mirror of
https://github.com/comit-network/xmr-btc-swap.git
synced 2025-05-19 23:20:30 -04:00
602 lines
19 KiB
Rust
602 lines
19 KiB
Rust
use crate::{
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bitcoin::{
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self, current_epoch, wait_for_cancel_timelock_to_expire, BroadcastSignedTransaction,
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BuildTxLockPsbt, CancelTimelock, ExpiredTimelocks, GetBlockHeight, GetNetwork,
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GetRawTransaction, PunishTimelock, Transaction, TransactionBlockHeight, TxCancel, Txid,
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WatchForRawTransaction,
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},
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execution_params::ExecutionParams,
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monero,
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monero::{monero_private_key, TransferProof},
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protocol::{
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alice::{Message1, Message3},
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bob::{EncryptedSignature, Message0, Message2, Message4},
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SwapAmounts,
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},
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};
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use anyhow::{anyhow, Result};
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use ecdsa_fun::{adaptor::Adaptor, nonce::Deterministic, Signature};
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use monero_harness::rpc::wallet::BlockHeight;
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use rand::{CryptoRng, RngCore};
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use serde::{Deserialize, Serialize};
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use sha2::Sha256;
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use std::fmt;
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#[derive(Debug, Clone)]
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pub enum BobState {
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Started {
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state0: State0,
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amounts: SwapAmounts,
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},
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Negotiated(State2),
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BtcLocked(State3),
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XmrLockProofReceived {
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state: State3,
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lock_transfer_proof: TransferProof,
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monero_wallet_restore_blockheight: BlockHeight,
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},
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XmrLocked(State4),
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EncSigSent(State4),
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BtcRedeemed(State5),
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CancelTimelockExpired(State4),
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BtcCancelled(State4),
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BtcRefunded(State4),
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XmrRedeemed {
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tx_lock_id: bitcoin::Txid,
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},
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BtcPunished {
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tx_lock_id: bitcoin::Txid,
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},
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SafelyAborted,
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}
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impl fmt::Display for BobState {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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match self {
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BobState::Started { .. } => write!(f, "started"),
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BobState::Negotiated(..) => write!(f, "negotiated"),
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BobState::BtcLocked(..) => write!(f, "btc is locked"),
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BobState::XmrLockProofReceived { .. } => {
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write!(f, "XMR lock transaction transfer proof received")
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}
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BobState::XmrLocked(..) => write!(f, "xmr is locked"),
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BobState::EncSigSent(..) => write!(f, "encrypted signature is sent"),
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BobState::BtcRedeemed(..) => write!(f, "btc is redeemed"),
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BobState::CancelTimelockExpired(..) => write!(f, "cancel timelock is expired"),
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BobState::BtcCancelled(..) => write!(f, "btc is cancelled"),
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BobState::BtcRefunded(..) => write!(f, "btc is refunded"),
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BobState::XmrRedeemed { .. } => write!(f, "xmr is redeemed"),
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BobState::BtcPunished { .. } => write!(f, "btc is punished"),
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BobState::SafelyAborted => write!(f, "safely aborted"),
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}
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}
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}
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#[derive(Clone, Debug, Deserialize, Serialize, PartialEq)]
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pub struct State0 {
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b: bitcoin::SecretKey,
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s_b: cross_curve_dleq::Scalar,
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v_b: monero::PrivateViewKey,
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dleq_proof_s_b: cross_curve_dleq::Proof,
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#[serde(with = "::bitcoin::util::amount::serde::as_sat")]
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btc: bitcoin::Amount,
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xmr: monero::Amount,
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cancel_timelock: CancelTimelock,
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punish_timelock: PunishTimelock,
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refund_address: bitcoin::Address,
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min_monero_confirmations: u32,
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}
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impl State0 {
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pub fn new<R: RngCore + CryptoRng>(
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rng: &mut R,
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btc: bitcoin::Amount,
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xmr: monero::Amount,
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cancel_timelock: CancelTimelock,
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punish_timelock: PunishTimelock,
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refund_address: bitcoin::Address,
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min_monero_confirmations: u32,
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) -> Self {
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let b = bitcoin::SecretKey::new_random(rng);
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let s_b = cross_curve_dleq::Scalar::random(rng);
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let v_b = monero::PrivateViewKey::new_random(rng);
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let dleq_proof_s_b = cross_curve_dleq::Proof::new(rng, &s_b);
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Self {
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b,
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s_b,
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v_b,
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btc,
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xmr,
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dleq_proof_s_b,
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cancel_timelock,
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punish_timelock,
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refund_address,
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min_monero_confirmations,
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}
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}
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pub fn next_message(&self) -> Message0 {
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Message0 {
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B: self.b.public(),
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S_b_monero: monero::PublicKey::from_private_key(&monero::PrivateKey {
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scalar: self.s_b.into_ed25519(),
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}),
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S_b_bitcoin: self.s_b.into_secp256k1().into(),
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dleq_proof_s_b: self.dleq_proof_s_b.clone(),
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v_b: self.v_b,
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refund_address: self.refund_address.clone(),
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}
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}
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pub async fn receive<W>(self, wallet: &W, msg: Message1) -> anyhow::Result<State1>
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where
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W: BuildTxLockPsbt + GetNetwork,
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{
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msg.dleq_proof_s_a.verify(
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msg.S_a_bitcoin.clone().into(),
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msg.S_a_monero
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.point
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.decompress()
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.ok_or_else(|| anyhow!("S_a is not a monero curve point"))?,
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)?;
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let tx_lock = bitcoin::TxLock::new(wallet, self.btc, msg.A, self.b.public()).await?;
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let v = msg.v_a + self.v_b;
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Ok(State1 {
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A: msg.A,
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b: self.b,
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s_b: self.s_b,
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S_a_monero: msg.S_a_monero,
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S_a_bitcoin: msg.S_a_bitcoin,
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v,
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xmr: self.xmr,
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cancel_timelock: self.cancel_timelock,
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punish_timelock: self.punish_timelock,
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refund_address: self.refund_address,
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redeem_address: msg.redeem_address,
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punish_address: msg.punish_address,
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tx_lock,
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min_monero_confirmations: self.min_monero_confirmations,
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})
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}
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}
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#[derive(Debug, Deserialize, Serialize)]
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pub struct State1 {
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A: bitcoin::PublicKey,
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b: bitcoin::SecretKey,
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s_b: cross_curve_dleq::Scalar,
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S_a_monero: monero::PublicKey,
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S_a_bitcoin: bitcoin::PublicKey,
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v: monero::PrivateViewKey,
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xmr: monero::Amount,
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cancel_timelock: CancelTimelock,
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punish_timelock: PunishTimelock,
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refund_address: bitcoin::Address,
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redeem_address: bitcoin::Address,
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punish_address: bitcoin::Address,
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tx_lock: bitcoin::TxLock,
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min_monero_confirmations: u32,
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}
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impl State1 {
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pub fn next_message(&self) -> Message2 {
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Message2 {
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tx_lock: self.tx_lock.clone(),
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}
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}
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pub fn receive(self, msg: Message3) -> Result<State2> {
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let tx_cancel = TxCancel::new(&self.tx_lock, self.cancel_timelock, self.A, self.b.public());
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let tx_refund = bitcoin::TxRefund::new(&tx_cancel, &self.refund_address);
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bitcoin::verify_sig(&self.A, &tx_cancel.digest(), &msg.tx_cancel_sig)?;
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bitcoin::verify_encsig(
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self.A,
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self.s_b.into_secp256k1().into(),
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&tx_refund.digest(),
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&msg.tx_refund_encsig,
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)?;
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Ok(State2 {
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A: self.A,
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b: self.b,
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s_b: self.s_b,
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S_a_monero: self.S_a_monero,
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S_a_bitcoin: self.S_a_bitcoin,
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v: self.v,
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xmr: self.xmr,
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cancel_timelock: self.cancel_timelock,
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punish_timelock: self.punish_timelock,
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refund_address: self.refund_address,
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redeem_address: self.redeem_address,
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punish_address: self.punish_address,
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tx_lock: self.tx_lock,
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tx_cancel_sig_a: msg.tx_cancel_sig,
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tx_refund_encsig: msg.tx_refund_encsig,
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min_monero_confirmations: self.min_monero_confirmations,
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})
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}
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}
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#[derive(Debug, Clone, Deserialize, Serialize, PartialEq)]
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pub struct State2 {
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A: bitcoin::PublicKey,
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b: bitcoin::SecretKey,
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s_b: cross_curve_dleq::Scalar,
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S_a_monero: monero::PublicKey,
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S_a_bitcoin: bitcoin::PublicKey,
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v: monero::PrivateViewKey,
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xmr: monero::Amount,
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cancel_timelock: CancelTimelock,
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punish_timelock: PunishTimelock,
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refund_address: bitcoin::Address,
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redeem_address: bitcoin::Address,
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punish_address: bitcoin::Address,
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tx_lock: bitcoin::TxLock,
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tx_cancel_sig_a: Signature,
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tx_refund_encsig: bitcoin::EncryptedSignature,
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min_monero_confirmations: u32,
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}
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impl State2 {
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pub fn next_message(&self) -> Message4 {
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let tx_cancel = TxCancel::new(&self.tx_lock, self.cancel_timelock, self.A, self.b.public());
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let tx_cancel_sig = self.b.sign(tx_cancel.digest());
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let tx_punish =
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bitcoin::TxPunish::new(&tx_cancel, &self.punish_address, self.punish_timelock);
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let tx_punish_sig = self.b.sign(tx_punish.digest());
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Message4 {
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tx_punish_sig,
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tx_cancel_sig,
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}
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}
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pub async fn lock_btc<W>(self, bitcoin_wallet: &W) -> Result<State3>
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where
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W: bitcoin::SignTxLock + bitcoin::BroadcastSignedTransaction,
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{
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let signed_tx_lock = bitcoin_wallet.sign_tx_lock(self.tx_lock.clone()).await?;
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tracing::info!("{}", self.tx_lock.txid());
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let _ = bitcoin_wallet
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.broadcast_signed_transaction(signed_tx_lock)
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.await?;
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Ok(State3 {
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A: self.A,
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b: self.b,
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s_b: self.s_b,
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S_a_monero: self.S_a_monero,
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S_a_bitcoin: self.S_a_bitcoin,
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v: self.v,
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xmr: self.xmr,
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cancel_timelock: self.cancel_timelock,
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punish_timelock: self.punish_timelock,
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refund_address: self.refund_address,
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redeem_address: self.redeem_address,
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tx_lock: self.tx_lock,
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tx_cancel_sig_a: self.tx_cancel_sig_a,
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tx_refund_encsig: self.tx_refund_encsig,
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min_monero_confirmations: self.min_monero_confirmations,
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})
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}
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}
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#[derive(Clone, Debug, Serialize, Deserialize, PartialEq)]
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pub struct State3 {
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A: bitcoin::PublicKey,
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b: bitcoin::SecretKey,
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s_b: cross_curve_dleq::Scalar,
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S_a_monero: monero::PublicKey,
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S_a_bitcoin: bitcoin::PublicKey,
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v: monero::PrivateViewKey,
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xmr: monero::Amount,
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cancel_timelock: CancelTimelock,
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punish_timelock: PunishTimelock,
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refund_address: bitcoin::Address,
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redeem_address: bitcoin::Address,
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tx_lock: bitcoin::TxLock,
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tx_cancel_sig_a: Signature,
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tx_refund_encsig: bitcoin::EncryptedSignature,
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min_monero_confirmations: u32,
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}
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impl State3 {
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pub async fn watch_for_lock_xmr<W>(
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self,
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xmr_wallet: &W,
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transfer_proof: TransferProof,
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monero_wallet_restore_blockheight: u32,
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) -> Result<State4>
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where
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W: monero::WatchForTransfer,
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{
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let S_b_monero = monero::PublicKey::from_private_key(&monero::PrivateKey::from_scalar(
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self.s_b.into_ed25519(),
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));
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let S = self.S_a_monero + S_b_monero;
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xmr_wallet
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.watch_for_transfer(
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S,
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self.v.public(),
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transfer_proof,
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self.xmr,
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self.min_monero_confirmations,
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)
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.await?;
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Ok(State4 {
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A: self.A,
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b: self.b,
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s_b: self.s_b,
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S_a_bitcoin: self.S_a_bitcoin,
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v: self.v,
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cancel_timelock: self.cancel_timelock,
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punish_timelock: self.punish_timelock,
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refund_address: self.refund_address,
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redeem_address: self.redeem_address,
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tx_lock: self.tx_lock,
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tx_cancel_sig_a: self.tx_cancel_sig_a,
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tx_refund_encsig: self.tx_refund_encsig,
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monero_wallet_restore_blockheight,
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})
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}
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pub async fn wait_for_cancel_timelock_to_expire<W>(&self, bitcoin_wallet: &W) -> Result<()>
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where
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W: WatchForRawTransaction + TransactionBlockHeight + GetBlockHeight,
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{
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wait_for_cancel_timelock_to_expire(
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bitcoin_wallet,
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self.cancel_timelock,
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self.tx_lock.txid(),
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)
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.await
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}
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pub fn state4(&self) -> State4 {
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State4 {
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A: self.A,
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b: self.b.clone(),
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s_b: self.s_b,
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S_a_bitcoin: self.S_a_bitcoin,
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v: self.v,
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cancel_timelock: self.cancel_timelock,
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punish_timelock: self.punish_timelock,
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refund_address: self.refund_address.clone(),
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redeem_address: self.redeem_address.clone(),
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tx_lock: self.tx_lock.clone(),
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tx_cancel_sig_a: self.tx_cancel_sig_a.clone(),
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tx_refund_encsig: self.tx_refund_encsig.clone(),
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monero_wallet_restore_blockheight: 0u32,
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}
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}
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pub fn tx_lock_id(&self) -> bitcoin::Txid {
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self.tx_lock.txid()
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}
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pub async fn current_epoch<W>(&self, bitcoin_wallet: &W) -> Result<ExpiredTimelocks>
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where
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W: WatchForRawTransaction + TransactionBlockHeight + GetBlockHeight,
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{
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current_epoch(
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bitcoin_wallet,
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self.cancel_timelock,
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self.punish_timelock,
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self.tx_lock.txid(),
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)
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.await
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}
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}
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#[derive(Debug, Clone, Deserialize, Serialize, PartialEq)]
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pub struct State4 {
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A: bitcoin::PublicKey,
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b: bitcoin::SecretKey,
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s_b: cross_curve_dleq::Scalar,
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S_a_bitcoin: bitcoin::PublicKey,
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v: monero::PrivateViewKey,
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cancel_timelock: CancelTimelock,
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punish_timelock: PunishTimelock,
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refund_address: bitcoin::Address,
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redeem_address: bitcoin::Address,
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tx_lock: bitcoin::TxLock,
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tx_cancel_sig_a: Signature,
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tx_refund_encsig: bitcoin::EncryptedSignature,
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monero_wallet_restore_blockheight: u32,
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}
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impl State4 {
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pub fn next_message(&self) -> EncryptedSignature {
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let tx_redeem = bitcoin::TxRedeem::new(&self.tx_lock, &self.redeem_address);
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let tx_redeem_encsig = self.b.encsign(self.S_a_bitcoin, tx_redeem.digest());
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EncryptedSignature { tx_redeem_encsig }
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}
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pub fn tx_redeem_encsig(&self) -> bitcoin::EncryptedSignature {
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let tx_redeem = bitcoin::TxRedeem::new(&self.tx_lock, &self.redeem_address);
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self.b.encsign(self.S_a_bitcoin, tx_redeem.digest())
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}
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pub async fn check_for_tx_cancel<W>(&self, bitcoin_wallet: &W) -> Result<Transaction>
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where
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W: GetRawTransaction,
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{
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let tx_cancel =
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bitcoin::TxCancel::new(&self.tx_lock, self.cancel_timelock, self.A, self.b.public());
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let sig_a = self.tx_cancel_sig_a.clone();
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let sig_b = self.b.sign(tx_cancel.digest());
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let tx_cancel = tx_cancel
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.clone()
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.add_signatures(&self.tx_lock, (self.A, sig_a), (self.b.public(), sig_b))
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.expect(
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"sig_{a,b} to be valid signatures for
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tx_cancel",
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);
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let tx = bitcoin_wallet.get_raw_transaction(tx_cancel.txid()).await?;
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Ok(tx)
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}
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pub async fn submit_tx_cancel<W>(&self, bitcoin_wallet: &W) -> Result<Txid>
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where
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W: BroadcastSignedTransaction,
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{
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let tx_cancel =
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bitcoin::TxCancel::new(&self.tx_lock, self.cancel_timelock, self.A, self.b.public());
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let sig_a = self.tx_cancel_sig_a.clone();
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let sig_b = self.b.sign(tx_cancel.digest());
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let tx_cancel = tx_cancel
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.clone()
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.add_signatures(&self.tx_lock, (self.A, sig_a), (self.b.public(), sig_b))
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.expect(
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"sig_{a,b} to be valid signatures for
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tx_cancel",
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);
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let tx_id = bitcoin_wallet
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.broadcast_signed_transaction(tx_cancel)
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.await?;
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Ok(tx_id)
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}
|
|
|
|
pub async fn watch_for_redeem_btc<W>(&self, bitcoin_wallet: &W) -> Result<State5>
|
|
where
|
|
W: WatchForRawTransaction,
|
|
{
|
|
let tx_redeem = bitcoin::TxRedeem::new(&self.tx_lock, &self.redeem_address);
|
|
let tx_redeem_encsig = self.b.encsign(self.S_a_bitcoin, tx_redeem.digest());
|
|
|
|
let tx_redeem_candidate = bitcoin_wallet
|
|
.watch_for_raw_transaction(tx_redeem.txid())
|
|
.await;
|
|
|
|
let tx_redeem_sig =
|
|
tx_redeem.extract_signature_by_key(tx_redeem_candidate, self.b.public())?;
|
|
let s_a = bitcoin::recover(self.S_a_bitcoin, tx_redeem_sig, tx_redeem_encsig)?;
|
|
let s_a = monero::private_key_from_secp256k1_scalar(s_a.into());
|
|
|
|
Ok(State5 {
|
|
s_a,
|
|
s_b: self.s_b,
|
|
v: self.v,
|
|
tx_lock: self.tx_lock.clone(),
|
|
monero_wallet_restore_blockheight: self.monero_wallet_restore_blockheight,
|
|
})
|
|
}
|
|
|
|
pub async fn wait_for_cancel_timelock_to_expire<W>(&self, bitcoin_wallet: &W) -> Result<()>
|
|
where
|
|
W: WatchForRawTransaction + TransactionBlockHeight + GetBlockHeight,
|
|
{
|
|
wait_for_cancel_timelock_to_expire(
|
|
bitcoin_wallet,
|
|
self.cancel_timelock,
|
|
self.tx_lock.txid(),
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn expired_timelock<W>(&self, bitcoin_wallet: &W) -> Result<ExpiredTimelocks>
|
|
where
|
|
W: WatchForRawTransaction + TransactionBlockHeight + GetBlockHeight,
|
|
{
|
|
current_epoch(
|
|
bitcoin_wallet,
|
|
self.cancel_timelock,
|
|
self.punish_timelock,
|
|
self.tx_lock.txid(),
|
|
)
|
|
.await
|
|
}
|
|
|
|
pub async fn refund_btc<W>(
|
|
&self,
|
|
bitcoin_wallet: &W,
|
|
execution_params: ExecutionParams,
|
|
) -> Result<()>
|
|
where
|
|
W: bitcoin::BroadcastSignedTransaction + bitcoin::WaitForTransactionFinality,
|
|
{
|
|
let tx_cancel =
|
|
bitcoin::TxCancel::new(&self.tx_lock, self.cancel_timelock, self.A, self.b.public());
|
|
let tx_refund = bitcoin::TxRefund::new(&tx_cancel, &self.refund_address);
|
|
|
|
let adaptor = Adaptor::<Sha256, Deterministic<Sha256>>::default();
|
|
|
|
let sig_b = self.b.sign(tx_refund.digest());
|
|
let sig_a =
|
|
adaptor.decrypt_signature(&self.s_b.into_secp256k1(), self.tx_refund_encsig.clone());
|
|
|
|
let signed_tx_refund = tx_refund.add_signatures(
|
|
&tx_cancel.clone(),
|
|
(self.A, sig_a),
|
|
(self.b.public(), sig_b),
|
|
)?;
|
|
|
|
let txid = bitcoin_wallet
|
|
.broadcast_signed_transaction(signed_tx_refund)
|
|
.await?;
|
|
|
|
bitcoin_wallet
|
|
.wait_for_transaction_finality(txid, execution_params)
|
|
.await?;
|
|
|
|
Ok(())
|
|
}
|
|
|
|
pub fn tx_lock_id(&self) -> bitcoin::Txid {
|
|
self.tx_lock.txid()
|
|
}
|
|
}
|
|
|
|
#[derive(Debug, Clone, Deserialize, Serialize, PartialEq)]
|
|
pub struct State5 {
|
|
#[serde(with = "monero_private_key")]
|
|
s_a: monero::PrivateKey,
|
|
s_b: cross_curve_dleq::Scalar,
|
|
v: monero::PrivateViewKey,
|
|
tx_lock: bitcoin::TxLock,
|
|
monero_wallet_restore_blockheight: u32,
|
|
}
|
|
|
|
impl State5 {
|
|
pub async fn claim_xmr<W>(&self, monero_wallet: &W) -> Result<()>
|
|
where
|
|
W: monero::CreateWalletForOutput,
|
|
{
|
|
let s_b = monero::PrivateKey {
|
|
scalar: self.s_b.into_ed25519(),
|
|
};
|
|
|
|
let s = self.s_a + s_b;
|
|
|
|
// NOTE: This actually generates and opens a new wallet, closing the currently
|
|
// open one.
|
|
monero_wallet
|
|
.create_and_load_wallet_for_output(
|
|
s,
|
|
self.v,
|
|
Some(self.monero_wallet_restore_blockheight),
|
|
)
|
|
.await?;
|
|
|
|
Ok(())
|
|
}
|
|
pub fn tx_lock_id(&self) -> bitcoin::Txid {
|
|
self.tx_lock.txid()
|
|
}
|
|
}
|