Failure Resilience for Device Drivers

J. Herder, H. Bos, Ben Gras, P. Homburg, A. Tanenbaum
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引用次数: 101

Abstract

Studies have shown that device drivers and extensions contain 3-7 times more bugs than other operating system code and thus are more likely to fail. Therefore, we present a failure-resilient operating system design that can recover from dead drivers and other critical components - primarily through monitoring and replacing malfunctioning components on the fly - transparent to applications and without user intervention. This paper focuses on the post-mortem recovery procedure. We explain the working of our defect detection mechanism, the policy-driven recovery procedure, and post-restart reintegration of the components. Furthermore, we discuss the concrete steps taken to recover from network, block device, and character device driver failures. Finally, we evaluate our design using performance measurements, software fault-injection experiments, and an analysis of the reengineering effort.
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设备驱动程序的故障恢复
研究表明,设备驱动程序和扩展包含的错误是其他操作系统代码的3-7倍,因此更有可能失败。因此,我们提出了一种故障弹性操作系统设计,可以从失效的驱动程序和其他关键组件中恢复-主要通过动态监控和替换故障组件-对应用程序透明且无需用户干预。这篇论文的重点是死后恢复程序。我们解释了缺陷检测机制的工作、策略驱动的恢复过程,以及组件重新启动后的整合。此外,我们还讨论了从网络、块设备和字符设备驱动程序故障中恢复所采取的具体步骤。最后,我们使用性能测量、软件故障注入实验和对再造工作的分析来评估我们的设计。
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