使用WrAP弥合持久性和易失性内存之间的编程差距

Ellis R. Giles, K. Doshi, P. Varman
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引用次数: 35

摘要

内存技术的进步使字节可寻址的持久内存成为未来计算平台的一个组成部分。这一变化对传统上泾渭分明地区分持久存储和易失存储的软件具有重要意义。在本文中,我们描述了一种用于持久内存的软硬件架构WrAP,它提供原子性和持久性,同时确保通过缓存、DRAM和持久内存层的快速路径不会因繁琐的缓冲或双重复制要求而减慢速度。对事务数据结构的跟踪驱动模拟表明,使用WrAP方法可以显著提高性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bridging the programming gap between persistent and volatile memory using WrAP
Advances in memory technology are promising the availability of byte-addressable persistent memory as an integral component of future computing platforms. This change has significant implications for software that has traditionally made a sharp distinction between durable and volatile storage. In this paper we describe a software-hardware architecture, WrAP, for persistent memory that provides atomicity and durability while simultaneously ensuring that fast paths through the cache, DRAM, and persistent memory layers are not slowed down by burdensome buffering or double-copying requirements. Trace-driven simulation of transactional data structures indicate the potential for significant performance gains using the WrAP approach.
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