Challenges with Applying Performance Testing Methods for Systems Deployed on Shared Environments with Indeterminate Competing Workloads: Position Paper

A. Bondi
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引用次数: 3

Abstract

There is a tendency to move production environments from corporate-owned data centers to cloud-based services. Users who do not maintain a private production environment might not wish to maintain a private performance test environment either. The application of performance engineering methods to the development and delivery of software systems is complicated when the form and or parameters of the target deployment environment cannot be controlled or determined. The difficulty of diagnosing the causes of performance issues during testing or production may be increased by the presence of highly variable workloads on the target platform that compete with the application of interest for resources in ways that might be hard to determine. In particular, performance tests might be conducted in virtualized environments that introduce factors influencing customer-affecting metrics (such as transaction response time) and observed resource usage. Observed resource usage metrics in virtualized environments can have different meanings from those in a native environment. Virtual machines may suffer delays in execution. We explore factors that exacerbate these complications. We argue that these complexities reinforce the case for rigorously using software performance engineering methods rather than diminishing it. We also explore possible performance testing methods for mitigating the risk associated with these complexities.
在具有不确定竞争工作负载的共享环境中应用系统性能测试方法的挑战:立场文件
有一种趋势是将生产环境从企业拥有的数据中心转移到基于云的服务。不维护私有生产环境的用户可能也不希望维护私有性能测试环境。当目标部署环境的形式和/或参数无法控制或确定时,性能工程方法在软件系统开发和交付中的应用是复杂的。在测试或生产期间诊断性能问题原因的难度可能会增加,因为目标平台上存在高度可变的工作负载,这些工作负载以难以确定的方式与感兴趣的应用程序争夺资源。特别是,性能测试可能在引入影响客户的度量(如事务响应时间)和观察到的资源使用情况的因素的虚拟化环境中进行。在虚拟化环境中观察到的资源使用指标与在本地环境中观察到的资源使用指标具有不同的含义。虚拟机可能会出现执行延迟。我们探讨加剧这些并发症的因素。我们认为,这些复杂性加强了严格使用软件性能工程方法的理由,而不是削弱它。我们还探讨了可能的性能测试方法,以减轻与这些复杂性相关的风险。
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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