2002IEEE MicroRequires access

The Raw microprocessor: a computational fabric for software circuits and general-purpose programs

Michael Taylor, Jeehwan Kim, Joel B. Miller, David Wentzlaff, Fae Ghodrat, Bruce Greenwald, Henry Hoffman, P. V. Johnson, Jae-Wook Lee, W. Lee, Albert Ma, Arvind Saraf, M. Seneski, Nathan Shnidman, Volker Strumpen, Matthew I. Frank, Saman Amarasinghe, Anant Agarwal

Open publisher page 969 citations

Abstract

Wire delay is emerging as the natural limiter to microprocessor scalability. A new architectural approach could solve this problem, as well as deliver unprecedented performance, energy efficiency and cost effectiveness. The Raw microprocessor research prototype uses a scalable instruction set architecture to attack the emerging wire-delay problem by providing a parallel, software interface to the gate, wire and pin resources of the chip. An architecture that has direct, first-class analogs to all of these physical resources will ultimately let programmers achieve the maximum amount of performance and energy efficiency in the face of wire delay.

About this research paper

What this paper is about

Wire delay is emerging as the natural limiter to microprocessor scalability. A new architectural approach could solve this problem, as well as deliver unprecedented performance, energy efficiency and cost effectiveness. The Raw microprocessor research prototype uses a scalable instruction set architecture to attack the emerging wire-delay problem by providing a parallel, software interface to the gate, wire and pin resources of the chip. An architecture that has direct, first-class analogs to all of these physical resources will ultimately let programmers achieve the maximum amount of performance and energy efficiency in the face of wire delay.

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OpenAlex reports 969 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Wire delay is emerging as the natural limiter to microprocessor scalability. A new architectural approach could solve this problem, as well as deliver unprecedented performance, energy efficiency and cost effectiveness. The Raw microprocessor research prototype uses a scalable instruction set architecture to attack the emerging wire-delay problem by providing a parallel, software interface to the gate, wire and pin resources of the chip. An architecture that has direct, first-class analogs to all of these physical resources will ultimately let programmers achieve the maximum amount of performance and energy efficiency in the face of wire delay.

Key concepts: Computer science, Microprocessor, Scalability, Efficient energy use, Computer architecture, Embedded system, Instruction set, Software

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