数字电路合成系统中的FSM合成

R. Amann, M. Neher, G. Rietsche, W. Rosenstiel, D. Schmid
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引用次数: 4

摘要

数字系统的逻辑综合可分为两个不同的任务:数据路径综合和控制综合。卡尔斯鲁厄数字设计系统(CADDY)解决了这两项任务。CADDY从行为电路描述出发,生成数据路径的结构和控制图(CG),这是合成有限状态机的起点。本文将重点介绍CADDY中FSM的合成部分CASTOR。它很好地适应了内部生成的控制图的特性,但它也是一个独立的FSM综合系统。我们将首先描述CASTOR中的FSM结构生成器,然后描述一种新的状态分配算法。最后,我们将给出一个标准基准集的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CASTOR: FSM Synthesis in a Digital Circuit Synthesis System
Logic synthesis of digital systems can be divided into two different tasks: synthesis of the datapath and control synthesis. The Carlsruhe Digital Design System (CADDY) solves both tasks. Starting from a behavioral circuit description CADDY generates the structure of the datapath and a control graph (CG), which is the starting point for the synthesis of a finite state machine. In this paper we will concentrate on CASTOR, the FSM synthesis part in CADDY. It is well adapted to the properties of the internally generated contol graphs, but it is also a stand alone FSM synthesis system. We will first describe the FSM structure generator in CASTOR, then a new state assignment algorithm. Finally we will present our results for a standard benchmark set.
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