利用异构网络提高多核cmp直接相干协议的能量效率

Alberto Ros, Ricardo Fernández Pascual, M. Acacio
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引用次数: 2

摘要

直接一致性协议最近被提出作为基于目录的协议的替代方案,以保持多核cmp中的缓存一致性。与基于目录的协议不同,在直接一致性中,负责在缓存丢失的情况下提供所请求的数据(即所有者缓存)还负责保持更新的目录信息,并序列化所有内核对块的不同访问。这样,这些协议将请求直接发送到所有者缓存,从而避免了由于访问单独的目录(通常在主节点中)而导致的间接访问。提示机制在预测发送请求的块的当前所有者时确保了高命中率,但代价是显著增加网络流量,从而增加能源消耗。在这项工作中,我们展示了如何使用由两种链路组成的异构互连网络足以大幅减少提示消息消耗的能量,从而显著提高能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Heterogeneous Networks to Improve Energy Efficiency in Direct Coherence Protocols for Many-Core CMPs
Direct coherence protocols have been recently proposed as an alternative to directory-based protocols to keep cache coherence in many-core CMPs. Differently from directory-based protocols, in direct coherence the responsible for providing the requested data in case of a cache miss (i.e., the owner cache) is also tasked with keeping the updated directory information and serializing the different accesses to the block by all cores. This way, these protocols send requests directly to the owner cache, thus avoiding the indirection caused by accessing a separate directory (usually in the home node). A hints mechanism ensures a high hit rate when predicting the current owner of a block for sending requests, but at the price of significantly increasing network traffic, and consequently, energy consumption. In this work, we show how using a heterogeneous interconnection network composed of two kinds of links is enough to drastically reduce the energy consumed by hint messages, obtaining significant improvements in energy efficiency.
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