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High-Endurance Hybrid Cache Design in CMP Architecture With Cache Partitioning and Access-Aware Policies

机译:具有高速缓存分区和访问感知策略的CMP体系结构中的高耐久性混合高速缓存设计

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摘要

In recent years, nonvolatile memory (NVM) technologies, such as spin-transfer torque random-access memory (RAM) (STT-RAM) and phase change RAM, have drawn a lot of attention due to their low leakage and high density. However, both of these NVMs suffer from high write latency and limited endurance problems. To mitigate the write pressure on NVM, many static RAM (SRAM)/NVM hybrid cache designs have been proposed with write management policies. Unfortunately, existing hybrid cache designs do not consider the unbalanced workload of each core in (chip multiprocessor) architecture, resulting in unbalanced wear out of hybrid caches. This paper considers the unbalanced write distribution of a hybrid cache for CMP architecture as well as a novel hybrid cache design that includes SRAM cache, STT-RAM cache, and STT-RAM/SRAM hybrid cache banks. Based on the proposed hybrid cache design, two access-aware policies are proposed to mitigate unbalanced wearout of the STT-RAM region, and a wearout-aware dynamic cache partitioning scheme is proposed to dynamically partition the hybrid cache, improving the unbalanced write pressure among different cache partitions. The experimental results show that our proposed scheme and policies can achieve an average of 89 times improvement in cache lifetime and are able to reduce energy consumption by 58% compared with a SRAM cache.
机译:近年来,自旋转移扭矩随机存取存储器(RAM)(STT-RAM)和相变RAM等非易失性存储器(NVM)技术因其低泄漏和高密度而备受关注。但是,这两个NVM都具有较高的写入延迟和有限的耐久性问题。为了减轻对NVM的写入压力,已经提出了许多具有写入管理策略的静态RAM(SRAM)/ NVM混合缓存设计。不幸的是,现有的混合缓存设计没有考虑(芯片多处理器)体系结构中每个内核的不平衡工作量,从而导致混合缓存的不平衡磨损。本文考虑了用于CMP体系结构的混合高速缓存的不平衡写分布以及包括SRAM高速缓存,STT-RAM高速缓存和STT-RAM / SRAM混合高速缓存组的新型混合高速缓存设计。基于提出的混合缓存设计,提出了两种访问感知策略来减轻STT-RAM区域的不均衡磨损,提出了一种感知磨损的动态缓存分区方案来动态划分混合缓存,从而改善了混合缓存之间的不平衡写压力。不同的缓存分区。实验结果表明,与SRAM缓存相比,我们提出的方案和策略可以使缓存寿命平均提高89倍,并且能够将能耗降低58%。

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