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The Vision of Autonomic Computing: Can LLMs Make It a Reality?

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arxiv 2407.14402 v1 pith:LW5QR2GY submitted 2024-07-19 cs.AI cs.CLcs.DCcs.MAcs.SE

classification cs.AIcs.CLcs.DCcs.MAcs.SE
keywords computingllmsmicroserviceautonomicsystemsachievingdecadesframework
verification ladder T0 review T1 audit T2 compute T3 formal
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The Vision of Autonomic Computing (ACV), proposed over two decades ago, envisions computing systems that self-manage akin to biological organisms, adapting seamlessly to changing environments. Despite decades of research, achieving ACV remains challenging due to the dynamic and complex nature of modern computing systems. Recent advancements in Large Language Models (LLMs) offer promising solutions to these challenges by leveraging their extensive knowledge, language understanding, and task automation capabilities. This paper explores the feasibility of realizing ACV through an LLM-based multi-agent framework for microservice management. We introduce a five-level taxonomy for autonomous service maintenance and present an online evaluation benchmark based on the Sock Shop microservice demo project to assess our framework's performance. Our findings demonstrate significant progress towards achieving Level 3 autonomy, highlighting the effectiveness of LLMs in detecting and resolving issues within microservice architectures. This study contributes to advancing autonomic computing by pioneering the integration of LLMs into microservice management frameworks, paving the way for more adaptive and self-managing computing systems. The code will be made available at https://aka.ms/ACV-LLM.

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Cited by 1 Pith paper

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  1. Enabling Autonomic Microservice Management through Self-Learning Agents

    cs.SE 2025-01 conditional novelty 5.0 of 10

    An LLM-agent system called ServiceOdyssey learns microservice management skills through curriculum-style self-exploration and a growing skill library, demonstrated on Sock Shop.

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