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Early Evaluation of Intel Optane Non-Volatile Memory with HPC I/O Workloads

Distributed, Parallel, and Cluster Computing 2018-05-15 v2

Abstract

High performance computing (HPC) applications have a high requirement on storage speed and capacity. Non-volatile memory is a promising technology to replace traditional storage devices to improve HPC performance. Earlier in 2017, Intel and Micron released first NVM product -- Intel Optane SSDs. Optane is much faster and more durable than the traditional storage device. It creates a bridge to narrow the performance gap between DRAM and storage. But is the existing HPC I/O stack still suitable for new NVM devices like Intel Optane? How does HPC I/O workload perform with Intel Optane? In this paper, we analyze the performance of I/O intensive HPC applications with Optane as a block device and try to answer the above questions. We study the performance from three perspectives: (1) basic read and write bandwidth of Optane, (2) a performance comparison study between Optane and HDD, including checkpoint workload, MPI individual I/O vs. POSIX I/O, and MPI individual I/O vs. MPI collective I/O, and (3) the impact of Optane on the performance of a parallel file system, PVFS2.

Keywords

Cite

@article{arxiv.1708.02199,
  title  = {Early Evaluation of Intel Optane Non-Volatile Memory with HPC I/O Workloads},
  author = {Kai Wu and Frank Ober and Shari Hamlin and Dong Li},
  journal= {arXiv preprint arXiv:1708.02199},
  year   = {2018}
}

Comments

6 pages

R2 v1 2026-06-22T21:08:49.741Z