feat: add Astralane
This commit is contained in:
@@ -13,7 +13,7 @@ A comprehensive Rust SDK for seamless interaction with Solana DEX trading progra
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6. **Event Subscription**: Subscribe to PumpFun, PumpSwap, Bonk, Raydium CPMM, and Raydium AMM V4 program trading events
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7. **Yellowstone gRPC**: Subscribe to program events using Yellowstone gRPC
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8. **ShredStream Support**: Subscribe to program events using ShredStream
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9. **Multiple MEV Protection**: Support for Jito, Nextblock, ZeroSlot, Temporal, Bloxroute, FlashBlock, BlockRazor, Node1, and other services
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9. **Multiple MEV Protection**: Support for Jito, Nextblock, ZeroSlot, Temporal, Bloxroute, FlashBlock, BlockRazor, Node1, Astralane and other services
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10. **Concurrent Trading**: Send transactions using multiple MEV services simultaneously; the fastest succeeds while others fail
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11. **Unified Trading Interface**: Use unified trading protocol enums for trading operations
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12. **Middleware System**: Support for custom instruction middleware to modify, add, or remove instructions before transaction execution
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@@ -119,6 +119,7 @@ When configuring SWQOS services, note the different parameter requirements for e
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- **FlashBlock**: The first parameter is API Token, Add community TG admin [xyz_0xfnzero](https://t.me/xyz_0xfnzero) to get a free key and instantly speed up your trading (with tip refunds available)!
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- **BlockRazor**: The first parameter is API Token, Add official TG support to get a free key and instantly accelerate your trades!
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- **Node1**: The first parameter is API Token, Add the official TG support at https://t.me/node1_me to get a free key and instantly accelerate your trades!
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- **Astralane**: The first parameter is API Token
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#### Custom URL Support
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@@ -202,6 +203,7 @@ let trade_config = TradeConfig {
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- **FlashBlock**: High-speed transaction execution with API key authentication - [Official Documentation](https://doc.flashblock.trade/)
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- **BlockRazor**: High-speed transaction execution with API key authentication - [Official Documentation](https://blockrazor.gitbook.io/blockrazor/)
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- **Node1**: High-speed transaction execution with API key authentication - [Official Documentation](https://node1.me/docs.html)
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- **Astralane**: Blockchain network acceleration
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## New Architecture Features
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+3
-1
@@ -13,7 +13,7 @@
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6. **事件订阅**: 订阅 PumpFun、PumpSwap、Bonk、Raydium CPMM 和 Raydium AMM V4 程序的交易事件
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7. **Yellowstone gRPC**: 使用 Yellowstone gRPC 订阅程序事件
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8. **ShredStream 支持**: 使用 ShredStream 订阅程序事件
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9. **多种 MEV 保护**: 支持 Jito、Nextblock、ZeroSlot、Temporal、Bloxroute、FlashBlock、BlockRazor、Node1 等服务
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9. **多种 MEV 保护**: 支持 Jito、Nextblock、ZeroSlot、Temporal、Bloxroute、FlashBlock、BlockRazor、Node1、Astralane 等服务
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10. **并发交易**: 同时使用多个 MEV 服务发送交易,最快的成功,其他失败
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11. **统一交易接口**: 使用统一的交易协议枚举进行交易操作
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12. **中间件系统**: 支持自定义指令中间件,可在交易执行前对指令进行修改、添加或移除
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@@ -119,6 +119,7 @@ sol-trade-sdk = "0.5.7"
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- **FlashBlock**: 第一个参数是 API Token, 添加社区tg管理员[xyz_0xfnzero](https://t.me/xyz_0xfnzero)获取免费key立即加速你的交易(可获得小费返还)!
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- **BlockRazor**: 第一个参数是 API Token, 添加tg官方客服获取免费key立即加速你的交易!
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- **Node1**: 第一个参数是 API Token, 添加tg官方客服https://t.me/node1_me 获取免费key立即加速你的交易!
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- **Astralane**: 第一个参数是 API Token
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#### 自定义 URL 支持
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@@ -202,6 +203,7 @@ let trade_config = TradeConfig {
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- **FlashBlock**: 高速交易执行,支持 API 密钥认证 - [官方文档](https://doc.flashblock.trade/)
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- **BlockRazor**: 高速交易执行,支持 API 密钥认证 - [官方文档](https://blockrazor.gitbook.io/blockrazor/)
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- **Node1**: 高速交易执行,支持 API 密钥认证 - [官方文档](https://node1.me/docs.html)
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- **Astralane**: 高速交易执行,支持 API 密钥认证
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## 新架构特性
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@@ -45,6 +45,7 @@ fn create_swqos_configs(rpc_url: &str) -> Vec<SwqosConfig> {
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// Add tg official customer https://t.me/node1_me to get free Node1 key
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SwqosConfig::Node1("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::BlockRazor("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::Astralane("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::Default(rpc_url.to_string()),
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]
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}
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@@ -98,6 +98,17 @@ pub const BLOCKRAZOR_TIP_ACCOUNTS: &[Pubkey] = &[
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pubkey!("AP6qExwrbRgBAVaehg4b5xHENX815sMabtBzUzVB4v8S"),
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];
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pub const ASTRALANE_TIP_ACCOUNTS: &[Pubkey] = &[
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pubkey!("astrazznxsGUhWShqgNtAdfrzP2G83DzcWVJDxwV9bF"),
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pubkey!("astra4uejePWneqNaJKuFFA8oonqCE1sqF6b45kDMZm"),
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pubkey!("astra9xWY93QyfG6yM8zwsKsRodscjQ2uU2HKNL5prk"),
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pubkey!("astraRVUuTHjpwEVvNBeQEgwYx9w9CFyfxjYoobCZhL"),
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pubkey!("astraEJ2fEj8Xmy6KLG7B3VfbKfsHXhHrNdCQx7iGJK"),
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pubkey!("astraubkDw81n4LuutzSQ8uzHCv4BhPVhfvTcYv8SKC"),
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pubkey!("astraZW5GLFefxNPAatceHhYjfA1ciq9gvfEg2S47xk"),
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pubkey!("astrawVNP4xDBKT7rAdxrLYiTSTdqtUr63fSMduivXK"),
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];
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// NewYork,
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// Frankfurt,
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// Amsterdam,
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@@ -195,3 +206,14 @@ pub const SWQOS_ENDPOINTS_BLOCKRAZOR: [&str; 8] = [
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"http://frankfurt.solana.blockrazor.xyz:443/sendTransaction",
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];
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pub const SWQOS_ENDPOINTS_ASTRALANE: [&str; 8] = [
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"http://ny.gateway.astralane.io/iris",
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"http://fr.gateway.astralane.io/iris",
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"http://ams.gateway.astralane.io/iris",
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"http://ny.gateway.astralane.io/iris",
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"http://jp.gateway.astralane.io/iris",
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"http://ny.gateway.astralane.io/iris",
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"http://lax.gateway.astralane.io/iris",
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"http://lim.gateway.astralane.io/iris",
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];
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@@ -83,6 +83,7 @@ fn create_swqos_configs(rpc_url: &str) -> Vec<SwqosConfig> {
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SwqosConfig::Node1("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::FlashBlock("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::BlockRazor("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::Astralane("your api_token".to_string(), SwqosRegion::Frankfurt, None),
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SwqosConfig::Default(rpc_url.to_string()),
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]
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}
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@@ -0,0 +1,225 @@
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use crate::swqos::common::{poll_transaction_confirmation, serialize_transaction_and_encode};
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use rand::seq::IndexedRandom;
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use reqwest::Client;
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use serde_json::json;
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use std::{sync::Arc, time::Instant};
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use std::time::Duration;
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use solana_transaction_status::UiTransactionEncoding;
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use anyhow::Result;
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use solana_sdk::transaction::VersionedTransaction;
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use crate::swqos::{SwqosType, TradeType};
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use crate::swqos::SwqosClientTrait;
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use crate::{common::SolanaRpcClient, constants::swqos::ASTRALANE_TIP_ACCOUNTS};
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use tokio::task::JoinHandle;
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use std::sync::atomic::{AtomicBool, Ordering};
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#[derive(Clone)]
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pub struct AstralaneClient {
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pub endpoint: String,
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pub auth_token: String,
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pub rpc_client: Arc<SolanaRpcClient>,
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pub http_client: Client,
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pub ping_handle: Arc<tokio::sync::Mutex<Option<JoinHandle<()>>>>,
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pub stop_ping: Arc<AtomicBool>,
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}
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#[async_trait::async_trait]
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impl SwqosClientTrait for AstralaneClient {
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async fn send_transaction(&self, trade_type: TradeType, transaction: &VersionedTransaction) -> Result<()> {
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self.send_transaction(trade_type, transaction).await
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}
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async fn send_transactions(&self, trade_type: TradeType, transactions: &Vec<VersionedTransaction>) -> Result<()> {
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self.send_transactions(trade_type, transactions).await
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}
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fn get_tip_account(&self) -> Result<String> {
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let tip_account = *ASTRALANE_TIP_ACCOUNTS.choose(&mut rand::rng()).or_else(|| ASTRALANE_TIP_ACCOUNTS.first()).unwrap();
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Ok(tip_account.to_string())
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}
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fn get_swqos_type(&self) -> SwqosType {
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SwqosType::Astralane
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}
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}
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impl AstralaneClient {
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pub fn new(rpc_url: String, endpoint: String, auth_token: String) -> Self {
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let rpc_client = SolanaRpcClient::new(rpc_url);
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let http_client = Client::builder()
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// Due to ping mechanism, can extend connection pool idle timeout
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.pool_idle_timeout(Duration::from_secs(300)) // 5 minutes, longer than ping interval
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.pool_max_idle_per_host(32) // Reduce connections as they will be more stable
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// TCP keepalive can be set longer as ping will actively maintain connections
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.tcp_keepalive(Some(Duration::from_secs(300))) // 5 minutes
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// HTTP/2 keepalive interval can be longer
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.http2_keep_alive_interval(Duration::from_secs(30)) // 30 seconds
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// Request timeout can be appropriately extended as connections are more stable
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.timeout(Duration::from_secs(15)) // 15 seconds
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.connect_timeout(Duration::from_secs(5))
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.build()
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.unwrap();
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let client = Self {
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rpc_client: Arc::new(rpc_client),
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endpoint,
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auth_token,
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http_client,
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ping_handle: Arc::new(tokio::sync::Mutex::new(None)),
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stop_ping: Arc::new(AtomicBool::new(false)),
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};
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// Start ping task
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let client_clone = client.clone();
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tokio::spawn(async move {
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client_clone.start_ping_task().await;
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});
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client
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}
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/// Start periodic ping task to keep connections active
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async fn start_ping_task(&self) {
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let endpoint = self.endpoint.clone();
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let auth_token = self.auth_token.clone();
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let http_client = self.http_client.clone();
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let stop_ping = self.stop_ping.clone();
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let handle = tokio::spawn(async move {
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let mut interval = tokio::time::interval(Duration::from_secs(60)); // Ping every 60 seconds
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loop {
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interval.tick().await;
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if stop_ping.load(Ordering::Relaxed) {
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break;
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}
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// Send ping request
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tokio::time::sleep(Duration::from_secs(5)).await;
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if let Err(e) = Self::send_ping_request(&http_client, &endpoint, &auth_token).await {
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eprintln!("Astralane ping request failed: {}", e);
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}
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}
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});
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// Update ping_handle - use Mutex to safely update
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{
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let mut ping_guard = self.ping_handle.lock().await;
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if let Some(old_handle) = ping_guard.as_ref() {
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old_handle.abort();
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}
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*ping_guard = Some(handle);
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}
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}
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/// Send ping request to /gethealth endpoint
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async fn send_ping_request(http_client: &Client, endpoint: &str, auth_token: &str) -> Result<()> {
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// Build ping URL by replacing /iris with /gethealth
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let ping_url = if endpoint.ends_with("/iris") {
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endpoint.replace("/iris", "/gethealth")
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} else if endpoint.ends_with("/iris/") {
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endpoint.replace("/iris/", "/gethealth")
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} else if endpoint.ends_with('/') {
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format!("{}gethealth", endpoint)
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} else {
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format!("{}/gethealth", endpoint)
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};
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// Send GET request to /gethealth endpoint with api_key header
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let response = http_client.get(&ping_url)
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.header("api_key", auth_token)
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.send()
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.await?;
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if response.status().is_success() {
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// ping successful, connection remains active
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// println!("send getHealth to keep connection alive");
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} else {
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eprintln!("Astralane ping request returned non-success status: {}", response.status());
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}
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Ok(())
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}
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pub async fn send_transaction(&self, trade_type: TradeType, transaction: &VersionedTransaction) -> Result<()> {
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let start_time = Instant::now();
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let (content, signature) = serialize_transaction_and_encode(transaction, UiTransactionEncoding::Base64).await?;
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println!(" Transaction encoded to base64: {:?}", start_time.elapsed());
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let request_body = serde_json::to_string(&json!({
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"jsonrpc": "2.0",
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"id": 1,
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"method": "sendTransaction",
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"params": [
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content,
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{ "encoding": "base64", "skipPreflight": true },
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{ "mevProtect": false }
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]
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}))?;
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// Send request with api_key header (like your example)
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let response_text = self.http_client.post(&self.endpoint)
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.body(request_body)
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.header("Content-Type", "application/json")
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.header("api_key", &self.auth_token)
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.send()
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.await?
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.text()
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.await?;
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// Parse JSON response
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if let Ok(response_json) = serde_json::from_str::<serde_json::Value>(&response_text) {
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if response_json.get("result").is_some() {
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println!(" astralane {} submitted: {:?}", trade_type, start_time.elapsed());
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} else if let Some(_error) = response_json.get("error") {
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eprintln!(" astralane {} submission failed: {:?}", trade_type, _error);
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}
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} else {
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eprintln!(" astralane {} submission failed: {:?}", trade_type, response_text);
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}
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let start_time: Instant = Instant::now();
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match poll_transaction_confirmation(&self.rpc_client, signature).await {
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Ok(_) => (),
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Err(e) => {
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println!(" signature: {:?}", signature);
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println!(" astralane {} confirmation failed: {:?}", trade_type, start_time.elapsed());
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return Err(e);
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},
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}
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println!(" signature: {:?}", signature);
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println!(" astralane {} confirmed: {:?}", trade_type, start_time.elapsed());
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Ok(())
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}
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pub async fn send_transactions(&self, trade_type: TradeType, transactions: &Vec<VersionedTransaction>) -> Result<()> {
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for transaction in transactions {
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self.send_transaction(trade_type, transaction).await?;
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}
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Ok(())
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}
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}
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impl Drop for AstralaneClient {
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fn drop(&mut self) {
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// Ensure ping task stops when client is destroyed
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self.stop_ping.store(true, Ordering::Relaxed);
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// Try to stop ping task immediately
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// Use tokio::spawn to avoid blocking Drop
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let ping_handle = self.ping_handle.clone();
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tokio::spawn(async move {
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let mut ping_guard = ping_handle.lock().await;
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if let Some(handle) = ping_guard.as_ref() {
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handle.abort();
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}
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*ping_guard = None;
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});
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}
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}
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+17
-2
@@ -8,6 +8,7 @@ pub mod bloxroute;
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pub mod node1;
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pub mod flashblock;
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pub mod blockrazor;
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pub mod astralane;
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use std::sync::Arc;
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@@ -26,7 +27,8 @@ use crate::{
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SWQOS_ENDPOINTS_ZERO_SLOT,
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SWQOS_ENDPOINTS_NODE1,
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SWQOS_ENDPOINTS_FLASHBLOCK,
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SWQOS_ENDPOINTS_BLOCKRAZOR
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SWQOS_ENDPOINTS_BLOCKRAZOR,
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SWQOS_ENDPOINTS_ASTRALANE
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},
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swqos::{
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bloxroute::BloxrouteClient,
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@@ -37,7 +39,8 @@ use crate::{
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zeroslot::ZeroSlotClient,
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node1::Node1Client,
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flashblock::FlashBlockClient,
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blockrazor::BlockRazorClient
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blockrazor::BlockRazorClient,
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astralane::AstralaneClient
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}
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};
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@@ -75,6 +78,7 @@ pub enum SwqosType {
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Node1,
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FlashBlock,
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BlockRazor,
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Astralane,
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Default,
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}
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@@ -111,6 +115,7 @@ pub enum SwqosConfig {
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Node1(String, SwqosRegion, Option<String>),
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FlashBlock(String, SwqosRegion, Option<String>),
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BlockRazor(String, SwqosRegion, Option<String>),
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Astralane(String, SwqosRegion, Option<String>),
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}
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impl SwqosConfig {
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@@ -128,6 +133,7 @@ impl SwqosConfig {
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SwqosType::Node1 => SWQOS_ENDPOINTS_NODE1[region as usize].to_string(),
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SwqosType::FlashBlock => SWQOS_ENDPOINTS_FLASHBLOCK[region as usize].to_string(),
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SwqosType::BlockRazor => SWQOS_ENDPOINTS_BLOCKRAZOR[region as usize].to_string(),
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SwqosType::Astralane => SWQOS_ENDPOINTS_ASTRALANE[region as usize].to_string(),
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SwqosType::Default => "".to_string(),
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}
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}
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@@ -206,6 +212,15 @@ impl SwqosConfig {
|
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);
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Arc::new(blockrazor_client)
|
||||
},
|
||||
SwqosConfig::Astralane(auth_token, region, url) => {
|
||||
let endpoint = SwqosConfig::get_endpoint(SwqosType::Astralane, region, url);
|
||||
let astralane_client = AstralaneClient::new(
|
||||
rpc_url.clone(),
|
||||
endpoint.to_string(),
|
||||
auth_token
|
||||
);
|
||||
Arc::new(astralane_client)
|
||||
},
|
||||
SwqosConfig::Default(endpoint) => {
|
||||
let rpc = SolanaRpcClient::new_with_commitment(
|
||||
endpoint,
|
||||
|
||||
Reference in New Issue
Block a user