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75b3861911 |
@@ -5,7 +5,7 @@ code:
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- mesh-catalog modules/nats
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- mesh-controller internal/catalogue
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- mesh-lab scenarios
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updated: 2026-09-27
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updated: 2026-09-28
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decisions:
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- 02-DECISIONS/0116-the-bus-is-built-in-five-steps.md
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- 02-DECISIONS/0106-the-bus-is-nats.md
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@@ -535,7 +535,7 @@ it, and the beds that need a mesh living on NATS can finally run.
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The outcome carries the module name, because only the manifest says what was built and one
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message now has three readers. A failed build names none: it produced no module version, and
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the catalogue would otherwise place something that was never made.
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- [~] 4.3 an installation completes over the bus, with the same outcome as the path it replaces —
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- [x] 4.3 an installation completes over the bus, with the same outcome as the path it replaces —
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**the installer can raise it**: a foundation template that stands up the server, writes the
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server's own settings and the mesh's first user list beside them, and starts a controller
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reaching the new bus. What remains is running it, which is 4.1's bed.
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@@ -655,42 +655,35 @@ healthy while reacting to nothing.
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- [ ] 5.1 the cutover bed: a mesh on AMQP with a predecessor stand-in on the deprecated broker
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moves its bus in one rollout, every node reporting on NATS afterwards, the stand-in's own
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client still connected throughout
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- [~] 5.2 the rollout: accounts composed, then the controller, every host and every runtime
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- [x] 5.2 the rollout: accounts composed, then the controller, every host and every runtime
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together; every node confirmed heard before AMQP stops.
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**The readiness half is in and is the half worth having.** The move takes every node at once, so
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there is nothing to inspect afterwards and no half to roll back — either the mesh was ready or it
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was not. `rollout check` answers that from records, with one dial: is a bus answering, does a
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machine hold the seat, has it been sent the composed user list, does every machine and every
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module that speaks have a credential. Each missing thing names its own next step, because "not
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ready" that cannot be acted on is not an answer at the point where the next step is irreversible.
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**Done 2026-09-28, 02:25.** Every machine reports on the new bus, the seat is held by the
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module that provides it, the old broker is unassigned and forgotten, and every credential was
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minted afresh at the end because two had been printed on the way. What it took, in the order
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it was found, each fixed on the trunk before the next step: the control plane's `serve` and
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`push` never selected the new transport (task 4.3, open until then); a machine's user was
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granted neither the asking nor the delivery of its own consumer; the account had no JetStream
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of its own; the control plane's client verified the bus's certificate by name instead of
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pinning it; the seat table's rows carried no protocol, so no role's work queue was raised; the
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build machine decided its bus from a variable its container never received; and a rotation
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put new hashes on the bus before three machines had received their new memberships — which
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is why there is now `rollout hand <node>` and a host adopts a delivered membership at start.
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The bootstrap loop — a bus that can only be raised by a declaration that can only arrive
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over that bus — was broken once, by hand: the mesh's own composed configuration started the
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server, and the controller binary was run on the node directly until the managed container
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could be rebuilt over the bus it was on.
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**A machine with no credential is what must stop it.** It keeps running, cannot come back, and
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afterwards there is no bus to tell it anything over.
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The move itself is deliberately not written yet, and the command says so rather than pretending:
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it waits on the check having been run against a real mesh. Writing the irreversible half before
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the question it depends on has ever been asked of something real is how the plan's own rule about
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beds gets broken by another route.
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> **What this costs if it goes wrong, measured rather than assumed.** Nothing in a served
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> request's path goes over the mesh's own bus: modules serve from their own containers. What a
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> failed move costs is the mesh's ability to *change* anything — pushes, tool calls, new
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> provisioning — until it is finished or undone. That is worth knowing before rather than
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> after, and it is why the operator's "as long as my services keep running" is a reasonable
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> position rather than a gamble. **Measured on 2026-09-27**, when a seat emptied itself
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> mid-change: 52 containers stayed up and the broker never stopped; the control plane
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> crash-looped for two hours and nothing could be deployed until it was repaired by hand.
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> An earlier version of this note said the old broker stays as an ordinary provider of
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> `amqp` ([ADR 0127](../../02-DECISIONS/0127-amqp-is-a-provision-not-the-bus.md)); that is withdrawn by [ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md) — see 5.4.
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- [ ] 5.3 **the seat changes hands as one act.** A command takes a seat and the assignment taking it
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- [x] 5.3 **the seat changes hands as one act.** A command takes a seat and the assignment taking it
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over, and the seat is never empty in between — the emptiness is the outage of 2026-09-27, when
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the control plane, which finds its own bus through this seat, lost the address and looped.
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Today only `seat rename` exists. This is what 5.2 uses to move `mesh-broker` from the old
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**Built 2026-09-27** (`seat_holding`, migration 0039; design 26 says how it is checked), and used
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live the next night to hand `mesh-broker` from the old broker's assignment to the new one's. This
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is what 5.2 uses to move `mesh-broker` from the old
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broker's assignment to the new one's, and it is built first ([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md)).
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- [ ] 5.4 **the old broker and everything that named AMQP leave the mesh** ([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md),
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- [x] 5.4 **the old broker and everything that named AMQP leave the mesh** ([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md),
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superseding [ADR 0127](../../02-DECISIONS/0127-amqp-is-a-provision-not-the-bus.md)): the two modules that
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required `amqp` are removed, the broker's module is unassigned and removed, registration refuses
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required `amqp` are removed, the broker's module is unassigned and removed (**done 2026-09-28**; the predecessor's own tooling, which rode the same adopted broker, went dark with it, as [ADR 0130](../../02-DECISIONS/0130-the-predecessor-is-ending-and-its-broker-goes-with-it.md) accepted), registration refuses
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a manifest that provides or requires `amqp`, and a whole-catalogue check asserts none does. Not
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a retirement condition — a decision, taken, with the operator's "I don't care if the predecessor
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breaks" on record ([ADR 0130](../../02-DECISIONS/0130-the-predecessor-is-ending-and-its-broker-goes-with-it.md)).
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@@ -701,8 +694,27 @@ healthy while reacting to nothing.
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> shutting it down ends the path that reaches this installation's machines from a workstation.
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> The rollout is driven from the node, or before the broker stops — a sequencing constraint on
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> 5.2, not an afterthought.
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- [ ] 5.5 **the AMQP transport is deleted from the control plane and the hosts**, and the variable
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that selected a transport is refused at start as unknown. One bus, nothing to select ([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md)).
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- [x] 5.5 **the AMQP transport is deleted from the control plane and the hosts**. One bus, nothing
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to select ([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md)).
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**Done 2026-09-28.** The control plane's old consume loop, build request, tool call, management
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API and account scoping went, and the host's old dialling and enrolment paths with them; a
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membership or token naming any other bus is refused before anything is sent. Nothing selects a
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transport any more: the variable that once did (`MESH_BUS_NATS`) now only names where the
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control plane reads its own bus credential, the way any module reads a secret. **Checked by the
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build**: neither repository's module file names the AMQP client library, so a line that still
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used it would not compile. The store-window guarantee ([issue 083](../../04-ISSUES/083-other-control-messages-are-lost-while-the-store-restarts/00-report.md))
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is tested against a bus-less fake rather than the old transport's memory, which is what let
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that memory go — the one thing it did that the stream does not (superseding a held report) is
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the staleness check on the message itself (design 25 §3).
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Found on the way: **no build had ever recorded what it stood on.** A recipe reads its base from
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a build argument, so the digest was never in the file the builder derived edges from, and every
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order that says *bases first* — `build --on`, `build --behind`, the merge follow-up of
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[issue 131](../../04-ISSUES/131-nothing-tells-the-mesh-a-source-moved/00-report.md) — walked a
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graph with no edges. The builder now reports the bases it was handed, the control plane records
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them by artifact path, and the graph is read from the newest build of each module — a recorded
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manifest carries no `build.on`, so the edge is derived from the build or it does not exist.
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> **The old 5.4 note is history.** It recorded that a retirement *condition* was wrong from
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> [ADR 0127](../../02-DECISIONS/0127-amqp-is-a-provision-not-the-bus.md) onward, which framed the old broker
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@@ -0,0 +1,107 @@
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---
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status: resolved
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opened: 2026-09-27
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located-in: [mesh-catalog modules/gitea, mesh-controller cmd/mesh-controller, mesh-controller internal/builder]
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fixed-by: mesh-catalog #124 — the forge module watches for merged pull requests and emits `pull.merged` with the merge commit and the clone address; mesh-controller #110/#111 — the control plane follows that event on the bus, marks every module built from that repository and branch as moved, and builds them bases first, stopping when a base fails; mesh-controller #113/#114 — a build records the bases it was handed and the graph is read from builds, without which "bases first" had no edges to order by.
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amended-design: 03-DESIGN/01-to-be/28-building-the-bus.md
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---
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# 131 — Nothing tells the mesh a source moved, and it reports itself current anyway
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## What was observed
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Six changes were merged to the trunk of six repositories in one sitting. The build machine built
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nothing. Its last build, minutes before the first merge, was still the one it reported; no build was
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requested, refused or failed, because none was ever asked for.
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Asked afterwards what was wrong, the mesh said:
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> 4 machine(s), all doing what they were told, all heard from, running what the mesh would send them,
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> and every module current with its source
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Every one of the six had moved. The last clause was false for all of them, and it is the clause a
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person reads to decide whether there is anything to do.
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## Why it matters beyond this instance
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**The mesh learns a source moved by being told, and there is no longer anything to tell it.** The
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command exists — a person names the module and the commit — and so does the question the overview
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answers. What is missing is whatever used to connect the two. One repository still carries a forge
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webhook aimed at a port; the rest carry none, and the port belongs to a different service than the
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one the arrangement implies. So the state is not "the trigger is broken" but "there is no trigger,
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and nothing says so".
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**A wrong answer is worse here than no answer.** "Every module current with its source" is
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indistinguishable, to a reader, from a mesh that has genuinely caught up. The overview is built to be
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the thing you check instead of checking by hand, so a confident false negative removes the habit that
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would otherwise have caught it. Nothing in the mesh is at fault for being out of date — it is at
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fault for saying it is not.
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**It is also why "current with its source" cannot be a stored fact.** The mesh compares what it built
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against what it was last told the source was, and calls that agreement. Two facts agreeing tells you
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nothing when both come from the same place.
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## The intended shape, which is decided and not built
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The forge emits what happened to it — a pull request merged — and the build machine reacts by
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building what that commit affects. That keeps the forge ignorant of the build system and the build
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machine ignorant of the forge's internals, which is the same argument
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[ADR 0126](../../02-DECISIONS/0126-a-module-declares-its-own-seats.md) makes for addressing an event
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to its emitter: the merge is a fact about the forge, and what should be rebuilt because of it is not
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the forge's business to know.
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The forge's module already declares the event. The build machine declares that it consumes nothing.
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## What the trigger cannot be
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**Not one build per changed module.** The modules form a graph: several are built from one
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repository, and some are the base another is compiled on — a runtime image, a compiler base, a
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repository whose context a second module builds from. Firing a build for each changed module
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independently would start work that cannot succeed yet and produce a failure per dependent, for one
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cause.
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Observed while catching the mesh up by hand on 2026-09-27: a compiler base had to move before
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anything compiled against it could build, and when it failed, the right behaviour was for its
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dependents to wait rather than each fail the same way. Fifteen modules shared the cause. A trigger
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that reports it fifteen times has buried it.
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So whatever reacts to the forge's event resolves what changed into an order, builds the bases first,
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and holds a dependent while its base is unbuilt or failed. That is a larger thing than "rebuild what
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the commit touched", and knowing it now is cheaper than discovering it from fifteen identical
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failures.
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## Open questions
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- Is "the source moved" still a thing a person can assert by hand once the event path exists, or does
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the hand-operated form become the thing that made this failure possible?
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- Which commit does the build machine act on — the merge, or each commit it brought — and what does
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it do when several arrive for one module at once?
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- How does the overview stop being able to lie? Comparing what was built against what was recorded
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will always agree. Whether the trunk has moved is a question only the forge can answer, so either
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the overview asks it, or it stops claiming to know.
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- Does this want to be the same mechanism as the build request on the bus
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([ADR 0129](../../02-DECISIONS/0129-a-seat-carries-the-protocol-of-its-role.md)), or does it sit in
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front of it?
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## What was done (2026-09-28)
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The shape above was built as described: the forge's module emits the merge, the control plane
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consumes it, and nothing on either side knows the other's internals. The build is asked for the
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merge commit, not each commit the merge brought — the trunk moved once, to one place. Several merges
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for one module arriving in a row are followed in turn, each moving the recorded source to its own
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commit, so the last one to arrive is the one the mesh ends up built from.
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The hand-operated form stays. `module moved` is how a source is recorded without a forge — a module
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built from a repository elsewhere, or a mesh whose forge module is down — and it is the same act the
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event performs, so the two cannot disagree about what "moved" means.
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**Bases first needed edges, and there were none.** The order this report asked for was written and
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walked a graph that no build had ever recorded: a recipe reads its base from a build argument, so the
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digest was never in the file the builder read edges from. A build now reports what it was handed, the
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control plane records it by artifact path, and the order is read from each module's newest build.
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**What still can lie.** The overview compares what was built against where it was last told the
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source is; the forge's event is now what moves that mark, so it is right for as long as the forge
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module was listening. A merge made while that module was down is a merge the mesh does not know of
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until the module next polls — it announces what merged since it last looked, so the gap closes when
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it comes back, and not before. The overview does not say so.
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Reference in New Issue
Block a user