对容器编排框架进行基准测试的系统方法

Martin Straesser, Jonas Mathiasch, A. Bauer, Samuel Kounev
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引用次数: 3

摘要

容器编排框架在现代云计算范式(如云原生计算或无服务器计算)中发挥着关键作用。它们会显著影响服务部署的质量和成本,因为它们管理许多性能关键型任务,如容器供应、调度、扩展和网络。因此,对容器编排框架进行全面的性能评估是必要的。然而,到目前为止,还没有一种基准测试方法能够涵盖在这些平台中实现的许多不同任务,并支持评估不同的技术堆栈。在本文中,我们提出了一种能够对容器编排器进行基准测试的系统方法。基于容器编排的定义,我们定义了这些平台的核心需求和基准测试范围。然后将每个需求与度量标准和度量方法联系起来,并提出基准体系结构。通过COFFEE,我们引入了一个基准测试工具,它支持为容器编排框架定义复杂的测试活动。我们通过Kubernetes和Nomad框架在自托管环境和谷歌云平台上的案例研究来展示我们方法的潜力。所介绍的案例研究侧重于容器启动时间、崩溃恢复、滚动更新等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Systematic Approach for Benchmarking of Container Orchestration Frameworks
Container orchestration frameworks play a critical role in modern cloud computing paradigms such as cloud-native or serverless computing. They significantly impact the quality and cost of service deployment as they manage many performance-critical tasks such as container provisioning, scheduling, scaling, and networking. Consequently, a comprehensive performance assessment of container orchestration frameworks is essential. However, until now, there is no benchmarking approach that covers the many different tasks implemented in such platforms and supports evaluating different technology stacks. In this paper, we present a systematic approach that enables benchmarking of container orchestrators. Based on a definition of container orchestration, we define the core requirements and benchmarking scope for such platforms. Each requirement is then linked to metrics and measurement methods, and a benchmark architecture is proposed. With COFFEE, we introduce a benchmarking tool supporting the definition of complex test campaigns for container orchestration frameworks. We demonstrate the potential of our approach with case studies of the frameworks Kubernetes and Nomad in a self-hosted environment and on the Google Cloud Platform. The presented case studies focus on container startup times, crash recovery, rolling updates, and more.
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