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Power efficient scalable hybrid processor architecture

机译:高效节能的可扩展混合处理器架构

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摘要

This paper presents a general-purpose power efficient scalable hybrid architecture, that integrates scalar and vector processor architectures together to achieve better performance for both vectorizable and non-vectorizable portions of a program. As many applications require different cost and performance constraints, the scalability of the proposed design offers numerous variants in order to provide the required performance-cost ratios. Scalability is further investigated in terms of size of data elements, length of vector registers and addressing capability. The hybrid approach of integrating a fully capable scalar processor with a vector processor removes the need for inter-processor communication, thereby decreasing the delay associated with it. The goal is not only to reduce the power consumption but also to increase the power efficiency. The proposed architecture adopts several techniques to improve power efficiency, such as limited multithreading capability, compiler based techniques as well as dynamic power management.
机译:本文提出了一种通用的高效节能可扩展混合体系结构,该体系结构将标量和矢量处理器体系结构集成在一起,从而为程序的可矢量化和不可矢量化部分实现了更好的性能。由于许多应用需要不同的成本和性能约束,因此所提出设计的可扩展性提供了多种变体,以提供所需的性能成本比。在数据元素的大小,向量寄存器的长度和寻址能力方面进一步研究了可伸缩性。将功能齐全的标量处理器与矢量处理器集成在一起的混合方法消除了对处理器间通信的需求,从而减少了与之相关的延迟。目标不仅是减少功率消耗,而且是提高功率效率。所提出的体系结构采用了多种技术来提高电源效率,例如有限的多线程能力,基于编译器的技术以及动态电源管理。

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