操作系统内核中非易失性内存管理的探索

S. Saito, S. Oikawa
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引用次数: 5

摘要

非易失性存储器的未来是有希望的,因为它的性能有了显著的提高。性能的改进使非易失性存储器成为通用系统存储器的主要部分。利用大型非易失性内存将提高其内存性能,因为它可以减少操作系统分页活动的数量。为了实现这些系统,操作系统(OS)需要根据其特性来管理非易失性存储器。非易失性存储器具有一些特性,因此操作系统应该使用适当的算法来管理这些存储器。为了实现这一目标,我们专注于非易失性存储器的特性,非易失性和高延迟等。我们分析了操作系统的内存管理行为,并提出了如何管理操作系统内核中的非易失性内存。我们研究了内存延迟对系统性能的影响,以及如何管理混合内存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploration of Non-volatile Memory Management in the OS Kernel
Non-volatile memory's future is promising because its performance has been improved significantly. The performance improvement enables non-volatile memory to be a major part of the memory of general purpose systems. Utilization of large non-volatile memory will improve its memory performance because it can decrease the number of the OS's paging activity. To realize these systems, the operating system (OS) needs to manage non-volatile memory in accord with its characteristics. Non-volatile memory has some characteristics, thus the OS should manage this memory with appropriate algorithms. To achieve this goal, we focused on non-volatile memory's characteristics, non-volatile and high-latency, among others. We analyzed the behavior of the OS's memory management and propose how to manage non-volatile memory in the OS kernel. We researched the effect of memory-latency on a system performance and how to manage with hybrid memories.
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