The collector bind-mounts one log root, data/logs, and identifies each node by the subdirectory inside it. The second instance wrote to data2/logs, which is not mounted at all, so its logs have never reached the pipeline under any name -- while its metrics and traces flowed normally, making it look like a quiet node rather than an uncollected one. Its own config comment already claimed the directory was "the same dir the compose stack bind-mounts into the collector", so the intent was the single root and only the path was wrong. Both nodes now log under data/logs. The nodestore stays split across data/ and data2/, which is what those directories are for; the logs gain nothing from the split because both sit on the same disk, and lose collection entirely. The installer's log-directory check was wrong in the same way: it verified a path under the host's /var/log/xrpld, which nothing reads -- that path exists only inside the container, where the root is mounted. It now checks the directory the collector actually reads, and the docs no longer ask for host symlinks that have no effect. Also drop the trailing slash from the data ignore rules and add data2. A trailing-slash pattern matches only real directories, so on a host that follows the runbook and symlinks both to a fast disk, neither was ignored -- leaving them permanently untracked in a tree the runbook says should read clean, and one `git add` away from committing a nodestore.
Running two xrpld instances on one host
Templates and an installer for running two nodes side by side, one per storage backend, so NuDB and RocksDB can be compared with everything else equal.
These are committed deliberately. They previously existed only on the host and were lost when that machine was rebuilt, which meant reconstructing the RocksDB node's settings from notes.
What differs between the two
Everything else is identical on purpose — any other divergence would confound the backend comparison.
| instance 1 | instance 2 | |
|---|---|---|
| Unit | xrpld-mainnet |
xrpld-mainnet2 |
| Tracked config | xrpld-telemetry-mainnet.cfg |
xrpld-telemetry-mainnet2.cfg |
| Config the unit runs | xrpld-telemetry-mainnet.host.cfg |
xrpld-telemetry-mainnet2.host.cfg |
service_instance_id |
$NODE1_INSTANCE_ID |
$NODE2_INSTANCE_ID |
| Backend | NuDB | RocksDB |
| rpc / ws-admin / ws-public / peer | 5015 / 6016 / 6015 / 51245 | 5025 / 6026 / 6025 / 51255 |
| Data | data/mainnet |
data2/mainnet |
| Logs | data/logs/$NODE1_INSTANCE_ID/ |
data/logs/$NODE2_INSTANCE_ID/ |
Ports continue the offset-by-ten scheme already in use — devnet on 5005, Mainnet on 5015 — so all three configs can bind on one host.
No host-specific values in git
This repository is public, and an earlier commit already removed a personal home
directory from shipped config. The unit templates therefore carry placeholders,
and the real values live in an untracked .env.devbox:
cp docker/telemetry/.env.devbox.example docker/telemetry/.env.devbox
chmod 600 docker/telemetry/.env.devbox
$EDITOR docker/telemetry/.env.devbox
.env.* is gitignored, so the real file cannot be committed. The installer
refuses to run if the file is not mode 600, and refuses to install a unit that
still contains an unsubstituted placeholder.
Telemetry identity names the machine, so it is not committed
Each node reports a service_instance_id on every metric, span and log line.
It should name the machine, so a dashboard shows which box the data came
from — but a machine name is exactly what a public repository should not carry.
So the tracked configs keep a generic identity and name no host, and the
installer renders each one into a .host.cfg beside it with
NODE1_INSTANCE_ID / NODE2_INSTANCE_ID substituted in. The units run the
rendered copies; *.host.cfg is gitignored. The tracked configs are never
edited, so an update never conflicts and a rebuild loses nothing.
The identity is substituted in two places at once — the service_instance_id
setting and the log directory name — because they must agree, for the reason in
the next section. The installer counts the occurrences it expects to replace and
verifies the result, so a config reshuffle fails loudly instead of yielding a
copy that quietly kept the generic identity: on the dashboards that reads as the
node having disappeared, not as a failed substitution.
Reuse the host's established names. These values are the join key for everything already stored. Renaming a node starts a fresh series and silently breaks continuity with its own history — the old data is still there, under the old name, and no dashboard will show both.
Re-run the installer after changing either the tracked config or .env.devbox;
nothing else regenerates the rendered copies.
Install
sh docker/telemetry/systemd/install-units.sh
sudo systemctl start xrpld-mainnet # wait for tracking/full
sudo systemctl start xrpld-mainnet2
Staggering the starts is a nicety rather than a requirement when the data directories are on fast local storage, but two bootstrapping nodes still contend for the job pool.
Two things that are easy to get wrong
The log directory basename must equal the service_instance_id, and sit in the
one log root. The installer substitutes the id into both the setting and the
path from one value so they cannot drift, but the directory itself still has to
exist under that name. The collector's filelog receiver derives per-node identity
from the log path (include_file_path plus a regex on /xrpld/<id>/debug.log).
Name the directory anything else and that node's logs lose their
service_instance_id label while its metrics keep theirs — so the dashboards'
$node filter matches nothing for logs and reads as "no logs" rather than as a
misconfiguration.
The root is data/logs, which compose mounts into the collector as
/var/log/xrpld. That is a path inside the container, not on the host, so
nothing needs creating in the host's /var/log. Both nodes log under
data/logs, including the one whose nodestore is under data2/: a log directory
outside the mounted root is never read at all, and since both data directories
sit on the same disk, splitting the logs would buy no I/O separation to pay for
the lost collection.
Put the data directories on fast local storage. The configs use repo-relative paths so they stay portable; point them at the fast disk with symlinks:
mkdir -p "$DATA_MOUNT"/xrpld/data "$DATA_MOUNT"/xrpld/data2
ln -sfn "$DATA_MOUNT"/xrpld/data docker/telemetry/data
ln -sfn "$DATA_MOUNT"/xrpld/data2 docker/telemetry/data2
Measured on an i4i instance: moving the nodestore off EBS onto the instance-store
NVMe took time-to-full from 2234 s to 681 s (3.3x), because NuDB's roughly
tenfold key-file write amplification saturated EBS while the local NVMe sat near
idle.
If that storage is an instance store, note it is volatile — contents survive
a reboot but are lost on a stop/start. Both units carry RequiresMountsFor, so a
missing mount fails the unit loudly instead of silently filling the root
filesystem.
Telemetry
Both instances export OTLP to the collector on localhost:4318. Bring the
collector up with both compose files:
docker compose -f docker/telemetry/docker-compose.yml \
-f docker/telemetry/docker-compose.grafanacloud.yaml up -d --force-recreate
The base file alone yields a collector with only local exporters, so telemetry
silently never leaves the host and the Cloud dashboards read empty with no error
anywhere. --force-recreate is needed after a config change, or Compose reuses
the running container with its old config.
Grafana Cloud credentials go in .env.grafanacloud, also gitignored, also mode
600.