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Spectral evolution simulation on leading multi-socket, multicore platforms

机译:领先的多插槽,多核平台上的光谱演化仿真

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Spectral evolution simulations based on the observed Very Long Baseline Interferometry (VLBI) radio-maps are of paramount importance to understand the nature of extragalactic objects in astrophysics. This work analyzes the performance and scaling of a spectral evolution algorithm on three leading multi-socket, multi-core architectures. We evaluate three parallel models with different levels of data-sharing: a sharing approach, a privatizing approach and a hybrid approach. Our experiments show that the data-privatizing model is reasonably efficient on medium scale multi-socket, multi-core systems (up to 48 cores) while regardless algorithmic and scheduling optimizations, sharing approach is unable to reach acceptable scalability on more than one socket. However, the hybrid model with a specific level of data-sharing gives the best scalability over all the considered multi-socket, multi-core systems.
机译:基于观测到的甚长基线干涉测量法(VLBI)无线电图的光谱演化模拟对于了解天体物理学中河外物体的性质至关重要。这项工作分析了三种领先的多路插座,多核架构上的频谱演进算法的性能和扩展性。我们评估了三个具有不同数据共享级别的并行模型:共享方法,私有化方法和混合方法。我们的实验表明,数据私有化模型在中等规模的多套接字,多核系统(最多48个内核)上是相当有效的,而无论算法和调度优化如何,共享方法都无法在多个套接字上达到可接受的可伸缩性。但是,具有特定级别的数据共享的混合模型在所有考虑的多插槽,多核系统上提供了最佳的可伸缩性。

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