The swarm collector could never verify its OIDC issuer, so it exited at startup on every boot and the hive tier dropped every metric. `issuer_ca_path` loads only the FIRST certificate in the file it names. The bundle assembled for this container is `system CAs ++ hive anchors`, so the swarm CA sits ~123rd and was never in the pool: the extension got whichever public CA sorts first, could verify nothing of ours, and failed `x509: certificate signed by unknown authority` — with 125 valid certificates in the file. Leaving the option unset makes the extension use the process trust store, which `trustBundle` already populates via `SSL_CERT_FILE`, and that consumer reads every certificate regardless of order. One file, two consumers, opposite parsing; the fix is to stop naming it twice rather than to reorder the bundle. Measured with the deployed binary against the deployed config, varying only the CA source: root-only OK, root-first OK, root-last FAILS, root-second FAILS, and unset-with-SSL_CERT_FILE OK against a control that correctly fails when the anchor is absent.
192 lines
8.9 KiB
Nix
192 lines
8.9 KiB
Nix
# Shared hive-CA trust plumbing for containers that must trust the
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# self-signed gateway/forge leaf for *outbound* TLS (webhook delivery,
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# CI artifact upload, …). The hive CA is generated at runtime by the host
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# `hive-tls-ca.service` (see `hive-tls.nix`) — it can't be baked into a
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# derivation — so each such container binds the public `ca.pem` read-only
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# and orders its `container@<name>` unit after `hive-tls-ca.service` so the
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# bind source exists before nspawn sets the mount up.
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#
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# `bindMount` + `containerOrdering` are the language-agnostic half. The
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# *consumption* differs per runtime: an additive variable (Node's
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# `NODE_EXTRA_CA_CERTS`, hive-ci) points straight at `caContainerPath` from
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# the call site, while a *replacing* one (Go's `SSL_CERT_FILE`, rustls) needs
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# the system-CAs+hive-CA concat that `trustBundle` below does for it.
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#
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# Pure function — NOT a NixOS module (don't add it to the host-modules
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# aggregator). Call it from a module's `let`:
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#
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# caTrust = import ./lib/hive-ca-trust.nix { inherit lib tlsCfg gatewayCfg; };
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# # then, in the container:
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# # bindMounts = { … } // caTrust.bindMount;
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# # systemd.services."container@hive-ci" = lib.mkMerge [ caTrust.containerOrdering … ];
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# # environment.NODE_EXTRA_CA_CERTS = caTrust.caContainerPath; # consumption, per-caller
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#
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# `tlsCfg` = config.services.hyperhive.tls
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# `gatewayCfg` = config.services.hyperhive.gateway
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{
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lib,
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tlsCfg,
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gatewayCfg,
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}:
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let
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# `gateway.useSelfSigned` is the single source of truth for the
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# self-signed condition — no duplicated derivation.
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useSelfSigned = gatewayCfg.useSelfSigned;
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# The bundle, not `ca.pem`: the hive CA is an intermediate under the
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# swarm root, and openssl (which is what both consumers below sit on —
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# Node's `NODE_EXTRA_CA_CERTS`, Go's `SSL_CERT_FILE`) will not end a
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# chain at a trusted cert that isn't self-signed. `hive-tls.nix` writes
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# the bundle next to the CA and explains the split.
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caHostPath = "${tlsCfg.stateDir}/trust-bundle.pem";
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caContainerPath = "/run/hive-ca/trust-bundle.pem";
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# One definition, used by `trustBundle` to WRITE the bundle and published
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# below so a caller can NAME it. Two copies of this path would be two
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# things to keep in step, and the one that drifts is the reader.
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bundleDirFor = name: "/run/${name}-ca";
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bundlePathFor = name: "${bundleDirFor name}/trust-bundle.pem";
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in
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{
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inherit useSelfSigned caContainerPath;
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# Where `trustBundle` below puts the assembled bundle, for the callers
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# that must NAME it rather than just have it exported. `SSL_CERT_FILE` is
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# set for you and needs no path here; a consumer that takes its own CA
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# argument (a client's `--cacert`) does, and the alternative is copying
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# `/run/<name>-ca/…` to the call site. That copy breaks silently: the
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# bundle keeps being written, the consumer keeps reading a path that no
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# longer exists, and the failure surfaces as a TLS error naming the peer
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# rather than the file.
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#
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# ⛔ **Do not hand this path to a consumer that reads only ONE
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# certificate from it.** This comment used to offer an OIDC verifier's
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# `issuer_ca_path` as the motivating example; that is exactly what took
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# the swarm collector down for forty minutes once. The bundle is
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# `system CAs ++ hive anchors`, so the anchor is ~123rd, and a
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# first-certificate-only reader gets whichever public CA sorts first and
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# can verify nothing of ours — with a full, valid, 125-certificate file
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# on disk and no check able to see it.
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#
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# 🔑 The general trust store (`SSL_CERT_FILE`, set by `trustBundle`)
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# reads every certificate and is order-independent, which is why a
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# consumer that can use the process trust store should simply be left to
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# do so. Before naming this path, check how that consumer parses it —
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# the requirement is a property of the *reader*, and nothing here can
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# enforce it.
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inherit bundlePathFor;
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# Fold into the container's `bindMounts` via `//`. Binds ONLY the public
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# CA cert (never the `hive-tls` state dir — it holds the CA + leaf private
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# keys), read-only. Empty when not self-signed, so the whole trust path
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# drops out cleanly.
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bindMount = lib.optionalAttrs useSelfSigned {
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${caContainerPath} = {
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hostPath = caHostPath;
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isReadOnly = true;
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};
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};
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# Fold into the caller's `container@<name>` unit (via `lib.mkMerge` if the
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# caller adds its own keys, e.g. hive-ci's `TimeoutStartSec`). Orders the
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# container after the host `hive-tls-ca.service` so the bind source exists
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# before nspawn sets the mount up — a condition-skipped/late CA would
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# otherwise fail the container start.
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containerOrdering = lib.mkIf useSelfSigned {
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after = [ "hive-tls-ca.service" ];
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requires = [ "hive-tls-ca.service" ];
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};
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# System CAs + hive CA in one bundle, with `SSL_CERT_FILE` set on each
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# consumer — for runtimes whose trust variable *replaces* the store (Go,
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# rustls-native-certs). An additive one (Node's `NODE_EXTRA_CA_CERTS`,
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# hive-ci) needs no bundle and should not use this.
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#
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# imports = [ (caTrust.trustBundle { inherit pkgs; name = "swarm-nats";
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# consumers = [ "swarm-nats-auth" ]; }) ];
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#
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# Three constraints, each earned:
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# - `requires` on the CONSUMER: `before` orders but does not gate, so a
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# failed assembly otherwise leaves it running and trusting *nothing*.
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# - assemble to a temp path, verify, then move: `cat` of an empty bind
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# exits 0, and a partial bundle must never appear under the final name.
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# - `consumers` are BARE unit names — they are `systemd.services` keys
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# (no suffix) *and* go in `before`/`requires` (suffixed). Reversed, the
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# edge names a unit that does not exist and systemd orders nothing.
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#
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# Returns a module, not bare services: a caller already writing
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# `systemd.services.<consumer>` cannot also write `systemd.services`.
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#
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# The two host-consumer flags are documented at their use sites below.
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trustBundle =
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{
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name,
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consumers,
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pkgs,
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# A HOST systemd service rather than something inside a container.
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# `caContainerPath` is a bind mount that only exists in a container, so
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# a host consumer reads the host copy — which means waiting for the
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# unit that writes it. In a container that wait is the container's own
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# (`containerOrdering`); here nothing carries it. One flag, because a
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# host source without the ordering is a race.
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hostUnit ? false,
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# Whether the consumer exists at all. A container caller imports this
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# into the CONTAINER's module set, so it vanishes with the container. A
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# host caller imports it at the host's top level, where `imports` is
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# unconditional — without this, a hive with the consumer off still gets
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# a bundle oneshot *and* a `systemd.services.<consumer>` conjured by
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# `genAttrs`, holding an `SSL_CERT_FILE` and no `ExecStart`.
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enable ? true,
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}:
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let
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dir = bundleDirFor name;
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bundlePath = bundlePathFor name;
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unit = "${name}-ca-bundle";
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source = if hostUnit then caHostPath else caContainerPath;
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in
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{
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_file = "hive-ca-trust.nix#trustBundle:${name}";
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config.systemd.services = lib.optionalAttrs (useSelfSigned && enable) (
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{
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${unit} = {
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description = "assemble ${name} TLS trust bundle (system CAs + hive CA)";
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wantedBy = [ "multi-user.target" ];
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before = map (c: "${c}.service") consumers;
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# Only for a host consumer: the CA file is written at runtime by
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# `hive-tls-ca.service`, and reading it directly means waiting
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# for it. A container consumer reads a bind mount instead, and
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# its `container@` unit carries the equivalent wait.
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after = lib.optionals hostUnit [ "hive-tls-ca.service" ];
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requires = lib.optionals hostUnit [ "hive-tls-ca.service" ];
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serviceConfig = {
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Type = "oneshot";
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RemainAfterExit = true;
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SyslogIdentifier = unit;
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};
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path = [
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pkgs.coreutils
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pkgs.gnugrep
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];
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script = ''
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set -euo pipefail
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install -d -m 0755 ${dir}
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tmp=${bundlePath}.tmp
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cat /etc/ssl/certs/ca-certificates.crt ${source} > "$tmp"
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# `cat` of an empty or missing-but-mounted source exits 0, so the
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# result has to be inspected rather than the command trusted.
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if ! grep -q 'BEGIN CERTIFICATE' "$tmp"; then
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echo "${unit}: assembled bundle contains no certificate" >&2
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exit 1
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fi
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chmod 0644 "$tmp"
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mv "$tmp" ${bundlePath}
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'';
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};
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}
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// lib.genAttrs consumers (_: {
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requires = [ "${unit}.service" ];
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after = [ "${unit}.service" ];
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environment.SSL_CERT_FILE = bundlePath;
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})
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);
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};
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}
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