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---
layout: page
title: CRDT Papers
---
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(see http://www.lri.fr/~filliatr/bibtex2html/),
with the following command:
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<h1>CRDT Papers</h1>
<p>This page contains a comprehensive list of research publications on CRDTs.
The data is available <a href="papers_bib.html">in BibTeX format</a>.
If you have anything to add or correct, please
<a href="https://github.com/ept/crdt-website/edit/gh-pages/papers.bib">edit the file on GitHub</a>
and send us a pull request.</p>
<p><strong>Select checkboxes to filter papers by topic:</strong></p>
<form id="papers-filter">
<input type="checkbox" id="introduction" name="introduction">
<label for="introduction">Introductions to CRDTs</label><br>
<input type="checkbox" id="systems" name="systems">
<label for="systems">Systems and apps using CRDTs</label><br>
<input type="checkbox" id="operation-based" name="operation-based">
<label for="operation-based">Operation-based CRDTs</label><br>
<input type="checkbox" id="state-based" name="state-based">
<label for="state-based">State-based CRDTs</label><br>
<input type="checkbox" id="delta-based" name="delta-based">
<label for="delta-based">Delta CRDTs</label><br>
<input type="checkbox" id="counters" name="counters">
<label for="counters">Counter CRDTs</label><br>
<input type="checkbox" id="text-editing" name="text-editing">
<label for="text-editing">Text editing/sequence CRDTs</label><br>
<input type="checkbox" id="undo" name="undo">
<label for="undo">Undoing operations</label><br>
<input type="checkbox" id="trees" name="trees">
<label for="trees">CRDTs for trees</label><br>
<input type="checkbox" id="security" name="security">
<label for="security">Security and Byzantine fault tolerance</label><br>
<input type="checkbox" id="computation" name="computation">
<label for="computation">Computation/programming</label><br>
<input type="checkbox" id="composition" name="composition">
<label for="composition">Composing CRDTs</label><br>
<input type="checkbox" id="invariants" name="invariants">
<label for="invariants">Invariants</label><br>
<input type="checkbox" id="verification" name="verification">
<label for="verification">Specification and verification</label><br>
<input type="checkbox" id="crdt-related" name="crdt-related">
<label for="crdt-related">Close relatives of CRDTs</label><br>
</form>
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<h2>Paper List</h2>
<p>(In reverse chronological order)</p>
<dl>
<dt>
[<a name="Ignat2024Synql">1</a>]
</dt>
<dd>
Claudia-Lavinia Ignat, Victorien Elvinger, and Habibatou Ba.
Synql: A CRDT-based approach for replicated relational databases
with integrity constraints.
In <em>24th International Conference on Distributed Applications and
Interoperable Systems</em>, DAIS 2024. Springer, June 2024.
[ <a href="papers_bib.html#Ignat2024Synql">bib</a> |
<a href="http://dx.doi.org/10.1007/978-3-031-62638-8_2">DOI</a> |
<a href="https://inria.hal.science/hal-04580135/file/DAIS2024.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: relational, invariants
</font></blockquote>
</dd>
<dt>
[<a name="Stewen2024undo">2</a>]
</dt>
<dd>
Leo Stewen and Martin Kleppmann.
Undo and redo support for replicated registers.
In <em>11th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2024, pages 1--7. ACM, April 2024.
[ <a href="papers_bib.html#Stewen2024undo">bib</a> |
<a href="http://dx.doi.org/10.1145/3642976.3653029">DOI</a> |
<a href="http://arxiv.org/abs/2404.11308">arXiv</a> ]
<blockquote><font size="-1">
Keywords: undo
</font></blockquote>
</dd>
<dt>
[<a name="Da2024move">3</a>]
</dt>
<dd>
Liangrun Da and Martin Kleppmann.
Extending JSON CRDTs with move operations.
In <em>11th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2024, pages 8--14. ACM, April 2024.
[ <a href="papers_bib.html#Da2024move">bib</a> |
<a href="http://dx.doi.org/10.1145/3642976.3653030">DOI</a> |
<a href="http://arxiv.org/abs/2311.14007">arXiv</a> ]
<blockquote><font size="-1">
Keywords: JSON, trees
</font></blockquote>
</dd>
<dt>
[<a name="Power2024lattices">4</a>]
</dt>
<dd>
Conor Power, Saikrishna Achalla, Ryan Cottone, Nathaniel Macasaet, and
Joseph M. Hellerstein.
Wrapping rings in lattices: An algebraic symbiosis of incremental
view maintenance and eventual consistency.
In <em>11th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2024, pages 15--22. ACM, April 2024.
[ <a href="papers_bib.html#Power2024lattices">bib</a> |
<a href="http://dx.doi.org/10.1145/3642976.3653031">DOI</a> |
<a href="https://dl.acm.org/doi/pdf/10.1145/3642976.3653031">http</a> ]
<blockquote><font size="-1">
Keywords: theory, computation, databases
</font></blockquote>
</dd>
<dt>
[<a name="Jacob2024Byzantine">5</a>]
</dt>
<dd>
Florian Jacob and Hannes Hartenstein.
Logical clocks and monotonicity for Byzantine-tolerant replicated
data types.
In <em>11th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2024, pages 37--43. ACM, April 2024.
[ <a href="papers_bib.html#Jacob2024Byzantine">bib</a> |
<a href="http://dx.doi.org/10.1145/3642976.3653034">DOI</a> |
<a href="https://dl.acm.org/doi/pdf/10.1145/3642976.3653034">http</a> ]
<blockquote><font size="-1">
Keywords: security, causal-consistency
</font></blockquote>
</dd>
<dt>
[<a name="Haas2024LoRe">6</a>]
</dt>
<dd>
Julian Haas, Ragnar Mogk, Elena Yanakieva, Annette Bieniusa, and Mira Mezini.
LoRe: A programming model for verifiably safe local-first software.
<em>ACM Transactions on Programming Languages and Systems</em>, 46(1),
January 2024.
[ <a href="papers_bib.html#Haas2024LoRe">bib</a> |
<a href="http://dx.doi.org/10.1145/3633769">DOI</a> |
<a href="http://arxiv.org/abs/2304.07133">arXiv</a> |
<a href="https://dl.acm.org/doi/pdf/10.1145/3633769">http</a> ]
<blockquote><font size="-1">
Keywords: verification, computation, invariants, systems, reactive programming, mixed-consistency
</font></blockquote>
</dd>
<dt>
[<a name="Nasirifard2023orderlessChain">7</a>]
</dt>
<dd>
Pezhman Nasirifard, Ruben Mayer, and Hans-Arno Jacobsen.
OrderlessChain: A CRDT-based BFT coordination-free blockchain
without global order of transactions.
In <em>24th International Middleware Conference</em>, Middleware 2023,
page 137–150. ACM, December 2023.
[ <a href="papers_bib.html#Nasirifard2023orderlessChain">bib</a> |
<a href="http://dx.doi.org/10.1145/3590140.3629111">DOI</a> |
<a href="https://epezhman.github.io/pubs/OrderlessChain.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: security, invariants, systems
</font></blockquote>
</dd>
<dt>
[<a name="Almeida2023approaches">8</a>]
</dt>
<dd>
Paulo Sérgio Almeida.
Approaches to conflict-free replicated data types.
October 2023.
[ <a href="papers_bib.html#Almeida2023approaches">bib</a> |
<a href="http://arxiv.org/abs/2310.18220">arXiv</a> |
<a href="https://arxiv.org/abs/2310.18220">http</a> ]
<blockquote><font size="-1">
Keywords: introduction, operation-based, state-based, delta-based, pure operation-based
</font></blockquote>
</dd>
<dt>
[<a name="Renaux2023accessControl">9</a>]
</dt>
<dd>
Thierry Renaux, Sam Van den Vonder, and Wolfgang De Meuter.
Secure RDTs: Enforcing access control policies for offline
available JSON data.
<em>Proceedings of the ACM on Programming Languages (PACMPL)</em>,
7(OOPSLA2), October 2023.
[ <a href="papers_bib.html#Renaux2023accessControl">bib</a> |
<a href="http://dx.doi.org/10.1145/3622802">DOI</a> |
<a href="https://soft.vub.ac.be/Publications/2023/vub-tr-soft-23-17.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: security, JSON, trees
</font></blockquote>
</dd>
<dt>
[<a name="Ou2023skipList">10</a>]
</dt>
<dd>
Yuran Ou and Jian Zhou.
RDSL: an efficient retrieval algorithm for group editing CRDT.
September 2023.
[ <a href="papers_bib.html#Ou2023skipList">bib</a> |
<a href="https://www.researchsquare.com/article/rs-3316287/v1">http</a> ]
<blockquote><font size="-1">
Keywords: text
</font></blockquote>
</dd>
<dt>
[<a name="Maheo2023oppnets">11</a>]
</dt>
<dd>
Yves Mahéo, Frédéric Guidec, and Camille Noûs.
CRDT-based collaborative editing in OppNets: a practical
experiment.
In <em>17th International Conference on Mobile Ubiquitous Computing,
Systems, Services and Technologies</em>, UBICOMM 2023, pages 13--21. IARIA,
September 2023.
[ <a href="papers_bib.html#Maheo2023oppnets">bib</a> |
<a href="https://www.thinkmind.org/index.php?view=article&articleid=ubicomm_2023_1_30_10015">http</a> |
<a href="https://hal.science/hal-04249567v1/document">http</a> ]
<blockquote><font size="-1">
Keywords: systems, Yjs
</font></blockquote>
</dd>
<dt>
[<a name="Zhang2023priorityQueue">12</a>]
</dt>
<dd>
Yuqi Zhang, Lingzhi Ouyang, Yu Huang, and Xiaoxing Ma.
Conflict-free replicated priority queue: Design, verification and
evaluation.
In <em>14th Asia-Pacific Symposium on Internetware</em>, Internetware
2023, pages 302--312. ACM, August 2023.
[ <a href="papers_bib.html#Zhang2023priorityQueue">bib</a> |
<a href="http://dx.doi.org/10.1145/3609437.3609452">DOI</a> ]
<blockquote><font size="-1">
Keywords: operation-based, priority queue, TLA+
</font></blockquote>
</dd>
<dt>
[<a name="Kuessner2023algebraic">13</a>]
</dt>
<dd>
Christian Kuessner, Ragnar Mogk, Anna-Katharina Wickert, and Mira Mezini.
Algebraic replicated data types: Programming secure local-first
software.
In <em>37th European Conference on Object-Oriented Programming</em>,
ECOOP 2023, pages 14:1--14:33. Schloss Dagstuhl, July 2023.
[ <a href="papers_bib.html#Kuessner2023algebraic">bib</a> |
<a href="http://dx.doi.org/10.4230/LIPIcs.ECOOP.2023.14">DOI</a> ]
<blockquote><font size="-1">
Keywords: delta-based, state-based, composition, security
</font></blockquote>
</dd>
<dt>
[<a name="DePorre2023VeriFx">14</a>]
</dt>
<dd>
Kevin De Porre, Carla Ferreira, and Elisa Gonzalez Boix.
VeriFx: Correct replicated data types for the masses.
In <em>37th European Conference on Object-Oriented Programming</em>,
ECOOP 2023, pages 9:1--9:45. Schloss Dagstuhl, July 2023.
[ <a href="papers_bib.html#DePorre2023VeriFx">bib</a> |
<a href="http://dx.doi.org/10.4230/LIPIcs.ECOOP.2023.9">DOI</a> |
<a href="http://arxiv.org/abs/2207.02502">arXiv</a> ]
<blockquote><font size="-1">
Keywords: verification, state-based, delta-based, operation-based, pure operation-based
</font></blockquote>
</dd>
<dt>
[<a name="Bauwens2023nested">15</a>]
</dt>
<dd>
Jim Bauwens and Elisa Gonzalez Boix.
Nested pure operation-based CRDTs.
In <em>37th European Conference on Object-Oriented Programming</em>,
ECOOP 2023, pages 2:1--2:26. Schloss Dagstuhl, July 2023.
[ <a href="papers_bib.html#Bauwens2023nested">bib</a> |
<a href="http://dx.doi.org/10.4230/LIPIcs.ECOOP.2023.2">DOI</a> ]
<blockquote><font size="-1">
Keywords: composition, pure operation-based
</font></blockquote>
</dd>
<dt>
[<a name="Lavoie2023bftlog">16</a>]
</dt>
<dd>
Erick Lavoie.
2P-BFT-Log: 2-phase single-author append-only log for adversarial
environments.
July 2023.
[ <a href="papers_bib.html#Lavoie2023bftlog">bib</a> |
<a href="http://arxiv.org/abs/2307.08381">arXiv</a> |
<a href="https://arxiv.org/abs/2307.08381">http</a> ]
<blockquote><font size="-1">
Keywords: state-based, security
</font></blockquote>
</dd>
<dt>
[<a name="Liittschwager2023coalgebra">17</a>]
</dt>
<dd>
Nathan Liittschwager, Stelios Tsampas, Jonathan Castello, and Lindsey Kuper.
CRDTs, coalgebraically (early ideas).
In <em>10th Conference on Algebra and Coalgebra in Computer
Science</em>, CALCO 2023, June 2023.
[ <a href="papers_bib.html#Liittschwager2023coalgebra">bib</a> |
<a href="https://users.soe.ucsc.edu/~lkuper/papers/crdts-coalgebraically-calco23.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: specification, theory
</font></blockquote>
</dd>
<dt>
[<a name="Lavoie2023gocledger">18</a>]
</dt>
<dd>
Erick Lavoie.
GOC-Ledger: State-based conflict-free replicated ledger from
grow-only counters.
May 2023.
[ <a href="papers_bib.html#Lavoie2023gocledger">bib</a> |
<a href="http://arxiv.org/abs/2305.16976">arXiv</a> |
<a href="https://arxiv.org/abs/2305.16976">http</a> ]
<blockquote><font size="-1">
Keywords: state-based, security
</font></blockquote>
</dd>
<dt>
[<a name="Nieto2023modular">19</a>]
</dt>
<dd>
Abel Nieto, Arnaud Daby-Seesaram, Léon Gondelman, Amin Timany, and Lars
Birkedal.
Modular verification of state-based CRDTs in separation logic.
In <em>37th European Conference on Object-Oriented Programming</em>,
ECOOP 2023. Schloss Dagstuhl, July 2023.
[ <a href="papers_bib.html#Nieto2023modular">bib</a> |
<a href="http://dx.doi.org/10.4230/LIPIcs.ECOOP.2023.12">DOI</a> |
<a href="https://iris-project.org/pdfs/2023-ecoop-crdts.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: specification, verification, state-based
</font></blockquote>
</dd>
<dt>
[<a name="Zakhour2023Propel">20</a>]
</dt>
<dd>
George Zakhour, Pascal Weisenburger, and Guido Salvaneschi.
Type-checking CRDT convergence.
<em>Proceedings of the ACM on Programming Languages</em>, 7(PLDI), June
2023.
[ <a href="papers_bib.html#Zakhour2023Propel">bib</a> |
<a href="http://dx.doi.org/10.1145/3591276">DOI</a> |
<a href="https://programming-group.com/assets/pdf/papers/2023_Type-Checking-CRDT-Convergence.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: verification, computation, Propel
</font></blockquote>
</dd>
<dt>
[<a name="Fernandes2023causal">21</a>]
</dt>
<dd>
Pedro Henrique Fernandes and Carlos Baquero.
Probabilistic causal contexts for scalable CRDTs.
In <em>10th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2023, page 1–8. ACM, May 2023.
[ <a href="papers_bib.html#Fernandes2023causal">bib</a> |
<a href="http://dx.doi.org/10.1145/3578358.3591331">DOI</a> ]
<blockquote><font size="-1">
Keywords: causal-consistency
</font></blockquote>
</dd>
<dt>
[<a name="Yanakieva2023spreadsheets">22</a>]
</dt>
<dd>
Elena Yanakieva, Philipp Bird, and Annette Bieniusa.
A study of semantics for CRDT-based collaborative spreadsheets.
In <em>10th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2023, page 37–43. ACM, May 2023.
[ <a href="papers_bib.html#Yanakieva2023spreadsheets">bib</a> |
<a href="http://dx.doi.org/10.1145/3578358.3591324">DOI</a> ]
<blockquote><font size="-1">
Keywords: composition, systems
</font></blockquote>
</dd>
<dt>
[<a name="Jeffery2023AMC">23</a>]
</dt>
<dd>
Andrew Jeffery and Richard Mortier.
AMC: Towards trustworthy and explorable CRDT applications with
the Automerge Model Checker.
In <em>10th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2023, page 44–50. ACM, May 2023.
[ <a href="papers_bib.html#Jeffery2023AMC">bib</a> |
<a href="http://dx.doi.org/10.1145/3578358.3591326">DOI</a> |
<a href="https://api.repository.cam.ac.uk/server/api/core/bitstreams/e0f9f934-9e79-4485-8745-f0a3191ff70c/content">http</a> ]
<blockquote><font size="-1">
Keywords: verification, computation, systems, AMC
</font></blockquote>
</dd>
<dt>
[<a name="Bauwens2023NLP">24</a>]
</dt>
<dd>
Jim Bauwens, Kevin De Porre, and Elisa Gonzalez Boix.
[short paper] Towards improved collaborative text editing CRDTs
by using natural language processing.
In <em>10th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2023, page 51–55. ACM, May 2023.
[ <a href="papers_bib.html#Bauwens2023NLP">bib</a> |
<a href="http://dx.doi.org/10.1145/3578358.3591330">DOI</a> ]
<blockquote><font size="-1">
Keywords: text-editing
</font></blockquote>
</dd>
<dt>
[<a name="Weidner2023foreach">25</a>]
</dt>
<dd>
Matthew Weidner, Ria Pradeep, Benito Geordie, and Heather Miller.
For-each operations in collaborative apps.
In <em>10th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2023, page 56–62. ACM, May 2023.
[ <a href="papers_bib.html#Weidner2023foreach">bib</a> |
<a href="http://dx.doi.org/10.1145/3578358.3591323">DOI</a> |
<a href="http://arxiv.org/abs/2304.03141">arXiv</a> ]
<blockquote><font size="-1">
Keywords: composition
</font></blockquote>
</dd>
<dt>
[<a name="Jacob2023byzantine">26</a>]
</dt>
<dd>
Florian Jacob and Hannes Hartenstein.
On extend-only directed posets and derived Byzantine-tolerant
replicated data types.
In <em>10th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2023, page 63–69. ACM, May 2023.
[ <a href="papers_bib.html#Jacob2023byzantine">bib</a> |
<a href="http://dx.doi.org/10.1145/3578358.3591333">DOI</a> |
<a href="http://arxiv.org/abs/2304.04318">arXiv</a> ]
<blockquote><font size="-1">
Keywords: security, causal-consistency
</font></blockquote>
</dd>
<dt>
[<a name="Zhang2023experience">27</a>]
</dt>
<dd>
Yicheng Zhang, Matthew Weidner, and Heather Miller.
Programmer experience when using CRDTs to build collaborative
webapps: Initial insights.
In <em>13th Annual Workshop on the Intersection of HCI and PL</em>,
PLATEAU 2023, February 2023.
[ <a href="papers_bib.html#Zhang2023experience">bib</a> |
<a href="http://dx.doi.org/10.1184/R1/22277341.v1">DOI</a> |
<a href="https://kilthub.cmu.edu/articles/conference_contribution/Programmer_Experience_When_Using_CRDTs_to_Build_Collaborative_Webapps_Initial_Insights/22277341/1">http</a> ]
<blockquote><font size="-1">
Keywords: user-study, computation, composition
</font></blockquote>
</dd>
<dt>
[<a name="Guidec2022opportunistic">28</a>]
</dt>
<dd>
Frédéric Guidec, Yves Mahéo, and Camille Noûs.
Supporting conflict-free replicated data types in opportunistic
networks.
<em>Peer-to-Peer Networking and Applications</em>, 16:395–419, January
2023.
[ <a href="papers_bib.html#Guidec2022opportunistic">bib</a> |
<a href="http://dx.doi.org/10.1007/s12083-022-01404-6">DOI</a> ]
<blockquote><font size="-1">
Keywords: systems, networks
</font></blockquote>
</dd>
<dt>
[<a name="Laddad2022CALM">29</a>]
</dt>
<dd>
Shadaj Laddad, Conor Power, Mae Milano, Alvin Cheung, Natacha Crooks, and
Joseph M. Hellerstein.
Keep CALM and CRDT on.
<em>Proceedings of the VLDB Endowment</em>, 16(4):856–863, December
2022.
[ <a href="papers_bib.html#Laddad2022CALM">bib</a> |
<a href="http://dx.doi.org/10.14778/3574245.3574268">DOI</a> |
<a href="http://arxiv.org/abs/2210.12605">arXiv</a> |
<a href="https://www.vldb.org/pvldb/vol16/p856-power.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: computation, crdt-related
</font></blockquote>
</dd>
<dt>
[<a name="Tschudin2022connectionless">30</a>]
</dt>
<dd>
Christian Tschudin.
A connectionless grow-only set CRDT.
In <em>3rd International Workshop on Distributed Infrastructure for
the Common Good</em>, DICG 2022, page 25–30. ACM, November 2022.
[ <a href="papers_bib.html#Tschudin2022connectionless">bib</a> |
<a href="http://dx.doi.org/10.1145/3565383.3566110">DOI</a> |
<a href="https://dicg-workshop.github.io/2022/papers/tschudin.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: delta-based, set-crdt
</font></blockquote>
</dd>
<dt>
[<a name="Jannes2022secure">31</a>]
</dt>
<dd>
Kristof Jannes, Bert Lagaisse, and Wouter Joosen.
Secure replication for client-centric data stores.
In <em>3rd International Workshop on Distributed Infrastructure for
the Common Good</em>, DICG 2022, pages 31--36. ACM, November 2022.
[ <a href="papers_bib.html#Jannes2022secure">bib</a> |
<a href="http://dx.doi.org/10.1145/3565383.3566111">DOI</a> |
<a href="https://kristofjannes.com/papers/dicg22.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: state-based, systems, security
</font></blockquote>
</dd>
<dt>
[<a name="Litt2022peritext">32</a>]
</dt>
<dd>
Geoffrey Litt, Sarah Lim, Martin Kleppmann, and Peter van Hardenberg.
Peritext: A CRDT for collaborative rich text editing.
<em>Proceedings of the ACM on Human-Computer Interaction</em>, 6(CSCW2),
November 2022.
[ <a href="papers_bib.html#Litt2022peritext">bib</a> |
<a href="http://dx.doi.org/10.1145/3555644">DOI</a> |
<a href="https://www.inkandswitch.com/peritext/static/cscw-publication.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: text-editing, systems
</font></blockquote>
</dd>
<dt>
[<a name="Laddad2022lifting">33</a>]
</dt>
<dd>
Shadaj Laddad, Conor Power, Mae Milano, Alvin Cheung, and Joseph M.
Hellerstein.
Katara: Synthesizing CRDTs with verified lifting.
<em>Proceedings of the ACM on Programming Languages</em>,
6(OOPSLA2):1349--1377, October 2022.
[ <a href="papers_bib.html#Laddad2022lifting">bib</a> |
<a href="http://dx.doi.org/10.1145/3563336">DOI</a> |
<a href="http://arxiv.org/abs/2205.12425">arXiv</a> |
<a href="https://www.shadaj.me/papers/katara.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: specification, verification
</font></blockquote>
</dd>
<dt>
[<a name="Nieto2022modular">34</a>]
</dt>
<dd>
Abel Nieto, Léon Gondelman, Alban Reynaud, Amin Timany, and Lars Birkedal.
Modular verification of op-based CRDTs in separation logic.
<em>Proceedings of the ACM on Programming Languages</em>,
6(OOPSLA2):1788–1816, October 2022.
[ <a href="papers_bib.html#Nieto2022modular">bib</a> |
<a href="http://dx.doi.org/10.1145/3563351">DOI</a> |
<a href="https://iris-project.org/pdfs/2022-oopsla-crdts.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: specification, verification, operation-based
</font></blockquote>
</dd>
<dt>
[<a name="Kleppmann2022convergence">35</a>]
</dt>
<dd>
Martin Kleppmann and Peter Alvaro.
Research for practice: Convergence.
<em>Communications of the ACM</em>, 65(11):104--106, November 2022.
[ <a href="papers_bib.html#Kleppmann2022convergence">bib</a> |
<a href="http://dx.doi.org/10.1145/3563901">DOI</a> |
<a href="https://martin.kleppmann.com/papers/convergence-cacm.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: introduction, crdt-related
</font></blockquote>
</dd>
<dt>
[<a name="Munsters2022coast">36</a>]
</dt>
<dd>
Aäron Munsters, Angel Luis Scull Pupo, and Jens Nicolay.
COAST: A conflict-free replicated abstract syntax tree.
In <em>17th International Conference on Software Technologies</em>,
ICSOFT 2022, pages 187--196. SciTePress, July 2022.
[ <a href="papers_bib.html#Munsters2022coast">bib</a> |
<a href="http://dx.doi.org/10.5220/0011278800003266">DOI</a> |
<a href="http://soft.vub.ac.be/Publications/2022/vub-tr-soft-22-17.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: trees, text-editing
</font></blockquote>
</dd>
<dt>
[<a name="Soundarapandian2022MRDT">37</a>]
</dt>
<dd>
Vimala Soundarapandian, Adharsh Kamath, Kartik Nagar, and KC Sivaramakrishnan.
Certified mergeable replicated data types.
In <em>43rd ACM SIGPLAN Conference on Programming Language Design
and Implementation</em>, PLDI 2022, page 332–347. ACM, June 2022.
[ <a href="papers_bib.html#Soundarapandian2022MRDT">bib</a> |
<a href="http://dx.doi.org/10.1145/3519939.3523735">DOI</a> |
<a href="http://arxiv.org/abs/2203.14518">arXiv</a> ]
<blockquote><font size="-1">
Keywords: crdt-related, MRDT, verification
</font></blockquote>
</dd>
<dt>
[<a name="Houshmand2022RDMA">38</a>]
</dt>
<dd>
Farzin Houshmand, Javad Saberlatibari, and Mohsen Lesani.
Hamband: RDMA replicated data types.
In <em>43rd ACM SIGPLAN Conference on Programming Language Design
and Implementation</em>, PLDI 2022, page 348–363. ACM, June 2022.
[ <a href="papers_bib.html#Houshmand2022RDMA">bib</a> |
<a href="http://dx.doi.org/10.1145/3519939.3523426">DOI</a> ]
<blockquote><font size="-1">
Keywords: crdt-related, systems
</font></blockquote>
</dd>
<dt>
[<a name="Kaki2022MRDT">39</a>]
</dt>
<dd>
Gowtham Kaki, Prasanth Prahladan, and Nicholas V. Lewchenko.
Runtime-assisted convergence in replicated data types.
In <em>43rd ACM SIGPLAN Conference on Programming Language Design
and Implementation</em>, PLDI 2022, page 364–378. ACM, June 2022.
[ <a href="papers_bib.html#Kaki2022MRDT">bib</a> |
<a href="http://dx.doi.org/10.1145/3519939.3523724">DOI</a> ]
<blockquote><font size="-1">
Keywords: crdt-related, MRDT, Quark
</font></blockquote>
</dd>
<dt>
[<a name="Kleppmann2022buggy">40</a>]
</dt>
<dd>
Martin Kleppmann.
Assessing the understandability of a distributed algorithm by
tweeting buggy pseudocode.
Technical Report UCAM-CL-TR-969, University of Cambridge, Department
of Computer Science and Technology, May 2022.
[ <a href="papers_bib.html#Kleppmann2022buggy">bib</a> |
<a href="http://dx.doi.org/10.48456/tr-969">DOI</a> |
<a href="https://www.cl.cam.ac.uk/techreports/UCAM-CL-TR-969.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: verification
</font></blockquote>
</dd>
<dt>
[<a name="Jacob2022byzantine">41</a>]
</dt>
<dd>
Florian Jacob, Saskia Bayreuther, and Hannes Hartenstein.
On CRDTs in Byzantine environments.
In <em>GI Sicherheit 2022</em>, pages 113--126. Gesellschaft für
Informatik, Bonn, April 2022.
[ <a href="papers_bib.html#Jacob2022byzantine">bib</a> |
<a href="http://dx.doi.org/10.18420/sicherheit2022_07">DOI</a> |
<a href="https://dl.gi.de/server/api/core/bitstreams/c0813c74-49cf-46ec-9f39-7d89f02f2a85/content">http</a> ]
<blockquote><font size="-1">
Keywords: security
</font></blockquote>
</dd>
<dt>
[<a name="Brocco2022melda">42</a>]
</dt>
<dd>
Amos Brocco.
Melda: A general purpose delta state JSON CRDT.
In <em>9th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2022, pages 1--7. ACM, April 2022.
[ <a href="papers_bib.html#Brocco2022melda">bib</a> |
<a href="http://dx.doi.org/10.1145/3517209.3524039">DOI</a> ]
<blockquote><font size="-1">
Keywords: systems, delta-based, JSON, trees
</font></blockquote>
</dd>
<dt>
[<a name="Kleppmann2022byzantine">43</a>]
</dt>
<dd>
Martin Kleppmann.
Making CRDTs Byzantine fault tolerant.
In <em>9th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2022, pages 8--15. ACM, April 2022.
[ <a href="papers_bib.html#Kleppmann2022byzantine">bib</a> |
<a href="http://dx.doi.org/10.1145/3517209.3524042">DOI</a> |
<a href="https://martin.kleppmann.com/papers/bft-crdt-papoc22.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: security
</font></blockquote>
</dd>
<dt>
[<a name="Schiefer2022fork">44</a>]
</dt>
<dd>
Nicholas Schiefer, Geoffrey Litt, and Daniel Jackson.
Merge what you can, fork what you can't: Managing data integrity in
local-first software.
In <em>9th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2022, pages 24--32. ACM, April 2022.
[ <a href="papers_bib.html#Schiefer2022fork">bib</a> |
<a href="http://dx.doi.org/10.1145/3517209.3524041">DOI</a> ]
<blockquote><font size="-1">
Keywords: systems, usability
</font></blockquote>
</dd>
<dt>
[<a name="Rault2022accessControl">45</a>]
</dt>
<dd>
Pierre-Antoine Rault, Claudia-Lavinia Ignat, and Olivier Perrin.
Distributed access control for collaborative applications using
CRDTs.
In <em>9th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2022, pages 33--38. ACM, April 2022.
[ <a href="papers_bib.html#Rault2022accessControl">bib</a> |
<a href="http://dx.doi.org/10.1145/3517209.3524826">DOI</a> |
<a href="https://hal.inria.fr/hal-03584553/file/papoc.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: security
</font></blockquote>
</dd>
<dt>
[<a name="Saquib2022versionTrees">46</a>]
</dt>
<dd>
Nazmus Saquib, Chandra Krintz, and Rich Wolski.
Ordering operations for generic replicated data types using version
trees.
In <em>9th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2022, pages 39--46. ACM, April 2022.
[ <a href="papers_bib.html#Saquib2022versionTrees">bib</a> |
<a href="http://dx.doi.org/10.1145/3517209.3524038">DOI</a> ]
<blockquote><font size="-1">
Keywords: crdt-related
</font></blockquote>
</dd>
<dt>
[<a name="Weidner2022counter">47</a>]
</dt>
<dd>
Matthew Weidner and Paulo Sérgio Almeida.
An oblivious observed-reset embeddable replicated counter.
In <em>9th Workshop on Principles and Practice of Consistency for
Distributed Data</em>, PaPoC 2022, pages 47--52. ACM, April 2022.
[ <a href="papers_bib.html#Weidner2022counter">bib</a> |
<a href="http://dx.doi.org/10.1145/3517209.3524084">DOI</a> |
<a href="https://mattweidner.com/assets/pdf/Embeddable_counter_CRDT.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: counters
</font></blockquote>
</dd>
<dt>
[<a name="Rinberg2022DSON">48</a>]
</dt>
<dd>
Arik Rinberg, Tomer Solomon, Roee Shlomo, Guy Khazma, Gal Lushi, Idit Keidar,
and Paula Ta-Shma.
DSON: JSON CRDT using delta-mutations for document stores.
<em>Proceedings of the VLDB Endowment</em>, 15(5):1053–1065, January
2022.
[ <a href="papers_bib.html#Rinberg2022DSON">bib</a> |
<a href="http://dx.doi.org/10.14778/3510397.3510403">DOI</a> |
<a href="https://www.vldb.org/pvldb/vol15/p1053-rinberg.pdf">.pdf</a> ]
<blockquote><font size="-1">
Keywords: systems, delta-based, JSON, trees
</font></blockquote>
</dd>
<dt>
[<a name="Brocco2021json">49</a>]
</dt>
<dd>
Amos Brocco.
Delta-state JSON CRDT: Putting collaboration on solid ground.
In <em>23rd International Symposium on Stabilization, Safety, and
Security of Distributed Systems</em>, SSS 2021, pages 474--478. Springer LNCS
volume 13046, November 2021.
[ <a href="papers_bib.html#Brocco2021json">bib</a> |
<a href="http://dx.doi.org/10.1007/978-3-030-91081-5_32">DOI</a> ]
<blockquote><font size="-1">
Keywords: systems, delta-based, JSON, Solid
</font></blockquote>
</dd>
<dt>
[<a name="Kleppmann2021move">50</a>]
</dt>
<dd>
Martin Kleppmann, Dominic P. Mulligan, Victor B. F. Gomes, and Alastair R.
Beresford.
A highly-available move operation for replicated trees.
<em>IEEE Transactions on Parallel and Distributed Systems</em>,
33(7):1711--1724, October 2021.
[ <a href="papers_bib.html#Kleppmann2021move">bib</a> |
<a href="http://dx.doi.org/10.1109/TPDS.2021.3118603">DOI</a> |