AssertReadableFor
AssertReadableFor is AssertReadable for a named realm.
Command
gnokey query vm/qeval -remote "https://rpc.gno.land" -data "gno.land/r/moul/config/v1.AssertReadableFor()"
Result
Package config is the one realm moul's other realms read their settings from: a key/value store plus the manager list that decides who may write it.
A value shared by several contracts, hardcoded in each, is changed by redeploying each. On mainnet a public realm cannot even be redeployed at its own path, so "changing it" means a new version and a new path for every consumer. Here it is a transaction.
This realm IS public and versioned, so its path moves on every bump. That makes a bump expensive, which is exactly why the settings API is generic: a new setting is a new KEY, and a key costs one transaction. Only a change to the shape of this realm (a new function, a changed signature) is worth a version.
A later version imports this one and relays to it rather than holding anything of its own, so v1, v2 and v3 all read and write the same settings, the same pause and the same member list. Delegation only runs backwards in time, which is why the root is the oldest version that has the state and not the newest. See proxy.gno.
settings.gno the key/value store, and the mygnoscan accessors over it keys.gno the key grammar: a name, optionally scoped to one realm blocks.gno the notice a realm renders above and below its content pause.gno the switch a realm checks before it acts proxy.gno the relay that lets a later version share this state config.gno the member list, unchanged from v0
init seeds the authority with the deploying EOA. Everything that writes goes through Authorizer, so transferring authority to a DAO transfers the settings with it: there is no address hardcoded on the write path.
AssertReadableFor is AssertReadable for a named realm.
gnokey query vm/qeval -remote "https://rpc.gno.land" -data "gno.land/r/moul/config/v1.AssertReadableFor()"