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A VLIW Processor With Hardware Functions: Increasing Performance While Reducing Power

机译:具有硬件功能的VLIW处理器:在降低功耗的同时提高性能

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This brief presents a heterogeneous multicore embedded processor architecture designed to exceed performance of traditional embedded processors while reducing the power consumed compared to low-power embedded processors. At the heart of this architecture is a multicore very large instruction word (VLIW) containing homogeneous execution cores/functional units. Additionally, heterogeneous combinational hardware function cores are tightly integrated to the VLIW core providing an opportunity for improved performance and reduced energy consumption. Our processor has been synthesized for both a 90-nm Stratix II field-programmable gate array and a 160-nm cell-based application-specific integrated circuit from Oki each operating at a core frequency of 167 MHz. For selected multimedia and signal processing benchmarks, we show how this processor provides kernel performance improvements averaging 179X over an Intel StrongARM and 36X over an Intel XScale leading to application speedups averaging 30X over StrongARM and 10X over XScale
机译:本简介介绍了一种异构多核嵌入式处理器体系结构,该体系结构旨在超越传统嵌入式处理器的性能,同时与低功耗嵌入式处理器相比可降低功耗。该体系结构的核心是一个包含同类执行核心/功能单元的多核超大型指令字(VLIW)。此外,异构组合硬件功能内核紧密集成到VLIW内核,从而提供了提高性能和降低能耗的机会。我们的处理器已针对90纳米Stratix II现场可编程门阵列和160纳米来自Oki的基于单元的专用集成电路进行了综合,二者的工作核心频率均为167 MHz。对于选定的多媒体和信号处理基准测试,我们将展示该处理器如何提供比Intel StrongARM平均高179倍的内核性能和比Intel XScale高36倍的内核性能,从而使应用程序提速比StrongARM平均高30倍和XScale 10倍。

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