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Power management in high-level synthesis

机译:高级综合中的电源管理

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摘要

In this paper, we present a power-management methodology targeted toward high-level synthesis of data-dominated behavioral descriptions. It is founded on the observation that variable assignment can significantly affect power-management opportunities in the synthesized architecture, i.e., variable assignment determines whether or not spurious operations get executed by functional units in the architecture. We introduce perfectly power managed architectures, whose functional units do not execute any spurious operations. We present a variable assignment technique which, when used in high-level synthesis, produces architectures which are perfectly power-managed. Unlike many previously proposed power-management techniques, our method does not add latches or any other circuitry in front of functional units or registers and is, therefore, free of the attendant performance penalty. Experimental results indicate savings of up to 52.5% (average 23.0%) in power consumption over already power-optimized architectures. The area overheads due to our technique are also low and averaged 2.5% for our examples.
机译:在本文中,我们提出了一种针对数据主导的行为描述的高级综合的电源管理方法。基于这样的观察,变量分配会严重影响综合体系结构中的电源管理机会,即变量分配决定了虚假操作是否由体系结构中的功能单元执行。我们介绍了完美的电源管理架构,其功能单元不执行任何虚假操作。我们提出了一种变量分配技术,该技术在高级综合中使用时,会产生对电源进行完美管理的架构。与许多以前提出的电源管理技术不同,我们的方法不会在功能单元或寄存器的前面添加锁存器或任何其他电路,因此不会带来性能损失。实验结果表明,与已经进行了电源优化的架构相比,可节省多达52.5%(平均23.0%)的功耗。由于我们的技术而导致的区域开销也很低,在我们的示例中平均为2.5%。

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