Tag

#satsuma

The Same Bridge, the Parity Way — and the Bill

We rebuilt our trustless bridge with the stack that runs Polkadot↔Kusama: pallet-bridge-grandpa plus ordered message lanes. Same trust model, different machinery — and this time every proof lands as a signed transaction with a fee on the record. The head-to-head, measured.

ISMP Bridging with Satsuma

We ran two independent satsuma chains — different genesis, different validators — and moved value between them with no multisig, no custodian, no middleman. Each chain verifies the other's GRANDPA finality on-chain, then verifies a state proof. 4 seconds end to end.

A Trustless zk Re-Genesis

The trust-minimized restart still leaned on an honest two-thirds of validators to sign. This time we replace the signatures with a zero-knowledge validity proof — anyone verifies it in milliseconds, and no coalition of validators can forge it.

The Limit of Sub-Second Blocks Is Geography, Not Speed

We built a testbed to push Satsuma's block time below one second and find where it breaks. Compute wasn't the wall. The speed of light was.

A Trust-Minimized Re-Genesis

Changing a chain's block time means halting it and relaunching from the old ledger. We built that migration on a live testbed — and made it so nobody has to trust that the balances carried over honestly.

Why Satsuma Has 2-Second Blocks

Block time is the one performance setting a chain can't change after it launches. Here's why Satsuma's is two seconds — and why faster blocks don't actually make a faster chain.

Inside Satsuma's Performance Benchmarks

A look at what the benchmarks measured, and how. What a 'transaction' even means, Satsuma's numbers next to a chain everyone knows, and a plain decode of the '143,000 TPS' headline you've probably seen.

TON vs Satsuma: Sharding, Sub-Second Blocks and Finality

TON just shipped sub-second blocks and unbounded sharding. We measured Satsuma against it — and most of what makes TON fast, Satsuma is built not to need. Here's the reasoning, and the one idea worth borrowing.

Introduction to Satsuma

A live, sovereign Solidity Layer-1 — Ethereum-compatible, final in seconds, public to read and permissioned to write. A visual tour of what Satsuma is and the choices that shape it.