比特币通过提议的更新,正朝着量子抗性迈进。
Bitcoin Advances Toward Quantum Resistance With Proposed Update

原始链接: https://www.zerohedge.com/crypto/bitcoin-advances-toward-quantum-resistance-proposed-update

## 比特币通过 BIP 360 为量子计算做准备 一个新的比特币改进提案 (BIP),编号 360,已被合并到官方比特币仓库中,作为主动迈向“量子防护”网络的一步。该提案引入了一种新的输出类型,即 Merkle 根支付 (P2MR),旨在减轻潜在的量子计算机发展带来的风险,这些量子计算机可能能够破解当前的加密技术。 目前,花费比特币可能会暴露公钥,从而可能允许未来的量子计算机推导出私钥并窃取资金——尤其是在使用 Taproot、P2PK 和重复使用的地址时。P2MR 通过禁用 Taproot 中存在的密钥路径花费方法来解决这个问题,从而减少公钥暴露。 虽然目前尚未激活,但 BIP 360 为未来升级奠定了基础,这些升级将整合后量子签名方案,如 ML-DSA 和 SLH-DSA。开发者还旨在解决长期持有、不活跃的比特币中的漏洞。该提案强调了为更广泛的受众提供清晰的信息,反映了全球范围内对量子安全安全标准的日益增长的推动,以及诸如美国国家安全局 (NSA) 的 2030 年目标和美国国家标准与技术研究院 (NIST) 在 2030 年中期淘汰当前加密技术的计划等时间表。

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原文

Authored by Micah Zimmerman via Bitcoin Magazine,

BIP 360, a proposal aimed at preparing Bitcoin for future computing threats, has been updated and merged into the official Bitcoin Improvement Proposal (BIP) GitHub repository, marking a new step in efforts to strengthen the network against emerging cryptographic and quantum computing risks

The proposal introduces a new Bitcoin output type called Pay-to-Merkle-Root (P2MR), designed to support quantum-resistant script tree functionality while maintaining compatibility with existing Tapscript infrastructure, according to a note seen by Bitcoin Magazine.

Supporters of BIP 360 describe the proposal as an early move toward quantum-hardening Bitcoin at the protocol level.

A merge into the BIP repository does not signal endorsement or future activation. BIPs are merged as part of the open process for documenting or discussing potential upgrades.

Quantum computing has raised concerns across the cryptography and cybersecurity fields because sufficiently advanced machines may be able to break widely used cryptographic systems.

In Bitcoin’s case, the threat centers on the possibility that computers could derive private keys from exposed public keys, which could lead to stolen funds.

While all Bitcoin addresses become vulnerable when spending reveals a public key, some output types carry greater exposure. 

Taproot addresses, along with Pay-to-Public-Key (P2PK) outputs and reused addresses, are considered more at risk because public keys are visible on-chain.

P2MR is conceptually similar to Taproot but removes a key weakness. Taproot includes a key-path spending method that can expose public keys. The proposed P2MR output type disables that key-path spend and commits only to the script path, reducing the surface area for potential attacks.

The BIP’s authors say the proposal is meant to serve as a foundation for later upgrades that could introduce post-quantum signature schemes into Bitcoin through follow-on soft forks. The note points to algorithms such as ML-DSA (Dilithium) and SLH-DSA (SPHINCS+) as possible candidates.

“Ultimately, the introduction of BIP 360 and P2MR is a first step in a larger set of quantum-resistance proposals that will be necessary to quantum-harden Bitcoin,” said co-author Hunter Beast, a Bitcoin developer and senior protocol engineer at MARA. 

Beast added that the team is also exploring proposals to address vulnerable coins that are unlikely to move, including long-dormant holdings.

The latest update adds Isabel Foxen Duke as a co-author alongside Beast and cryptographic researcher Ethan Heilman.

Duke, a technical communications specialist, said the goal was to make the proposal understandable beyond the developer community.

“Given the sensitivity of the subject matter, we aimed to ensure the BIP was written in a manner that was clear and understandable to the general public,” Duke said.

The proposal arrives as governments and major technology firms increase investment in post-quantum cryptography. 

The U.S. National Security Agency’s CNSA 2.0 framework calls for quantum-safe systems by 2030, while the National Institute of Standards and Technology plans to phase out elliptic curve cryptography in federal systems in the mid-2030s.

Supporters argue that BIP 360 aligns Bitcoin with a broader shift toward quantum-safe security standards, positioning the network to adapt as computing capabilities advance.

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