Jochen asked whether the order made sense. It did not -- it followed when things happened to be decided, which after consolidation is fictional anyway since record 5 alone folds decisions taken across a week. Concretely wrong before: the domain statement sat at 8, after five engineering rules; the constitution was scattered across 5, 12 and 17; the tiers landed at 15, 16, 21 and 22 with process records in between. Now it walks: what the mesh is (1-3), its tiers from the bottom up (4-8), what runs on them and how it gets there (9-10), how it is built (11-16), how it is checked (17-18), how we work (19-23). Two things made this safe rather than free. It is a permutation, not a compaction, so the renames go through temporary names -- otherwise two files want one slot and one is lost. And the reference rewrite is a single simultaneous pass, because almost every number moved into a slot another number was vacating; replacing one at a time would have cascaded and pointed things at the wrong record while still resolving. Verified: 284 [ADR NNNN](path) links across the repository, all with matching text and target. The ordering principle is now stated in 19 rather than left implicit -- the repository already said "the numbering is the flow" about its folders, and there was no reason for the records to be the exception.
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layer, status, code, updated, decisions
| layer | status | code | updated | decisions | ||||
|---|---|---|---|---|---|---|---|---|
| as-is | implemented |
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2026-08-23 |
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The mesh as it stands
A set of machines, each running the same runtime, each loading only the parts of the catalogue it has been assigned. They hold no shared filesystem and make no direct connections to one another. What makes them a mesh is a database that knows what should run where, and a message broker that carries everything between them.
Three nouns
A node is a machine that runs the runtime. Nodes differ in what they are assigned and in what they can reach — some carry a public name, some sit behind a household connection with no inbound route at all — and the mesh is designed so that difference stays a property rather than becoming a special case. A node holds no authoritative state: everything it needs is derived onto it and can be regenerated.
A module is a directory with a manifest, and it is the only unit the mesh installs. A containerised service is a module. A set of capabilities with no service behind them is a module. A bare marker whose whole content is that a node has it is a module. The mesh's own components are modules on exactly the same terms as everything else it carries (ADR 0009).
An agent is a participant. Some agents are human. What differs is modality — how the agent acts — and not category: both hold identity, both act, both accumulate memory (ADR 0003).
Where truth lives
The repository defines what exists: the modules, what each declares, how each is built.
The mesh database defines what runs where: which node is assigned which module, at which selection, with which overrides, plus the settings every node reads. No node-to-module mapping is ever committed (ADR 0006).
Everything on a node's disk is derived from those two, and is regenerated rather than edited (ADR 0011). A node that loses its database keeps running from a local cache, which is deliberate and has the obvious cost: the cache carries no indication of its own age.
How anything moves
Nothing dials a node. Every node dials the broker outbound, owns an exchange named for itself, and consumes from its own request queue (ADR 0002). Three message shapes carry everything: requests expecting a reply, commands instructing that a stage of work be done, and events stating that something happened.
A capability that lives on another node is reached the same way a local one is. At startup a node asks its peers what they host and creates a local stand-in for each remote capability, so the caller does not know or care where the work happens. Credentials never travel: the call goes to where the capability is.
How change reaches a node
A push to the forge is the only trigger. What follows is three silos with deliberately different cardinality: compile once, package and upload once, then install-configure-start- verify on every assigned node (ADR 0010). What travels between build and node is a self-contained build output, so a deploy is extract-and-run and touches no network (ADR 0010).
Modules are resolved into dependency levels and a level completes before the next begins, so a module always builds against its dependencies as they were just published.
What the mesh does for a module
A module declares what it provides and what it requires. The mesh satisfies the requirement: it creates the resource, generates the credential, records the grant, and writes the values where the module will read them. The module never learns which node its database lives on, and nobody ever writes a credential by hand (ADR 0009).
This is the property the mesh's whole shape rests on, and it is why provisioning is treated as a core concern rather than as plumbing.
The shape of its failures
Worth stating in an overview, because it is the most consistent thing about the system: the mesh's expensive faults are almost never crashes. They are operations that reported success and did nothing — a download that half-completed, a hook that was never called because it was named for a feature the module does not declare, a stage that reported it had dispatched a message rather than that the effect happened, a package that 404ed from every mirror while the job went green.
ADR 0010 is the response, and it is applied instance by instance rather than enforced by a mechanism. New instances are still being found. That is an as-is fact, not a criticism: it is the single most useful thing to know about this system before changing it.