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Atomic Broadcast: From Simple Message Diffusion to Byzantine Agreement

Journal Article journal-article Computer Science ยท Theoretical Computer Science

Abstract

In distributed systems subject to random communication delays and component failures, atomic broadcast can be used to implement the abstraction of synchronous replicated storage, a distributed storage that displays the same contents at every correct processor as of any clock time. This paper presents a systematic derivation of a family of atomic broadcast protocols that are tolerant of increasingly general failure classes: omission failures, timing failures, and authentication-detectable Byzantine failures. The protocols work for arbitrary point-to-point network topologies, and can tolerate any number of link and process failures up to network partitioning. After proving their correctness, we also prove two lower bounds that show that the protocols provide in many cases the best possible termination times.

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Context

Venue
Information and Computation
Archive span
1987-2026
Indexed papers
3021
Paper id
124523026692469431
v2026.09.13