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Behavioral Synthesis of Asynchronous Circuits Using Syntax Directed Translation as Backend

机译:用语法定向平移作为后端的异步电路行为综合

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摘要

The current state-of-the art in high-level synthesis of asynchronous circuits is syntax directed translation, which performs a one-to-one mapping of a HDL-description into a corresponding circuit. This paper presents a method for behavioral synthesis of asynchronous circuits which builds on top of syntax directed translation, and which allows the designer to perform automatic design space exploration guided by area or speed constraints. The paper presents an asynchronous implementation template consisting of a data-path and a control unit and its implementation using the asynchronous hardware description language Balsa [1]. This ”conventional” template architecture allows us to adapt traditional synchronous synthesis techniques for resource sharing, scheduling, binding etc, to the domain of asynchronous circuits. A prototype tool has been implemented on top of the Balsa framework, and the method is illustrated through the implementation of a set of example circuits. The main contributions of the paper are: the fundamental idea, the template architecture and its implementation using asynchronous handshake components, and the implementation of a prototype tool.
机译:异步电路的高级合成中的当前最新技术是语法定向转换,它执行HDL描述到对应电路的一对一映射。本文提出了一种基于语法定向转换的异步电路行为综合方法,该方法使设计人员能够在面积或速度约束的指导下进行自动设计空间探索。本文提出了一个由数据路径和控制单元组成的异步实现模板,以及使用异步硬件描述语言Balsa [1]的实现。这种“常规”模板架构使我们能够将传统的同步综合技术用于资源共享,调度,绑定等,以适应异步电路领域。在Balsa框架的顶部已实现了原型工具,并且通过一组示例电路的实现说明了该方法。本文的主要贡献是:基本概念,模板体系结构及其使用异步握手组件的实现以及原型工具的实现。

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