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ICS: Interrupt-Based Channel Sneaking for Maximally Exploiting Die-Level Parallelism of NAND Flash-Based Storage Devices

机译:ICS:基于中断的通道侦听功能,可最大程度地利用基于NAND闪存的存储设备的芯片级并行性

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The performance bottleneck of NAND flash-based storage devices (NFSDs) is mainly due to the slow NAND flash memories (NFMs). One of the well-known techniques for overcoming the bottleneck is an interleaving technique. This technique aims to maximize the utilization of high-speed channels by allowing slow NFMs to operate in parallel. Typically, NFSDs hierarchically apply the multilevel interleaving technique—channel, way, and die-level. While channel/way-level interleaving has already matured, die-level interleaving faces practical difficulties. The most critical issue is that it is not easy to identify individual die status because multiple dies in a package share a status pin, because of the form factor and cost issues of NFSDs. For this reason, NFSD has to issue a read status (RS) command to check the die status, which requires nonmarginal performance overhead. Moreover, the RS overhead attenuates the advantages of channel sneaking (CS) introduced in this brief to accelerate interleaving. To tackle this issue, we propose interrupt-based CS (ICS) that maximizes the impact of die-level interleaving while paying marginal overhead for identifying the die status. ICS performs on-demand die-status monitoring with minor modification of the NFM interface. We prove its effectiveness by conducting experiments in which ICS improves the performance by 19.8% over the typical scheme.
机译:基于NAND闪存的存储设备(NFSD)的性能瓶颈主要是由于NAND闪存(NFM)的速度较慢。克服瓶颈的一种众所周知的技术是交错技术。该技术旨在通过允许慢速NFM并行运行来最大化高速信道的利用率。通常,NFSD会分层地应用多级交织技术-通道,通道和芯片级。尽管信道/通道级交织已经成熟,但是管芯级交织却面临实际困难。最关键的问题是,由于NFSD的尺寸和成本问题,封装中的多个芯片共享一个状态引脚,因此很难识别单个芯片的状态。出于这个原因,NFSD必须发出读取状态(RS)命令以检查裸片状态,这需要极小的性能开销。此外,RS开销削弱了此摘要中介绍的信道偷偷摸摸(CS)的优点,以加速交织。为了解决这个问题,我们提出了基于中断的CS(ICS),它可以最大程度地提高裸片级交错的影响,同时又为识别裸片状态付出了边际开销。 ICS通过对NFM接口进行较小的修改即可执行按需的模具状态监视。我们通过进行实验来证明其有效性,其中ICS比典型方案提高了19.8%的性能。

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