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The Task Completion Problem and its Application to Crash-Resilient Computation

  • Bar-Ilan University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

We study the Task Completion problem, in which M abstract tasks must be completed by a network of n crash-prone nodes, where up to an nodes may crash for some constant α < 1. Our main result is a deterministic congested-clique algorithm that completes all M tasks in O(⌈M/n⌉ log n) rounds. This round complexity is optimal up to log log n terms.The key technical ingredient underlying our algorithm is a novel combinatorial structure, which we call a load balancing covering family. In essence, this covering family induces, for each task, a subset of nodes responsible for attempting to complete it. The properties of the load balancing covering family guarantee that, regardless of which tasks remain incomplete and which nodes crash, (i) no node is overloaded with incomplete tasks, and (ii) no task is left with too few potential assigned nodes. This yields a balanced per-node workload and prevents non-crashed nodes from being concentrated on a small subset of tasks, thereby ensuring sufficient progress in completing the remaining tasks.As an application of our task completion method, we give a deterministic algorithm for simulating any T-round congested-clique algorithm in the presence of up to an crash faults in O(T2 log n + T log2 n) rounds. This improves upon a recent result by Censor-Hillel et al. (DISC 2025), which requires (Equation Presented ) rounds.

Original languageEnglish
Title of host publicationPODC 2026 - Proceedings of the 2026 ACM Symposium on Principles of Distributed Computing
PublisherAssociation for Computing Machinery
Pages348-359
Number of pages12
ISBN (Electronic)9798400725128
DOIs
StatePublished - 1 Jul 2026
Event45th ACM SIGACT-SIGOPS Symposium on Principles of Distributed Computing, PODC 2026 - Egham, United Kingdom
Duration: 6 Jul 202610 Jul 2026

Publication series

NameProceedings of the Annual ACM Symposium on Principles of Distributed Computing

Conference

Conference45th ACM SIGACT-SIGOPS Symposium on Principles of Distributed Computing, PODC 2026
Country/TerritoryUnited Kingdom
CityEgham
Period6/07/2610/07/26

Bibliographical note

Publisher Copyright:
© 2026 Copyright held by the owner/author(s).

Keywords

  • Congested Clique
  • Do-All
  • Fault Tolerance

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