通过自修改代码加强软件的自校验和

Jonathon T. Giffin, Mihai Christodorescu, L. Kruger
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引用次数: 86

摘要

最近的研究提出了一种自校验和方法,通过这种方法程序可以检测到对其代码的任何可能的恶意修改。Wurster等人开发了一种针对此类程序的攻击,使任何自校验和例程都无法检测到代码修改。这种攻击复制了程序文本页,并改变了硬件数据结构中的值,以便数据读取和指令从不同的内存页获取检索值。他们攻击的一个基础是它适用于各种商用硬件:他们可以仅使用恶意操作系统更改内存访问。在本文中,我们证明了它们的页面复制攻击可以被带有自修改代码的自校验和程序检测到。我们的检测是高效的,在三个处理器系列的实验中,每个校验和计算增加不到1微秒,并且对于使用昂贵的解释性仿真或专用硬件的攻击是健壮的
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Strengthening software self-checksumming via self-modifying code
Recent research has proposed self-checksumming as a method by which a program can detect any possibly malicious modification to its code. Wurster et al. developed an attack against such programs that renders code modifications undetectable to any self-checksumming routine. The attack replicated pages of program text and altered values in hardware data structures so that data reads and instruction fetches retrieved values from different memory pages. A cornerstone of their attack was its applicability to a variety of commodity hardware: they could alter memory accesses using only a malicious operating system. In this paper, we show that their page-replication attack can be detected by self-checksumming programs with self-modifying code. Our detection is efficient, adding less than 1 microsecond to each checksum computation in our experiments on three processor families, and is robust up to attacks using either costly interpretive emulation or specialized hardware
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