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Exploration of non-volatile memory management in the OS kernel

机译:OS内核中非易失性存储器管理的探索

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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. Nonvolatile 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.
机译:非易失性记忆的未来是有前途的,因为其性能显着提高。性能改进使非易失性存储器能够成为通用系统存储器的主要部分。利用大型非易失性存储器将提高其内存性能,因为它可以降低OS的分页活动的数量。为了实现这些系统,操作系统(OS)需要以其特性管理非易失性存储器。非易失性记忆有一些特征;因此,操作系统应使用适当的算法管理此内存。为了实现这一目标,我们专注于非易失性记忆的特征,非易失性和高延迟等。我们分析了OS的内存管理的行为,并提出了如何在OS内核中管理非易失性内存。我们研究了内存延迟对系统性能以及如何使用混合存储器管理的影响。

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