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A Study of the Speedups and Competitiveness of FPGA Soft Processor Cores using Dynamic Hardware/Software Partitioning

机译:使用动态硬件/软件分区FPGA软处理器核心的加速和竞争力研究

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Field programmable gate arrays (FPGAs) provide designers with the ability to quickly create hardware circuits. Increases in FPGA configurable logic capacity and decreasing FPGA costs have enabled designers to more readily incorporate FPGAs in their designs. FPGA vendors have begun providing configurable soft processor cores that can be synthesized onto their FPGA products. While FPGAs with soft processor cores provide designers with increased flexibility, such processors typically have degraded performance and energy consumption compared to hard-core processors. Previously, we proposed warp processing, a technique capable of optimizing a software application by dynamically and transparently re-implementing critical software kernels as custom circuits in on-chip configurable logic. In this paper, we study the potential of a MicroBlaze soft-core based warp processing system to eliminate the performance and energy overhead of a soft-core processor compared to a hard-core processor. We demonstrate that the soft-core based warp processor achieves average speedups of 5.8 and energy reductions of 57% compared to the soft core alone. Our data shows that a soft-core based warp processor yields performance and energy consumption competitive with existing hard-core processors, thus expanding the usefulness of soft processor cores on FPGAs to a broader range of applications.
机译:现场可编程门阵列(FPGA)为设计人员提供快速创建硬件电路的能力。 FPGA可配置逻辑容量的增加和FPGA成本降低使设计人员能够更容易地将FPGA纳入其设计中。 FPGA供应商已开始提供可配置的软处理器核心,可在其FPGA产品上合成。虽然具有软处理器核心的FPGA,但与硬核处理器相比,这种处理器通常具有降低的性能和能量消耗。以前,我们提出了经线处理,一种技术能够通过动态地和透明地重新实现关键的软件内核作为片上可配置逻辑的自定义电路来优化软件应用的技术。在本文中,我们研究了微勃朗基于核心的经线处理系统的潜力,以消除软芯处理器的性能和能量开销与硬核处理器相比。我们证明,与单独的软芯相比,基于软芯的经线处理器的平均速度为5.8和57%的能量减少。我们的数据表明,基于软核的翘曲处理器会产生具有现有硬核处理器的性能和能耗竞争力,从而扩展了软处理器核心对FPGA到更广泛的应用范围内的有用性。

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