Verus: A Practical Foundation for Systems Verification
Andrea Lattuada, Travis Hance, Jay Bosamiya, Matthias Brun, Chanhee Cho, Hayley LeBlanc, Pranav Srinivasan, Reto Achermann, Tej Chajed, Chris Hawblitzel, Jon Howell, Jacob R. Lorch
Abstract
Formal verification is a promising approach to eliminate bugs at compile time, before they ship. Indeed, our community has verified a wide variety of system software. However, much of this success has required heroic developer effort, relied on bespoke logics for individual domains, or sacrificed expressiveness for powerful proof automation.
Building on prior work on Verus, we aim to enable faster, cheaper verification of rich properties for realistic systems. We do so by integrating and optimizing the best choices from prior systems, tuning our design to overcome barriers encountered in those systems, and introducing novel techniques.
We evaluate Verus's effectiveness with a wide variety of case-study systems, including distributed systems, an OS page table, a library for NUMA-aware concurrent data structure replication, a crash-safe storage system, and a concurrent memory allocator, together comprising 6.1K lines of implementation and 31K lines of proof. Verus verifies code 3-61× faster and with less effort than the state of the art.
Our results suggest that Verus offers a platform for exploring the next frontiers in system-verification research. Because Verus builds on Rust, Verus is also positioned for wider use in production by developers who have already adopted Rust in the pursuit of more robust systems.
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Install the CLIlune papers fulltext 3f23887d-3683-4e06-9967-5b0a1e701dabCited by top-tier papers28
- Rex: Closing the language-verifier gap with safe and usable kernel extensionsJinghao Jia, Ruowen Qin, Milo Craun, Egor Lukiyanov et al.USENIX ATC 2025 · 11 citations
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- Foundational Multi-Modal Program VerifiersVladimir Gladshtein, George Pîrlea, Qiyuan Zhao, Vitaly Kurin et al.POPL 2026 · 4 citations
Builds on20
- Vale: Verifying High-Performance Cryptographic Assembly CodeBarry Bond, Chris Hawblitzel, Manos Kapritsos, K. Rustan M. Leino et al.USENIX Security 2017 · 147 citations
- EverCrypt: A Fast, Verified, Cross-Platform Cryptographic ProviderJonathan Protzenko, Bryan Parno, Aymeric Fromherz, Chris Hawblitzel et al.S&P 2020 · 114 citations
- Verus: Verifying Rust Programs using Linear Ghost TypesAndrea Lattuada, Travis Hance, Chanhee Cho, Matthias Brun et al.OOPSLA 2023 · 86 citations
- DistAI: Data-Driven Automated Invariant Learning for Distributed ProtocolsJianan Yao, Runzhou Tao, Ronghui Gu, Jason Nieh et al.OSDI 2021 · 76 citations
- Specification and verification in the field: Applying formal methods to BPF just-in-time compilers in the Linux kernelLuke Nelson, Jacob Van Geffen, Emina Torlak, Xi WangOSDI 2020 · 72 citations
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