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Power-efficient clustering via incomplete bypassing

机译:通过不完全旁路实现节能集群

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Researchers have proposed clustered microarchitectures for performance and energy effciency. Typically, clustered microarchitectures offer fast, local bypassing between instructions within clusters but global bypasses are slower. Traditional clustered microarchitectures (TCM) are implemented by partitioning the register file and associated functional units to clusters. This paper demonstrates an alternate implementation - Incomplete bypass-based clustered microarchitecture (IBCM). IBCM reduces the length of bypass wires by 42.4% resulting in an 8.9% reduction of "Execute" stage delay. This delay reduction in the critical EX stage enables voltage scaling that results in significantly lower average power consumption (between 11.7% and 19.5% lower) while achieving identical performance.
机译:研究人员提出了集群微体系结构,以提高性能和能源效率。通常,集群微体系结构在集群内的指令之间提供快速的本地旁路,而全局旁路则较慢。传统的群集微体系结构(TCM)是通过将寄存器文件和关联的功能单元划分为群集来实现的。本文演示了另一种实现方式-不完全基于旁路的集群微体系结构(IBCM)。 IBCM将旁路导线的长度减少了42.4%,从而使“执行”阶段的延迟减少了8.9%。关键EX级中的这种延迟减少可实现电压缩放,从而在实现相同性能的同时显着降低平均功耗(降低11.7%至19.5%之间)。

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