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QF NETWORK: RISC-V SMART CONTRACTS NOW LIVE! World's first RISC-V smart contract platform is here! With groundbreaking PVM architecture now available on Devnet, delivering unprecedented performance for decentralized applications. Current Status: Our core technical foundation is solid and functional. The platform supports the full smart contract lifecycle - from...

37,566 views • 1 year ago •via X (Twitter)

11 Comments

The Altcoin Sensei's profile picture
The Altcoin Sensei1 year ago

It’s time

Lab4crypto's profile picture
Lab4crypto1 year ago

🚀 Don't gamble with your portfolio! Use our advanced hybrid quant risk tool using on/off-chain data and make informed decisions. 📈 Acess to 1000+ charts for your crypto journey. 📚Join our Premium Telegram for daily alerts. 📊+21 projects supported. 🏗️ Beginners and experts.

🅧 Bit-o-Money's profile picture
🅧 Bit-o-Money1 year ago

This team does not stop cookin! $QF

Crypto_Jopp's profile picture
Crypto_Jopp1 year ago

$QF 🔥🔥🔥🔥

UpOnlyGreg's profile picture
UpOnlyGreg1 year ago

Incredible $QF

Hardwire Media's profile picture
Hardwire Media1 year ago

Worlds first demonstration of RISC-V based smart contracts??? @VitalikButerin check this out 👀

Crypto Gideon(🧠,🧠)'s profile picture
Crypto Gideon(🧠,🧠)1 year ago

Massive for $QF 👀

Ibrahim Wali's profile picture
Ibrahim Wali1 year ago

LFG. $QF all the way 🔥🔥💯

Zephyr's profile picture
Zephyr1 year ago

$QF to 500 million✈️

Leo's profile picture
Leo1 year ago

Don’t fade the sOL of this cycle $QF

Crypto Fam's profile picture
Crypto Fam1 year ago

Massive milestone

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QANplatform

10,751 views • 9 months ago

A world first: a demonstration of AI running *on* blockchain as a smart contract 🧠⚡️ The Internet Computer is used – the world's first 3rd gen. blockchain #ICP. AI will become the beating heart of our web3, multi-chain world, and this is only my first demo. Code will follow shortly. This is running on DFINITY's Internet Computer testnet, but you'll be able to take the code and run it on the public network as the NNS is expected to up the per-transaction instruction limit in the coming days. Some important notes. The inference engine used has not been optimized, and we will show vastly greater efficiency in subsequent demos, where the AI runs even faster, and consumes less gas/cycles. We will also propose to the NNS that smart contracts have access to SIMD instructions – which we have determined are deterministic – unlocking vastly more speed and efficiency. Lastly, currently the actor smart contracts ICP hosts run inside a 32 bit environment, which limits their main memory to 4GB. Within the next couple of months, we expect the Internet Computer to move to a 64 bit environment, allowing smart contract memory limits to be raised much higher – allowing for models with far more parameters, and thus power, to be run. Those of you who have followed my posts know that hardware optimization support is planned. Firstly this will involve WASM smart contracts shipping out matrices for processing by the CPUs on existing node machines (another advantage of the Internet Computer running on sovereign node hardware). Secondly, we plan to propose a new public node machine specification, which node providers can build to, for use in subnets specialized for hosting AI smart contracts, in which each machine will incorporate several GPUs. Naturally, this will be packaged with other technological developments that ensure smart contract determinism. This is part of our mission to enable powerful LLMs to run as smart contracts on the Internet Computer – in a forms that are tamperproof, unstoppable, and optionally autonomous (including under the exclusive control of DAOs). Our vision: you will be able to have a chat with a smart contract. A smart contract will be able to coordinate your organization (see my earlier tweet about a "Delphi"). ICP smart contracts will be able to audit Ethereum smart contracts, kitemarking those without backdoors and reentrancy bugs. And smart contracts will be able to do KYC autonmously, matching faces to driving licenses, and more. We will deliver new SDK enhancements, and work with partners, to turbocharge crypto AI developers. Secure and unstoppable AI and third generation blockchain will be two sides of the same coin. Security and AI will be indivisible. AI models will be traded as NFTs. Thanks to Internet Computer's chain key (trustless multi-chain) capabilities, all blockchains will be able to leverage AI smart contracts. The future is beyond exciting. Thanks for watching. Can't wait to give you more demos!

dom | icp

1,362,206 views • 2 years ago

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 💪
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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

278,335 views • 2 years ago

Introducing Lithic ( the intelligent execution language powering the Lithosphere Network. For years blockchain has focused on programmable value. With Lithic, we move toward programmable intelligence. Lithic is designed to connect smart contracts, identity, AI systems, and cross-chain infrastructure into a unified execution fabric for the next phase of the internet. This is a core step toward the Web4 infrastructure stack we’ve been building at Lithosphere. Core Lithic Components • Lithic Execution Engine – deterministic runtime powering intelligent smart contract execution • LEP100 Intelligent Asset Framework – programmable token standard for adaptive digital assets • Lithic Modules (LSCL) – composable modules for governance, identity, compliance, and AI logic • Cross-Chain Orchestration Layer – communication between EVM, Cosmos environments, and external networks • Identity & Policy Hooks – programmable identity-aware transaction and asset control • AI Integration Layer – enabling intelligent validation, automation, and decision systems Together these components form the foundation for adaptive decentralized systems. Why Lithic matters Static contracts belong to Web3. Lithic enables: • intelligent assets • identity-aware protocols • AI-driven automation • modular decentralized infrastructure This is how blockchain evolves into the intelligent layer of the internet. 📚Lithic Documentation & Resources Learn more Docs: Tools, Scripts, examples etc: Lithic Contract Wizard and Verifier. LEP100 Standard-suite Lithosphere Developer Resources More developer tools, SDKs, and modules will be released alongside the Makalu Testnet.

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158,021 views • 5 months ago