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Containerizing HPC Applications on Heterogeneous Systems for Centralized Resource Management: A Case Study

机译:集装箱HPC应用对集中资源管理的异构系统:案例研究

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Recently, the demand for scientific computing on HPC systems has grown in popularity. However, the runtime environment is a standpoint when there are many kinds of different applications with different requirements. Moreover, an HPC system cannot satisfy all of these requirements of environment. This becomes more and more considerable in the case of applications running on heterogeneous systems (e.g., CPU/Intel Xeon Phi based cluster). Generally, two main problems needing to be tackled in HPC systems are runtime environment and workload management. In terms of lightweight virtualization, Docker facilitates the isolation of different applications as well as runtime environments on the same host operating system. In addition, with huge advantages, batch job scheduler plays a vital role in management and operation. In this paper, we adopt an approach by combining containerization and HPC workload management to support the submission of a variety of applications. Practically, we perform the experiments on a heterogeneous cluster with CPU and Intel Xeon Phi coprocessor. The results show that there is a slightly different about the performance of jobs which are submitted by the normal way and containerized way. However, the experimental result highlights that the cost of containerizing HPC applications is negligible, and this can be applied in practice to fulfill user's requirement.
机译:最近,对HPC系统的科学计算的需求已经增长了普及。但是,运行时环境是当有许多不同要求的不同应用程序时的立体。此外,HPC系统不能满足环境的所有要求。在异构系统上运行的应用程序(例如,CPU / Intel Xeon Phi基于集群)的情况下,这变得越来越大。通常,需要在HPC系统中解决的两个主要问题是运行时环境和工作负载管理。在轻量级虚拟化方面,Docker有助于在同一主机操作系统上隔离不同的应用程序以及运行时环境。此外,批量作业调度程序具有巨大的优势,在管理和操作中起着重要作用。在本文中,我们采用了一种方法,通过组合集装箱化和HPC工作负载管理来支持提交各种应用。实际上,我们在与CPU和英特尔Xeon Phi协处理器上执行异构集群的实验。结果表明,对正常方式和集装箱方式提交的工作性能略有不同。然而,实验结果突出显示集装箱HPC应用程序的成本可以忽略不计,这可以应用于履行用户的要求。

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