mirror of
https://github.com/serai-dex/serai.git
synced 2025-12-08 04:09:23 +00:00
Update the Ethereum processor to the Router messages including their on-chain address
This only updates the syntax. It does not yet actually route the address as necessary.
This commit is contained in:
@@ -3,7 +3,7 @@ use std::io;
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use ciphersuite::Secp256k1;
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use frost::dkg::ThresholdKeys;
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use alloy_core::primitives::U256;
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use alloy_core::primitives::{U256, Address as EthereumAddress};
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use serai_client::networks::ethereum::Address;
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@@ -17,8 +17,20 @@ use crate::{output::OutputId, machine::ClonableTransctionMachine};
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#[derive(Clone, PartialEq, Debug)]
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pub(crate) enum Action {
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SetKey { chain_id: U256, nonce: u64, key: PublicKey },
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Batch { chain_id: U256, nonce: u64, coin: Coin, fee: U256, outs: Vec<(Address, U256)> },
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SetKey {
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chain_id: U256,
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router_address: EthereumAddress,
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nonce: u64,
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key: PublicKey,
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},
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Batch {
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chain_id: U256,
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router_address: EthereumAddress,
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nonce: u64,
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coin: Coin,
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fee: U256,
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outs: Vec<(Address, U256)>,
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},
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}
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#[derive(Clone, PartialEq, Eq, Debug)]
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@@ -33,25 +45,28 @@ impl Action {
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pub(crate) fn message(&self) -> Vec<u8> {
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match self {
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Action::SetKey { chain_id, nonce, key } => {
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Router::update_serai_key_message(*chain_id, *nonce, key)
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Action::SetKey { chain_id, router_address, nonce, key } => {
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Router::update_serai_key_message(*chain_id, *router_address, *nonce, key)
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}
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Action::Batch { chain_id, router_address, nonce, coin, fee, outs } => {
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Router::execute_message(
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*chain_id,
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*router_address,
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*nonce,
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*coin,
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*fee,
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OutInstructions::from(outs.as_ref()),
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)
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}
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Action::Batch { chain_id, nonce, coin, fee, outs } => Router::execute_message(
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*chain_id,
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*nonce,
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*coin,
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*fee,
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OutInstructions::from(outs.as_ref()),
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),
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}
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}
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pub(crate) fn eventuality(&self) -> Eventuality {
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Eventuality(match self {
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Self::SetKey { chain_id: _, nonce, key } => {
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Self::SetKey { chain_id: _, router_address: _, nonce, key } => {
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Executed::NextSeraiKeySet { nonce: *nonce, key: key.eth_repr() }
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}
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Self::Batch { chain_id: _, nonce, .. } => {
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Self::Batch { chain_id: _, router_address: _, nonce, .. } => {
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Executed::Batch { nonce: *nonce, message_hash: keccak256(self.message()), results: vec![] }
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}
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})
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@@ -89,6 +104,10 @@ impl SignableTransaction for Action {
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reader.read_exact(&mut chain_id)?;
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let chain_id = U256::from_be_bytes(chain_id);
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let mut router_address = [0; 20];
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reader.read_exact(&mut router_address)?;
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let router_address = EthereumAddress::from(router_address);
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let mut nonce = [0; 8];
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reader.read_exact(&mut nonce)?;
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let nonce = u64::from_le_bytes(nonce);
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@@ -100,7 +119,7 @@ impl SignableTransaction for Action {
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let key =
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PublicKey::from_eth_repr(key).ok_or_else(|| io::Error::other("invalid key in Action"))?;
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Action::SetKey { chain_id, nonce, key }
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Action::SetKey { chain_id, router_address, nonce, key }
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}
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1 => {
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let coin = borsh::from_reader(reader)?;
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@@ -123,22 +142,24 @@ impl SignableTransaction for Action {
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outs.push((address, amount));
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}
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Action::Batch { chain_id, nonce, coin, fee, outs }
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Action::Batch { chain_id, router_address, nonce, coin, fee, outs }
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}
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_ => unreachable!(),
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})
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}
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fn write(&self, writer: &mut impl io::Write) -> io::Result<()> {
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match self {
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Self::SetKey { chain_id, nonce, key } => {
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Self::SetKey { chain_id, router_address, nonce, key } => {
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writer.write_all(&[0])?;
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writer.write_all(&chain_id.to_be_bytes::<32>())?;
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writer.write_all(router_address.as_slice())?;
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writer.write_all(&nonce.to_le_bytes())?;
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writer.write_all(&key.eth_repr())
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}
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Self::Batch { chain_id, nonce, coin, fee, outs } => {
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Self::Batch { chain_id, router_address, nonce, coin, fee, outs } => {
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writer.write_all(&[1])?;
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writer.write_all(&chain_id.to_be_bytes::<32>())?;
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writer.write_all(router_address.as_slice())?;
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writer.write_all(&nonce.to_le_bytes())?;
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borsh::BorshSerialize::serialize(coin, writer)?;
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writer.write_all(&fee.as_le_bytes())?;
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@@ -87,8 +87,10 @@ impl<D: Db> signers::TransactionPublisher<Transaction> for TransactionPublisher<
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let nonce = tx.0.nonce();
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// Convert from an Action (an internal representation of a signable event) to a TxLegacy
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let tx = match tx.0 {
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Action::SetKey { chain_id: _, nonce: _, key } => router.update_serai_key(&key, &tx.1),
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Action::Batch { chain_id: _, nonce: _, coin, fee, outs } => {
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Action::SetKey { chain_id: _, router_address: _, nonce: _, key } => {
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router.update_serai_key(&key, &tx.1)
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}
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Action::Batch { chain_id: _, router_address: _, nonce: _, coin, fee, outs } => {
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router.execute(coin, fee, OutInstructions::from(outs.as_ref()), &tx.1)
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}
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};
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@@ -50,6 +50,7 @@ impl<D: Db> smart_contract_scheduler::SmartContract<Rpc<D>> for SmartContract {
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) -> (Self::SignableTransaction, EventualityFor<Rpc<D>>) {
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let action = Action::SetKey {
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chain_id: self.chain_id,
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router_address: if true { todo!("TODO") } else { Default::default() },
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nonce,
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key: PublicKey::new(new_key).expect("rotating to an invald key"),
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};
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@@ -139,6 +140,7 @@ impl<D: Db> smart_contract_scheduler::SmartContract<Rpc<D>> for SmartContract {
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res.push(Action::Batch {
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chain_id: self.chain_id,
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router_address: if true { todo!("TODO") } else { Default::default() },
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nonce,
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coin: coin_to_ethereum_coin(coin),
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fee: U256::try_from(total_gas).unwrap() * fee_per_gas,
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