2003Unpublished venueRequires access

Customizable embedded processor architectures

П. П. Петров, Alex Orailoğlu

Open publisher page 4 citations

Abstract

In this paper, we present a framework for dynamic application customization for high-performance and low-power embedded processors. The proposed architecture is capable of utilizing application information to boost the performance and lower the power consumption of the most important microarchitectural components such as instruction/data caches and the memory subsystem. We present a design framework, including CAD support infrastructure and reprogrammable hardware support, for a dynamically customizable microarchitecture. We outline the underlying algorithms for compile-time extraction of the utilized application properties and we present the architectural principles of the hardware support. Extensive experimental results confirm the efficacy of this novel embedded processor architecture.

About this research paper

What this paper is about

In this paper, we present a framework for dynamic application customization for high-performance and low-power embedded processors. The proposed architecture is capable of utilizing application information to boost the performance and lower the power consumption of the most important microarchitectural components such as instruction/data caches and the memory subsystem. We present a design framework, including CAD support infrastructure and reprogrammable hardware support, for a dynamically customizable microarchitecture. We outline the underlying algorithms for compile-time extraction of the utilized application properties and we present the architectural principles of the hardware support. Extensive experimental results confirm the efficacy of this novel embedded processor architecture.

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Available abstract

In this paper, we present a framework for dynamic application customization for high-performance and low-power embedded processors. The proposed architecture is capable of utilizing application information to boost the performance and lower the power consumption of the most important microarchitectural components such as instruction/data caches and the memory subsystem. We present a design framework, including CAD support infrastructure and reprogrammable hardware support, for a dynamically customizable microarchitecture. We outline the underlying algorithms for compile-time extraction of the utilized application properties and we present the architectural principles of the hardware support. Extensive experimental results confirm the efficacy of this novel embedded processor architecture.

Key concepts: Computer science, Microarchitecture, Computer architecture, Embedded system, Compiler, Architecture, Personalization, Memory architecture

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