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Joined March 2023
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We are building the full-stack infrastructure for the next generation of Web3 & AI. Here is the ecosystem powered by AntChain OpenLabs & Ant Digital Technologies, categorized by stack: 1️⃣ Core Infrastructure - The bedrock of performance and security. DTVM / zkDTVM (Virtual Machines) AntChain BaaS & Bridge Jovay @JovayNetwork (L2 Network) NitrooZK-stwo & ZK GPU Acceleration 2️⃣ AI & Agent Intelligence - Enterprise-grade autonomy and intelligence. DTClaw (Secure Autonomous Agents) Agentar (Financial Agents) Anvita @AnvitaFlow (TaaS & Flow) LingDT (LLM) SmartCogent (AI tools) 3️⃣ Products & Services - Bridging the digital and physical world. TopNod @Top_nod (Wallet) ZOLOZ (Digital Identity) Look-to-Pay (AI Glasses) & Physical Asset On-Chain ZAN @zan_team (Node Service & ZK Acceleration & Smart Contract Audit) A massive ecosystem driving innovation. Which project are you most excited about? #Web3 #AI #ZK #Blockchain #AntChain #Developer
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AntChain OpenLabs retweeted
Update on Jovay: We’re pushing transaction latency down to ~100ms. Impact: Inheriting L1 security while enabling high-performance L2 scalability. This breaks the Blockchain Trilemma and unlocks real-time capacity for CLOB and Web3 Gaming. Architecture blueprint: 1. Speculative Pipelining: Blurring the lines between consensus and execution. Blocks are executed speculatively while consensus is being reached. 2. Temporal Latency Folding: Concurrent multi-block processing to crush block-time gaps. 3. Conflict-Aware Scheduling: Preemptive conflict detection in the mempool for optimal parallel routing.
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Our zkDTVM 8-GPU prover is now live on Ethproofs (@eth_proofs). zkDTVM is the world's first zkVM to achieve real-time proving on 8x 5090s: 🔹 99% proving < 7.7s 🔹 Avg proving time: 4.64s 🔹 Security: 100-bit (UDR) 🔹 Proof size < 600 KB Next: Proof size < 300 KB & 128-bit security. #ZK #zkVM #Ethereum #EthProofs #RealTimeProving
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zkDTVM v0.6.2 is live on @eth_proofs: Proof size < 600KB while performance remains largely unchanged. Highlights: 🔹Path-Pruned FRI Verification 🔹Template-Clone Parallel Compilation 🔹FRI Early Termination 🔹Batched Witness Reads Constant Deduplication
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Post-quantum signatures are orders of magnitude larger than ECDSA — a dealbreaker for high-throughput blockchains. Our zkDTVM changes that: 4,500 leanXMSS sigs (~5.3 MiB) is compressed into one ZK proof (~577 KiB). Single GPU results: ⚡ 17,857 leanXMSS verifications/sec ⚡ 21× faster than leanVM (CPU prover) ⚡ End-to-end quantum-resistant Next up: SPHINCS . Full writeup 👇 openlabs-intl.antdigital.com…
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Introducing Pangolin: A padding-aware commitment scheme based on Basefold. Instead of materializing repeated padding rows after encoding, Pangolin uses a simple observation: Back-padding in the trace becomes front-padding in the encoded matrix. So the commit path can hash the padding row once and reuse its digest. Same commitment semantics — less prover work: ✅ Store the padding row once ✅ Fewer encoded rows to hash/read ✅ Less prover data and memory traffic ✅ GPU-friendly: less global-memory bandwidth pressure The 5th post in the zkDTVM series: openlabs-intl.antdigital.com…
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Last week, zkDTVM proved 100% of Ethereum blocks. Every proof was under 8.8s, with an average time of just 3.1s. Fastest. Most Stable. Most Reliable.
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AntChain OpenLabs retweeted
Wow, the metrics this week from the RTP Cohort on Ethproofs are fantastic! 🤯 - @AntChainOpenLab: 99.9% on both performance (sub-10s) and liveness - @brevis_zk: 91.77% on performance and 99.21% liveness 💪
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Introducing UniSkip-in-the-Tail: GPU‑native optimization for SumCheck's underutilized tail rounds. Instead of suffering through sequential memory‑bound rounds with shrinking trace height, we consolidate multiple tail variables into a single higher‑degree univariate evaluation. One algebraic construction — zero extra reconciliation phases: ✅ No Phase‑2 protocol (unlike Whirlaway) ✅ k rounds → 1 round via Lagrange bit‑lifting ✅ Alleviates memory bottleneck, boosts GPU resource utilization ✅ GPU‑friendly: parallel finite‑field eval over fixed interpolation domain openlabs-intl.antdigital.com…
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Another record broken! With better multi-GPU optimizations, zkDTVM’s avg proving time on 16 GPUs is now 3.5s. #zkDTVM #EthProofs #Ethereum #GPU #ZK
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AntChain OpenLabs retweeted
This week we had 3 provers make the RTP Cohort on Ethproofs. Congrats to @ziskvm, @brevis_zk, and @AntChainOpenLab! zkDTVM was integrated into soundcalc (link below) last week as their final requirement ...let's see if they can make the liveness and performance cut again next week!
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zkDTVM enters the RTP cohort on @eth_proofs: 99.91% liveness, 99.91% of proofs < 10s.
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Introducing FusedCheck: a simpler way to verify LogUp in multi‑chip STARKs. Instead of running-sum columns or 300 round GKR circuits, we fuse the permutation summation directly into the existing constraint sumcheck. One protocol instance — zero extra rounds: ✅ No extra columns or AIR constraints ✅ No shifted openings (~2× PCS cost saved) ✅ ~20 sumcheck rounds vs. 300 in GKR ✅ GPU‑friendly: minimal sequential barriers Part 3 of the zkDTVM deep‑dive: openlabs-intl.antdigital.com…
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zkDTVM Docker release is live! Run it and experience the fastest real-time prover for Ethereum block. What’s Next: 🔹May: Proof size <600KB (performance unchanged) 🔹August: Full open-source release Stay tuned! 👇 github.com/AntChainOpenLabs/…
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Part 2 of the zkDTVM deep‑dive is out — read the post: openlabs-intl.antdigital.com… We break down the SumCheck PIOP, the most GPU‑critical stage of the prover, and how we reshape it so every round becomes a large GPU‑saturating batched kernel. Inside: 🔹One SumCheck for all chips 🔹Univariate‑skip‑in‑the‑tail 🔹Algebraic decomposition 🔹Trace compression
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zkDTVM hits #1 on EthProofs — 3.7s Ethereum block proof, exciting progress toward real-time proving for Ethereum. We built zkDTVM from the ground up as a GPU-native zkVM. Instead of bolting GPU kernels onto a CPU-shaped pipeline, we co-designed every layer — execution, arithmetization, and proving — for end-to-end CUDA acceleration, with no CPU fallback on the critical path. Full architecture deep-dive 👇 openlabs-intl.antdigital.com… Coming up next in the series: 🔹Execution & circuit co-optimization 🔹GPU-optimized SumCheck protocol 🔹Univariate-skip-in-the-tail 🔹 Protocol-level LogUp for local-only AIRs 🔹 End-to-end CUDA pipeline Stay tuned.
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Ant Digital Technologies' zkDTVM Tops Benchmark "EthProofs" In the recent global benchmark test "EthProofs" initiated by Ethereum, Ant Digital Technologies' Zero-Knowledge Proof Virtual Machine (zkDTVM) achieved a new record - block proving time of 3.7 seconds, securing the No. 1 spot globally. This breakthrough also provides new capabilities to support trusted collaboration between AI agents. 🔗 theblockbeats.info/flash/343…
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Our zkDTVM 16-GPU prover is now live and has taken the #1 spot on Ethproofs (@eth_proofs), enabling real-time proving for @ethereum: 🔹99% proving < 5.7s 🔹100% proving < 8.18s 🔹Avg proving time: 3.69s 🔹Security: 100-bit (UDR) Open-sourcing soon. Launching on @JovayNetwork soon. As the trusted on-chain data infrastructure for the agentic era, zkDTVM will power our ecosystem of Agent Web3 solutions—such as agent payments—with a robust, verifiable backbone. openlabs-intl.antdigital.com… #ZK #zkVM #Ethereum #EthProofs #RealTimeProving
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3k block sample from 24972500: ⏱️ Max time: 8.18s, average time: 3.69s 📊 Statistics: p50=3.7s, p90=4.3s, p99=5.7s
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