most citedOn Byzantine Containment Properties of the Protocol

8 citations · 26 across the 12 of their papers we have counts for

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cs.DC20101 cited

Practically Stabilizing Atomic Memory

Noga Alon, Hagit Attiya, Shlomi Dolev +3

A self-stabilizing simulation of a single-writer multi-reader atomic register is presented. The simulation works in asynchronous message-passing systems, and allows processes to cr…

cs.DC20103 cited

Snap-Stabilizing Linear Message Forwarding

Anissa Lamani, Alain Cournier, Swan Dubois +2

In this paper, we present the first snap-stabilizing message forwarding protocol that uses a number of buffers per node being inde- pendent of any global parameter, that is 4 buffe…

cs.DC20108 cited

On Byzantine Containment Properties of the Protocol

Swan Dubois, Toshimitsu Masuzawa, Sébastien Tixeuil

Self-stabilization is a versatile approach to fault-tolerance since it permits a distributed system to recover from any transient fault that arbitrarily corrupts the contents of al…

cs.DC20105 cited

The Impact of Topology on Byzantine Containment in Stabilization

Swan Dubois, Toshimitsu Masuzawa, Sébastien Tixeuil

Self-stabilization is an versatile approach to fault-tolerance since it permits a distributed system to recover from any transient fault that arbitrarily corrupts the contents of a…

cs.DC20103 cited

Bounding the Impact of Unbounded Attacks in Stabilization

Swan Dubois, Toshimitsu Masuzawa, Sébastien Tixeuil

Self-stabilization is a versatile approach to fault-tolerance since it permits a distributed system to recover from any transient fault that arbitrarily corrupts the contents of al…

cs.DC20101 cited

Construction auto-stabilisante d'arbre couvrant en dépit d'actions malicieuses

Swan Dubois, Toshimitsu Masuzawa, Sébastien Tixeuil

A self-stabilizing protocol provides by definition a tolerance to transient failures. Recently, a new class of self-stabilizing protocols appears. These protocols provides also a t…