School of Engineering and Technology, University of Washington, Tacoma, WA 98402, USA.
Gigascience. 2022 Dec 28;12. doi: 10.1093/gigascience/giad069. Epub 2023 Aug 25.
This article presents the Container Profiler, a software tool that measures and records the resource usage of any containerized task. Our tool profiles the CPU, memory, disk, and network utilization of containerized tasks collecting over 60 Linux operating system metrics at the virtual machine, container, and process levels. The Container Profiler supports performing time-series profiling at a configurable sampling interval to enable continuous monitoring of the resources consumed by containerized tasks and pipelines.
To investigate the utility of the Container Profiler, we profile the resource utilization requirements of a multistage bioinformatics analytical pipeline (RNA sequencing using unique molecular identifiers). We examine profiling metrics to assess patterns of CPU, disk, and network resource utilization across the different stages of the pipeline. We also quantify the profiling overhead of our Container Profiler tool to assess the impact of profiling a running pipeline with different levels of profiling granularity, verifying that impacts are negligible.
The Container Profiler provides a useful tool that can be used to continuously monitor the resource consumption of long and complex containerized applications that run locally or on the cloud. This can help identify bottlenecks where more resources are needed to improve performance.
本文介绍了 Container Profiler,这是一种软件工具,可测量和记录任何容器化任务的资源使用情况。我们的工具在虚拟机、容器和进程级别上收集超过 60 种 Linux 操作系统指标,对容器化任务的 CPU、内存、磁盘和网络利用率进行分析。Container Profiler 支持在可配置的采样间隔内执行时间序列分析,从而能够持续监控容器化任务和管道消耗的资源。
为了研究 Container Profiler 的实用性,我们分析了一个多阶段生物信息学分析管道(使用独特分子标识符的 RNA 测序)的资源利用需求。我们检查了分析指标,以评估管道不同阶段的 CPU、磁盘和网络资源利用模式。我们还量化了我们的 Container Profiler 工具的分析开销,以评估在不同的分析粒度级别下对正在运行的管道进行分析的影响,验证了影响可以忽略不计。
Container Profiler 提供了一种有用的工具,可以用于持续监控在本地或云端运行的长而复杂的容器化应用程序的资源消耗。这有助于识别需要更多资源以提高性能的瓶颈。