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Exploring non-volatile main memory architectures for handheld devices

机译:探索手持设备的非易失性主内存架构

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As additional functionality is being added to contemporary handheld devices, the SoCs inside these devices are becoming increasingly complex. Similarly, the applications executing on these handhelds are beginning to exhibit an ever increasing memory footprint. To support these trends, main memory capacity of these SoCs has been increasing over time. Due to these developments, memory system's contribution to the overall system power has increased dramatically. Non-volatile memories have been used in server architectures to increase capacity as well as keep memory system's power consumption in check. However, in the handheld domain, where user experience and battery life are of paramount importance, the applicability of such technologies has not been widely studied. In this paper, we propose and evaluate a number of hybrid memory architectures using mobile DRAM and PCM. We show that intelligent memory architectures, cognizant of workload's memory access patterns can provide significant energy savings without compromising on user experience. Using proposed approach, we can devise architectures that exhibit significant energy savings with only a 2.8% performance loss.
机译:随着当代手持设备中添加了附加功能,这些设备内的SOC变得越来越复杂。同样,在这些手持设备上执行的应用程序开始表现出越来越多的内存足迹。为了支持这些趋势,这些SOC的主要内存容量随着时间的推移而越来越多。由于这些发展,记忆系统对整体系统电力的贡献急剧增加。在服务器架构中使用了非易失性存储器以提高容量,并保持内存系统的电力消耗。然而,在手持领域,在用户体验和电池寿命至关重要的情况下,这些技术的适用性尚未得到广泛研究。在本文中,我们提出了使用移动DRAM和PCM的许多混合内存架构。我们显示智能内存架构,工作负载的内存访问模式的认识可以提供显着的节能而不会影响用户体验。使用所提出的方法,我们可以设计具有2.8%的性能损失的显着节能的架构。

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