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Evaluation of the Intel Core i7 Turbo Boost feature

机译:英特尔核心I7涡轮增压功能评估

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The Intel Core i7 processor code named Nehalem has a novel feature called Turbo Boost which dynamically varies the frequencies of the processor's cores. The frequency of a core is determined by core temperature, the number of active cores, the estimated power and the estimated current consumption. We perform an extensive analysis of the Turbo Boost technology to characterize its behavior in varying workload conditions. In particular, we analyze how the activation of Turbo Boost is affected by inherent properties of applications (i.e., their rate of memory accesses) and by the overall load imposed on the processor. Furthermore, we analyze the capability of Turbo Boost to mitigate Amdahl's law by accelerating sequential phases of parallel applications. Finally, we estimate the impact of the Turbo Boost technology on the overall energy consumption. We found that Turbo Boost can provide (on average) up to a 6% reduction in execution time but can result in an increase in energy consumption up to 16%. Our results also indicate that Turbo Boost sets the processor to operate at maximum frequency (where it has the potential to provide the maximum gain in performance) when the mapping of threads to hardware contexts is sub-optimal.
机译:名为Nehalem的英特尔酷睿i7处理器代码具有名为Turbo Boost的新功能,动态地改变了处理器核心的频率。核心的频率由核心温度,有源核的数量,估计功率和估计电流消耗来确定。我们对Turbo Boost技术进行了广泛的分析,以表征其不同工作量条件的行为。特别是,我们分析了Turbo Boost的激活如何受应用的固有属性的影响(即它们的内存访问率)以及通过处理器上施加的整体负载。此外,我们通过加速并行应用的连续阶段来分析涡轮增压以减轻Amdahl的定律。最后,我们估计了涡轮增压技术对整体能源消耗的影响。我们发现涡轮增压可以提供(平均)的执行时间减少6%,但可能导致能耗增加到16%。我们的结果还表明,当线程到硬件上下文的映射是次优时,Turbo Boost将处理器设置为以最大频率(其中有可能提供最大增益)运行。

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