DsVD: An Effective Low-Overhead Dynamic Software Vulnerability Discoverer

Zhuo Wang, Zhushou Tang, Kan Zhou, Ruoyu Zhang, Zhengwei Qi, Haibing Guan
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引用次数: 2

Abstract

Dynamic taint analysis based software vulnerability and malware detection is an effective method to detect a wide range of vulnerabilities. Unfortunately, existing systems suffer from requirement of source code, high overhead or shortage of discovery rules, which limit their usage. This paper proposes a low-overhead vulnerability discovery system called DsVD (Dynamic Software Vulnerabilities Discoverer). DsVD works on X86 executables and does not need any hardware change. A new taint state called controlled-taint is introduced to detect more types of vulnerabilities. Our experiments show that DsVD can effectively detect various software vulnerabilities. DsVD incurs very low overhead, only 3.1 times on average forSPECINT2006 benchmarks. With some optimizations such as Irrelevant API Filter and Basic Block Handling, it can reduce runtime overhead by a factor of 4-11 times.
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DsVD:一个有效的低开销动态软件漏洞发现器
基于动态污点分析的软件漏洞和恶意软件检测是检测各种漏洞的有效方法。不幸的是,现有系统受到源代码需求、高开销或缺乏发现规则的困扰,这限制了它们的使用。本文提出了一种低开销的漏洞发现系统DsVD(动态软件漏洞发现器)。DsVD在X86可执行文件上工作,不需要任何硬件更改。引入了一种称为受控污染的新污染状态来检测更多类型的漏洞。我们的实验表明,DsVD可以有效地检测出各种软件漏洞。DsVD产生的开销非常低,specint2006基准测试的平均开销仅为3.1倍。通过一些优化,如不相关API过滤器和基本块处理,它可以将运行时开销减少4-11倍。
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