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Lowering the latency of interfaces for rationally-related frequencies

机译:降低合理相关频率的接口延迟

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We have introduced the Globally-Ratiochronous, Locally-Synchronous (GRLS) design paradigm, a design style based on rationally-related frequencies, with the objective to overcome the limitations of traditional multi-frequency systems by providing a flexibility close that of Globally-Asynchronous, Locally-Synchronous (GALS) systems but introducing performance penalties and overheads close to those of mesochronous systems. In this paper we focus on performances and improve the latency figures of our original GRLS interfaces by introducing two new interfaces, called GRLS-F and GRLS-noF, the first suitable for blocks with long computation time and the second for blocks with short computation time. The latency figures of the original GRLS interfaces are improved up to 50% without increasing complexity. The average latency figures of the resulting interfaces are lower than 1 Receiver clock cycle, the latency of a synchronous interface.
机译:我们推出了全局比例,本地同步(GRL)设计范式,基于合理相关频率的设计风格,目的是通过提供全同步的灵活性关闭传统多频系统的局限性来克服传统多频系统的局限性,本地同步(GALS)系统,但引入近距离中间系统的绩效惩罚和开销。在本文中,我们专注于表演,通过引入两个新的接口,称为GRLS-F和GRLS-NOF,改善了我们原始GRLS界面的延迟数据,这是具有长计算时间长的块的第一种块,并且具有短计算时间的块。 。原始GRLS界面的延迟形象可提高高达50%而不会增加复杂性。所得接口的平均延迟形象低于1接收器时钟周期,同步接口的延迟。

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