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首页> 外文期刊>Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on >Reduction of Variation-Induced Energy Overhead in Multi-Core Processors
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Reduction of Variation-Induced Energy Overhead in Multi-Core Processors

机译:减少多核处理器中由变化引起的能量开销

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摘要

Core-to-core variability in future many-core chip multi-processors (CMPs) negatively impacts energy. Under-performing cores necessitate increasing the system voltage to maintain homogeneous core performance, introducing an energy overhead. Multiple supply voltages can be used to mitigate the impact of delay variation in CMPs. In this paper, we carefully analyze the use of a local search algorithm to pick near-optimal supply voltages while meeting a fixed performance target. With two system voltages, we prove our algorithm selects the global optimum and in the more general multiple voltage case we develop quantitative bounds. Using a custom simulation methodology on a real processor core, we show that two system voltages provide the most incremental benefit, reducing the energy overhead relative to a single voltage by 59–75% and total energy by 6–16%. Additionally, the worst 5–15% of cores in such systems necessitate increasingly larger amounts of incremental energy for a constant incremental performance gain. Therefore, turning off or disabling these cores is beneficial to a joint performance-energy metric.
机译:未来的多核芯片多处理器(CMP)的内核间差异会对能量产生负面影响。性能不佳的磁芯必须增加系统电压以维持均质的磁芯性能,从而带来能量开销。多个电源电压可用于减轻CMP中延迟变化的影响。在本文中,我们仔细分析了使用局部搜索算法来选择接近最佳的电源电压,同时又达到了固定的性能目标。在两个系统电压的情况下,我们证明了我们的算法选择了全局最优值,在更一般的多电压情况下,我们得出了定量界限。通过在真实处理器内核上使用定制的仿真方法,我们显示出两个系统电压提供了最大的增量收益,相对于单个电压,能耗降低了59%至75%,总能耗降低了6%至16%。此外,在此类系统中,最差的5%至15%的内核需要越来越多的增量能量才能获得稳定的增量性能增益。因此,关闭或禁用这些内核对于联合性能-能耗度量标准是有利的。

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