首页> 外文会议>37th annual international symposium on computer architecture 2010 >Morphable Memory System: A Robust Architecture for Exploiting Multi-Level Phase Change Memories
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Morphable Memory System: A Robust Architecture for Exploiting Multi-Level Phase Change Memories

机译:可变形存储器系统:用于开发多级相变存储器的稳健体系结构

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Phase Change Memory (PCM) is emerging as a scalable and power-efficient technology to architect future main memory systems. The scalability of PCM is enhanced by the property that PCM devices can store multiple bits per cell. While such Multi-Level Cell (MLC) devices can offer high density, this benefit comes at the expense of increased read latency, which can cause significant performance degradation. This paper proposes Morphable Memory System (MMS), a robust architecture for efficiently incorporating MLC PCM devices in main memory. MMS is based on observation that memory requirement varies between workloads, and systems are typically over-provisioned in terms of memory capacity. So, during a phase of low memory usage, some of the MLC devices can be operated at fewer bits per cell to obtain lower latency. When the workload requires full memory capacity, these devices can be restored to high density MLC operation to have full main-memory capacity. We provide the runtime monitors, the hardware-OS interface, and the detailed mechanism for implementing MMS. Our evaluations on an 8-core 8GB MLC PCM-based system show that MMS provides, on average, low latency access for 95% of all memory requests, thereby improving overall system performance by 40%.
机译:相变存储器(PCM)作为一种可扩展且高能效的技术正在兴起,以构建未来的主存储器系统。 PCM设备可在每个单元中存储多个位的特性增强了PCM的可伸缩性。尽管此类多级单元(MLC)设备可以提供高密度,但此好处是以增加的读取延迟为代价的,这可能导致性能显着下降。本文提出了可变形存储系统(MMS),这是一种用于将MLC PCM设备有效合并到主存储器中的健壮体系结构。 MMS基于以下观察:工作负载之间的内存需求会有所不同,并且系统通常会在内存容量方面超额配置。因此,在内存使用率较低的阶段,某些MLC设备可以以每个单元较少的比特数运行,从而获得较低的延迟。当工作负载需要完整的内存容量时,可以将这些设备还原到高密度MLC操作,以具有完整的主内存容量。我们提供了运行时监视器,硬件-OS接口以及用于实现MMS的详细机制。我们对基于8核8GB MLC PCM的系统的评估表明,MMS平均可以为95%的所有内存请求提供低延迟访问,从而使整体系统性能提高40%。

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