57c2848a577445bc29f4bf2533084c7c9eba85ae
Sol Trade SDK
A comprehensive Rust SDK for seamless interaction with Solana DEX trading programs. This SDK provides a robust set of tools and interfaces to integrate PumpFun, PumpSwap, and Bonk functionality into your applications.
Project Features
- PumpFun Trading: Support for
buyandselloperations - PumpSwap Trading: Support for PumpSwap pool trading operations
- Bonk Trading: Support for Bonk trading operations
- Event Subscription: Subscribe to PumpFun, PumpSwap, and Bonk program trading events
- Yellowstone gRPC: Subscribe to program events using Yellowstone gRPC
- ShredStream Support: Subscribe to program events using ShredStream
- Multiple MEV Protection: Support for Jito, Nextblock, ZeroSlot, Temporal, Bloxroute, and other services
- Concurrent Trading: Send transactions using multiple MEV services simultaneously; the fastest succeeds while others fail
- Unified Trading Interface: Use unified parameter structures for trading operations
Installation
Clone this project to your project directory:
cd your_project_root_directory
git clone https://github.com/0xfnzero/sol-trade-sdk
Add the dependency to your Cargo.toml:
# Add to your Cargo.toml
sol-trade-sdk = { path = "./sol-trade-sdk", version = "0.1.0" }
Usage Examples
1. Event Subscription - Monitor Token Trading
1.1 Subscribe to Events Using Yellowstone gRPC
use sol_trade_sdk::{
event_parser::{
protocols::{
pumpfun::{PumpFunCreateTokenEvent, PumpFunTradeEvent},
pumpswap::{
PumpSwapBuyEvent, PumpSwapCreatePoolEvent, PumpSwapDepositEvent,
PumpSwapSellEvent, PumpSwapWithdrawEvent,
},
bonk::{BonkPoolCreateEvent, BonkTradeEvent},
},
Protocol, UnifiedEvent,
},
grpc::YellowstoneGrpc,
match_event,
};
async fn test_grpc() -> Result<(), Box<dyn std::error::Error>> {
// Subscribe to events using GRPC client
println!("Subscribing to GRPC events...");
let grpc = YellowstoneGrpc::new(
"https://solana-yellowstone-grpc.publicnode.com:443".to_string(),
None,
)?;
// Define callback function to handle events
let callback = |event: Box<dyn UnifiedEvent>| {
match_event!(event, {
BonkPoolCreateEvent => |e: BonkPoolCreateEvent| {
println!("BonkPoolCreateEvent: {:?}", e.base_mint_param.symbol);
},
BonkTradeEvent => |e: BonkTradeEvent| {
println!("BonkTradeEvent: {:?}", e);
},
PumpFunTradeEvent => |e: PumpFunTradeEvent| {
println!("PumpFunTradeEvent: {:?}", e);
},
PumpFunCreateTokenEvent => |e: PumpFunCreateTokenEvent| {
println!("PumpFunCreateTokenEvent: {:?}", e);
},
PumpSwapBuyEvent => |e: PumpSwapBuyEvent| {
println!("Buy event: {:?}", e);
},
PumpSwapSellEvent => |e: PumpSwapSellEvent| {
println!("Sell event: {:?}", e);
},
PumpSwapCreatePoolEvent => |e: PumpSwapCreatePoolEvent| {
println!("CreatePool event: {:?}", e);
},
PumpSwapDepositEvent => |e: PumpSwapDepositEvent| {
println!("Deposit event: {:?}", e);
},
PumpSwapWithdrawEvent => |e: PumpSwapWithdrawEvent| {
println!("Withdraw event: {:?}", e);
},
});
};
// Subscribe to events from multiple protocols
println!("Starting to listen for events, press Ctrl+C to stop...");
let protocols = vec![
Protocol::PumpFun,
Protocol::PumpSwap,
Protocol::Bonk,
];
grpc.subscribe_events(protocols, None, None, None, callback)
.await?;
Ok(())
}
1.2 Subscribe to Events Using ShredStream
use sol_trade_sdk::grpc::ShredStreamGrpc;
async fn test_shreds() -> Result<(), Box<dyn std::error::Error>> {
// Subscribe to events using ShredStream client
println!("Subscribing to ShredStream events...");
let shred_stream = ShredStreamGrpc::new("http://127.0.0.1:10800".to_string()).await?;
// Define callback function to handle events (same as above)
let callback = |event: Box<dyn UnifiedEvent>| {
match_event!(event, {
BonkPoolCreateEvent => |e: BonkPoolCreateEvent| {
println!("BonkPoolCreateEvent: {:?}", e.base_mint_param.symbol);
},
BonkTradeEvent => |e: BonkTradeEvent| {
println!("BonkTradeEvent: {:?}", e);
},
PumpFunTradeEvent => |e: PumpFunTradeEvent| {
println!("PumpFunTradeEvent: {:?}", e);
},
PumpFunCreateTokenEvent => |e: PumpFunCreateTokenEvent| {
println!("PumpFunCreateTokenEvent: {:?}", e);
},
PumpSwapBuyEvent => |e: PumpSwapBuyEvent| {
println!("Buy event: {:?}", e);
},
PumpSwapSellEvent => |e: PumpSwapSellEvent| {
println!("Sell event: {:?}", e);
},
PumpSwapCreatePoolEvent => |e: PumpSwapCreatePoolEvent| {
println!("CreatePool event: {:?}", e);
},
PumpSwapDepositEvent => |e: PumpSwapDepositEvent| {
println!("Deposit event: {:?}", e);
},
PumpSwapWithdrawEvent => |e: PumpSwapWithdrawEvent| {
println!("Withdraw event: {:?}", e);
},
});
};
// Subscribe to events
println!("Starting to listen for events, press Ctrl+C to stop...");
let protocols = vec![
Protocol::PumpFun,
Protocol::PumpSwap,
Protocol::Bonk,
];
shred_stream
.shredstream_subscribe(protocols, None, callback)
.await?;
Ok(())
}
2. Initialize SolanaTrade Instance
use std::{str::FromStr, sync::Arc};
use sol_trade_sdk::{
common::{AnyResult, PriorityFee, TradeConfig},
swqos::{SwqosConfig, SwqosRegion},
SolanaTrade
};
use solana_client::rpc_client::RpcClient;
use solana_sdk::{commitment_config::CommitmentConfig, pubkey::Pubkey, signature::Keypair};
// Create trader account
let payer = Keypair::new();
let rpc_url = "https://mainnet.helius-rpc.com/?api-key=xxxxxx".to_string();
// Configure multiple MEV services to support concurrent trading
let swqos_configs = vec![
SwqosConfig::Jito(SwqosRegion::Frankfurt),
SwqosConfig::NextBlock("your api_token".to_string(), SwqosRegion::Frankfurt),
SwqosConfig::Bloxroute("your api_token".to_string(), SwqosRegion::Frankfurt),
SwqosConfig::ZeroSlot("your api_token".to_string(), SwqosRegion::Frankfurt),
SwqosConfig::Temporal("your api_token".to_string(), SwqosRegion::Frankfurt),
SwqosConfig::Default(rpc_url.clone()),
];
// Define trading configuration
let trade_config = TradeConfig {
rpc_url: rpc_url.clone(),
commitment: CommitmentConfig::confirmed(),
priority_fee: PriorityFee::default(),
swqos_configs,
lookup_table_key: None,
};
// Create SolanaTrade instance
let solana_trade_client = SolanaTrade::new(Arc::new(payer), trade_config).await;
3. PumpFun Trading Operations
use sol_trade_sdk::{
accounts::BondingCurveAccount,
constants::{pumpfun::global_constants::TOKEN_TOTAL_SUPPLY, trade_type},
pumpfun::common::get_bonding_curve_account_v2,
trading::{
core::params::{PumpFunParams, PumpFunSellParams},
BuyParams, SellParams,
},
};
async fn test_pumpfun() -> AnyResult<()> {
// Basic parameter setup
let creator = Pubkey::from_str("xxxxxx")?; // Developer account
let mint_pubkey = Pubkey::from_str("xxxxxx")?; // Token address
let buy_sol_cost = 100_000; // 0.0001 SOL
let slippage_basis_points = Some(100);
let rpc = RpcClient::new(rpc_url);
let recent_blockhash = rpc.get_latest_blockhash().unwrap();
println!("Buying tokens from PumpFun...");
// Get bonding curve information
let (bonding_curve, bonding_curve_pda) =
get_bonding_curve_account_v2(&solana_trade_client.rpc, &mint_pubkey).await?;
let bonding_curve = BondingCurveAccount {
discriminator: bonding_curve.discriminator,
account: bonding_curve_pda,
virtual_token_reserves: bonding_curve.virtual_token_reserves,
virtual_sol_reserves: bonding_curve.virtual_sol_reserves,
real_token_reserves: bonding_curve.real_token_reserves,
real_sol_reserves: bonding_curve.real_sol_reserves,
token_total_supply: TOKEN_TOTAL_SUPPLY,
complete: false,
creator: creator,
};
// Buy operation
let buy_protocol_params = PumpFunParams {
trade_type: trade_type::COPY_BUY.to_string(),
bonding_curve: Some(Arc::new(bonding_curve)),
};
let buy_params = BuyParams {
rpc: Some(solana_trade_client.rpc.clone()),
payer: solana_trade_client.payer.clone(),
mint: mint_pubkey,
creator: creator,
amount_sol: buy_sol_cost,
slippage_basis_points: slippage_basis_points,
priority_fee: solana_trade_client.trade_config.clone().priority_fee,
lookup_table_key: solana_trade_client.trade_config.clone().lookup_table_key,
recent_blockhash,
data_size_limit: 0,
protocol_params: Box::new(buy_protocol_params.clone()),
};
// Buy with MEV protection
let buy_with_tip_params = buy_params
.clone()
.with_tip(solana_trade_client.swqos_clients.clone());
solana_trade_client
.buy_use_buy_params(buy_with_tip_params, None)
.await?;
// Sell operation
println!("Selling tokens from PumpFun...");
let sell_protocol_params = PumpFunSellParams {};
let amount_token = 1000000; // Enter the actual token amount
let sell_params = SellParams {
rpc: Some(solana_trade_client.rpc.clone()),
payer: solana_trade_client.payer.clone(),
mint: mint_pubkey,
creator: creator,
amount_token: Some(amount_token),
slippage_basis_points: None,
priority_fee: solana_trade_client.trade_config.clone().priority_fee,
lookup_table_key: solana_trade_client.trade_config.clone().lookup_table_key,
recent_blockhash,
protocol_params: Box::new(sell_protocol_params.clone()),
};
solana_trade_client
.sell_by_amount_use_sell_params(sell_params)
.await?;
Ok(())
}
4. PumpSwap Trading Operations
use sol_trade_sdk::trading::core::params::PumpSwapParams;
async fn test_pumpswap() -> AnyResult<()> {
// Basic parameter setup
let creator = Pubkey::from_str("11111111111111111111111111111111")?; // Developer account
let mint_pubkey = Pubkey::from_str("2zMMhcVQEXDtdE6vsFS7S7D5oUodfJHE8vd1gnBouauv")?; // Token address
let buy_sol_cost = 100_000; // 0.0001 SOL
let slippage_basis_points = Some(100);
let rpc = RpcClient::new(rpc_url);
let recent_blockhash = rpc.get_latest_blockhash().unwrap();
println!("Buying tokens from PumpSwap...");
// PumpSwap parameter configuration
let protocol_params = PumpSwapParams {
pool: None,
pool_base_token_account: None,
pool_quote_token_account: None,
user_base_token_account: None,
user_quote_token_account: None,
auto_handle_wsol: true,
};
// Buy operation
let buy_params = BuyParams {
rpc: Some(solana_trade_client.rpc.clone()),
payer: solana_trade_client.payer.clone(),
mint: mint_pubkey,
creator: creator,
amount_sol: buy_sol_cost,
slippage_basis_points: slippage_basis_points,
priority_fee: solana_trade_client.trade_config.clone().priority_fee,
lookup_table_key: solana_trade_client.trade_config.clone().lookup_table_key,
recent_blockhash,
data_size_limit: 0,
protocol_params: Box::new(protocol_params.clone()),
};
let buy_with_tip_params = buy_params
.clone()
.with_tip(solana_trade_client.swqos_clients.clone());
solana_trade_client
.buy_use_buy_params(buy_with_tip_params, None)
.await?;
// Sell operation
println!("Selling tokens from PumpSwap...");
let amount_token = 1000000; // Enter the actual token amount
let sell_params = SellParams {
rpc: Some(solana_trade_client.rpc.clone()),
payer: solana_trade_client.payer.clone(),
mint: mint_pubkey,
creator: creator,
amount_token: Some(amount_token),
slippage_basis_points: None,
priority_fee: solana_trade_client.trade_config.clone().priority_fee,
lookup_table_key: solana_trade_client.trade_config.clone().lookup_table_key,
recent_blockhash,
protocol_params: Box::new(protocol_params.clone()),
};
solana_trade_client
.sell_by_amount_use_sell_params(sell_params)
.await?;
Ok(())
}
5. Bonk Trading Operations
use sol_trade_sdk::trading::core::params::BonkParams;
async fn test_bonk() -> Result<(), Box<dyn std::error::Error>> {
// Basic parameter setup
let amount = 100_000; // 0.0001 SOL
let mint = Pubkey::from_str("xxxxxxx")?;
let recent_blockhash = solana_trade_client.rpc.get_latest_blockhash().await?;
// Bonk parameter configuration
let bonk_params = BonkParams {
virtual_base: None,
virtual_quote: None,
real_base_before: None,
real_quote_before: None,
auto_handle_wsol: true,
};
println!("Buying tokens from letsbonk.fun...");
// Buy operation
let buy_params = BuyParams {
rpc: Some(solana_trade_client.rpc.clone()),
payer: solana_trade_client.payer.clone(),
mint: mint,
creator: Pubkey::default(),
amount_sol: amount,
slippage_basis_points: None,
priority_fee: solana_trade_client.trade_config.clone().priority_fee,
lookup_table_key: solana_trade_client.trade_config.clone().lookup_table_key,
recent_blockhash,
data_size_limit: 0,
protocol_params: Box::new(bonk_params.clone()),
};
let buy_with_tip_params = buy_params
.clone()
.with_tip(solana_trade_client.swqos_clients.clone());
solana_trade_client
.buy_use_buy_params(buy_with_tip_params, None)
.await?;
// Sell operation
println!("Selling tokens from letsbonk.fun...");
let sell_params = SellParams {
rpc: Some(solana_trade_client.rpc.clone()),
payer: solana_trade_client.payer.clone(),
mint: mint,
creator: Pubkey::default(),
amount_token: None,
slippage_basis_points: None,
priority_fee: solana_trade_client.trade_config.clone().priority_fee,
lookup_table_key: solana_trade_client.trade_config.clone().lookup_table_key,
recent_blockhash,
protocol_params: Box::new(bonk_params.clone()),
};
solana_trade_client
.sell_by_amount_use_sell_params(sell_params)
.await?;
Ok(())
}
6. Custom Priority Fee Configuration
use sol_trade_sdk::common::PriorityFee;
// Custom priority fee configuration
let priority_fee = PriorityFee {
unit_limit: 190000,
unit_price: 1000000,
rpc_unit_limit: 500000,
rpc_unit_price: 500000,
buy_tip_fee: 0.001,
buy_tip_fees: vec![0.001, 0.002],
sell_tip_fee: 0.0001,
};
// Use custom priority fee in TradeConfig
let trade_config = TradeConfig {
rpc_url: rpc_url.clone(),
commitment: CommitmentConfig::confirmed(),
priority_fee, // Use custom priority fee
swqos_configs,
lookup_table_key: None,
};
Supported Trading Platforms
- PumpFun: Primary meme coin trading platform
- PumpSwap: PumpFun's swap protocol
- Bonk: token launch platform (letsbonk.fun)
MEV Protection Services
- Jito: High-performance block space
- NextBlock: Fast transaction execution
- ZeroSlot: Zero-latency transactions
- Temporal: Time-sensitive transactions
- Bloxroute: Blockchain network acceleration
New Architecture Features
Unified Parameter Structure
- BuyParams: Unified buy parameter structure
- SellParams: Unified sell parameter structure
- Protocol-specific Parameters: Each protocol has its own parameter structure (PumpFunParams, PumpSwapParams, BonkParams)
Event Parsing System
- Unified Event Interface: All protocol events implement the UnifiedEvent trait
- Protocol-specific Events: Each protocol has its own event types
- Event Factory: Automatically identifies and parses events from different protocols
Trading Engine
- Unified Trading Interface: All trading operations use the same methods
- Protocol Abstraction: Supports trading operations across multiple protocols
- Concurrent Execution: Supports sending transactions to multiple MEV services simultaneously
Project Structure
src/
├── accounts/ # Account-related definitions
├── common/ # Common functionality and tools
├── constants/ # Constant definitions
├── error/ # Error handling
├── event_parser/ # Event parsing system
│ ├── common/ # Common event parsing tools
│ ├── core/ # Core parsing traits and interfaces
│ ├── protocols/ # Protocol-specific parsers
│ │ ├── pumpfun/ # PumpFun event parsing
│ │ ├── pumpswap/ # PumpSwap event parsing
│ │ └── bonk/ # Bonk event parsing
│ └── factory.rs # Parser factory
├── grpc/ # gRPC clients
├── instruction/ # Instruction building
├── protos/ # Protocol buffer definitions
├── pumpfun/ # PumpFun trading functionality
├── pumpswap/ # PumpSwap trading functionality
├── bonk/ # Bonk trading functionality
├── swqos/ # MEV service clients
├── trading/ # Unified trading engine
│ ├── common/ # Common trading tools
│ ├── core/ # Core trading engine
│ └── protocols/ # Protocol-specific trading implementations
├── lib.rs # Main library file
└── main.rs # Example program
License
MIT License
Contact
- Project Repository: https://github.com/0xfnzero/sol-trade-sdk
- Telegram Group: https://t.me/fnzero_group
Important Notes
- Test thoroughly before using on mainnet
- Properly configure private keys and API tokens
- Pay attention to slippage settings to avoid transaction failures
- Monitor balances and transaction fees
- Comply with relevant laws and regulations
Language Versions
Description
Rust SDK for low-latency Solana DEX trading bots with PumpFun, PumpSwap, Bonk, Raydium, Meteora, Jito, and SWQoS submit lanes.
0xfnzeroarbitragebonkcopy-tradingfnzerojito-bundlemeteoramevpumpfunpumpfun-sdkpumpswapraydiumraydium-swaprustsniper-botsolanasolana-botsolana-tradeswqostrading-bot
Readme
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