Diversified Process Replicæ for Defeating Memory Error Exploits

D. Bruschi, L. Cavallaro, A. Lanzi
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引用次数: 62

Abstract

An interpretation of the notion of software diversity is based on the concept of diversified process replicæ. We define pr as the replica of a process p which behaves identically to p but has some "structural" diversity from it. This makes possible to detect memory corruption attacks in a deterministic way. In our solution, p and pr differ in their address space which is properly diversified, thus defeating absolute and partial overwriting memory error exploits. We also give a characterization and a preliminary solution for shared memory management, one of the biggest practical issue introduced by this approach. Speculation on how to deal with synchronous signals delivery is faced as well. A user space proof-of-concept prototype has been implemented. Experimental results show a 68.93% throughput slowdown on a worst-case, while experiencing only a 1.20% slowdown on a best-case.
多样化的进程复制击败内存错误利用
软件多样性概念的一种解释是基于多样化过程复制的概念。我们将pr定义为进程p的副本,它的行为与p相同,但与p有一些“结构”差异。这使得以确定的方式检测内存损坏攻击成为可能。在我们的解决方案中,p和pr的地址空间是不同的,它们被适当地分散,从而克服了绝对和部分覆盖内存错误的利用。我们还给出了共享内存管理的特征和初步解决方案,这是该方法引入的最大的实际问题之一。关于如何处理同步信号传递的猜测也面临着。一个用户空间概念验证原型已经实现。实验结果表明,在最坏情况下吞吐量降低68.93%,而在最佳情况下仅降低1.20%。
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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