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

机译:i 2 wap:通过减少帧内和内部写入变体来改进非易失性缓存生命周期

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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:现代计算机需要大量的片上缓存,但传统SRAM和EDRAM缓存的可扩展性受泄漏和细胞密度的约束。新兴的非易失性存储器(NVM)是建立大型片上缓存的有前途的替代方案。然而,有限的写入耐久性是非易失性存储器技术的常见问题。此外,今天的缓存管理可能会导致对缓存块的不平衡写入流量导致严重写入的缓存块更早地失败。遗憾的是,基于NVM的主要存储器的现有磨损升级技术不能简单地应用于基于NVM的片上高速缓存,因为高速缓存写入具有设置内的变化以及间歇变化。为了解决这个问题,我们提出了我 2 wap,这是一个新的缓存管理策略,可以减少设置和内部内部写入变化。我 2 wap有两个特点:(1)交换换档,基于先前的主内存磨损的增强,以减少缓存互联的写入变化; (2)概率集线刷新,一种降低缓存内部设置变化的新技术。实现i 2 wap只需要两个全局计数器和两个全局寄存器。通过采用I 2 WAP,我们可以将片内非易失性高速缓存的寿命平均提高75%,高达224%。

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