An Undercurrent of Bitcoin Civil War: BIP-110 Raises Fork Concerns

Foresight NewsPubblicato 2026-07-27Pubblicato ultima volta 2026-07-27

Introduzione

**A Summary of the Bitcoin Governance Crisis: The BIP-110 Showdown and Forking Risks** Bitcoin is facing internal division alongside a market downturn. The core of the conflict is BIP-110, the "Reduced Data Carriage Soft Fork" proposal introduced in December 2025. It aims to restrict non-financial data (like inscriptions) in future transactions, citing concerns over node costs and Bitcoin's original purpose. The controversy lies in its activation mechanism. BIP-110 requires 55% miner support within a difficulty period. However, its voting signal has remained below 1% since monitoring began. If this threshold isn't met by the August 7, 2026 deadline (block height 961,632), compatible nodes (primarily running Bitcoin Knots) are programmed to *enforce* the new rules, rejecting non-compliant blocks. Critics warn this minority-enforced activation could split the chain. Major figures like Michael Saylor, Adam Back, and Jameson Lopp strongly oppose BIP-110. Saylor argues it sets a dangerous precedent for defining "valid" transactions and could stifle future innovations. Opponents view the enforcement strategy as a risky governance overreach, contrasting it with past upgrades that achieved over 90% consensus. BIP-110 was partly a reaction to Bitcoin Core's v30 update in October 2025, which significantly increased the default data relay limit. Core developers called this a policy change, not a consensus rule, but it prompted the creation of the Bitcoin Knots branch and, subsequent...


Authored by: Ashrith Rao

Compiled by: Chopper, Foresight News


Bitcoin didn't need to face both a price decline and internal ideological disputes simultaneously. Yet now, both troubles have arrived at its doorstep.


Since the release of version v30 of the Bitcoin Core client in October 2025, a divergence in philosophy has been brewing; meanwhile, the crypto market is trying to find a price bottom amidst this turmoil.


BIP-110: Countdown to Bitcoin Fork Standoff Begins


The key deadline for this struggle is set for August 7, 2026, corresponding to block height 961632. What unfolds at that time may determine whether Bitcoin's next cycle will continue on a single main chain or split into two.


In December 2025, developer Dathon Ohm proposed BIP-110 (Note: BIP stands for Bitcoin Improvement Proposal), the "Reduced Data Ephemeral Soft Fork." This is a planned one-year soft fork proposal.


The proposal focuses on data management within blocks and carries no inherent political agenda: within approximately one year, it would limit OP_RETURN (Note: OP_RETURN is a script used to write additional data in Bitcoin transactions) output data to 83 bytes; set a maximum of 34 bytes for the vast majority of new output scripts; and impose constraints on various technologies carrying external data, including large data pushes, witness items, and certain unspecified witness versions.


Historical data already on the blockchain would not be purged; the rules would only constrain future new transactions. The focal point of controversy centers on inscriptions and various non-financial data continuously occupying Bitcoin block space since 2022.


Proponents of the proposal argue that such applications deviate from Bitcoin's original purpose as a payment and settlement system, increase the operational costs of running full nodes, and persistently expand the Unspent Transaction Output (UTXO) set.


What has truly sparked significant controversy is the proposal's activation mechanism. Relying on the bit-4 signaling mechanism, BIP-110 designs a market-led, smooth lock-in activation path: within a 2016-block difficulty period, it requires 55% of the hashrate to vote in favor.


Since monitoring went live on December 1, 2025, the proposal's hashrate voting share has remained persistently low, staying within the 0.3%~0.4% range. The latest observation data shows a minimum of 0% and a maximum of only 0.86%. If the conventional voting channel fails to meet the threshold, the proposal will initiate an enforcement plan: mandatory activation at block height 961632.


By this time point, regardless of the stance of the majority of the network's hashrate, nodes running clients compatible with BIP-110 (primarily Bitcoin Knots) will begin rejecting blocks that do not comply with this rule.


Critics argue that this strategy, modeled after the 2017 UASF (User Activated Soft Fork), escalates what seemed like a minor technical discussion into a major governance dispute.


Current Hashrate Data


The current Bitcoin network hashrate is approximately 940 EH/s, while BIP-110's voting hashrate is less than 1%, roughly only 5 EH/s. Currently, the vast majority of observable voting blocks come from the mining pool Ocean, an entity linked to Jack Mallers and Adam Back.


The majority of Bitcoin hashrate controllers either remain indifferent or explicitly oppose the proposal. The vast chasm in hashrate support highlights the significant potential consequences should BIP-110 initiate its forced path.


When a minority of nodes forcibly imposes a rule that the vast majority of hashrate and nodes refuse to recognize, the ultimate outcome is not the implementation of the rule but rather the creation of two independently valid blockchains. Both chains would accept blocks that comply with BIP-110's strict rules; however, non-BIP-110 nodes can accept blocks that do not meet the restrictive conditions, while BIP-110 nodes would outright reject them.


The fact that BCH's current price is merely a fraction of BTC's is the most direct illustration of how the market views a forked chain lacking sufficient hashrate support.


Positions of Various Parties Gradually Clarify


As the deadline approaches, the strength of the opposing camp is not diminishing but increasing.


On July 18th, Michael Saylor published a lengthy article titled "110 Reasons to Oppose BIP-110," launching a fierce critique. He argued that Bitcoin's consensus layer should not define the "legitimate use" of fee-paying transactions. Compared to whether spam transactions proliferate, he is more wary of the risk of setting a precedent. Once consensus rules start distinguishing between "compliant transactions" and "non-compliant transactions," this paradigm could become permanently entrenched and potentially abused by those manipulating future rule iterations.


He also pointed out that BIP-110 would limit future upgrade potential. Solutions like BitVM, which rely on data flexibility for contracts, would be constrained by the proposal.


Adam Back and Jameson Lopp have also raised similar but independent points: this activation mechanism itself is highly risky. Past successful Bitcoin upgrades, such as Segregated Witness (SegWit) and Taproot, all garnered over 90% hashrate support before formal implementation. In comparison, a 55% threshold is already low. And with the current natural voting support rate below 1%, forcing activation would only create division, not consensus.


Many practitioners have chosen neutrality. Jimmy Song publicly stated, "I don't know enough about this mechanism to judge the consequences of either path," a remark that drew considerable criticism. In this heated debate, a neutral stance is seen by many as avoiding taking a position.


On the other side, Bitcoin Knots developers and BIP-110 supporters point to the changes in the Core v30 release from October 2025: the client increased the default relay policy limit for OP_RETURN from 83 bytes to approximately 100,000 bytes—an increase of over 1200 times.


The Core team defines this as a relay policy adjustment, not a consensus rule change, arguing that relying on relay filtering cannot completely eliminate spam data, as external data can be embedded in ordinary transaction outputs in forms like hashes, making it difficult to distinguish and block.


Technically, this viewpoint holds true; relying on the relay layer cannot completely prohibit arbitrary data storage. This is precisely the core argument of BIP-110 opponents—the proposal treats the symptoms, not the root cause. It not only struggles to eradicate the problem but may directly cause a blockchain split in the attempt to fix it.


It was Core's release of the v30 update in October 2025 without broad community communication that led to the Bitcoin Knots fork; months later, BIP-110 emerged as a countermeasure.


The Second Risk Point: Sztorc Proposes eCash Hard Fork


Aside from BIP-110, the market faces another variable in August. Concurrently with BIP-110, Paul Sztorc, the proposer of the Drivechain proposal (BIP 300/301), announced plans to initiate an independent hard fork targeting block height 964,000.


This plan would create a brand new SHA-256d public chain with an initial state identical to Bitcoin's. After the fork launches, the network difficulty resets; at the fork block, all BTC holders would receive the new forked asset in equal amounts.


Unlike BIP-110, this fork does not impose data limits. Its core goal is to advance scaling and sidechains, implementing sidechain scaling solutions that have been delayed for years from mainnet deployment.


The two fork events have independent origins but will create a compounding risk effect. Around the time the mandatory signaling period begins, exchanges, custodians, wallet service providers, and institutional holders all need to simultaneously decide whether to support BIP-110 while also handling the 1:1 distribution of forked tokens. The two are not coordinated; they are merely coincidental in timing, yet will place immense pressure on the entire industry within a three-week span.


Market Impact


Since reaching a high in October 2025, Bitcoin is currently in a phase of building a market bottom. Although some institutions continue to accumulate during the decline, BlackRock's IBIT Bitcoin ETF saw significant outflows in June.


The market is already digesting macro-level pricing reassessments, and governance disputes with potential forking tail risks have arrived one after another; had this occurred at a bull market peak, such risks might have been easily overlooked by the market, but the current environment amplifies panic.


Prediction markets have not yet treated BIP-110 as an independent, highly liquid, binary major event. Bitcoin price contracts on Polymarket in mid-to-late July show traders generally expect Bitcoin prices to remain within the $50,000 to $60,000 range in early August.


This also aligns with hashrate data: if hashrate voting remains below 1% three weeks in advance, BIP-110 is highly unlikely to lock in activation through the conventional channel.


The most direct suspense is whether the Bitcoin Knots camp's nodes will still insist on the enforcement strategy after the conventional activation path fails. The final decision-making power is not controlled by market forces but lies in the hands of a small group of client maintainers.


If the forced path is implemented, the market might react in a predictable way: the original chain, supported by the vast majority of miners and exchanges, will most likely become the core for liquidity, hashrate, and price discovery.


"The market will ultimately resolve the dispute" and "The market can resolve the dispute without cost" are two entirely different propositions.


A chain fork would create numerous short-term troubles: risks of replay attacks, confusion over exchange listing rules, uncertainty regarding custodial asset ownership, and risk premiums (manifested as widening bid-ask spreads and shrinking order book depth). In an environment where market confidence is already weak, the impact would be more pronounced.


On August 7th, the market faces a severe test, determining whether Bitcoin can truly shake off the shadow of the 2017 governance crisis.

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Domande pertinenti

QWhat is the BIP-110 proposal and what is its primary objective according to the article?

AThe BIP-110 proposal, or the 'Reduce Data Ephemeral Soft Fork', is a one-year planned soft fork proposal focusing on data management within blocks. Its primary objective is to impose limits on future data: restricting OP_RETURN outputs to 83 bytes, capping most new output scripts at 34 bytes, and placing constraints on technologies used for external data, such as large data pushes and certain witness versions. It aims to address concerns about non-financial data, like inscriptions, which are seen as deviating from Bitcoin's original purpose as a payment system and increasing costs for full nodes.

QWhat is the activation mechanism for BIP-110, and why is it controversial?

AThe BIP-110 proposal relies on a bit-4 signaling mechanism with a market-led, smooth activation path: it requires approval from 55% of the hashrate over a 2016-block difficulty period. If this threshold is not met through regular voting by August 7, 2026 (block height 961632), the proposal includes a 'force-activation' scheme where nodes running BIP-110 compatible clients (mainly Bitcoin Knots) will begin rejecting blocks that do not follow the new rules. This mechanism is controversial because critics view it as a UASF-like strategy that could force a rule change without broad consensus, potentially leading to a chain split if a majority of miners and nodes reject it.

QAccording to the article, what is the current level of hashrate support for BIP-110, and what does this indicate about its likely outcome through the regular voting path?

AAccording to the article, the current hashrate support for BIP-110 is extremely low, ranging from 0% to a maximum of 0.86%, which is significantly less than 1% of the total network hashrate. The vast majority of Bitcoin's hashrate is either indifferent or explicitly opposed. This data indicates that it is highly unlikely for BIP-110 to achieve the required 55% approval through its regular voting channel before the deadline.

QWho are some notable figures opposing BIP-110, and what are their main arguments against it?

ANotable figures opposing BIP-110 include Michael Saylor, Adam Back, and Jameson Lopp. Michael Saylor argues that Bitcoin's consensus layer should not define 'reasonable use' for fee-paying transactions, as setting a precedent for distinguishing 'compliant' from 'non-compliant' transactions could be abused in the future. He also states it would limit future upgrades like BitVM. Adam Back and Jameson Lopp criticize the activation mechanism itself, noting that past successful upgrades like SegWit and Taproot had over 90% hashrate support before activation. They argue that forcing activation with minimal support creates division rather than consensus.

QBesides BIP-110, what is the other significant fork-related event mentioned in the article for August 2026, and how does it differ from BIP-110?

AThe other significant event is a planned independent hard fork proposed by Paul Sztorc, the author of the Drivechain proposal (BIP 300/301), targeting block height 964000. This fork aims to create a new SHA-256d public chain with an initial state identical to Bitcoin, where all BTC holders will receive an equal amount of the new forked asset. Unlike BIP-110, this fork does not impose data limits. Its core goal is to advance scaling and sidechain solutions, specifically to implement sidechain scaling proposals that have long been delayed on the main Bitcoin network.

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