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High Level Synthesis of Asynchronous Circuits from Data Flow Graphs

机译:从数据流图高级合成异步电路

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摘要

This paper presents a toolbox for the automatic generation of asynchronous circuits starting from a data flow graph description. The toolbox consists of a scheduling and code generation tool. We use traditional scheduling algorithms as for synchronous circuits, but have replaced the implied synchronous controller for an asynchronous distributed control network. The control circuit allows for true asynchronous operation of all digital resources and as a result of its scalable distributed topology allows unlimited resource sharing. The distributed controllers can be created by connecting a small number of pre-designed sub-controllers which are presented in this paper. Prototype IP-blocks of these sub-controller circuits have been designed in a 90nm ASIC design process. Our toolbox is a capable to generate large complex asynchronous solutions, with upto 20 percent power saving, and as least as good latency performance as of synchronous solutions.
机译:本文提供了一个从数据流图描述开始自动生成异步电路的工具箱。该工具箱包含一个调度和代码生成工具。我们将传统的调度算法用于同步电路,但已将其隐式同步控制器替换为异步分布式控制网络。控制电路允许所有数字资源的真正异步操作,并且由于其可扩展的分布式拓扑结构,可以实现无限的资源共享。分布式控制器可以通过连接少量本文中介绍的预先设计的子控制器来创建。这些子控制器电路的原型IP块已通过90nm ASIC设计过程进行了设计。我们的工具箱具有生成大型复杂的异步解决方案的能力,可以节省多达20%的功耗,并且具有与同步解决方案一样好的延迟性能。

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