👍1🔥1
https://github.com/pcaversaccio/createx
支持 CREATE 和 CREATE2 的工厂合约
支持 CREATE 和 CREATE2 的工厂合约
GitHub
GitHub - pcaversaccio/createx: Factory smart contract to make easier and safer usage of the `CREATE` and `CREATE2` EVM opcodes…
Factory smart contract to make easier and safer usage of the `CREATE` and `CREATE2` EVM opcodes as well as of `CREATE3`-based (i.e. without an initcode factor) contract creations. - pcaversaccio/cr...
👍1🔥1
https://allthingsfuzzy.substack.com/p/certora-vs-echidna-a-case-study-on
Certora 与 echidna 的 #fuzz invariant 测试
Certora 与 echidna 的 #fuzz invariant 测试
Substack
Certora vs Echidna: a case study on invariant testing in eBTC
In this post, we'll be comparing the proving of properties in a smart contract system using fuzzing and formal verification tools. We'll be using the eBTC protocol as a real-world case study.
👍1🔥1
Web3ReadList
https://www.zellic.io/blog/csprngs-how-to-properly-generate-random-numbers 正确生成密码学安全 #security 随机数
neodyme.io
Secure Randomness: From Zero to Verifiable Delay Functions, Part 1
A secure source of randomness is one of the most critical components of many decentralized applications. However, perhaps surprisingly, there is currently no on-chain source of randomness that is truly trustless. Almost all solutions that have been used in…
🔥2👍1
Web3ReadList
https://neodyme.io/en/blog/secure-randomness-part-1/ 安全随机性生成方案,包含 #VRF 及其他方案的技术概述
https://neodyme.io/en/blog/secure-randomness-part-2/
更加详细的介绍了 VDF 方案
更加详细的介绍了 VDF 方案
neodyme.io
Secure Randomness: From Zero to Verifiable Delay Functions, Part 2
For many different purposes, the blockchain space needs a trustless, general-purpose source of randomness. In the first post, we saw that almost all sources of general on-chain randomness that are currently in use have fundamental flaws (the severity of which…
👍1🙏1
https://amadimichael.notion.site/amadimichael/Progressive-Deep-Dive-Into-Stealth-Address-Protocols-4f4a2929329b4c7c95f1a7e37b454973
隐私地址生成详细介绍,涉及较多密码学概念
隐私地址生成详细介绍,涉及较多密码学概念
Amadi Michael's Articles on Notion
Progressive Deep Dive Into Stealth Address Protocols | Notion
Special thanks to Pascal Merkleplant for review and feedback.
👍1🔥1
Web3ReadList
https://zkmesh.substack.com/p/zkmesh-dec-2023-recap 2023 年 12 月 #zk 月刊
zkMesh
zkMesh: Jan 2024 recap
Welcome to zkMesh, a monthly newsletter covering the latest in decentralized privacy-enhancing technologies, privacy protocol development, and zero knowledge systems research. zkMesh is produced by ZK Hack. We bring you recent research, useful articles, videos…
👍1🔥1
https://mirror.xyz/0xa49D73814267022700Ba565b32cB69Bd33090f0d/-LTZpcyhBsXj7RLo4PLYGncLmO2vl2NihYSJmzhamsg
#fuel 对抗状态爆炸的方案
#fuel 对抗状态爆炸的方案
mirror.xyz
Mastering the Final Boss in Blockchain Scalability: State Growth
Introducing Native State Rehydration, State Minimizing Techniques and a State Minimizing Transaction Model.
👍1🔥1