3327
@3327_io
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Research and development gang focused on open-source, experiments, innovation and breakthroughs in #web3 space. Backed by @mvpworkshop
Belgrade, Serbia
Joined February 2021
π ZKP devs, we got you! Introducing ZKSIM Circom β a VS Code extension for seamless Circom & ZKP development! π₯ β
Syntax Highlighting β
Code Formatting β
Snippets for faster coding β
In-Editor Execution & Debugging Get it now! π https://t.co/Pike6hrMnA
#Circom #VSCode
marketplace.visualstudio.com
Extension for Visual Studio Code - An extension to assist ZK developers working with Circom files in VSCode.
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Join us for the second edition of ZK Belgrade β a focused day of talks, demos, and connections around zero knowledge cryptography.β π Date: June 5th, 2025 β° Time: 10:00 AM - 4:30 PM π Entry: free with your ETH Belgrade pass. https://t.co/bUFvH6xuvq
zkbelgrade.com
WHAT IS ZKBELGRADE? Belgrade Blockchain Week is an exciting time to gather for a one-day conference dedicated to one of the most revolutionary technologies in privacy and blockchainβZero Knowledge...
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Join us for the second edition of ZK Belgrade β a focused day of talks, demos, and connections around zero knowledge cryptography. βπ Date: June 5th, 2025 β° Time: 10:00 AM - 4:30 PM π Entry: free with your ETH Belgrade pass. https://t.co/uLR3AthUeR
luma.com
Join us for the second edition of ZK Belgrade β a focused day of talks, demos, and connections around zero knowledge cryptography. https://zkbelgrade.com/ β¦
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Check out our new blog post on code optimizations in post-quantum cryptography, written by PSE researcher Miha Stopar. Learn how vectorization compares in lattice-based vs. isogeny-based approaches! https://t.co/nNIazEI2RD
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The result? A more robust and adaptable Python Poseidon hash. And a ton of insight into ZK-friendly hashing. Read the full story: π
3327.io
Introduction In the digital age, where data security and integrity are most important, cryptographic hash functions form the backbone of modern system, including blockchain technologies and zero-kn...
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What followed was a deep dive into finite fields, round constants, matrix mixing, and non-linear functions. Along the way, he built support for 1β16 inputs, modular parameters, and better interoperability.
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Stefan tried building a flexible Python implementation of the Poseidon hash β optimized for ZK systems and inspired by Noir, Circom, and Go-iden3-crypto. But the outputs didnβt match... so he dug deeper. π
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ZK has a steep learning curve, but it shouldnβt stop curious devs from exploring. With ZKSIM, weβre building tools that make it easier to debug, visualize, and prototype ZK circuits. You should leave ZK only if you understand it, not because you got lost trying.
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This is not an April Foolsβ joke β the @Starknet community just got its first stealth addressβbased privacy solution! Weβre live on Sepolia testnet with the new Curvy web app! π Try it: https://t.co/BYkn7u8d2p π₯ Demo: https://t.co/fdb0OVCiC3 π§΅π
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A future ZK developer should leave ZKP only once they understand ZK and decide it's not for them, not because they got lost and gave up. So, our Marija Mikic together with Web3Surf created a Masterclass for ZKP Listen now:
udemy.com
Master Zero Knowledge Proofs: Learn SNARKs, STARKs, Polynomial Commitments, and PLONK Protocols for Cryptography and Blo
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See the circuit in motion and explore how Merkle tree proofs enable efficient and secure verification in zero-knowledge applications.
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Key highlights: π· Running the Circom circuit for inclusion verification π· Checking proof validity step by step π· Understanding how witness generation works π· Observing the constraints in action
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privacy-preserving verification is required. This video demonstrates the execution of a Merkle tree inclusion proof circuit in Circom. Watch as the circuit processes a proof, verifying whether a given leaf is part of a Merkle tree.
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A Merkle tree inclusion proof in Circom is a zero-knowledge proof that verifies whether a specific leaf node belongs to a given Merkle tree without revealing the entire tree structure. This is useful in blockchain and cryptographic applications where efficient and
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Key highlights: π§βπ» Running the Circom circuit for inclusion verification β
Checking proof validity step by step πβπ¨ Understanding how witness generation works π Observing the constraints in action
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This video demonstrates the execution of a Merkle tree inclusion proof circuit in Circom. Watch as the circuit processes a proof, verifying whether a given leaf is part of a Merkle tree.
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This is useful in blockchain and cryptographic applications where efficient and privacy-preserving verification is required.
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A Merkle tree inclusion proof in Circom is a zero-knowledge proof that verifies whether a specific leaf node belongs to a given Merkle tree without revealing the entire tree structure.
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Try it now and supercharge your development! Download our extension on VS Marketplace. https://t.co/Pike6hrMnA
marketplace.visualstudio.com
Extension for Visual Studio Code - An extension to assist ZK developers working with Circom files in VSCode.
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π» Built for Circom developers Whether you're a beginner or an expert, debugging has never been easier.
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