DocumentCode :
580116
Title :
A configurable algorithm for parallel image-compositing applications
Author :
Peterka, Tom ; Goodell, D. ; Ross, Robert ; Han-Wei Shen ; Thakur, Rahul
fYear :
2009
fDate :
14-20 Nov. 2009
Firstpage :
1
Lastpage :
10
Abstract :
Collective communication operations can dominate the cost of large-scale parallel algorithms. Image compositing in parallel scientific visualization is a reduction operation where this is the case. We present a new algorithm called Radix-k that in many cases performs better than existing compositing algorithms. It does so through a set of configurable parameters, the radices, that determine the number of communication partners in each message round. The algorithm embodies and unifies binary swap and direct-send, two of the best-known compositing methods, and enables numerous other configurations through appropriate choices of radices. While the algorithm is not tied to a particular computing architecture or network topology, the selection of radices allows Radix-k to take advantage of new supercomputer interconnect features such as multiporting. We show scalability across image size and system size, including both powers of two and nonpowers-of-two process counts.
Keywords :
data visualisation; digital arithmetic; image processing; parallel processing; Radix-k algorithm; binary swap; collective communication operation; communication partner; compositing algorithm; computing architecture; configurable algorithm; configurable parameter; direct-send; image size; large-scale parallel algorithm; message round; multiporting; network topology; parallel image-compositing application; parallel scientific visualization; process count; radix selection; reduction operation; supercomputer interconnect feature; system size; communication; image compositing; parallel scientific visualization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing Networking, Storage and Analysis, Proceedings of the Conference on
Conference_Location :
Portland, OR
Type :
conf
DOI :
10.1145/1654059.1654064
Filename :
6375565
Link To Document :
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