针对使用 L 系统进行植物几何建模的具体过程随规则定义的变化而变化的问题 ,提出了一种较为通用的基于 L 系统规则语言分析器的解决方法 ,即通过归纳和抽象得到可以定义多种 L 系统规则的语言 L- plants,并为其构造语言分析器 ,完成 L...针对使用 L 系统进行植物几何建模的具体过程随规则定义的变化而变化的问题 ,提出了一种较为通用的基于 L 系统规则语言分析器的解决方法 ,即通过归纳和抽象得到可以定义多种 L 系统规则的语言 L- plants,并为其构造语言分析器 ,完成 L 系统开始状态和规则的识别 ,进行规则替换 ,以形成最终的字符串 ,最后使用形状语法对字符串进行解释 ,建立出植物的几何模型 .实验证明 。展开更多
VHDL and its supporting environment are active domain in the field of logic design.In the paper the design principle and some key techniques to solve the problems on the implementation of the VHDL parser are introduce...VHDL and its supporting environment are active domain in the field of logic design.In the paper the design principle and some key techniques to solve the problems on the implementation of the VHDL parser are introduced. According to the methods discussed in the paper, the VHDL parser based on VHDL IEEE 1076 standard version is implemented and a series of strict tests are done. This VHDL parser is front-end tool of the VHDL high level synthesis and mixed level simulation system developed by the Research Center of ASIC of BIT.展开更多
文摘针对使用 L 系统进行植物几何建模的具体过程随规则定义的变化而变化的问题 ,提出了一种较为通用的基于 L 系统规则语言分析器的解决方法 ,即通过归纳和抽象得到可以定义多种 L 系统规则的语言 L- plants,并为其构造语言分析器 ,完成 L 系统开始状态和规则的识别 ,进行规则替换 ,以形成最终的字符串 ,最后使用形状语法对字符串进行解释 ,建立出植物的几何模型 .实验证明 。
文摘VHDL and its supporting environment are active domain in the field of logic design.In the paper the design principle and some key techniques to solve the problems on the implementation of the VHDL parser are introduced. According to the methods discussed in the paper, the VHDL parser based on VHDL IEEE 1076 standard version is implemented and a series of strict tests are done. This VHDL parser is front-end tool of the VHDL high level synthesis and mixed level simulation system developed by the Research Center of ASIC of BIT.