On the completeness of attack mutation algorithms

Shai Rubin, S. Jha, B. Miller
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引用次数: 2

Abstract

An attack mutation algorithm takes a known instance of an attack and transforms it into many distinct instances by repeatedly applying attack transformations. Such algorithms are widely used for testing intrusion detection systems. We investigate the notion of completeness of a mutation algorithm: its capability to generate all possible attack instances from a given set of attack transformations. We define the notion of a Phi-complete mutation algorithm. Given a set of transformations Phi, an algorithm is complete with respect to Phi, if it can generate every instance that the transformations in Phi derive. We show that if the rules in Phi are uniform and reversible then a Phi-complete algorithm exists. Intuitively speaking, uniform and reversible transformations mean that we can first exclusively apply transformations that simplify the attack, then exclusively apply transformations that complicate it, and still get all possible instances that are derived by the rules in Phi. Although uniformity and reversibility may appear severe restrictions, we show that common attack transformations are indeed uniform and reversible. Therefore, our Phi-complete algorithm can be incorporated into existing testing tools for intrusion detection systems. Furthermore, we show that a Phi-complete algorithm is useful, not only for testing purposes, but also for determining whether two packet traces are two different mutations of the same attack
攻击变异算法的完备性
攻击变异算法采用已知的攻击实例,通过反复应用攻击变换,将其转化为多个不同的攻击实例。这种算法被广泛用于入侵检测系统的测试。我们研究了突变算法的完备性的概念:它从一组给定的攻击变换中生成所有可能的攻击实例的能力。我们定义了一个phi完全突变算法的概念。给定一组变换,一个算法对于,是完备的,如果它能生成,中的变换派生的每一个实例。我们证明了如果规则是一致且可逆的,则存在一个完备算法。直观地说,一致可逆变换意味着我们可以首先只应用简化攻击的变换,然后只应用使攻击复杂化的变换,仍然可以得到所有可能的实例它们都是由规则导出的。尽管一致性和可逆性可能出现严格的限制,我们证明了常见的攻击转换确实是一致和可逆的。因此,我们的phi完备算法可以整合到现有的入侵检测系统的测试工具中。此外,我们证明了一个phi完备算法是有用的,不仅用于测试目的,而且还用于确定两个数据包轨迹是否是同一攻击的两个不同突变
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