低功率合成的轮廓驱动方法

S. Katkoori, Nand Kumar, L. Rader, R. Vemuri
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引用次数: 3

摘要

提出了一种剖面驱动的行为综合方法。对于给定的设计和一组输入向量,设计中的开关活动产生功耗的度量。参数化模块库中的每个模块由其每个输入向量的平均开关活动来表征。对于给定的行为规范,使用用户指定的输入进行模拟,以收集规范中各种操作和载体的概要数据。在性能估计阶段,使用带有预表征模块库中的交换活动数据的轮廓数据来估计满足其他用户指定约束(如面积和延迟)的所有模块集的平均交换活动。进一步合成了估计开关活动最小的模块集。实验结果表明,合成过程中估计的开关活度与合成完成后测量的实际开关活度平均偏差小于10%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A profile driven approach for low power synthesis
A profile driven approach to behavioral synthesis is presented. For a given design and a set of input vectors, the switching activity in the design yields a measure of the power consumption. Every module in a parameterized module library is characterized by its average switching activity per input vector. For a given behavioral specification, simulation using user specified inputs is carried out to collect the profile data of various operations and carriers in the specification. In the performance estimation phase, the profile data with the switching activity data in the precharacterized module library is used to estimate the average switching activity of all the module sets meeting other user specified constraints such as area and delay. The module set with the least estimated switching activity is further synthesized. Experimental results show that the switching activity estimated during synthesis deviates by less than 10% on the average from the actual switching activity measured after completing synthesis.
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