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Evaluating Lustre's Metadata Server on a Multi-Socket Platform

机译:在多套接字平台上评估Lustre的元数据服务器

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摘要

With the emergence of multi-core and multi-socket non-uniform memory access (NUMA) platforms in recent years, new software challenges have arisen to use them efficiently. In the field of high performance computing (HPC), parallel programming has always been the key factor to improve applications performance. However, the implications of parallel architectures in the system software has been overlooked until recently. In this work, we examine the implications of such platforms in the performance scalability of the Lustre parallel distributed file system's metadata server (MDS). We run our experiments on a four socket NUMA platform that has 48 cores. We leverage the mdtest benchmark to generate appropriate metadata workloads and include configurations with varying numbers of active cores and mount points. Additionally, we compare Lustre's metadata scalability with the local file systems ext4 and XFS. The results demonstrate that Lustre's metadata performance is limited to a single socket and decreases when more sockets are used. We also observe that the MDS's back-end device is not a limiting factor regarding the performance.
机译:近年来,随着多核和多插槽非统一内存访问(NUMA)平台的出现,有效使用它们的新软件挑战不断涌现。在高性能计算(HPC)领域,并行编程一直是提高应用程序性能的关键因素。但是,直到最近,系统软件中并行体系结构的含义仍被忽略。在这项工作中,我们研究了Lustre并行分布式文件系统的元数据服务器(MDS)的性能可伸缩性中这些平台的含义。我们在具有48个内核的四插槽NUMA平台上运行实验。我们利用mdtest基准测试来生成适当的元数据工作负载,并包括具有不同数量的活动核心和安装点的配置。此外,我们将Lustre的元数据可伸缩性与本地文件系统ext4和XFS进行了比较。结果表明,Lustre的元数据性能仅限于单个套接字,并且在使用更多套接字时会降低。我们还注意到,MDS的后端设备并不是性能的限制因素。

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