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i2WAP: Improving non-volatile cache lifetime by reducing inter- and intra-set write variations

机译:i 2 WAP:通过减少集内和集内写入差异来提高非易失性缓存寿命

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Modern computers require large on-chip caches, but the scalability of traditional SRAM and eDRAM caches is constrained by leakage and cell density. Emerging non-volatile memory (NVM) is a promising alternative to build large on-chip caches. However, limited write endurance is a common problem for non-volatile memory technologies. In addition, today's cache management might result in unbalanced write traffic to cache blocks causing heavily-written cache blocks to fail much earlier than others. Unfortunately, existing wear-leveling techniques for NVM-based main memories cannot be simply applied to NVM-based on-chip caches because cache writes have intra-set variations as well as inter-set variations. To solve this problem, we propose i2WAP, a new cache management policy that can reduce both inter- and intra-set write variations. i2WAP has two features: (1) Swap-Shift, an enhancement based on previous main memory wear-leveling to reduce cache inter-set write variations; (2) Probabilistic Set Line Flush, a novel technique to reduce cache intra-set write variations. Implementing i2WAP only needs two global counters and two global registers. By adopting i2WAP, we can improve the lifetime of on-chip non-volatile caches by 75% on average and up to 224%.
机译:现代计算机需要大型的片上高速缓存,但是传统的SRAM和eDRAM高速缓存的可扩展性受到泄漏和单元密度的限制。新兴的非易失性存储器(NVM)是构建大型片上高速缓存的有前途的替代方法。但是,有限的写入耐久性是非易失性存储技术的普遍问题。此外,当今的缓存管理可能会导致对缓存块的写流量不平衡,从而导致大量写入的缓存块比其他缓存块更早失效。不幸的是,现有的基于NVM的主存储器的耗损均衡技术不能简单地应用于基于NVM的片上高速缓存,因为高速缓存的写操作既有集内差异又有集间差异。为解决此问题,我们提出了i 2 WAP,这是一种新的缓存管理策略,可以减少集内和集内写差异。 i 2 WAP具有两个功能:(1)Swap-Shift,它是基于以前的主内存损耗均衡的增强功能,可以减少高速缓存集写入的差异。 (2)概率集线刷新,这是一种减少缓存集内写入变化的新颖技术。实现i 2 WAP仅需要两个全局计数器和两个全局寄存器。通过采用i 2 WAP,我们可以将片上非易失性缓存的寿命平均提高75%,最高可提高224%。

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