Simulating stencil-based application on future Xeon Phi processor
C. Natarajan, Carl Beckmann, Anthony D. Nguyen, Mauricio Araya–Polo, Tryggve Fossum, Detlef Hohl
Abstract
C. Natarajan, Carl Beckmann, Anthony D. Nguyen, Mauricio Araya–Polo, Tryggve Fossum, Detlef Hohl
Abstract
An important application for hydrocarbon exploration is simulated on a performance model of a novel Intel architecture. The accuracy of the simulation models is demonstrated by correlating against an existing processor first and then against high-accuracy simulation of the new architecture. The results show that key architectural features of the coming Knights Landing processor will positively impact the performance of the application.
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An important application for hydrocarbon exploration is simulated on a performance model of a novel Intel architecture. The accuracy of the simulation models is demonstrated by correlating against an existing processor first and then against high-accuracy simulation of the new architecture. The results show that key architectural features of the coming Knights Landing processor will positively impact the performance of the application.
Key concepts: Stencil, Xeon, Xeon Phi, Computer science, Key (lock), Architecture, Computer architecture, Parallel computing