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Hauptverfasser: Qi, Minfeng, Wang, Qin, Wang, Zhipeng, Schneider, Manvir, Zhu, Tianqing, Chen, Shiping, Knottenbelt, William, Hardjono, Thomas
Format: Preprint
Veröffentlicht: 2024
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2409.02650
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author Qi, Minfeng
Wang, Qin
Wang, Zhipeng
Schneider, Manvir
Zhu, Tianqing
Chen, Shiping
Knottenbelt, William
Hardjono, Thomas
author_facet Qi, Minfeng
Wang, Qin
Wang, Zhipeng
Schneider, Manvir
Zhu, Tianqing
Chen, Shiping
Knottenbelt, William
Hardjono, Thomas
contents We present the first Systematization of Knowledge (SoK) on constructing Layer Two (L2) solutions for Bitcoin. We carefully examine a representative subset of ongoing Bitcoin L2 solutions (40 out of 335 extensively investigated cases) and provide a concise yet impactful identification of six classic design patterns through two approaches (i.e., modifying transactions \& creating proofs). Notably, we are the first to incorporate the inscription technology (emerged in mid-2023), along with a series of related innovations. We further establish a reference framework that serves as a baseline criterion ideally suited for evaluating the security aspects of Bitcoin L2 solutions, and which can also be extended to broader L2 applications. We apply this framework to evaluate each of the projects we investigated. We find that the inscription-based approaches introduce new functionality (i.e., programability) to Bitcoin systems, whereas existing proof-based solutions primarily address scalability challenges. Our security analysis reveals new attack vectors targeting data/state (availability, verification), assets (withdrawal, recovery), and users (disputes, censorship).
format Preprint
id arxiv_https___arxiv_org_abs_2409_02650
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle SoK: Bitcoin Layer Two (L2)
Qi, Minfeng
Wang, Qin
Wang, Zhipeng
Schneider, Manvir
Zhu, Tianqing
Chen, Shiping
Knottenbelt, William
Hardjono, Thomas
Cryptography and Security
Emerging Technologies
We present the first Systematization of Knowledge (SoK) on constructing Layer Two (L2) solutions for Bitcoin. We carefully examine a representative subset of ongoing Bitcoin L2 solutions (40 out of 335 extensively investigated cases) and provide a concise yet impactful identification of six classic design patterns through two approaches (i.e., modifying transactions \& creating proofs). Notably, we are the first to incorporate the inscription technology (emerged in mid-2023), along with a series of related innovations. We further establish a reference framework that serves as a baseline criterion ideally suited for evaluating the security aspects of Bitcoin L2 solutions, and which can also be extended to broader L2 applications. We apply this framework to evaluate each of the projects we investigated. We find that the inscription-based approaches introduce new functionality (i.e., programability) to Bitcoin systems, whereas existing proof-based solutions primarily address scalability challenges. Our security analysis reveals new attack vectors targeting data/state (availability, verification), assets (withdrawal, recovery), and users (disputes, censorship).
title SoK: Bitcoin Layer Two (L2)
topic Cryptography and Security
Emerging Technologies
url https://arxiv.org/abs/2409.02650