运行时可重构系统的设计方法

Gareth Lee, G. Milne
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引用次数: 5

摘要

现场可编程逻辑(FPL)在需要高性能、低交货周期和现场软升级能力的市场中迅速建立起来。然而,目前很少有FPL系统利用运行时重新配置(RTR),而那些依赖于不频繁和粗粒度的重新配置。这部分是由于当前fpga的支持不足;很少有设备允许随机访问单个可配置逻辑块。但我们认为,这也在一定程度上反映了一个事实,即可重构计算系统的设计者缺乏指导设计过程的方法和工具。在软件工程中,对于可重构系统的设计,例如面向对象(OO),以及对于系统的建模和描述,例如UML,都有很好的建立范例。本文描述了我们在基于组件的RTR应用方法方面的进展。我们保留了有用的OO属性,这些属性支持严格的模块化设计风格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A methodology for design of run-time reconfigurable systems
Field-programmable logic (FPL) is rapidly becoming established in markets requiring high-performance, low lead time and the ability to perform soft-upgrades on site. However few current FPL systems utilise run-time reconfiguration (RTR) and those that do rely on infrequent and coarse-grained reconfiguration. This is partly due to poor support from current FPGAs; few devices allow random access to individual configurable logic blocks. But we believe it also partly reflects the fact that designers of reconfigurable computing systems lack methodologies and tools to guide the design process. In software engineering there are well established paradigms for the design of reconfigurable systems, such as object orientation (OO) and for the modelling and description of systems, such as UML. This paper describes our progress towards a component-based methodology for application to RTR. We have preserved useful OO properties which support a rigorous, modular design style.
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