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Flicker: A Dynamically Adaptive Architecture for Power Limited Multicore Systems

机译:闪烁:功率受限的多核系统的动态自适应体系结构

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Future microprocessors may become so power constrained that not all transistors will be able to be powered on at once. These systems will be required to nimbly adapt to changes in the chip power that is allocated to general-purpose cores and to specialized accelerators. This paper presents Flicker, a general-purpose multicore architecture that dynamically adapts to varying and potentially stringent limits on allocated power. The Flicker core microarchitecture includes deconfigurable lanes-horizontal slices through the pipeline-that permit tailoring an individual core to the running application with lower overhead than microarchitecture-level adaptation, and greater flexibility than core-level power gating. To exploit Flicker's flexible pipeline architecture, a new online multicore optimization algorithm combines reduced sampling techniques, application of response surface models to online optimization, and heuristic online search. The approach efficiently finds a near-global-optimum configuration of lanes without requiring offline training, microarchitecture state, or foreknowledge of the workload. At high power allocations, core-level gating is highly effective, and slightly outperforms Flicker overall. However, under stringent power constraints, Flicker significantly outperforms core-level gating, achieving an average 27% performance improvement.
机译:未来的微处理器可能会受到功率限制,因此并非所有晶体管都可以立即上电。这些系统将需要灵活地适应分配给通用内核和专用加速器的芯片功率的变化。本文介绍了Flicker,它是一种通用的多核体系结构,可动态适应不断变化的,可能严格的分配功率限制。 Flicker核心微体系结构包括可配置的通道-通过管道的水平切片-允许以比微体系结构级适应更低的开销和比核心级功率门控更大的灵活性为运行中的应用量身定制单个内核。为了利用Flicker的灵活流水线架构,一种新的在线多核优化算法结合了简化的采样技术,将响应面模型应用于在线优化以及启发式在线搜索。该方法有效地找到了车道的近乎全局的最佳配置,而无需脱机训练,微体系结构状态或工作量的预知。在高功率分配下,内核级选通非常有效,总体上比Flicker稍好。但是,在严格的功率限制下,Flicker的性能明显优于内核级选通,性能平均提高了27%。

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  • 来源
    《Computer architecture news》 |2013年第3期|13-23|共11页
  • 作者单位

    Computer Systems Laboratory Cornell University Ithaca, NY 14853;

    Computer Systems Laboratory Cornell University Ithaca, NY 14853;

    Computer Systems Laboratory Cornell University Ithaca, NY 14853;

    School of Civil and Environmental Engineering Cornell University Ithaca, NY 14853;

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