首页> 外文会议>37th annual international symposium on computer architecture 2010 >Energy-Performance Tradeoffs in Processor Architecture and Circuit Design: A Marginal Cost Analysis
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Energy-Performance Tradeoffs in Processor Architecture and Circuit Design: A Marginal Cost Analysis

机译:处理器架构和电路设计中的能源性能折衷:边际成本分析

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Power consumption has become a major constraint in the design of processors today. To optimize a processor for energy-efficiency requires an examination of energy-performance trade offs in all aspects of the processor design space, including both architectural and circuit design choices. In this paper, we apply an integrated architecture-circuit optimization framework to map out energy-performance trade-offs of several different high-level processor architectures. We show how the joint architecture-circuit space provides a trade-off range of approximately 6.5x in performance for 4x energy, and we identify the optimal architectures for different design objectives. We then show that many of the designs in this space come at very high marginal costs. Our results show that, for a large range of design objectives, voltage scaling is effective in efficiently trading off performance and energy, and that the choice of optimal architecture and circuits does not change much during voltage scaling. Finally, we show that with only two designs-a dual-issue in-order design and a dual-issue out-of-order design, both properly optimized-a large part of the energy-performance trade-off space can be covered within 3% of the optimal energy-efficiency.
机译:功耗已成为当今处理器设计的主要限制。为了优化处理器的能效,需要检查处理器设计空间各个方面的能量性能折衷,包括架构和电路设计选择。在本文中,我们应用了集成的架构-电路优化框架,以绘制出几种不同的高级处理器架构的能量性能折衷方案。我们展示了联合架构-电路空间如何为4倍的能量提供约6.5倍的性能折衷范围,并确定了针对不同设计目标的最佳架构。然后,我们证明该领域中的许多设计都具有很高的边际成本。我们的结果表明,对于大范围的设计目标,电压缩放有效地折衷了性能和能量,并且在电压缩放期间,最佳架构和电路的选择不会发生太大变化。最后,我们表明,只有两种设计(双问题有序设计和双问题无序设计)都经过了适当的优化,可以在其中涵盖很大一部分的能源性能权衡空间最佳能源效率的3%。

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