VLDB 2026 Research / reviewers in the wild / expert
Laetitia Laversa
dblp:225/6395
· DBLP profile ↗
6ranked-venue papers
0as first author
4since 2021 · last 2024
0000-0003-3775-6496ORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Software engineering, systems software and programming languages · 3 · 2 since 2021Theory of computation · 3 · 2 since 2021Artificial intelligence and machine learning · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | Execution-Time Opacity Control for Timed Automata
Étienne André 0001, Marie Duflot, Laetitia Laversa, Engel Lefaucheux |
SEFM | 3 |
| 2023 | A Partial Order View of Message-Passing Communication ModelsabstractThere is a wide variety of message-passing communication models, ranging from synchronous "rendez-vous" communications to fully asynchronous/out-of-order communications. For large-scale distributed systems, the communication model is determined by the transport layer of the network, and a few classes of orders of message delivery (FIFO, causally ordered) have been identified in the early days of distributed computing. For local-scale message-passing applications, e.g., running on a single machine, the communication model may be determined by the actual implementation of message buffers and by how FIFO queues are used. While large-scale communication models, such as causal ordering, are defined by logical axioms, local-scale models are often defined by an operational semantics. In this work, we connect these two approaches, and we present a unified hierarchy of communication models encompassing both large-scale and local-scale models, based on their concurrent behaviors. We also show that all the communication models we consider can be axiomatized in the monadic second order logic, and may therefore benefit from several bounded verification techniques based on bounded special treewidth. Cinzia Di Giusto, Davide Ferré, Laetitia Laversa, Étienne Lozes |
Proc. ACM Program. Lang. | 3 |
| 2021 | A Unifying Framework for Deciding SynchronizabilityabstractSeveral notions of synchronizability of a message-passing system have been introduced in the literature. Roughly, a system is called synchronizable if every execution can be rescheduled so that it meets certain criteria, e.g., a channel bound. We provide a framework, based on MSO logic and (special) tree-width, that unifies existing definitions, explains their good properties, and allows one to easily derive other, more general definitions and decidability results for synchronizability. Benedikt Bollig, Cinzia Di Giusto, Alain Finkel, Laetitia Laversa, Étienne Lozes, Amrita Suresh 0001 |
CONCUR | 4 |
| 2021 | Guessing the Buffer Bound for k-Synchronizability
Cinzia Di Giusto, Laetitia Laversa, Étienne Lozes |
CIAA | 2 |
| 2020 | On the k-synchronizability of SystemsabstractAbstract We study k-synchronizability: a system is k-synchronizable if any of its executions, up to reordering causally independent actions, can be divided into a succession of k-bounded interaction phases. We show two results (both for mailbox and peer-to-peer automata): first, the reachability problem is decidable for k-synchronizable systems; second, the membership problem (whether a given system is k-synchronizable) is decidable as well. Our proofs fix several important issues in previous attempts to prove these two results for mailbox automata. Cinzia Di Giusto, Laetitia Laversa, Étienne Lozes |
FoSSaCS | 2 |
| 2020 | Spiking neural networks modelled as timed automata: with parameter learning
Elisabetta De Maria, Cinzia Di Giusto, Laetitia Laversa |
Nat. Comput. | 3 |