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Leveraging the Core-Level Complementary Effects of PVT Variations to Reduce Timing Emergencies in Multi-Core Processors

机译:利用PVT变化的核心级别互补效果,减少多核处理器中的时序紧急情况

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Process, Voltage, and Temperature (PVT) variations can significantly degrade the performance benefits expected from next nanoscale technology. The primary circuit implication of the PVT variations is the resultant timing emergencies. In a multi-core processor running multiple programs, variations create spatial and temporal unbalance across the processing cores. Most prior schemes are dedicated to tolerating PVT variations individually for a single core, but ignore the opportunity of leveraging the complementary effects between variations and the intrinsic variation unbalance among individual cores. We find that the notorious delay impacts from different variations are not necessary aggregated. Cores with mild variations can share the violent workload from cores suffering large variations. If operated correctly, variations on different cores can help mitigating each other and result in a variation-mild environment. In this paper, we propose Timing Emergency Aware Thread Migration (TEA-TM), a delay sensor-based scheme to reduce system timing emergencies under PVT variations. Fourier transform and frequency domain analysis are conducted to provide the insights and the potential of the PVT co-optimization scheme. Experimental results show on average TEA-TM can help save up to 24% throughput loss, at the same time improve the system fairness by 85%.
机译:工艺,电压和温度(PVT)变化可以显着降低下一个纳米级技术的性能益处。 PVT变化的主要电路含义是所产生的时序紧急情况。在运行多个程序的多核处理器中,变体在处理核心上创建空间和时间不平衡。大多数现有计划专用于单独为单个核心单独容忍PVT变化,但忽略了利用变化之间的互补效果和单个核之间的内在变化不平衡的机会。我们发现,不同变化的臭名昭着的延误影响是不必汇总的。温和变化的核心可以与患有大变化的核心共享暴力工作量。如果正确操作,不同核的变化可以帮助缓解彼此并导致变异 - 轻度环境。在本文中,我们提出了时序紧急意识线程迁移(TEA-TM),一种基于延迟传感器的方案,以减少PVT变化下的系统时序紧急情况。进行傅里叶变换和频域分析,以提供PVT共同优化方案的见解和潜力。实验结果表明,平均TEA-TM可以帮助节省高达24%的产量损失,同时将系统公平提高85%。

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