A design for a fast computer for scientific calculations

P. Melliar-Smith
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引用次数: 3

Abstract

Recently developed techniques, such as the associative fast store and Tomasulo's algorithm, will enable typical large scale computers to achieve 15 to 20 million instructions per second. The hardware of such machines has a very much greater potential power, but it is inefficiently used, being limited to decoding a single instruction per logic cycle. This paper proposes a technique whereby the programmer is provided with complex instructions capable of controlling the operation of the whole machine during one logic cycle. The use of such instructions for the inner loops of programs yields substantial performance improvements without significantly increased costs.
用于科学计算的快速计算机的设计
最近开发的技术,如联想快速存储和Tomasulo算法,将使典型的大型计算机达到每秒1500万到2000万条指令。这种机器的硬件具有更大的潜力,但它的使用效率很低,每个逻辑周期只能解码一条指令。本文提出了一种为程序员提供能够在一个逻辑周期内控制整个机器运行的复杂指令的技术。在程序的内循环中使用这种指令可以在不显著增加成本的情况下大幅提高性能。
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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