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Write-Amount-Aware Management Policies for STT-RAM Caches

机译:STT-RAM缓存的写量感知管理策略

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Spin-transfer torque random access memory (STT-RAM) technology has emerged as one of the most promising memory technologies owing to its nonvolatility, high density, and low-leakage power characteristics. However, STT-RAM has certain drawbacks such as high write energy consumption and limits to the number of write cycles. To enable the adoption of STT-RAM in the implementation of cache memories, new cache hierarchy management policies are required to overcome such drawbacks. In this brief, we evaluated several cache hierarchy management policies in the context of static random access memory L1 caches and an STT-RAM L2 cache. We found that a nonexclusive policy is superior to noninclusive and exclusive policies in terms of energy consumption and endurance. We also propose a sub-block-based management policy because the write energy consumption and endurance are proportional and inversely proportional to the amount of written data, respectively. A combination of the proposed policy with a nonexclusive policy reduces the L2 cache energy consumption by 33.3% (31.5%) and improves the lifetime by 56.3% (56.8%) in a single-core (quad-core) system.
机译:自旋转移矩随机存取存储器(STT-RAM)技术因其非易失性,高密度和低泄漏功率特性而成为最有前途的存储器技术之一。但是,STT-RAM具有某些缺点,例如高写入能量消耗和对写入周期数的限制。为了能够在高速缓存存储器的实现中采用STT-RAM,需要新的高速缓存层次结构管理策略来克服这些缺点。在本简介中,我们在静态随机存取存储器L1缓存和STT-RAM L2缓存的背景下评估了几种缓存层次结构管理策略。我们发现,就能源消耗和耐用性而言,非排他性政策要优于非排他性和排他性政策。我们还提出了一种基于子块的管理策略,因为写入能耗和耐久性分别与写入数据量成正比和成反比。在单核(四核)系统中,建议的策略与非排他性策略的组合可将L2缓存能耗降低33.3%(31.5%),并将寿命提高56.3%(56.8%)。

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