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WALL: A writeback-aware LLC management for PCM-based main memory systems

机译:墙壁:基于PCM的主内存系统的写回报LLC管理

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In this paper, we propose WALL, a novel writeback-aware LLC management scheme to reduce the number of LLC writebacks and consequently improve performance, energy efficiency, and lifetime of a PCM-based main memory system. First, we investigate the writeback behavior of LLC sets and show that writebacks are not uniformly distributed among sets; some sets observe much higher writeback rates than others. We then propose a writeback-aware set-balancing mechanism, which employs the underutilized LLC sets with few writebacks as an auxiliary storage for storing the evicted dirty lines of sets with frequent writebacks. We also propose a simple and effective writeback-aware replacement policy to avoid the eviction of the writeback blocks that are highly reused after being evicted from the cache. Our experimental results show that WALL achieves an average of 26.6% reduction in the total number of LLC writebacks, compared to the baseline scheme, which uses the LRU replacement policy. As a result, WALL can reduce the memory energy consumption by 19.2% and enhance PCM lifetime by 1.25x, on average, on an 8-core system with a 4GB PCM main memory, running memory intensive applications.
机译:在本文中,我们提出了一种新的返回感知LLC管理方案,以减少LLC背回的数量,从而提高基于PCM的主存储器系统的性能,能效和寿命。首先,我们调查LLC集的回报行为,并显示回写不均匀分布在集合中;有些集合观察到比其他人更高的回报率。然后,我们提出了一种回合感知的SET - 平衡机制,它采用未充分的LLC集合,其中冗长的倒回为辅助存储器,用于存储具有频繁回写的被驱逐的集合线。我们还提出了一种简单且有效的回合感知替换策略,以避免在从缓存中驱逐后高度重复使用的回溯块的驱逐。我们的实验结果表明,与使用LRU替换政策的基线方案相比,墙壁平均降低了LLC挫折总数的平均值26.6 %。因此,墙壁可以将内存能耗降低19.2 %并平均增强PCM寿命,平均在具有4GB PCM主存储器的8核系统上,运行内存密集型应用。

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