Solana Prepares to Test 150ms Finality

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Solana Prepares to Test 150ms Finality

Solana’s Alpenglow upgrade targets finality in roughly 150 milliseconds. Anza’s newly updated rollout tracker, however, shows that its public testnet activation is still pending.

Key Takeaways

  • Alpenglow awaits public testnet activation.
  • Agave v4.3 carries the feature gate.
  • No activation epoch has been published.
  • Finality could fall to approximately 150ms.
  • Other validator clients remain unsupported.

The tracker does not show Alpenglow as active

Anza placed Alpenglow under “Pending Testnet Activation” in its official feature-gate tracker, which was updated on September 22.

The entry identifies the feature as SIMD-0326: Alpenglow: new consensus algorithm and assigns it to Agave v4.3.0. The fields for its testnet activation epoch and date remain empty.

Alpenglow’s recorded rollout status

Status
Pending testnet activation

Supported release
Agave v4.3.0

Activation epoch
Not yet published

Alternative validator clients
Firedancer and Frankendancer are marked “NOT SUPPORTED”

Agave v4.3.0 is also listed as the next expected testnet version floor. A version floor is the oldest software release validators can run while remaining compatible with that network. Anza describes its schedule as tentative, so the listing is not a guaranteed activation date.

What Solana’s 150ms target actually measures

Solana’s official upgrade documentation says Alpenglow aims to reduce finality from approximately 12.8 seconds to around 150 milliseconds. If reached, that would make finality roughly 85 times faster.

Finality is the point at which validators have reached enough agreement for a block to be treated as irreversible. It is not simply the moment a transaction first appears on the network.

Today, an application can see a Solana transaction as “confirmed” before it receives the network’s stronger “finalized” status. Alpenglow is designed to make those two stages converge because a finalization certificate could arrive within roughly the period now associated with an initial confirmation.

Three clocks can govern one payment

Execution: The transaction runs and initially appears in a block.

Protocol finality: Validators establish that the block should no longer be reversed.

Service release: An exchange, bridge or merchant decides when to credit the deposit, release assets or complete the order.

Alpenglow would shorten the second clock. Each business would still control the third, meaning a 150ms protocol target would not guarantee that every customer-facing payment finishes in 150 milliseconds.

How Alpenglow changes Solana’s consensus

Alpenglow’s first stage introduces Votor, a replacement for the voting process used by Solana’s current TowerBFT consensus system.

Validators currently submit votes as transactions and build finality over a sequence of slots. Under Votor, they would exchange votes directly and combine them into certificates showing that enough stake has approved a block.

A block could finalize after one voting round when participation arrives quickly. A second round would be available when network conditions prevent the faster route.

The upgrade does not change how smart contracts execute, how balances are calculated or how users submit ordinary transactions. It changes how validators agree that the resulting block is final.

Solana has also been changing what transactions can contain. Its recent increase in maximum transaction size created more room for signatures, instructions and proofs. That upgrade changes what can fit inside a transaction; Alpenglow changes how quickly the network can consider it irreversible.

Where faster finality could make a difference

Exchanges

A platform could credit a Solana deposit sooner, although identity checks, wallet screening and internal risk controls may still delay access to the funds.

Bridges

A bridge could verify the Solana side of a transfer sooner, but its relayers and the destination blockchain would continue operating on separate timelines.

Merchants

If blockchain finality is the slowest part of checkout, a payment processor could confirm an irreversible payment sooner and begin fulfilling the order.

The improvement would be most visible where a service currently waits for Solana’s strongest settlement assurance. It would have less effect when compliance checks, another blockchain or an offchain payment system already causes the larger delay.

The tracked activation currently supports only Agave

Solana can be operated through independently developed validator clients. Agave is maintained by Anza, while Firedancer and Frankendancer provide alternative implementations.

The current Alpenglow entry assigns the feature to Agave v4.3.0 and marks both Firedancer and Frankendancer as unsupported. The entry describes the pending testnet feature gate; it does not establish which clients will support Alpenglow by the time any mainnet activation is considered.

No date for adding support to either alternative client appears in the tracker. Their readiness therefore remains an open rollout question rather than evidence that they have been permanently excluded.

What the testnet activation needs to prove

  • Migration: Can validators switch consensus systems without interrupting block production?
  • Observed speed: Does measured finality approach 150ms rather than merely meeting the target in controlled tests?
  • Network delays: Does finality remain reliable when validators or internet connections respond slowly?
  • Infrastructure delivery: Do RPC providers and indexers receive the new finality data quickly and consistently?
  • Client readiness: When can additional validator implementations support the new consensus system?

The 150ms figure is an expectation, not a constant. Solana’s documentation says finality can vary with stake distribution and whether a block requires one voting round or two. Some infrastructure may also learn that a block has finalized later than the validators directly producing the certificate.

Even a successful testnet result would not guarantee identical performance on mainnet. Validator participation, stake distribution and network traffic can differ between the two environments.

An activation epoch will begin the real test

The next verifiable milestone will be a published activation epoch or an official notice that the feature gate has opened. Public testnet data can then show how close Alpenglow comes to its target and how quickly the resulting finality signal reaches wallets and infrastructure.

For payment companies, faster validator agreement is useful only if they receive that information quickly enough to change when funds are released. The activation epoch will begin that test; it will not settle the question by itself.


This article is provided for informational purposes only. Network schedules, validator-client support and measured finality can change as testing progresses.

Author

Kosta Gushterov, journalist in Coindoo.com

Kosta has reported on cryptocurrency markets and blockchain infrastructure since 2020, bringing over six years of hands-on experience in the crypto industry built through daily tracking of markets, trends, and emerging blockchain developments. Specializing in Bitcoin on-chain analysis, institutional ETF flows, and digital asset price action, his work at Coindoo has been cited by other news agencies and consistently covers market developments with a focus on data-driven reporting across Bitcoin, Ethereum, Solana, and XRP.

Over the years, Kosta has contributed to multiple crypto media outlets in different regions, authoring over 6,000 articles across the sector. His reporting spans cryptocurrency markets and the broader fintech industry, tracking not only price action but also the technological and regulatory forces shaping the ecosystem.

To support his analysis, Kosta actively leverages on-chain data and metrics from leading platforms such as Santiment, Glassnode, and CryptoQuant, enabling deeper, evidence-based market insights. He believes in the power of transparency and the data that underpins the blockchain ecosystem.

His academic background in Marketing Management from Denmark further complements his analytical approach, adding a strong understanding of communication strategy and content positioning to his work.





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