DocumentCode :
3247565
Title :
XFastMesh: fast view-dependent meshing from external memory
Author :
DeCoro, Christopher ; Pajarola, Renato
Author_Institution :
Dept. of Inf. & Comput. Sci., California Univ., Irvine, CA, USA
fYear :
2002
fDate :
1-1 Nov. 2002
Firstpage :
363
Lastpage :
370
Abstract :
We present a novel disk-based multiresolution triangle mesh data structure that supports paging and view-dependent rendering of very large meshes at interactive frame rates from external memory. Our approach, called XFastMesh, is based on a view-dependent mesh simplification framework that represents half-edge collapse operations in a binary hierarchy known as a merge-tree forest. The proposed technique partitions the merge-tree forest into so-called detail blocks, which consist of binary subtrees, that are stored on disk. We present an efficient external memory data structure and file format that stores all detail information of the multiresolution triangulation method using significantly less storage then previously reported approaches. Furthermore, we present a paging algorithm that provides efficient loading and interactive rendering of large meshes from external memory at varying and view-dependent level-of-detail. The presented approach is highly efficient both in terms of space cost and paging performance.
Keywords :
data structures; mesh generation; paged storage; rendering (computer graphics); XFastMesh; binary subtrees; external memory data structure; file format; merge-tree forest; multiresolution triangle mesh data structure; multiresolution triangulation; paging; space cost; view-dependent meshing; view-dependent rendering; Chromium; Computer graphics; Computer science; Costs; Data structures; Displays; Image generation; Image storage; Rendering (computer graphics); Solid modeling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Visualization, 2002. VIS 2002. IEEE
Conference_Location :
Boston, MA, USA
Print_ISBN :
0-7803-7498-3
Type :
conf
DOI :
10.1109/VISUAL.2002.1183796
Filename :
1183796
Link To Document :
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