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Efficient asynchronous bundled-data pipelines for DCT matrix-vector multiplication

机译:用于DCT矩阵向量乘法的高效异步捆绑数据管道

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This paper demonstrates the design of efficient asynchronous bundled-data pipelines for the matrix-vector multiplication core of discrete cosine transforms (DCTs). The architecture is optimized for both zero and small-valued data, typical in DCT applications, yielding both high average performance and low average power. The proposed bundled-data pipelines include novel data-dependent delay lines with integrated control circuitry to efficiently implement speculative completion sensing. The control circuits are based on a novel control-circuit template that simplifies the design of such nonlinear pipelines. Extensive post-layout back-end timing analysis was performed to gain confidence in the timing margins as well as to quantify performance and energy. Comparison with a synchronous counterpart suggests that our best asynchronous design yields 30% higher average throughput with negligible energy overhead.
机译:本文演示了用于离散余弦变换(DCT)的矩阵矢量乘法核的高效异步捆绑数据管道的设计。该架构针对DCT应用中常见的零值和小数值数据进行了优化,从而产生了较高的平均性能和较低的平均功率。提出的捆绑数据流水线包括具有集成控制电路的新型数据相关延迟线,以有效地实现推测性完成感测。控制电路基于新颖的控制电路模板,该模板简化了此类非线性管线的设计。进行了广泛的布局后后端时序分析,以增强对时序裕度的信心,并量化性能和能量。与同步副本的比较表明,我们最好的异步设计可将平均吞吐量提高30%,而能耗却可以忽略不计。

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