QuickSilver: A Modeling and Parameterized Verification Framework for Systems with Distributed Agreement (Extended Version)
April 09, 2020 Β· Declared Dead Β· π Proc. ACM Program. Lang.
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Authors
Nouraldin Jaber, Christopher Wagner, Swen Jacobs, Milind Kulkarni, Roopsha Samanta
arXiv ID
2004.04613
Category
cs.PL: Programming Languages
Cross-listed
cs.DC
Citations
10
Venue
Proc. ACM Program. Lang.
Last Checked
3 months ago
Abstract
The last decade has sparked several valiant efforts in deductive verification of distributed agreement protocols such as consensus and leader election. Oddly, there have been far fewer verification efforts that go beyond the core protocols and target applications that are built on top of agreement protocols. This is unfortunate, as agreement-based distributed services such as data stores, locks, and ledgers are ubiquitous and potentially permit modular, scalable verification approaches that mimic their modular design. We address this need for verification of distributed agreement-based systems through our novel modeling and verification framework, QuickSilver, that is not only modular, but also fully automated. The key enabling feature of QuickSilver is our encoding of abstractions of verified agreement protocols that facilitates modular, decidable, and scalable automated verification. We demonstrate the potential of QuickSilver by modeling and efficiently verifying a series of tricky case studies, adapted from real-world applications, such as a data store, a lock service, a surveillance system, a pathfinding algorithm for mobile robots, and more.
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