DELFIM: error detection by thin memory protection

J. Cunha, J. G. Silva
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Abstract

Memory protection has been widely recognized as an effective concurrent error detection method. Some of the studies made show that its effectiveness changes as the percentage of unused memory grows, since the probability of a wrong address falling on the unused zone also grows. In this paper, we follow that hint, and try to determine how better does the detection capability of protected memory get, when the protection boundaries are dynamically changed to encompass just the code of the function being executed. We implemented this method on a VME standard board, monitoring a commercial MC68000-based system. The system was tested by means of physical injection of about 25000 faults. Experimental results revealed that this mechanism can typically detect more than 80% of the faults, improving in about 5% the results from the traditional mechanisms. We also verified that only around 30% of the undetected faults induced a system failure.
DELFIM:通过瘦内存保护进行错误检测
内存保护作为一种有效的并发错误检测方法已被广泛认可。一些研究表明,它的有效性随着未使用内存的百分比的增加而变化,因为错误地址落在未使用区域的概率也在增加。在本文中,我们遵循这个提示,并尝试确定当动态更改保护边界以仅包含正在执行的函数的代码时,受保护内存的检测能力有多好。我们在一个VME标准板上实现了这种方法,用于监控基于mc68000的商用系统。采用物理注入的方法对系统进行了约25000个故障的测试。实验结果表明,该检测机构的故障检出率达到80%以上,比传统检测机构的检测结果提高了5%左右。我们还证实,只有大约30%未被检测到的故障导致了系统故障。
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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