A methodology for designing countermeasures against current and future code injection attacks

Yves Younan, W. Joosen, F. Piessens
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引用次数: 25

Abstract

This paper proposes a methodology to develop countermeasures against code injection attacks, and validates the methodology by working out a specific countermeasure. This methodology is based on modeling the execution environment of a program. Such a model is then used to build countermeasures. The paper justifies the need for a more structured approach to protect programs against code injection attacks: we examine advanced techniques for injecting code into C and C++ programs and we discuss state-of-the-art (often ad hoc) approaches that typically protect singular memory locations. We validate our methodology by building countermeasures that prevent attacks by protecting a broad variety of memory locations that may be used by attackers to perform code injections. The paper evaluates our approach and discusses ongoing and future work.
设计对抗当前和未来代码注入攻击的对策的方法
本文提出了一种针对代码注入攻击制定对策的方法,并通过制定具体的对策来验证该方法。这种方法基于对程序的执行环境进行建模。这样的模型然后被用来建立对抗措施。本文证明了需要一种更结构化的方法来保护程序免受代码注入攻击:我们研究了将代码注入C和c++程序的高级技术,并讨论了通常保护单个内存位置的最先进(通常是特别的)方法。我们通过构建对策来验证我们的方法,通过保护攻击者可能用于执行代码注入的各种内存位置来防止攻击。本文评估了我们的方法,并讨论了正在进行和未来的工作。
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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