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Hydra: A Block-Mapped Parallel Flash Memory Solid-State Disk Architecture

机译:Hydra:块映射的并行闪存固态磁盘体系结构

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Flash memory solid-state disks (SSDs) are replacing hard disk drives (HDDs) in mobile computing systems because of their lower power consumption, faster random access, and greater shock resistance. We describe Hydra, a high-performance flash memory SSD architecture that translates the parallelism inherent in multiple flash memory chips into improved performance, by means of both bus-level and chip-level interleaving. Hydra has a prioritized structure of memory controllers, consisting of a single high-priority foreground unit, to deal with read requests, and multiple background units, all capable of autonomous execution of sequences of high-level flash memory operations. Hydra also employs an aggressive write buffering mechanism based on block mapping to ensure that multiple flash memory chips are used effectively, and also to expedite the processing of write requests. Performance evaluation of an FPGA implementation of the Hydra SSD architecture shows that its performance is more than 80 percent better than the best of the comparable HDDs and SSDs that we considered.
机译:闪存固态磁盘(SSD)取代了移动计算系统中的硬盘驱动器(HDD),因为它们具有更低的功耗,更快的随机访问速度和更大的抗震性。我们描述了Hydra,这是一种高性能闪存SSD架构,它通过总线级和芯片级交织将多个闪存芯片固有的并行性转化为更高的性能。 Hydra具有存储控制器的优先级结构,该结构由一个用于处理读取请求的高优先级前台单元和多个后台单元组成,所有这些后台单元均能够自主执行高级闪存操作序列。 Hydra还采用了基于块映射的积极写缓冲机制,以确保有效使用多个闪存芯片,并加快对写请求的处理。对Hydra SSD架构的FPGA实现的性能评估表明,其性能比我们考虑的同类最佳HDD和SSD高出80%以上。

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