use crate::swqos::common::{poll_transaction_confirmation, serialize_transaction_and_encode}; use rand::seq::IndexedRandom; use reqwest::Client; use serde_json::json; use std::{sync::Arc, time::Instant}; use std::time::Duration; use solana_transaction_status::UiTransactionEncoding; use anyhow::Result; use solana_sdk::transaction::VersionedTransaction; use crate::swqos::{SwqosType, TradeType}; use crate::swqos::SwqosClientTrait; use crate::{common::SolanaRpcClient, constants::swqos::NODE1_TIP_ACCOUNTS}; use tokio::task::JoinHandle; use std::sync::atomic::{AtomicBool, Ordering}; #[derive(Clone)] pub struct Node1Client { pub endpoint: String, pub auth_token: String, pub rpc_client: Arc, pub http_client: Client, pub ping_handle: Arc>>>, pub stop_ping: Arc, } #[async_trait::async_trait] impl SwqosClientTrait for Node1Client { async fn send_transaction(&self, trade_type: TradeType, transaction: &VersionedTransaction, wait_confirmation: bool) -> Result<()> { self.send_transaction(trade_type, transaction, wait_confirmation).await } async fn send_transactions(&self, trade_type: TradeType, transactions: &Vec, wait_confirmation: bool) -> Result<()> { self.send_transactions(trade_type, transactions, wait_confirmation).await } fn get_tip_account(&self) -> Result { let tip_account = *NODE1_TIP_ACCOUNTS.choose(&mut rand::rng()).or_else(|| NODE1_TIP_ACCOUNTS.first()).unwrap(); Ok(tip_account.to_string()) } fn get_swqos_type(&self) -> SwqosType { SwqosType::Node1 } } impl Node1Client { pub fn new(rpc_url: String, endpoint: String, auth_token: String) -> Self { let rpc_client = SolanaRpcClient::new(rpc_url); let http_client = Client::builder() // Optimized connection pool settings for high performance .pool_idle_timeout(Duration::from_secs(120)) .pool_max_idle_per_host(256) // Increased from 64 to 256 .tcp_keepalive(Some(Duration::from_secs(60))) // Reduced from 1200 to 60 .tcp_nodelay(true) // Disable Nagle's algorithm for lower latency .http2_keep_alive_interval(Duration::from_secs(10)) .http2_keep_alive_timeout(Duration::from_secs(5)) .http2_adaptive_window(true) // Enable adaptive flow control .timeout(Duration::from_millis(3000)) // Reduced from 10s to 3s .connect_timeout(Duration::from_millis(2000)) // Reduced from 5s to 2s .build() .unwrap(); let client = Self { rpc_client: Arc::new(rpc_client), endpoint, auth_token, http_client, ping_handle: Arc::new(tokio::sync::Mutex::new(None)), stop_ping: Arc::new(AtomicBool::new(false)), }; // Start ping task let client_clone = client.clone(); tokio::spawn(async move { client_clone.start_ping_task().await; }); client } /// Start periodic ping task to keep connections active async fn start_ping_task(&self) { let endpoint = self.endpoint.clone(); let auth_token = self.auth_token.clone(); let http_client = self.http_client.clone(); let stop_ping = self.stop_ping.clone(); let handle = tokio::spawn(async move { let mut interval = tokio::time::interval(Duration::from_secs(60)); // Ping every 60 seconds loop { interval.tick().await; if stop_ping.load(Ordering::Relaxed) { break; } // Send ping request if let Err(e) = Self::send_ping_request(&http_client, &endpoint, &auth_token).await { eprintln!("Node1 ping request failed: {}", e); } } }); // Update ping_handle - use Mutex to safely update { let mut ping_guard = self.ping_handle.lock().await; if let Some(old_handle) = ping_guard.as_ref() { old_handle.abort(); } *ping_guard = Some(handle); } } /// Send ping request to /ping endpoint async fn send_ping_request(http_client: &Client, endpoint: &str, _auth_token: &str) -> Result<()> { // Build ping URL let ping_url = if endpoint.ends_with('/') { format!("{}ping", endpoint) } else { format!("{}/ping", endpoint) }; // Send GET request to /ping endpoint (no api-key required) let response = http_client.get(&ping_url) .send() .await?; if response.status().is_success() { // ping successful, connection remains active // Can optionally log, but to reduce noise, not printing here } else { eprintln!("Node1 ping request returned non-success status: {}", response.status()); } Ok(()) } pub async fn send_transaction(&self, trade_type: TradeType, transaction: &VersionedTransaction, wait_confirmation: bool) -> Result<()> { let start_time = Instant::now(); let (content, signature) = serialize_transaction_and_encode(transaction, UiTransactionEncoding::Base64).await?; let request_body = serde_json::to_string(&json!({ "jsonrpc": "2.0", "id": 1, "method": "sendTransaction", "params": [ content, { "encoding": "base64", "skipPreflight": true } ] }))?; // Node1 uses api-key header instead of URL parameter let response_text = self.http_client.post(&self.endpoint) .body(request_body) .header("Content-Type", "application/json") .header("api-key", &self.auth_token) .send() .await? .text() .await?; // Parse JSON response if let Ok(response_json) = serde_json::from_str::(&response_text) { if response_json.get("result").is_some() { println!(" [node1] {} submitted: {:?}", trade_type, start_time.elapsed()); } else if let Some(_error) = response_json.get("error") { eprintln!(" [node1] {} submission failed: {:?}", trade_type, _error); } } else { eprintln!(" [node1] {} submission failed: {:?}", trade_type, response_text); } let start_time: Instant = Instant::now(); match poll_transaction_confirmation(&self.rpc_client, signature, wait_confirmation).await { Ok(_) => (), Err(e) => { println!(" signature: {:?}", signature); println!(" [node1] {} confirmation failed: {:?}", trade_type, start_time.elapsed()); return Err(e); }, } if wait_confirmation { println!(" signature: {:?}", signature); println!(" [node1] {} confirmed: {:?}", trade_type, start_time.elapsed()); } Ok(()) } pub async fn send_transactions(&self, trade_type: TradeType, transactions: &Vec, wait_confirmation: bool) -> Result<()> { for transaction in transactions { self.send_transaction(trade_type, transaction, wait_confirmation).await?; } Ok(()) } } impl Drop for Node1Client { fn drop(&mut self) { // Ensure ping task stops when client is destroyed self.stop_ping.store(true, Ordering::Relaxed); // Try to stop ping task immediately // Use tokio::spawn to avoid blocking Drop let ping_handle = self.ping_handle.clone(); tokio::spawn(async move { let mut ping_guard = ping_handle.lock().await; if let Some(handle) = ping_guard.as_ref() { handle.abort(); } *ping_guard = None; }); } }