A novel tool flow for increased routing configuration similarity in multi-mode circuits

Brahim Al Farisi, Elias Vansteenkiste, Karel Bruneel, D. Stroobandt
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引用次数: 4

Abstract

A multi-mode circuit implements the functionality of a limited number of circuits, called modes, of which at any given time only one needs to be realised. Using run-time reconfiguration (RTR) of an FPGA, all the modes can be time-multiplexed on the same reconfigurable region, requiring only an area that can contain the biggest mode. Typically, conventional run-time reconfiguration techniques generate a configuration of the reconfigurable region for every mode separately. This results in configurations that are bit-wise very different. Thus, in this case, many bits need to be changed in the configuration memory to switch between modes, leading to long reconfiguration times. In this paper we present a novel tool flow that retains the placement of the conventional RTR flow, but uses TRoute, a reconfiguration-aware connection router, to implement the connections of all modes simultaneously. DRoute stimulates the sharing of routing resources between connections of different modes. This results in a significant increase in the similarity between the routing configurations of the modes. In the experimental results it is shown that the number of routing configuration bits that needs to be rewritten is reduced with a factor between 2 and 4 compared to conventional techniques.
一种在多模电路中增加路由配置相似性的新型工具流
多模电路实现了有限数量的电路的功能,称为模式,在任何给定的时间只需要实现其中一个。利用FPGA的运行时重构(RTR),所有模式都可以在同一可重构区域上进行时间复用,只需要一个可以包含最大模式的区域。通常,传统的运行时重新配置技术分别为每个模式生成可重新配置区域的配置。这导致配置在位上非常不同。因此,在这种情况下,需要更改配置内存中的许多位以在模式之间切换,从而导致较长的重新配置时间。在本文中,我们提出了一种新的工具流,它保留了传统RTR流的位置,但使用TRoute,一种可重新配置的连接路由器,同时实现所有模式的连接。DRoute促进了不同模式的连接之间路由资源的共享。这将显著增加模式路由配置之间的相似性。实验结果表明,与传统技术相比,需要重写的路由配置位的数量减少了2到4倍。
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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