Grants: a principal that serves tools subscribes $SRV.PING/$SRV.INFO and those questions under
each name it serves — its own and no other's; the tool runtime and people may ask. The controller
answers discovery for the mesh-controller seat in NATS's services format, one endpoint per verb it
serves, with the seat's description and schema. module list --json says which modules declare tools,
so the console expects an announcement only from those.
The console's discovery reads the machines and the modules; parsing a printed column breaks when it
is reworded. Both now answer JSON on --json, as status and seats do, and the seat verbs ask for it.
A compiled bundle records the binary it is (BinaryOf, shared by the builder and the composer), and
the node's runtime, when it is one, is run as ./<binary> from its own unpacked bundle rather than by
an interpreter and an entrypoint.
The runtime knows no language: the build makes each served entrypoint executable. For a TypeScript
bundle that is <entry>.serve.mjs, which imports the entrypoint and serves what it registered over
MCP on stdio through the bundle's own SDK. The build records its launchers on the bundle, and the
composer names the launcher where a build wrote one and the entrypoint where it did not, so bundles
built before this keep serving until they are rebuilt.
The roster published routed names — public ones first, then (in this PR's first take) internal ones
told apart by suffix. Neither is needed: a node has one internal domain and every route on it is a
name under it, answered by the resolver's per-node wildcard; a node's public domains are public
DNS's. routeNamesInTheMesh and NamesServed are removed, and a test pins .Names to the machines.
NamesServed read a route's public `name` and plan.go then filtered by suffix — telling the mesh's
names from public ones by their spelling, when the mesh composed both itself. It now publishes the
`internal-name` it composed under the serving node (ADR 0151); the suffix filter is gone.
The tool containers were restarted when their configuration file changed; the runtime now is
too, for every file a module's words name exactly — configuration and own secret alike.
build.artifacts[].env on a bundle: words and values written with ${dir:…} and ${port:…} only,
refused when a value carries any other reference (a secret's content, a binding) or names a word
the runtime sets for itself, and on any artifact that is not a bundle. Resolved per machine like a
container's environment and handed to the runtime as MESH_TOOL_ENV, module by module, in the unit
so a change restarts it. Every file and directory of the module a word names, or that holds one, is
owned by the account the runtime runs as where it says no owner, since a tool reads as that account.
Every routed public name was published into each machine's hosts region at its serving node's
private address. ace's resolver also answers its LAN, so a phone there got the control-node's
tunnel address for the mail server and could not connect. Routes have internal names under the
serving node (ADR 0151), so only names under the mesh suffix are published now.
A fetch on a context without a deadline waits the client's own while and reports the deadline
passed — the client's, not ours — and the loop read it as "stop": every idle build agent exited
clean every half minute and was restarted by its supervisor, a crash loop with nothing in the log
to say why. Only our own context ending ends the machine; an empty fetch, however it is reported,
is asked again.
Left for a hand, the hand re-made it with the server's default — everything the stream holds — and
on 2026-10-03 that replayed every build ask since 1 October into the catalogue. Re-made with
deliver-new instead: nothing acknowledged comes back; what was in flight is said and asked again.
A plan is ordered by artifacts and says nothing about what must be running before what (ADR 0162);
on 2026-10-03 that put the build machine in tier 0 and the controller in tier 1, and the new build
machine could not bind the worker the old controller had defined. One running order enters the
graph, named as its own edge: a module claiming the build seat follows the control plane, and the
built-by edge from the control plane to that holder yields to it — the controller is built by
whichever build machine is running, as the runtime image always was. The edge orders a plan and
never widens it, like built-by.
A holder built for a pull worker cannot bind a push one — `cannot pull subscribe to push based
consumer` — and on 2026-10-03 the build machine rolled before the controller that would have
redefined its worker, restarted on that for an hour, and nothing could build the controller that
would have ended it. The server cannot change a consumer's type in place, so the assertion re-makes
one of the wrong type: on a work queue nothing is lost, because what was acknowledged is gone from the
stream and what was not is delivered again from the start. On a stream that keeps its history it is
said and left, since a re-made consumer replays what this one acknowledged (issue 156), and that is a
person's call. Proven against a real bus: a push worker with one ask acknowledged and two pending is
re-made as pull, a pull subscription binds, and takes exactly the two.
On 2026-10-02 a runtime assigned and applied on two machines was undone two seconds later by a
declaration that had the assignments of a minute earlier. Every path composes from the records at
compose time and holds the machines it sends — but the number went on at SEND time, after
composing, so a declaration composed before an assignment changed and sent after a newer one
carried the higher number, and the host, which rightly refuses a lower number, took the older
content as the mesh's newest word. The record of that send was never written either: it is written
after the declaration is away, on the sender's context, and the controller sending it was being
replaced in that very second — status read "applied, current" over a machine just told otherwise.
Now the number is taken before the composition reads anything, in every path, so what was composed
earlier is numbered lower however late it goes out and the host's refusal does what it is for; and
what was sent is written down on a context that outlives the sender, bounded, so a dying controller
still records what it told a machine. The `declare` command — a declaration a person sends by hand —
records its send too. Proven: compositions in one order and sends in the other keep the numbers in
composition order; a send is recorded after the sender's context is cancelled.
`assign` recorded a module and `push` sealed a random own secret where its bus credential belongs;
the process crash-looped until a person ran `module issue` and pushed again, and the only warning was
one line in a list printed on every push. Now assigning a module that declares a broker secret issues
the credential in the same act — kept when one exists, so re-assigning rotates nothing — and when the
bus cannot be reached from here the assignment says which verb to run. A push never seals a
placeholder in a credential's place: a module whose bus user is unminted is refused by name, with the
verb. The control plane's own user is the installer's, seeded at genesis, which the test now says.
And what reads one of a module's own secrets is restarted when it changes — composed for a container
or daemon that names the secret's path in its volumes, environment or env-files, so a manifest need
not say it: the build machine ran on an hour-old credential because its manifest restarted it on its
environment file alone (issue 206). A scheduled or run-once process is left alone; it reads afresh.
A controller that asked node-build-agent from its first run would queue every build where nothing
pulls, and the build that registers build-agent — the first holder — would be among them. So the
role is chosen at ask time from the catalogue: the current role when any assigned module claims it,
the retired one while only the builder does, the current one when neither. Outcomes are followed on
both seats, the controller may publish to both, and a build's log is read under whichever role did
it; a machine on the retired role is proven on the bus to take that role's asks. The switch order
is written where the role is named, and the retired half is marked for removal with the seat row.
After the build role moved to node-build-agent, nothing would hold it until build-agent is
registered — and registering build-agent needs a build outcome that only the running builder
could produce, bound as it was to the old seat by name. One binary, two roles: the seat a machine
serves is the first its credential claims, as the mesh writes the claims beside the credential it
issues (ADR 0159); the old builder keeps draining mesh-build-machine, a build-agent takes
node-build-agent, and what each says about a build goes out as that seat's events, so an outcome
is heard where the asker of that seat listens. A credential naming no claim serves the current role.
fail2ban restarts when the composed jail file changes, and each filter is
a file of its own, so a module that changed only its failregex left the
running jail on the old pattern. The jail file now names each filter's
digest.
The first bundle resolved on the mesh carried the store's host in bundles[0].source, and registration
refused node-tools as naming an installation — rightly. The build record already keeps the
store-relative form; the resolved manifest now keeps the same for bundles and archive resources,
and composition routes it through the store a machine reaches, as it already did for a kept one.
The controller widened the bus's from-mesh port to from-anywhere on the
broker's host so a machine could enrol before it had a tunnel. ADR 0169
has machines join through the tunnel and decides the bus is never public;
every live bus connection already comes from the mesh.
Against a real bus: three asks, two machines; each takes one, the third waits until one is free
and then goes to that one; a machine that stops leaves nothing taken twice. The redelivery of an
ask a dead machine held is the ack wait's, proven by the hand-back test beside this one.
And the order a live mesh switches over in, written where the role is named: queued builds first,
then this controller, then build-agent assigned where machines build, then the builder and the old
seat's stream forgotten.
The worker a holder bound was a push consumer in a queue group with one ask in flight: right for
one holder, and with two it would still be a queue of one — the server hands a pushed ask to
whichever subscriber it picks, busy or not, and the in-flight cap is per consumer, not per holder.
Now the worker is pulled: every machine holding the seat binds the same durable and fetches one
ask when it has finished the last, so an idle machine is the one that takes the next, the asks in
flight are bounded by the holders working, and nothing is delivered that nobody asked for — which
is also what ended the race issue 186 describes. A holder's grants trade the delivery subject for
MSG.NEXT on the worker; the ack grant and the heartbeat that keeps a long build alive stay.
Proven against a real bus: the build round trip, a backlog taken by a machine that arrives later,
and work handed back by one machine coming round again.
One build machine built everything, in a queue of one, because the seat was mesh-scoped and a
mesh seat has one holder. ADR 0190 makes building a node role: node-build-agent, held on every
machine that builds, with the work asked of the role and taken by whichever holder is idle. The
work subject of a node-scoped seat carries no node — that token is for a seat's tools, asked of
one machine (design 33 §4) — so holders on several machines read one queue; a test now says so.
The retired mesh-build-machine row stays while the builder module's registered manifest claims
it: a claim to a seat the mesh no longer defines is refused, and the machine holding it would be
unresolvable until build-agent replaces it. Removed once no manifest claims it.
The installer's genesis template (in the host's repository) still grants the controller the old
seat's subjects; its test here says so until that template names node-build-agent.
Once the runtime module is registered, a module serving tools from a container built on the
runtime's image is refused at registration — as written, including every rebuild of the thirty-odd
modules already in that shape, from the day the runtime arrives until WP4 onward moves each one.
That would stop the catalogue's whole pipeline to make a point the record already makes. Now a
module already registered in that shape — judged from the manifest the catalogue holds and what
its newest build stood on, the same two things a new registration is judged by — is rebuilt as
before; a module new to the catalogue in that shape, or one that had moved to a bundle and comes
back, is refused naming the record.
The runtime's process is composed `user: <account>` where the node has one, and its broker file was
root's at 0600: a credential the process could not read. Composed in the declaration rather than
said in the manifest, because a manifest cannot say ${machine:account} safely — a node with no
account has nothing to resolve it to — and there the runtime runs as root and the file stays root's.
A bundle that compiled was not yet a bundle that ran. The compiler resolved `import "nats"` from
the toolchain image's own node_modules and the pack took only what the compiler wrote, so what a
machine unpacked could not find a single dependency — and Node would have read the bare `.js` as
CommonJS besides. No TypeScript bundle had run live to show it; the runtime's own is the first that
must. A toolchain now names a Dependencies directory in its image, copied whole into the output's
root after the compile by a second run in the same image: for TypeScript /app/runtime, which the
runtime's image puts a `"type": "module"` package.json and its pruned node_modules at. An older
image without it fails the build by name rather than packing a bundle that starts nowhere. The
SDK's and the runtime's dependencies, nothing module-specific yet: a skeleton, by ADR 0188 §5.
A module declaring tools, a container, and a build on mesh-tools' runtime image is a container whose
purpose is serving tools — the pattern the node's tool runtime retires. Once node-tools is in the
catalogue, registering one is refused by name, with the record that says why; before, it is accepted
as it always was, so a mesh converts in the design's order and nothing is refused before there is
anything to move to. This is the mechanism that keeps the old pattern from returning by habit.
Judged from a repository manifest's own build.on, and for a built manifest — which carries no build
— from what its build stood on, now recorded beside the commit as part of a module's provenance.
Where node-tools is in a node's set, the declaration ends with one process: the runtime module's own
bundle, run from its one entrypoint by its language's interpreter, told in MESH_TOOL_MODULES every
<module>=<file> the machine's bundles load, where its credential is (the module's own broker secret
as this node places it), and — on a machine with an operator account — who the operator is, running
as that account so a tool that needs root can escalate as the operator would. Restarted when any
bundle it loads or the credential changes. A machine with no account runs it as root without the two
operator words; a machine without the runtime is sent nothing new.
A bundle says which of its entrypoints the runtime LOADS (`loads`), because one bundle may carry a
daemon beside its tools and importing the daemon into the runtime would start it there; absent, a
module declaring tools has every entrypoint loaded. And the TypeScript toolchain is rooted at the
module, so an entrypoint lands at the path it is named by — the runtime loading bundles by their
declared paths is what made the compiler's common-directory default visible.
The resolved manifest now carries what the build compiled — each bundle's source, digest, language
and entrypoints — because a tools bundle is named by no resource of the module's own: the node's
runtime loads it, and until this the mesh held no trace of the one artifact that runtime needs. A
repository manifest that writes `bundles` beside its build is refused: the mesh derives it.
Where the runtime module is in a node's set, every assigned module's bundle with entrypoints is
composed as an archive under the mesh's own directory, routed through the artifact store like any
image or archive the mesh built. A bundle without entrypoints is run rather than loaded and is
delivered by the process that runs it. A node without the runtime is sent exactly what it was.
One verb in the row that this binary cannot run aborted the start, and a stale push that put an
older control plane back took the whole mesh off the bus for ten minutes — recoverable only by a
person running the binary outside its service, because the push that repairs it is one of the verbs
that had stopped being served. Now the verbs it knows are served, the ones it does not answer the
reason, and the start names them once.
Where the node-tools module is assigned, the machine's bus user list gains one principal of kind
node-tools in place of that module's own: it may subscribe every carried module's tool namespace
and every held seat's verbs on its node, read and follow every membership on its node, call any
tool anywhere, answer what it is asked — and consume nothing, because tools are what it runs.
Every other module keeps its own principal, so a module still serving tools from its container
holds its own credential until it moves.
Named exactly as the module it stands for, so `module issue` and `rollout mint` deliver its
credential through the path a module's already takes, into node-tools' own `broker` secret. The
runtime module's name is one constant in each of the broker and catalogue packages, held to one
string by the agreement test, because a rule turns on it.