在分布式系统中为代码混淆制造不透明的谓词

A. Majumdar, C. Thomborson
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引用次数: 43

摘要

代码混淆是一种相对较新的软件保护技术,它的工作原理是阻止恶意软件用户的反向工程企图。混淆的目的是使代码中嵌入的逻辑无法被对手使用的自动化程序分析工具所理解。不透明谓词充当了混淆嵌入代码中的控制流逻辑的工具。在这篇论文中,我们提出了一种新的方法,将分布式全局状态检测的开放问题与众所周知的硬组合问题相结合,以制造不透明的谓词,从而解决了在分布式计算环境中执行的进程的控制流代码混淆问题。我们将这类新的不透明谓词命名为分布式不透明谓词。我们用一个插图来演示我们的方法,并对使用分布式不透明谓词混淆的代码进行了广泛的安全性分析。我们展示了我们的不透明谓词类能够承受大多数已知形式的自动静态分析攻击和可能由对手发起的受限类型的动态分析攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Manufacturing opaque predicates in distributed systems for code obfuscation
Code obfuscation is a relatively new technique of software protection and it works by deterring reverse engineering attempts by malicious users of software. The objective of obfuscation is to make the logic embedded in code incomprehensible to automated program analysis tools used by adversaries. Opaque predicates act as tool for obfuscating control flow logic embedded within code. In this position paper, we address the problem of control-flow code obfuscation of processes executing in distributed computing environments by proposing a novel method of combining the open problems of distributed global state detection with a well-known hard combinatorial problem to manufacture opaque predicates. We name this class of new opaque predicates as distributed opaque predicates. We demonstrate our approach with an illustration and provide an extensive security analysis of code obfuscated with distributed opaque predicates. We show that our class of opaque predicates is capable of withstanding most known forms of automated static analysis attacks and a restricted class of dynamic analysis attack that could be mounted by adversaries.
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