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Titlebook: Asynchronous Many-Task Systems and Applications; Second International Patrick Diehl,Joseph Schuchart,George Bosilca Conference proceedings

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,HPX with Spack and Singularity Containers: Evaluating Overheads for HPX/Kokkos Using an Astrophysicost, particularly machine-specific installs of commonly used packages. In this paper, we will use an astrophysics application using HPX-Kokkos and measure overheads on homogeneous resources, e.g. Supercomputer Fugaku, using CPUs only and on heterogenous resources, . LSU’s hybrid CPU and GPU system.
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Alexander Grigor’yan,Jiaxin Hu,Ka-Sing Lauciently handle irregular workloads..In this paper, we present our work on distBVH, a distributed contact solution using the DARMA/vt library for asynchronous tasking that is also capable of running on-node Kokkos-based kernels. We explore how distBVH addresses the various challenges of CSM contact p
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Alexander Grigor’yan,Jiaxin Hu,Ka-Sing Lauansfer. This study describes how the serial task abstraction of a tiled Cholesky factorization is made portable and scalable in the case of multi-device and multi-vendor heterogeneity on a node with NVIDIA and AMD GPUs by using MatRIS. First, we demonstrate that Cholesky in MatRIS provides multi-GPU
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Michael Hinz,Alexander Teplyaevin ALPS..The benchmark results are divided into two categories. The first contains a comparison of DLA-Future against widely used eigensolver implementations. The second category showcases the performance of the eigensolver in real applications. We present results generated with CP2K, where DLA-Futu
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Fractal Geometry and Stochastics VIto the existing AMT . that recently incorporated malleability. Our extension adds evolving capabilities providing automatic and transparent resource adjustments to meet changing computational workloads at runtime. Our easy-to-use abstractions require only minimal code additions; adjustments such as
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