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An architecture simulator for National Semiconductor's adaptive processing architecture (NAPA)

机译:用于美国国家半导体的自适应处理体系结构(NAPA)的体系结构模拟器

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Early simulation is a very important tool in the development any large scale system. Accuracy and flexibility are critical characteristics which allow the architect to explore the design tradeoff space. Moreover, in many systems, especially those for reconfigurable computing, a good simulation environment will continue to be used long after the architecture solidifies, serving a variety of roles including as a platform for the development of run time systems, programming tools, benchmarks, and even end applications. Therefore, visibility, controllability and user interface are also important design considerations. National Semiconductor's Adaptive Processing Architecture (NAPA) integrates a Fixed Instruction set Processor (FIP), an Adaptive Logic Processor (ALP), memory and other support circuitry into a single reconfigurable computing device. The NAPA architecture simulator, NAPAsim, consists of a C language, cycle accurate model of the RISC core, peripherals and memories, coupled with an event driven logic simulator for modelling the user-defined contents of the reconfigurable logic and a Tcl/Tk based GUI to provide source level symbolic debugging capabilities. NAPAsim was developed to serve as both a tool for architectural exploration and as a platform for system and application software development.
机译:早期仿真是开发中的一个非常重要的工具,任何大规模系统。准确性和灵活性是允许建筑师探索设计权衡空间的关键特性。此外,在许多系统中,特别是那些用于可重新配置计算的系统中,在架构凝结的稳定性之后,将继续使用良好的仿真环境,服务于各种角色,包括作为开发运行时系统的平台,编程工具,基准和和甚至结束应用程序。因此,可见性,可控性和用户界面也是重要的设计考虑因素。国家半导体的自适应处理架构(NAPA)将固定指令集处理器(FIP),自适应逻辑处理器(ALP),存储器和其他支持电路集成到单个可重新配置的计算设备中。 NAPA架构模拟器Napasim由C语言,RISC核心,外围设备和存储器的循环精确模型组成,与事件驱动逻辑模拟器耦合,用于建模可重构逻辑的用户定义内容和基于TCL / TK的GUI提供源级别符号调试功能。开发了Napasim,作为建筑探索的工具,作为系统和应用软件开发的平台。

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