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We present HotStuff, a leader-based Byzantine fault-tolerant replication protocol for the partially synchronous model.
Time, clocks, and the ordering of events in a distributed system
Leslie Lamport · 1978
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Reaching agreement in the presence of faults
Marshall C. Pease, Robert E. Shostak, and Leslie Lamport · 1980
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Polynomial algorithms for multiple processor agreement
Danny Dolev and H. Raymond Strong · 1982
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The byzantine generals problem
Leslie Lamport, Robert E. Shostak, and Marshall C. Pease · 1982
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Another advantage of free choice: Completely asynchronous agreement protocols (extended abstract)
Michael Ben-Or · 1983
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Bounds on information exchange for byzantine agreement
Danny Dolev and Rüdiger Reischuk · 1985
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Impossibility of distributed consensus with one faulty process
Michael J. Fischer, Nancy A. Lynch, and Mike Paterson · 1985
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Consensus in the presence of partial synchrony
Cynthia Dwork, Nancy A. Lynch, and Larry J. Stockmeyer · 1988
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Implementing fault-tolerant services using the state machine approach: A tutorial
Fred B. Schneider · 1990
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Bounds on the time to reach agreement in the presence of timing uncertainty
Hagit Attiya, Cynthia Dwork, Nancy A. Lynch, and Larry J. Stockmeyer · 1994
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The rampart toolkit for building high-integrity services
Michael K. Reiter · 1994
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The part-time parliament
Leslie Lamport · 1998
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Practical byzantine fault tolerance
Miguel Castro and Barbara Liskov · 1999
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Practical threshold signatures
Victor Shoup · 2000
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Practical byzantine fault tolerance and proactive recovery
Miguel Castro and Barbara Liskov · 2002
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Short signatures from the weil pairing
Dan Boneh, Ben Lynn, and Hovav Shacham · 2004
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Cryptographic hash-function basics: Definitions, implications, and separations for preimage resistance, second-preimage resistance, and collision resistance
Phillip Rogaway and Thomas Shrimpton · 2004
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Random oracles in constantinople: Practical asynchronous byzantine agreement using cryptography
Christian Cachin, Klaus Kursawe, and Victor Shoup · 2005
Cited alongside, same era.
Parsimonious asynchronous byzantine-fault-tolerant atomic broadcast
HariGovind V. Ramasamy and Christian Cachin · 2005
Cited alongside, same era.
Bitcoin: A peer-to-peer electronic cash system
Satoshi Nakamoto · 2008
Cited alongside, same era.
Bosco: One-step byzantine asynchronous consensus
Yee Jiun Song and Robbert van Renesse · 2008
Cited alongside, same era.
Upright cluster services
Allen Clement, Manos Kapritsos, Sangmin Lee, Yang Wang, Lorenzo Alvisi, Michael Dahlin, and Taylor Riche · 2009
Cited alongside, same era.
On expected constant-round protocols for byzantine agreement
Jonathan Katz and Chiu-Yuen Koo · 2009
Cited alongside, same era.
Revisiting fast practical byzantine fault tolerance
Ittai Abraham, Guy Gueta, Dahlia Malkhi, Lorenzo Alvisi, Ramakrishna Kotla, and Jean-Philippe Martin · 2017
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The blockchain consensus layer and BFT
Ittai Abraham and Dahlia Malkhi · 2017
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Solida: A blockchain protocol based on reconfigurable byzantine consensus
Ittai Abraham, Dahlia Malkhi, Kartik Nayak, Ling Ren, and Alexander Spiegelman · 2017
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Casper the friendly finality gadget
Vitalik Buterin and Virgil Griffith · 2017
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Blockchain consensus protocols in the wild
Christian Cachin and Marko Vukolic · 2017
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Zyzzyva: Speculative byzantine fault tolerance
Ramakrishna Kotla, Lorenzo Alvisi, Michael Dahlin, Allen Clement, and Edmund L. Wong · 2009
Cited alongside, same era.
Prime: Byzantine replication under attack
Yair Amir, Brian A. Coan, Jonathan Kirsch, and John Lane · 2011
Cited alongside, same era.
State machine replication for the masses with BFT-SMART
Alysson Neves Bessani, João Sousa, and Eduardo Adílio Pelinson Alchieri · 2014
Cited alongside, same era.
The saddest moment
James Mickens · 2014
Cited alongside, same era.
The next 700 BFT protocols
Pierre-Louis Aublin, Rachid Guerraoui, Nikola Knezevic, Vivien Quéma, and Marko Vukolic · 2015
Cited alongside, same era.
The bitcoin backbone protocol: Analysis and applications
Juan A. Garay, Aggelos Kiayias, and Nikos Leonardos · 2015
Cited alongside, same era.
Algorand: Scaling byzantine agreements for cryptocurrencies
Yossi Gilad, Rotem Hemo, Silvio Micali, Georgios Vlachos, and Nickolai Zeldovich · 2017
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Analysis of the blockchain protocol in asynchronous networks
Rafael Pass, Lior Seeman, and Abhi Shelat · 2017
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https://github.com/jpmorganchase/quorum/issues/305
Istanbul bft’s design cannot successfully tolerate fail-stop failures · 2018
Closest in time.
https://github.com/tendermint/tendermint/issues/1047
A livelock bug in the presence of byzantine validator · 2018
Closest in time.
Revisiting fast practical Byzantine fault tolerance: Thelma, velma, and zelma
Ittai Abraham, Guy Gueta, Dahlia Malkhi, and Jean-Philippe Martin · 2018
Closest in time.
The latest gossip on BFT consensus
Ethan Buchman, Jae Kwon, and Zarko Milosevic · 2018
Closest in time.
SBFT: a scalable decentralized trust infrastructure for blockchains
Guy Golan-Gueta, Ittai Abraham, Shelly Grossman, Dahlia Malkhi, Benny Pinkas, Michael K. Reiter, Dragos-Adrian Seredinschi, Orr Tamir, and Alin Tomescu · 2018
Closest in time.
DFINITY technology overview series, consensus system
Timo Hanke, Mahnush Movahedi, and Dominic Williams · 2018
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Thunderella: Blockchains with optimistic instant confirmation
Rafael Pass and Elaine Shi · 2018
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Hotstuff: Bft consensus in the lens of blockchain
Maofan Yin, Dahlia Malkhi, Michael K. Reiter, Guy Golan Gueta, and Ittai Abraham · 2018
Closest in time.
Validated asynchronous byzantine agreement with optimal resilience and asymptotically optimal time and word communication
Ittai Abraham, Dahlia Malkhi, and Alexander Spiegelman · 2019
Closest in time.