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GPU Erasure Coding for Campaign Storage

机译:广告系列存储的GPU擦除编码

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摘要

High-performance computing (HPC) demands high bandwidth and low latency in I/O performance leading to the development of storage systems and I/O software components that strive to provide greater and greater performance. However, capital and energy budgets along with increasing storage capacity requirements have motivated the search for lower cost, large storage systems for HPC. With Burst Buffer technology increasing the bandwidth and reducing the latency for I/O between the compute and storage systems, the back-end storage bandwidth and latency requirements can be reduced, especially underneath an adequately sized modern parallel file system. Cloud computing has led to the development of large, low-cost storage solutions where design has focused on high capacity, availability, and low energy consumption at lowest cost. Cloud computing storage systems leverage duplicates and erasure coding technology to provide high availability at much lower cost than traditional HPC storage systems. Leveraging certain cloud storage infrastructure and concepts in HPC would be valuable economically in terms of cost-effective performance for certain storage tiers. To enable the use of cloud storage technologies for HPC we study the architecture for interfacing cloud storage between the HPC parallel file systems and the archive storage. In this paper, we report our comparison of two erasure coding implementations for the Ceph file system. We compare measurements of various degrees of sharding that are relevant for HPC applications. We show that the Gibraltar GPU Erasure coding library outperforms a CPU implementation of an erasure coding plugin for the Ceph object storage system, opening the potential for new ways to architect such storage systems based on Ceph.
机译:高性能计算(HPC)要求I / O性能具有高带宽和低延迟,从而导致存储系统和I / O软件组件的开发不断努力,以提供越来越高的性能。但是,资本和能源预算以及不断增长的存储容量要求促使人们寻求针对HPC的低成本,大型存储系统。借助突发缓冲区技术,可以增加带宽并减少计算和存储系统之间I / O的延迟,可以减少后端存储带宽和延迟要求,尤其是在足够大的现代并行文件系统下。云计算导致了大型,低成本存储解决方案的开发,其设计重点是以最低的成本实现高容量,高可用性和低能耗。云计算存储系统利用复制和擦除编码技术以比传统HPC存储系统低得多的成本提供高可用性。就某些存储层的高性价比性能而言,在HPC中利用某些云存储基础架构和概念在经济上具有价值。为了使云存储技术能够用于HPC,我们研究了HPC并行文件系统和档案存储之间的云存储接口架构。在本文中,我们报告了对Ceph文件系统的两种擦除编码实现的比较。我们比较了与HPC应用相关的各种分片度的测量结果。我们表明,直布罗陀GPU擦除代码库的性能优于Ceph对象存储系统的擦除代码插件的CPU实现,这为基于Ceph的这种存储系统的新方法开发潜力。

著录项

  • 来源
    《High performance computing 》|2017年|145-159|共15页
  • 会议地点 Frankfurt(DE)
  • 作者单位

    Department of Computer and Information Sciences, University of Alabama at Birmingham, Birmingham, USA;

    Center for Computing Research, Sandia National Laboratories, Albuquerque, USA;

    Department of Computer and Information Sciences, University of Alabama at Birmingham, Birmingham, USA;

    Department of Computer Science and Engineering and McCrary Institutefor Critical Infrastructure Protection and Cyber Systems,Auburn University, Auburn, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
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