`services.hyperhive.enable` and `services.hyperhive.c0re.enable` are gone. One switch, `services.hyperhive.deploy.hive-controller.enable` (default false, as the old toggle was), now gates hive-c0re and hive-priv. Both old paths are `mkRenamedOptionModule` shims in deploy.nix, so a host config that still sets either evaluates as before and gets a rename warning. Every other read of the old toggle is resolved, including the 29 made through the `hyperhiveCfg`/`hiveCfg` aliases: - Dropped: each swarm service and its glue keeps only its own deploy toggle (authelia, bao and its PKI glue, grafana, victorialogs, victoriametrics, the secret publisher, swarm-ca, the OIDC client rows, the controller/nats/matrix-ctl/publisher/services-issuer identities), the forge, and the `domain` deprecation warning. - To deploy.hive-controller.enable: the queue-agent credential reader and its assertion, which feed hive-c0re and write under its state dir, plus their policy-order entry; the network identity assertions; hive-tls's two writes into hive-c0re's environment. - hive-tls runs where the gateway runs self-signed (`gateway.enable && useSelfSigned`), not on every host. - The matrix appservice-token reader and its assertion stay on `deploy.matrix.enable` plus their client-identity checks. They read deploy.matrix's token file and registration script; their deploy.bao inputs are the client-half options a hive sets to read a store it does not run, so gating on deploy.bao.enable would drop the tested remote-reader case. - The `hiveName` assertion moves from hive-network.nix to hyperhive.nix and fires wherever the hive, the store or the homeserver runs: each turns the name into an identifier with no fallback. On a host with `deploy.allSwarmServices` and no hive, the documented services-host recipe, authelia, bao, grafana, victorialogs, victoriametrics, the OIDC client rows and the hive CA now render; before, the old toggle being off left them out. Refs #4500
167 lines
6.9 KiB
Nix
167 lines
6.9 KiB
Nix
# The swarm root CA: the anchor a whole swarm shares, and the issuer of
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# each hive's own CA (which is where it gets used — see ./hive-tls.nix).
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#
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# One root rather than per-peer pinning, because cross-hive trust is then
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# O(1): trust the root once and every present *and future* peer validates,
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# instead of every hive having to name every other one.
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#
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# Two provisioning modes share ONE structure — what differs is who puts
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# the artifacts on disk, never what the artifacts are. Which mode does
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# what, and what moving between them costs:
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# `docs/swarm/ca.md::Two provisioning modes, one structure`.
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#
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# ⚠️ Root key AND root cert are runtime files, never nix options. The key
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# for the obvious reason; the cert as a consequence, and that one costs
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# something real — nothing whose trust store is built at build time can
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# name it: `docs/swarm/ca.md::Distributing the root`.
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#
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# ⚠️ This root no longer issues the swarm's SERVICE certificates, and the
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# `swarm-services-ca` sub-CA that used to sit under it is gone rather than
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# moved. Those come out of the secret store's own `pki` mount now, anchored
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# on a root generated inside it (./swarm-bao.nix), and ./hive-tls.nix asks
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# for them over the network instead of signing them here. What is left here
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# is one job: the anchor each hive's own CA is issued under.
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{
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lib,
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config,
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pkgs,
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...
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}:
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let
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cfg = config.services.hyperhive.swarm.ca;
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hyperhiveCfg = config.services.hyperhive;
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# The subject CN is a label for a human reading a chain, not an
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# identity anything authenticates against. Fall through swarm name →
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# hive domain → a constant so a hive that has set neither still
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# evaluates; a missing `domain` is reported by its own assertion in
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# hive-network.nix, and shouldn't also surface here as a null.
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swarmLabel =
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if hyperhiveCfg.swarm.name != null then
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hyperhiveCfg.swarm.name
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else if hyperhiveCfg.domain != null then
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hyperhiveCfg.domain
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else
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"hyperhive";
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in
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{
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options.services.hyperhive.swarm.ca = {
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autoConfigure = lib.mkOption {
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type = lib.types.bool;
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default = false;
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example = true;
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description = ''
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Run the whole swarm CA on this one host: generate the swarm
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root when it is missing, and issue this hive's CA under it.
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`services.hyperhive.deploy.singleHostSwarm` turns this on as
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part of the all-on-one-box mode. Set it here directly to run the
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CA on a host that is not otherwise all-local.
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**Off by default, deliberately.** A swarm's services and its
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hives can live on different hosts, and this host has no way to
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tell whether it is the one holding the root — so the swarm CA
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is something an operator sets up, not something a host decides
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it is. Turn this on for an all-on-one-host deployment (dev
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boxes, single-hive swarms) and get the hierarchy for free.
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With it off, both artifacts are operator-provided: the root
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under `stateDir`, and this hive's CA under
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`services.hyperhive.deploy.hive-controller.tls.stateDir`. A hive
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given neither keeps the self-signed CA it has always had — it
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simply isn't part of a swarm's trust hierarchy, which is the
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correct outcome for a hive nobody has federated yet.
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'';
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};
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stateDir = lib.mkOption {
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type = lib.types.str;
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default = "/var/lib/swarm-ca";
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description = ''
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Host directory holding the swarm root CA: `root.pem` (the
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anchor, safe to distribute — copy it to this same path on every
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other host in the swarm) and `root-key.pem`
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(0600, the one file that must never reach the nix store or
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another host). The directory itself is 0700: nothing reads
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out of it but the hive CA issuance in `hive-tls.nix`.
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Moving the swarm CA to its own host is a matter of moving this
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directory and setting `autoConfigure = false` here.
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'';
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};
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validityDays = lib.mkOption {
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type = lib.types.int;
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default = 10950;
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description = ''
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Validity window of the swarm root CA in days (default ~30y).
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Deliberately longer than `services.hyperhive.deploy.hive-controller.tls.caValidityDays`:
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the root must outlive the hive CAs it issues, or those chains
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expire out from under hives that are still perfectly happy with
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their own intermediate. Rotating a root is the one operation in
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this system with no partial-failure mode — it invalidates every
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peer at once, paced by the slowest peer's rebuild — so it is
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never automatic and this window is meant to be uneventful.
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'';
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};
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};
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config = lib.mkIf cfg.autoConfigure {
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# A CA that fails to issue is invisible until something makes a TLS call
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# hours later, so this oneshot is worth more than most services.
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services.hyperhive.swarm.otel.journaldUnits = [ "swarm-ca" ];
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systemd.services.swarm-ca = {
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description = "Generate the swarm root CA when absent";
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wantedBy = [ "multi-user.target" ];
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path = [ pkgs.openssl ];
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serviceConfig = {
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Type = "oneshot";
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RemainAfterExit = true;
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UMask = "0077";
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# Pin the journal identity (else it's the `script` store-path wrapper).
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SyslogIdentifier = "swarm-ca";
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};
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script = ''
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set -euo pipefail
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d=${lib.escapeShellArg cfg.stateDir}
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install -d -m 0700 "$d"
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root="$d/root.pem"
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rootk="$d/root-key.pem"
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# Note the asymmetry with the hive CA in hive-tls.nix, which
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# regenerates itself once expired: a root is never replaced
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# automatically, not even an expired one. Consumers hold this
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# cert, so replacing it is a swarm-wide flag day that wants an
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# operator running it deliberately, with both roots trusted
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# across the overlap.
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if [ -s "$root" ] && [ -s "$rootk" ]; then
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echo "swarm root CA already present at $root — leaving it alone"
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exit 0
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fi
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# Half a root is not a root. Generating a fresh key beside an
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# already-distributed cert (or the reverse) leaves every
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# consumer trusting an anchor that no longer signs anything —
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# and it would look like it worked.
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if [ -e "$root" ] || [ -e "$rootk" ]; then
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echo "swarm root CA half-provisioned ($root / $rootk) — refusing to generate over it" >&2
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exit 1
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fi
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echo "generating swarm root CA at $root"
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# pathlen:1 — the root signs hive CAs, which sign leaves. One
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# intermediate below the root and no deeper.
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openssl req -x509 -newkey rsa:4096 -nodes -sha256 \
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-days ${toString cfg.validityDays} \
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-keyout "$rootk" -out "$root" \
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-subj "/CN=swarm-ca ${swarmLabel}" \
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-addext "basicConstraints=critical,CA:TRUE,pathlen:1" \
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-addext "keyUsage=critical,keyCertSign,cRLSign"
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chmod 0600 "$rootk"
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chmod 0644 "$root"
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'';
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};
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};
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}
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