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Optimizing Data Allocation and Memory Configuration for Non-Volatile Memory based Hybrid SPM on Embedded CMPs

机译:在嵌入式CMPS上优化基于非易失性存储器的混合SPM的数据分配和内存配置

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The recent emergence of various Non-Volatile Memories (NVMs), with many attractive characteristics such as low leakage power and high-density, provides us with a new way of addressing the memory power consumption problem. In this paper, we target embedded CMPs, and propose a novel Hybrid Scratch Pad Memory (HSPM) architecture which consists of SRAM and NVM to take advantage of the ultralow leakage power, high density of NVM and fast read of SRAM. A novel data allocation algorithm is proposed for the HSPM architecture. The experimental results show that the data allocation algorithm can reduce the memory access time by 31.22% and the dynamic energy consumption by 15.35% on average for the HSPM architecture when compared with a greedy algorithm.
机译:最近各种非易失性存储器(NVM)的出现,具有许多有吸引力的特性,如漏电功率和高密度低,为我们提供了一种解决内存功耗问题的新方法。在本文中,我们针对嵌入式CMP,并提出了一种新型混合划痕垫存储器(HSPM)架构,由SRAM和NVM组成,以利用超级漏电功率,高密度NVM和SRAM的快速读取。提出了一种新的数据分配算法,用于HSPM架构。实验结果表明,与贪婪算法相比,数据分配算法可以将内存访问时间减少31.22%,并且平均动态能耗在HSPM架构中平均为HSPM架构。

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