28 KiB
Felis Operations Guide
What a Felis host needs, how big it should be, how to take Felis off it again, and where the disaster-recovery procedures live. Fault-finding is in troubleshooting.md; this document refers to its sections as §N.
Evidence tags follow troubleshooting.md: [VM-VERIFIED] was run on a real host,
[CI] runs end to end on every push to main (.github/workflows/e2e.yml),
[GO-TESTED] / [SH-TESTED] is covered by go test or the shell tests under
deploy/, [CODE-ONLY] is what the code does and has not been run end to end.
1. Supported hosts
deploy/bootstrap.sh provisions a single node. It needs systemd, root, and one of the
package managers below; everything else (Docker, k3s, PostgreSQL, the JRE, cloudflared)
it installs.
| OS family | Package manager | Architectures | Status |
|---|---|---|---|
| CentOS Stream 9 (firewalld active, PostgreSQL 13) | dnf | aarch64 | [VM-VERIFIED] install, same-version rerun, upgrade, uninstall and reinstall |
| Ubuntu 24.04 LTS | apt | x86_64 | [CI] fresh install, same-commit rerun, and upgrade from the newest release to the pushed commit |
| RHEL / Rocky / Alma 9, Fedora | dnf | x86_64, aarch64 | [CODE-ONLY] same code path as CentOS Stream |
| Debian 12, other Ubuntu releases | apt | x86_64, aarch64 | [CODE-ONLY] |
| openSUSE Leap / Tumbleweed | zypper | x86_64, aarch64 | [CODE-ONLY] |
| Arch Linux | pacman | x86_64, aarch64 | [CODE-ONLY] |
Pinned component versions (a fresh install gets exactly these; an installed k3s or cloudflared is left as it is, see §4):
| Component | Version | Where it is pinned |
|---|---|---|
| k3s | v1.36.4+k3s1 | FELIS_K3S_VERSION in bootstrap.sh |
| cloudflared | 2026.9.1 | FELIS_CLOUDFLARED_VERSION, sha256 per architecture |
| Temurin JRE (Velocity) | 25, patch build pinned | FELIS_JRE_VERSION, sha256 per architecture |
| Go (nano builds) | 1.26.8 | GO_PINNED_VERSION, sha256 per architecture |
| Minecraft / Limbo / Paper / Velocity / LuckPerms | deploy/game-stack.lock |
§15b |
| PostgreSQL | the distribution's package | 13 and 18 are exercised by the pgint CI job |
32-bit hosts are not supported: there is no k3s, JRE or Go build the installer will fetch for them.
Two things the host must keep for as long as the install lives:
- Its address. The install is bound to the IPv4 address it was made on (the
database connection string,
pg_hba.conf, the network policies, the panel certificate and the default nip.io domain all carry it). Give the host a static address or a DHCP reservation before installing; the installer warns when the address is a lease, and the watchdog reportshost-addresswhen the host loses it (troubleshooting §13c). The k3s node name is pinned at install time, so a hostname change is harmless. - A synchronized clock. The installer turns NTP on (chrony where nothing else can)
and the watchdog reports a clock that stays unsynchronized. Allow outbound UDP 123,
or set
FELIS_MANAGE_TIME_SYNC=0on a host whose clock is kept another way.
The installer also makes the system journal persistent (capped at
FELIS_JOURNAL_MAX_USE, default 1G; FELIS_MANAGE_JOURNAL=0 skips it) and writes the
admin kubeconfig /etc/rancher/k3s/k3s.yaml root-only: run sudo k3s kubectl.
One node is the whole supported shape. A world volume is a ReadWriteOnce claim on the
node's local-path storage, so a game server's pod is pinned to the node that first
scheduled it and cannot move when that node fails; the operator and felis-api each run
as a single replica without leader election, so an upgrade or a node restart pauses
wakes and stops until their pod is back. Joining k3s agents to the cluster is untested
and gains no failover. A multi-node shape would need, at least, storage that can follow a
pod to another node and leader election in felis-operator (controller-runtime's
LeaderElection) so a second replica can stand by.
While felis-api restarts
An installer rerun that changes felis-api, a node restart or a crashed pod takes the API
away until its new pod is ready: about 12 s on the reference VM (kubectl rollout restart to Available). Its Deployment keeps one replica with the Recreate strategy, so
the old pod is gone before the new one starts. Two pods at once would be wrong for
felis-api: the uploads volume is ReadWriteOnce, a chunked upload is serialized inside the
process, and the build reconciler, restore settler, registry pruner, upload reapers and
audit retention run in-process without leader election, so each would run twice. During
the window:
- Players already on a server stay there; game servers keep running.
- A player leaving the login gate or joining a server by its address is admitted when felis-api confirmed their link within the last 10 minutes; anyone else is told login verification is temporarily unavailable.
- The login gate retries a new login for up to 60 s and tells the player it is retrying, so a restart shorter than that only delays the login.
- Wakes, stops,
/linkand the panel wait for the API. - A Velocity restart in the window routes on
/opt/felis/velocity/plugins/felis-link/last-servers.json, the last server list the API answered with, until a refresh succeeds (every 15 s).
A longer outage reads like this in the logs [VM-VERIFIED]. The drill scaled felis-api to 0 for about 8 minutes on the reference VM.
- The proxy logged
server list refresh failed ... keeping current registrations11 s in, thenstill failing: 22 failed attempts over 304 sat the 5-minute mark. - The watchdog found
deployment/felis-apicritical on its first run after the scale. It raised the alert on the first run past 5 minutes, at about 7 minutes; with no[smtp]that is logged only (journalctl -u felis-watchdog). - The proxy logged
server list refresh recovered after 32 failed attempts over 469 sas soon as the new pod was Available.
2. Sizing
What the platform itself uses
Measured on the verification host (4 vCPU, 5.5 GB RAM, 6 GB swap, CentOS Stream 9 aarch64) with the control plane, the login and lobby system servers and one idle Paper server running [VM-VERIFIED]:
| Process | Resident memory |
|---|---|
| k3s (server, kubelet, containerd) | ~1.1 GB |
Velocity (-Xms512M -Xmx1G, heap pre-touched) |
~0.73 GB |
| lobby (Paper, pod limit 1 GiB) | ~0.7–0.85 GB |
| login (Limbo, pod limit 512 MiB) | ~0.16 GB |
| felis-api, felis-operator, registry gate | ~50 MB each |
| PostgreSQL | ~30 MB plus page cache |
| Total in use | ~3.4 GB |
Every game server adds the memory its owner gave it: the pod's limit equals its request, and the JVM heap is derived from it (§1a). Quotas cap it per user (panel → 管理 → 配额).
The installer's own peak is the image builds (Docker plus a Gradle container); it stops
Docker afterwards so that memory goes back to the servers. On a host under 2 GB of RAM
without swap it adds a 2 GiB /swapfile.
Recommendations
| Concurrent players | Game servers running | CPU | RAM | FELIS_VELOCITY_XMX |
|---|---|---|---|---|
| up to 20 | 1–2 small | 2 vCPU | 4 GB + 2 GB swap | 1G (default) |
| up to 100 | 3–5 | 4 vCPU | 8–16 GB | 1G |
| up to 300 | 5–10 | 8 vCPU | 16–32 GB | 2G |
| 300+ | more | 8+ vCPU | 32 GB+ | 3G–4G |
The player-count rows are planning figures, not measurements: a Minecraft server's cost
depends mostly on what its players do (view distance, redstone, mods). Size RAM as the
platform's ~3.5 GB plus the sum of the servers you expect to run at once, then add a
quarter for the page cache and PostgreSQL. Velocity itself needs little per player; raise
its heap when journalctl -u felis-velocity shows long GC pauses or OutOfMemoryError.
FELIS_VELOCITY_XMX (default 1G, at least 256M, written <n>M or <n>G) is read on
every installer run. The initial heap stays at 512M, or equals the maximum when that is
lower. Changing it rewrites the unit, and the rerun restarts the proxy, which disconnects
everyone online; do it in a quiet hour [VM-VERIFIED]:
curl -fsSL <raw-url>/deploy/bootstrap.sh | sudo FELIS_VELOCITY_XMX=2G bash
Disk
| What | Where | Size |
|---|---|---|
| Worlds | one volume per server under /var/lib/rancher/k3s/storage |
what the world grows to |
| World archives | the felis-backups volume (FELIS_BACKUP_STORAGE, default 10Gi requested) |
about one compressed world per backup kept |
| In-cluster registry | the registry volume (default 10Gi requested) |
2–3 GB for the stock images; grows with custom builds, pruned daily (§9) |
| k3s's containerd images | /var/lib/rancher/k3s/agent/containerd |
6–9 GB |
| Docker's images and build cache | /var/lib/containerd (Docker's containerd store) |
5–10 GB after repeated upgrades |
| Toolchains and sources | /opt/felis |
~2.5 GB |
| Database bundles | /var/lib/felis/db-backups |
a few MB each, 14 daily kept |
k3s's local-path volumes do not enforce the requested sizes (§9), so every volume shares
the root filesystem. Give the host at least 40 GB, and 60 GB or more once worlds and
custom images accumulate. The watchdog mails the owners when a watched filesystem passes
its threshold, and §13b covers a full disk. docker builder prune -af (with Docker
started) reclaims the build cache when space is short; the next upgrade rebuilds it.
3. Uninstall
deploy/uninstall.sh takes off what the installer put on. It prints what it will remove
and asks before it starts (--yes skips the question) [SH-TESTED]
[VM-VERIFIED]:
curl -fsSL <raw-url>/deploy/uninstall.sh | sudo bash -s -- --yes # keep the data
curl -fsSL <raw-url>/deploy/uninstall.sh | sudo bash -s -- --purge # remove the data too
With a private repository, fetch it the way the README fetches bootstrap.sh.
Both modes remove the felis-* systemd units and cloudflared-felis.service, the
Velocity user, /opt/felis, /usr/local/bin/felis, the installer's cloudflared binary
(unless another unit runs it), the felis_postgres and felis_edge nftables tables and
the firewalld ports the installer opened. k3s goes with k3s's own k3s-uninstall.sh when
the cluster holds nothing but Felis's namespaces; when it runs anything else only
felis, minecraft, felis-build and the MinecraftServer CRD are deleted.
--keep-k3s and --remove-k3s override that choice.
| keep data (default) | --purge |
|
|---|---|---|
| Final database bundle | taken first (felis db backup -label manual); a failure stops the uninstall before anything is removed. --no-backup skips it |
none |
felis database and role |
kept | dropped; listen_addresses and pg_hba.conf go back to how they were |
/etc/felis (secrets, felis.toml, offsite.env, tunnel config) |
kept; bootstrap.done and the per-run records go |
deleted, with the tunnel's credentials file |
/var/lib/felis (database bundles) |
kept | deleted |
| Worlds, archives, registry, uploads | moved to /var/lib/felis/retained/k3s-storage-<stamp>/ (with --keep-k3s: their volumes switch to Retain and stay in place) |
deleted |
| Felis images, Docker build cache | kept | deleted |
Neither mode removes packages (Docker, PostgreSQL, git, nftables) or the swap file: other software may use them. On a host that should end up bare:
sudo swapoff /swapfile && sudo rm /swapfile && sudo sed -i '\|^/swapfile |d' /etc/fstab
sudo dnf remove docker-ce docker-ce-cli containerd.io postgresql-server # or apt/zypper/pacman
The Cloudflare side outlives the host. After an uninstall that is final, delete the
tunnel (Zero Trust → Networks → Tunnels, or cloudflared tunnel delete <name>), its
DNS records for the panel hostnames, and the Access application.
Reinstall on top of kept data
A keep-data uninstall leaves everything a reinstall needs. The installer reuses
/etc/felis/secrets.env, so the database password and the forwarding and session
secrets are unchanged, and it migrates the kept database instead of creating one
[VM-VERIFIED].
Each step below was run on the reference VM after a keep-data uninstall, and the
restored worlds matched their kept level.dat checksums [VM-VERIFIED]. kept names
the directory the uninstall moved the volumes to:
kept="$(ls -d /var/lib/felis/retained/k3s-storage-* | tail -n 1)"
store=/var/lib/rancher/k3s/storage
-
Install as usual (
curl ... | sudo bash). Name the same root domain if it was not the<ip>.nip.iodefault:felis.host.tomlis kept, and the installer reads the domain from it. -
Run
sudo felis setup. It recreates the login and lobby servers; the Owner already exists, so it opens on the status screen and you can quit there. -
Put the image registry and the uploads back. They hold every custom server image and uploaded file; without the registry, a restored server fails to pull its image.
sudo k3s kubectl -n felis scale deploy/registry deploy/felis-api --replicas=0 sudo k3s kubectl -n felis wait --for=delete pod -l app.kubernetes.io/component=registry --timeout=120s sudo k3s kubectl -n felis wait --for=delete pod -l app.kubernetes.io/component=api --timeout=120s sudo rsync -a --delete "$kept"/pvc-*_felis_registry/ "$(ls -d $store/pvc-*_felis_registry)"/ sudo rsync -a --delete "$kept"/pvc-*_felis_felis-uploads/ "$(ls -d $store/pvc-*_felis_felis-uploads)"/ sudo k3s kubectl -n felis scale deploy/registry deploy/felis-api --replicas=1Then run the installer once more. It pushes this release's images over the older copies the kept registry carried.
-
Bring the game servers back. The final bundle holds every MinecraftServer as it was; the selector skips login and lobby, which step 2 created for this release:
b="$(ls -t /var/lib/felis/db-backups/felis-db-*-manual.tar | head -n 1)" tar -xOf "$b" k8s/minecraftservers.json \ | sudo k3s kubectl apply -l '!felis.lolicon.best/system-role' -f - -
Put each world back. A server's volume exists once it has started once, so start it from the panel, stop it again, and copy the kept world over the new one:
s=<server> sudo rsync -a --delete "$kept"/pvc-*_minecraft_world-$s-0/ "$(ls -d $store/pvc-*_minecraft_world-$s-0)"/Then start it. The lobby works the same way: stop it with
sudo k3s kubectl -n minecraft patch minecraftserver lobby --type=merge -p '{"spec":{"desiredState":"Stopped"}}', copyworld-lobby-0, and patch it back toRunning. -
Bring the archives back so the panel's restore points work again. The archive volume appears with the first backup, so back up any server from the panel first, then:
sudo rsync -a "$kept"/pvc-*_minecraft_felis-backups/ "$(ls -d $store/pvc-*_minecraft_felis-backups)"/With an off-site bucket configured,
sudo felis offsite fetch-worldsfetches them instead (troubleshooting §16). -
Delete
/var/lib/felis/retained/once every server is back.
4. Upgrading the pieces around Felis
A rerun of the installer upgrades Felis itself (§15). The components it installs keep the version they were installed with unless noted:
| Component | How a rerun treats it | Upgrade |
|---|---|---|
| Velocity, Limbo, Paper, LuckPerms | follow deploy/game-stack.lock |
rerun after a release that moves the lock (§15b) |
| Temurin JRE | moves to the pinned patch build | rerun |
| k3s | left alone | rerun with FELIS_UPGRADE_DEPS=1: moves to the pinned release through that tag's install script, one minor version at a time (a bigger jump stops before anything changes and names the release to go through), never backwards |
| cloudflared | left alone | rerun with FELIS_UPGRADE_DEPS=1: swaps /usr/local/bin/cloudflared for the pinned, sha256-checked release and restarts cloudflared-felis; a cloudflared the distribution installed stays with its package manager |
| PostgreSQL | the distribution's package | the package manager for a minor release; a major version needs pg_upgrade first (below) |
| Docker, git, nftables | distribution packages | the package manager |
curl -fsSL https://raw.githubusercontent.com/FelisMC/Felis/main/deploy/bootstrap.sh \
| sudo FELIS_UPGRADE_DEPS=1 bash
sudo felis update reports Felis, Velocity, k3s, cloudflared, the JRE and PostgreSQL
against their newest releases; --k3s, --cloudflared, --jre and --postgres narrow
it to one. PostgreSQL is compared within its major, since a minor release is a package
update, and a major past its end of life gets a note naming the current one.
The installer also sets up felis-update-check.timer, which runs felis update --record
once a day around 05:30 (and at boot after a missed run). --record stores the result
in platform_settings, and the panel's Admin → Updates → Component versions card
shows it: each component's installed and newest version, and for the ones with a newer
release the sudo felis update --<component> line that prints how to apply it. Felis
applies nothing on its own; the installer re-run above is the apply path. The card turns
red when the newest record is older than 26 hours, meaning the timer stopped:
systemctl list-timers felis-update-check.timer
journalctl -u felis-update-check -n 50 --no-pager
sudo felis update --record # record a fresh check now
Bringing an older install up to date [VM-VERIFIED]
Three pieces of an install keep the shape they had on the day they were created, and
neither felis setup nor kubectl rollout restart reaches them: the felis-api
Deployment (an env var added later, such as FELIS_SMTP_PASSWORD, is absent until the
Deployment is rendered again), the lobby image (built with whatever plugins the recipe
had then; LuckPerms came later, and without it every permission change from the panel
answers luckperms_missing), and the MinecraftServer specs (a field added later stays
unset). Bring all three forward in this order, images first:
# 1. Rerun the installer: renders and applies the control-plane bundle, rebuilds and
# re-imports the login and lobby images, and recreates those two pods so they run
# the new images. The [smtp] relay the setup wizard wrote is carried forward.
curl -fsSL https://raw.githubusercontent.com/FelisMC/Felis/main/deploy/bootstrap.sh | sudo bash
# 2. Fill the spec fields the system servers gained since (troubleshooting §12b), then
# RCON for user servers created before it was the default. -user-rcon waits on
# each server's image opening RCON; see §12b before running it.
sudo felis converge
sudo felis converge -user-rcon
Check each piece:
kubectl -n felis get deploy felis-api \
-o jsonpath='{.spec.template.spec.containers[0].env[*].name}' | tr ' ' '\n' | grep SMTP
kubectl -n minecraft exec lobby-0 -- ls /data/plugins | grep -i luckperms
kubectl -n minecraft get minecraftserver \
-o custom-columns=NAME:.metadata.name,RCON:.spec.rcon.enabled,IDLE:.spec.idle.autoStopEnabled
The env var only carries the password; mail still needs the relay itself, set in
felis setup → email. A user server picks up its new RCON block at its next start.
PostgreSQL major versions [CODE-ONLY]
The installer takes the major the distribution ships (13 on EL9) and never moves it. To go to a newer one, stop the writers, keep a dump, then use the distribution's upgrade path:
sudo k3s kubectl -n felis scale deploy/felis-api deploy/felis-operator --replicas=0
sudo -u postgres pg_dumpall > /root/felis-pg-$(date +%F).sql
# EL9: sudo systemctl stop postgresql; sudo dnf module switch-to postgresql:16
# sudo dnf install postgresql-upgrade; sudo postgresql-setup --upgrade
# Debian/Ubuntu: sudo pg_upgradecluster <old-major> main
sudo systemctl start postgresql
sudo k3s kubectl -n felis scale deploy/felis-api deploy/felis-operator --replicas=1
The MinecraftServer CRD [VM-VERIFIED]
Every rerun applies the CRD embedded in the felis binary (felis bootstrap-assets crd).
It serves and stores the single version v1alpha1, and the apiserver refuses values the
operator cannot act on:
| Field | Accepted |
|---|---|
spec.rcon.port |
unset, 0 or 25575: the allow-rcon NetworkPolicy opens only 25575, so any other port leaves the server unprobeable |
spec.startup.timeoutSeconds, readinessTimeoutSeconds |
0 – 86400 |
spec.startup.healthHTTPPort |
0 – 65535 |
spec.lifecycle.terminationGracePeriodSeconds |
0 – 3600 |
spec.idle.emptySecondsBeforeStop |
0 – 604800 (the panel caps it at 86400) |
0 means the operator's default throughout. An object stored before these rules keeps an
out-of-range value until someone edits that field (CRD validation ratcheting). The operator
reads a negative value as its default and an oversized one as written, so fix such a
value by hand: kubectl -n minecraft edit minecraftserver <name>.
Moving to v1beta1 (planned, not built). The first breaking change to the spec ships as a new
version, in this order, each step one release:
- The CRD serves
v1alpha1andv1beta1, storage staysv1alpha1. While the two schemas carry the same fields,conversion.strategy: Nonesuffices; a renamed or reshaped field needs a conversion webhook, which felis-operator would serve. - Storage moves to
v1beta1. The installer rewrites every object so etcd holds the new version (kubectl get minecraftservers -A -o json | kubectl replace -f -), then setsstatus.storedVersionsof the CRD to["v1beta1"]. - A later release stops serving
v1alpha1. Felis itself reads through one Go type at a time, so the operator and felis-api switch in the release that moves storage.
Legacy-forwarded backends [VM-VERIFIED]
A 1.8-era backend sits behind ViaVersion, which drops modern forwarding's login plugin message on the way down to protocol 47, so the proxy has to hand that server the player's identity BungeeCord-style, in the handshake address. Only the Felis-Legacy Velocity fork can do that per server. Mark the server's CR and the proxy picks it up at its next server-list refresh (every 15 s):
kubectl -n minecraft label minecraftserver <name> felis.lolicon.best/forwarding=legacy
kubectl -n minecraft label minecraftserver <name> felis.lolicon.best/forwarding- # back to modern
journalctl -u felis-velocity | grep 'legacy forwarding list'
The installer's FELIS_LEGACY_FORWARDING_SERVERS (default legacy18) stays in the list
whatever the labels say. What a label does depends on the proxy the host runs:
| Proxy | A label applies |
|---|---|
Fork with patch 0004 (build-velocity.sh default arm) |
from the next connection to that server |
Fork with 0003 alone (--deployed) |
at the next systemctl restart felis-velocity |
| Stock Velocity | never; the log line is a warning naming the server |
On the test VM (fork with 0004) labelling a server logged legacy forwarding list is now [legacy18,resolvecheck] 12 s later, and removing the label logged the list back to
[legacy18]. The fork's own test (FelisLegacyForwardingTest) covers the next
connection following the rewritten list.
Legacy forwarding carries no secret. A marked server believes any identity that reaches
its game port, which felis-allow-game-from-velocity limits to the proxy and the node
itself; anything else running on the node can reach it too.
5. Disaster recovery
The procedures are in §16: what a database bundle holds, restoring one on the same host, rolling back an upgrade, and rebuilding on a new host from the off-site copy. For a production install:
- Configure the off-site copy (
FELIS_OFFSITE_*, §16 "Keep a copy somewhere else"). Without it the world archives sit on the same disk as the worlds, and the database bundles on the same disk as the database; losing the disk loses both. The installer ends withNO OFF-SITE COPYuntil it is set. - Keep the off-site encryption key off the host, in a password manager. The bucket holds only sealed objects.
- Keep one database bundle off the host as well when there is no bucket. It contains
secrets.env, which a rebuild needs to read the rest. - Rehearse the rebuild once on a spare VM: §16 "Rebuild on a new host", steps 1–5,
then log in and restore one world.
felis offsite statusandfelis db checkexit non-zero when the copy or the newest bundle is stale; wire them into your monitoring, or rely on the watchdog's mail.
6. Changing the root domain [VM-VERIFIED] [GO-TESTED] [SH-TESTED]
The root domain is written into more places than the installer's config: the panel
certificate (/etc/felis/panel-tls.crt), the felis-config Secret in both namespaces,
the felis-api-tls Secret, the proxy's felis-link.properties, the login gate's
MinecraftServer env (FELIS_ROOT_DOMAIN, FELIS_PANEL_HOSTNAME), the Cloudflare tunnel
and DNS. felis domain set moves every one of them that lives on the host, in that
order, then restarts what reads them; felis domain check reports each surface on its
own line. The installer keeps the installed domain: a rerun with a different
FELIS_ROOT_DOMAIN stops and names this command.
sudo felis domain set new.example.net # the plan: every surface, what it moves to, what it costs
sudo felis domain set -yes new.example.net # do it
sudo felis domain check # one line per surface; exits 1 while any is behind
What it keeps:
- A panel or admin-console hostname set by hand in
[auth](anything other thanconsole.<root>/op.console.<root>) stays as it is; change it in/etc/felis/felis.host.tomlyourself if it should move, then runsetagain. - The other
[auth]keys (access_jwt_aud,client_ip_header) and every other line of both config files. The edit refuses a file it cannot change line for line (a multi-line value, a quoted or dotted key) and names what to fix. - An operator's own certificate. The installer's self-signed certificate is reissued for
the new names (same shape, the old pair saved beside it as
*.pre-domain-<time>); a certificate from another issuer that does not cover the new names stops the command before anything changes. Replace it with one that does, then runsetagain.
What it costs, which the plan prints before -yes:
- DNS.
<root>,console.<root>,op.console.<root>and*.<root>must reach the host. The wildcard does not coverop.console.<root>, a third-level name: give it its own record.checkresolves each name and warns on the ones that do not resolve yet. - Players. Servers are reached as
<name>.<new root>; the old addresses stop routing, and the proxy restart disconnects everyone online. The first installer re-run after a move restarts the proxy once more: the fingerprint it keeps of the proxy's files predates the move. - Sign-in. Session cookies belong to the old hostnames, so everyone signs in again.
Passkeys are bound to the panel hostname: when it changes, the plan counts the passkeys
that stop working, and their users sign in with an email code and register a new one.
Without an
[smtp]relay no code is delivered; an Owner locked out that way recovers withsudo felis breakGlass. - Cloudflare. The tunnel's ingress and the Access application still carry the old
names. Re-run the Cloudflare step of
sudo felis setupafter the move;checklists the tunnel's hostnames against the new ones. - A proxy on another host (a remote
felis-link.properties) is outside this host's reach:setprints the three keys to put there.
set is safe to repeat: a second run changes only what is still behind, and on an
install that is already on the domain it converges whatever check reports. The same
holds after an interruption.
On the reference VM the move from 10.211.55.6.nip.io to 10-211-55-6.nip.io took 34
seconds. The certificate served on 30443, /config.json on both hostnames, the proxy's
Felis routing ready: rootDomain= log line and the login pod's env all carried the new
names afterwards. A second set -yes changed and restarted nothing; the installer run
with the old FELIS_ROOT_DOMAIN stopped at its first check; a full installer re-run kept
the moved domain and left check clean; moving back restored every surface
[VM-VERIFIED].