一个自重构的处理器

P. French, R. Taylor
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引用次数: 15

摘要

现场可编程逻辑器件(fpga)的设计和制造的最新发展可能会改变人们设计和制造传统微处理器的方式。可在运行时修改其功能的未提交逻辑的使用使得动态应用专用集成电路的前景比以往任何时候都更接近现实。迄今为止,关于可重构逻辑的大部分工作都集中在其在协处理器和“胶水”角色中的应用上。本文讨论了如何用最小的“固定”或静态逻辑构造完整的处理器。结果表明,为了利用fpga,需要一种与传统架构完全不同的处理器。本文最后考虑了当前逻辑族的哪些演进将有利于这种类型的应用。
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A self-reconfigurable processor
Recent developments in the design and fabrication of field programmable logic devices (FPGAs) may well change the way in which one designs and fabricates conventional microprocessors. The use of uncommitted logic whose function may be modified at run time makes the prospect of dynamic application specific integrated circuits closer to reality than ever before. Much of the work to date on reconfigurable logic has focussed on its application in co-processor and 'glue' roles. This paper discusses how complete processors might be fabricated with a minimum of 'fixed' or static logic. It is shown that in order to exploit FPGAs, a processor that is radically different from conventional architectures is required. The paper concludes by considering what evolutions of current logic families would favour this type of application.<>
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Virtual wires: overcoming pin limitations in FPGA-based logic emulators The CM-2X: a hybrid CM-2/Xilinx prototype Hardware acceleration of divide-and-conquer paradigms: a case study Data-folding in SRAM configurable FPGAs WASMII: a data driven computer on a virtual hardware
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