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Application Specific Networks-on-Chip Synthesis: An Energy Efficient Approach

机译:应用特定网络片上合成:节能方法

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Multiple Voltage Supply (MSV) chip fabrication is considered as a viable technique to address the power and thermal challenges of modern many-core systems. Efficiency of this technique has been demonstrated in application specific Network-on-Chips (NoCs) which have lots of cores and various operating voltages/frequencies. In this paper, a fourphase synthesis toolchain is proposed and evaluated for the design of multi-voltage application specific NoCs. The proposed synthesis toolchain performs i) core to router allocation, ii) voltage islanding to match voltages of cores connected to the same router, iii) hierarchical floorplanning to reduce the complexity of power delivery network, and iv) path allocation to connect routers based on the application requirements. The distinguishing feature of the proposed toolchain is that, for the first time, it performs the router allocation phase prior to voltage islanding. This offers more flexibility and more efficiency in the multi-voltage NoC synthesis. Experimental results on real world benchmarks show that the proposed toolchain provides 63% less energy consumption as well as more than double the design alternatives satisfying the benchmarks requirements compared to existing approaches.
机译:多次电压电源(MSV)芯片制造被认为是解决现代许多核心系统的动力和热挑战的可行技术。本技术的效率已经证明在具有大量核和各种操作电压/频率的特定网络上的芯片(NOC)中进行了证明。本文提出了一种四相合成工具链,并评估了多电压应用特定NOC的设计。所提出的合成工具链执行i)核心以路由器分配,ii)电压isclace,以匹配连接到相同路由器,iii的核心电压,iii)分层平面图,以降低电力传递网络的复杂性,并且基于的电力传递网络和IV)路径分配来连接路由器申请要求。所提出的工具链的区别特征是,首次执行电压岛之前的路由器分配相位。这在多电压NOC合成中提供了更大的灵活性和更高的效率。实验结果对现实世界基准表明,与现有方法相比,该拟议的工具链提供了63 %的能耗,以及满足基准要求的设计替代品。

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