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Single instruction computer architecture and its a

机译:单指令计算机架构及其

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Abstract: A single processing computer system using only half-adder circuits is described. In addition, it is shown that only a single hard-wired instruction is needed in the control unit to obtain a complete instruction set for this general purpose computer. Such a system has several advantages. First it is intrinsically a RISC machine - in fact the 'ultimate RISC' machine. Second, because only a single type of logic element is employed the entire computer system can be easily realized on a single, highly integrated chip. Finally, due to the homogeneous nature of the computer's logic elements, the computer has possible implementations as an optical or chemical machine. This in turn suggests possible paradigms for neural computing and artificial intelligence. After showing how we can implement a full-adder, min, max and other operations using the half-adder, we use an array of such full-adders to implement the dilation operation for two black and white images. Next we implement the erosion operation of two black and white images using a relative complement function and the properties of erosion and dilation. This approach was inspired by papers by van der Poel in which a single instruction is used to furnish a complete set of general purpose instructions and by Bohm-Jacopini where it is shown that any problem can be solved using a Turing machine with one entry and one exit.!8
机译:摘要:描述了仅使用半加法器电路的单处理计算机系统。另外,示出了在控制单元中仅需要单个硬连线指令即可获得用于该通用计算机的完整指令集。这样的系统具有几个优点。首先,它本质上是RISC机器-实际上是“最终RISC”机器。其次,由于仅采用一种类型的逻辑元件,因此整个计算机系统可以在单个高度集成的芯片上轻松实现。最后,由于计算机逻辑元件的同质性,计算机可以实现为光学或化学机器。这反过来提示了神经计算和人工智能的可能范例。在展示了我们如何使用半加法器实现全加法器,最小,最大和其他运算之后,我们使用了这种全加法器的数组来实现两个黑白图像的膨胀运算。接下来,我们使用相对补函数以及腐蚀和膨胀特性来实现两个黑白图像的腐蚀操作。这种方法的灵感来自范德·珀尔(van der Poel)的论文,其中单个指令用于提供一套完整的通用指令,而鲍姆·雅可比尼(Bohm-Jacopini)则表明使用带一个入口和一个入口的图灵机可以解决任何问题。退出!! 8

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