Careful-Packing: A Practical and Scalable Anti-Tampering Software Protection enforced by Trusted Computing

Flavio Toffalini, Martín Ochoa, Jun Sun, Jianying Zhou
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引用次数: 5

Abstract

Ensuring the correct behaviour of an application is a critical security issue. One of the most popular ways to modify the intended behaviour of a program is to tamper its binary. Several solutions have been proposed to solve this problem, including trusted computing and anti-tampering techniques. Both can substantially increase security, and yet both have limitations. In this work, we propose an approach which combines trusted computing technologies and anti-tampering techniques, and that synergistically overcomes some of their inherent limitations. In our approach critical software regions are protected by leveraging on trusted computing technologies and cryptographic packing, without introducing additional software layers. To illustrate our approach we implemented a secure monitor which collects user activities, such as keyboard and mouse events for insider attack detection. We show how our solution provides a strong anti-tampering guarantee with a low overhead: around 10 lines of code added to the entire application, an average execution time overhead of 5.7% and only 300KB of memory allocated for the trusted module.
小心包装:一种实用且可扩展的可信计算反篡改软件保护
确保应用程序的正确行为是一个关键的安全问题。修改程序预期行为的最常用方法之一是篡改其二进制文件。已经提出了几种解决方案来解决这个问题,包括可信计算和反篡改技术。两者都可以大大提高安全性,但都有局限性。在这项工作中,我们提出了一种结合可信计算技术和防篡改技术的方法,并协同克服了它们的一些固有局限性。在我们的方法中,通过利用可信计算技术和加密封装来保护关键的软件区域,而不引入额外的软件层。为了说明我们的方法,我们实现了一个安全监视器,它收集用户活动,例如用于内部攻击检测的键盘和鼠标事件。我们展示了我们的解决方案如何以低开销提供强大的防篡改保证:在整个应用程序中添加了大约10行代码,平均执行时间开销为5.7%,并且仅为可信模块分配了300KB内存。
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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