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A Fully Pipelined Modular Multiple Precision Floating Point Multiplier with Vector Support

机译:具有向量支持的全管线模块化多精度浮点乘法器

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The rapid evolution of reconfigurable computing places a great demand for Floating Point Multipliers (FPMs) capable of supporting wide range of application domains from scientific computing to multimedia applications. While former needs the support of higher precision formats like Double Precision(DP) / Extended Precision(EP), the latter needs Single Instruction Multiple Data (SIMD) feature in Single Precision (SP) mode. This paper presents the design of an FPM catering to both the needs using a hierarchical design approach. The FPM supports nine parallel SP multiplications every cycle with a latency of two cycles and one DP/EP multiplication every cycle with a latency of three cycles. The FPM is architected to support all four IEEE rounding modes. Compared to other FPMs that support multiple precision and SIMD processing, our FPM achieves 9x throughput for vectored SP mode without penalising the throughput for DP/EP modes. This improvement in performance is achieved at a modest cost of 30 percent more area and 11 percent more power. The modular architecture of the proposed FPM results in significant power reduction upto 80 percent for scalar SP mode.
机译:可重构计算的快速发展对浮点乘法器(FPM)提出了很高的要求,这些浮点乘法器能够支持从科学计算到多媒体应用的广泛应用领域。前者需要诸如Double Precision(DP)/ Extended Precision(EP)之类的更高精度格式的支持,而后者则需要在Single Precision(SP)模式下使用单指令多数据(SIMD)功能。本文介绍了一种FPM的设计,它使用分层设计方法来满足这两种需求。 FPM每个周期支持九个并行SP乘法,延迟为两个周期,每个周期支持一个DP / EP乘法,延迟为三个周期。 FPM设计为支持所有四种IEEE舍入模式。与支持多精度和SIMD处理的其他FPM相比,我们的FPM在矢量SP​​模式下可实现9倍的吞吐量,而不会影响DP / EP模式的吞吐量。性能的提高是通过增加30%的面积和11%的功率的适度成本实现的。拟议的FPM的模块化体系结构可将标量SP模式的功耗大幅降低80%。

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