Characterisation of microinstructions as destructible flows in controlled graphs

A. N. Akonteh
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Abstract

The flow of control signals in digital computers is modelled as destructible flows in controlled graphs where each vertex i ε V(G) represents some module of a system zn. By establishing a flow path from vertex i to vertex j an edge x ε E(G) is created which represents a microinstruction. For all sets of vertices V(G) exist a connectivity matrix C on which a set of microinstructions μ I(zn) can be defined. The model can be used to answer several computer design questions including cost-effective control paths, control functions extensions and coding and in digital systems design optimization.
微指令作为受控图中可破坏流的表征
数字计算机中的控制信号流被建模为受控图中的可破坏流,其中每个顶点i ε V(G)表示系统zn的某个模块。通过建立从顶点i到顶点j的流路径,创建了一条代表微指令的边x ε E(G)。对于所有顶点集合V(G)存在一个连通性矩阵C,在该连通性矩阵C上可以定义一组微指令μ I(zn)。该模型可用于回答几个计算机设计问题,包括经济有效的控制路径,控制功能扩展和编码以及数字系统设计优化。
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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