软件老化与返老还童的建模与分析

K. Trivedi, K. Vaidyanathan, K. Goseva-Popstojanova
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引用次数: 163

摘要

众所周知,软件系统会因暂时性错误而遭受中断。最近,“软件老化”现象,即软件系统的状态随着时间的推移而退化,已经被报道。为了消除这种现象,人们提出了一种主动的故障管理方法,称为“软件复兴”。这本质上涉及优雅地终止应用程序或系统,并在干净的内部状态下重新启动它。我们讨论了随机模型来评估运行软件系统中主动故障管理的有效性,并确定针对不同场景执行恢复的最佳时间。论文的后半部分讨论了基于度量的方法来检测软件老化并估计其对各种系统资源的影响。模型是使用在一段时间内从UNIX操作系统收集的工作负载和资源使用数据构建的。基于度量的模型旨在帮助开发由实际度量触发的软件复兴策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and analysis of software aging and rejuvenation
Software systems are known to suffer from outages due to transient errors. Recently, the phenomenon of "software aging", one in which the state of the software system degrades with time, has been reported. To counteract this phenomenon, a proactive approach of fault management, called "software rejuvenation", has been proposed. This essentially involves gracefully terminating an application or a system and restarting it in a clean internal state. We discuss stochastic models to evaluate the effectiveness of proactive fault management in operational software systems and determine optimal times to perform rejuvenation, for different scenarios. The latter part of the paper deals with measurement-based methodologies to detect software aging and estimate its effect on various system resources. Models are constructed using workload and resource usage data collected from the UNIX operating system over a period of time. The measurement-based models are intended to help development of strategies for software rejuvenation triggered by actual measurements.
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