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The design of an efficient swap mechanism for hybrid DRAM-NVM systems

机译:混合DRAM-NVM系统的有效交换机制设计

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Non-Volatile Memory (NVM) is becoming an attractive candidate to be the swap area in embedded systems for its near-DRAM speed, low energy consumption, high density, and byte-addressability. Swapping data from DRAM out to NVM, however, can cause large performance/energy penalty and deplete the lifetime of NVM. Traditional swap mechanisms may need to be re-studied. Even through there are several swap mechanisms proposed for the hybrid DRAM-NVM systems, most of them have limited performance without considering the data access features of applications. In this paper, we analyze the data accesses features of different applications. Then, a swap mechanism, called Refinery Swap, is proposed to improve the performance of the system, reduce energy consumption, and increase the lifetime of NVM simultaneously. Refinery Swap presented two algorithms to exploit the data access features of applications and the characteristics of different kinds of memory medias. The swap operations in the system and the writes upon NVM are reduced using Refinery Swap. Extensive experiments are conducted with standard benchmarks. The experimental results show that the lifetime of NVM for the system with Refinery Swap can be 83 times that of Linux Swap. The performance of the system with Refinery Swap can be 17 times that of DR.Swap, the state-of-the-art swap mechanism for hybrid memory embedded systems. Moreover, the energy consumption of the system achieves 17 times lower.
机译:非易失性存储器(NVM)凭借其接近DRAM的速度,低能耗,高密度和字节可寻址性,正成为嵌入式系统中的交换区域,成为诱人的候选者。但是,将数据从DRAM交换到NVM可能会导致较大的性能/能耗损失,并耗尽NVM的寿命。传统的交换机制可能需要重新研究。即使通过针对混合DRAM-NVM系统提出了几种交换机制,大多数交换机制的性能也受到限制,而没有考虑应用程序的数据访问功能。在本文中,我们分析了不同应用程序的数据访问功能。然后,提出了一种称为“精炼厂交换”的交换机制,以提高系统性能,降低能耗并同时增加NVM的寿命。 Refinery Swap提出了两种算法来利用应用程序的数据访问功能以及不同类型的存储介质的特征。使用Refinery Swap减少了系统中的交换操作和对NVM的写入。使用标准基准进行了广泛的实验。实验结果表明,带有Refinery Swap的系统的NVM寿命可以是Linux Swap的83倍。带有精炼交换功能的系统的性能可以是DR.Swap的17倍,DR.Swap是混合内存嵌入式系统的最新交换机制。此外,系统的能耗降低了17倍。

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