COMMA: A Communications Methodology for Dynamic Module Reconfiguration in FPGAs

S. Koh, O. Diessel
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引用次数: 22

Abstract

On-going improvements in the scaling of FPGA device sizes and time-to-market pressures encourage the use of module-oriented design flows [3], while economic factors favour the reuse of smaller devices for high performance computational tasks. One of the core problems in proposing dynamic modular reconfiguration approaches is supporting the differing communications needs of the sequence of modules configured over time [2]. Proposals to date have not focussed on communications issues. Moreover, they have advocated the use of specific protocols [4], or they cannot be readily implemented [1], or they suffer from high overheads [5], or rely upon deprecated features such as tri-state lines [7]. In contrast, we propose a methodology for the rapid deployment of a communications infrastructure that provides the wires required by dynamic modules and allows users to implement the protocols they want. Our aim is to support new tiled dynamically reconfigurable architectures such as Virtex-4, as well as mature device families.
fpga中动态模块重构的通信方法
FPGA器件尺寸的持续改进和上市时间压力鼓励使用面向模块的设计流程[3],而经济因素则有利于重用较小的器件来完成高性能计算任务。提出动态模块化重构方法的核心问题之一是支持随时间配置的模块序列的不同通信需求[2]。迄今为止的建议没有集中在通信问题上。此外,他们提倡使用特定的协议[4],或者他们不能轻易实现[1],或者他们遭受高开销[5],或者依赖于被弃用的特性,如三状态线[7]。相反,我们提出了一种快速部署通信基础设施的方法,该基础设施提供动态模块所需的线路,并允许用户实现他们想要的协议。我们的目标是支持新的平铺式动态可重构架构,如Virtex-4,以及成熟的设备系列。
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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