资源感知的运行时细化行为FPGA规范

U. Malik, K. So, O. Diessel
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引用次数: 5

摘要

循环过程代数被用于探索映射到现场可编程逻辑电路的系统的行为规范。在本文中,我们报告了一个用循环语言给出的系统规范的解释器的实现和性能。在现场可编程技术的典型设计流程中,设计是静态划分、综合和映射到预分配资源的,与此相反,在这个系统中,指定的电路是从行为规范中提取出来的,当控制通过它们时,这些行为规范被划分、详细说明、映射和配置。我们报告了针对Celoxica RC1000协处理器的设计细节,并评估了该实现的初步性能结果。结果清楚地表明,我们的方法是克服资源约束的实用方法,特别是在这些约束在运行时发生变化的应用程序中。结果还建立了一个基准,以衡量未来的改进和替代方法。
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Resource-aware run-time elaboration of behavioural FPGA specifications
The Circal process algebra is being used to explore the behavioural specification of systems that are mapped to field programmable logic circuits. In this paper we report on the implementation and performance of an interpreter for system specifications given in the Circal language. In contrast to the typical design flow for field programmable technology in which designs are statically partitioned, synthesised, and mapped to pre-allocated resources, in this system the specified circuits are extracted from behavioural specifications that are partitioned, elaborated, mapped, and configured at run time as control passes through them. We report on the details of a design that targets the Celoxica RC1000 co-processor and assess preliminary performance results for this implementation. The results clearly demonstrate our method is a practical approach to overcome resource constraints, particularly in applications where these change at run time. The results also establish a benchmark against which to measure future improvements and alternative methods.
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