Empirical characterization of the latency of long asynchronous pipelines with data-dependent module delays

J. Colmenar, O. Garnica, S. López, J. Hidalgo, J. Lanchares, R. Hermida
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引用次数: 3

Abstract

The paper has two aims: on one hand, to characterize the nature of the relationship between the latency of an asynchronous pipeline and the stage latencies when the latency of the stages is data-dependent. On the other hand, to find the closed-form expression which relates the mean value of the latency of the pipeline with the parameters which characterize the behaviour of the constituting stages. To attain these two goals, we have followed an empirical approach; we have developed a model of an asynchronous pipeline with n stages, the latency of the stages has been modelled using a probability density function and the pipeline behaviour has been simulated. From the results, we have defined linear equations which estimate the mean latency of the pipeline without needs of simulation. Finally, we have designed and implemented a 32/spl times/32 bit asynchronous pipelined multiplier, and we have tested the estimations on it.
具有数据依赖模块延迟的长异步管道延迟的经验表征
本文有两个目的:一方面,描述异步管道的延迟与阶段延迟之间关系的本质,当阶段延迟依赖于数据时。另一方面,找到将管道延迟的平均值与表征构成阶段行为的参数联系起来的封闭形式表达式。为了实现这两个目标,我们采取了经验主义的方法;我们开发了一个具有n个阶段的异步管道模型,使用概率密度函数对阶段的延迟进行了建模,并对管道行为进行了模拟。根据结果,我们定义了线性方程来估计管道的平均延迟,而不需要模拟。最后,我们设计并实现了一个32/spl倍/32位异步流水线乘法器,并在其上进行了估计测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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