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Umberto | Mostly Data ๐Ÿง™โ€โ™‚๏ธ
@MostlyData_
Research @SolanaFndn PhD in Physics - Cosmology - Solana Views are my own.
๊ฐ€์ž… April 2013
1.5K ํŒ”๋กœ์ž‰ ์ค‘    1.7K ํŒฌ
I think these are the 3 relevant charts one should keep in mind when looking at larger txs size and v1 format ๐Ÿ‘‡ The first shows serialized size composition of transactions (v0 and legacy), the second shows their counterfactual v1 serialized size. What I think is super interesting is that, despite the removals of Account Lookup Tables, a 3.3x on txs size is not saturated by format conversion. A counterfactual v1 serialized size has a long right-tail of txs that roughly double in size. Txs with > 1440 bytes are mostly due to txs dense in ALT usage (predominant component is from ALT removals in this range). Tho, this is a small payment in terms of size given what v1 allows. - Validators and client teams: v1 exposes fee and resource requests directly in transaction metadata, enabling earlier prioritization and more efficient block construction, with the potential for better fee capture; it also removes state-dependent ALT resolution from ingestion - Application developers: the 4,096-byte envelope enables richer atomic transactions, but the unchanged 64-account limit can still constrain account-heavy applications - Traders, routers, and searchers: larger transactions can support more complex atomic routes, although dense ALT users consume more of the new byte budget when addresses are inlined - Privacy, multisig, and cryptographic applications: larger payloads create substantially more room for proofs, signatures, and other data-heavy constructions without increasing compute or account limits. The last chart shows remaining v1 account slots, decomposed by top-level instruction headroom. Thus, it's clear that under v1 txs will be limited by accounts limit (which is going to be increased You are not ready for what v1 format + increase in account lock limit is bringing on chain. Read the full article here:
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