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首页> 外文期刊>Cluster computing >Understanding the performance of storage class memory file systems in the NUMA architecture
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Understanding the performance of storage class memory file systems in the NUMA architecture

机译:了解NUMA架构中存储类内存文件系统的性能

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摘要

Recent developments in storage class memory (SCM) such as PCM, MRAM, resistive RAM (RRAM), and spin-transfer torque (STT)-RAM have strengthened their leadership as storage media for memory-based file systems. Traditional Linux memory-based file systems such as Ramfs and Tmpfs utilize the Linux page cache as a file system. These file systems have unnecessary overheads when adopted for SCM file system. Therefore, we propose a new memory-based file system using Memory Zone Partitioning called ZonFS, by extending the Linux Ramfs. In particular, we define a storage zone for SCM, modify the Ramfs to allocate a file system page from SCM. ZonFS avoids running Linux VM kernel codes such as (i) inserting pages allocated from SCM into the LRU list for VM page replacement and (ii) checking dirty pages for write-back to disk. Our extensive evaluations indicate that ZonFS has up to 9.1 and 14.1% higher I/O throughputs than native Ramfs and Tmpfs. Moreover, we also analyze performance behavior of ZonFS under the non-uniform memory access architecture of SCMs on a 40 manycore machine with various configurations such as file sharing level and file stripping level. Our evaluations show that memory controller contention and inter-node link congestion significantly affect the file system's performance and scalability.
机译:存储级存储器(SCM)的最新进展,如PCM,MRAM,电阻RAM(RRAM)和旋转转换扭矩(STT)-RAM在其领先地位作为基于内存的文件系统的存储介质。基于传统的基于内存的文件系统,如RAMFS和TMPFS使用Linux页面缓存作为文件系统。对于SCM文件系统采用时,这些文件系统具有不必要的开销。因此,我们通过扩展Linux RAMFS来提出使用名为ZONFS的内存区域分区的基于内存的文件系统。特别是,我们为SCM定义存储区,修改RAMFS从SCM分配文件系统页面。 ZONFS避免运行Linux VM内核代码,例如(i)将从SCM分配的页面插入LRU列表中的VM页替换和(ii)检查磁盘的脏页面。我们的广泛评估表明,除本机RAMFS和TMPF,ZONFS高达9.1和14.1%的I / O吞吐量。此外,我们还在带有各种配置的40多核机上的SCM的非统一内存访问架构下分析Zonfs的性能行为,其中包含诸如文件共享级别和文件剥离级别的各种配置。我们的评估显示,内存控制器争用和节点间链路拥塞显着影响文件系统的性能和可伸缩性。

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