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Memory design for selective error protection

机译:用于选择性错误保护的内存设计

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Memory error protection is increasingly important as memory density and capacity continue to scale. This paper presents a memory SEP (Selective Memory Protection) design that enables SEP for commodity memory modules, with no change to the modules or devices. Memory error protection is provided through embedded ECC, a recently proposed, energy-efficient ECC memory organization. The memory SEP design splits the physical memory address space into two memory regions of adjustable sizes, one with error protection and one without. With this support, the OS can adjust the size ratio of the protected region and non-protected region based on the needs of applications. In this scheme, the mapping from a physical memory address to memory device addresses is no longer power-of-two based. New and efficient address mapping schemes based on the Chinese Remainder Mapping are proposed to avoid the use of complex Euclidean division. The simulation results show that the memory SEP design may retain memory performance and cut memory power increase, while providing the ECC protection to commodity memory modules.
机译:内存错误保护越来越重要,因为内存密度和容量继续缩放。本文介绍了内存SEP(选择性内存保护)设计,可为商品内存模块SEP进行SEP,没有更改模块或设备。内存错误保护通过嵌入式ECC,最近提出的节能ECC内存组织提供。内存SEP设计将物理内存地址空间分成可调尺寸的两个存储区域,一个具有错误保护和一个没有。通过这种支持,操作系统可以根据应用的需要调整受保护区域和非保护区域的大小比。在该方案中,从物理内存地址到存储器设备地址的映射不再是两个功率。提出了基于中国剩余映射的新的和高效地址映射方案,以避免使用复杂的欧几里德划分。仿真结果表明,存储器SEP设计可能会保持内存性能并降低存储电源,同时为商品内存模块提供ECC保护。

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