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Designing virtual accessing adapter and non-volatile memory management for memory-disk integrated system

机译:为存储磁盘集成系统设计虚拟访问适配器和非易失性存储器管理

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This paper presents a new memory hierarchy system using next-generation non-volatile memory devices merging a conventional main memory layer and a disk storage layer into a single memory layer, called a memory-disk integrated system (MDIS). In the MDIS, files are stored in MDIS storage and accessed in place as if they are in conventional DRAM main memory without any duplication between the main memory and secondary storage. The MDIS comprises three components: a virtual accessing adapter (VAA), an array of non-volatile hybrid memory (NVHM), and its associated virtual memory management module. The NVHM can be divided into two spaces—specifically, static and dynamic spaces—to support conventional memory management. Further, the VAA comprises four small buffers that support static and dynamic virtualization according to program execution characteristics. Experimental results show that the read/write load traffics for the proposed MDIS can be reduced by about 73% as compared with the cases of conventional main memory system. In addition, access latency of non-volatile hybrid memory is reduced by 51%.
机译:本文提出了一种使用下一代非易失性存储设备的新存储层次系统,该设备将常规的主存储层和磁盘存储层合并为一个存储层,称为存储磁盘集成系统(MDIS)。在MDIS中,文件存储在MDIS存储器中,并且就好像在常规DRAM主存储器中一样被访问,而在主存储器和辅助存储器之间没有任何重复。 MDIS包含三个组件:虚拟访问适配器(VAA),非易失性混合内存(NVHM)阵列及其关联的虚拟内存管理模块。 NVHM可以分为两个空间-特别是静态空间和动态空间-以支持常规的内存管理。此外,VAA包括四个小缓冲区,可根据程序执行特性支持静态和动态虚拟化。实验结果表明,与常规主存储系统相比,所建议的MDIS的读/写负载流量可以减少约73%。此外,非易失性混合存储器的访问延迟减少了51%。

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