High-performance Rust library for parsing Solana DEX events with microsecond-level latency
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- 10-20ΞΌs parsing latency in release mode
- Zero-copy parsing with stack-allocated buffers
- SIMD-accelerated pattern matching (memchr)
- Lock-free ArrayQueue for event delivery
| Mode | Latency | Description |
|---|---|---|
| Unordered | 10-20ΞΌs | Immediate output, ultra-low latency |
| MicroBatch | 50-200ΞΌs | Micro-batch ordering with time window |
| StreamingOrdered | 0.1-5ms | Stream ordering with continuous sequence release |
| Ordered | 1-50ms | Full slot ordering, wait for complete slot |
- β Zero heap allocation for hot paths
- β SIMD pattern matching for all protocol detection
- β Static pre-compiled finders for string search
- β Inline functions with aggressive optimization
- β Event type filtering for targeted parsing
- β Conditional Create detection (only when needed)
- β Multiple order modes for latency vs ordering trade-off
cd your_project_dir
git clone https://github.com/0xfnzero/sol-parser-sdkTest parsing latency with the optimized example:
# Run performance test (requires sudo for high-precision timing)
cargo run --example basic --release
# PumpSwap events with MicroBatch ordering
cargo run --example pumpswap_ordered --release
# Expected output:
# gRPC recv time: 1234567890 ΞΌs
# Event recv time: 1234567900 ΞΌs
# Parse latency: 10 ΞΌs <-- Ultra-low latency!
Why sudo? The example uses libc::clock_gettime(CLOCK_REALTIME) for microsecond-precision timing, which may require elevated permissions on some systems.
| Example | Description | Command |
|---|---|---|
basic |
Basic PumpFun event parsing with latency measurement | cargo run --example basic --release |
pumpswap_ordered |
PumpSwap Buy/Sell/CreatePool with MicroBatch ordering | cargo run --example pumpswap_ordered --release |
pump_trade_filter |
PumpFun trade type filtering (Buy/Sell/BuyExactSolIn) - Unordered | cargo run --example pump_trade_filter --release |
pump_trade_filter_ordered |
PumpFun trade filtering with MicroBatch ordering (1ms window) | cargo run --example pump_trade_filter_ordered --release |
dynamic_subscription |
Dynamic filter updates without reconnecting | cargo run --example dynamic_subscription --release |
use sol_parser_sdk::grpc::{YellowstoneGrpc, ClientConfig, OrderMode, EventTypeFilter, EventType};
#[tokio::main]
async fn main() -> Result<(), Box<dyn std::error::Error>> {
// Create gRPC client with default config (Unordered mode)
let grpc = YellowstoneGrpc::new(
"https://solana-yellowstone-grpc.publicnode.com:443".to_string(),
None,
)?;
// Or with custom config for ordered events
let config = ClientConfig {
order_mode: OrderMode::MicroBatch, // Low latency + ordering
micro_batch_us: 100, // 100ΞΌs batch window
..ClientConfig::default()
};
let grpc = YellowstoneGrpc::new_with_config(
"https://solana-yellowstone-grpc.publicnode.com:443".to_string(),
None,
config,
)?;
// Filter for PumpFun Trade events only (ultra-fast path)
let event_filter = EventTypeFilter::include_only(vec![
EventType::PumpFunTrade
]);
// Subscribe and get lock-free queue
let queue = grpc.subscribe_dex_events(
vec![transaction_filter],
vec![account_filter],
Some(event_filter),
).await?;
// Consume events with minimal latency
tokio::spawn(async move {
let mut spin_count = 0;
loop {
if let Some(event) = queue.pop() {
spin_count = 0;
// Process event (10-20ΞΌs latency!)
println!("{:?}", event);
} else {
// Hybrid spin-wait strategy
spin_count += 1;
if spin_count < 1000 {
std::hint::spin_loop();
} else {
tokio::task::yield_now().await;
spin_count = 0;
}
}
}
});
Ok(())
}- β PumpFun - Meme coin trading (ultra-fast zero-copy path)
- β PumpSwap - PumpFun swap protocol
- β Raydium AMM V4 - Automated Market Maker
- β Raydium CLMM - Concentrated Liquidity
- β Raydium CPMM - Concentrated Pool
- β Orca Whirlpool - Concentrated liquidity AMM
- β Meteora AMM - Dynamic AMM
- β Meteora DAMM - Dynamic AMM V2
- β Meteora DLMM - Dynamic Liquidity Market Maker
- β Bonk Launchpad - Token launch platform
Each protocol supports:
- π Trade/Swap Events - Buy/sell transactions
- π§ Liquidity Events - Deposits/withdrawals
- π Pool Events - Pool creation/initialization
- π― Position Events - Open/close positions (CLMM)
// Stack-allocated 512-byte buffer for PumpFun Trade
const MAX_DECODE_SIZE: usize = 512;
let mut decode_buf: [u8; MAX_DECODE_SIZE] = [0u8; MAX_DECODE_SIZE];
// Decode directly to stack, no heap allocation
general_purpose::STANDARD
.decode_slice(data_part.as_bytes(), &mut decode_buf)
.ok()?;// Pre-compiled SIMD finders (initialized once)
static PUMPFUN_FINDER: Lazy<memmem::Finder> =
Lazy::new(|| memmem::Finder::new(b"6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P"));
// 3-10x faster than .contains()
if PUMPFUN_FINDER.find(log_bytes).is_some() {
return LogType::PumpFun;
}// Ultra-fast path for single event type
if include_only.len() == 1 && include_only[0] == EventType::PumpFunTrade {
if log_type == LogType::PumpFun {
return parse_pumpfun_trade( // Zero-copy path
log, signature, slot, block_time, grpc_recv_us, is_created_buy
);
}
}// ArrayQueue with 100,000 capacity
let queue = Arc::new(ArrayQueue::<DexEvent>::new(100_000));
// Non-blocking push/pop (no mutex overhead)
let _ = queue.push(event);
if let Some(event) = queue.pop() {
// Process event
}Reduce processing overhead by filtering specific events:
let event_filter = EventTypeFilter::include_only(vec![
EventType::PumpFunTrade,
EventType::RaydiumAmmV4Swap,
EventType::RaydiumClmmSwap,
EventType::OrcaWhirlpoolSwap,
]);let event_filter = EventTypeFilter::include_only(vec![
EventType::PumpFunCreate,
EventType::RaydiumClmmCreatePool,
EventType::OrcaWhirlpoolInitialize,
]);Performance Impact:
- 60-80% reduction in processing
- Lower memory usage
- Reduced network bandwidth
Automatically detects when a token is created and immediately bought in the same transaction:
// Detects "Program data: GB7IKAUcB3c..." pattern
let has_create = detect_pumpfun_create(logs);
// Sets is_created_buy flag on Trade events
if has_create {
trade_event.is_created_buy = true;
}Update filters without reconnecting:
grpc.update_subscription(
vec![new_transaction_filter],
vec![new_account_filter],
).await?;Choose the right balance between latency and ordering:
use sol_parser_sdk::grpc::{ClientConfig, OrderMode};
// Ultra-low latency (no ordering guarantee)
let config = ClientConfig {
order_mode: OrderMode::Unordered,
..ClientConfig::default()
};
// Low latency with micro-batch ordering (50-200ΞΌs)
let config = ClientConfig {
order_mode: OrderMode::MicroBatch,
micro_batch_us: 100, // 100ΞΌs batch window
..ClientConfig::default()
};
// Stream ordering with continuous sequence release (0.1-5ms)
let config = ClientConfig {
order_mode: OrderMode::StreamingOrdered,
order_timeout_ms: 50, // Timeout for incomplete sequences
..ClientConfig::default()
};
// Full slot ordering (1-50ms, wait for complete slot)
let config = ClientConfig {
order_mode: OrderMode::Ordered,
order_timeout_ms: 100,
..ClientConfig::default()
};let config = ClientConfig {
enable_metrics: true,
..ClientConfig::default()
};
let grpc = YellowstoneGrpc::new_with_config(endpoint, token, config)?;src/
βββ core/
β βββ events.rs # Event definitions
βββ grpc/
β βββ client.rs # Yellowstone gRPC client
β βββ buffers.rs # SlotBuffer & MicroBatchBuffer
β βββ types.rs # OrderMode, ClientConfig, filters
βββ logs/
β βββ optimized_matcher.rs # SIMD log detection
β βββ zero_copy_parser.rs # Zero-copy parsing
β βββ pumpfun.rs # PumpFun parser
β βββ raydium_*.rs # Raydium parsers
β βββ orca_*.rs # Orca parsers
β βββ meteora_*.rs # Meteora parsers
βββ instr/
β βββ *.rs # Instruction parsers
βββ warmup/
β βββ mod.rs # Parser warmup (auto-called)
βββ lib.rs
- Replaced all
.contains()withmemmem::Finder - 3-10x performance improvement
- Pre-compiled static finders
- Stack-allocated buffers (512 bytes)
- No heap allocation in hot path
- Inline helper functions
- Early filtering at protocol level
- Conditional Create detection
- Single-type ultra-fast path
- ArrayQueue (100K capacity)
- Spin-wait hybrid strategy
- No mutex overhead
#[inline(always)]
fn read_u64_le_inline(data: &[u8], offset: usize) -> Option<u64> {
if offset + 8 <= data.len() {
let mut bytes = [0u8; 8];
bytes.copy_from_slice(&data[offset..offset + 8]);
Some(u64::from_le_bytes(bytes))
} else {
None
}
}| Protocol | Avg Latency | Min | Max |
|---|---|---|---|
| PumpFun Trade (zero-copy) | 10-15ΞΌs | 8ΞΌs | 20ΞΌs |
| Raydium AMM V4 Swap | 15-20ΞΌs | 12ΞΌs | 25ΞΌs |
| Orca Whirlpool Swap | 15-20ΞΌs | 12ΞΌs | 25ΞΌs |
| Operation | Before (contains) | After (SIMD) | Speedup |
|---|---|---|---|
| Protocol detection | 50-100ns | 10-20ns | 3-10x |
| Create event detection | 150ns | 30ns | 5x |
MIT License
- Repository: https://github.com/0xfnzero/solana-streamer
- Telegram: https://t.me/fnzero_group
- Discord: https://discord.gg/vuazbGkqQE
- Use Event Filtering - Filter at the source for 60-80% performance gain
- Run in Release Mode -
cargo build --releasefor full optimization - Test with sudo -
sudo cargo run --example basic --releasefor accurate timing - Monitor Latency - Check
grpc_recv_usand queue latency in production - Tune Queue Size - Adjust ArrayQueue capacity based on your throughput
- Spin-Wait Strategy - Tune spin count (default: 1000) for your use case
# Run tests
cargo test
# Build release binary
cargo build --release
# Generate docs
cargo doc --open