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Algorithms for Multiple-Criterion Design of Microprogrammed Control Hardware

机译:微程序控制硬件的多准则设计算法

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This paper describes two algorithms designed to optimize memory size and controller performance for a microprogrammed controller. The algorithms accept two inputs: a set of interconnected registers and logical operators called the data paths, and a control flow graph which describes how these data paths are to be exercised. The Autonomy algorithm identifies data path elements which should be controlled directly from the microword without encoding. This algorithm aids the effectiveness of the subsequent encoding algorithm by eliminating some signals from consideration. A second algorithm, the Attraction algorithm, determines which microoperations will execute in parallel and which will be encoded into separate microinstruction formats. This algorithm accepts a microword width constraint and implements parallel operations in the microcode and the corresponding encoding. Both the parallelism and the encoding are determined by the algorithm. Application of these algorithms to an example, the PDP (FOOTNOTE: PDP is a registered trademark of Digital Equipment Corporation.)-11/40, has produced a control store design 14 percent wider and equal in parallelism to an equivalent portion of the human design.
机译:本文介绍了两种算法,旨在优化微程序控制器的存储器大小和控制器性能。该算法接受两个输入:一组互连的寄存器和称为数据路径的逻辑运算符,以及一个控制流程图,描述了如何行使这些数据路径。自治算法识别应直接从微字控制而无需编码的数据路径元素。该算法通过消除一些信号,从而有助于后续编码算法的有效性。第二种算法,即吸引力算法,确定哪些微操作将并行执行,哪些将被编码为单独的微指令格式。该算法接受微字宽度约束,并在微码和相应的编码中实现并行操作。并行性和编码均由算法确定。将这些算法应用于示例PDP(注:PDP是Digital Equipment Corporation的注册商标。)-11/40,已生成了一个控件存储设计,其宽度比人类设计的等效部分宽14%,并且相等。 。

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