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FSR: Formal Analysis and Implementation Toolkit for Safe Interdomain Routing

机译:FSR:用于安全域间路由的形式分析和实施工具包

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Interdomain routing stitches the disparate parts of the Internet together, making protocol stability a critical issue to both researchers and practitioners. Yet, researchers create safety proofs and counterexamples by hand and build simulators and prototypes to explore protocol dynamics. Similarly, network operators analyze their router configurations manually or using homegrown tools. In this paper, we present a comprehensive toolkit for analyzing and implementing routing policies, ranging from high-level guidelines to specific router configurations. Our Formally Safe Routing (FSR) toolkit performs all of these functions from the same algebraic representation of routing policy. We show that routing algebra has a natural translation to both integer constraints (to perform safety analysis with SMT solvers) and declarative programs (to generate distributed implementations). Our extensive experiments with realistic topologies and policies show how FSR can detect problems in an autonomous system's (AS's) iBGP configuration, prove sufficient conditions for Border Gateway Protocol (BGP) safety, and empirically evaluate convergence time.
机译:域间路由将Internet的各个不同部分缝合在一起,从而使协议稳定性成为研究人员和从业人员的关键问题。但是,研究人员可以手动创建安全证明和反例,并构建模拟器和原型来探索协议动态。同样,网络运营商可以手动或使用本地工具分析其路由器配置。在本文中,我们提供了一个全面的工具包,用于分析和实施路由策略,从高级指南到特定的路由器配置。我们的形式安全路由(FSR)工具包从路由策略的相同代数表示形式执行所有这些功能。我们证明路由代数对整数约束(使用SMT求解器执行安全分析)和声明性程序(生成分布式实现)都有自然的转换。我们对现实的拓扑和策略进行的广泛实验表明,FSR如何能够检测自治系统(AS)的iBGP配置中的问题,证明边界网关协议(BGP)安全的充分条件,并根据经验评估收敛时间。

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