Interop Roadmap "Acceleration": After Fusaka Upgrade, Ethereum Interoperability May Take a Key Leap

深潮Published on 2025-12-11Last updated on 2025-12-11

Abstract

The Ethereum Fusaka upgrade, while primarily noted for expanding blob capacity and reducing L2 data costs, introduced the underappreciated EIP-7825—a critical enabler for Ethereum’s ZK and interoperability roadmap. EIP-7825 imposes a per-transaction gas limit (~16.78 million gas), preventing "mega-transactions" from blocking entire blocks. This change makes proof generation parallelizable, transforming it from a logic-bound challenge into a solvable computational problem. As a result, real-time ZK proofs become feasible, even for large blocks, paving the way for near-instant finality. This upgrade supports the development of L1 zkEVM, which can serve as a trust anchor for L2s, enabling secure, instant cross-chain communication without relying on optimistic challenge periods or centralized bridges. Furthermore, the shift from zkEVM to more efficient zkVM architectures is accelerated by EIP-7825, as zkVMs can leverage parallelization for faster, cheaper proof generation. Ultimately, these advancements are key to achieving seamless interoperability—not just for asset transfers, but for generalized cross-chain logic and communication—bringing Ethereum closer to a future where users experience a unified, chain-agnostic interface powered by real-time ZK verification.

Author: imToken

In previous articles of the Interop series, we discussed OIF (Intent Framework) and EIL (Interoperability Layer), which respectively address the standardization of cross-chain intents (making the entire network understand what you want to do) and the execution channel issue (enabling funds to move in a standardized manner).

However, achieving a perfect "single-chain experience" still faces the trade-off between speed and trust. After all, in the current interoperability experience, one must either endure slowness (such as Optimistic Rollup requiring a 7-day challenge period to confirm finality) or sacrifice decentralization (relying on the trust assumptions of multi-signature bridges).

To break this "impossible triangle," it is essential to have a foundational capability that spans the "Acceleration" and finalization (Finalisation) of Ethereum's interoperability roadmap—the "real-time proof" brought by ZK technology (extended reading: "Ethereum Interop Roadmap: How to Unlock the 'Last Mile' of Mass Adoption").

And in the recently activated Fusaka upgrade, the inconspicuous EIP-7825 has cleared the biggest engineering obstacle for this ultimate goal.

I. The Underestimated EIP-7825 Behind the Fusaka Upgrade

On December 4, the Ethereum Fusaka upgrade was officially activated on the mainnet. Unlike the fanfare of the Dencun upgrade, the market spotlight was mostly focused on Blob scaling and PeerDAS, with much discussion about the further reduction of L2 data costs.

But beyond this noise, there was actually an inconspicuous proposal, EIP-7825, which cleared the biggest obstacle for Ethereum to achieve L1 zkEVM and real-time proofs, and can even be said to be quietly paving the way for the ultimate goal of Interop.

In this Fusaka upgrade, the focus was almost entirely on scaling: Blob capacity expanded by 8 times, combined with PeerDAS random sampling verification, making the cost narrative of the DA (Data Availability) track a thing of the past.

Indeed, cheaper L2s are a good thing, but for Ethereum's long-term ZK roadmap, EIP-7825 is the real game-changer because it sets a Gas limit for a single transaction on Ethereum (about 16.78 million Gas).

As we all know, Ethereum's block Gas Limit has been increased to 60 million this year. But even as the upper limit continues to rise, theoretically, if someone is willing to pay an extremely high Gas Price, they could still send a super-complex "Mega-Transaction" that directly occupies the entire block's 60 million Gas capacity, thereby clogging the entire block.

This was allowed before, but EIP-7825 introduces a new restriction: no single transaction can consume more than 16.78 million Gas, regardless of the block size.

So why limit the size of a single transaction? Actually, this change has no impact on ordinary user transfers, but for ZK Provers (proof generators), it is a matter of life and death, and it is also closely related to how ZK systems generate proofs.

To give a simple example, before EIP-7825, if a block contained a "Mega-Transaction" consuming 60 million Gas, the ZK Prover had to run this extremely complex transaction sequentially—it couldn't be split or parallelized. This is like a single-lane highway where a giant truck is driving extremely slowly in front, and all the cars behind (other transactions) have to wait for it to pass.

This undoubtedly sentenced "real-time proof" to death—because the time to generate the proof becomes completely unpredictable, potentially taking dozens of minutes or even longer.

After EIP-7825, even if the block capacity expands to 100 million Gas in the future, since each transaction is forcibly limited to within 16.78 million Gas, each block is broken down into predictable, bounded, and parallelizable "small task units." This means that Ethereum's proof generation has changed from a tricky "logical puzzle" to a pure "money problem":

As long as enough parallel computing power can be invested, we can process these split small tasks simultaneously in an extremely short time, thereby generating ZK proofs for huge blocks.

As Michael, co-founder and CEO of Brevis, said, EIP-7825 is the most underestimated upgrade on the future path of ZK and Ethereum's 100x scaling. It turns "real-time proof" from "theoretically impossible" to "engineerable," as long as we can solve the computing power problem through parallel computing. Even a 200 million Gas block could achieve second-level proofs. This is not only a breakthrough in ZK technology but also the physical foundation for Ethereum's Interoperability Layer (EIL) to achieve second-level cross-chain settlement.

So this upgrade may not seem like the main event, but it is actually a huge breakthrough for the ZK roadmap and Ethereum's scaling future in 2026.

II. L1 zkEVM: The "Trust Anchor" for Ethereum Interoperability

However, although EIP-7825 paves the physical path (parallelizability) for real-time proofs by limiting the size of single transactions, this is only one side of the coin. The other side is how the Ethereum mainnet itself utilizes this capability?

This involves the most hardcore narrative in Ethereum's roadmap—L1 zkEVM.

For a long time, zkEVM has been regarded as the "holy grail" for scaling Ethereum, not only because it can solve performance bottlenecks but also because it redefines the trust mechanism of blockchain. Its core idea is to enable the Ethereum mainnet to generate and verify ZK proofs.

In other words, in the future, after each Ethereum block is executed, it can output a verifiable mathematical proof, allowing other nodes (especially light nodes and L2s) to confirm the correctness of the result without recalculating—if the ability to generate ZK proofs is directly written into the Ethereum protocol layer (L1), the proposer (Proposer) packs a block and generates a ZK proof, and the verifying nodes no longer need to rerun the transactions; they only need to verify this tiny mathematical proof.

What does this mean for interoperability?

In the context of Interop, the significance of L1 zkEVM far exceeds scaling itself. It can be said to be the "trust anchor" for all L2s. After all, if Ethereum L1 can generate proofs in real time, it means that all L2s can read L1's final state in real time and trustlessly. This will bring about two qualitative changes:

  • Eliminate the challenge period: The confirmation time between chains will be compressed from "7 days (OP mechanism)" to "seconds (ZK mechanism)";

  • Decentralized interconnection: Cross-chain will no longer require trust in third-party multi-signature bridges but will trust the mathematical truth of the Ethereum mainnet;

This is also the physical foundation we mentioned in the previous article for EIL (Interoperability Layer) to truly work—without L1's real-time finality, interoperability between L2s will never escape the shadow of "delay."

The goal is set (L1 zkEVM), and the physical limitations are removed (EIP-7825), but what about the specific implementation tools?

This leads to the subtle evolution happening in the ZK technology stack: from zkEVM to zkVM.

III. Fusaka & EIP-7825: The Interoperability Roadmap is Liberated

If EIP-7825 provides a "parallelizable hardware environment" for ZK by limiting the size of single transactions, then the evolution of the ZK technology stack is to find a "more efficient software architecture." This may sound like a tongue twister, but the difference is significant and represents two stages of ZK development (extended reading: "ZK Route 'Dawn Moment': Is Ethereum's Endgame Roadmap Accelerating Comprehensively?").

The first stage is naturally zkEVM, which can be regarded as the compatibility faction or the reformist faction.

The logic is to strive to imitate every instruction of the Ethereum EVM, allowing developers to deploy Solidity code directly, reducing migration costs and barriers.

In other words, the biggest advantage of zkEVM is its compatibility with existing Ethereum applications, greatly reducing the workload for Ethereum ecosystem developers. They can reuse most of the existing infrastructure and tools (including execution clients, block explorers, debugging tools, etc.).

However, precisely because of this, since the EVM was not designed with ZK-friendliness in mind, for the sake of compatibility, zkEVM's proof efficiency often has a ceiling, and the proof time is much slower, with a heavy historical burden.

zkVM, on the other hand, belongs to the radical revolutionary faction, directly building a virtual machine that is extremely friendly to ZK proofs (such as based on RISC-V or WASM) to speed up proof time and achieve better execution speed and performance.

But it also loses compatibility with many EVM features and the ability to use existing tools (such as low-level debuggers). However, a clear trend is that more and more L2 projects are shedding their burdens, optimizing proof speed and cost to the extreme, and exploring architectures based on zkVM.

So why is the Fusaka upgrade the unlocker?

After all, before EIP-7825, whether it was zkEVM or zkVM, once they encountered a Mega-Transaction on Ethereum, the proof generation time would skyrocket due to the inability to split tasks.

Now, EIP-7825 forcibly breaks down transactions into predictable small units. With a parallelizable environment, an efficient architecture like zkVM can exert its maximum power. Even complex Ethereum blocks, when placed in a zkVM and combined with parallel computing power, can achieve real-time proofs.

What does this mean for interoperability? The proliferation of zkVM combined with EIP-7825 means that the cost of generating proofs will drop significantly. When the cost of generating a cross-chain proof is low enough to be negligible and the speed is as fast as sending an email, traditional "cross-chain bridges" will completely disappear, replaced by underlying universal message protocols.

In Conclusion

As repeatedly mentioned in previous articles of the Interop series, the ultimate goal of Interop is not just asset "cross-chain," nor is it limited to the concept of "asset bridges" anymore. It is a set of system-level capabilities, including cross-chain data communication, cross-chain logic execution, cross-chain user experience, cross-chain security, and consensus.

From this perspective, Interop can be understood as the universal language between future Ethereum ecosystem protocols. Its significance lies not only in transmitting value but also in sharing logic. The role of ZK in this is to guarantee execution correctness and support real-time state verification, making cross-domain calls "dare to do, able to do." It can even be said that without real-time ZK, it is difficult to have truly usable Interop UX.

So when EIP-7825 was quietly activated in the Fusaka upgrade, and as L1 zkEVM gradually becomes a reality, we are getting closer to that endgame: execution, settlement, and proof are completely abstracted in the background, and users are completely unaware of the existence of chains throughout the process.

This is the Interop endgame we all look forward to in the future.

Related Questions

QWhat is the significance of EIP-7825 in the Fusaka upgrade for Ethereum's interoperability?

AEIP-7825 introduces a per-transaction gas limit of approximately 16.78 million gas, which prevents 'mega-transactions' from blocking the entire block. This allows ZK provers to process transactions in parallel, making real-time proof generation for large blocks feasible and paving the way for instant cross-chain settlements in Ethereum's interoperability layer (EIL).

QHow does L1 zkEVM serve as a 'trust anchor' for Ethereum's interoperability?

AL1 zkEVM enables Ethereum mainnet to generate and verify ZK proofs for its own blocks. This allows L2s to read L1's finalized state in real-time without trust assumptions, eliminating challenge periods (e.g., reducing from 7 days to seconds) and enabling decentralized cross-chain interactions without relying on third-party bridges.

QWhat is the key difference between zkEVM and zkVM in the context of ZK technology evolution?

AzkEVM focuses on compatibility with Ethereum's EVM, allowing developers to reuse existing tools and infrastructure but often at the cost of slower proof generation due to EVM's ZK-unfriendly design. zkVM prioritizes proof efficiency and performance by building a ZK-friendly virtual machine (e.g., based on RISC-V or WASM), sacrificing some EVM compatibility for faster execution and lower costs.

QHow does EIP-7825 combined with zkVM architecture improve interoperability?

AEIP-7825 breaks down transactions into small, parallelizable units, while zkVM provides an efficient architecture for proof generation. Together, they drastically reduce the cost and time required to generate cross-chain proofs, making traditional bridges obsolete and enabling seamless, instant cross-chain communication at the protocol level.

QWhat is the ultimate goal of Interop (interoperability) in the Ethereum ecosystem according to the article?

AThe ultimate goal of Interop is not just cross-chain asset transfers but a comprehensive system-level capability that includes cross-chain data communication, logic execution, user experience, security, and consensus. It aims to create a universal language for Ethereum protocols, enabling value transfer and logic sharing with real-time state verification powered by ZK technology, all abstracted away from end-users for a seamless experience.

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2.4k Total ViewsPublished 2025.12.05Updated 2025.12.05

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What is SHOPON

Shopify Tokenized Stock (Ondo): A Comprehensive Analysis of Real-World Asset Tokenization in Web3 This article delves into the Shopify Tokenized Stock (Ondo), recognised by its ticker symbol $SHOPON, exploring its implications at the intersection of traditional finance and blockchain technology. As a part of Ondo Finance's tokenized securities platform, Shopify’s tokenized stock exemplifies advancements in democratizing access to global capital markets through innovative digital assets. Introduction and Overview of Shopify Tokenized Stock (Ondo) Shopify Tokenized Stock (Ondo), or $SHOPON, portrays a pivotal innovation in the realm of tokenized securities, allowing investors to gain economic exposure akin to directly owning shares of Shopify Inc. This token, developed under the umbrella of Ondo Finance, not only provides investors with the ability to hold digital representations of the company’s stock but also integrates features such as automatic reinvestment of dividends. This advancement represents a substantial shift in the landscape of decentralized finance (DeFi), linking conventional equity markets with blockchain solutions designed to enhance accessibility, transparency, and liquidity. By eliminating geographical barriers and enabling 24/7 trading capabilities, $SHOPON is positioned as a bridge connecting traditional financial instruments and the emerging Web3 ecosystem. What is Shopify Tokenized Stock (Ondo), $SHOPON? The $SHOPON token serves as a digital manifestation of Shopify Inc.'s shares, engineered to provide a direct correlation to the underlying asset's performance. Through the utilization of blockchain technology, the token gives holders a mechanism to participate in the economic benefits associated with equity ownership, including capital appreciation and dividend distribution. The unique aspect of $SHOPON lies in its automatic dividend reinvestment mechanism, which allows returns to compound without necessitating active management by the investor. This feature inherently enhances its attractiveness as an investment vehicle, particularly for individuals seeking passive income growth alongside exposure to high-performing equities. The tokenization process is facilitated by the custody of actual Shopify shares through regulated intermediaries, ensuring that every $SHOPON token is verifiably backed by real equity. This structure empowers investors with the dual advantages of both traditional financial characteristics and the innovative benefits tied to blockchain technology. Who is the Creator of Shopify Tokenized Stock (Ondo)? The creator of Shopify Tokenized Stock (Ondo), Nathan Allman, is an experienced figure in the finance sector, formerly associated with Goldman Sachs. His rich background includes significant expertise in digital asset development, bridging the gap between traditional finance and cryptocurrencies. Allman’s educational journey, marked by studies at Brown University, provided him with a deep understanding of economics and biology, equipping him with analytical skills that inform his strategic vision. In 2021, he founded Ondo Finance, committing to developing tokenized securities that meet institutional-grade standards while leveraging blockchain's transformative capabilities. Under Allman's leadership, Ondo Finance has focused on creating compliant and innovative financial products that empower a diverse investor base. Who are the Investors of Shopify Tokenized Stock (Ondo)? The investment landscape surrounding Shopify Tokenized Stock (Ondo) is notably robust, underpinned by significant institutional support. Primarily, Pantera Capital stands out as a strategic partner through the Ondo Catalyst initiative, a $250 million commitment aimed at accelerating the development of on-chain capital markets. This partnership not only signifies institutional confidence in the potential of tokenized assets but also reinforces Ondo Finance's operational capabilities and market positioning. The funding pathways have included earlier rounds that amassed millions in seed funding and further structural investments, solidifying relationships with both venture capital firms and private investors. Moreover, the financial framework is complemented by strategic partnerships with established financial institutions and technology companies, enhancing Ondo’s infrastructure and operational expertise. How Does Shopify Tokenized Stock (Ondo), $SHOPON Work? At the core of $SHOPON's operational framework is a sophisticated system integrating traditional finance mechanisms with blockchain technology. The custody of actual Shopify shares ensures that token holders retain authentic economic exposure, safeguarding their investments in line with recognized legal structures. The smart contracts employed in managing $SHOPON handle various functions, including automatic dividend reinvestment and ownership transfer, offering instant settlement and increased liquidity, marking a significant departure from conventional trading systems plagued by multi-day settlement delays. By providing interoperability with other decentralized finance applications, $SHOPON empowers holders with potentially lucrative opportunities for advanced investment strategies, including lending and automated market making. This complex integration presents a unique value proposition, catering to both traditional and crypto-native investors. The innovative structure of $SHOPON also allows for real-time settlements and transactions documented on the blockchain, delivering unparalleled transparency and security—a major advancement over standard equity trading practices. Timeline of Shopify Tokenized Stock (Ondo) March 2021: Nathan Allman establishes Ondo Finance, initially focusing on decentralized finance yield optimization. August 2021: Completion of a $4 million seed funding round led by Pantera Capital. January 2023: Launch of initial tokenized treasury security products, laying the groundwork for future equity tokenization. July 2025: Announcement of the Ondo Catalyst initiative, a strategic investment program valued at $250 million, aimed at propelling the development of tokenization in capital markets. September 3, 2025: Launch of Ondo Global Markets featuring over 100 tokenized U.S. stocks and ETFs, including $SHOPON. Technical Implementation and Blockchain Infrastructure Shopify Tokenized Stock (Ondo) operates on a technical architectural framework that marries blockchain protocols with traditional financial custody arrangements. The ecosystem leverages Ethereum's smart contract capabilities, providing seamless transaction management while ensuring compliance with regulatory standards through established financial custodians. Central to this architecture are security measures and transparent transaction records that affirm the legitimacy of each tokenholder's economic stake. With automated features managed by intricate smart contracts, $SHOPON not only streamlines ownership transfers but also allows for the tactical reinvestment of dividends—a hallmark of modern investment strategies. Moreover, the incorporation of LayerZero technology facilitates cross-chain interoperability, making $SHOPON accessible across multiple blockchain environments while preserving its functional robustness. This forward-thinking technical design positions $SHOPON as an adaptable asset within the larger DeFi milieu. Regulatory Framework and Compliance Architecture $SHOPON's regulatory framework is built upon the meticulous navigation of existing financial regulations that govern securities. The custody arrangements for the underlying Shopify shares are managed by U.S.-regulated broker-dealers, ensuring compliance and protection for investors. By maintaining a separation between the blockchain tokenization process and traditional custody, $SHOPON adheres to legal requirements while offering innovative functionalities that challenge conventional constraints. This dual-layered compliance approach enhances investor confidence and underscores Ondo Finance's commitment to regulatory integrity. Notably, the availability of $SHOPON is tailored to international investors from regions such as Asia-Pacific, Europe, and Africa, as regulatory parameters in the U.S. and U.K. present challenges in accessing tokenized securities. Market Access and Global Distribution Strategy The distribution strategy of $SHOPON is keenly designed to optimize global access while conforming to regulatory standards. The platform aims to establish comprehensive coverage for eligible investors across multiple regions, effectively dismantling traditional barriers through the implementation of blockchain technology. Integration with various cryptocurrency wallets and exchanges also promotes user-friendliness and accessibility, establishing a streamlined experience for investors to manage their holdings. Moreover, the 24/7 trading capabilities afforded by the tokenized model allow participants to react promptly to market shifts, fundamentally transforming how global equities are accessed and traded. Technology Integration and Cross-Chain Functionality The remarkable technological underpinnings of $SHOPON propagate its multi-chain functionality, set to expand its reach beyond Ethereum to networks such as Solana and BNB Chain. Such cross-chain capabilities allow users flexibility when navigating between blockchains, concurrently leveraging distinct network attributes to optimize their trading experience. LayerZero serves as the backbone for ensuring decentralized transfers between networks while providing the requisite security and speed, quintessential for maintaining investor trust. This comprehensive interoperability illustrates $SHOPON's commitment to being a versatile, user-centric asset in the evolving investment landscape. Ecosystem Integration and DeFi Compatibility Incorporating $SHOPON into broader DeFi protocols signifies its potential beyond traditional stock ownership. Token holders can leverage their holdings for various sophisticated strategies and applications, enhancing investment returns and liquidity management. By establishing a presence in lending protocols and automated trading systems, $SHOPON effectively democratizes access to advanced financial strategies previously limited to institutional investors. Such integration contributes to a more competitive and dynamic financial landscape, where individual investors can capitalize on tools typically reserved for larger entities. Risk Management and Security Framework Security remains paramount in the operational infrastructure of $SHOPON. The tokenization framework employs multiple layers of protection—beginning with regulated custody of the underlying Shopify shares. The operational protocols establish rigorous auditing, key management, and transaction monitoring standards, thus safeguarding against potential vulnerabilities. Moreover, meticulous adherence to evolving regulatory requirements provides an extra layer of security, fortifying investor protections and institutional compliance. Market Impact and Industry Implications The introduction of Shopify Tokenized Stock (Ondo) heralds a transformative shift in how financial markets operate, emphasizing the potential of tokenized securities to reshape traditional investment paradigms. The successful integration of $SHOPON encapsulates the efficiencies inherent in blockchain technology and opens avenues for new user demographics previously barred from extensive market participation. The impact extends beyond the immediate benefits to token holders, indicating broader trends that may challenge the status quo of investment services, particularly in addressing geographic restrictions and operational costs typically associated with traditional brokerage platforms. Undeniably, $SHOPON encapsulates the potential for traditional institutions to innovate further, leveraging the increasing demand for seamless blockchain access to complement existing financial infrastructure. Future Development Roadmap and Strategic Vision As Ondo Finance looks forward, the trajectory of $SHOPON rests on ambitious goals aimed at broadening the spectrum of available tokenized assets significantly. Over the next few years, plans are in place to expand to more than 1,000 tokenized securities, further enhancing market participation and investment options for individuals worldwide. Continued integration with traditional financial actors, development of specialized institutional products, and enhancements in automated trading capabilities will ensure that $SHOPON maintains its position at the forefront of financial innovation. Regulatory collaboration will also remain a focal point, establishing a framework that not only supports the compliance requirements but also promotes a healthy environment for tokenized asset proliferation. Conclusion and Market Significance In summary, Shopify Tokenized Stock (Ondo), represented by the ticker $SHOPON, is more than merely a tokenized equity offering; it embodies the innovation possible when traditional finance collides with modern blockchain applications. With a robust technical architecture, a commitment to compliance, and a clear strategic vision, $SHOPON exemplifies the potential for tokenized assets to enhance liquidity, accessibility, and functionality in capital markets. As the global investment landscape evolves, the transformative implications of $SHOPON extend beyond individual investors to revolutionize how financial instruments are perceived, traded, and utilized within both traditional and decentralized frameworks.

2.4k Total ViewsPublished 2025.12.05Updated 2025.12.05

What is SHOPON

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