Title :
Planet-sized batched dynamic adaptive meshes (P-BDAM)
Author :
Cignoni, Paolo ; Ganovelli, Fabio ; Gobbetti, Enrico ; Marton, Fabio ; Ponchio, Federico ; Scopigno, Roberto
Author_Institution :
ISTI - CNR, Pisa, Italy
Abstract :
We describe an efficient technique for out-of-core management and interactive rendering of planet sized textured terrain surfaces. The technique, called planet-sized batched dynamic adaptive meshes (P-BDAM), extends the BDAM approach by using as basic primitive a general triangulation of points on a displaced triangle. The proposed framework introduces several advances with respect to the state of the art: thanks to a batched host-to-graphics communication model, we outperform current adaptive tessellation solutions in terms of rendering speed; we guarantee overall geometric continuity, exploiting programmable graphics hardware to cope with the accuracy issues introduced by single precision floating points; we exploit a compressed out of core representation and speculative prefetching for hiding disk latency during rendering of out-of-core data; we efficiently construct high quality simplified representations with a novel distributed out of core simplification algorithm working on a standard PC network.
Keywords :
computational geometry; image resolution; rendering (computer graphics); terrain mapping; P-BDAM; core simplification algorithm; geometric continuity; graphics hardware; host-to-graphics communication; interactive rendering; multiresolution; out-of-core management; planet-sized batched dynamic adaptive meshes; points triangulation; single precision floating points; terrain surfaces; Computer graphics; Data visualization; Hardware; Mars; Planets; Prefetching; Rendering (computer graphics); Solid modeling; Tiles; World Wide Web;
Conference_Titel :
Visualization, 2003. VIS 2003. IEEE
Conference_Location :
Seattle, WA, USA
Print_ISBN :
0-7803-8120-3
DOI :
10.1109/VISUAL.2003.1250366