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基于SSD的机群文件系统元数据存储系统 被引量:8
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作者 陈卓 熊劲 马灿 《计算机研究与发展》 EI CSCD 北大核心 2012年第S1期269-275,共7页
随着数据量的增加和元数据操作性能需求的提高,传统基于磁盘(HDD)存储架构的机群文件系统元数据存储系统由于HDD成为性能瓶颈而无法满足需求.将SSD应用到元数据存储中,设计实现了一个基于SSD+HDD的异构元数据存储系统Hybrid MDSL.针对SS... 随着数据量的增加和元数据操作性能需求的提高,传统基于磁盘(HDD)存储架构的机群文件系统元数据存储系统由于HDD成为性能瓶颈而无法满足需求.将SSD应用到元数据存储中,设计实现了一个基于SSD+HDD的异构元数据存储系统Hybrid MDSL.针对SSD的I/O特性设计了基于追加写的元数据存储组织,并通过基于访问热度的数据迁移机制提高SSD空间利用率.测试结果表明,Hybrid MDSL明显提高了元数据I/O的性能. 展开更多
关键词 机群文件系统 SSD 元数据存储系统 数据热度
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ONFS: a hierarchical hybrid file system based on memory, SSD, and HDD for high performance computers 被引量:1
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作者 Xin LIU Yu-tong LU +3 位作者 Jie YU Peng-fei WANG Jie-ting WU Ying LU 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2017年第12期1940-1971,共32页
With supercomputers developing towards exascale, the number of compute cores increases dramatically, making more complex and larger-scale applications possible. The input/output (I/O) requirements of large-scale app... With supercomputers developing towards exascale, the number of compute cores increases dramatically, making more complex and larger-scale applications possible. The input/output (I/O) requirements of large-scale applications, workflow applications, and their checkpointing include substantial bandwidth and an extremely low latency, posing a serious challenge to high performance computing (HPC) storage systems. Current hard disk drive (HDD) based underlying storage systems are becoming more and more incompetent to meet the requirements of next-generation exascale supercomputers. To rise to the challenge, we propose a hierarchical hybrid storage system, on-line and near-line file system (ONFS). It leverages dynamic random access memory (DRAM) and solid state drive (SSD) in compute nodes, and HDD in storage servers to build a three-level storage system in a unified namespace. It supports portable operating system interface (POSIX) semantics, and provides high bandwidth, low latency, and huge storage capacity. In this paper, we present the technical details on distributed metadata management, the strategy of memory borrow and return, data consistency, parallel access control, and mechanisms guiding downward and upward migration in ONFS. We implement an ONFS prototype on the TH-1A supercomputer, and conduct experiments to test its I/O performance and scalability. The results show that the bandwidths of single-thread and multi-thread 'read'/'write' are 6-fold and 5-fold better than HDD-based Lustre, respectively. The I/O bandwidth of data-intensive applications in ONFS can be 6.35 timcs that in Lustre. 展开更多
关键词 High performance computing Hierarchical hybrid storage system Distributed metadata management Data migration
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