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Test Eventuality completion via CoordinatorMessage::Completed
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parent
e010d66c5d
commit
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2 changed files with 84 additions and 10 deletions
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@ -324,12 +324,14 @@ impl Coordinator {
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let rpc_url = network_rpc(self.network, ops, &self.network_handle);
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match self.network {
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NetworkId::Bitcoin => {
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use bitcoin_serai::rpc::Rpc;
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use bitcoin_serai::{
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bitcoin::{consensus::Decodable, Transaction},
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rpc::Rpc,
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};
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let rpc =
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Rpc::new(rpc_url).await.expect("couldn't connect to the coordinator's Bitcoin RPC");
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let _: String =
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rpc.rpc_call("sendrawtransaction", serde_json::json!([hex::encode(tx)])).await.unwrap();
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rpc.send_raw_transaction(&Transaction::consensus_decode(&mut &*tx).unwrap()).await.unwrap();
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}
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NetworkId::Ethereum => todo!(),
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NetworkId::Monero => {
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@ -341,4 +343,39 @@ impl Coordinator {
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NetworkId::Serai => panic!("processor tests broadcasting block to Serai"),
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}
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}
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pub async fn get_transaction(&self, ops: &DockerOperations, tx: &[u8]) -> Option<Vec<u8>> {
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let rpc_url = network_rpc(self.network, ops, &self.network_handle);
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match self.network {
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NetworkId::Bitcoin => {
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use bitcoin_serai::{bitcoin::consensus::Encodable, rpc::Rpc};
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let rpc =
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Rpc::new(rpc_url).await.expect("couldn't connect to the coordinator's Bitcoin RPC");
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let mut hash = [0; 32];
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hash.copy_from_slice(tx);
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if let Ok(tx) = rpc.get_transaction(&hash).await {
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let mut buf = vec![];
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tx.consensus_encode(&mut buf).unwrap();
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Some(buf)
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} else {
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None
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}
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}
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NetworkId::Ethereum => todo!(),
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NetworkId::Monero => {
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use monero_serai::rpc::HttpRpc;
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let rpc = HttpRpc::new(rpc_url).expect("couldn't connect to the coordinator's Monero RPC");
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let mut hash = [0; 32];
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hash.copy_from_slice(tx);
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if let Ok(tx) = rpc.get_transaction(hash).await {
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Some(tx.serialize())
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} else {
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None
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}
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}
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NetworkId::Serai => panic!("processor tests broadcasting block to Serai"),
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}
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}
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}
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@ -1,5 +1,5 @@
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use std::{
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collections::HashMap,
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collections::{HashSet, HashMap},
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time::{SystemTime, Duration},
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};
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@ -250,15 +250,52 @@ fn send_test() {
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(id, preprocesses) =
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recv_sign_preprocesses(&mut coordinators, key_pair.1.to_vec(), attempt).await;
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}
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let participating = preprocesses.keys().cloned().collect::<Vec<_>>();
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let tx_id = sign_tx(&mut coordinators, id, preprocesses).await;
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let tx_id = sign_tx(&mut coordinators, id.clone(), preprocesses).await;
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// Make sure all participating nodes published the TX
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let participating =
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participating.iter().map(|p| usize::from(u16::from(*p) - 1)).collect::<HashSet<_>>();
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for participant in &participating {
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assert!(coordinators[*participant].get_transaction(&ops, &tx_id).await.is_some());
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}
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// Publish this transaction to the left out nodes
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let tx = coordinators[*participating.iter().next().unwrap()]
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.get_transaction(&ops, &tx_id)
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.await
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.unwrap();
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for (i, coordinator) in coordinators.iter_mut().enumerate() {
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if !participating.contains(&i) {
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coordinator.publish_transacton(&ops, &tx).await;
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// Tell them of it as a completion of the relevant signing nodess
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coordinator
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.send_message(messages::sign::CoordinatorMessage::Completed {
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key: key_pair.1.to_vec(),
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id: id.id,
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tx: tx_id.clone(),
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})
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.await;
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// Verify they send Completed back
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match coordinator.recv_message().await {
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messages::ProcessorMessage::Sign(messages::sign::ProcessorMessage::Completed {
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key,
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id: this_id,
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tx: this_tx,
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}) => {
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assert_eq!(&key, &id.key);
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assert_eq!(&this_id, &id.id);
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assert_eq!(this_tx, tx_id);
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}
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_ => panic!("processor didn't send Completed"),
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}
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}
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}
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// TODO: Test callimg Sign again yields tx_id again
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// TODO: Make sure all participating nodes published the TX
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// TODO: Send this TX to the left out node and make sure they can complete the Eventuality
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// TODO: Test the Eventuality from the blockchain, instead of from the coordinator
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let _ = tx_id;
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// TODO: Test what happenns when Completed is sent with a non-existent TX ID
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// TODO: Test what happenns when Completed is sent with a non-completing TX ID
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});
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}
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}
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