Skip to main content

🚀 Epsilla AgenticMesh

Epsilla AgenticMesh is an open-source governance and orchestration framework for multi-agent and micro-agent, inspired by service mesh architecture, designed to help you build, scale, and manage powerful AI agent systems with unified communication, policy control, and observability.


🌟 Key Features

✅ Communication Proxy
Seamlessly route messages between agents using multiple protocols (MCP, HTTP, gRPC), with built-in retries, timeouts, and prioritization.

✅ Policy & Configuration Control
Define and enforce access, rate limits, circuit breaking, and task routing policies from a central control plane.

✅ Observability
Gain full visibility into multi-agent interactions with tracing, metrics, dashboards, and alerting.

✅ Scalable & Resilient
Support for load balancing, auto-scaling, failover routing, and dynamic agent registration.

✅ Security & Identity
Mutual authentication, encrypted messaging, and fine-grained role-based access across agent systems.

✅ Flexible Deployment
Run as sidecars, centralized proxies, or lightweight agents — on Kubernetes, cloud, or on-prem.


📐 Architecture

AgenticMesh Architecture

Core components:

  • Communication Proxy: Message routing & protocol handling.
  • Policy & Configuration: Define control rules & dynamic updates.
  • Observability Module: Collect, visualize, and monitor agent system performance.

🔧 Getting Started

1️⃣ Install

git clone https://github.com/epsilla-cloud/AgenticMesh.git
cd AgenticMesh
poetry install

2️⃣ Run Example Demo

poetry run python3 examples/demo.py

3️⃣ Launch Dashboard (Optional)

streamlit run dashboard/app.py

💡 Example Use Cases

  • Multi-agent RAG systems for document analysis
  • Autonomous multi-agent negotiation systems
  • Large-scale agent-based simulation platforms

🔍 Roadmap

  • ✅ Initial open-source release
  • 🔄 Integration with AutoGen, LangGraph, CrewAI
  • 🔐 Federated cross-org agent mesh support
  • 🛠️ Visual orchestration editor for human-in-the-loop control
  • 🤖 AI-driven policy tuning & optimization

🤝 Contributing

We welcome contributions! Please check out the CONTRIBUTING.md for details on how to get started.


📄 License

This project is licensed under the Apache 2.0 License — see the LICENSE file for details.


🔗 Links


Note: AgenticMesh is a reference implementation and experimental platform by the Epsilla team to explore next-generation agent governance patterns. We are excited to evolve this together with the open-source community!


📥 CONTRIBUTING.md

Thank you for considering contributing to AgenticMesh! Here’s how you can help:

📦 Reporting Issues

  • Use the GitHub Issues tab to report bugs or request features.

🔨 Submitting Pull Requests

  • Fork the repository.
  • Create a feature branch.
  • Submit a clear pull request with a description of your changes.

🛠 Development Setup

  • Clone the repo and install dependencies.
  • Follow the coding style and run tests before submitting PRs.

📜 LICENSE

Apache License 2.0

Copyright (c) 2025 Epsilla

Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. You may obtain a copy of the License at

    http://www.apache.org/licenses/LICENSE-2.0

Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.

🧪 Example Demo Script (examples/demo.py)

# examples/demo.py

from agenticmesh import AgenticMesh, Agent

# Define example agents
agent_a = Agent(name="AgentA", capabilities=["task1", "task2"])
agent_b = Agent(name="AgentB", capabilities=["task3"])

# Initialize mesh
mesh = AgenticMesh()
mesh.register(agent_a)
mesh.register(agent_b)

# Simulate a task
result = mesh.send_task(from_agent="AgentA", to_agent="AgentB", task="task3", payload={"data": "demo"})
print("Task result:", result)

Release files for pyagentmesh 0.0.9

For a detailed explanation of source distributions (sdists) and built distributions (wheels), please see the package formats documentation.

Source distribution (sdist)

Source distribution for pyagentmesh 0.0.9
File Size Uploaded
pyagentmesh-0.0.9.tar.gz 6.6 kB Details

Built distribution (wheel)

Table of built distributions (wheels) for pyagentmesh 0.0.9
File Interpreter ABI Platform
pyagentmesh-0.0.9-py3-none-any.whl Python 3 none any Details

Total release size: 14.1 kB

Release files / pyagentmesh-0.0.9.tar.gz

Download URL pyagentmesh-0.0.9.tar.gz
Size 6.6 kB
Tags Source
SHA-256 checksum
How to use checksums
33fa9b713f40f7a7e142a96818765665d2798a3bf0afaea073bc800ae667a051
BLAKE2b-256 checksum
How to use checksums
d8f70bed523a2b5142fa10079c8b051231fe0c628adfd4ad2a250c4f60666ed5
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
No
Uploaded via twine/6.1.0 CPython/3.12.9

Release files / pyagentmesh-0.0.9-py3-none-any.whl

Download URL pyagentmesh-0.0.9-py3-none-any.whl
Size 7.5 kB
Tags Python 3
SHA-256 checksum
How to use checksums
19dfb06f11043fc075a2e6856a228f316f4b5a90ca3622be8ad4780e71fbdbac
BLAKE2b-256 checksum
How to use checksums
3ce74725c86a956367e506cbc6125d5c524c6f1855e17abd17eba98855bf90ce
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
No
Uploaded via twine/6.1.0 CPython/3.12.9

Release history Release notifications | RSS feed

This release

0.0.9 This release

2 release files

0.0.8

2 release files

0.0.7

2 release files

0.0.6

2 release files

0.0.3

2 release files

0.0.2

2 release files

0.0.1

2 release files

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page