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Titlebook: Software for Exascale Computing - SPPEXA 2016-2019; Hans-Joachim Bungartz,Severin Reiz,Wolfgang E. Nag Conference proceedings‘‘‘‘‘‘‘‘ 2020

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EXAMAG: Towards Exascale Simulations of the Magnetic Universeefront of today’s use of supercomputers, and are important scientific drivers for the future use of exaflop computing platforms. However, continued success in this field requires the development of new numerical methods that excel in accuracy, robustness, parallel scalability, and physical fidelity
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ExaStencils: Advanced Multigrid Solver Generationesses for parallelism, such as OpenMP, OpenCL or MPI. Project ExaStencils pursued a domain-specific approach with a language, called ExaSlang, that is stratified into four layers of abstraction, the most abstract being the formulation in continuous mathematics and the most concrete a full, automatic
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ExtraPeak: Advanced Automatic Performance Modeling for HPC Applicationssues already during the design or prototyping phase. Unfortunately, the difficulties of creating such models manually and the effort involved render performance modeling a topic limited to a relatively small community of experts. This article summarizes the results of the two projects Catwalk, which
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Conference proceedings‘‘‘‘‘‘‘‘ 2020le Computing" (SPPEXA) of the German Research Foundation (DFG) presented at the SPPEXA Symposium in Dresden during October 21-23, 2019. . In that respect, it both represents a continuation of Vol. 113 in Springer’s series .Lecture Notes in Computational Science and Engineering., the corresponding re
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ExaStencils: Advanced Multigrid Solver Generation problem and platform to be leveraged for optimization. We describe the approach, the software technology behind it and several case studies that demonstrate its feasibility and versatility: high-performance stencil codes can be engineered, ported and optimized more easily and effectively.
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