β³οΈ πΈπ€πͺππππ£π ππ π¦π€ πΈπ£ππππ₯πππ₯π¦π£π:
β‘οΈ Asynchronous model of requests and responses
β‘οΈ Asynchronous model of writing and confirmation of transactions
β³οΈ πππ ππ πππ π π πΈπ€πͺππππ£π ππ π¦π€ βππ’π¦ππ€π₯π€:
β‘οΈ Transactions in
@vitelabs can be categorized as request transactions and response transactions.
β‘οΈ After the split, each transaction only affects the state of a single account, and transactions do not interfere with one another, improving throughput.
β³οΈ πππ ππ πππ π π πΈπ€πͺππππ£π ππ π¦π€ βπ ππππ£πππ₯ππ π:
β‘οΈ Different users may write transactions into the ledger in parallel, and the snapshot chain will take snapshots of the ledger at a constant rate.
β‘οΈ The mechanism of asynchronous confirmation reduces the peaks and troughs of the speed of transaction writing, optimizing usage of resources.
β³οΈ πππ ππ πππ π π πΈπ€πͺππππ£π ππ π¦π€ βπ πππ¦πππππ₯ππ π:
β‘οΈ Vite's inter-contract communications incorporate a message-driven architecture, where the contracts do not share states but only communicate by sending messages to each other.
β‘οΈ
@vitelabs 's ledger serves the role of the message middleware, guaranteeing the exactly-once semantics of messages.
β³οΈ ππ πππππ₯πͺ πππ π½π¦ππ ππ»π:
β‘οΈ Vite will provide a contract language called
@solidity_lang and a full SDK associated with it.
β‘οΈ In actual scenarios, BASE semantics can replace ACID semantics, and the increase in delay is under control.
β³οΈ βπ ππππ¦π€ππ π:
β‘οΈ
@vitelabs employs a hierarchical HDPoS consensus algorithm.
β‘οΈ HDPoS consensus algorithm guarantees completion of the transaction confirmation within 1 second.
#AsynchronousArchitecture #TransactionModel #ConfirmationModel #CommunicationModel #Solidity #SDK #HDPoS #ConsensusAlgorithm #BlockchainTechnology #ViteBlockchain #SmartContracts #Decentralization #BlockchainIntegration