miden_node_ntx_builder/builder/
mod.rs1use std::collections::HashMap;
2use std::sync::Arc;
3use std::time::Duration;
4
5use anyhow::Context;
6use futures::TryStreamExt;
7use miden_node_proto::domain::account::NetworkAccountPrefix;
8use miden_node_utils::ErrorReport;
9use miden_remote_prover_client::remote_prover::tx_prover::RemoteTransactionProver;
10use tokio::sync::Barrier;
11use tokio::time;
12use url::Url;
13
14use crate::MAX_IN_PROGRESS_TXS;
15use crate::block_producer::BlockProducerClient;
16use crate::store::StoreClient;
17use crate::transaction::NtxError;
18
19pub struct NetworkTransactionBuilder {
29 pub store_url: Url,
31 pub block_producer_url: Url,
33 pub tx_prover_url: Option<Url>,
36 pub ticker_interval: Duration,
38 pub bp_checkpoint: Arc<Barrier>,
43}
44
45impl NetworkTransactionBuilder {
46 pub async fn serve_new(self) -> anyhow::Result<()> {
47 let store = StoreClient::new(self.store_url);
48 let block_producer = BlockProducerClient::new(self.block_producer_url);
49
50 let mut state = crate::state::State::load(store.clone())
51 .await
52 .context("failed to load ntx state")?;
53
54 let mut mempool_events = block_producer
55 .subscribe_to_mempool_with_retry(state.chain_tip())
56 .await
57 .context("failed to subscribe to mempool events")?;
58
59 self.bp_checkpoint.wait().await;
64
65 let prover = self.tx_prover_url.map(RemoteTransactionProver::new);
66
67 let mut interval = tokio::time::interval(self.ticker_interval);
68 interval.set_missed_tick_behavior(time::MissedTickBehavior::Skip);
69
70 let mut inflight = JoinSet::new();
75 let mut inflight_idx = HashMap::new();
76
77 let context = crate::transaction::NtxContext {
78 block_producer: block_producer.clone(),
79 prover,
80 };
81
82 loop {
83 tokio::select! {
84 _next = interval.tick() => {
85 if inflight.len() > MAX_IN_PROGRESS_TXS {
86 tracing::info!("At maximum network tx capacity, skipping");
87 continue;
88 }
89
90 let Some(candidate) = state.select_candidate(crate::MAX_NOTES_PER_TX) else {
91 tracing::debug!("No candidate network transaction available");
92 continue;
93 };
94
95 let network_account_prefix = NetworkAccountPrefix::try_from(candidate.account.id())
96 .expect("all accounts managed by NTB are network accounts");
97 let indexed_candidate = (network_account_prefix, candidate.chain_tip_header.block_num());
98 let task_id = inflight.spawn({
99 let context = context.clone();
100 context.execute_transaction(candidate)
101 }).id();
102
103 inflight_idx.insert(task_id, indexed_candidate);
105 },
106 event = mempool_events.try_next() => {
107 let event = event
108 .context("mempool event stream ended")?
109 .context("mempool event stream failed")?;
110 state.mempool_update(event).await.context("failed to update state")?;
111 },
112 completed = inflight.join_next_with_id() => {
113 let task_id = match &completed {
115 Ok((task_id, _)) => *task_id,
116 Err(join_handle) => join_handle.id(),
117 };
118 let (candidate, block_num) = inflight_idx.remove(&task_id).unwrap();
120
121 match completed {
122 Ok((_, Ok(failed))) => {
124 let notes = failed.into_iter().map(|note| note.note).collect::<Vec<_>>();
125 state.notes_failed(candidate, notes.as_slice(), block_num);
126 },
127 Ok((_, Err(err))) => {
129 tracing::warn!(err=err.as_report(), "network transaction failed");
130 match err {
131 NtxError::AllNotesFailed(failed) => {
132 let notes = failed.into_iter().map(|note| note.note).collect::<Vec<_>>();
133 state.notes_failed(candidate, notes.as_slice(), block_num);
134 },
135 NtxError::InputNotes(_)
136 | NtxError::NoteFilter(_)
137 | NtxError::Execution(_)
138 | NtxError::Proving(_)
139 | NtxError::Submission(_)
140 | NtxError::Panic(_) => {},
141 }
142 state.candidate_failed(candidate);
143 },
144 Err(err) => {
146 tracing::warn!(err=err.as_report(), "network transaction panicked");
147 state.candidate_failed(candidate);
148 }
149 }
150 }
151 }
152 }
153 }
154}
155
156struct JoinSet<T>(tokio::task::JoinSet<T>);
161
162impl<T> JoinSet<T>
163where
164 T: 'static,
165{
166 fn new() -> Self {
167 Self(tokio::task::JoinSet::new())
168 }
169
170 fn spawn<F>(&mut self, task: F) -> tokio::task::AbortHandle
171 where
172 F: Future<Output = T>,
173 F: Send + 'static,
174 T: Send,
175 {
176 self.0.spawn(task)
177 }
178
179 async fn join_next_with_id(&mut self) -> Result<(tokio::task::Id, T), tokio::task::JoinError> {
180 if self.0.is_empty() {
181 std::future::pending().await
182 } else {
183 self.0.join_next_with_id().await.unwrap()
185 }
186 }
187
188 fn len(&self) -> usize {
189 self.0.len()
190 }
191}