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A reconfigurable high-performance multiplier based on multi-granularity design and parallel acceleration

机译:基于多粒度设计和并行加速度的可重新配置的高性能乘法器

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This paper proposes a reconfigurable high performance multiplier (RHPM) based on multi-granularity design and parallel acceleration. Capable of supporting multiple precisions for different processing requirements, the RHPM can perform one 32×32, two 16×16, or four 8×8 bit unsigned/signed multiplication, or one 16×16, or two 8×8 bit complex number multiplication. The structures of the partial product generator and the partial product accumulator are improved in the paper, so as to reuse most of the hardware resources. Compression can be completed automatically by means of recording the validity of every bit in the partial product array which accelerates the computation dramatically. The RHPM is implemented with TSMC 28nm technology, exhibiting a 0.68s of the critical path delay, while consuming only 0.6281mW in power. Results show its significant superiority in terms of performance and power efficiency compared with our previous work or other similar products.
机译:本文提出了一种基于多粒度设计和平行加速度的可重构的高性能乘数(RHPM)。能够支持不同的处理要求的多种精度,RHPM可以执行一个32×32,216×16或四个8×8位无符号/签名,或一个16×16,或两个8×8位复数乘法。纸张中部分产品发生器和部分产品累加器的结构得到改善,以便重用大多数硬件资源。通过记录部分产品阵列中每位的每位的有效性,可以自动完成压缩,从而显着地加速了计算。 RHPM用TSMC 28NM技术实施,展示临界路径延迟的0.68秒,同时仅消耗0.6281MW的功率。结果表明,与我们以前的工作或其他类似产品相比,其在性能和功率效率方面具有显着优越性。

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