How could the Layer 2 track be complete without Filecoin?

CN
1 year ago

On March 14, 2023, the Filecoin network introduced the first programmable EVM on its virtual machine, enhancing its programmability through smart contracts, marking an important milestone.

This key version not only solidifies Filecoin's position as L1, but also promotes the development of the open data economy. Although the successful integration of "trusted computing + trusted storage" seems to be undervalued, Filecoin's potential.

Key Role of Filecoin

As a globally trusted, neutral decentralized storage network, Filecoin empowers strong digital ownership, enabling seamless information storage anytime, anywhere. Unlike Web 2.0, it is the cornerstone of the Web 3.0 challenge, complementing its basic framework.

Global creative developers can deploy applications and smart contracts on permanently online, borderless computers, promoting accessible distributed data storage.

Challenges and Trade-offs

To achieve these aspirations, Filecoin faces trade-offs, prioritizing specific blockchain attributes such as decentralized storage and data security. While this approach ensures trust and neutrality, it limits the scalability of the current L1 layer. This trade-off hinders the implementation of high-frequency trusted computing and maximization of data value.

Comparison with Ethereum's Development Trajectory

Ethereum's development trajectory has brought painful lessons to Filecoin. The rapid rise of Ethereum Layer 2 solutions such as Optimistic Rollups (OP) and Arbitrum (ARB) has proven the urgency and importance of a powerful Layer 2 network. These solutions effectively break Ethereum's transaction limits, improving efficiency, security, and sustainability. In the process, Ethereum's market value soared, propelling related projects into the unicorn ranks.

Empowering Filecoin through ZKAmoeba

This brings us to ZKAmoeba, a groundbreaking Layer 2 network service strategically positioned above the Filecoin ecosystem. The core mission of ZKAmoeba is to expand Filecoin's trusted computing capabilities, simplify the development process, and accelerate proof generation.

Utilizing ZK-Rollup

By utilizing ZK-Rollup, we amplify computation through off-chain transaction execution, aggregation, and proof, while relying on Filecoin for data availability and validity proof verification.

ZKAmoeba consists of three important components: ZK-EVM circuit, L2 nodes, and L1 protocol for seamless protocol verification.

1. ZK-EVM Circuit:

Seamless compatibility: ZKAmoeba can execute EVM code without modification. Developers can easily port existing dApps to ZKAmoeba or write new Solidity code, ensuring compatibility across the entire Filecoin ecosystem.

2. L2 Nodes:

Distributed verification network: ZKAmoeba's nodes include service nodes (servers) and validator nodes (provers), collaborating in a decentralized Layer 2 verification network. This structure enhances data security and reliability, promoting widespread participation.

3. L1 Protocol:

Decentralized collaboration: ZKAmoeba's L1 protocol defines aggregation rules, participant standards, and integrates smart contracts to promote data availability and ZK-SNARK proof verification. An attractive economic model promotes cooperation among community users, servers, and provers.

Our Vision

Rooted in the collaborative and autonomous "Ameba" spirit, ZKAmoeba sees itself as a successful support tool.

Our goal is to build a neutral, open, trustworthy, and censorship-resistant ecosystem, promoting technological freedom and equal relationships.

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