首页> 外文会议> >Disk built-in caches: evaluation on system performance
【24h】

Disk built-in caches: evaluation on system performance

机译:磁盘内置缓存:评估系统性能

获取原文

摘要

Disk drive manufacturers are putting increasingly larger built-in caches into disk drives. Today, 2 MB buffers are common on low-end retail IDE/ATA drives, and some SCSI drives are now available with 16 MB. However, few published data are available to demonstrate that such large built-in caches can noticeably improve overall system performance. In this paper, we investigated the impact of the disk built-in cache on file system response time when the file system buffer cache becomes larger. Via detailed file system and disk system simulation, we arrive at three main conclusions: (1) With a reasonably-sized file system buffer cache (16 MB or more), there is very little performance benefit of using a built-in cache larger than 512 KB. (2) As a readahead buffer, the disk built-in cache provides noticeable performance improvements for workloads with read sequentiality, but has little positive effect on performance if there are more concurrent sequential workloads than cache segments. (3) As a writing cache, it also has some positive effects on some workloads, at the cost of reducing reliability. The disk drive industry is very cost-sensitive. Our research indicates that the current trend of using large built-in caches is unnecessary and a waste of money and power for most users. Disk manufacturers could use much smaller built-in caches to reduce the cost as well as power-consumption, without affecting performance.
机译:磁盘驱动器制造商正在将越来越大的内置缓存放入磁盘驱动器中。如今,低端零售IDE / ATA驱动器上共有2 MB缓冲区,而某些SCSI驱动器现在具有16 MB。但是,几乎没有公开的数据来证明如此大的内置缓存可以显着提高整体系统性能。在本文中,我们研究了当文件系统缓冲区高速缓存变大时,磁盘内置高速缓存对文件系统响应时间的影响。通过详细的文件系统和磁盘系统仿真,我们得出三个主要结论:(1)使用合理大小的文件系统缓冲区高速缓存(16 MB或更大),使用大于512 KB。 (2)作为预读缓冲区,磁盘内置缓存对具有读取顺序的工作负载提供了显着的性能改进,但是,如果并发顺序工作负载比缓存段多,则对性能的影响很小。 (3)作为写缓存,它对某些工作负载也有一些积极影响,但代价是降低了可靠性。磁盘驱动器行业对成本非常敏感。我们的研究表明,当前使用大型内置缓存的趋势是不必要的,并且对大多数用户来说是浪费金钱和功能。磁盘制造商可以使用更小的内置缓存来降低成本和功耗,同时又不影响性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号