011: the provider shape generalises, and two things differ inside it
The broker has all nine properties the store has. So do the object store and the image registry. A substrate service is a SERVICE PLUS A FACTORY, there are four of them, and the pattern generalises past the substrate: anything granting something per consumer has this shape. Two differences matter more than the similarity. The broker cannot be managed over the broker. ADR 0001 makes it the channel every node takes work from and ADR 0039 makes it the security boundary, so the module providing it is also the way modules are managed — a declaration cannot be delivered to it over itself. Nothing else has that property; the store is consumed by the control plane but is not how the control plane REACHES anything. This is what the carried bundle exists for: the broker is raised from what the host carries because there is no other way to raise it. A constraint on one module, not a general rule, and a schema with no way to say so hides it. And two modules of identical shape want opposite instance counts. The broker is one per mesh by decision. The store cannot be, because a node that must keep working while disconnected cannot depend on a database elsewhere. Which settles what cases.md left open: how many instances is NOT derivable from what a module is. It is a per-module decision, it has to be declared, and nothing in provides, requires or excludes says it. Revocation differs in consequence too. Dropping a database leaves data until something removes it — a leak, recoverable. Dropping a virtual host loses whatever was undelivered — silent, and not. Same relation, different blast radius, which argues for the provider deciding what revocation means rather than the mesh applying one rule. File renamed: it was never really about postgres.
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@@ -17,7 +17,7 @@ touches:
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Whether the catalogue's missing structure is a **graph** — modules declaring what they need,
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what they offer, and what they exclude — and what that replaces.
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**[`worked-postgres.md`](worked-postgres.md) works one module through completely**, and breaks
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**[`worked-provider.md`](worked-provider.md) works one module through completely**, and breaks
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the tidy version. A database is nine things, not one — and a small game asking the mesh for its
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own database shows there are **two kinds of edge**: *presence*, where the thing must exist, and
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*instantiation*, where a provider makes something for a consumer and hands back credentials.
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@@ -1,6 +1,6 @@
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# One kind of edge
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> **Superseded in part by [`worked-postgres.md`](worked-postgres.md).** Working postgres through
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> **Superseded in part by [`worked-provider.md`](worked-provider.md).** Working postgres through
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> completely shows there are **two** kinds of edge, not one: *presence* — the thing exists and is
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> reachable, nothing created — and *instantiation* — the provider is asked to make something for
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> this consumer and hands back credentials. Instantiation implies presence; presence does not
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+53
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@@ -1,8 +1,10 @@
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# Postgres, all the way through
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# A provider, all the way through
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One module, worked out completely, because it is the case that breaks the tidy version. It
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looks like *a container that runs a database* and it is at least nine things.
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Postgres is the example. **The shape is not specific to it** — see the end.
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## What it carries
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**1 — A supervised container.** An image, a version, a data volume, and configuration. Easy,
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@@ -109,3 +111,53 @@ declaration leaves — which makes the host decide something, against
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plane reads the node's inventory first and composes with it. The second is consistent and means
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a declaration is composed *per node from what the node reported*, which is a stronger claim than
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anything recorded so far.
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## The same shape, three more times
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The message broker has all nine. So does the object store, and so does the image registry. They
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differ in what a consumer asks for — a database, a virtual host, a bucket, a repository — and in
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nothing structural.
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**A substrate service is a service plus a factory.** That is the whole pattern, and there are
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four of them. It generalises past the substrate too: anything that grants something per consumer
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has this shape, and anything that does not is the simpler case.
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But two things differ *between* them, and both matter more than the similarity.
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### The broker cannot be managed over the broker
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[ADR 0001](../../02-DECISIONS/0001-nodes-communicate-over-a-broker.md) makes the broker the
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channel every node takes work from, and
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[ADR 0039](../../02-DECISIONS/0039-the-link-is-the-security-boundary.md) makes it the security
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boundary — everything a node applies arrives through it.
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So the module providing the broker is also **the way modules are managed**. A declaration cannot
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be delivered to it over itself, and reconfiguring it is done through the thing being
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reconfigured. Nothing else in the catalogue has that property; the store is consumed by the
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control plane but is not how the control plane *reaches* anything.
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This is exactly what the carried bundle exists for
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([ADR 0038](../../02-DECISIONS/0038-a-node-joins-by-linking-first.md)): the broker is raised from
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what the host carries, before there is a channel, because there is no other way to raise it.
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Recorded here because it is a constraint on *one module*, not a general rule, and a schema with
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no way to say so hides it.
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### Two modules of identical shape want different instance counts
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The broker is one per mesh — a single point of failure and a single point of trust, by decision
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rather than by accident. The store cannot be: a node that must keep working while disconnected
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([ADR 0036](../../02-DECISIONS/0036-a-node-is-a-managed-machine.md)) cannot depend on a database
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somewhere else.
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Same nine properties, opposite answers. Which settles something the cases file left open: **how
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many instances is not derivable from what a module is.** It is a decision per module, it has to
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be declared, and nothing in `provides`, `requires` or `excludes` says it.
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### And revocation differs in consequence
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Revoking a database leaves data behind until something drops it — a leak, and recoverable.
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Revoking a virtual host drops whatever had not been delivered — not recoverable, and silent.
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The relation is the same and the blast radius is not, which is an argument for the provider
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deciding what revocation means rather than the mesh applying one rule to all of them.
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