三种故障注入技术对Linux系统造成的错误的实验分析

T. Jarboui, J. Arlat, Y. Crouzet, K. Kanoun
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引用次数: 37

摘要

本文报道的实验研究的主要目标是研究不同的故障注入技术在多大程度上导致相似的后果(错误和失败)。我们用来进行调查的目标系统是Linux内核,因为它提供了一个具有代表性的操作系统。由于其开源状态,它具有完全的可控性和可观察性。考虑了三种软件实现的故障注入技术,即:i)向内核调用的参数提供无效值,ii)内核调用的参数损坏,以及iii)内核内部函数的输入参数损坏。用于实验的工作量是量身定制的,以选择性地激活每个功能组件。观察结果包括典型的内核故障模式(例如,异常和内核挂起)以及对报告的错误代码的详细分析。
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Experimental analysis of the errors induced into Linux by three fault injection techniques
The main goal of the experimental stud), reported in this paper is to investigate to what extent distinct fault injection techniques lead to similar consequences (errors and failures). The target system we are using to carry out our investigation is the Linux kernel as it provides a representative operating system. It is featuring full controllability and observability thanks to its open source status. Three types of software-implemented fault injection techniques are considered, namely: i) provision of invalid values to the parameters of the kernel calls, ii) corruption of the parameters of the kernel calls, and iii) corruption of the input parameters of the internal functions of the kernel. The workload being used for the experiments is tailored to activate selectively each functional component. The observations encompass typical kernel failure modes (e.g., exceptions and kernel hangs) as well as a detailed analysis of the reported error codes.
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