From Multi-sig to DLCs: Modern Oracle Designs on Bitcoin
- URL: http://arxiv.org/abs/2602.09822v1
- Date: Tue, 10 Feb 2026 14:31:03 GMT
- Title: From Multi-sig to DLCs: Modern Oracle Designs on Bitcoin
- Authors: Giulio Caldarelli,
- Abstract summary: Bitcoin was designed primarily as a transaction ledger for its native currency, which limits programmability for conditional applications.<n>This paper investigates whether new oracle designs have emerged for Bitcoin Layer 1 since the 2015 transition to the smart contracts era.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: Unlike Ethereum, which was conceived as a general-purpose smart-contract platform, Bitcoin was designed primarily as a transaction ledger for its native currency, which limits programmability for conditional applications. This constraint is particularly evident when considering oracles, mechanisms that enable Bitcoin contracts to depend on exogenous events. This paper investigates whether new oracle designs have emerged for Bitcoin Layer 1 since the 2015 transition to the Ethereum smart contracts era and whether subsequent Bitcoin improvement proposals have expanded oracles' implementability. Using Scopus and Web of Science searches, complemented by Google Scholar to capture protocol proposals, we observe that the indexed academic coverage remains limited, and many contributions circulate outside journal venues. Within the retrieved corpus, the main post-2015 shift is from multisig-style, which envisioned oracles as co-signers, toward attestation-based designs, mainly represented by Discreet Log Contracts (DLCs), which show stronger Bitcoin community compliance, tool support, and evidence of practical implementations in real-world scenarios such as betting and prediction-market mechanisms.
Related papers
- Copy-and-Paste? Identifying EVM-Inequivalent Code Smells in Multi-chain Reuse Contracts [30.94426976245966]
More developers are reusing Solidity contracts on other compatible blockchains.<n>This inconsistency reveals design flaws in reused contracts, exposing code smells that hinder code reusability.<n>In this paper, we conducted the first empirical study to reveal the causes and characteristics of EVM-Inequivalent Code Smells.
arXiv Detail & Related papers (2025-04-10T09:37:19Z) - Programming on Bitcoin: A Survey of Layer 1 and Layer 2 Technologies in Bitcoin Ecosystem [12.40161657934075]
Bitcoin faces limitations in programming capability and throughput.
The 2021 Taproot upgrade introduced the Schnorr signature algorithm and P2TR transaction type.
This upgrade has led to the development of protocols like Ordinals, Atomicals, and BitVM.
arXiv Detail & Related papers (2024-09-29T09:15:14Z) - IT Strategic alignment in the decentralized finance (DeFi): CBDC and digital currencies [49.1574468325115]
Decentralized finance (DeFi) is a disruptive-based financial infrastructure.
This paper seeks to answer two main questions 1) What are the common IT elements in the DeFi?
And 2) How the elements to the IT strategic alignment in DeFi?
arXiv Detail & Related papers (2024-05-17T10:19:20Z) - Flashback: Enhancing Proposer-Builder Design with Future-Block Auctions in Proof-of-Stake Ethereum [27.386337024680245]
Auction mechanisms used between searchers, builders and proposers are crucial to the overall health of the blockchain.
In this paper, we consider PBS design in as a game between searchers, builders and proposers.
A key novelty in our design is the inclusion of future block proposers, as all proposers of an epoch are decided ahead of time in proof-of-stake (PoS)
Our analysis shows the existence of alternative auction mechanisms that result in a better equilibrium to players compared to state-of-the-art.
arXiv Detail & Related papers (2024-05-15T15:58:21Z) - Unveiling Decentralization: A Comprehensive Review of Technologies, Comparison, Challenges in Bitcoin, Ethereum, and Solana Blockchain [1.6070833439280312]
Bitcoin stands as a groundbreaking development in decentralized exchange throughout human history, enabling transactions without the need for intermediaries.
Solana introduces a novel architecture for high-performance blockchain, employing timestamps to validate decentralized transactions.
This paper aims to offer valuable insights and comparative analysis for both researchers and practitioners.
arXiv Detail & Related papers (2024-04-07T07:27:03Z) - From Reality Keys to Oraclize. A Deep Dive into the History of Bitcoin
Oracles [0.0]
This paper aims to retrace and reconstruct the chain of events and contributions that gave birth to oracles on Bitcoin.
By interviewing early developers and crawling early forums and repositories, this paper aims to reconstruct the chain of events and contributions that gave birth to oracles on Bitcoin.
arXiv Detail & Related papers (2023-02-15T19:05:28Z) - ACon$^2$: Adaptive Conformal Consensus for Provable Blockchain Oracles [31.439376852065713]
Power of smart contracts is enabled by interacting with off-chain data, which in turn opens the possibility to undermine the block state consistency.
We propose an adaptive conformal consensus (ACon$2$) algorithm, which derives consensus from multiple oracle contracts.
In particular, the proposed algorithm returns a consensus set, which quantifies the uncertainty of data and achieves a desired correctness guarantee.
arXiv Detail & Related papers (2022-11-17T04:37:24Z) - A formal model for ledger management systems based on contracts and
temporal logic [0.0]
In second-generation blockchains such as the ledger is coupled with smart contracts.
The current implementation of smart contracts as arbitrary programming constructs has made them susceptible to dangerous bugs.
We propose here to recompose the split and recover the reliability of databases by formalizing a notion of contract modelled as a finite-state automaton.
arXiv Detail & Related papers (2021-09-30T15:34:28Z) - Quantum Multi-Solution Bernoulli Search with Applications to Bitcoin's
Post-Quantum Security [67.06003361150228]
A proof of work (PoW) is an important cryptographic construct enabling a party to convince others that they invested some effort in solving a computational task.
In this work, we examine the hardness of finding such chain of PoWs against quantum strategies.
We prove that the chain of PoWs problem reduces to a problem we call multi-solution Bernoulli search, for which we establish its quantum query complexity.
arXiv Detail & Related papers (2020-12-30T18:03:56Z) - From Tether to Libra: Stablecoins, Digital Currency and the Future of
Money [62.997667081978825]
It provides a compact definition for stablecoins, identifying the unique features that make them distinct from previously known payment systems.
It surveys the different use cases for stablecoins as well as the underlying economic incentives for creating them.
arXiv Detail & Related papers (2020-05-26T18:13:46Z) - Blockchain Enabled Smart Contract Based Applications: Deficiencies with
the Software Development Life Cycle Models [0.0]
The immutability of the blocks, where the smart contracts are stored, causes conflicts with the traditional Software Development Life Cycle (SDLC) models.
This research article addresses this current problem by first exploring the six traditional SDLC models.
It advocates that there is an urgent need to develop new standard model(s) to address the arising issues.
arXiv Detail & Related papers (2020-01-21T03:48:46Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.