To interoperate, L2s need to communicate.
Today, the most secure way for L2s to do this is pass messages via the Ethereum L1—but that takes 15+ min & costs $$
For interop to work well, L2s need to swap messages in seconds.
Let's explore how we can make this possible. 🧵👇
Gmicrochains. We've kicked off a fresh collab with @heybeluga to celebrate Testnet Babbage, Linera Drops, and everything real-time ⛓️
Complete the 10-step Learn and Earn Starter Pack—from quizzes to quests—and enter the raffle for a chance to win $1,000 $USDC 💸
Link in quote👇
⛓️ Gmicrochains. Today, we’re proud to announce Testnet Babbage, the next evolution of the Linera protocol— built for real-time, user-centric blockchain apps. This release unlocks a powerful new dev toolkit and protocol upgrades.
Here's the changelog👇🧵
.@linera_io 的微链结构是指每个用户拥有一条独立的链(#microchains),用于处理自己的交易和状态变更。这种结构避免了用户间的交易冲突,实现高并发和可扩展性。所有微链通过共识层连接,确保全局一致 简而言之,Linera 通过“每人一链”来并行处理操作,提升性能,适合大规模 Web3 应用 is the alpha
GoPlus Alert🚨
According to @SlowMist_Team 's security monitoring, a user lost $129 million on November 19 due to copying an “address” from transaction history for a transfer. Currently, Address Poisoning that exploit identical starting and ending characters of addresses are becoming increasingly rampant and have even started to target the Bitcoin network.
Typically, attackers employ automated systems to scan blockchain transactions and create customized, intelligent poisoning strategies for each user. When they detect any wallet transfer activity, they automatically send small amounts of genuine USDT or other tokens, transfer fake tokens matching the amount of a genuine address, or flood the transaction history with dozens of fake token transfers to obscure legitimate records. If you happen to copy an address from your wallet or blockchain explorer's transaction history, you're likely to send funds to the wrong address and lose your assets.