On September 27, Ethereum co-founder Vitalik Buterin published a long article titled “The cryptographic world computer,” outlining the network form for 2030. It can still be called a blockchain, but it is closer to a combination of blockchain, cryptographic proofs, and decentralized off-chain components—“a cryptographic world computer.” The validation path shifts from full downloading and re-executing computations to data availability sampling (PeerDAS) along with verification of succinct proofs. Block construction also moves from being single-actor dominated to multi-party collaboration.
The article states that the Hegota upgrade planned for deployment in 2027 is very likely to be Ethereum’s last “regular” hard fork—its technical approach is still quite familiar in the 2015 context. After that, the main line will rely more on recursive STARKs, automated formal verification, highly optimized consensus, and post-quantum cryptography. The 2030 vision also sketches block-slot times of about 4 to 8 seconds, and transaction finality windows of about 8 to 32 seconds, emphasizing that privacy capabilities—such as wallet querying, payment, and authorization rules—need to be built into the base layer. The above is still roadmap discussion; the specific rollout pace depends on engineering progress such as proof efficiency and large-scale parallel access to state. This is a clear articulation of ETH’s shift from a “ledger” narrative to a verifiable distributed computing architecture.
#ETH #以太坊 #技术 does not constitute investment advice
The article states that the Hegota upgrade planned for deployment in 2027 is very likely to be Ethereum’s last “regular” hard fork—its technical approach is still quite familiar in the 2015 context. After that, the main line will rely more on recursive STARKs, automated formal verification, highly optimized consensus, and post-quantum cryptography. The 2030 vision also sketches block-slot times of about 4 to 8 seconds, and transaction finality windows of about 8 to 32 seconds, emphasizing that privacy capabilities—such as wallet querying, payment, and authorization rules—need to be built into the base layer. The above is still roadmap discussion; the specific rollout pace depends on engineering progress such as proof efficiency and large-scale parallel access to state. This is a clear articulation of ETH’s shift from a “ledger” narrative to a verifiable distributed computing architecture.
#ETH #以太坊 #技术 does not constitute investment advice
