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Optimized I/O Determinism for Emerging NVM-based NVMe SSD in an Enterprise System

机译:优化的I / O确定性,用于在企业系统中新兴基于NVM的NVMe SSD

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Non-volatile memory express (NVMe) over peripheral component interconnect express (PCIe) has been adopted in the storage system to provide low latency and high throughput. NVMe allows a host system to reduce latency because it offers a high parallel operation and optimized command processing flow. In addition, an introduction of emerging non-volatile memory (NVM) significantly reduces the solid state drive (SSD) latency. The latency reduction in the host system and SSD makes a relative ratio of PCIe fabric latency to total I/O latency considerably grow. Therefore, this paper proposes a novel I/O optimization method using the PCIe feature, virtual channel. Unlike conventional approaches with the same priority data path, based on SSD's internal latency, an emerging NVM-based NVMe SSD with the proposed architecture selects a prioritized virtual channel to provide deterministic I/O latency. Experimental results show that the proposed method with phase-change memory (PCM) SSD improves I/O determinism by processing 45~74% more commands within the predictable I/O latency than a conventional PCM SSD.
机译:存储系统中已采用外围组件互连Express(PCIe)上的非易失性存储器Express(NVMe),以提供低延迟和高吞吐量。 NVMe提供了高度的并行操作和优化的命令处理流程,从而使主机系统可以减少延迟。此外,新出现的非易失性存储器(NVM)的引入大大减少了固态驱动器(SSD)的延迟。主机系统和SSD中的延迟减少使得PCIe架构延迟与总I / O延迟的相对比率大大增加。因此,本文提出了一种利用PCIe功能虚拟通道的新型I / O优化方法。与具有相同优先级数据路径的传统方法不同,基于SSD的内部等待时间,具有提出的体系结构的基于NVM的新兴NVMe SSD选择优先的虚拟通道来提供确定的I / O等待时间。实验结果表明,与传统的PCM SSD相比,所提方法具有相变存储器(PCM)SSD可以在可预测的I / O延迟时间内处理多45〜74%的命令,从而改善了I / O确定性。

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