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Experimental Assessment of Cloud Software Dependability Using Fault Injection

机译:故障注入对云软件可靠性的实验评估

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In modern cloud software systems, the complexity arising from feature interaction, geographical distribution, security and configurability requirements increases the likelihood of faults. Additional influencing factors are the impact of different execution environments as well as human operation or configuration errors. Assuming that any non-trivial cloud software system contains faults, robustness testing is needed to ensure that such faults are discovered as early as possible, and that the overall service is resilient and fault tolerant. To this end, fault injection is a means for disrupting the software in ways that uncover bugs and test the fault tolerance mechanisms. In this paper, we discuss how to experimentally assess software dependability in two steps. First, a model of the software is constructed from different runtime observations and configuration information. Second, this model is used to orchestrate fault injection experiments with the running software system in order to quantify dependability attributes such as service availability. We propose the architecture of a fault injection service within the OpenStack project.
机译:在现代云软件系统中,功能交互,地理分布,安全性和可配置性要求引起的复杂性增加了发生故障的可能性。其他影响因素是不同执行环境以及人为操作或配置错误的影响。假设任何不平凡的云软件系统都包含故障,则需要进行健壮性测试,以确保尽早发现此类故障,并确保整个服务具有弹性和容错能力。为此,故障注入是一种通过发现漏洞并测试容错机制来破坏软件的方式。在本文中,我们讨论了如何分两步通过实验评估软件的可靠性。首先,从不同的运行时观察和配置信息构建软件模型。其次,此模型用于与正在运行的软件系统配合进行故障注入实验,以便量化可靠性属性(例如服务可用性)。我们提出了OpenStack项目中的故障注入服务的体系结构。

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