mirror of
https://github.com/comit-network/xmr-btc-swap.git
synced 2024-10-01 01:45:40 -04:00
333 lines
9.0 KiB
Rust
333 lines
9.0 KiB
Rust
use bitcoin_harness::Bitcoind;
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use futures::future::try_join;
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use libp2p::{Multiaddr, PeerId};
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use monero_harness::Monero;
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use rand::rngs::OsRng;
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use std::sync::Arc;
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use swap::{
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alice, alice::swap::AliceState, bob, bob::swap::BobState, network::transport::build,
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storage::Database, SwapAmounts, PUNISH_TIMELOCK, REFUND_TIMELOCK,
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};
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use tempfile::tempdir;
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use testcontainers::clients::Cli;
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use uuid::Uuid;
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use xmr_btc::{bitcoin, config::Config, cross_curve_dleq};
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/// Run the following tests with RUST_MIN_STACK=100000000000
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#[tokio::test]
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async fn happy_path() {
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init_tracing();
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let cli = Cli::default();
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let bitcoind = Bitcoind::new(&cli, "0.19.1").unwrap();
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let _ = bitcoind.init(5).await;
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let (monero, _container) =
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Monero::new(&cli, None, vec!["alice".to_string(), "bob".to_string()])
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.await
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.unwrap();
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let btc = bitcoin::Amount::from_sat(1_000_000);
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let btc_alice = bitcoin::Amount::ZERO;
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let btc_bob = btc * 10;
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// this xmr value matches the logic of alice::calculate_amounts i.e. btc *
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// 10_000 * 100
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let xmr = 1_000_000_000_000;
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let xmr_alice = xmr * 10;
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let xmr_bob = 0;
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let alice_multiaddr: Multiaddr = "/ip4/127.0.0.1/tcp/9876"
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.parse()
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.expect("failed to parse Alice's address");
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let (alice_state, alice_swarm, alice_btc_wallet, alice_xmr_wallet, alice_peer_id) = init_alice(
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&bitcoind,
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&monero,
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btc,
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btc_alice,
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xmr,
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xmr_alice,
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alice_multiaddr.clone(),
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)
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.await;
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let (bob_state, bob_swarm, bob_btc_wallet, bob_xmr_wallet, bob_db) = init_bob(
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alice_multiaddr,
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alice_peer_id,
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&bitcoind,
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&monero,
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btc,
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btc_bob,
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xmr,
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xmr_bob,
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)
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.await;
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let alice_swap = alice::swap::swap(
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alice_state,
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alice_swarm,
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alice_btc_wallet.clone(),
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alice_xmr_wallet.clone(),
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Config::regtest(),
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);
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let bob_swap = bob::swap::swap(
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bob_state,
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bob_swarm,
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bob_db,
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bob_btc_wallet.clone(),
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bob_xmr_wallet.clone(),
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OsRng,
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Uuid::new_v4(),
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);
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try_join(alice_swap, bob_swap).await.unwrap();
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let btc_alice_final = alice_btc_wallet.as_ref().balance().await.unwrap();
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let btc_bob_final = bob_btc_wallet.as_ref().balance().await.unwrap();
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let xmr_alice_final = alice_xmr_wallet.as_ref().get_balance().await.unwrap();
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bob_xmr_wallet.as_ref().0.refresh().await.unwrap();
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let xmr_bob_final = bob_xmr_wallet.as_ref().get_balance().await.unwrap();
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assert_eq!(
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btc_alice_final,
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btc_alice + btc - bitcoin::Amount::from_sat(bitcoin::TX_FEE)
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);
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assert!(btc_bob_final <= btc_bob - btc);
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assert!(xmr_alice_final.as_piconero() <= xmr_alice - xmr);
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assert_eq!(xmr_bob_final.as_piconero(), xmr_bob + xmr);
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}
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/// Bob locks Btc and Alice locks Xmr. Bob does not act; he fails to send Alice
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/// the encsig and fail to refund or redeem. Alice punishes.
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#[tokio::test]
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async fn alice_punishes_if_bob_never_acts_after_fund() {
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init_tracing();
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let cli = Cli::default();
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let bitcoind = Bitcoind::new(&cli, "0.19.1").unwrap();
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let _ = bitcoind.init(5).await;
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let (monero, _container) =
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Monero::new(&cli, None, vec!["alice".to_string(), "bob".to_string()])
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.await
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.unwrap();
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let btc_to_swap = bitcoin::Amount::from_sat(1_000_000);
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let xmr_to_swap = 1_000_000_000_000;
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let bob_btc_starting_balance = btc_to_swap * 10;
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let bob_xmr_starting_balance = 0;
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let alice_btc_starting_balance = bitcoin::Amount::ZERO;
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let alice_xmr_starting_balance = xmr_to_swap * 10;
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let alice_multiaddr: Multiaddr = "/ip4/127.0.0.1/tcp/9877"
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.parse()
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.expect("failed to parse Alice's address");
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let (alice_state, alice_swarm, alice_btc_wallet, alice_xmr_wallet, alice_peer_id) = init_alice(
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&bitcoind,
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&monero,
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btc_to_swap,
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alice_btc_starting_balance,
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xmr_to_swap,
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alice_xmr_starting_balance,
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alice_multiaddr.clone(),
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)
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.await;
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let (bob_state, bob_swarm, bob_btc_wallet, bob_xmr_wallet, bob_db) = init_bob(
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alice_multiaddr,
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alice_peer_id,
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&bitcoind,
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&monero,
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btc_to_swap,
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bob_btc_starting_balance,
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xmr_to_swap,
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bob_xmr_starting_balance,
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)
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.await;
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let bob_xmr_locked_fut = bob::swap::run_until(
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bob_state,
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bob::swap::is_xmr_locked,
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bob_swarm,
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bob_db,
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bob_btc_wallet.clone(),
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bob_xmr_wallet.clone(),
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OsRng,
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Uuid::new_v4(),
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);
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let alice_xmr_locked_fut = alice::swap::run_until(
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alice_state,
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alice::swap::is_xmr_locked,
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alice_swarm,
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alice_btc_wallet.clone(),
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alice_xmr_wallet.clone(),
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Config::regtest(),
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);
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// Wait until alice has locked xmr and bob has locked btc
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let ((alice_state, alice_swarm), _bob_state) =
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try_join(alice_xmr_locked_fut, bob_xmr_locked_fut)
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.await
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.unwrap();
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let (punished, _) = alice::swap::swap(
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alice_state,
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alice_swarm,
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alice_btc_wallet.clone(),
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alice_xmr_wallet.clone(),
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Config::regtest(),
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)
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.await
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.unwrap();
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assert!(matches!(punished, AliceState::Punished));
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// todo: Add balance assertions
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}
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#[allow(clippy::too_many_arguments)]
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async fn init_alice(
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bitcoind: &Bitcoind<'_>,
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monero: &Monero,
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btc_to_swap: bitcoin::Amount,
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_btc_starting_balance: bitcoin::Amount,
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xmr_to_swap: u64,
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xmr_starting_balance: u64,
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alice_multiaddr: Multiaddr,
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) -> (
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AliceState,
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alice::Swarm,
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Arc<swap::bitcoin::Wallet>,
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Arc<swap::monero::Wallet>,
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PeerId,
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) {
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monero
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.init(vec![("alice", xmr_starting_balance)])
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.await
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.unwrap();
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let alice_xmr_wallet = Arc::new(swap::monero::Wallet(
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monero.wallet("alice").unwrap().client(),
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));
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let alice_btc_wallet = Arc::new(
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swap::bitcoin::Wallet::new("alice", bitcoind.node_url.clone())
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.await
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.unwrap(),
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);
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let amounts = SwapAmounts {
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btc: btc_to_swap,
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xmr: xmr_btc::monero::Amount::from_piconero(xmr_to_swap),
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};
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let alice_behaviour = alice::Behaviour::default();
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let alice_peer_id = alice_behaviour.peer_id();
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let alice_transport = build(alice_behaviour.identity()).unwrap();
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let rng = &mut OsRng;
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let alice_state = {
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let a = bitcoin::SecretKey::new_random(rng);
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let s_a = cross_curve_dleq::Scalar::random(rng);
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let v_a = xmr_btc::monero::PrivateViewKey::new_random(rng);
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AliceState::Started {
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amounts,
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a,
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s_a,
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v_a,
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}
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};
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let alice_swarm = alice::new_swarm(alice_multiaddr, alice_transport, alice_behaviour).unwrap();
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(
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alice_state,
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alice_swarm,
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alice_btc_wallet,
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alice_xmr_wallet,
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alice_peer_id,
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)
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}
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#[allow(clippy::too_many_arguments)]
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async fn init_bob(
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alice_multiaddr: Multiaddr,
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alice_peer_id: PeerId,
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bitcoind: &Bitcoind<'_>,
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monero: &Monero,
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btc_to_swap: bitcoin::Amount,
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btc_starting_balance: bitcoin::Amount,
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xmr_to_swap: u64,
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xmr_stating_balance: u64,
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) -> (
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BobState,
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bob::Swarm,
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Arc<swap::bitcoin::Wallet>,
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Arc<swap::monero::Wallet>,
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Database,
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) {
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let bob_btc_wallet = Arc::new(
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swap::bitcoin::Wallet::new("bob", bitcoind.node_url.clone())
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.await
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.unwrap(),
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);
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bitcoind
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.mint(
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bob_btc_wallet.0.new_address().await.unwrap(),
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btc_starting_balance,
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)
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.await
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.unwrap();
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monero
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.init(vec![("bob", xmr_stating_balance)])
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.await
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.unwrap();
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let bob_xmr_wallet = Arc::new(swap::monero::Wallet(monero.wallet("bob").unwrap().client()));
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let amounts = SwapAmounts {
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btc: btc_to_swap,
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xmr: xmr_btc::monero::Amount::from_piconero(xmr_to_swap),
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};
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let rng = &mut OsRng;
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let bob_db_dir = tempdir().unwrap();
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let bob_db = Database::open(bob_db_dir.path()).unwrap();
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let bob_behaviour = bob::Behaviour::default();
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let bob_transport = build(bob_behaviour.identity()).unwrap();
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let refund_address = bob_btc_wallet.new_address().await.unwrap();
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let state0 = xmr_btc::bob::State0::new(
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rng,
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btc_to_swap,
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xmr_btc::monero::Amount::from_piconero(xmr_to_swap),
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REFUND_TIMELOCK,
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PUNISH_TIMELOCK,
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refund_address,
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);
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let bob_state = BobState::Started {
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state0,
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amounts,
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peer_id: alice_peer_id,
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addr: alice_multiaddr,
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};
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let bob_swarm = bob::new_swarm(bob_transport, bob_behaviour).unwrap();
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(bob_state, bob_swarm, bob_btc_wallet, bob_xmr_wallet, bob_db)
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}
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fn init_tracing() {
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use tracing_subscriber::util::SubscriberInitExt as _;
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let _guard = tracing_subscriber::fmt()
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.with_env_filter("swap=info,xmr_btc=info")
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.with_ansi(false)
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.set_default();
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}
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