Optimizing horn solvers for network repair

Hossein Hojjat, Philipp Rümmer, Jedidiah McClurg, Pavol Cerný, Nate Foster
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引用次数: 22

Abstract

Automatic program repair modifies a faulty program to make it correct with respect to a specification. Previous approaches have typically been restricted to specific programming languages and a fixed set of syntactical mutation techniques — e.g., changing the conditions of if statements. We present a more general technique based on repairing sets of unsolvable Horn clauses. Working with Horn clauses enables repairing programs from many different source languages, but also introduces challenges, such as navigating the large space of possible repairs. We propose a conservative semantic repair technique that only removes incorrect behaviors and does not introduce new behaviors. Our proposed framework allows the user to request the best repairs — it constructs an optimization lattice representing the space of possible repairs, and uses a novel local search technique that exploits heuristics to avoid searching through sub-lattices with no feasible repairs. To illustrate the applicability of our approach, we apply it to problems in software-defined networking (SDN), and illustrate how it is able to help network operators fix buggy configurations by properly filtering undesired traffic. We show that interval and Boolean lattices are effective choices of optimization lattices in this domain, and we enable optimization objectives such as modifying the minimal number of switches. We have implemented a prototype repair tool, and present preliminary experimental results on several benchmarks using real topologies and realistic repair scenarios in data centers and congested networks.
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优化网络修复喇叭求解器
自动程序修复修改一个有缺陷的程序,使其符合规范。以前的方法通常局限于特定的编程语言和一组固定的语法突变技术——例如,改变if语句的条件。我们提出了一种基于修复不可解霍恩子句集的更通用的技术。使用Horn子句可以修复来自许多不同源语言的程序,但也引入了挑战,例如导航可能修复的大空间。我们提出了一种保守的语义修复技术,它只删除不正确的行为,而不引入新的行为。我们提出的框架允许用户请求最佳修复-它构建了一个表示可能修复空间的优化格,并使用了一种新颖的局部搜索技术,该技术利用启发式来避免在没有可行修复的子格中搜索。为了说明我们的方法的适用性,我们将其应用于软件定义网络(SDN)中的问题,并说明它如何能够通过适当过滤不需要的流量来帮助网络运营商修复错误的配置。我们证明了区间格和布尔格是该域优化格的有效选择,并实现了修改最小开关数等优化目标。我们已经实现了一个原型修复工具,并在数据中心和拥塞网络中使用真实拓扑和现实修复场景在几个基准测试中展示了初步实验结果。
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