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Straggler Mitigation by Delayed Relaunch of Tasks

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arxiv 1710.00414 v1 pith:XVLWC3F3 submitted 2017-10-01 cs.PF cs.DCcs.ITmath.IT

classification cs.PFcs.DCcs.ITmath.IT
keywords costredundancylatencystragglermitigationanalysisdatadelayed
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Redundancy for straggler mitigation, originally in data download and more recently in distributed computing context, has been shown to be effective both in theory and practice. Analysis of systems with redundancy has drawn significant attention and numerous papers have studied pain and gain of redundancy under various service models and assumptions on the straggler characteristics. We here present a cost (pain) vs. latency (gain) analysis of using simple replication or erasure coding for straggler mitigation in executing jobs with many tasks. We quantify the effect of the tail of task execution times and discuss tail heaviness as a decisive parameter for the cost and latency of using redundancy. Specifically, we find that coded redundancy achieves better cost vs. latency tradeoff than simple replication and can yield reduction in both cost and latency under less heavy tailed execution times. We show that delaying redundancy is not effective in reducing cost and that delayed relaunch of stragglers can yield significant reduction in cost and latency. We validate these observations by comparing with the simulations that use empirical distributions extracted from Google cluster data.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Straggling for Covert Message Passing on Complete Graphs

    cs.CR 2019-08 conditional novelty 6.0 of 10

    Splitting a message into coded chunks dropped off and picked up during random walks can hide communication from a patrolling warden, and the paper derives the covertness-delay tradeoff.

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