分类管道图像合成

M. Roth, D. Reiners
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引用次数: 4

摘要

最后排序渲染的核心优势是渲染节点数量理论上接近线性的可扩展性,这使得它对非常大的多边形和体积模型非常有吸引力。排序最后渲染的缺点是最后的图像合成步骤是必要的,其中大量的数据必须在渲染节点之间传输。即使使用千兆或更快的网络,图像合成也会带来开销,这使得在大型集群上对交互式应用程序使用sort last并行渲染变得不切实际。本文描述了排序管道合成算法,该算法将需要传输的数据量减少了一个数量级,其帧速率至少是广泛使用的二进制交换图像合成算法的两倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sorted pipeline image composition
The core advantage of sort last rendering is the theoretical nearly linear scalability in the number of rendering nodes, which makes it very attractive for very large polygonal and volumetric models. The disadvantage of sort last rendering is that a final image composition step is necessary in which a huge amount of data has to be transferred between the rendering nodes. Even with gigabit or faster networks the image composition introduces an overhead that makes it impractical to use sort last parallel rendering for interactive applications on large clusters. This paper describes the Sorted Pipeline Composition algorithm that reduces the amount of data that needs to be transferred by an order of magnitude and results in a frame rate that is at least twice as high as the widely used binary swap image composition algorithm.
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