mirror of
https://github.com/comit-network/xmr-btc-swap.git
synced 2024-10-01 01:45:40 -04:00
560 lines
19 KiB
Rust
560 lines
19 KiB
Rust
//! Run an XMR/BTC swap in the role of Alice.
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//! Alice holds XMR and wishes receive BTC.
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use crate::{
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alice::{
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event_loop::EventLoopHandle,
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steps::{
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build_bitcoin_punish_transaction, build_bitcoin_redeem_transaction,
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extract_monero_private_key, lock_xmr, negotiate, publish_bitcoin_punish_transaction,
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publish_bitcoin_redeem_transaction, publish_cancel_transaction,
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wait_for_bitcoin_encrypted_signature, wait_for_bitcoin_refund, wait_for_locked_bitcoin,
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},
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},
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bitcoin::EncryptedSignature,
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database::Database,
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network::request_response::AliceToBob,
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state::Swap,
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SwapAmounts,
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};
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use anyhow::Result;
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use async_recursion::async_recursion;
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use futures::{
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future::{select, Either},
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pin_mut,
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};
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use libp2p::request_response::ResponseChannel;
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use rand::{CryptoRng, RngCore};
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use std::{fmt, sync::Arc};
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use tracing::info;
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use uuid::Uuid;
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use xmr_btc::{
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alice::{State0, State3},
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bitcoin::{TransactionBlockHeight, TxCancel, TxRefund, WatchForRawTransaction},
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config::Config,
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monero::CreateWalletForOutput,
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ExpiredTimelocks,
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};
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trait Rng: RngCore + CryptoRng + Send {}
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impl<T> Rng for T where T: RngCore + CryptoRng + Send {}
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#[derive(Debug)]
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pub enum AliceState {
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Started {
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amounts: SwapAmounts,
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state0: State0,
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},
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Negotiated {
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channel: Option<ResponseChannel<AliceToBob>>,
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amounts: SwapAmounts,
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state3: Box<State3>,
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},
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BtcLocked {
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channel: Option<ResponseChannel<AliceToBob>>,
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amounts: SwapAmounts,
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state3: Box<State3>,
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},
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XmrLocked {
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state3: Box<State3>,
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},
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EncSigLearned {
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encrypted_signature: EncryptedSignature,
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state3: Box<State3>,
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},
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BtcRedeemed,
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BtcCancelled {
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tx_cancel: TxCancel,
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state3: Box<State3>,
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},
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BtcRefunded {
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spend_key: monero::PrivateKey,
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state3: Box<State3>,
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},
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BtcPunishable {
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tx_refund: TxRefund,
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state3: Box<State3>,
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},
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XmrRefunded,
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CancelTimelockExpired {
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state3: Box<State3>,
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},
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BtcPunished,
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SafelyAborted,
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}
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impl fmt::Display for AliceState {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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match self {
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AliceState::Started { .. } => write!(f, "started"),
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AliceState::Negotiated { .. } => write!(f, "negotiated"),
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AliceState::BtcLocked { .. } => write!(f, "btc is locked"),
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AliceState::XmrLocked { .. } => write!(f, "xmr is locked"),
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AliceState::EncSigLearned { .. } => write!(f, "encrypted signature is learned"),
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AliceState::BtcRedeemed => write!(f, "btc is redeemed"),
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AliceState::BtcCancelled { .. } => write!(f, "btc is cancelled"),
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AliceState::BtcRefunded { .. } => write!(f, "btc is refunded"),
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AliceState::BtcPunished => write!(f, "btc is punished"),
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AliceState::SafelyAborted => write!(f, "safely aborted"),
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AliceState::BtcPunishable { .. } => write!(f, "btc is punishable"),
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AliceState::XmrRefunded => write!(f, "xmr is refunded"),
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AliceState::CancelTimelockExpired { .. } => write!(f, "cancel timelock is expired"),
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}
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}
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}
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pub async fn swap(
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state: AliceState,
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event_loop_handle: EventLoopHandle,
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bitcoin_wallet: Arc<crate::bitcoin::Wallet>,
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monero_wallet: Arc<crate::monero::Wallet>,
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config: Config,
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swap_id: Uuid,
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db: Database,
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) -> Result<AliceState> {
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run_until(
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state,
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is_complete,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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pub fn is_complete(state: &AliceState) -> bool {
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matches!(
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state,
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AliceState::XmrRefunded
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| AliceState::BtcRedeemed
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| AliceState::BtcPunished
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| AliceState::SafelyAborted
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)
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}
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pub fn is_xmr_locked(state: &AliceState) -> bool {
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matches!(
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state,
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AliceState::XmrLocked{..}
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)
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}
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pub fn is_encsig_learned(state: &AliceState) -> bool {
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matches!(
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state,
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AliceState::EncSigLearned{..}
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)
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}
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// State machine driver for swap execution
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#[async_recursion]
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#[allow(clippy::too_many_arguments)]
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pub async fn run_until(
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state: AliceState,
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is_target_state: fn(&AliceState) -> bool,
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mut event_loop_handle: EventLoopHandle,
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bitcoin_wallet: Arc<crate::bitcoin::Wallet>,
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monero_wallet: Arc<crate::monero::Wallet>,
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config: Config,
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swap_id: Uuid,
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db: Database,
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// TODO: Remove EventLoopHandle!
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) -> Result<AliceState> {
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info!("Current state:{}", state);
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if is_target_state(&state) {
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Ok(state)
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} else {
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match state {
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AliceState::Started { amounts, state0 } => {
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let (channel, state3) =
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negotiate(state0, amounts, &mut event_loop_handle, config).await?;
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let state = AliceState::Negotiated {
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channel: Some(channel),
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amounts,
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state3: Box::new(state3),
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};
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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AliceState::Negotiated {
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state3,
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channel,
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amounts,
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} => {
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let state = match channel {
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Some(channel) => {
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let _ = wait_for_locked_bitcoin(
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state3.tx_lock.txid(),
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bitcoin_wallet.clone(),
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config,
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)
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.await?;
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AliceState::BtcLocked {
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channel: Some(channel),
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amounts,
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state3,
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}
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}
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None => {
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tracing::info!("Cannot resume swap from negotiated state, aborting");
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// Alice did not lock Xmr yet
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AliceState::SafelyAborted
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}
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};
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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AliceState::BtcLocked {
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channel,
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amounts,
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state3,
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} => {
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let state = match channel {
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Some(channel) => {
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lock_xmr(
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channel,
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amounts,
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*state3.clone(),
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&mut event_loop_handle,
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monero_wallet.clone(),
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)
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.await?;
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AliceState::XmrLocked { state3 }
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}
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None => {
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tracing::info!("Cannot resume swap from BTC locked state, aborting");
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// Alice did not lock Xmr yet
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AliceState::SafelyAborted
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}
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};
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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AliceState::XmrLocked { state3 } => {
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// todo: match statement and wait for cancel timelock to expire can probably be
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// expressed more cleanly
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let state = match state3.expired_timelocks(bitcoin_wallet.as_ref()).await? {
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ExpiredTimelocks::None => {
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let wait_for_enc_sig = wait_for_bitcoin_encrypted_signature(
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&mut event_loop_handle,
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config.monero_max_finality_time,
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);
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let state3_clone = state3.clone();
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let cancel_timelock_expires = state3_clone
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.wait_for_cancel_timelock_to_expire(bitcoin_wallet.as_ref());
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pin_mut!(wait_for_enc_sig);
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pin_mut!(cancel_timelock_expires);
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match select(cancel_timelock_expires, wait_for_enc_sig).await {
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Either::Left(_) => AliceState::CancelTimelockExpired { state3 },
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Either::Right((enc_sig, _)) => AliceState::EncSigLearned {
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state3,
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encrypted_signature: enc_sig?,
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},
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}
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}
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_ => AliceState::CancelTimelockExpired { state3 },
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};
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet.clone(),
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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AliceState::EncSigLearned {
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state3,
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encrypted_signature,
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} => {
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// TODO: Evaluate if it is correct for Alice to Redeem no matter what.
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// If cancel timelock expired she should potentially not try redeem. (The
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// implementation gives her an advantage.)
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let signed_tx_redeem = match build_bitcoin_redeem_transaction(
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encrypted_signature,
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&state3.tx_lock,
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state3.a.clone(),
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state3.s_a,
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state3.B,
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&state3.redeem_address,
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) {
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Ok(tx) => tx,
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Err(_) => {
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state3
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.wait_for_cancel_timelock_to_expire(bitcoin_wallet.as_ref())
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.await?;
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let state = AliceState::CancelTimelockExpired { state3 };
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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return run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await;
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}
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};
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// TODO(Franck): Error handling is delicate here.
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// If Bob sees this transaction he can redeem Monero
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// e.g. If the Bitcoin node is down then the user needs to take action.
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publish_bitcoin_redeem_transaction(
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signed_tx_redeem,
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bitcoin_wallet.clone(),
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config,
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)
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.await?;
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let state = AliceState::BtcRedeemed;
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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AliceState::CancelTimelockExpired { state3 } => {
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let tx_cancel = publish_cancel_transaction(
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state3.tx_lock.clone(),
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state3.a.clone(),
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state3.B,
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state3.cancel_timelock,
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state3.tx_cancel_sig_bob.clone(),
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bitcoin_wallet.clone(),
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)
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.await?;
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let state = AliceState::BtcCancelled { state3, tx_cancel };
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet,
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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AliceState::BtcCancelled { state3, tx_cancel } => {
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let tx_cancel_height = bitcoin_wallet
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.transaction_block_height(tx_cancel.txid())
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.await;
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let (tx_refund, published_refund_tx) = wait_for_bitcoin_refund(
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&tx_cancel,
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tx_cancel_height,
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state3.punish_timelock,
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&state3.refund_address,
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bitcoin_wallet.clone(),
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)
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.await?;
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// TODO(Franck): Review error handling
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match published_refund_tx {
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None => {
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let state = AliceState::BtcPunishable { tx_refund, state3 };
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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swap(
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state,
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event_loop_handle,
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bitcoin_wallet.clone(),
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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Some(published_refund_tx) => {
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let spend_key = extract_monero_private_key(
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published_refund_tx,
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tx_refund,
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state3.s_a,
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state3.a.clone(),
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state3.S_b_bitcoin,
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)?;
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let state = AliceState::BtcRefunded { spend_key, state3 };
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet.clone(),
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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}
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}
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AliceState::BtcRefunded { spend_key, state3 } => {
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let view_key = state3.v;
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monero_wallet
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.create_and_load_wallet_for_output(spend_key, view_key)
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.await?;
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let state = AliceState::XmrRefunded;
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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Ok(state)
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}
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AliceState::BtcPunishable { tx_refund, state3 } => {
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let signed_tx_punish = build_bitcoin_punish_transaction(
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&state3.tx_lock,
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state3.cancel_timelock,
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&state3.punish_address,
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state3.punish_timelock,
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state3.tx_punish_sig_bob.clone(),
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state3.a.clone(),
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state3.B,
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)?;
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let punish_tx_finalised = publish_bitcoin_punish_transaction(
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signed_tx_punish,
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bitcoin_wallet.clone(),
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config,
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);
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let refund_tx_seen = bitcoin_wallet.watch_for_raw_transaction(tx_refund.txid());
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pin_mut!(punish_tx_finalised);
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pin_mut!(refund_tx_seen);
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match select(punish_tx_finalised, refund_tx_seen).await {
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Either::Left(_) => {
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let state = AliceState::BtcPunished;
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
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bitcoin_wallet.clone(),
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monero_wallet,
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config,
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swap_id,
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db,
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)
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.await
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}
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Either::Right((published_refund_tx, _)) => {
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let spend_key = extract_monero_private_key(
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published_refund_tx,
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tx_refund,
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state3.s_a,
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state3.a.clone(),
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state3.S_b_bitcoin,
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)?;
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let state = AliceState::BtcRefunded { spend_key, state3 };
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let db_state = (&state).into();
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db.insert_latest_state(swap_id, Swap::Alice(db_state))
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.await?;
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run_until(
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state,
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is_target_state,
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event_loop_handle,
|
|
bitcoin_wallet.clone(),
|
|
monero_wallet,
|
|
config,
|
|
swap_id,
|
|
db,
|
|
)
|
|
.await
|
|
}
|
|
}
|
|
}
|
|
AliceState::XmrRefunded => Ok(AliceState::XmrRefunded),
|
|
AliceState::BtcRedeemed => Ok(AliceState::BtcRedeemed),
|
|
AliceState::BtcPunished => Ok(AliceState::BtcPunished),
|
|
AliceState::SafelyAborted => Ok(AliceState::SafelyAborted),
|
|
}
|
|
}
|
|
}
|