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KV-FTL: A novel key-value based FTL scheme for large scale SSDs

机译:KV-FTL:大型SSD的基于键值的FTL方案

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Both traditional coarse-grained and fine-grained Flash Translation Layer schemes are unsuitable for ultra-large SSDs. They produce overmuch mapping entries which fail to be kept in embedded DRAM completely and can suffer severely from low spatial and temporal localities. In this paper, we propose a novel KV-FTL for ultra-large SSDs, which mostly maps logical addresses to physical addresses via a simple hash function, while handles hash collisions and out-of-place data updates by the traditional manner, i.e., the mapping table. Our KV-FTL can accelerate address translation by avoiding loading mapping table from flash memory to DRAM, thus improve performance; as well as reduce the write-traffic incurred by the mapping table, thus extend the lifespan of SSDs. Experimental results show that our KV-FTL facilitates SSDs to survive longer lifespan by a factor of up to 18.7% with an average of 13.6%; improves read performance ranging from 18.4% to 50.7% with an average of 39% with optimization, and in the case of extremely intensive requests, improves the access performance for requests with an average of 47%.
机译:传统的粗粒和细粒闪存转换层的方案不适合超大规模的固态硬盘。它们产生不被保存在嵌入式DRAM完全,可以从较低的空间和时间的地方遭受严重过多映射条目。在本文中,我们提出了一个新颖的KV-FTL的超大规模的固态硬盘,它主要通过一个简单的哈希函数到物理地址的逻辑地址映射,而手柄的哈希冲突和外的地方的数据更新由传统的方式,即,映射表。我们的KV-FTL可以通过避免从闪存到DRAM装载映射表加快地址转换,从而提高性能;以及减少由映射表所产生的写入流量,从而延长SSD的寿命。实验结果表明,我们的KV-FTL促进固态硬盘,最多的一个因素,平均13.6 %存活期较长寿命18.7 %;提高读取性能从18.4 %至50.7 %,平均为39 %与优化,并在极其密集的请求的情况下,提高了平均的47 %请求访问性能。

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