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A Real-Time Flash Translation Layer for NAND Flash Memory Storage Systems

机译:NAND闪存存储系统的实时闪存转换层

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NAND flash memory is widely used in both hard real-time and soft real-time systems because of its unique properties, such as non-volatility, low power consumption, and fast access time. However, due to the variable garbage collection latency, the response time becomes unpredictable when multiple I/O requests are issued from the file system to flash media. In NAND flash memory storage systems, flash translation layer (FTL) is a typical software module to handle the I/O requests and manage NAND flash memory. Most of existing FTL schemes focus on improving average response time but worst-case response time remains an open problem. This paper proposes a real-time flash translation layer (RFTL) scheme to evenly distribute garbage collection time-cost, so as to guarantee a near optimum worst-case response time. This is achieved by using a new hybrid-level address mapping approach, which can provide guaranteed physical space to serve requests in any time period. Moreover, we propose a distributed garbage collection policy that enables RFTL to reclaim the space and serve the requests simultaneously. We conduct a set of experiments on a real hardware platform. Both the proposed scheme and other representative FTL schemes have been implemented in the hardware evaluation board. Experimental results show that our scheme improves worst-case response time by 41.51 percent and average response time by 88.85 percent.
机译:NAND闪存具有非挥发性,低功耗和快速访问等独特特性,因此广泛用于硬实时和软实时系统中。但是,由于可变的垃圾回收延迟,当从文件系统向闪存介质发出多个I / O请求时,响应时间变得不可预测。在NAND闪存存储系统中,闪存转换层(FTL)是处理I / O请求和管理NAND闪存的典型软件模块。现有的大多数FTL方案都专注于改善平均响应时间,但最坏情况下的响应时间仍然是一个未解决的问题。提出了一种实时的Flash转换层(RFTL)方案,以平均分配垃圾收集的时间成本,从而保证接近最佳的最坏情况响应时间。这是通过使用新的混合级别地址映射方法来实现的,该方法可以提供保证的物理空间来服务任何时间段的请求。此外,我们提出了一种分布式垃圾收集策略,该策略使RFTL可以回收空间并同时处理请求。我们在真实的硬件平台上进行了一组实验。提议的方案和其他代表性的FTL方案均已在硬件评估板上实现。实验结果表明,我们的方案将最坏情况下的响应时间缩短了41.51%,将平均响应时间缩短了88.85%。

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