CliffoSor: a parallel embedded architecture for geometric algebra and computer graphics

A. Gentile, Salvatore Segreto, F. Sorbello, G. Vassallo, S. Vitabile, V. Vullo
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引用次数: 19

Abstract

Geometric object representation and their transformations are the two key aspects in computer graphics applications. Traditionally, compute-intensive matrix calculations are involved to model and render 3D scenery. Geometric algebra (a.k.a. Clifford algebra) is gaining growing attention for its natural way to model geometric facts coupled with its being a powerful analytical tool for symbolic calculations. In this paper, the architecture of CliffoSor (Clifford Processor) is introduced. ClifforSor is an embedded parallel coprocessing core that offers direct hardware support to Clifford algebra operators. A prototype implementation on an FPGA board is detailed. Initial test results show more than 4/spl times/ speedup for Clifford products against the analogous operations in GAIGEN, a standard geometric algebra library generator for general purpose processors.
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CliffoSor:一个用于几何代数和计算机图形学的并行嵌入式架构
几何对象表示及其变换是计算机图形学应用中的两个关键方面。传统上,计算密集型的矩阵计算涉及到建模和渲染3D场景。几何代数(又称克利福德代数)以其自然的几何事实建模方式以及作为符号计算的强大分析工具而受到越来越多的关注。本文介绍了CliffoSor (Clifford Processor)的架构。Clifford是一个嵌入式并行协处理核心,为Clifford代数算子提供直接的硬件支持。详细介绍了在FPGA板上的原型实现。初步测试结果表明,与GAIGEN(用于通用处理器的标准几何代数库生成器)中的类似操作相比,Clifford产品的加速速度超过4/spl倍。
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