmr_starting_balance,
btc_starting_balance: self.btc_starting_balance,
swap_id: self.swap_id,
}
}
pub async fn recover_alice_from_db(&self) -> Alice {
// TODO: "simulated restart" issues:
// - create new wallets instead of reusing (hard because of container
// lifetimes)
// - consider aborting the old event loop (currently just keeps running)
// reopen the existing database
let db = Database::open(self.db_path.clone().as_path()).unwrap();
let resume_state =
if let swap::database::Swap::Alice(state) = db.get_state(self.swap_id).unwrap() {
state.into()
} else {
unreachable!()
};
let (mut event_loop, event_loop_handle) =
init_alice_event_loop(self.listen_address.clone(), self.seed);
tokio::spawn(async move { event_loop.run().await });
Alice {
state: resume_state,
event_loop_handle,
btc_wallet: self.btc_wallet.clone(),
xmr_wallet: self.xmr_wallet.clone(),
config: self.config,
swap_id: self.swap_id,
db,
xmr_starting_balance: self.xmr_starting_balance,
btc_starting_balance: self.btc_starting_balance,
}
}
}
pub async fn test<T, F>(testfn: T)
where
T: Fn(AliceFactory, Bob, SwapAmounts) -> F,
F: Future<Output = ()>,
{
let cli = Cli::default();
let _guard = init_tracing();
let (monero, containers) = testutils::init_containers(&cli).await;
let swap_amounts = SwapAmounts {
btc: bitcoin::Amount::from_sat(1_000_000),
xmr: monero::Amount::from_piconero(1_000_000_000_000),
};
let config = Config::regtest();
let alice_factory = AliceFactory::new(
config,
swap_amounts,
Uuid::new_v4(),
&monero,
&containers.bitcoind,
swap_amounts.xmr * 10,
bitcoin::Amount::ZERO,
)
.await;
let bob_btc_starting_balance = swap_amounts.btc * 10;
let (bob_btc_wallet, bob_xmr_wallet) = init_wallets(
"bob",
&containers.bitcoind,
&monero,
Some(bob_btc_starting_balance),
None,
config,
)
.await;
let bob_state = init_bob_state(
swap_amounts.btc,
swap_amounts.xmr,
bob_btc_wallet.clone(),
config,
)
.await;
let (bob_event_loop, bob_event_loop_handle) =
init_bob_event_loop(alice_factory.peer_id(), alice_factory.listen_address());
let bob_db_dir = tempdir().unwrap();
let bob_db = Database::open(bob_db_dir.path()).unwrap();
tokio::spawn(async move { bob_event_loop.run().await });
let bob = Bob {
state: bob_state,
event_loop_handle: bob_event_loop_handle,
db: bob_db,
bitcoin_wallet: bob_btc_wallet,
monero_wallet: bob_xmr_wallet,
swap_id: Uuid::new_v4(),
xmr_starting_balance: monero::Amount::ZERO,
btc_starting_balance: bob_btc_starting_balance,
};
testfn(alice_factory, bob, swap_amounts).await
}
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pub async fn init_containers(cli: &Cli) -> (Monero, Containers<'_>) {
let bitcoind = Bitcoind::new(&cli, "0.19.1").unwrap();
let _ = bitcoind.init(5).await;
let (monero, monerods) = Monero::new(&cli, None, vec!["alice".to_string(), "bob".to_string()])
.await
.unwrap();
(monero, Containers { bitcoind, monerods })
}
pub async fn init_wallets(
name: &str,
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bitcoind: &Bitcoind<'_>,
monero: &Monero,
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btc_starting_balance: Option<bitcoin::Amount>,
xmr_starting_balance: Option<monero::Amount>,
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config: Config,
) -> (Arc<bitcoin::Wallet>, Arc<monero::Wallet>) {
match xmr_starting_balance {
Some(amount) => {
monero
.init(vec![(name, amount.as_piconero())])
.await
.unwrap();
}
None => {
monero
.init(vec![(name, monero::Amount::ZERO.as_piconero())])
.await
.unwrap();
}
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};
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let xmr_wallet = Arc::new(swap::monero::Wallet {
inner: monero.wallet(name).unwrap().client(),
network: config.monero_network,
});
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let btc_wallet = Arc::new(
swap::bitcoin::Wallet::new(name, bitcoind.node_url.clone(), config.bitcoin_network)
.await
.unwrap(),
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);
if let Some(amount) = btc_starting_balance {
bitcoind
.mint(btc_wallet.inner.new_address().await.unwrap(), amount)
.await
.unwrap();
}
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(btc_wallet, xmr_wallet)
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}
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pub async fn init_alice_state(
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btc_to_swap: bitcoin::Amount,
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xmr_to_swap: monero::Amount,
alice_btc_wallet: Arc<bitcoin::Wallet>,
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config: Config,
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) -> AliceState {
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let rng = &mut OsRng;
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let amounts = SwapAmounts {
btc: btc_to_swap,
xmr: xmr_to_swap,
};
let a = bitcoin::SecretKey::new_random(rng);
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let s_a = cross_curve_dleq::Scalar::random(rng);
let v_a = monero::PrivateViewKey::new_random(rng);
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let redeem_address = alice_btc_wallet.as_ref().new_address().await.unwrap();
let punish_address = redeem_address.clone();
let state0 = alice::State0::new(
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a,
s_a,
v_a,
amounts.btc,
amounts.xmr,
config.bitcoin_cancel_timelock,
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config.bitcoin_punish_timelock,
redeem_address,
punish_address,
);
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AliceState::Started { amounts, state0 }
}
pub fn init_alice_event_loop(
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listen: Multiaddr,
seed: Seed,
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) -> (
alice::event_loop::EventLoop,
alice::event_loop::EventLoopHandle,
) {
let alice_behaviour = alice::Behaviour::new(network::Seed::new(seed));
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let alice_transport = build(alice_behaviour.identity()).unwrap();
alice::event_loop::EventLoop::new(alice_transport, alice_behaviour, listen).unwrap()
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}
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#[allow(clippy::too_many_arguments)]
pub async fn init_alice(
bitcoind: &Bitcoind<'_>,
monero: &Monero,
btc_to_swap: bitcoin::Amount,
xmr_to_swap: monero::Amount,
xmr_starting_balance: monero::Amount,
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listen: Multiaddr,
config: Config,
seed: Seed,
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) -> (
AliceState,
alice::event_loop::EventLoop,
alice::event_loop::EventLoopHandle,
Arc<swap::bitcoin::Wallet>,
Arc<swap::monero::Wallet>,
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Database,
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) {
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let (alice_btc_wallet, alice_xmr_wallet) = init_wallets(
"alice",
bitcoind,
monero,
None,
Some(xmr_starting_balance),
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config,
)
.await;
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let alice_start_state =
init_alice_state(btc_to_swap, xmr_to_swap, alice_btc_wallet.clone(), config).await;
let (event_loop, event_loop_handle) = init_alice_event_loop(listen, seed);
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let alice_db_datadir = tempdir().unwrap();
let alice_db = Database::open(alice_db_datadir.path()).unwrap();
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(
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alice_start_state,
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event_loop,
event_loop_handle,
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alice_btc_wallet,
alice_xmr_wallet,
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alice_db,
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)
}
pub async fn init_bob_state(
btc_to_swap: bitcoin::Amount,
xmr_to_swap: monero::Amount,
bob_btc_wallet: Arc<bitcoin::Wallet>,
config: Config,
) -> BobState {
let amounts = SwapAmounts {
btc: btc_to_swap,
xmr: xmr_to_swap,
};
let refund_address = bob_btc_wallet.new_address().await.unwrap();
let state0 = bob::State0::new(
&mut OsRng,
btc_to_swap,
xmr_to_swap,
config.bitcoin_cancel_timelock,
config.bitcoin_punish_timelock,
refund_address,
config.monero_finality_confirmations,
);
BobState::Started { state0, amounts }
}
pub fn init_bob_event_loop(
alice_peer_id: PeerId,
alice_addr: Multiaddr,
) -> (bob::event_loop::EventLoop, bob::event_loop::EventLoopHandle) {
let seed = Seed::random().unwrap();
let bob_behaviour = bob::Behaviour::new(network::Seed::new(seed));
let bob_transport = build(bob_behaviour.identity()).unwrap();
bob::event_loop::EventLoop::new(bob_transport, bob_behaviour, alice_peer_id, alice_addr)
.unwrap()
}
#[allow(clippy::too_many_arguments)]
pub async fn init_bob(
alice_multiaddr: Multiaddr,
alice_peer_id: PeerId,
bitcoind: &Bitcoind<'_>,
monero: &Monero,
btc_to_swap: bitcoin::Amount,
btc_starting_balance: bitcoin::Amount,
xmr_to_swap: monero::Amount,
config: Config,
) -> (
BobState,
bob::event_loop::EventLoop,
bob::event_loop::EventLoopHandle,
Arc<swap::bitcoin::Wallet>,
Arc<swap::monero::Wallet>,
Database,
) {
let (bob_btc_wallet, bob_xmr_wallet) = init_wallets(
"bob",
bitcoind,
monero,
Some(btc_starting_balance),
None,
config,
)
.await;
let bob_state = init_bob_state(btc_to_swap, xmr_to_swap, bob_btc_wallet.clone(), config).await;
let (event_loop, event_loop_handle) = init_bob_event_loop(alice_peer_id, alice_multiaddr);
let bob_db_dir = tempdir().unwrap();
let bob_db = Database::open(bob_db_dir.path()).unwrap();
(
bob_state,
event_loop,
event_loop_handle,
bob_btc_wallet,
bob_xmr_wallet,
bob_db,
)
}
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// This is just to keep the containers alive
#[allow(dead_code)]
pub struct Containers<'a> {
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pub bitcoind: Bitcoind<'a>,
pub monerods: Vec<Container<'a, Cli, image::Monero>>,
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}
/// Utility function to initialize logging in the test environment.
/// Note that you have to keep the `_guard` in scope after calling in test:
///
/// ```rust
/// let _guard = init_tracing();
/// ```
pub fn init_tracing() -> DefaultGuard {
// converts all log records into tracing events
// Note: Make sure to initialize without unwrapping, otherwise this causes
// trouble when running multiple tests.
let _ = LogTracer::init();
let global_filter = tracing::Level::WARN;
let swap_filter = tracing::Level::DEBUG;
let xmr_btc_filter = tracing::Level::DEBUG;
let monero_harness_filter = tracing::Level::INFO;
let bitcoin_harness_filter = tracing::Level::INFO;
use tracing_subscriber::util::SubscriberInitExt as _;
tracing_subscriber::fmt()
.with_env_filter(format!(
"{},swap={},xmr_btc={},monero_harness={},bitcoin_harness={}",
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global_filter,
swap_filter,
xmr_btc_filter,
monero_harness_filter,
bitcoin_harness_filter,
))
.set_default()
}