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Asynchronous Pipeline Controller Based on Early Acknowledgement Protocol

机译:基于早期确认协议的异步管道控制器

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A new pipeline controller based on the Early Acknowledgement (EA) protocol is proposed for bundled-data asynchronous circuits. The EA protocol indicates acknowledgement by the falling edge of the acknowledgement signal in contrast to the 4-phase protocol, which indicates it on the rising edge. Thus, it can hide the overhead caused by the resetting period of the handshake cycle. Since we have designed our controller assuming several timing constraints, we first analyze the timing constraints under which our controller correctly works and then discuss their appropriateness. The performance of the controller is compared both analytically and experimentally with those of two other pipeline controllers, namely, a very high-speed 2-phase controller and an ordinary 4-phase controller. Our controller performs better than a 4-phase controller when pipeline has processing elements. We have obtained interesting results in the case of a non-linear pipeline with a Conditional Branch (CB) operation. Our controller has slightly better performance even compared to 2-phase controller in the case of a pipeline with processing elements. Its superiority lies in the EA protocol, which employs return-to-zero control signals like the 4-phase protocol. Hence, our controller for CB operation is simple in construction just like the 4-phase controller. A 2-phase controller for the same operation needs to have a slightly complicated mechanism to handle the 2-phase operation because of the non-return-to-zero control signals, and this results in a performance overhead.
机译:针对捆绑数据异步电路,提出了一种基于早期确认(EA)协议的新型流水线控制器。与4相协议相比,EA协议通过确认信号的下降沿指示确认,而4相协议则在上升沿进行指示。因此,它可以隐藏由握手周期的重置周期引起的开销。由于我们在设计控制器时假设了几个时序约束,因此我们首先分析控制器可以正常工作的时序约束,然后讨论其适用性。在分析和实验上,将控制器的性能与其他两个管道控制器(即超高速2相控制器和普通4相控制器)的性能进行了比较。当管道具有处理元件时,我们的控制器的性能要好于4相控制器。在带有条件分支(CB)操作的非线性管道的情况下,我们获得了有趣的结果。与带有处理元件的管线相比,即使与2相控制器相比,我们的控制器也具有更好的性能。它的优势在于EA协议,该协议采用归零控制信号(如4相协议)。因此,我们的CB操作控制器就像4相控制器一样,结构简单。由于不归零的控制信号,用于相同操作的2相控制器需要具有稍微复杂的机制来处理2相操作,这会导致性能开销。

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