Video wird geladen...

Video konnte nicht geladen werden

Zur Startseite

🚨 EIP-7939: Count Leading Zeros (CLZ) Opcode This one simple opcode change coming in the Ethereum fusaka upgrade is game changer: - reduces gas & contract code - lowers ZK proof costs - massive bytecode size savings

34,106 Aufrufe • vor 8 Monaten •via X (Twitter)

0 Kommentare

Keine Kommentare verfügbar

Kommentare vom Original-Post werden hier angezeigt

Ähnliche Videos

$ORBS Eightco, $WLD Worldcoin, & $BMNR BitMine - The Unrealized New Economy & Ecosystem 🚀 VIDEO ANALYSIS The $WLD Worldcoin “Lift Off” event was MASSIVE for proof-of-human tech! Key drops: • World ID 4.0: better privacy, scalability + “Selfie Check” • Major partnerships: Tinder $MTCH, Zoom $ZM, DocuSign $DOCU, Shopify $SHOP, Coinbase $COIN & more • Full-stack human verification for AI agents, dating, concerts, payments & enterprise Here’s how $BMNR & $ORBS are perfectly positioned to capture it: The $BMNR & $ORBS × Worldcoin Ethereum Map - UPDATED 🔥 $BMNR and $ORBS are quietly building one of the largest public positions in Worldcoin’s Proof of Human (PoH) thesis while holding a massive Ethereum treasury and investing into MrBeast, OpenAI & next-gen fintech — creating a powerful world-changing ecosystem for the Future of Finance and PoH. Here’s the full map: • Ethereum → $BMNR: Holds ~4.875M ETH (~4.04% of total supply) • $BMNR → $ORBS: $155M+ leading investor • $BMNR → MrBeast / Beast Industries: $200M direct equity investment • $ORBS → OpenAI: $90M total (~30% of treasury) • $ORBS → Worldcoin ($WLD): Holds ~277M WLD (~9% of supply) • $ORBS → MrBeast / Beast Industries: $25M investment • OpenAI ↔ Worldcoin: Sam Altman (Sam Altman) co-founder + partnership talks • MrBeast / Beast Industries → Step: 100% acquisition (Feb 2026) • Step → Ethereum: Planned blockchain / DeFi / ETH integration 🔥 $ORBS + $WLD: Proof-of-Human Flywheel Worldcoin just landed major new partnerships with Zoom, DocuSign & Tinder — huge enterprise + consumer use cases for human verification in the AI age. $ORBS is the largest disclosed public holder (~9% of supply) and the anchor of the entire World ID thesis. This is an unrealized new economy. One ETH treasury → AI + Digital Identity + Creator Economy → real on-chain activity & gas fees flowing into Ethereum. Thomas (Tom) Lee (not drummer) FundstratDirect.com’s Tom Lee is Chairman of $BMNR and Board Director at $ORBS #Ethereum #Worldcoin #ORBS #ProofOfHuman $ORBS $WLD $BMNR $ETH

Donald Dean

19,824 Aufrufe • vor 3 Monaten

this clip, a plumber breaks down the U.S. Department of Energy’s updated efficiency standards for residential water heaters. These standards, which apply to new models manufactured after May 2029, set higher performance requirements — particularly for larger electric storage tanks. The practical result is that newer electric water heaters will increasingly use heat pump technology, which is significantly more efficient than traditional electric resistance models. Homeowners who choose to upgrade proactively can enjoy meaningful long-term energy savings. According to DOE analysis, switching to a qualifying heat pump water heater can deliver average lifetime savings of around $1,800–$2,000 per unit compared to older standard models, with many households seeing hundreds of dollars reduced from their annual utility bills. These savings can be increased even further by adding two simple, cost-effective upgrades: • A basic timer (or smart controller) so the water heater only runs during off-peak hours or when hot water is actually needed. • Professional-grade Armaflex (or equivalent closed-cell elastomeric foam) insulation wrap on the tank and hot water pipes. This high-quality insulation dramatically reduces standby heat loss — often cutting additional energy waste by 10–25% or more depending on your current setup and climate. Together, the more efficient unit + timer + professional insulation wrap creates a system that uses far less electricity while still delivering reliable hot water. Many homeowners find the combined upgrades pay for themselves through lower monthly bills over time, without any requirement to change anything immediately. This approach gives you control over your energy use and long-term costs on your own timeline. I’m not much on government mandates but I think they’re onto something here this new innovation in water heaters can be a game changer as far as savings if we incorporate a timer and a professional grade insulation job, The DIY’er can really clean up with this one, I put a link to an AO Smith 50 gallon in the first comment, I do highly recommend the expansion tank, it will definitely help with the longevity.

MAGA X Times Daily News 🇺🇸

151,039 Aufrufe • vor 1 Monat

TL;DR: We’re making UniversalX 10x better, faster, and richer. With perps, prediction markets, and more. This process requires you to temporarily withdraw your assets from the platform. Dear community: We’re excited to bring a fundamentally faster, more stable, and rich trading experience to UniversalX, powered by Universal Accounts V2. This upgrade will allow us to remain chain-agnostic while making UniversalX as fast (if not faster) than the leading Web3 terminals—all the while setting the stage for many more upgrades. Here’s everything that’s coming: • Spot trading becomes 5× faster. With Particle Network heavily optimizing Universal Accounts V2, spot execution will now match or beat the speed of leading centralized and decentralized terminals. • Dramatically improved platform stability: Smoother order flows, and far fewer disruptions. • Massively expanding the product suite inside UniversalX, with Perpetual futures (perps) AND prediction markets. • Greater wallet flexibility, powered by EIP-7702, making it easier to import and use external wallets inside UniversalX. Important: Due to this upgrade, users will need to temporarily withdraw their funds from UniversalX. Once the migration is complete (we’ll announce the exact timing shortly), you’ll be able to deposit your funds back in and resume trading. This is a one-time step required to unlock the massive performance and feature improvements we’re preparing for V2. In the coming days, we'll release more information about V2, besides its impact on the seamless, chain-agnostic experience you'll experience on UniversalX. Keep an eye out for more news!

UniversalX

23,606 Aufrufe • vor 3 Monaten

🚨BREAKING: Iran is striking major ports and oil tankers in the Middle East and this could trigger a crash in stock markets. The Strait of Hormuz is effectively blocked. Around 20 million barrels of oil per day pass through this route. Nearly 20% of global LNG exports, mainly from Qatar, also move through here. If this route stays disrupted, the impact spreads fast. 1. It could push oil toward $100–$120 per barrel. If that happens, petrol and diesel prices rise globally. Electricity costs also increase in countries that rely on gas. Airlines, logistics companies, and manufacturers all face higher fuel costs. 2. Qatar is one of the world’s largest LNG exporters. If LNG shipments are delayed or blocked, Europe and Asia face tighter gas supply. Power generation costs go up. Governments may need to use emergency reserves again. That’s why some analysts are comparing this to the 2022 energy crisis. 3. Shipping routes are being rerouted around Africa. That adds: 10–14 extra days to deliveries, higher fuel costs, and higher freight rates. Car manufacturers depend on just-in-time parts. If parts are delayed for weeks, production lines slow or temporarily stop. 4. The Gulf region exports key petrochemicals used to make fertilizer. If fertilizer supply tightens, farming costs rise and food prices increase in the coming months. This doesn’t hit instantly, but it builds over time. 5. War-risk insurance costs have reportedly jumped around 50%. For large vessels, that means hundreds of thousands of dollars in extra cost per trip. That reduces trade flow and pushes freight costs higher globally. The UAE has already shut its stock market for two days. Global markets are reacting. This is not just about oil prices moving up. It impacts energy supply, trade routes, inflation pressure, and global growth. If the disruption lasts more than a few weeks, the economic effects will compound quickly.

Bull Theory

1,417,400 Aufrufe • vor 4 Monaten

We are glad to announce that we have full STARK compatibility between Stone and Lambdaworks Starknet (Privacy Arc) Platinum Prover. We’re working on adding the CairoVM constraints, the builtins and layouts. You can generate a proof with Lambda Stark Platinum and verify it with Stone following the instructions here: The 3 main objectives to achieve against the alternatives are: 1. the prover and verifier should be easy to run. one command to prove any cairo code. the prover internally calls the vm first to generate the trace, the user shouldn’t do anything but run one command. one command to verify it locally with the stone verifier. we will also add a command to verify it with the l1 contract in ethereum mainnet or testnets. compatibility and support of all the builtins are being worked on. we will be updating the community in the upcoming weeks. for us it’s very important that anybody can test and play with our code. 2. performance. we are already 10 times faster than the stone prover. we believe we can be almost another order of magnitude faster. 3. code architecture and organization should be top notch. the codebase is pretty small on purpose. we are documenting everything we are doing. we are leveraging all the work done in lambdaworks for multiple other provers. this let us easily iterate, play and change any part of the prover. we can test and propose new ideas thanks to this. from our point or view this is crucial and a big improvement over what exists. we have multiple ideas on how to change the protocol. And here's a demo! Don't trust, verify.

Fede’s intern 🥊

16,713 Aufrufe • vor 2 Jahren

OpenLedger X Morpheus The partnership of openledger with Morpheus enables Use Morpheus to build "The Autonomous Smart Contract Engineer" on top of OpenLedger. What is Morpheus? Morpheus is a Web3-native AI coding agent that turns natural language into executable smart contracts and full-stack dApps. It is powered by a specialized Solidity model built on top of OpenLedger, tailored for the unique demands of secure and efficient onchain development. It goes beyond code generation. Using fine-tuned models, agent-based architecture, and modular plugin support, Morpheus automates the entire development pipeline-from writing and simulating contracts to deploying and maintaining them. Its mission is to reduce the barrier to dApp creation while enabling autonomous agents and individuals to participate in decentralized economies. Why OpenLedger? The rise of AI agents in Web3 raises urgent questions around transparency, attribution, explainability, and contributor incentives. OpenLedger provides the infrastructure to ensure that contributor data used in model outputs is recorded with verifiable attribution. Through Proof of Attribution, contributors-whether they provide prompts, datasets, or logic refinements-can receive credit and rewards when their work influences model behavior. But attribution alone isn’t enough. In critical domains like smart contract deployment, DeFi automation, and DAO governance, understanding why a model made a decision is just as important as the output itself. OpenLedger supports explainability by linking outputs back to their original data sources-allowing developers and auditors to trace logic, validate decisions, and build trust in AI-powered systems. OpenLedger supports Morpheus by: Recording which data was used in generating model outputs Enabling verifiable attribution of contributed datasets Powering reward mechanisms for contributors Offering scalable and efficient model execution via OpenLoRA Supporting transparency and traceability in model decision-making This creates an open, rewardable foundation for AI-driven coding-without relying on opaque systems. How is the system built? The Morpheus architecture has three layers: Datanet Layer OpenLedger powers Morpheus with a specialized Datanet - a decentralized data layer where developers, auditors, and contributors can share smart contract patterns, audit logs, exploit reports, and logic modules. Each submission is recorded onchain with attribution using OpenLedger’s Proof of Attribution. As the model learns and evolves from this data, contributors receive rewards proportional to their impact on future outputs. The Morpheus architecture has two layers: Intent Layer Users describe what they want to build. Example: "Create a token with tax logic that routes to a DAO." Morpheus parses the instruction, retrieves relevant contract types, and plans a modular execution flow. Agent Layer The agent generates, tests, and assembles the contract. It handles versioning, logic validation, and deployment readiness. Security checks-reentrancy protection, overflow control, gas modeling-are embedded into the generation phase. Generated outputs are mapped to their source data using OpenLedger’s Proof of Attribution, providing traceability across the pipeline. How does the AI model work? Morpheus is being powered by a specialized Solidity model built on top of OpenLedger. This model is purpose-built to handle the nuances of smart contract logic, security, and upgradeability. Unlike generalized coding agents, it is designed specifically for EVM environments and Web3 use cases, drawing from real protocol data and security best practices. Morpheus is fine-tuned on a vertical stack of smart contract data: Audited protocol code (e.g., Uniswap V4, Compound) OpenZeppelin libraries and EIP reference implementations Smart contract vulnerability reports and exploit reconstructions Edge cases from fuzz testing and adversarial examples It uses models like CodeLlama and DeepSeek-Coder, enhanced through RAG pipelines referencing standardized security patterns and emerging protocol designs. This training stack is integrated into a continuous feedback loop, enabling real-time specialization for EVM and beyond. Why a specialized model is needed? Smart contract development is uniquely high-stakes. A generalized AI model is not enough. As 'vibe coding' and natural language programming become more common, we're seeing an influx of AI-generated code in Web3 as well. But smart contracts are not frontends or prototypes-they govern real value, enforce trustless execution, and often become immutable after deployment. Billions have been lost in Web3 due to bugs and inefficiencies: In 2022 alone, over $3.8 billion was stolen due to smart contract exploits, many of which stemmed from avoidable issues like reentrancy, integer overflows, or access control failures. Inefficient contract structures lead to unnecessary gas consumption. Optimizing for gas can reduce costs by up to 40%, saving projects millions over time. Upgradeable contract patterns, like UUPS or Transparent Proxies, require strict adherence to storage layout and initialization rules. Mistakes here often go undetected by generic models and can render a contract unupgradeable or vulnerable. A specialized Solidity model is trained on real-world exploits, EIP standards, and libraries like OpenZeppelin to: Generate secure, gas-efficient code by default Recognize and correctly implement complex proxy patterns Map user intent to modular, auditable contract architectures Incorporate battle-tested logic from audited protocols and fuzz-tested edge cases Morpheus goes beyond syntax-it understands the nuances of decentralized infrastructure and deploys code that meets production-grade standards. What applications will this enable Token creation with built-in logic (tax, liquidity, governance) DeFi automations triggered by market conditions Payment contracts between agents and contributors DAO tooling with dynamic NFT-based voting Cross-chain bridging logic tied to real-world oracles Asset issuance flows through chat-based interfaces Natural language contract templates with reusable logic Each of these flows is backed by OpenLedger’s Proof of Attribution-ensuring traceability, explainability, and fair rewards across the ecosystem. This is the future of AI-native development. Open. Attributed. Explainable. Community-powered. Morpheus and OpenLedger are building the first system for autonomous coding agents where: Contributor work is recorded onchain Reuse is incentivized through attribution Model outputs are traceable and explainable Contracts evolve through human-agent collaboration Anyone can contribute prompts, logic, or flows-and get rewarded The smart contract engineer is no longer a human-only role. It is an agentic, decentralized, and transparent process-powered by OpenLedger.

OpenLedger

46,735 Aufrufe • vor 1 Jahr

𝐀 𝐒𝐧𝐞𝐚𝐤 𝐏𝐞𝐞𝐤 𝐢𝐧𝐭𝐨 $DSYNC 𝐏𝐫𝐢𝐦𝐮𝐬 𝟐.𝟎 – 𝐓𝐡𝐞 𝐌𝐨𝐬𝐭 𝐀𝐝𝐯𝐚𝐧𝐜𝐞𝐝 𝐀𝐈 𝐀𝐠𝐞𝐧𝐭 𝐢𝐧 𝐖𝐞𝐛𝟑 Primus 2.0 isn’t just another AI. It’s the most advanced on-chain AI agent—𝐜𝐚𝐩𝐚𝐛𝐥𝐞 𝐨𝐟 𝐛𝐮𝐢𝐥𝐝𝐢𝐧𝐠 𝐟𝐮𝐥𝐥𝐲 𝐟𝐮𝐧𝐜𝐭𝐢𝐨𝐧𝐚𝐥 𝐖𝐞𝐛𝟑 𝐝𝐀𝐩𝐩𝐬, 𝐜𝐨𝐦𝐩𝐥𝐞𝐭𝐞𝐥𝐲 𝐚𝐮𝐭𝐨𝐧𝐨𝐦𝐨𝐮𝐬𝐥𝐲. In this sneak peak video of the upcoming upgrade coming to Primus, 𝐢𝐭 𝐛𝐮𝐢𝐥𝐝𝐬 𝐚 𝐰𝐞𝐛-𝟑 𝐃𝐚𝐩𝐩 (𝐜𝐫𝐲𝐩𝐭𝐨 𝐜𝐨𝐢𝐧 𝐟𝐥𝐢𝐩 𝐠𝐚𝐦𝐞) 𝐟𝐫𝐨𝐦 𝐬𝐜𝐫𝐚𝐭𝐜𝐡 𝐰𝐢𝐭𝐡𝐢𝐧 𝐦𝐢𝐧𝐮𝐭𝐞: • Plans architecture • Writes smart contract + game logic • Builds UI • Fixes bugs • Optimizes code • Launches the dApp • Places live test bets 𝐀𝐥𝐥 𝐰𝐢𝐭𝐡𝐨𝐮𝐭 𝐚 𝐬𝐢𝐧𝐠𝐥𝐞 𝐥𝐢𝐧𝐞 𝐨𝐟 𝐡𝐮𝐦𝐚𝐧 𝐜𝐨𝐝𝐞. 𝐏𝐨𝐰𝐞𝐫𝐞𝐝 𝐛𝐲 𝐭𝐡𝐞 𝐟𝐢𝐫𝐬𝐭 𝐞𝐯𝐞𝐫 𝐝𝐞𝐜𝐞𝐧𝐭𝐫𝐚𝐥𝐢𝐳𝐞𝐝 𝐌𝐂𝐏𝐬 — tokenized nodes across the Destra Network—𝐏𝐫𝐢𝐦𝐮𝐬 𝐜𝐨𝐧𝐧𝐞𝐜𝐭𝐬 𝐭𝐨 𝐫𝐞𝐚𝐥-𝐭𝐢𝐦𝐞 𝐤𝐧𝐨𝐰𝐥𝐞𝐝𝐠𝐞, 𝐰𝐢𝐭𝐡 𝐳𝐞𝐫𝐨 𝐫𝐞𝐥𝐢𝐚𝐧𝐜𝐞 𝐨𝐧 𝐜𝐥𝐨𝐮𝐝 𝐨𝐫 𝐀𝐏𝐈𝐬. No scripts. No prompts. Just describe what you want—and it builds it. This is the future of Web3 development. Built by AI. Owned by no one. Watch it unfold:

Destra Network

106,156 Aufrufe • vor 1 Jahr

One of the most tedious (but critical tasks) for software development teams is updating foundational software. It’s not new feature work, and it doesn’t feel like you’re moving the experience forward. As a result, this work is either dreaded or put off for more exciting work—or both. Amazon Q, our GenAI assistant for software development, is trying to bring some light to this heaviness. We have a new code transformation capability, and here’s what we found when we integrated it into our internal systems and applied it to our needed Java upgrades: - The average time to upgrade an application to Java 17 plummeted from what’s typically 50 developer-days to just a few hours. We estimate this has saved us the equivalent of 4,500 developer-years of work (yes, that number is crazy but, real). - In under six months, we've been able to upgrade more than 50% of our production Java systems to modernized Java versions at a fraction of the usual time and effort. And, our developers shipped 79% of the auto-generated code reviews without any additional changes. - The benefits go beyond how much effort we’ve saved developers. The upgrades have enhanced security and reduced infrastructure costs, providing an estimated $260M in annualized efficiency gains. This is a great example of how large-scale enterprises can gain significant efficiencies in foundational software hygiene work by leveraging Amazon Q. It’s been a game changer for us, and not only do our Amazon teams plan to use this transformation capability more, but our Q team plans to add more transformations for developers to leverage.

Andy Jassy

998,888 Aufrufe • vor 1 Jahr

🚨 SOMETHING EXTREMELY BAD IS COMING TOMORROW!! In less than 24 hours, SpaceX goes public at a $1.80 TRILLION valuation. And in 10 years of trading, I have NEVER seen markets change the rules like this. Nasdaq, MSCI, and the biggest brokers in America all bent their own rules for ONE private company. The entire system suddenly became much easier to access. Fidelity reportedly dropped its minimum requirement from $500,000 to just $2,000. A 99.6% reduction. Ask yourself one question. Why do they suddenly want millions of retail investors involved right before the biggest IPO in history? Because somebody needs buyers. SpaceX reportedly reserved around 30% of the deal for retail. Almost 3 times the normal amount. And even then, demand is overwhelming supply. Now connect the dots. Everyone wants SpaceX. But money does NOT appear from nowhere. To buy $SPCX, people need cash. To get cash, they sell what they already own. → Stocks. → Crypto. → AI names. → High beta tech. Everything. And that is exactly what we are seeing right now. But that is not even the biggest part. SpaceX joins the Nasdaq 100 just 15 days after listing. Not 3 months. 15 days. That means billions of dollars of passive money will be forced to buy. Funds know this. They are positioning before it happens. This is NOT a normal IPO. This is one of the largest liquidity events in market history. We have seen this movie before. → 2000 Dotcom bubble. → 2021 SPAC mania. Massive hype. Massive demand. Then reality arrives. The question is simple. Are you buying the opportunity? Or are you becoming the exit liquidity? I’ve studied macro for 10 years and I called almost every major market top, including the October BTC ATH. Follow and turn notifications on. I’ll post the warning BEFORE it hits the headlines.

Wimar.X

228,805 Aufrufe • vor 1 Monat

Glamsterdam is the performance upgrade, I've already talked about it. But Hegotá is something different: scheduled for H2 2026, it's Ethereum's "cleanup and hardening" fork. 3 problems. 3 technical solutions. All shipping in one fork 👇 1️⃣ The problem Hegotá is actually solving Glamsterdam targets throughput: 10,000 TPS, 200M gas limit, parallel execution. The performance gap with Solana narrows materially. Hegotá targets something harder to quantify but more fundamental. After Glamsterdam, Ethereum will be fast. The question Hegotá answers is: fast and controlled by whom? The Tornado Cash sanctions in 2022 exposed the vulnerability. OFAC-compliant block builders (the entities that construct Ethereum blocks under MEV-Boost) began filtering Tornado Cash transactions entirely. Legitimate users with sanctioned addresses couldn't get transactions included. The block builders, sitting between validators and the mempool, had the practical ability to censor at will. ePBS (shipping in Glamsterdam) brings block building onchain and removes the external relay dependency. But it doesn't solve the censorship problem at the transaction inclusion level. A block builder onchain can still refuse to include specific transactions. FOCIL solves that. --------------------------------------------------------------------------------------- 2️⃣ FOCIL: anti-censorship mechanism EIP-7805. Fork-Choice Enforced Inclusion Lists. The mechanism: every block slot, 17 participants are randomly selected from the validator set. Each one can submit a short list of transactions they want included in the next block. The block builder, even the onchain builder introduced by ePBS, must include those transactions or the block is invalid. 17 random validators per slot. Statistically, any attempt to censor a transaction requires controlling enough of the validator set to dominate every random selection simultaneously. At Ethereum's current validator count accounting for over 1 million, that requires controlling a supermajority of stake. In practice, FOCIL makes censorship at the block production level computationally and economically prohibitive for any entity that doesn't control an implausible share of staked ETH. → Block builders can no longer selectively exclude transactions → OFAC-compliant relays lose their censorship leverage at the inclusion layer → The Tornado Cash scenario becomes structurally impossible at protocol level → FOCIL prototype has a runnable implementation, entering multi-client devnet validation now This is the most significant censorship-resistance improvement in Ethereum's history. It's also the least discussed upgrade in CT because censorship resistance doesn't generate price speculation the way throughput numbers do. --------------------------------------------------------------------------------------- 3️⃣ Verkle Trees: the node operator revolution Currently, Ethereum nodes use Merkle Patricia Trees to store and verify state. To verify any piece of state, a node needs a "witness": a proof that includes all the intermediate hashes along the path from the root to the target data. For Ethereum's current state size, witnesses are large, bandwidth-heavy, and require the node to store significant local data. Verkle Trees replace this with a cryptographic structure that produces dramatically smaller witnesses. The same proof that requires kilobytes under the Merkle Patricia Tree model requires only hundreds of bytes under Verkle Trees. The consequence: → Node storage requirements drop by approximately 90% → Witnesses become small enough to transmit in real time during block propagation → "Stateless clients" become possible thanks to nodes that can verify the chain without storing full state locally → The hardware and bandwidth requirements to run a full Ethereum node drop to consumer levels permanently The long-term threat to Ethereum's decentralisation is not a 51% attack but the quiet centralization of the validator set as node hardware requirements creep upward with state growth. Verkle Trees break that trend structurally: → Anyone with a laptop and residential internet can run a full node post-Hegotá → The validator set becomes more accessible, not less, as Ethereum scales → Home stakers that represents the most decentralisation-aligned validator category stop being priced out by state growth The transition requires migrating every account and contract on the network from the Merkle Patricia Tree structure to Verkle Trees. --------------------------------------------------------------------------------------- 4️⃣ Account Abstraction ERC-4337 account abstraction has existed as an application-layer standard since 2023. Hegotá brings native protocol-level account abstraction: the scope has been defined and the multi-client devnet validation phase is beginning now. What protocol-level AA enables that ERC-4337 doesn't: → Any Ethereum account can have programmable spending rules without deploying a separate smart contract → Social recovery becomes a native feature → Gasless transactions, batched operations, and custom signature schemes work at the protocol level rather than requiring wrapper contracts → The UX gap between crypto wallets and traditional financial apps narrows at the infrastructure level For DeFi specifically, account abstraction at the protocol level means liquidation bots, yield automation, and portfolio management strategies can be encoded directly into wallet logic. The current pattern of deploying separate smart contract accounts for every user who wants programmable behaviour disappears. --------------------------------------------------------------------------------------- 5️⃣ The thesis The Glamsterdam piece ended with a thesis about performance re-rating and monetary premium recovery. Hegotá's thesis is different and in some ways more durable. Ethereum in early 2027 (post both upgrades) will be a structurally different network from the one that exists today. Not only faster. Harder to censor. Cheaper to secure. More accessible to home validators. Native smart account functionality for every user. The market prices upgrades for what they do to throughput and fees because those metrics are immediately visible. Censorship resistance, node decentralisation, and wallet programmability compound over years rather than showing up in 30-day fee data. Hegotá is the upgrade that determines whether Ethereum is still genuinely decentralised and censorship-resistant five years from now... ...or whether it quietly became something controlled by a small set of sophisticated block builders and large node operators. That question doesn't generate CT threads. But if think about it is the one that actually matters!

Mercek

18,052 Aufrufe • vor 2 Monaten

BITCOIN RAILS #69: ZERO-KNOWLEDGE PROOFS FOR POST-QUANTUM BITCOIN | with Benedikt Bünz 🔗 YOUTUBE: 🌿 SPOTIFY: While many Bitcoiners remain hopeful the network will embrace zero-knowledge proofs for protocol-level use cases, practical adoption has remained limited outside of BitVM and a handful of experimental proposals. Most of the world’s ZKP research has circled around Ethereum and other ecosystems, where significant resources have been dedicated to advancing these systems, particularly for scaling and privacy applications. One of the most notable contributors to this research is Benedikt Bünz ☕️ — professor of cryptography at NYU and collaborator of Dan Boneh, who together inarguably form one of the strongest blockchain-applied cryptography teams in the world. The pair recently announced they’ll be leading the new post-quantum cryptography unit localhost research — the first dedicated PQ research effort within a major Bitcoin development organization. With Benedikt leading the charge on the use of zero-knowledge proofs for post-quantum mitigation, the question emerges: will the post-quantum transition be the catalyst to finally bring zero-knowledge proofs to Bitcoin's core protocol? In more detail, Benedikt and I discuss: - Why ZKPs haven’t been widely adopted by the Bitcoin technical community — and why the threat of quantum computers may change that posture going forward - How ZKPs could be used for signature batching to address larger post-quantum signatures in Bitcoin’s post-quantum era - Why Bitcoiners will likely prioritize hash-based signatures as an initial post-quantum scheme — rather than more efficient but less proven alternatives (e.g., lattice-based) - How ZKPs have evolved over the last decade and may finally be ready for Bitcoin’s strict requirements around trust assumptions - Why Benedikt and Dan are teaming up with localhost research to create the first post-quantum cryptography unit within a major Bitcoin development organization + what they hope to accomplish This episode of Bitcoin Rails is brought to you by: LayerTwo Labs LayerTwo Labs — developing research, software, and technologies for scaling Bitcoin via the integration of Drivechains (BIP 300/301) Hashi on Sui — a primitive for executing Bitcoin DeFi transactions, without having to trust a federated bridge or other centralized entity BitBox BitBox — an open-source Bitcoin-only hardware wallet, with smooth UX and no compromises on security. Check out Bitbox [dot] swiss and use code BITCOINRAILS to get a discount TIMESTAMPS: 00:00 — Intro 00:22 — Benedikt's background 04:10 — How Benedikt got into Bitcoin and cryptography 07:42 — First ZK project: proving exchange solvency after Mt. Gox 16:01 — ZK proofs explained 27:43 — How security gets popular & ZK proofs in Bitcoin 35:49 — Other applications of ZK proofs for Bitcoin 40:15 — Why ZK proofs haven't been adopted in Bitcoin 50:46 — Why the Bitcoin post-quantum transition needs ZK proofs 01:07:00 — Cryptographic agility and why lattices win 01:18:00 — The size problem and how SNARKs solve it 01:33:57 — Proving a Bitcoin block in a laptop in 1.5 seconds 01:37:12 — Bitcoin as the primary quantum target 01:40:47 — ZK proofs for seed phrase recovery

Isabel Foxen Duke⚡️

19,459 Aufrufe • vor 12 Tagen

Revolutionizing Access to #GPU Power - One Node at a Time.⚡️ Our 10th Utility is coming out on June 20.🚨 BIG GPU Nodes Platform isn’t just another name in the crowded GPU cloud services space, we’re a game-changer. Our platform is purpose-built to bridge the gap between server owners and those hungry for raw, high-performance computing power. 🖥️ We specialize in connecting suppliers from individual server owners to enterprise-scale GPU rig operators with consumers who demand serious horsepower for AI, machine learning, data science, and other compute-heavy applications. Whether you’re offering a sleek single-GPU setup or a massive mining-style array with multiple GPUs, BIG GPU Nodes is your launchpad. We make it simple to rent out underutilized GPU resources and just as easy for users to find exactly what they need — fast, affordable, and tailored to their workload.⛓️‍💥 This is more than cloud computing. This is decentralized GPU power for the future of innovation. ♾️ This product will generate revenue and we will give back to our loyal $CNCT holders. ✨ We’re proud to have MESSIER | M87 as our trusted partner and advisor, backing us with this vision. #M87 🤝 $CNCT From the very beginning, we promised you ONE BIG ECOSYSTEM, and a seamless space where everything you need comes together. Now, that vision is becoming reality. Millions of users will soon be connected, working, creating, and thriving within it. 🌍

Fixera AI

26,669 Aufrufe • vor 1 Jahr

> celestia's matcha upgrade coming next monday: the first DA layer ready for nasdaq scale onchain finance. what did Nick White say tonight on The Rollup? ⇾ Celestia identified clob exchanges as the strongest product fit for its architecture, since exchanges need ultra low latency and very high throughput. single sequencer rollups provide the fastest latency while still enabling censorship resistance and non custodialness. ⇾ fully onchain clobs require posting all orders and cancels on chain, demanding mb/sec da capacity. the upcoming matcha upgrade enables 5 mb/s, and governance can scale this to 20 mb/s, enough for nasdaq level traffic. ⇾ teams like RISE are ready to use this throughput, reinforcing celestia's push toward vertical integration. ⇾ also depends on matcha's higher throughput, adding urgency to the upgrade. matcha reduces issuance to 2.5% and ships components of the long term proof of governance model, which removes staking and pays ~0.25% issuance directly to validators. ⇾ celestia is shifting from a build whatever approach toward targeting apps with real pmf, mirroring broader industry moves toward more opinionated architectures. because mass adoption is still far away, path dependency matters: the team believes only about 10 apps truly matter, and celestia needs to win some of them. ⇾ high volume markets like onchain forex require massive DA and celestia is one of the few platforms capable of supporting this scale. success of bullet or other clobs would prove that wall street scale onchain finance is possible. ⇾ tradfi teams are increasingly exploring building on chain platforms, and celestia must balance institutional needs with fast moving native teams. ⇾ private blockspace is already live in production with Hibachi with clear institutional and dex interest. celestia focuses mainly on app acquisition while dedicating ~20% to internal tooling.

Mora 🦥

31,824 Aufrufe • vor 8 Monaten

Say hello to a massive acceleration of AI smart contracts 🧠 on the Internet Computer #ICP blockchain. Brilliant work by the DFINITY Foundation team has accelerated deterministic floating point instructions by 10X. We continue on our mission to run sophisticated LLMs as smart contracts 👊⚡️🔥 In the demo, image classification is now running 3X+ faster (across 3-4 blocks through consensus compared to 10-12 before). Naturally, the gas/cycles costs of AI inference has come down commensurately. The acceleration was achieved through broad low-level work, which includes commits to the public Wasmtime virtual machine implementation of WebAssembly. Coming optimizations will take us much further. The next optimization will include the integration of SIMD instructions into the smart contract execution environment, which will allow multiple floating point calculations to be performed in parallel through the execution of a single instruction. Something crucial: also in near sight, is the migration of the ICP smart contract environment from 32-bit Wasm to 64-bit Wasm, which will scale the number of AI model weights that can be loaded into contract memory from 2B to whatever is needed for sophisticated LLMs. Somewhat further away, is the provision of new APIs allowing canister smart contract code to export AI computations for accelerated processing on GPUs. This will require substantial work to address the challenges of achieving deterministic computation directly on the silicon, and for the community to agree a new public spec for node machines that pack GPUs, and to add compliant blockchain nodes to the network. Together, these improvements will unlock further orders of magnitude acceleration of AI smart contract inference (and potentially training). We believe that in the future vast numbers of AI models will run as smart contracts, which will prevent them being hacked (and thus the sensitive data they ingest being stolen), make them unstoppable, make them transparent, and where needed, allow them to run autonomously – for example for purposes such as KYC or EVM smart contract verification/certification. In the future, you will be able to have a conversation with a blockchain, and ask it to do reasoning for you. In this bright future, on-chain AI will be at the heart of Web3 – and to be clear, the Internet Computer's chain key technology will allow direct trustless integration with smart contracts on traditional chains such as Ethereum, Solana and NEAR. Join the #ICP mission to run the most impactful AI models on blockchain as smart contracts, and help make the Internet Computer the "everything computer." Join next week's Global R&D for details about the low-level deterministic floating point optimizations. Thanks for following 💪
2:03

Sensitive content

Say hello to a massive acceleration of AI smart contracts 🧠 on the Internet Computer #ICP blockchain. Brilliant work by the DFINITY Foundation team has accelerated deterministic floating point instructions by 10X. We continue on our mission to run sophisticated LLMs as smart contracts 👊⚡️🔥 In the demo, image classification is now running 3X+ faster (across 3-4 blocks through consensus compared to 10-12 before). Naturally, the gas/cycles costs of AI inference has come down commensurately. The acceleration was achieved through broad low-level work, which includes commits to the public Wasmtime virtual machine implementation of WebAssembly. Coming optimizations will take us much further. The next optimization will include the integration of SIMD instructions into the smart contract execution environment, which will allow multiple floating point calculations to be performed in parallel through the execution of a single instruction. Something crucial: also in near sight, is the migration of the ICP smart contract environment from 32-bit Wasm to 64-bit Wasm, which will scale the number of AI model weights that can be loaded into contract memory from 2B to whatever is needed for sophisticated LLMs. Somewhat further away, is the provision of new APIs allowing canister smart contract code to export AI computations for accelerated processing on GPUs. This will require substantial work to address the challenges of achieving deterministic computation directly on the silicon, and for the community to agree a new public spec for node machines that pack GPUs, and to add compliant blockchain nodes to the network. Together, these improvements will unlock further orders of magnitude acceleration of AI smart contract inference (and potentially training). We believe that in the future vast numbers of AI models will run as smart contracts, which will prevent them being hacked (and thus the sensitive data they ingest being stolen), make them unstoppable, make them transparent, and where needed, allow them to run autonomously – for example for purposes such as KYC or EVM smart contract verification/certification. In the future, you will be able to have a conversation with a blockchain, and ask it to do reasoning for you. In this bright future, on-chain AI will be at the heart of Web3 – and to be clear, the Internet Computer's chain key technology will allow direct trustless integration with smart contracts on traditional chains such as Ethereum, Solana and NEAR. Join the #ICP mission to run the most impactful AI models on blockchain as smart contracts, and help make the Internet Computer the "everything computer." Join next week's Global R&D for details about the low-level deterministic floating point optimizations. Thanks for following 💪

dom | icp

278,296 Aufrufe • vor 2 Jahren