Formal proof of security algorithms based on reachability reduction

Mohamed Bouziane, Sophie Gire, François Monin, Laurent Nana
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Abstract

This work is motivated by the rapid increase of the number of attacks in computer networks and software engineering. In this paper we study identity snowball attacks and formally prove the correctness of suggested solutions to this type of attack (solutions that are based on the graph reachability reduction) using a proof assistant. We propose a model of an attack graph that captures technical informations about the calculation of reachability of the graph. The model has been implemented with the proof assistant PVS 6.0 (Prototype Verification System). It makes it possible to prove algorithms of reachability reduction such as Sparsest_cut.
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基于可达约简的安全算法的形式化证明
这项工作的动机是计算机网络和软件工程中攻击数量的迅速增加。在本文中,我们研究了身份雪球攻击,并使用证明助手正式证明了这种攻击的建议解决方案(基于图可达性约简的解决方案)的正确性。我们提出了一个攻击图的模型,该模型捕获了关于图的可达性计算的技术信息。该模型已在验证助手PVS 6.0(原型验证系统)下实现。它使得证明诸如Sparsest_cut之类的可达性缩减算法成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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