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Terra Classic doesn't rely on outside oracles; it votes on its prices Most blockchains buy price data from services like Chainlink. Terra Classic has its validators do the job themselves. In each short voting round, validators submit exchange rates for terra-luna:native. The chain lines up all the answers and...

37,806 просмотров • 4 дней назад •via X (Twitter)

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It's here - Avail's Clash of Nodes incentivized testnet is officially up and running! 🌟 This is a major step towards Mainnet, with a chance for validators, light clients, and everyone to test our network, earn points, and more. Ready for a journey? Here's what's ahead... We’re calling all validators, light client enthusiasts, and blockchain buffs -- Clash of Nodes is your playground. Rack up points, top the leaderboard, and embrace the challenges for a mix of fun and potential perks to come. We’re looking for those who’ll step up to the challenge: • Validators who consistently validate the chain throughout the testing period • Full nodes and light clients who complete challenges to mimic a world full of rollups on Avail • Brave validators and participants who help us simulate disaster scenarios Dive into the Details: Here's a snapshot of the specific challenges that await in Clash of Nodes. 🛡️ Gladiator's Entry: Show your mettle by becoming a block authoring champion. Outlast and outperform, one block at a time. The more you author, the higher you score. ⚖️ Noble Warrior: Uphold the validator's code. Stay active, avoid penalties, and keep your record clean. Honor earns points, while lapses cost you. 🔍 Finding Yourself: Embrace the quest of self-discovery by adding and verifying your identity. Prove who you are and carve your name in the annals of Avail. Each challenge is your chance to shine and shape the future of Avail. Here's the game plan: 1️⃣ The first invites will go to our existing validators from the Kate Testnet. Their unwavering support earns them the vanguard spots. 2️⃣ To the newcomers: Every validator will get their turn as we're setting the stage for 300 in this testnet. 3️⃣ We’ll share more challenges on how anybody of any technical ability can participate. Remember, we're still in test mode. Expect the occasional hiccup during the testing phase. Your insights are essential to building a robust Mainnet - even if that means taking on some big bugs. 🚧 To every blockchain visionary, from validators to app rollup devs, you're the architects of this rollup revolution. We’re excited to see what you build, and how you compete. Read more: 🛠️🚀

Avail

351,998 просмотров • 2 лет назад

The Zimbabwean Senate has voted in favour of the controversial Constitution Amendment Bill (No. 3) by 75 votes to 4, with one abstention. The opposition CCC, which has 27 senators in the 80-member chamber, voted alongside ZANUPF. The bill seeks to extend the presidential term from five years to seven years, provide for the future election of a president by Parliament rather than through a direct popular vote, and make a number of other far reaching constitutional changes. The vote means that the bill now awaits the signature of Zimbabwean President Emmerson Mnangagwa before becoming law. Its passage marks one of the most significant constitutional changes in Zimbabwe’s recent history and is likely to remain the subject of intense political, legal and constitutional debate. The bill also seeks to allow Mnangagwa to influence the selection of his successor and potentially block his deputy, General Constantino Chiwenga, from succeeding him. If and when Mnangagwa signs it into law and there is no significant resistance from within ZANUPF, the military or broader society, it will signal a major setback to Chiwenga’s presidential ambitions, short of an intervention that changes the political landscape. More importantly, it will represent a further consolidation of ZANUPF’s hold on power and diminish the prospects of Zimbabwe having a president from outside the ruling party in the foreseeable future. The self evident story is how Mnangagwa has been assisted by influential business interests, including wealthy individuals aligned with ZANUPF, who may have more to lose from a Chiwenga presidency than from the continuation of the current political order. The only developments that could realistically halt this process would be a military intervention and a sustained national uprising. At present, however, all of these possibilities appear distant from political reality.

Hopewell Chin’ono

99,129 просмотров • 3 месяцев назад

Category Labs is proud to introduce Cadence, our multiple-concurrent-proposers (MCP) consensus protocol that matches the optimal good-case latency of single-leader consensus while supporting arbitrarily short block intervals. When combined with BTX, our design for encrypted mempools, this represents a significant step towards solving the problem of MEV at the protocol level. In nearly every blockchain today, a single party ends up in control of each block: it decides which transactions get in, and can reorder them at will. MCP is the natural fix, but most recent designs pay for it with a separate aggregation phase, adding two extra communication rounds per block. Cadence makes the proposers part of consensus itself. Its fast path finalizes in an optimal three communication rounds, even when proposers are offline. Cadence also offers speculative finality, similar to MonadBFT, after just two rounds, revertible only if a proposer provably equivocated. In a simulation using estimated network delays between Monad mainnet's 200 globally distributed validators, finalization takes 219 ms on average, speculative finality 167 ms. Cadence pushes pipelining to the extreme: each block is proposed and finalized in its own independent consensus instance, without waiting on preceding blocks. The block interval then becomes a protocol parameter that can be arbitrarily small. At our initial target of 100 ms, a transaction waits on average just 50 ms to enter a proposal, and oracle prices, liquidations, and auctions can update every 100 ms. Cadence dynamically throttles the opening of new instances to bound the number of outstanding slots even during periods of network instability. When the network is healthy (under synchrony), a transaction included by an honest proposer can be neither dropped nor deferred (short-term censorship resistance), and no proposer can see the others' proposals in time to react (hiding). We prove both, together with safety and liveness under partial synchrony at the optimal 3f+1 fault bound. The Cadence protocol is modular: each module is simple on its own, and any of them can be swapped out without touching the rest. Cadence also builds on components already being deployed: proposals are disseminated as erasure-coded chunks over Deterministic RaptorCast, now rolling out on Monad, and validators vote on proposal digests, so voting does not wait for the full data to arrive. Start with the interactive tutorial: Full paper: Joint work by Kushal Babel, Fatima Elsheimy, Lioba Heimbach, Mohammad Mussadiq Jalalzai, Tobias Klenze, Jovan Komatovic, Jason Milionis, Mike Setrin, and Victor Shoup.

Category Labs

253,525 просмотров • 2 месяцев назад

⚡ SONIC BONDS ARE NOW LIVE! ⚡⛓️ We’re thrilled to bring Bonds to Sonic — the fastest EVM chain powered by $S, combining speed, incentives, and world-class infrastructure. 🔥 In addition to the $S Bonds from Sonic Labs, we’re also launching two new partner Bonds from within the ecosystem: Shadow Exchange x(3,3) 💥! and むん兵衛@(マッド)ボンバーマン! 1️⃣ Sonic is the highest-performing EVM L1, combining speed, incentives, and world-class infrastructure, powering the next generation of DeFi applications. The chain provides 400,000 TPS and sub-second finality. The S token is Sonic's native token, used for paying transaction fees, staking, running validators, and participating in governance. Grab discounted $S now! → 2️⃣ Shadow is a Sonic-native concentrated liquidity exchange that offers deep liquidity, minimal slippage, and precise trading. Users can maximize returns by targeting active liquidity ranges and fine-tuning price bands. The platform rewards users with fees, vote incentives, and rebases, while its dynamic, customizable fee system adapts to market activity, powered by SHADOW and x33 tokens. Get $x33 tokens at a discount! → 3️⃣ MoonBay is a crypto project on the Sonic Network with a strong community and the $MOON token at its core. Blending meme culture with real utility, it embraces DeFi, NFTs, GameFi, and more. Focused on trends and innovation, MoonBay offers value, entertainment, and growth, making it a vibrant hub in the crypto space. Buy $MOON at a discount! → Get ready to Bond faster, better, and smarter — the Sonic way. 💨

ApeBond

22,038 просмотров • 1 год назад

We're excited to announce the launch of the Chainlink Reserve, a new upgrade centered on the creation of a strategic onchain reserve of LINK tokens. The Chainlink Reserve is designed to support the long-term growth and sustainability of the Chainlink Network by accumulating LINK tokens using offchain revenue from large enterprises that are adopting the Chainlink standard and from onchain service usage. The Chainlink Reserve is being built up by using Payment Abstraction to convert offchain and onchain revenue into LINK, using a combination of Chainlink services and decentralized exchange infrastructure. Demand for Chainlink has already created hundreds of millions of dollars in revenue, substantially from large enterprises that have paid offchain for access to the Chainlink Platform. With increasing demand from a number of the world’s largest banking and capital markets institutions, this form of paying for the Chainlink standard is expected to grow into the future as the industry grows. The Reserve has already accumulated over $1M worth of LINK from this early stage launch phase, which is expected to gradually grow in the coming months as more revenue is converted into LINK and placed into the Reserve. We do not expect any withdrawals from the Reserve for multiple years and thus it is expected to grow over time. We believe that as the industry demand for Chainlink’s unique capabilities increases, that adoption of Chainlink services will enable the Reserve to grow further. 🧵👇

Chainlink

4,945,973 просмотров • 1 год назад

$BNB turns 9 today! On July 14, 2017, $BNB launched as an ERC-20 token on Ethereum. It started out as a utility token for a young exchange, and nine years later it sits at the center of one of the most active onchain ecosystems in crypto. Here’s a quick breakdown of that journey: 2017 - Launched on Ethereum at $0.15 with a 200M total supply 2019 - Migrated to its own chain and became a native asset for the first time 2020 - Binance Smart Chain went live, bringing EVM smart contracts and making $BNB the gas of a fast-growing dApp ecosystem 2021 - The DeFi and GameFi boom put the chain at the center of onchain activity, and $BNB reached $690 2022 - Binance Smart Chain became BNB Chain, and BNB took on a new meaning: Build N Build 2023 - The stack expanded with opBNB for scale and BNB Greenfield for storage 2024 - Beacon Chain fusion brought staking, governance, and everything else onto one chain 2025 - Pascal, Lorentz, and Maxwell cut block times from 3s to 0.75s, DEX volume set records, and $BNB hit a new all-time high of $1,370 2026 (so far) · Blocks now land in 450ms with 650ms finality, roughly double the throughput the chain had in January Along the way, over 65M of the original 200M $BNB supply has been burned, on the road to a final supply of 100M. The H2 2026 roadmap keeps the focus where it has been all year: doubling mainnet throughput again, and building a next-generation L1 designed for 100K+ TPS with transactions confirmed in under 50ms. Nine years in, and $BNB has never been faster to use, cheaper to move, or scarcer to hold. Happy birthday, $BNB.

BNB Chain

95,995 просмотров • 2 месяцев назад

Today, we’ve successfully launched Band Oracle v3 Testnet Phase 2 — our biggest upgrade yet. This release makes BandChain faster, more transparent, and more interoperable than ever. Let’s break down what’s new👇 What did we achieve? — 3x Faster blocktime from 3s —> 1s — 10x symbols cap expand from 100 —> 300 symbols — 10x Higher Throughputs: 40k to 400k TX/day — 3x Max TXs Support/ Day: 7.2M TXs —> 21.6M TXs 🌐 New Data Tunnel routes are LIVE We’re expanding Band’s oracle reach across the multi-chain world: —> Cosmos - The Interchain ⚛️’s IBC-Hook: seamless interchain contract querying —> Router Protocol: Bridging & EVM chains & Soon on Solana —> Axelar Network: ongoing collab for cross-chain verified feeds Interoperability is no longer a wishlist — it’s real. 🛠️ Minor upgrades with major impact: — Cylinder CLI runs standalone — Signal times are now block-based (not machine time) — Auto-select TSS groups — Yoda now auto-bumps gas to avoid TX failure — Telemetry for BeginBlock/EndBlock durations It’s all about smoother ops for devs and validators. 🧪 What’s next? ✅ Recap + docs for Testnet Phase 2 ✅ More Data Tunnel stress testing ✅ Backend + validator-side optimizations 🚀 Mainnet Launch in Q3 2025 We’re almost there. Band Oracle v3 is becoming the go-to open data oracle for all ecosystems. Fast. Transparent. New standard for Multi-chain native. Thanks to the validators, devs, partners, and Band community for building this with us. Let’s keep going. Read the full announcement here:

Band

17,921 просмотров • 1 год назад

In 2025, demand for blockchain applications with genuine real-world utility has collided with a technical barrier that leaves developers questioning what they can realistically build. Anyone building things like tokenized assets, supply chains, AI agents, or prediction markets still juggle a mess of middleware, and somehow end up spending more time stitching than innovating. How so? Every: - Bridges to move assets, - oracles to fetch data, - indexers to make that data searchable, - relayers and bots to keep everything on schedule— is necessary, but each layer also adds cost, latency, and new risks. The end result is an application that’s expensive to run, fragile under stress, and slower than the Web2 software it’s trying to replace. This is the problem Rialo says it wants to solve. Built by Subzero Labs and backed by $20 million from investors like Pantera Capital and Coinbase Ventures 🛡️, Rialo’s pitch is simple: instead of accepting the middleware tower as an unavoidable cost of doing business, compress it into the base chain itself. But Rialo doesn’t describe itself as another Layer 1, its very name, Rialo Isn’t a Layer One, makes that clear. The team frames it instead as a unified real-world network: a protocol rebuilt from the ground up with the assumption that external connectivity is not an afterthought but a core design principle. To understand what this means, consider how today’s dApps are typically assembled. A typical RWA dApp stack involves: - Oracle providers (Chainlink, Pyth, Band) for asset pricing and event settlement - Bridges (Wormhole, Multichain, custodians) for cross-chain asset movement - Indexers (The Graph, Aleph, Stacks API) for querying and preprocessing chain data - Schedulers/relayers for automated tasks and monitoring - Web2 integrations via cloud services, centralized APIs, and off-chain pipelines Each of these steps adds another vendor, another trust boundary, and another operational layer to monitor. By the time the application is live, it resembles a patchwork of loosely coupled services, each carrying its own risks. You don’t have to look far for proof: - Base went dark for 29-43 minutes in August 2025 when its sequencer misfired, freezing every DeFi app on it. - A few months earlier, an AWS outage rippled through Binance and KuCoin, stalling withdrawals because even “decentralized” systems leaned on centralized middleware. - When Infura has faltered, Ethereum dApps have gone offline in sync, not because Ethereum broke, but because the middleware holding it together did. What should feel like building an application instead feels like maintaining a fragile machine. Rialo architecture embeds the primitives that normally live in middleware directly into the protocol. Smart contracts on Rialo can: - be event-driven, able to respond not just to blockchain state changes but also to external events through built-in webhook and API triggers. - fetch data from the web natively, without relying on external oracles or relayers. - include privacy and identity management—KYC hooks and two-factor authentication, at the protocol level rather than as add-ons. - handle cross-chain communication without wrapped assets or third-party bridges. - run on a virtual machine that is compatible with ecosystems like Solana but extended with RISC-V to support modern programming concepts such as async/await and event loops. If these features work as intended, the implications are significant. Today, much of a team’s energy goes into building and maintaining infrastructure: fullnodes, indexers, monitoring scripts, oracle integrations, relayer logic, bridge infrastructure. Each requires engineering headcount and ongoing maintenance. With Rialo, much of this is absorbed by the protocol, freeing developers to concentrate on business logic. Projects can deliver production-grade dApps with smaller, leaner groups focused directly on product design and execution. Operational costs also shrink: indexing and oracle services can run into thousands of dollars a month; collapsing those into built-in functions reduces recurring expenses while simplifying onboarding for new developers. But folding middleware into the chain doesn’t erase complexity, it reshapes it. Some of the problems to be encountered include: - Scale and complexity: Rialo’s validators won’t just be securing transactions; they’ll also be securing APIs, cross-chain data, and scheduled triggers. Any failure in one subsystem could ripple across the entire network. - Performance vs. decentralization: Richer indexing, scheduling, and data ingress could make nodes heavier to run, narrowing who can realistically participate as a validator. That risks reducing the decentralization blockchains depend on for resilience. - Governance pressures: Disputes or failures involving real-world data feeds, external APIs, or cross-chain actions will arise more often, requiring not just technical fixes but robust social infrastructure, clear rules for voting, transparent arbitration, and mechanisms for community trust. Without them, Rialo risks re-centralizing decision-making around a handful of operators. Where, then, does this model make the most sense? That would be in sectors where external connectivity is indispensable and middleware bloat has consistently been a blocker: - Real-world assets: settling tokenized securities or commodities against off-chain events. - Supply chains: triggering a payment the moment a shipment clears customs, without relying on a third-party oracle. - Agent systems: AI agents interacting with real-world APIs and on-chain contracts simultaneously. - Real-time markets: prediction markets or insurance contracts that must resolve immediately against external data. For purely on-chain domains like DeFi primitives or NFTs, where composability matters more than external triggers, the advantages may be less pronounced. This shift is familiar to anyone who remembers the rise of Web2 platform services. Just as Heroku and Firebase abstracted away server maintenance so developers could focus on building products, Rialo is betting that a unified real-world network can let blockchain developers do the same. Adoption will ultimately depend on: - whether its protocol primitives mature quickly, - whether the ecosystem builds out SDKs and tooling that make them usable, - whether compliance features can adapt to changing regulations, - and whether governance proves resilient under adversarial conditions. The first applications will be the test case. If they show that Rialo can replace a fragile patchwork of middleware with a secure, auditable, and cost-effective base layer, it could set a new standard for real-world connectivity in blockchains. If not, it risks simply moving complexity from one part of the stack to another. But at a minimum, Rialo has forced the question: should real-world connectivity in blockchains continue to depend on layers of external vendors, or should it be built into the chain itself? That’s the question Rialo has put on the table — and it’s why I got interested in Rialo .

Jen

12,178 просмотров • 11 месяцев назад

Natively integrated—and #PoweredbyPyth🔮 Native is a liquidity solution that combines bridges, assets, and pricing into one offering on prominent L1/L2s, including . Learn more about our integration below: ℹ️ About Native Sourcing and supplying liquidity is expected to become prohibitively expensive and challenging as more networks emerge. Liquidity fragmentation persists because pricing remains inventory-based. Native was designed in response to this complexity and offers an elegant solution for routing any asset on one chain into a new target asset on any target chain. Native achieves this through a cross-chain liquidity mesh of cross-chain liquidity networks, bridges, DEXs, and PMMs. More specifically, Native can aggregate the best prices from its network of AMMs, aggregators, and partnered PMMs, so that users will always have competitive prices. 🔮 Native is #PoweredByPyth Native taps into Pyth’s real-time feeds to fetch prices on-chain and off-chain. for example, Native leverages Pyth Price Feeds to power ZetaSwap and support its token pricing operations. How Native Leverages Pyth Price Feeds Native runs its own in-house price-oracle service which will fetch pricing from a variety of sources, including Pyth, to update token prices in Native's backend server. These prices are then fetched and displayed to users live via the NativeX widget. Native also seeks to provide its proprietary trading data and become a part of the Pyth data provider community - more details to come.

Pyth Network 🔮

48,234 просмотров • 2 лет назад