302 lines
9.9 KiB
Markdown
302 lines
9.9 KiB
Markdown
# MEV Bot Project - Claude Code Configuration
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This file contains comprehensive Claude Code configuration and context information for the MEV Bot project.
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**Note:** For Claude-specific CLI configuration, commands, and development guidelines, please refer to the [.claude/](.claude/) directory which contains:
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- [.claude/CLAUDE.md](.claude/CLAUDE.md) - Complete Claude Code CLI configuration
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- [.claude/commands/](.claude/commands/) - Slash commands for Claude Code
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- [.claude/scripts/](.claude/scripts/) - Scripts for Claude Code development workflow
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## 🚀 Quick Start Commands
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### Essential Build & Test Commands
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```bash
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# Build the MEV bot binary
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make build
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# Run tests
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make test
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# Start development server with hot reload
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./scripts/run.sh
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# Build and run with logging
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./scripts/build.sh && ./mev-bot start
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# Check for Go modules issues
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go mod tidy && go mod verify
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# Run linter
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golangci-lint run
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# Run security analysis
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gosec ./...
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```
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### Development Workflow Commands
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```bash
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# Setup development environment
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export ARBITRUM_RPC_ENDPOINT="wss://arbitrum-mainnet.core.chainstack.com/f69d14406bc00700da9b936504e1a870"
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export ARBITRUM_WS_ENDPOINT="wss://arbitrum-mainnet.core.chainstack.com/f69d14406bc00700da9b936504e1a870"
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export METRICS_ENABLED="false"
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# Run with timeout for testing
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timeout 30 ./mev-bot start
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# Debug with verbose logging
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LOG_LEVEL=debug ./mev-bot start
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# Profile performance
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go tool pprof http://localhost:6060/debug/pprof/profile
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```
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## Project Overview
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This is an MEV (Maximal Extractable Value) bot written in Go 1.24+ that monitors the Arbitrum sequencer for potential swap opportunities. When a potential swap is detected, the bot scans the market to determine if the swap is large enough to move the price using off-chain methods.
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## Project Structure
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- `cmd/` - Main applications (specifically `cmd/mev-bot/main.go`)
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- `internal/` - Private application and library code
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- `internal/config` - Configuration management
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- `internal/logger` - Logging functionality
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- `internal/ratelimit` - Rate limiting implementations
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- `internal/utils` - Utility functions
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- `pkg/` - Library code that can be used by external projects
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- `pkg/events` - Event processing system
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- `pkg/market` - Market data handling
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- `pkg/monitor` - Arbitrum sequencer monitoring
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- `pkg/scanner` - Market scanning functionality
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- `pkg/test` - Test utilities and helpers
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- `pkg/uniswap` - Uniswap V3 specific implementations
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- `config/` - Configuration files
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- `@prompts/` - AI prompts for development assistance
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- `docs/` - Documentation
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- `scripts/` - Scripts for building, testing, and deployment
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- `.claude/` - Claude Code specific configuration and tools
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## Key Integration Points
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- Refer to @prompts/COMMON.md for core requirements and integration points
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- Follow the modular architecture with independent components
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- Use the universal message bus for inter-module communication
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- Adhere to the standards defined in the project plan
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## 📋 Development Guidelines & Code Style
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### Go Best Practices
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- **Error Handling**: Always wrap errors with context using `fmt.Errorf("operation failed: %w", err)`
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- **Concurrency**: Use worker pools for processing large datasets (see `pkg/market/pipeline.go`)
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- **Interfaces**: Keep interfaces small and focused (1-3 methods maximum)
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- **Testing**: Aim for >90% test coverage with table-driven tests
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- **Logging**: Use structured logging with `slog` package
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- **Performance**: Profile regularly with `go tool pprof`
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### Code Organization Rules
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- **File Size**: Keep files under 500 lines (split larger files into logical components)
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- **Package Structure**: Follow Go standard layout (cmd/, internal/, pkg/)
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- **Naming**: Use Go naming conventions (PascalCase for exports, camelCase for private)
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- **Documentation**: Document all exported functions with examples
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- **Constants**: Group related constants in blocks with `iota` when appropriate
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### Required Checks Before Commit
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```bash
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# Run all checks before committing
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make test && make lint && go mod tidy
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# Security scan
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gosec ./...
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# Dependency vulnerability check
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go list -json -m all | nancy sleuth
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```
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## System Architecture
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The MEV Bot follows a modular architecture with clearly defined components that communicate through well-defined interfaces.
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### Core Components and Their Responsibilities
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1. **Arbitrum Monitor (`pkg/monitor`)**
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- Monitors the Arbitrum sequencer for new blocks
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- Extracts transactions from blocks
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- Applies rate limiting to RPC calls
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- Implements fallback mechanisms for RPC endpoints
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2. **Event Parser (`pkg/events`)**
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- Identifies DEX interactions in transactions
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- Parses transaction data for relevant information
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- Supports multiple DEX protocols (Uniswap V2/V3, SushiSwap)
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- Extracts swap amounts, pool addresses, and pricing data
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3. **Market Pipeline (`pkg/market`)**
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- Implements a multi-stage processing pipeline
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- Uses worker pools for concurrent processing
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- Handles transaction decoding and event parsing
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- Performs market analysis using Uniswap V3 math
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- Detects arbitrage opportunities
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4. **Market Scanner (`pkg/scanner`)**
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- Analyzes market events for arbitrage opportunities
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- Uses concurrent worker pools for processing
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- Implements caching for pool data
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- Calculates price impact and profitability
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5. **Uniswap Pricing (`pkg/uniswap`)**
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- Implements Uniswap V3 pricing calculations
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- Converts between sqrtPriceX96, ticks, and prices
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- Calculates price impact of swaps
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- Handles precision with uint256 arithmetic
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### Communication Patterns
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- Pipeline pattern for multi-stage processing
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- Worker pool pattern for concurrent execution
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- Message passing through Go channels
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- Shared memory access with proper synchronization
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## Claude's Primary Focus Areas
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As Claude, you're particularly skilled at:
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1. **Code Architecture and Design Patterns**
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- Implementing clean, maintainable architectures
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- Applying appropriate design patterns (pipeline, worker pool, etc.)
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- Creating well-structured interfaces between components
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- Ensuring loose coupling and high cohesion
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2. **System Integration and APIs**
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- Designing clear APIs between components
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- Implementing proper data flow between modules
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- Creating robust configuration management
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- Building error handling and recovery mechanisms
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3. **Writing Clear Documentation**
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- Documenting complex algorithms and mathematical calculations
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- Creating clear API documentation
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- Writing architectural decision records
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- Producing user guides and examples
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4. **Implementing Robust Error Handling**
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- Using Go's error wrapping with context
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- Implementing retry mechanisms with exponential backoff
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- Handling timeouts appropriately
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- Creating comprehensive logging strategies
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5. **Creating Maintainable and Scalable Code Structures**
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- Organizing code for easy testing and maintenance
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- Implementing performance monitoring and metrics
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- Designing for horizontal scalability
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- Ensuring code follows established patterns and conventions
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When working on this project, please focus on these areas where your strengths will be most beneficial.
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## 🛠 Claude Code Optimization Settings
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### Workflow Preferences
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- **Always commit changes**: Use `git commit -am "descriptive message"` after significant changes
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- **Branch naming**: Use hyphens (`feat-add-new-parser`, `fix-memory-leak`)
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- **Context management**: Use `/compact` to manage long conversations
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- **Parallel processing**: Leverage Go's concurrency patterns extensively
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### File Organization Preferences
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- **Never save temporary files to root**: Use `/tmp/` or `internal/temp/`
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- **Log files**: Always save to `logs/` directory
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- **Test files**: Place alongside source files with `_test.go` suffix
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- **Documentation**: Keep in `docs/` with clear naming
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### Performance Monitoring
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```bash
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# Enable metrics endpoint
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export METRICS_ENABLED="true"
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export METRICS_PORT="9090"
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# Monitor memory usage
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go tool pprof http://localhost:9090/debug/pprof/heap
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# Monitor CPU usage
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go tool pprof http://localhost:9090/debug/pprof/profile?seconds=30
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# Monitor goroutines
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go tool pprof http://localhost:9090/debug/pprof/goroutine
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```
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## 🔧 Environment Configuration
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### Required Environment Variables
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```bash
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# Arbitrum RPC Configuration
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export ARBITRUM_RPC_ENDPOINT="wss://arbitrum-mainnet.core.chainstack.com/f69d14406bc00700da9b936504e1a870"
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export ARBITRUM_WS_ENDPOINT="wss://arbitrum-mainnet.core.chainstack.com/f69d14406bc00700da9b936504e1a870"
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# Application Configuration
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export LOG_LEVEL="info"
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export METRICS_ENABLED="false"
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export METRICS_PORT="9090"
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# Development Configuration
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export GO_ENV="development"
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export DEBUG="true"
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```
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### Optional Environment Variables
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```bash
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# Performance Tuning
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export GOMAXPROCS=4
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export GOGC=100
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# Logging Configuration
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export LOG_FORMAT="json"
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export LOG_OUTPUT="logs/mev-bot.log"
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# Rate Limiting
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export MAX_RPS=100
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export RATE_LIMIT_BURST=200
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```
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## 📝 Commit Message Conventions
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### Format
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```
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type(scope): brief description
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- Detailed explanation of changes
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- Why the change was needed
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- Any breaking changes or migration notes
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🤖 Generated with [Claude Code](https://claude.ai/code)
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Co-Authored-By: Claude <noreply@anthropic.com>
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```
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### Types
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- `feat`: New feature implementation
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- `fix`: Bug fix
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- `perf`: Performance improvement
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- `refactor`: Code restructuring without feature changes
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- `test`: Adding or updating tests
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- `docs`: Documentation updates
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- `build`: Build system or dependency changes
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- `ci`: CI/CD pipeline changes
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## 🚨 Security Guidelines
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### Never Commit
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- Private keys or wallet seeds
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- API keys or secrets
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- RPC endpoints with authentication
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- Personal configuration files
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### Always Validate
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- Input parameters for all functions
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- RPC responses before processing
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- Mathematical calculations for overflow
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- Memory allocations for bounds
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### Security Commands
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```bash
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# Scan for secrets
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git-secrets --scan
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# Security audit
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gosec ./...
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# Dependency vulnerabilities
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go list -json -m all | nancy sleuth
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# Check for hardcoded credentials
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grep -r "password\|secret\|key" --exclude-dir=.git .
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``` |