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Divided disk cache and SSD FTL for improving performance in storage

机译:分开的磁盘缓存和SSD FTL,可提高存储性能

摘要

Although there are many efficient techniques to minimize the speed gap between processor and the memory, it remains a bottleneck for various commercial implementations. Since secondary memory technologies are much slower than main memory, it is challenging to match memory speed to the processor. Usually, hard disk drives include semiconductor caches to improve their performance. A hit in the disk cache eliminates the mechanical seek time and rotational latency. To further improve performance a divided disk cache, subdivided between metadata and data, has been proposed previously. We propose a new algorithm to apply the SSD that is flash memory-based solid state drive by applying FTL. First, this paper evaluates the performance of such a disk cache via simulations using DiskSim. Then, we perform an experiment to evaluate the performance of the proposed algorithm.
机译:尽管有许多有效的技术可以最大程度地减少处理器和内存之间的速度差距,但它仍然是各种商业实现的瓶颈。由于辅助内存技术比主内存要慢得多,因此要使内存速度与处理器相匹配是一项挑战。通常,硬盘驱动器包括半导体高速缓存以提高其性能。磁盘缓存中的命中消除了机械寻道时间和旋转等待时间。为了进一步提高性能,先前已经提出了在元数据和数据之间细分的划分的磁盘高速缓存。我们提出一种新算法,通过应用FTL来应用基于闪存的固态驱动器SSD。首先,本文通过使用DiskSim进行仿真来评估这种磁盘缓存的性能。然后,我们进行实验以评估所提出算法的性能。

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