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Automated Design of Floating-Point Logarithm Functions on Integer Processors

机译:整数处理器上浮点对数函数的自动设计

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Nowadays the automated design of efficient floating-point implementations of correctly rounded elementary functions like cos, sin, log, exp, · · · is a real challenge. Indeed, the variety of hardware architectures and floating-point formats makes such implementation process tedious and error-prone. This article focuses on the particular case of floating-point logb(x) functions on integer processors. First it proposes a unified range reduction for logb(x), that enables to reduce the evaluation of these functions to a single well-chosen polynomial. Second it gives some sufficient conditions on the approximation and evaluation errors to guarantee correct rounding. And third it shows how to automate the implementation process on integer processors, when b ∈ {2, exp(1), 10}. Finally we illustrate how this automated approach enables to speedup the design of efficient implementations of logb(x) for standard floating-point formats.
机译:如今,正确舍入基本函数(例如cos,sin,log,exp,····)的有效浮点实现的自动化设计是一个真正的挑战。确实,各种硬件体系结构和浮点格式使这种实现过程变得乏味且容易出错。本文重点介绍整数处理器上浮点logb(x)函数的特殊情况。首先,它提出了logb(x)的统一范围缩小,从而可以将这些函数的评估减少为一个精心选择的多项式。其次,它为逼近和评估误差提供了一些充分的条件,以保证正确的舍入。第三,它展示了当b∈{2,exp(1),10}时,如何在整数处理器上自动化实现过程。最后,我们说明了这种自动化方法如何加快标准浮点格式的logb(x)有效实现的设计。

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