CausalMesh: A Formally Verified Causal Cache for Stateful Serverless Computing
August 21, 2025 Β· Declared Dead Β· π Proceedings of the VLDB Endowment
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Authors
Haoran Zhang, Zihao Zhang, Shuai Mu, Sebastian Angel, Vincent Liu
arXiv ID
2508.15647
Category
cs.DC: Distributed Computing
Citations
5
Venue
Proceedings of the VLDB Endowment
Last Checked
5 months ago
Abstract
Stateful serverless workflows consist of multiple serverless functions that access state on a remote database. Developers sometimes add a cache layer between the serverless runtime and the database to improve I/O latency. However, in a serverless environment, functions in the same workflow may be scheduled to different nodes with different caches, which can cause non-intuitive anomalies. This paper presents CausalMesh, a novel approach to causally consistent caching in environments where a computation may migrate from one machine to another, such as in serverless computing. CausalMesh is the first cache system that supports coordination-free and abort-free read/write operations and read transactions when clients roam among multiple servers. CausalMesh also supports read-write transactional causal consistency in the presence of client roaming, but at the cost of abort-freedom. We have formally verified CausalMesh's protocol in Dafny, and our experimental evaluation shows that CausalMesh has lower latency and higher throughput than existing proposals
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