破解有状态的坚果:使用松鼠证明助手的有状态安全协议的计算证明

David Baelde, S. Delaune, Adrien Koutsos, Solène Moreau
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引用次数: 2

摘要

Bana和Comon提出了一种逻辑方法来证明计算模型中的协议,他们称之为计算完全符号攻击者(CCSA)。证明助手Squirrel实现了一种验证技术,该技术详细阐述了这种方法,构建在CCSA基本逻辑之上的元逻辑上。在本文中,我们证明了这个元逻辑可以自然地扩展到处理具有可变状态(密钥更新,计数器等)的协议,并且我们扩展了Squirrel的证明系统,使其能够表达这些协议有时需要的复杂证明参数。我们的理论贡献已经在Squirrel中实现,并在许多案例研究中得到验证,包括YubiKey和YubiHSM协议的证明。
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Cracking the Stateful Nut: Computational Proofs of Stateful Security Protocols using the Squirrel Proof Assistant
Bana and Comon have proposed a logical approach to proving protocols in the computational model, which they call the Computationally Complete Symbolic Attacker (CCSA). The proof assistant Squirrel implements a verification technique that elaborates on this approach, building on a meta-logic over the CCSA base logic. In this paper, we show that this meta-logic can naturally be extended to handle protocols with mutable states (key updates, counters, etc.) and we extend Squirrel'S proof system to be able to express the complex proof arguments that are sometimes required for these protocols. Our theoretical contributions have been implemented in Squirrel and validated on a number of case studies, including a proof of the YubiKey and YubiHSM protocols.
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