TLDR Vitalik Buterin proposes removing the modexp precompile feature he originally created for Ethereum. The modexp feature creates verification bottlenecks up to 50 times worse than average blocks. Vitalik Buterin admitted his mistake and said he “bows his head in shame” for the issue. The feature severely hampers zero-knowledge proof generation across the Ethereum network. [...] The post Vitalik Buterin Bows in Shame Over Ethereum’s Scaling Nightmare appeared first on CoinCentral.TLDR Vitalik Buterin proposes removing the modexp precompile feature he originally created for Ethereum. The modexp feature creates verification bottlenecks up to 50 times worse than average blocks. Vitalik Buterin admitted his mistake and said he “bows his head in shame” for the issue. The feature severely hampers zero-knowledge proof generation across the Ethereum network. [...] The post Vitalik Buterin Bows in Shame Over Ethereum’s Scaling Nightmare appeared first on CoinCentral.

Vitalik Buterin Bows in Shame Over Ethereum’s Scaling Nightmare

TLDR

  • Vitalik Buterin proposes removing the modexp precompile feature he originally created for Ethereum.
  • The modexp feature creates verification bottlenecks up to 50 times worse than average blocks.
  • Vitalik Buterin admitted his mistake and said he “bows his head in shame” for the issue.
  • The feature severely hampers zero-knowledge proof generation across the Ethereum network.
  • Modexp affects only 0.01% of users but threatens network stability and consensus.

Ethereum co-founder Vitalik Buterin wants to remove a blockchain feature he created years ago. The modular exponentiation precompile causes major problems for zero-knowledge proof generation. Vitalik Buterin admitted his mistake and proposed replacing the feature with alternative code.

Vitalik Buterin Admits Shame Over Ethereum Feature

The modexp precompile creates verification bottlenecks up to 50 times worse than average blocks. Vitalik Buterin explained this on X while discussing the challenges of zero-knowledge proofs. The feature slows down proof generation and hampers Ethereum’s scaling efforts.

Vitalik Buterin stated he “bows his head in shame” for creating this problematic component. He now advocates replacing modexp with computationally equivalent code that increases gas costs. However, this change would significantly reduce the complexity of proof generation for the network.

Zero-knowledge EVMs generate cryptographic proofs that validate Ethereum computations off-chain. These proofs enable faster transaction processing without compromising security standards. The prover component encounters exceptional difficulty when handling modexp operations during this process.

Modexp operations serve primarily RSA encryption and signing functions used by minimal applications. The computational intensity creates disproportionate delays in proof generation across the network. This directly slows rollups and layer-2 solutions designed to accelerate Ethereum transactions.

Feature Affects Minimal Users but Creates Major Risks

The feature’s complexity introduces consensus failure risks through potential edge cases and bugs. These issues threaten network stability while affecting only 0.01% of users. Vitalik Buterin suggested investing optimization resources elsewhere would benefit the broader ecosystem.

The proposed solution involves replacing the precompile with standard EVM bytecode. This approach achieves identical results but requires higher gas costs for operations. Applications requiring modular exponentiation functionality could instead wrap operations in SNARKs.

SNARKs represent an alternative cryptographic proof system that mitigates the inefficiency problem. This tradeoff prioritizes ecosystem stability and scaling progress over legacy features. Ethereum faces more urgent performance challenges that require immediate attention and resources.

The proposed Ethereum Improvement Proposal would fundamentally alter the handling of cryptographic operations. Zero-knowledge proof systems currently find these operations particularly burdensome and inefficient. The change aligns with Ethereum’s push toward privacy-first infrastructure and improved scaling.

Privacy Initiatives Expand Across Ethereum Ecosystem

The Ethereum Foundation launched “Ethereum for Institutions” in late October this year. The initiative provides enterprises and financial organizations with structured pathways for blockchain adoption. It employs zero-knowledge proofs and fully homomorphic encryption for compliant applications.

Projects including Chainlink, RAILGUN, Aztec Network, and Zama pioneer privacy-preserving smart contracts. These solutions secure counterparty information and business logic without sacrificing transparency. Production-ready applications address institutional requirements for balancing compliance with programmable finance.

Ethereum dominates the real-world asset and stablecoin sectors with an impressive market share. The network hosts over 75% of tokenized RWAs and 60% of global stablecoin supply. Major financial firms, such as BlackRock, Securitize, and Ondo Finance, deploy tokenized instruments.

Layer-2 networks such as Base, Scroll, and Unichain now secure over $50 billion. These networks deliver throughput and cost efficiency for global-scale applications. The infrastructure supports 24/7 settlement, transparency, and composability for financial instruments.

The Ethereum Foundation launched its 47-member Privacy Cluster in October, under the coordination of Igor Barinov. The cluster addresses concerns related to surveillance, private data verification, and selective identity disclosure. It also focuses on improving user experience and providing institutional adoption support.

This initiative follows the September rebranding of the Privacy and Scaling Explorations team. The team became Privacy Stewards for Ethereum with a shifted focus toward practical solutions. The foundation warned that inadequate privacy protections could turn Ethereum into a global surveillance infrastructure.

Last month, Vitalik Buterin detailed GKR, a cryptographic technique for faster calculation verification. The protocol verifies calculations ten times faster than traditional methods while enabling zero-knowledge proofs. It processes 2 million calculations per second on standard laptops, enhancing efficiency.

GKR validates entire Ethereum transactions using just fifty consumer-grade graphics cards. Traditional methods require 100 times more computational work than original calculations. The breakthrough enables faster verification, resulting in cheaper transactions and enhanced network privacy.

The post Vitalik Buterin Bows in Shame Over Ethereum’s Scaling Nightmare appeared first on CoinCentral.

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