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Access Characteristic Guided Read and Write Regulation on Flash Based Storage Systems

机译:基于闪存的存储系统的访问特性引导的读写规则

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NAND flash memory is now used in various storage systems, such as embedded systems, personal computers, and web servers. The developments in bit density and technology scaling have reduced its price, but worsen the reliability, leading to shortened lifetime and degraded access performance. This paper proposes to exploit access characteristics of workloads to improve flash performance and lifetime. The basic idea is to regulate the read and write operations based on the identified access characteristics. First, an access cost model is presented, which indicates a tradeoff between read and write time cost on NAND flash memory. Based on the access characteristics of workloads, read-only pages will be written with high cost so that they can be read with low cost, and write-only pages will be written with low cost. Second, the tradeoff between read cost and flash wearing is exploited for lifetime improvement. The write requests on write-only data are processed with reduced wearing by regulating the program threshold voltage. Finally, as these approaches apply different write operations on write-only data for performance and lifetime improvement respectively, a combined approach is proposed to satisfy both goals. Simulation results show that the proposed approaches can improve performance and lifetime significantly with negligible overhead.
机译:现在,NAND闪存用于各种存储系统中,例如嵌入式系统,个人计算机和Web服务器。比特密度和技术扩展的发展降低了其价格,但是却降低了可靠性,导致寿命缩短和访问性能下降。本文提出利用工作负载的访问特性来提高闪存性能和寿命。基本思想是根据识别出的访问特征来规范读写操作。首先,提出了一种访问成本模型,该模型指示了NAND​​闪存的读写时间成本之间的权衡。根据工作负载的访问特性,只读页面将以高成本写入,因此它们可以以低成本读取,而只读页面将以低成本写入。其次,利用读取成本和闪存损耗之间的权衡来提高使用寿命。通过调节程序阈值电压,可以减少对磨损的处理,从而可以对只读数据进行写请求。最后,由于这些方法分别对仅写数据应用了不同的写操作以提高性能和寿命,因此提出了一种组合方法来满足这两个目标。仿真结果表明,所提出的方法可以显着提高性能和寿命,而开销却可以忽略不计。

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