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goclaw

A multi-agent AI gateway in Go, supporting 20+ LLM providers and 7 communication channels with multi-tenant is

freemium3.6k github stars

goclaw 소개

GoClaw is a production-ready AI gateway written in Go that enables orchestration of multiple AI agents across diverse LLM providers. It supports multi-tenancy via PostgreSQL and includes built-in security layers, native concurrency, and deployment as a single binary.

The tool integrates with major platforms including Discord, Telegram, and web-based interfaces via WebSocket, and offers language support for over 20 locales. It is designed for organizations needing scalable, secure agent coordination without vendor lock-in.

GoClaw positions itself as a reimplementation of OpenClaw in Go, emphasizing performance, safety, and operational simplicity for teams deploying AI agent workflows in production environments.

주요 기능

  • Supports 20+ LLM providers including OpenAI and Anthropic
  • Connects to 7 communication channels (e.g., Discord, Telegram, WebSocket)
  • Multi-tenant architecture backed by PostgreSQL
  • Five-layer security model with tenant isolation
  • Single-binary deployment for simplified operations
  • Native Go concurrency for high-throughput agent orchestration
  • Production-tested infrastructure with observability-ready design
  • Internationalized UI with support for 22 languages

장점 & 단점

장점

  • • Lightweight, performant implementation in Go ideal for scaling agent teams
  • • Strong focus on security and isolation makes it suitable for enterprise or regulated environments
  • • Open-source foundation with broad LLM and channel compatibility reduces integration overhead
  • • Multi-language interface lowers adoption barriers for global teams

단점

  • • No explicit open-source license stated, creating uncertainty around usage rights and modification
  • • Lack of documented pricing details for premium features limits evaluation of freemium boundaries
  • • No visible documentation on self-hosting requirements or operational prerequisites beyond 'single binary'