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Solid-State Drives: Memory Driven Design Methodologies for Optimal Performance

机译:固态驱动器:内存驱动设计方法,以实现最佳性能

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摘要

Solid-state drives (SSDs) faced an astonishing development in the last few years, becoming the cornerstone to new paradigms and markets of the information technology, such as cloud computing and big data centers. So far, the SSD design approach has focused on the optimization of the Flash translation layer, the firmware devoted to fulfill the compatibility with traditional hard-disk drives. For hyperscaled SSDs this strategy is no longer valid since their performance and reliability are strictly linked to that of the NAND Flash memories that constitute the storage medium, in particular when the multilevel cell paradigm is considered. For this reason, the design flow must follow a bottom-up approach that, starting from an accurate knowledge of the time and use dependent reliability of the NAND Flash memories, selects the most appropriate error correction strategy to extend the SSD lifetime while reducing its performance degradation. Then, the design flow moves to that of the SSD controller and of the interface toward the host where the application is running. This paper will thoroughly discuss this bottom-up approach, and finally, it will show how it is possible to leverage new approaches, such as the software-defined storage system that, by exploiting a hardware/software codesign of the SSD controller architecture and of the host application, will be able to revolutionize the traditional computer/memory interaction.
机译:固态驱动器(SSD)在过去几年中面临着惊人的发展,成为新范式的基石和信息技术的市场,如云计算和大数据中心。到目前为止,SSD设计方法专注于闪光翻译层的优化,致力于满足与传统硬盘驱动器的兼容性的固件。对于超微的SSD,该策略不再有效,因为它们的性能和可靠性严格地与构成存储介质的NAND闪存的性能,特别是当考虑多级单元范例时。为此,设计流程必须遵循自下而上的方法,从时间的准确掌握启动和使用的NAND闪存相关的可靠性,选择最合适的纠错策略,以延长SSD使用寿命,同时降低其性能降解。然后,设计流程移动到SSD控制器的其与应用程序运行的主机的接口移动到该接口。本文将彻底讨论此自下而上的方法,最后,它将通过利用SSD控制器体系结构的硬件/软件代码来展示如何利用新方法,例如软件定义的存储系统。主机应用程序将能够彻底改变传统的计算机/内存交互。

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