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Increasing System Availability with Local Recovery based on Fault Localization

机译:基于故障定位的本地恢复提高系统可用性

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摘要

Due to the fact that software systems cannot be tested exhaustively, software systems must cope with residual defects at run-time. Local recovery is an approach for recovering from errors, in which only the defective parts of the system are recovered while the other parts are kept operational. To be efficient, local recovery must be aware of which component is at fault. In this paper, we combine a fault localization technique (spectrum-based fault localization, SFL) with local recovery techniques to achieve fully autonomous fault detection, isolation, and recovery. A framework is used for decomposing the system into separate units that can be recovered in isolation, while SFL is used for monitoring the activities of these units and diagnose the faulty one whenever an error is detected. We have applied our approach to MPlayer, a large open-source software. We have observed that SFL can increase the system availability by 23.4% on average.
机译:由于不能对软件系统进行详尽的测试,因此软件系统必须在运行时应对残留的缺陷。本地恢复是一种从错误中恢复的方法,其中仅恢复系统中有缺陷的部分,而其他部分保持可操作状态。为了提高效率,本地恢复必须知道哪个组件有故障。在本文中,我们将故障定位技术(基于频谱的故障定位,SFL)与本地恢复技术相结合,以实现完全自主的故障检测,隔离和恢复。一种框架用于将系统分解为可以独立恢复的独立单元,而SFL用于监视这些单元的活动并在检测到错误时诊断出故障单元。我们已将我们的方法应用于大型开源软件MPlayer。我们已经观察到SFL可以平均提高系统可用性23.4%。

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