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A Perspective from Exploiting Heterogeneity on Networks-on-Chip Based on Dark Silicon Mitigation

机译:基于暗硅缓解的芯片网络上利用异质性的观点

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Dark silicon leads the integration development of multi-core chip to a standstill, which is mainly due to on-chip power constraints. NoC power occupies a significant portion of system power. Therefore, reducing the NoC power can reduce the dark silicon degree and reduce the performance degradation caused by the dark silicon. In this paper, we firstly analyzed the NoC power variation on the dark silicon degree, which has not been done before, and proposed a heterogeneous NoC scheme to reduce the dark silicon degree. By evaluating the power of homogeneous NoCs and heterogeneous NoCs separately under different power budgets, we verified that when NoCs adopt this heterogeneous scheme, most of the workloads would get one more core power saving from the dark silicon. In other words, at least one more core could be lighted on and the dark silicon degree can be reduced.
机译:暗硅导致多核芯片的集成开发到静止,这主要是由于片上电源约束。 NOC电源占据了系统电源的重要部分。因此,降低NOC功率可以降低暗硅度并降低由暗硅引起的性能劣化。在本文中,我们首先分析了NoC功率变化对暗硅度之前的暗硅度,并提出了一种非均匀的NOC方案,以降低暗硅度。通过在不同的电力预算下单独评估均匀NOC和异构NOC的权力,我们核实当NOCS采用这种异构方案时,大多数工作负载将获得从黑暗硅的核心节能。换句话说,可以点亮至少一个芯,并且可以减少暗硅度。

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