Three apps were instanceable and the rest were silent, so the feature
looked far narrower than it is. Every app has now been checked against
the two rules instance_create.sh enforces, and the answer recorded in
its config rather than left unset.
32 apps are instance-safe and now say so. Six are not, and each says why
in its own words instead of being indistinguishable from an app nobody
had reviewed:
pihole a DNS server must own port 53
unbound a resolver must own its fixed 5335
stalwart a mail server must own 25/465/587/993
traefik must own 443, and one Traefik routes every other app
prometheus node-exporter and cadvisor carry no "prometheus" prefix
stoat pins 7881, and database/redis/rabbit/minio carry no prefix
The first four are genuinely one-per-host: the port is not arbitrary, it
is the protocol. The last two are compose-identity problems and could be
fixed by prefixing those service names, which is a change to make
deliberately rather than in passing.
Recorded as an explicit false with a reason, not left unset, so the next
person reads a decision instead of an absence. The audit was verified not
to pass anything vacuously: every app resolves at least one service name,
so no app reached "eligible" merely because nothing was found to check.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Installing rocketchat failed with
invalid IPv4 address: ParseAddr("IP_DATA_2"): unable to parse IP
ipUpdateComposeTags allocates one IP per SERVICE_TAG_N annotation and fills
IP_TAG_i only where SERVICE_TAG_i exists. The four new apps tagged only their
primary service, so every sidecar — matrix's postgres, mattermost's postgres,
rocketchat's mongo, and fifteen of stoat's sixteen — kept a literal IP_DATA_n
in the deployed compose and docker refused to create the container.
Tag every service that carries an ipv4_address, index-aligned with its IP_TAG.
For stoat that also meant moving caddy from SERVICE_TAG_1 to _6 so the indices
line up with the IPs rather than the reading order.
mastodon had the same latent break (IP_TAG_2 and _3 untagged) and is fixed the
same way — it would have failed on first install for the same reason.
SERVICE_TAG carries the compose *key*, not container_name: 'libreportal app
restart <app> <service>' passes it to 'docker compose restart', which only
understands keys.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The app shipped cbcrowe/pihole-unbound — a third-party bundle last
rebuilt 841 days ago. Pi-hole itself is fine: the official
pihole/pihole was rebuilt 42 days ago. We packaged an abandoned fork,
not a dead project.
Not a tag swap. The official image is v6, which replaced nearly every
v5 environment variable with an FTLCONF_ equivalent — and the container
ACCEPTS the old names and ignores them, so a v5-style block looks
correct while configuring nothing, including the admin password:
WEBPASSWORD -> FTLCONF_webserver_api_password
WEBTHEME -> FTLCONF_webserver_interface_theme
PIHOLE_DNS_ -> FTLCONF_dns_upstreams (";" separates values)
DNSSEC -> FTLCONF_dns_dnssec
DNSMASQ_LISTENING -> FTLCONF_dns_listeningMode
REV_SERVER{,_TARGET,_DOMAIN,_CIDR} -> FTLCONF_dns_revServers, one
combined "<enabled>,<cidr>,<target>,<domain>"
FTLCONF_LOCAL_IPV4 -> gone in v6
listeningMode is ALL rather than the old "single": on a bridge network
queries arrive via the docker gateway, and "single" drops them.
The bundled unbound is gone, so PIHOLE_DNS_=127.0.0.1#5335 pointed at
nothing. New CFG_PIHOLE_UPSTREAM_DNS defaults to Quad9, with the config
documenting how to point it at the unbound app for full recursion. The
freed port slot becomes the (disabled) DHCP port, which v6 supports.
Volumes: v6 keeps config, databases and gravity under /etc/pihole, and
ignores /etc/dnsmasq.d unless explicitly re-enabled — so the old
two-mount layout is replaced by a single ./etc-pihole.
Variable names taken from the official v5->v6 upgrade doc, not memory.
Substitution verified end to end: every placeholder resolves and
revServers renders in the documented format.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Adds the decision half of the app updater. Detection (P2) and the
snapshot-first apply/revert (P3) were already real, but nothing ever
pressed the button — every update waited for a click.
CFG_<APP>_UPDATE_TYPE=auto|manual per app, default auto (33 templates)
CFG_UPDATER_AUTO=true|false master switch, default true
updaterAppPolicy resolves the two the way backupResolveStrategy already
resolves backup strategy: the global switch can only make things more
manual. updaterApplyAuto runs at the end of `updater check` and enqueues
the ordinary updater_apply task for each auto app that has an update —
never applies inline, so an automatic update is the same code path, task
log, History entry and Roll back button as a manual one.
Safety: each attempt stamps its target digest under generated/auto/, so a
build that fails is rolled back and then left alone rather than retried on
every scan; in-flight updater tasks are skipped so scans can't stack.
Tracked end to end: updates.json carries each app's resolved update_type,
History entries carry trigger=manual|auto. The WebUI says whether updates
install themselves, chips only the apps that opted out, labels automatic
history, and — since an auto app's pending update needs no decision — keeps
it off the Overview board's "Needs action" view.
Also fixes artifactApplyAuto enqueueing without --detach: it runs inside
the single-threaded task processor's own poll, so following the new task in
the foreground waits for a task that cannot start until it returns.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Every backup-scope app now carries CFG_<APP>_BACKUP_STRATEGY=auto, so the
Backup Strategy dropdown appears in each app's Advanced tab — not just the
DB apps.
To keep it honest, the 'live' option is hidden where it isn't safe:
- apps.json generator emits backup_live_capable per app (from compose backup
labels: a dumpable DB, or a live-safe marker).
- apps-manager filters the live option out of the strategy select when the
current app isn't live-capable, so apps like gitea/focalboard (a DB we don't
yet dump) never offer it.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Signed-off-by: librelad <librelad@digitalangels.vip>
The static per-app CFG_<APP>_HOST_NAME is gone. host_setup (the app's
canonical FQDN, feeding the legacy single DOMAINSUBNAME_DATA used by app env
vars, the app URL and trusted-domains) is now derived from the app's primary
Traefik port's subdomain: first recommended port, else first Traefik port;
@/root -> apex, set -> sub.domain, empty -> app-name. Removes HOST_NAME from
all app configs, the config-form field mapping (Hostname), the dead
headscale stub, and wireguard.sh (now uses host_setup). Completes the move to
dynamic per-port subdomain routing.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Signed-off-by: librelad <librelad@digitalangels.vip>
Replace the static one-host-per-app model with per-port routers: each
Traefik-managed port carries a subdomain (12-col PORT format) and gets a
DOMAINSUBNAME_TAG_<n> host, so one container can serve unlimited hosts.
tagsProcessorPortSubdomains stamps per-port hosts (subdomain @/empty = apex,
multi-level allowed); tagsProcessorPortRouterBlocks comments out
# TRAEFIK_PORT_<n>_BEGIN/END blocks for non-Traefik ports so unfilled
placeholders never ship (mirrors GLUETUN_OFF). Convert all 27 router apps
(subdomains seeded from HOST_NAME; headscale admin. prefix -> subdomain).
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Signed-off-by: librelad <librelad@digitalangels.vip>
A free, open, self-hosted app platform (GNU AGPLv3): one-click app deploys,
Traefik reverse proxy with automatic SSL, rootless Docker support, gluetun
VPN routing, and a web dashboard to manage it all.
Free & open forever to self-host; optional paid hosted services fund it.
See PROMISE.md.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
Signed-off-by: librelad <librelad@digitalangels.vip>