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Frequent Access Pattern-based Prefetching Inside of Solid-State Drives

机译:固态驱动器内部基于频繁访问模式的预取

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This paper proposes an SSD-inside data prefetching scheme, which has features of OS-dependence and use transparency. To be specific, it first mines frequent block access patterns that reflect the correlation among the occurred requests. Then it compares the requests in the current time window with the identified patterns, to direct fetching data in advance. Furthermore, to maximize the cache use efficiency, we construct a method to adaptively determine the cache partition on the basis of I/O workload characteristics, for separately buffering the prefetched data and the write data. Experimental results demonstrate that our proposal can yield improvements on average read latency by 6.3% to 9.3% without noticeably increasing write latency, in contrast to conventional SSD-inside prefetching schemes.
机译:本文提出了一种SSD内部数据预取方案,该方案具有操作系统依赖性和使用透明性。具体来说,它首先挖掘频繁的块访问模式,以反映发生的请求之间的相关性。然后,它将当前时间窗口中的请求与已识别的模式进行比较,以预先直接获取数据。此外,为了最大化高速缓存的使用效率,我们构造了一种方法,该方法基于I / O工作负载特征来自适应地确定高速缓存分区,以分别缓冲预取的数据和写入的数据。实验结果表明,与传统的SSD内部预取方案相比,我们的建议可将平均读取延迟提高6.3%至9.3%,而不会显着增加写入延迟。

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