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---
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topic: what runs on it
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status: accepted
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date: 2026-09-29
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deciders: jochen
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reconstructed: false
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extends: 02-DECISIONS/0098-a-fact-a-provider-makes-at-first-start-is-fetched-from-it.md
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---
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# 147. A module anchors the mesh's authority on a machine, and takes it away again
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## Context
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The mesh runs its own certificate authority and every internal name is served with a certificate
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from it. No machine trusts it. On an enrolled, adopted workstation — on the private network,
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resolving through the mesh's resolver — every internal HTTPS name fails verification with
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*unable to get local issuer certificate*
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([issue 129](../04-ISSUES/129-nothing-makes-a-machine-trust-the-meshs-authority/00-report.md)).
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The certificates are genuine; nothing on the machine has ever been told what issued them.
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The authority's only consumer today is a proxy, which fetches the root into a directory of its own
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and hands it to one program ([ADR 0098](0098-a-fact-a-provider-makes-at-first-start-is-fetched-from-it.md)).
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That is enough for the proxy and for nothing else: a browser, `git` over HTTPS, `curl`, a package
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manager and every module that calls another module by an internal name read the machine's trust
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store, which holds the predecessor's authority and a developer tool's local root, and nothing of
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the mesh's.
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The predecessor wrote its root into every machine it set up. Removing it was deliberate — an
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honest failure beats a name that verifies for the wrong reason — and it leaves the mesh with no
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answer at all until this one lands. It is also what keeps the predecessor alive on the machines
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that still speak TLS to a mesh name.
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**What makes this a decision rather than a patch** is where the knowledge goes. Two mechanisms in
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the mesh already write things onto a machine because it is on the private network: `/etc/hosts`
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and the registry's plaintext trust ([ADR 0082](0082-the-registry-is-reached-by-name-and-trusted-by-the-overlay.md)).
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Following that precedent, the controller would inject an anchor into every such machine's
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declaration, and issue 129 proposed exactly that. It would work. It would also put *where this
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operating system keeps trust anchors* and *which command refreshes its bundles* into the control
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plane, for a fact the control plane does not have (the root does not exist until the authority has
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run) and a machine that may have no reason to verify a mesh name at all.
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## Considered Options
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1. **The controller injects the anchor into every machine on the private network**, the
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`/etc/hosts` and insecure-registry shape. Rejected: being on the network is what makes the
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registry reachable, and that is why network presence is the right trigger *there* — the trust
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and the reachability are the same fact. Trusting an authority is not the same fact as being
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able to reach it, and the anchor's path and the bundle refresh are a property of the machine's
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operating system, which is the host's half of the mesh, not the controller's.
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2. **A new host primitive — a `trust-anchor` resource type.** Rejected for now, not on principle.
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The host's vocabulary should grow when a shape cannot be said with what exists, and this one
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can: a file and a service already express it, as the packet filter proves
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([ADR 0140](0140-the-filter-constrains-what-arrives-from-outside.md), whose module writes a
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unit file and a service and nothing else). The primitive becomes right the moment a second
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operating system is in play, because the anchor directory and the refresh command are exactly
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the difference `internal/system` exists to hold. Until then it would be a vocabulary word with
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one speaker.
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3. **A module that requires the authority, fetches its root, installs it as an anchor and
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refreshes the machine's bundles — and removes both when it is no longer assigned.** Adopted.
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## Decision
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**A machine trusts the mesh's authority because a module put its root there, and stops trusting it
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when that module is taken away.**
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1. **The module requires `internal-acme-ca`** and reads the provider's bound address and the path
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it serves its root at. It requires nothing else and provides nothing: it is a consumer of the
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authority like any other.
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2. **It fetches the root over the mesh's own network, without prior trust**, because there is no
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prior trust to have — this is the module that establishes it — and the network is what
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authenticates the fetch ([ADR 0098](0098-a-fact-a-provider-makes-at-first-start-is-fetched-from-it.md),
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the same reasoning that lets the proxy fetch it). What it accepts is checked: a body that is
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not a certificate fails, and the failure is the module's, not a later handshake's.
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3. **It installs the root where this machine's TLS clients look, and refreshes the extracted
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bundles** — the command that does the refresh is an ordinary part of the unit that places the
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anchor, not a new thing the mesh can be asked to do.
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4. **Removal is symmetric and is the same unit's business.** Undeclared, the host stops the unit;
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stopping it removes the anchor and refreshes the bundles again. A machine that leaves the mesh
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stops trusting the mesh, without anybody remembering to go and look.
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5. **It is an ordinary assignment.** No machine is given it automatically. A machine that verifies
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a mesh name is assigned it, and a machine that does not is not — which is the same statement
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the mesh already makes about every other module, and is why this is not the controller's
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business.
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**One operating system, said out loud.** The anchor directory and the refresh command in the
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module today are Arch's. On a machine that is not Arch the unit fails, visibly, rather than
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writing a file nothing reads. That is the accurate failure, and it is the signal that option 2
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above has become right.
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## How this is checked
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- **The verification that could not succeed before.** On a machine holding the module, a plain
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client fetches an internal HTTPS name with no `-k` and no bundle argument and verifies. On a
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machine without it, the same fetch fails with *unable to get local issuer certificate*. Both
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halves, because only the pair distinguishes "the anchor works" from "something else already
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trusted it".
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- **The removal half, in the same bed:** unassign the module, refetch, and the failure returns.
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Checking only the arrival is how a trust store fills up with authorities nobody can account for.
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- **What is deliberately not checked here:** that the authority issues, that a name resolves, that
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the proxy serves. Those have their own beds, and this module's bed passing for those reasons is
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the failure mode this record is most exposed to — which is why the negative half is not optional.
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**What this bed is dialled at, and why it is the authority itself.** The authority serves its own
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API with a certificate it issued, so the handshake under test needs nothing else in the mesh to be
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right. A trust bed that reached for a routed name through the proxy would be passing or failing for
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the proxy's reasons and the resolver's.
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**Written, and not yet run** *(2026-09-29)*. The bed is `trust-anchor` in the lab, and it cannot
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execute: raising a foundation fails before any module is reached, in both bundles that exist
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([issue 146](../04-ISSUES/146-the-foundation-cannot-be-raised-on-the-bus-the-mesh-runs-on/00-report.md)).
|
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So what stands behind this record today is the rendering — the script the machine would run names
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the authority it was bound to, checked in the control plane's own test suite — and **not** a machine
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that verified anything. That is a weaker thing than the paragraph above describes, and it stays
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written this way until the bed runs.
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## Consequences
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The predecessor's authority can be retired from a machine once this module is assigned to it,
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which is the first time that has been true. `git` over HTTPS to the mesh's forge starts working,
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so the ssh-only clone URL stops being a rule. A module on any machine can call another module's
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internal name and verify it.
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What got harder: one more module to assign to a machine that needs it, and the machine's trust
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store now changes when an assignment changes — which is the point, and is also a thing an operator
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can be surprised by. The fetch without prior trust is the same exposure ADR 0098 accepted, now on
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every machine that holds the module rather than only where a proxy runs: anything that can stand
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in the middle of the mesh's own network at the moment of the fetch can be believed. The mesh
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already treats that network as the thing it authenticates.
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## References
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||||||
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- [issue 129](../04-ISSUES/129-nothing-makes-a-machine-trust-the-meshs-authority/00-report.md) —
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the symptom and the evidence.
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- [ADR 0098](0098-a-fact-a-provider-makes-at-first-start-is-fetched-from-it.md) — a fact made at
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first start is fetched from its provider; this extends it from one program to the machine.
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- [ADR 0082](0082-the-registry-is-reached-by-name-and-trusted-by-the-overlay.md) — the precedent
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this deliberately does not follow, and why it is right where it is.
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- [ADR 0005](0005-the-node-host.md) — the host is where one operating system's difference lives.
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- [`03-DESIGN/01-to-be/08-connectivity.md`](../03-DESIGN/01-to-be/08-connectivity.md).
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@@ -225,7 +225,9 @@ python3 00-META/checks/index.py fail if stale
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- **0141** — [The host delivers its own successor, and versions live side by side](0141-the-host-delivers-its-own-successor.md)
|
- **0141** — [The host delivers its own successor, and versions live side by side](0141-the-host-delivers-its-own-successor.md)
|
||||||
- **0143** — [A consumer verifies the grant it is given](0143-a-consumer-verifies-the-grant-it-is-given.md) *(superseded)*
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- **0143** — [A consumer verifies the grant it is given](0143-a-consumer-verifies-the-grant-it-is-given.md) *(superseded)*
|
||||||
- **0144** — [Anything on a machine may call anything on it, and that is the whole of "local"](0144-anything-on-a-machine-may-call-anything-on-it.md)
|
- **0144** — [Anything on a machine may call anything on it, and that is the whole of "local"](0144-anything-on-a-machine-may-call-anything-on-it.md)
|
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- **0145** — [A module checks what the mesh claims is reachable, and it checks itself](0145-a-module-checks-what-the-mesh-claims-is-reachable.md)
|
- **0145** — [A module checks what the mesh claims is reachable, and it checks itself](0145-a-module-checks-what-the-mesh-claims-is-reachable.md) *(superseded)*
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- **0146** — [Connectivity is checked by name, per hosting form, with a valid certificate](0146-connectivity-is-checked-by-name-per-hosting-form.md)
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- **0147** — [A module anchors the mesh's authority on a machine, and takes it away again](0147-a-module-anchors-the-meshs-authority.md)
|
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### How it is built
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### How it is built
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@@ -7,8 +7,9 @@ code:
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- mesh-controller internal/identity/authority.go
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- mesh-controller internal/identity/authority.go
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- mesh-host internal/identity/serving.go
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- mesh-host internal/identity/serving.go
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- mesh-host internal/apply (the service that reflects a rule set)
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- mesh-host internal/apply (the service that reflects a rule set)
|
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updated: 2026-09-28
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updated: 2026-09-29
|
||||||
decisions:
|
decisions:
|
||||||
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- 02-DECISIONS/0147-a-module-anchors-the-meshs-authority.md
|
||||||
- 02-DECISIONS/0138-an-assignment-binds-an-endpoint-and-says-how-far-it-reaches.md
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- 02-DECISIONS/0138-an-assignment-binds-an-endpoint-and-says-how-far-it-reaches.md
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||||||
- 02-DECISIONS/0140-the-filter-constrains-what-arrives-from-outside.md
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- 02-DECISIONS/0140-the-filter-constrains-what-arrives-from-outside.md
|
||||||
- 02-DECISIONS/0104-a-provision-may-be-answered-by-an-adapter-to-the-predecessor.md
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- 02-DECISIONS/0104-a-provision-may-be-answered-by-an-adapter-to-the-predecessor.md
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@@ -710,6 +711,22 @@ step, so when the authority moves the root is fetched again and the proxy is rec
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*How it is checked:* the route-forwarding bed installs the authority, the proxy and a consumer
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*How it is checked:* the route-forwarding bed installs the authority, the proxy and a consumer
|
||||||
from the catalogue and asserts the routed name is served.
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from the catalogue and asserts the routed name is served.
|
||||||
|
|
||||||
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**And a machine trusts that authority because a module put its root in its trust store**
|
||||||
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([ADR 0147](../../02-DECISIONS/0147-a-module-anchors-the-meshs-authority.md)). The proxy's fetch
|
||||||
|
answers for the proxy and for nothing else: a browser, `git` over HTTPS, a package manager and
|
||||||
|
every module calling another by an internal name read the machine's own trust store, and the mesh
|
||||||
|
had never written anything there. A module requiring the authority does the whole of it — fetch
|
||||||
|
the root over the mesh network, place it where this machine's TLS clients look, refresh the
|
||||||
|
extracted bundles — and stopping it, which is what being unassigned does, takes the anchor away
|
||||||
|
and refreshes them again. Not the controller's business, because being on the private network is
|
||||||
|
what makes the authority *reachable* and is not the same fact as having a reason to *verify* a
|
||||||
|
mesh name; and because where anchors live and which command refreshes them is one operating
|
||||||
|
system's difference, which is the host's half of the mesh
|
||||||
|
([ADR 0005](../../02-DECISIONS/0005-the-node-host.md)).
|
||||||
|
*How it is checked:* on a machine holding the module a plain client verifies an internal HTTPS
|
||||||
|
name with no bundle argument, and on one without it the same fetch fails to find an issuer — both
|
||||||
|
halves, because only the pair tells the anchor apart from something that already trusted it.
|
||||||
|
|
||||||
### What was built
|
### What was built
|
||||||
|
|
||||||
*2026-08-31.*
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*2026-08-31.*
|
||||||
|
|||||||
@@ -1,7 +1,7 @@
|
|||||||
---
|
---
|
||||||
status: open
|
status: located
|
||||||
opened: 2026-09-26
|
opened: 2026-09-26
|
||||||
located-in: [mesh-controller, mesh-catalog step-ca]
|
located-in: [mesh-catalog ca-trust]
|
||||||
---
|
---
|
||||||
|
|
||||||
# 129 — nothing makes a machine trust the mesh's own certificate authority
|
# 129 — nothing makes a machine trust the mesh's own certificate authority
|
||||||
|
|||||||
@@ -0,0 +1,32 @@
|
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|
# Diagnosis
|
||||||
|
|
||||||
|
*2026-09-29.*
|
||||||
|
|
||||||
|
## What was ruled out
|
||||||
|
|
||||||
|
**That something already carries the root and it is only misplaced.** It does not. The authority
|
||||||
|
serves its root at a path beside its ACME directory, and the one thing that fetches it — the route
|
||||||
|
proxy — puts it in a directory of its own and hands it to one program. Nothing has ever written
|
||||||
|
into a machine's trust store. Measured on three converged machines: the anchors present are the
|
||||||
|
predecessor's authority and a developer tool's local root, and on the machines where the
|
||||||
|
predecessor's was deliberately removed, every internal name fails verification.
|
||||||
|
|
||||||
|
**That the private network could carry it, the way it carries the registry's trust.** That is what
|
||||||
|
the report proposed, and it was rejected on consideration rather than on difficulty
|
||||||
|
([ADR 0147](../../02-DECISIONS/0147-a-module-anchors-the-meshs-authority.md), option 1): being on
|
||||||
|
the network is what makes the registry *reachable* and is therefore the right trigger there, while
|
||||||
|
trusting an authority is a separate fact from being able to reach it. The anchor's directory and
|
||||||
|
the command that refreshes the extracted bundles are also one operating system's difference, which
|
||||||
|
is the host's half of the mesh and not the controller's.
|
||||||
|
|
||||||
|
**That it needs a new host resource type.** It does not, today. A file and a service say the whole
|
||||||
|
of it, which the packet filter already proves. The primitive becomes the right answer when a second
|
||||||
|
operating system is in play, and not before.
|
||||||
|
|
||||||
|
## Where it belongs
|
||||||
|
|
||||||
|
A module in the catalogue: it requires `internal-acme-ca`, fetches the root over the mesh's own
|
||||||
|
network, installs it as a trust anchor, refreshes the machine's bundles, and — because being
|
||||||
|
unassigned stops its unit, and stopping the unit is what undoes it — takes both away again.
|
||||||
|
|
||||||
|
The owner is therefore `mesh-catalog`, module `ca-trust`, and nothing in the control plane.
|
||||||
+73
@@ -0,0 +1,73 @@
|
|||||||
|
---
|
||||||
|
status: located
|
||||||
|
opened: 2026-09-29
|
||||||
|
located-in: [mesh-host examples + internal/link, mesh-controller internal/broker]
|
||||||
|
---
|
||||||
|
|
||||||
|
# 146 — the foundation cannot be raised on the bus the mesh runs on
|
||||||
|
|
||||||
|
## What was observed
|
||||||
|
|
||||||
|
Raising a first node in the lab, to check a module against a real mesh, fails before any module is
|
||||||
|
reached. Two separate faults, in the two bundles that exist:
|
||||||
|
|
||||||
|
**The older bundle raises a control plane that cannot start.** It brings up the previous broker,
|
||||||
|
and the control plane it then starts says, once every few seconds, for ever:
|
||||||
|
|
||||||
|
```
|
||||||
|
mesh-controller: this control plane has no MESH_BUS_NATS, so it cannot reach the mesh's bus
|
||||||
|
```
|
||||||
|
|
||||||
|
That is the control plane being right. The mesh moved to one bus
|
||||||
|
([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md)) and the
|
||||||
|
bundle did not. Every bed that raises a foundation raises this one, so every bed is in this state.
|
||||||
|
|
||||||
|
**The newer bundle, written for the new bus, stops one step earlier.** Its certificate step asks a
|
||||||
|
container to make the broker's certificate:
|
||||||
|
|
||||||
|
```
|
||||||
|
docker run --rm --entrypoint sh -v <the broker's tls volume>:/tls <the bus image> \
|
||||||
|
-c "test -f /tls/tls.crt || (openssl req -x509 ... )"
|
||||||
|
...
|
||||||
|
failed bus-certificate: running the action: docker exited 127
|
||||||
|
```
|
||||||
|
|
||||||
|
127 is *command not found*. The bus's image has a shell and no `openssl`; the previous broker's
|
||||||
|
image had both, which is why the step worked when it was written against that one. Substituting the
|
||||||
|
store's image — the only other image the bundle carries — does not help: it has no `openssl`
|
||||||
|
either. So the step as written cannot succeed with anything the bundle names, and the fault is not
|
||||||
|
one image's: **the bundle asks for a certificate to be made by a tool it never says must be there.**
|
||||||
|
|
||||||
|
Measured 2026-09-29 on a fresh lab machine, both bundles, from bare.
|
||||||
|
|
||||||
|
## Why this is here and not a note in the knowledge base
|
||||||
|
|
||||||
|
The mesh's own foundation is the one thing it cannot raise. Nothing reports that: the bundles are
|
||||||
|
files in a repository, nothing applies them but a person raising a node, and the last thing that
|
||||||
|
did was the hand-driven cut-over
|
||||||
|
([ADR 0131](../../02-DECISIONS/0131-everything-on-the-mesh-speaks-to-the-broker-seat.md), whose
|
||||||
|
work was done on the machines rather than from a bundle). So the state where the mesh cannot make
|
||||||
|
another one of itself is reachable, and was reached, without anything saying so.
|
||||||
|
|
||||||
|
It is also load-bearing for everything else: a lab bed proves a claim by raising a mesh, so while
|
||||||
|
this holds, **no bed can run**, and every "checked in the lab" written from now on is a promise
|
||||||
|
against a suite nobody can execute.
|
||||||
|
|
||||||
|
## What would have prevented it
|
||||||
|
|
||||||
|
- **Something raising the foundation on a schedule, from the bundle, as it is written** — the
|
||||||
|
bundle is the mesh's own installer and nothing installs from it. A bed that raises a first node
|
||||||
|
is exactly that check, and it is the bed that cannot run.
|
||||||
|
- **A step naming what it needs.** The certificate step names an image and assumes a program inside
|
||||||
|
it. An action that said which tool it requires would have failed at the declaration rather than
|
||||||
|
at 127 on a machine.
|
||||||
|
|
||||||
|
## Evidence to carry into diagnosis
|
||||||
|
|
||||||
|
- `mesh-host examples/foundation-first-node.lock` — the previous broker, no `MESH_BUS_NATS`.
|
||||||
|
- `mesh-host examples/foundation-first-node-nats.lock` — the new bus; `bus-certificate` and its
|
||||||
|
`verify` both run `openssl` in the bus's image.
|
||||||
|
- The bus image the bundle pins has `sh` and no `openssl`; the store's image likewise.
|
||||||
|
- The lab rewrites a bundle's registry-prefixed third-party references to upstream ones for a
|
||||||
|
machine with an uplink (`test/integration/harness.ts`); the new bundle's bus reference needed
|
||||||
|
that rule added, which is done and is not this issue.
|
||||||
+96
@@ -0,0 +1,96 @@
|
|||||||
|
# Diagnosis
|
||||||
|
|
||||||
|
*2026-09-29, by raising a first node in the lab over and over and writing down each thing it hit.*
|
||||||
|
|
||||||
|
Not one fault. **Four, stacked**, each hidden behind the one before it, and every one of them the
|
||||||
|
same shape: a step that was right while the mesh ran on the previous broker and was never asked a
|
||||||
|
question again after the bus changed. Nothing had raised a foundation since, so nothing said so.
|
||||||
|
|
||||||
|
## 1 — the bundle's bus image is named for a registry that is gone *(fixed)*
|
||||||
|
|
||||||
|
The newer bundle pins `<a lab registry>/nats@…`, which resolves nowhere outside the lab that
|
||||||
|
raised that registry. The lab already rewrites the store's and the previous broker's references to
|
||||||
|
upstream ones for a machine with an uplink; the bus had no such rule because no bed had ever tried
|
||||||
|
to raise this bundle. Added (`mesh-lab test/integration/harness.ts`). The digest is the bundle's
|
||||||
|
own — what the registry served was a copy, so the same digest resolves upstream, and this is a
|
||||||
|
prefix being removed rather than a reference being replaced.
|
||||||
|
|
||||||
|
## 2 — the bus's certificate was made by a tool the bus does not have *(fixed)*
|
||||||
|
|
||||||
|
```
|
||||||
|
failed bus-certificate … docker exited 127
|
||||||
|
```
|
||||||
|
|
||||||
|
The step ran `openssl` inside the broker's image. The previous broker's image carried it; the bus's
|
||||||
|
does not — it is Alpine with a shell and no `openssl` — and neither does any other image the bundle
|
||||||
|
names, so there was nothing to substitute. **The program that needs the certificate now makes it**:
|
||||||
|
`mesh-controller broker certificate --into <dir>`, with `--check` as the step's verify. The
|
||||||
|
controller is already on the machine at that point (the schema step ran it) and needs nothing from
|
||||||
|
the image it writes into. Self-signed, as before and on purpose — a host pins this server's exact
|
||||||
|
certificate ([ADR 0004](../../02-DECISIONS/0004-a-node-and-how-it-joins.md)) and at that moment
|
||||||
|
there is no authority to ask. Idempotent, because a second certificate is one every host that
|
||||||
|
pinned the first no longer believes. It runs `--user 0:0`: the volume is root's, and the control
|
||||||
|
plane's image runs as nobody, which is right for the long-lived server and wrong for a one-shot
|
||||||
|
writing into a fresh volume.
|
||||||
|
|
||||||
|
## 3 — enrolment dialled TLS at a bus that speaks first *(fixed)*
|
||||||
|
|
||||||
|
```
|
||||||
|
mesh-host: cannot reach the broker at …:5671: tls: first record does not look like a TLS handshake
|
||||||
|
```
|
||||||
|
|
||||||
|
Enrolment opened a raw TLS connection to check the pinned certificate before saying anything. NATS
|
||||||
|
speaks its own protocol and upgrades afterwards, so the handshake met a plaintext greeting. The pin
|
||||||
|
was never the problem: the same pinned configuration is handed to the client that presents the
|
||||||
|
token, and the verification runs inside *that* handshake — so what
|
||||||
|
[ADR 0004](../../02-DECISIONS/0004-a-node-and-how-it-joins.md) requires still holds, and holds
|
||||||
|
better, because the one-time secret is sent only after the certificate has been checked. The raw
|
||||||
|
dial is gone from the enrolment path and kept only as what its tests always proved: that a wrong
|
||||||
|
certificate is refused before a byte of application data is sent.
|
||||||
|
|
||||||
|
**Then, immediately behind it:**
|
||||||
|
|
||||||
|
```
|
||||||
|
mesh-host: this token is for the "" bus, and the mesh's bus is nats
|
||||||
|
```
|
||||||
|
|
||||||
|
The enrolment left the transport empty and meant *whatever the mesh runs today*, which was true
|
||||||
|
while two buses existed and became a refusal the moment one did. The host knows which bus the mesh
|
||||||
|
runs; it says so now.
|
||||||
|
|
||||||
|
## 4 — a first node cannot be let onto its own bus *(open, and this is the real one)*
|
||||||
|
|
||||||
|
```
|
||||||
|
mesh-host: cannot reach the bus at …:5671 as anchor: nats: Authorization Violation
|
||||||
|
```
|
||||||
|
|
||||||
|
The bus's user list is a file beside its configuration. The installer carries the first one — the
|
||||||
|
controller's own account at a bootstrap password — and **the controller composes every user after
|
||||||
|
that** (design 25 §6; the controller's own test asserts the carried list matches what it would
|
||||||
|
derive). On the running mesh that composition reaches the bus because the bus is a *module*, with
|
||||||
|
the list delivered to it the way anything is delivered to a module.
|
||||||
|
|
||||||
|
At genesis there is no module. The foundation's bus is raised by the installer, the control plane is
|
||||||
|
given no way to write beside its configuration — it mounts the certificate and nothing else — and so
|
||||||
|
the account a joining node needs cannot come into existence. **The first node cannot join the mesh
|
||||||
|
it just raised.**
|
||||||
|
|
||||||
|
That is not a line to fix in a bundle. It is the open half of the mesh delivering its own components
|
||||||
|
([ADR 0142](../../02-DECISIONS/0142-the-mesh-delivers-its-own-components-as-binaries.md)) and of the
|
||||||
|
bus becoming a module: either the installer's bus is raised as the module the mesh will go on
|
||||||
|
managing, or genesis carries a user list that includes the first node's enrolment and the controller
|
||||||
|
takes over from there. Both are decisions, not patches, and both belong to the genesis step that was
|
||||||
|
deliberately left until last.
|
||||||
|
|
||||||
|
## Where it belongs
|
||||||
|
|
||||||
|
`mesh-host` (the bundle and the enrolment path) and `mesh-controller` (the certificate command, and
|
||||||
|
the composition that cannot reach the bus at genesis). Three of the four are fixed on branches; the
|
||||||
|
fourth is the genesis work.
|
||||||
|
|
||||||
|
## What it cost, for the next person
|
||||||
|
|
||||||
|
Every lab bed still names `foundation-first-node.lock` in its own instructions, and that bundle
|
||||||
|
raises the previous broker with a control plane that refuses to start without `MESH_BUS_NATS`. Until
|
||||||
|
the fourth fault is answered and the two bundles become one, a bed runs with `MESH_LAB_BUNDLE`
|
||||||
|
pointing at the NATS bundle by hand, and stops at the enrolment.
|
||||||
Reference in New Issue
Block a user