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Microprocessor Systems Modeling with MODLAN

机译:使用MODLAN进行微处理器系统建模

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摘要

The paper presents a digital logic modeling system based on MODLAN language. MODLAN, the Hardware Description Language (HDL), is especially useful for hierarchical modeling of microprocessor systems. The modeling system supports both natural design philosophies, i.e., top-down and bottom-up. At each design stage a user is provided with MODLAN language constructs, enabling notation of his design concept and its verification through simulation. Algorithmic level, instruction level, and chip level of modeling may be distinguished during a design of microprocessor systems. The modeling environment presents its applicability during the whole design process. The functional description of a microprocessor system has been dealt with more deeply. Both aspects of functional definition methodology, i.e., module's logic/algorithm notation and module's timing relations are discussed. Special emphasis is placed on presentation of dynamics in a digital element model. Four-parameter delay model and special timing tests for input signal timing dependencies verification are imbedded in a functional module's definition. Finally, the user's requirements for hierarchical modeling of the microprocessor system have been stated. A brief presentation of the MODLAN language is illustrated with examples of microcomputer elements descriptions.
机译:本文提出了一种基于MODLAN语言的数字逻辑建模系统。 MODLAN,硬件描述语言(HDL),对于微处理器系统的分层建模特别有用。建模系统支持自然的设计哲学,即自上而下和自下而上。在每个设计阶段,都会为用户提供MODLAN语言构造,从而可以表示其设计概念并通过仿真对其进行验证。在微处理器系统的设计过程中,可以区分算法级别,指令级别和芯片级别。建模环境在整个设计过程中都显示出其适用性。微处理器系统的功能描述已得到更深入的处理。讨论了功能定义方法的两个方面,即模块的逻辑/算法符号和模块的时序关系。特别强调数字元素模型中动力学的表示。四参数延迟模型和用于输入信号时序相关性验证的特殊时序测试已嵌入功能模块的定义中。最后,已经陈述了用户对微处理器系统进行分层建模的要求。用微型计算机元素描述的例子说明了MODLAN语言的简要介绍。

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