NAFS : Stackable Filesystem for Maximizing Local Access in a NUMA System 


Vol. 48,  No. 6, pp. 612-617, Jun.  2021
10.5626/JOK.2021.48.6.612


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  Abstract

Intel Optane DC Persistent Memory has read/write latencies comparable to DRAM but ensures data persistence as in block devices such as SSD. However, Optane DC PM modules are installed in DIMM slots of NUMA nodes but legacy block devices are installed in PCIe or SATA. Therefore, Optane DC PMs are known to suffer from the NUMA effects, and the performance of a multithreaded application depends on the NUMA locality. In this paper, we propose a novel stackable file system, NUMA-Aware Filesystem (NAFS). NAFS divides a file into segment units such that I/Os can be performed in local NUMA nodes where each application thread runs. To enable this feature, NAFS duplicates the file metadata across all NUMA nodes if the number of remote I/Os exceeds a certain threshold. Our performance study shows NAFS reduces the number of accesses to remote NUMA nodes significantly, improving the performance of multithreaded applications.


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  Cite this article

[IEEE Style]

S. Ha, H. Woo, E. Seo, B. Nam, "NAFS : Stackable Filesystem for Maximizing Local Access in a NUMA System," Journal of KIISE, JOK, vol. 48, no. 6, pp. 612-617, 2021. DOI: 10.5626/JOK.2021.48.6.612.


[ACM Style]

Seungjun Ha, Hobin Woo, Euiseong Seo, and Beomseok Nam. 2021. NAFS : Stackable Filesystem for Maximizing Local Access in a NUMA System. Journal of KIISE, JOK, 48, 6, (2021), 612-617. DOI: 10.5626/JOK.2021.48.6.612.


[KCI Style]

하승준, 우호빈, 서의성, 남범석, "NAFS : NUMA 시스템에서 지역 접근을 최대화하기 위한 스택커블 파일시스템," 한국정보과학회 논문지, 제48권, 제6호, 612~617쪽, 2021. DOI: 10.5626/JOK.2021.48.6.612.


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