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# Solana Streamer
[中文 ](https://github.com/0xfnzero/solana-streamer/blob/main/README_CN.md ) | [English ](https://github.com/0xfnzero/solana-streamer/blob/main/README.md ) | [Telegram ](https://t.me/fnzero_group )
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A lightweight Rust library for real-time event streaming from Solana DEX trading programs. This library provides efficient event parsing and subscription capabilities for PumpFun, PumpSwap, Bonk, and Raydium CPMM protocols.
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## Project Features
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1. **Real-time Event Streaming** : Subscribe to live trading events from multiple Solana DEX protocols
2. **Yellowstone gRPC Support** : High-performance event subscription using Yellowstone gRPC
3. **ShredStream Support** : Alternative event streaming using ShredStream protocol
4. **Multi-Protocol Support** :
- **PumpFun**: Meme coin trading platform events
- **PumpSwap**: PumpFun's swap protocol events
- **Bonk**: Token launch platform events (letsbonk.fun)
- **Raydium CPMM**: Raydium's Concentrated Pool Market Maker events
- **Raydium CLMM**: Raydium's Concentrated Liquidity Market Maker events
5. **Unified Event Interface** : Consistent event handling across all supported protocols
6. **Event Parsing System** : Automatic parsing and categorization of protocol-specific events
7. **High Performance** : Optimized for low-latency event processing
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8. **Batch Processing Optimization** : Batch processing events to reduce callback overhead
9. **Performance Monitoring** : Built-in performance metrics monitoring, including event processing speed, memory usage, etc.
10. **Memory Optimization** : Object pooling and caching mechanisms to reduce memory allocations
11. **Flexible Configuration System** : Support for custom batch sizes, backpressure strategies, channel sizes, and other parameters
12. **Preset Configurations** : Provides high-performance, low-latency, ordered processing, and other preset configurations
13. **Backpressure Handling** : Supports blocking, dropping, retrying, ordered, and other backpressure strategies
14. **Runtime Configuration Updates** : Supports dynamic configuration parameter updates at runtime
15. **Full Function Performance Monitoring** : All subscribe_events functions support performance monitoring, automatically collecting and reporting performance metrics
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## Installation
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### Direct Clone
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Clone this project to your project directory:
```bash
cd your_project_root_directory
git clone https://github.com/0xfnzero/solana-streamer
```
Add the dependency to your `Cargo.toml` :
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```toml
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# Add to your Cargo.toml
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solana-streamer-sdk = { path = "./solana-streamer" , version = "0.1.11" }
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```
### Use crates.io
```toml
# Add to your Cargo.toml
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solana-streamer-sdk = "0.1.11"
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```
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## Usage Examples
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### Advanced Usage with Batch Processing and Backpressure
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```rust
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use solana_streamer_sdk ::{
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match_event ,
streaming ::{
event_parser ::{
protocols ::{
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bonk ::{ parser ::BONK_PROGRAM_ID , BonkPoolCreateEvent , BonkTradeEvent },
pumpfun ::{ parser ::PUMPFUN_PROGRAM_ID , PumpFunCreateTokenEvent , PumpFunTradeEvent },
pumpswap ::{
parser ::PUMPSWAP_PROGRAM_ID , PumpSwapBuyEvent , PumpSwapCreatePoolEvent ,
PumpSwapDepositEvent , PumpSwapSellEvent , PumpSwapWithdrawEvent ,
},
raydium_clmm ::{
parser ::RAYDIUM_CLMM_PROGRAM_ID , RaydiumClmmSwapEvent , RaydiumClmmSwapV2Event ,
},
raydium_cpmm ::{ parser ::RAYDIUM_CPMM_PROGRAM_ID , RaydiumCpmmSwapEvent },
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},
Protocol , UnifiedEvent ,
},
ShredStreamGrpc , YellowstoneGrpc ,
},
};
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#[tokio::main]
async fn main () -> Result < (), Box < dyn std ::error ::Error >> {
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println! ( "Starting Solana Streamer..." );
// Test Yellowstone gRPC with performance monitoring
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test_grpc (). await ? ;
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// Test ShredStream with performance monitoring
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test_shreds (). await ? ;
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Ok (())
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}
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async fn test_grpc () -> Result < (), Box < dyn std ::error ::Error >> {
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println! ( "Subscribing to Yellowstone gRPC events..." );
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// Create low-latency configuration
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let mut config = ClientConfig ::low_latency ();
// Enable performance monitoring, has performance overhead, disabled by default
config . enable_metrics = true ;
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let grpc = YellowstoneGrpc ::new_with_config (
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"https://solana-yellowstone-grpc.publicnode.com:443" . to_string (),
None ,
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config ,
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) ? ;
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let callback = create_event_callback ();
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// Configure protocols to monitor
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let protocols = vec! [
Protocol ::PumpFun ,
Protocol ::PumpSwap ,
Protocol ::Bonk ,
Protocol ::RaydiumCpmm ,
Protocol ::RaydiumClmm ,
];
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// Configure account filtering
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let account_include = vec! [
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PUMPFUN_PROGRAM_ID . to_string (), // Monitor pumpfun program ID
PUMPSWAP_PROGRAM_ID . to_string (), // Monitor pumpswap program ID
BONK_PROGRAM_ID . to_string (), // Monitor bonk program ID
RAYDIUM_CPMM_PROGRAM_ID . to_string (), // Monitor raydium_cpmm program ID
RAYDIUM_CLMM_PROGRAM_ID . to_string (), // Monitor raydium_clmm program ID
"xxxxxxxx" . to_string (), // Monitor xxxxx account
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];
let account_exclude = vec! [];
let account_required = vec! [];
println! ( "Starting to listen for events, press Ctrl+C to stop..." );
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println! ( "Monitoring programs: {:?} " , account_include );
println! ( "Starting subscription..." );
// Subscribe with automatic performance monitoring
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grpc . subscribe_events_v2 (
protocols ,
None ,
account_include ,
account_exclude ,
account_required ,
None ,
callback ,
)
. await ? ;
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Ok (())
}
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async fn test_shreds () -> Result < (), Box < dyn std ::error ::Error >> {
println! ( "Subscribing to ShredStream events..." );
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// Create low-latency configuration
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let mut config = ShredClientConfig ::low_latency ();
// Enable performance monitoring, has performance overhead, disabled by default
config . enable_metrics = true ;
let shred_stream =
ShredStreamGrpc ::new_with_config ( "http://127.0.0.1:10800" . to_string (), config ). await ? ;
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let callback = create_event_callback ();
let protocols = vec! [
Protocol ::PumpFun ,
Protocol ::PumpSwap ,
Protocol ::Bonk ,
Protocol ::RaydiumCpmm ,
Protocol ::RaydiumClmm ,
];
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println! ( "Listening for events, press Ctrl+C to stop..." );
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// Subscribe with automatic performance monitoring
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shred_stream
. shredstream_subscribe ( protocols , None , callback )
. await ? ;
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Ok (())
}
fn create_event_callback () -> impl Fn ( Box < dyn UnifiedEvent > ) {
| event : Box < dyn UnifiedEvent >| {
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println! ( "🎉 Event received! Type: {:?} , ID: {} " , event . event_type (), event . id ());
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match_event! ( event , {
BonkPoolCreateEvent => | e : BonkPoolCreateEvent | {
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// When using grpc, you can get block_time from each event
println! ( "block_time: {:?} , block_time_ms: {:?} " , e . metadata . block_time , e . metadata . block_time_ms );
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println! ( "BonkPoolCreateEvent: {:?} " , e . base_mint_param . symbol );
},
BonkTradeEvent => | e : BonkTradeEvent | {
println! ( "BonkTradeEvent: {:?} " , e );
},
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BonkMigrateToAmmEvent => | e : BonkMigrateToAmmEvent | {
println! ( "BonkMigrateToAmmEvent: {e:?} " );
},
BonkMigrateToCpswapEvent => | e : BonkMigrateToCpswapEvent | {
println! ( "BonkMigrateToCpswapEvent: {e:?} " );
},
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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 );
},
RaydiumCpmmSwapEvent => | e : RaydiumCpmmSwapEvent | {
println! ( "RaydiumCpmmSwapEvent: {:?} " , e );
},
RaydiumClmmSwapEvent => | e : RaydiumClmmSwapEvent | {
println! ( "RaydiumClmmSwapEvent: {:?} " , e );
},
RaydiumClmmSwapV2Event => | e : RaydiumClmmSwapV2Event | {
println! ( "RaydiumClmmSwapV2Event: {:?} " , e );
}
});
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}
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}
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```
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## Supported Protocols
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- **PumpFun**: Primary meme coin trading platform
- **PumpSwap**: PumpFun's swap protocol
- **Bonk**: Token launch platform (letsbonk.fun)
- **Raydium CPMM**: Raydium's Concentrated Pool Market Maker protocol
- **Raydium CLMM**: Raydium's Concentrated Liquidity Market Maker protocol
## Event Streaming Services
- **Yellowstone gRPC**: High-performance Solana event streaming
- **ShredStream**: Alternative event streaming protocol
## Architecture Features
### Unified Event Interface
- **UnifiedEvent Trait**: All protocol events implement a common interface
- **Protocol Enum**: Easy identification of event sources
- **Event Factory**: Automatic event parsing and categorization
### Event Parsing System
- **Protocol-specific Parsers**: Dedicated parsers for each supported protocol
- **Event Factory**: Centralized event creation and parsing
- **Extensible Design**: Easy to add new protocols and event types
### Streaming Infrastructure
- **Yellowstone gRPC Client**: Optimized for Solana event streaming
- **ShredStream Client**: Alternative streaming implementation
- **Async Processing**: Non-blocking event handling
## Project Structure
```
src/
├── common/ # Common functionality and types
├── protos/ # Protocol buffer definitions
├── streaming/ # Event streaming system
│ ├── event_parser/ # Event parsing system
│ │ ├── common/ # Common event parsing tools
│ │ ├── core/ # Core parsing traits and interfaces
│ │ ├── protocols/# Protocol-specific parsers
│ │ │ ├── bonk/ # Bonk event parsing
│ │ │ ├── pumpfun/ # PumpFun event parsing
│ │ │ ├── pumpswap/ # PumpSwap event parsing
│ │ │ ├── raydium_cpmm/ # Raydium CPMM event parsing
│ │ │ └── raydium_clmm/ # Raydium CLMM event parsing
│ │ └── factory.rs # Parser factory
│ ├── shred_stream.rs # ShredStream client
│ ├── yellowstone_grpc.rs # Yellowstone gRPC client
│ └── yellowstone_sub_system.rs # Yellowstone subsystem
├── lib.rs # Main library file
└── main.rs # Example program
```
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## License
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MIT License
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## Contact
- Project Repository: https://github.com/0xfnzero/solana-streamer
- Telegram Group: https://t.me/fnzero_group
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## Performance Considerations
1. **Connection Management** : Properly handle connection lifecycle and reconnection
2. **Event Filtering** : Use protocol filtering to reduce unnecessary event processing
3. **Memory Management** : Implement appropriate cleanup for long-running streams
4. **Error Handling** : Robust error handling for network issues and service interruptions
5. **Batch Processing Optimization** : Use batch processing to reduce callback overhead and improve throughput
6. **Performance Monitoring** : Enable performance monitoring to identify bottlenecks and optimization opportunities
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## Important Notes
1. **Network Stability** : Ensure stable network connection for continuous event streaming
2. **Rate Limiting** : Be aware of rate limits on public gRPC endpoints
3. **Error Recovery** : Implement proper error handling and reconnection logic
4. **Resource Management** : Monitor memory and CPU usage for long-running streams
5. **Compliance** : Ensure compliance with relevant laws and regulations
## Language Versions
- [English ](README.md )
- [中文 ](README_CN.md )