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An Energy Efficiency Feature Survey of the Intel Haswell Processor

机译:英特尔Haswell处理器的能效功能调查

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摘要

The recently introduced Intel Xeon E5-1600 v3 and E5-2600 v3 series processors -- codenamed Haswell-EP -- implement major changes compared to their predecessors. Among these changes are integrated voltage regulators that enable individual voltages and frequencies for every core. In this paper we analyze a number of consequences of this development that are of utmost importance for energy efficiency optimization strategies such as dynamic voltage and frequency scaling (DVFS) and dynamic concurrency throttling (DCT). This includes the enhanced RAPL implementation and its improved accuracy as it moves from modeling to actual measurement. Another fundamental change is that every clock speed above AVX frequency -- including nominal frequency -- is opportunistic and unreliable, which vastly decreases performance predictability with potential effects on scalability. Moreover, we characterize significantly changed p-state transition behavior, and determine crucial memory performance data.
机译:最近推出的英特尔至强E5-1600 v3和E5-2600 v3系列处理器(代号为Haswell-EP)与以前的版本相比进行了重大更改。在这些变化中,集成了稳压器,可为每个内核启用单独的电压和频率。在本文中,我们分析了此发展的许多后果,这些后果对于能源效率优化策略至关重要,例如动态电压和频率缩放(DVFS)和动态并发调节(DCT)。这包括增强的RAPL实施以及从建模到实际测量的改进准确性。另一个根本变化是,高于AVX频率(包括标称频率)的每个时钟速度都是机会性的且不可靠的,这极大地降低了性能可预测性,并可能影响可扩展性。此外,我们表征了显着变化的p状态过渡行为,并确定了关键的内存性能数据。

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