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Evaluation of Leakage Reduction Alternatives for Deep Submicron Dynamic Nonuniform Cache Architecture Caches

机译:评估深亚微米动态非均匀缓存体系结构缓存的减少泄漏的替代方法

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Wire delays and leakage energy consumption are both growing problems in designing large on-chip caches. Nonuniform cache architecture (NUCA) is a wire-delay aware design paradigm based on the sub-banking of a cache, which allows the banks closer to the controller to be accessed with reduced latencies with respect to the other banks. This feature is leveraged by dynamic NUCA (D-NUCA) caches via a migration mechanism which speeds up frequently used data access, further reducing the effect wire delays have on performance. To reduce leakage power consumption of static random access memory caches, various micro-architectural techniques have been proposed. In this brief, we compare the benefits and limits of the application of some of these techniques to a D-NUCA cache memory, and propose a novel hybrid scheme based on the Drowsy and Way Adaptable techniques. Such a scheme allows further improvement in leakage reduction and limits the impact of process variation on the effectiveness of the Drowsy technique.
机译:布线延迟和泄漏能耗都是设计大型片上高速缓存时日益严重的问题。非均匀高速缓存体系结构(NUCA)是基于高速缓存子存储区的线延迟感知设计范例,它允许以比其他存储区更小的延迟访问更靠近控制器的存储区。动态NUCA(D-NUCA)缓存通过一种迁移机制来利用此功能,该机制可加快常用数据访问的速度,从而进一步降低线路延迟对性能的影响。为了减少静态随机存取存储器高速缓存的泄漏功率消耗,已经提出了各种微架构技术。在本文中,我们比较了将其中一些技术应用于D-NUCA缓存的好处和局限性,并提出了一种基于Drowsy和Way Adaptable技术的新颖混合方案。这种方案允许进一步减少泄漏,并限制了工艺变化对昏昏欲睡技术有效性的影响。

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