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Extending a Work-Stealing Framework with Probabilistic Guards

机译:用概率卫士扩展窃取工作的框架

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We propose probabilistic guards and analyze their performance. To reduce the total task division cost, probabilistic guards can prevent thief workers from stealing small tasks from victim workers probabilistically. In this study, we have implemented probabilistic guards on a work-stealing framework called Tascell and have confirmed that they perform well. In theory, a thief may repeat an unbounded number of probabilistically prevented steal attempts until success if a victim uses a probabilistic guard that rejects steal attempts with a non-zero probability. Therefore, in this paper, we also propose a mechanism that invalidates probabilistic guards on demand by setting an upper limit to the number of repeated probabilistically prevented steal attempts. We evaluate its potential effects on probabilistic guards by measuring the actual numbers of repeated attempts until success. We also evaluate the performance of probabilistic guards with various upper limits. Finally, we propose and evaluate virtual probabilistic guards that act as probabilistic guards without repeating probabilistically prevented steal attempts and they exhibit superior performance.
机译:我们建议概率守卫并分析其性能。为了减少总的任务划分成本,概率警卫可以防止小偷工人偷偷地从受害者的工作人员那里窃取小任务。在这项研究中,我们在一个称为Tascell的工作窃取框架上实施了概率防护,并确认它们的性能很好。从理论上讲,如果受害人使用概率防护措施以非零概率拒绝偷窃尝试,则小偷可能会重复无数次概率阻止的偷窃尝试,直到成功为止。因此,在本文中,我们还提出了一种机制,该机制通过为重复概率概率阻止的窃取尝试次数设置上限来使按需概率防护失效。我们通过测量直到成功的重复尝试的实际次数,来评估其对概率卫兵的潜在影响。我们还评估了各种上限的概率警卫的表现。最后,我们提出并评估虚拟概率防护器,它们可以充当概率防护器,而无需重复概率性阻止的窃取尝试,并且它们表现出优异的性能。

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