Linux Bugs: Life Cycle and Resolution Analysis

Mohamed F. Ahmed, S. Gokhale
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引用次数: 7

Abstract

Efforts to improve application reliability can fade if the reliability of the underlying operating system on which the application resides is not seriously considered. An important first step in improving the reliability of an operating system is to first gain insights into why and how the bugs originate, contributions of the different modules to the bugs, their distribution across severities, the different ways in which the bug may be resolved and the impact of bug severity on the resolution time. To gain this insight we conducted an extensive analysis of the publicly available bug data on the Linux kernel over a period of seven years. Our observations suggest that the Linux kernel may draw significant benefits from the continual reliability improvement efforts of its developers. These efforts, however, are disproportionately targeted towards popular configurations and hardware platforms, due to which the reliability of these configurations may be better than those that are not commonly used. Thus, a key finding of our study is that it may be prudent to restrict to using common configurations and platforms when using open source systems such as Linux in applications with stringent reliability expectations.
Linux bug:生命周期和解决方案分析
如果不认真考虑应用程序所在的底层操作系统的可靠性,那么提高应用程序可靠性的努力可能会消失。提高操作系统可靠性的一个重要的第一步是首先深入了解错误产生的原因和方式,不同模块对错误的贡献,它们在不同级别的分布,解决错误的不同方式以及错误严重程度对解决时间的影响。为了获得这一见解,我们在七年的时间里对Linux内核上公开可用的错误数据进行了广泛的分析。我们的观察表明,Linux内核可以从其开发人员不断改进可靠性的努力中获得显著的好处。然而,这些努力不成比例地针对流行的配置和硬件平台,因为这些配置的可靠性可能比那些不常用的配置要好。因此,我们研究的一个关键发现是,当在具有严格可靠性期望的应用程序中使用开源系统(如Linux)时,限制使用通用配置和平台可能是谨慎的。
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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