Load balancing and skew resilience for parallel joins

Aleksandar Vitorovic, Mohammed Elseidy, Christoph E. Koch
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引用次数: 25

Abstract

We address the problem of load balancing for parallel joins.We show that the distribution of input data received and the output data produced by worker machines are both important for performance. As a result, previous work, which optimizes either for input or output, stands ineffective for load balancing. To that end, we propose a multi-stage load-balancing algorithm which considers the properties of both input and output data through sampling of the original join matrix. To do this efficiently, we propose a novel category of equi-weight histograms. To build them, we exploit state-of-the-art computational geometry algorithms for rectangle tiling. To our knowledge, we are the first to employ tiling algorithms for join load-balancing. In addition, we propose a novel, join-specialized tiling algorithm that has drastically lower time and space complexity than existing algorithms. Experiments show that our scheme outperforms state-of-the-art techniques by up to a factor of 15.
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并行连接的负载平衡和倾斜弹性
我们解决了并行连接的负载平衡问题。我们表明,接收到的输入数据和工作机器产生的输出数据的分布对性能都很重要。因此,之前针对输入或输出进行优化的工作对于负载平衡是无效的。为此,我们提出了一种多阶段负载平衡算法,该算法通过对原始连接矩阵的采样来考虑输入和输出数据的属性。为了有效地做到这一点,我们提出了一种新的等权直方图类别。为了构建它们,我们利用最先进的计算几何算法进行矩形平铺。据我们所知,我们是第一个使用平铺算法来实现连接负载平衡的。此外,我们提出了一种新颖的,连接专用的平铺算法,该算法比现有算法具有更低的时间和空间复杂度。实验表明,我们的方案比最先进的技术性能高出15倍。
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