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Diagnosis of software failures using computational geometry

机译:使用计算几何诊断软件故障

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Complex software systems have become commonplace in modern organizations and are considered critical to their daily operations. They are expected to run on a diverse set of platforms while interoperating with a wide variety of other applications. Although there have been advances in the discipline of software engineering, software faults, and malicious attacks still regularly cause system downtime [1]. Downtime of critical applications can create additional work, cause delays, and lead to financial loss [2]. This paper presents a computational geometry technique to tackle the problem of timely failure diagnosis during the execution of a software application. Our approach to failure diagnosis involves collecting a set of software metrics and building a geometric enclosures corresponding to known classes of faults. The geometric enclosures are then used to partition the state space defined by the metrics
机译:复杂的软件系统已成为现代组织中的司空见惯,并且对其日常运营表示关键。它们预计将在各种平台上运行,同时互操作各种其他应用。虽然软件工程,软件故障和恶意攻击的学科已经有所进展,但仍然经常导致系统停机时间[1]。关键应用程序的停机可以创造额外的工作,导致延误,导致财务损失[2]。本文介绍了计算几何技术,以解决软件应用程序期间及时故障诊断问题。我们的失败诊断方法涉及收集一组软件指标并构建与已知类别的几何外壳。然后使用几何外壳来分区由度量标准定义的状态空间

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