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An Energy-Efficient Directory Based Multicore Architecture with Wireless Routers to Minimize the Communication Latency

机译:具有无线路由器的节能目录型多核架构,可最大程度地减少通信延迟

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Multicore architectures suffer from high core-to-core communication latency primarily due to the cache's dynamic behavior. Studies suggest that a directory-approach can be helpful to reduce communication latency by storing the cached block information. Recent studies also indicate that a wireless router has potential to help decrease communication latency in multicore architectures. In this work, we propose a directory based multicore architecture with wireless routers to minimize communication latency. We simulate systems with mesh (used in the Standford Directory Architecture for SHared memory (DASH) architecture), wireless network-on-chip (WNoC), and the proposed directory based architecture with wireless routers. According to the experimental results, our proposed architecture outperforms the WNoC and the mesh architectures. It is observed that the proposed architecture helps decrease the communication delay by up to 15.71 percent and the total power consumption by up to 67.58 percent when compared with the mesh architecture. Similarly, the proposed architecture helps decrease the communication delay by up to 10.00 percent and the total power consumption by upto 58.10 percent when compared with the WNoC architecture. This is due to the fact that the proposed directory based mechanism helps reduce the number of core-to-core communication and the wireless routers help reduce the total number of hops.
机译:多核体系结构遭受高的核心到核心通信延迟,这主要是由于缓存的动态行为。研究表明,目录方法可以通过存储缓存的块信息来帮助减少通信延迟。最近的研究还表明,无线路由器有潜力帮助减少多核体系结构中的通信延迟。在这项工作中,我们提出了一种基于目录的多核体系结构,该体系结构带有无线路由器,以最大程度地减少通信延迟。我们模拟具有网格的系统(用于SHared内存的Standford目录体系结构(DASH)体系结构),无线片上网络(WNoC),以及拟议的基于目录的体系结构并带有无线路由器。根据实验结果,我们提出的体系结构优于WNoC和网格体系结构。可以看出,与网状架构相比,该架构有助于将通信延迟降低多达15.71%,将总功耗降低多达67.58%。同样,与WNoC架构相比,所提出的架构有助于将通信延迟降低多达10.00%,并将总功耗降低多达58.10%。这是由于以下事实:建议的基于目录的机制有助于减少核心到核心通信的数量,而无线路由器则有助于减少跃点的总数。

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