On the Selection of Error Model(s) for OS Robustness Evaluation

A. Johansson, N. Suri, Brendan Murphy
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引用次数: 49

Abstract

The choice of error model used for robustness evaluation of operating systems (OSs) influences the evaluation run time, implementation complexity, as well as the evaluation precision. In order to find an "effective" error model for OS evaluation, this paper systematically compares the relative effectiveness of three prominent error models, namely bit-flips, data type errors and fuzzing errors using fault injection at the interface between device drivers OS. Bit-flips come with higher costs (time) than the other models, but allow for more detailed results. Fuzzing is cheaper to implement but is found to be less precise. A composite error model is presented where the low cost of fuzzing is combined with the higher level of details of bit-flips, resulting in high precision with moderate setup and execution costs.
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操作系统鲁棒性评价中误差模型的选择
用于操作系统鲁棒性评估的误差模型的选择会影响评估的运行时间、实现复杂度和评估精度。为了找到一个“有效”的操作系统评估错误模型,本文系统地比较了三种主要错误模型的相对有效性,即位翻转、数据类型错误和模糊错误,在设备驱动程序操作系统之间的接口使用故障注入。比特翻转的成本(时间)比其他模型更高,但可以获得更详细的结果。模糊测试的实施成本较低,但精度较低。提出了一种复合误差模型,该模型将低成本模糊与更高层次的比特翻转细节相结合,从而在适度的设置和执行成本下获得高精度。
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