| Filename | Latest commit message | Latest commit date |
|---|---|---|
Review catch: `anyhow::Error`'s Display special-cases `f.alternate()` to
walk the source chain; thiserror's derive does not, so `{e:#}` and `{e}`
render identically for the new error type. Every call site that held an
`anyhow::Error`, formatted it with `{:#}`, and now holds this crate's
error kept compiling, kept looking right, and silently dropped the cause.
`chain()` was written for exactly this and then left private, applied only
to the auth callback I happened to be editing. Its own doc comment argues
that dropping the source chain is wrong, which made it the one thing in
the PR that should not have had a scope of one.
The controller's "swarm queue unreachable" warning is the site this fixes
here; the stacked PR fixes the two boot-warning banners, which matter more
still — one-shot, no retry, and they leak until restart.
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| .. | ||
| src | ||
| Cargo.toml | ||
| README.md | ||
swarm-queue-client
Connecting to the swarm message queue as an authenticated client. Shared by every process that participates: the swarm controller reads hive status out of the queue, a hive publishes its own status into it.
Why a crate and not a module per binary
The connect is identical for every participant — mint an authelia token,
present it at CONNECT for the auth_callout responder to introspect, let
async-nats re-run the callback on each connection attempt. Only the use
differs.
Two copies of that would be two copies of credential handling, and a
token-refresh fix would have to be found twice. The same reasoning already put
hive-sock-client in its own crate rather than in each daemon that speaks to a
unix socket.
The two properties that constrain the code
A token expires. Authelia issues client_credentials access tokens with
expires_in: 3599. Authentication happens at CONNECT, so a long-lived
connection is fine — but a reconnect an hour later needs a token minted an
hour later.
The refresh therefore lives in the auth callback, not in a timer.
async-nats invokes it per connection attempt, so there is no window in which
the client holds a token it minted for a previous connection. The alternative —
mint once, own the reconnect loop — fails in the way this subsystem exists to
prevent: the process keeps serving while its data quietly stops moving, and
nothing says so until someone reads a dashboard.
Configuration
QueueConfig::from_env(prefix) reads <prefix>_NATS_URL,
<prefix>_OIDC_TOKEN_ENDPOINT, <prefix>_OIDC_CLIENT_ID and
<prefix>_OIDC_CLIENT_SECRET_FILE.
The prefix is a parameter because the variables belong to the consuming unit — a NixOS module sets them alongside its other options. What is shared is the rule, not the spelling: all four together or none at all. A half-set environment is a hard error, because the failure it would otherwise produce is the expensive kind — the process comes up "fine", never connects, and the data it was supposed to move silently stops.
The client secret is a path, not a value: putting it in the environment
would publish it to anything that can read /proc/<pid>/environ. It is read
per token request rather than cached, so a rotation the operator believes took
effect actually did.
What this crate does not do
It ends at a connected client. No jetstream/kv feature is enabled here —
what a consumer does with the connection is its own business, and its
Cargo.toml is where that requirement should be visible.