Four units read one path each out of the store, and all four logged in
holding `deploy.bao.clientCertFile` — the hive's own leaf. Bao identifies
a principal by the subject of the certificate it presents, so four
readers behind one certificate were ONE principal, and the only grant
expressible was the union of what the four need: read on
`swarm/agents/*`, `swarm/hives/<hive>/*` and `swarm/services/*`. The unit
fetching Grafana's OIDC client secret could fetch every agent credential
in the swarm; the one fetching this hive's matrix token could fetch
Grafana's. Least privilege was not misconfigured here, it was
unrepresentable.
Each now holds a leaf, a cert-auth role and a policy of its own, and each
policy is the single `secret/data/…` path that unit's own script names —
spelled to the leaf, not to a prefix, the way matrix-ctl's already is.
Following the four exemplars in-tree rather than building a mechanism:
`signLeaf` mints the leaves, `swarm-bao.nix` writes the roles from the
bootstrap token, the consumers name their own pair.
Two of the four are written PER HIVE and two are not, which is the shape
of the paths rather than a preference. A matrix appservice token and a
queue credential live under `swarm/hives/<name>/` and every hive runs a
reader for its own, so one role for all of them would have to be granted
`hives/*` — letting one hive read another's, a reach no hive has today.
An OIDC client secret lives under `swarm/services/<client-id>/` and a
swarm registers each exactly once, so one role each is enough. The
per-hive subjects are `<prefix>-<hive>` and swarm.nix reserves every
composed spelling as a hive name, so a hive cannot be named into another
hive's role.
The shared leaf stays: hive-c0re still passes it into its container, the
`bao` CLI wrapper still defaults to it, and the three
`glue-*-bao-identity.nix` files derive the PKI directory from it.
module-eval-bao-grants gains a negative arm per principal — each pins the
three stanzas the hive's leaf carried and the two wildcards a later
widening would reach for, so a policy that grows fails here rather than
in a store. Plus the consuming side: repointing a unit back at the hive's
leaf would evaluate, deploy and log in, and silently restore the union.
A hive that reads a store on another machine now places one leaf per
principal instead of one shared by four. That cost is the point, and
docs/swarm/secrets.md lists the pairs.
Review response on #4620: not having SSO is not a supported
deployment, so the type should not permit it, and the docs paragraph
explaining why SSO is always present is redundant once the type says
so.
- swarm.authelia.url drops types.nullOr.
- Every consumer's null-arm is gone: two option defaults
(swarm-controller's and swarm's own statusPublish.tokenEndpoint)
that produced an empty/null placeholder when the URL was null now
unconditionally compute the real derived URL. Five now-dead
"assertion = ... != null" guards (swarm-authelia's bridge,
swarm-grafana, swarm-otel, swarm-nats, hive-forge, hive-matrix) are
removed as unreachable — in every case the same URL was already
interpolated unconditionally a few lines below the guard.
- grafanaNoSso, the module-eval fixture whose sole purpose was
exercising the now-unsupported no-IdP refusal, is removed along
with its dedicated test case; swarm.authelia.url = null is a type
error now, not a value that reaches that assertion.
- docs/swarm/services.md: cut the clause about setting the option to
null and the sentence explaining why the URL is co-location-
independent — both redundant now that the type enforces it.
`swarm.authelia.url` defaulted to `https://<domain>` only when this host
ran the container, and to `null` otherwise — so the address a client is
given was a statement about co-location rather than about the swarm. A
swarm has one SSO provider; every hive addresses the same name and
resolution decides which address that reaches, exactly as
`swarm.otel.domain` already works.
The option stays nullable: "this swarm has no IdP" is still expressible,
it is just now something an operator states rather than something not
running the container produces. The Grafana fixture that exercised the
no-IdP refusal says it explicitly.
Closes#4536
Grafana's log-level buttons filter on a field called `level`; no row in
the store has one. The store's name for it is `severity_text`, chosen by
VictoriaLogs' OTLP ingester rather than by us — v1.52.0's
`app/vlinsert/opentelemetry/pb.go` writes it unconditionally and the
ingest parameters have no `_level_field` to rename it with. So the
mapping is made on the reader: the VictoriaLogs datasource, which was
provisioned with no `jsonData` at all, now carries a `logLevelRules`
entry per severity the journald parser can emit.
`logLevelRules` is the datasource plugin's only level-related jsonData
key — there is no field-name setting and no OpenTelemetry preset to
switch on. It is read off `instanceSettings.jsonData` in the plugin's
`datasource.ts` and typed in its `configuration/LogLevelRules/types.ts`,
both recovered from the sourcemap shipped in the pinned artifact
(`grafanaPlugins.victoriametrics-logs-datasource` 0.26.3). Each enabled
rule appends an `OR severity_text:="INFO"`-shaped term to the query a
level button emits, next to the `level:…` term that matches nothing.
A wrong rule here fails silently: Grafana provisions unknown jsonData
without complaint and the buttons go on returning zero rows. The three
ways to get one wrong — a non-literal `enabled`, a non-canonical `level`
spelling, a value that is not the stored text — are recorded at the
binding, and a module-eval arm pins them along with the real failure
mode, a severity added to `nix/journald-severity.nix` and not here.
`Unspecified` is left unmapped on purpose: it is the store's own
rendering of an absent severity and the thing the logs dashboard's "no
severity" panel counts.
Refs #4560
The direction is the part a reviewer cannot check by looking, so it is
asserted at both ends of the table and in both tiers' groups: an inverted
mapping still maps every value to something, and a case that only asks
whether a severity parser exists passes on the exact defect. The reader
that turns a rendered operator list back into a PRIORITY -> name function
lives in lib.nix, since both tiers need it.
The panel is asserted on its query rather than its title, because a panel
that keeps the title and loses the expression renders an empty graph that
looks exactly like zero prioless lines.
The single module-eval derivation forced ~62 full nixosSystem
fixtures live at once to compute its cases list: 10.6GB peak RSS /
5m25s to evaluate, by far the dominant cost in nix flake check.
Splits it into 21 independent checks.module-eval-* derivations
(1-7 fixtures each) sharing builders/helpers via module-eval/lib.nix,
so no single derivation needs more than a handful of fixtures live
at once. A few cases spanning two clusters carry a small duplicated
fixture rather than threading shared state through lib.nix.