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Blue Matter: Strong Scaling of Molecular Dynamics on Blue Gene/L

机译:蓝色物质:蓝色基因/ L上分子动力学的强缩放

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摘要

This paper presents strong scaling performance data for the Blue Matter molecular dynamics framework using a novel n-body spatial decomposition and a collective communications technique implemented on both MPI and low level hardware interfaces. Using Blue Matter on Blue Gene/L, we have measured scalability through 16,384 nodes with measured time per time-step of under 2.3 milliseconds for a 43,222 atom protein/lipid system. This is equivalent to a simulation rate of over 76 nanoseconds per day and represents an unprecedented time-to-solution for biomolecular simulation as well as continued speed-up to fewer than three atoms per node. On a smaller, solvated lipid system with 13,758 atoms, we have achieved continued speedups through fewer than one atom per node and less than 2 milliseconds/time-step. On a 92,224 atom system, we have achieved floating point performance of over 1.8 TeraFlops/second on 16,384 nodes. Strong scaling of fixed-size classical molecular dynamics of biological systems to large numbers of nodes is necessary to extend the simulation time to the scale required to make contact with experimental data and derive biologically relevant insights.
机译:本文使用新颖的n体空间分解以及在MPI和低级硬件接口上实现的集合通信技术,为Blue Matter分子动力学框架提供了强大的缩放性能数据。在Blue Gene / L上使用Blue Matter,我们已经测量了16,384个节点的可扩展性,对于43,222个原子蛋白/脂质系统,每个时间步的测量时间不到2.3毫秒。这相当于每天超过76纳秒的仿真速度,代表了前所未有的生物分子仿真解决方案的时间以及每个节点少于3个原子的持续加速。在一个较小的,具有13,758个原子的溶剂化脂质系统上,我们通过每个节点少于一个原子且小于2毫秒/时间步的方式实现了持续的加速。在92,224个原子系统上,我们在16,384个节点上实现了超过1.8 TeraFlops /秒的浮点性能。必须将生物系统的固定大小经典分子动力学强有力地缩放到大量节点,才能将仿真时间扩展到与实验数据进行接触并得出生物学相关见解所需的规模。

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