Chrysoula Stathakopoulou

dblp:213/8046 · DBLP profile ↗
← Back
4ranked-venue papers
2as first author
3since 2021 · last 2024
0000-0002-3958-9735ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 2 · 1 first-author · 1 since 2021Security and privacy · 2 · 1 first-author · 2 since 2021
YearPublicationVenuePosition
2024 BBCA-Chain: Low Latency, High Throughput BFT Consensus on a DAG
Dahlia Malkhi, Chrysoula Stathakopoulou, Maofan Yin
FC (1)2
2022 State machine replication scalability made simple
abstract
Consensus, state machine replication (SMR) and total order broadcast (TOB) protocols are notorious for being poorly scalable with the number of participating nodes. Despite the recent race to reduce overall message complexity of leader-driven SMR/TOB protocols, scalability remains poor and the throughput is typically inversely proportional to the number of nodes. We present Insanely Scalable State Machine Replication, a generic construction to turn leader-driven protocols into scalable multi-leader ones. For our scalable SMR construction we use a novel primitive called Sequenced (Total Order) Broadcast (SB) which we wrap around PBFT, HotStuff and Raft leader-driven protocols to make them scale. Our construction is general enough to accommodate most leader-driven ordering protocols (BFT or CFT) and make them scale. Our implementation improves the peak throughput of PBFT, HotStuff, and Raft by 37x, 56x, and 55x, respectively, at a scale of 128 nodes.
Chrysoula Stathakopoulou, Matej Pavlovic, Marko Vukolic
EuroSys1
2021 Adding Fairness to Order: Preventing Front-Running Attacks in BFT Protocols using TEEs
abstract
This paper presents Fairy: a modular system that augments any Total Order Broadcast (TOB) protocol with fairness properties, namely input (request) causality and sender obfuscation. With these properties, Fairy helps to prevent front-running attacks where an adversary can interfere with the order of requests depending on request payload and sender identity, allowing for substantial application-level consequences. Fairy leverages Trusted Execution Environments (TEEs) to implement fairness on top of a TOB-based ordering service. Fairy collocates TEEs with ordering service nodes effectively making them run as trusted proxies of actual TOB clients. TEEs help Fairy to achieve both input causality and sender obfuscation - previous related systems addressing only input causality. We evaluate Fairy on top of a recent, efficient Byzantine Fault-Tolerant (BFT) TOB protocol and compare it to state-of-the-art BFT TOB with input causality. We show that Fairy improves state-of-the-art throughput by 66% and reduces latency by 50%.
Chrysoula Stathakopoulou, Signe Rüsch, Marcus Brandenburger, Marko Vukolic
SRDS1
2018 Hyperledger fabric: a distributed operating system for permissioned blockchains
abstract
Fabric is a modular and extensible open-source system for deploying and operating permissioned blockchains and one of the Hyperledger projects hosted by the Linux Foundation (www.hyperledger.org).
Elli Androulaki, Artem Barger, Vita Bortnikov, Christian Cachin, Konstantinos Christidis, Angelo De Caro, David Enyeart, Christopher Ferris, Gennady Laventman, Yacov Manevich, Srinivasan Muralidharan, Chet Murthy, Manish Sethi, Gari Singh, Keith Smith, Alessandro Sorniotti, Chrysoula Stathakopoulou, Marko Vukolic, Sharon Weed Cocco, Jason Yellick
EuroSys18