Publication | Open Access
How the common component architecture advances computational science
20
Citations
38
References
2006
Year
Cluster ComputingEngineeringComputer ArchitectureSoftware EngineeringScience GatewayCommon Component ArchitectureHigh Performance ComputingComponent SystemData ScienceData IntegrationComputational ParadigmParallel ComputingOpen Source SupercomputingComponent-based Software EngineeringComputer EngineeringComputer ScienceComputational InfrastructureScidac 2Scidac ProgramSoftware DesignComponent TechnologyComputational ScienceParallel ProgrammingSystem Software
Computational chemists are using Common Component Architecture (CCA) technology to increase the parallel scalability of their application ten-fold. Combustion researchers are publishing science faster because the CCA manages software complexity for them. Both the solver and meshing communities in SciDAC are converging on community interface standards as a direct response to the novel level of interoperability that CCA presents. Yet, there is much more to do before component technology becomes mainstream computational science. This paper highlights the impact that the CCA has made on scientific applications, conveys some lessons learned from five years of the SciDAC program, and previews where applications could go with the additional capabilities that the CCA has planned for SciDAC 2.
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