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A Write-Through Cache Method to Improve Small Write Performance of SSD-based RAID

机译:一种改进基于SSD的RAID的小写性能的写入缓存方法

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With the development of technology and price decline, flash-based Solid state drives (SSDs) are rapidly used to construct RAIDs by storage vendors. SSD does not need to seek and rotate, therefore, its read performance is much better than that of HDD. However, the small write performance of SSD is limited by its inherent characteristics such as out-of-place updates and garbage collection. The traditional parity-based RAID also has small write problem because of parity updating. SSD-based RAID, which is called RAIS, is generally based on the traditional RAID design and implementation. Consequently, handling small write requests is a serious challenge when SSD is used to construct parity-based RAID. In RAIS storage system, small write requests not only result in poor performance, but also shorten the lifetime of each SSD. In this paper, we propose a novel write through cache method, called CRAIS5, which uses a RAM as the write cache of RAIS5, and adopts the write-through mode to delay the parity update. The write-through cache method makes full use of the flash characteristics, and removes the pre-read operation. CRAIS5 improves the small write performance and reduces the erase time. We have implemented the CRAIS5 prototype in Disksim simulator, and used the real traces to evaluate the performance. The evaluations demonstrate that our CRAIS5 outperforms RAIS5, and PPC, on average, by 42.82%, and 34.49% respectively.
机译:随着技术和价格下降的发展,基于闪存的固态驱动器(SSD)迅速用于通过存储供应商构建RAID。因此,SSD不需要寻求和旋转,因此其读取性能远优于HDD。然而,SSD的小写性能受其固有特性的限制,例如出于出于出于出于出于的更新和垃圾收集。由于奇偶校验更新,传统的基于奇偶校验的RAID也具有小写问题。基于SSD的RAID称为RAI,通常基于传统的RAID设计和实现。因此,当SSD用于构建基于奇偶校验的RAID时,处理小写请求是一个严重的挑战。在RAIS存储系统中,小写请求不仅导致性能差,而且缩短了每个SSD的生命周期。在本文中,我们提出了一种通过Cache方法的新颖写作,称为CRAIS5,它使用RAM作为RAIS5的写缓存,并采用写入模式延迟奇偶校验更新。写入缓存方法充分利用闪存特性,并删除预先读取操作。 CRAIS5提高了小写性能并减少了擦除时间。我们在Disksim Simulator中实现了CRAIS5原型,并使用实际迹线来评估性能。评估表明,我们的CRAIS5平均分别优于RAIS5和PPC,分别为42.82%和34.49%。

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