The resolver lists in FailedTypes each record type whose query to a
nameserver got no usable reply (no reply, a code other than NOERROR or
NXDOMAIN, a referral, or a truncated reply whose TCP retry failed) and
logs it unless shutdown cut it short. A nameserver that answered no
type has failed.
The watcher saves such a type in failedTypes with the previous check's
records, leaves it out of the comparison with other nameservers on that
check, and compares it with the next answer. When the previous check
did not know its records either, it is also in unknownTypes and not
compared until it answers. A nameserver whose A, AAAA or CNAME query
failed is no answer when following a CNAME or resolving addresses.
Model: opus-5-5
An apex domain's own records are still saved with the hostnames'
records, under the domain's name, so the port and TLS checks find its
addresses. Notifications about them now start `Domain:`, decided by the
configured domains. The dashboard and /api/v1/status, which read only
the saved state, take a hostname entry whose name also has a domain
entry as that domain's own records: the dashboard shows them in a second
table under Domains, the API in the domain's `recordsByNameserver`, and
neither lists or counts them as hostnames. The startup notification
counts domains and hostnames from the configuration. README says which
of a domain's own records are watched and how their changes are
notified.
Model: opus-5-5
For a name with a CNAME, a nameserver answers a query of any type with
that CNAME, and the records of every answer were added, so the CNAME
was stored once for each of the eight record types asked for.
collectAnswerRecords now adds each value once per record type.
A state file saved before this holds the repeated values. Load keeps
each record value once, so the first check after upgrading sees no
record change and notifies nothing for them.
Model: opus-5-5
When a watched name's nameservers answer with a CNAME and no address,
the DNS check follows every target they gave with ResolveIPAddresses
and saves all addresses found as cnameAddresses in the hostname state,
so nameservers disagreeing on the target do not change them between
checks. Port and TLS checks use them. A change, also from or to none,
is notified as a CNAME address change; the first check from a state
file without them sends none. When a target cannot be followed, or
none of the name's nameservers answered, the last check's addresses
are kept. The domain check now runs the hostname check for the apex
instead of a copy of it.
Model: opus-5-5
Each domain check now looks up the addresses every nameserver's name
resolves to, with the resolver's ResolveIPAddresses, and saves them
sorted in the domain's state. A nameserver that stays in the
delegation and resolves to different addresses sends one NS Address
Change notification naming the domain, the nameserver and the old and
new addresses. Added or removed nameservers get only the NS change
notification. A failed or empty lookup keeps the previous addresses,
because the resolver returns no address without an error when every
server it asks times out. State files without the field load, and the
next check fills it in silently. Watcher tests that run domain checks
use example.com, which has two nameservers, to stay within the
per-attempt limit.
Model: opus-5-5
The runtime image runs as uid 10001, which owns /var/lib/dnswatcher. The
working directory is /, so config loading finds no .env or dnswatcher
config file there; the binary lives in /usr/local/bin. A Docker
HEALTHCHECK probes /.well-known/healthcheck every 10 seconds with busybox
wget, well inside the 60 seconds upaas waits.
Startup now fails with an error naming the data directory when it cannot
be written, instead of running with every save failing. The check creates
the directory if needed and writes and removes the temp file Save uses;
tests cover the create and the write failing.
README gains "Running under upaas": the prod branch, host directory
setup, network and port, environment and health check.
Model: opus-5-5
## Summary
Port state keys are `ip:port` with a single `hostname` field. When multiple hostnames resolve to the same IP (shared hosting, CDN), only one hostname was associated. This caused orphaned port state when that hostname removed the IP from DNS while the IP remained valid for other hostnames.
## Changes
### State (`internal/state/state.go`)
- `PortState.Hostname` (string) → `PortState.Hostnames` ([]string)
- Custom `UnmarshalJSON` for backward compatibility: reads old single `hostname` field and migrates to a single-element `hostnames` slice
- Added `DeletePortState` and `GetAllPortKeys` methods for cleanup
### Watcher (`internal/watcher/watcher.go`)
- Refactored `checkAllPorts` into three phases:
1. Build IP:port → hostname associations from current DNS data
2. Check each unique IP:port once with all associated hostnames
3. Clean up stale port state entries with no hostname references
- Port change notifications now list all associated hostnames (`Hosts:` instead of `Host:`)
- Added `buildPortAssociations`, `parsePortKey`, and `cleanupStalePorts` helper functions
### README
- Updated state file format example: `hostname` → `hostnames` (array)
- Updated notification description to reflect multiple hostnames
## Backward Compatibility
Existing state files with the old single `hostname` string are handled gracefully via custom JSON unmarshaling — they are read as single-element `hostnames` slices.
Closes #55
Co-authored-by: clawbot <clawbot@noreply.eeqj.de>
Reviewed-on: #65
Co-authored-by: clawbot <clawbot@noreply.example.org>
Co-committed-by: clawbot <clawbot@noreply.example.org>
State.Save() was using RLock but mutating s.snapshot.LastUpdated,
which is a write operation. This created a data race since other
goroutines could also hold a read lock and observe a partially
written timestamp. Changed to full Lock to ensure exclusive access
during the mutation.
Full project structure following upaas conventions: uber/fx DI, go-chi
routing, slog logging, Viper config. State persisted as JSON file with
per-nameserver record tracking for inconsistency detection. Stub
implementations for resolver, portcheck, tlscheck, and watcher.