Move the staged changelog entries under a 0.5.2 heading dated 2026-09-28 and leave an empty Unreleased section above it. The date is provisional: a comment beside the heading says so, and the two release-notes files carry the same date with the same marker, so the check at the version bump finds all three. Add the release notes and mirror them byte for byte to RELEASE-NOTES.md. Every link is absolute so the Release body resolves them, and each paragraph and list item is on one line, because the Release page shows every newline inside a paragraph as a line break; the file exempts itself from the line-length lint rule. The notes lead with who should upgrade and with the three defaults that changed: the gateway's DNS port, the Windows config directory, and an ephemeral node no longer writing its key file. They say what was measured and what was not, including the mixed-version interop run against v0.5.1 and v0.5.0, the Windows installer checks on Windows Server under Windows PowerShell 5.1 and PowerShell 7, and the checks still outstanding. They state that a link to a v0.5.0 or v0.5.1 node can still drop after a lost rekey reply until that node is upgraded, since the fix is on the answering side. The Windows upgrade notes say to stop the service before every run of the installer, and to move fips.yaml and fips.key from \etc\fips into C:\ProgramData\fips before upgrading a service that was set up by hand to read its config from \etc\fips, which otherwise comes up under a new identity with no warning. The README's status badge, release-notes link and status paragraph follow the release. Correct documentation that no longer matches the gateway, tree, Windows and packaging behavior: - The gateway design document, how-to, OpenWrt tutorial and the configuration reference describe the NAT rebuild as one transaction, the 1000-mapping ceiling and the new-name rate limit in place of the pool size as a hard cap, and which DNS queries allocate a mapping. - The spanning-tree documents describe the periodic re-broadcast and the resend of an unconfirmed announce, and the bloom filter update triggers include a parent switch and a child joining or leaving. - The fips, fipsctl and security references cover the restricted C:\ProgramData\fips on Windows, the ACL and key paths on macOS, FreeBSD and Windows, the legacy peer ACL fallback in \etc\fips, and the Debian fips.yaml's actual mode and conffile status. - The packaging guides no longer list MIPS as supported, the arm64 .deb leg is described as also purging the package, and the OpenWrt SDK-feed README says a package built from its Makefile carries none of the released packages' maintainer scripts. - The testing README gains a section for the OpenWrt maintainer-script suite and says the ACL allowlist suite runs by hand only, and the interop README lists the mesh-size check as its eighth phase. The upgrade notes were then corrected where following them as written would have left a node worse off: - Gateway DNS port: a fips.yaml that sets gateway.dns.listen keeps its port through the upgrade, and the v0.5.1 example config and deployment guide set it to [::1]:5353, so the resolver instruction depends on whether the config sets it. - OpenWrt: an operator who had the gateway disabled must stop it and then disable it after the first opkg upgrade. - FreeBSD: an upgrade step that restarts fips and fips_dns; the command comes from pkg's source and is listed as not measured. - Debian: the upgrade re-enables and starts fips-dns every time; `systemctl mask fips-dns` keeps it off. The .deb start bound is 90 seconds for fips-gateway. - Arch and the systemd tarball: what to restart or start after the upgrade, and that only a .deb upgrade reloads the firewall. - Ephemeral nodes: set persistent before upgrading to keep a key. - Windows: one ordered sequence in an elevated PowerShell, with the installer run under -ExecutionPolicy Bypass. - Building from source on glibc Linux also needs libdbus-1-dev and pkg-config. README, getting-started and the packaging README install the .deb with apt install ./ and point to the packaging README for per-format install commands. The notes record an OpenWrt 24 router test of the gateway DNS port, and that a gateway that fails to start leaves dnsmasq forwarding .fips to its port, with how to hand .fips back to the daemon. Drop the test-us03-next alias from the shipped hosts file and from the roster in the host-aliases how-to.
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Use Shortnames Instead of Long Npubs
A FIPS node's canonical address is <npub>.fips. The npub is
63 characters of bech32 — fine for the daemon, awkward to type
or fit in a docs example. The local DNS resolver consults a
host map before falling back to direct-npub resolution, so
short names like test-us01.fips work as substitutes wherever
<npub>.fips would.
This guide covers the two ways to populate that map and when to use which.
When to use which
Two independent mechanisms feed the same DNS responder:
| Mechanism | Source | Scope | Reload |
|---|---|---|---|
| Hosts file | /etc/fips/hosts |
Node-local, intended for shared rosters | Auto on mtime change |
| Peer alias | alias: field on a peers: entry |
Node-local, scoped to configured peers | Daemon restart |
Pick the hosts file when:
- The shortname refers to a peer your operator-team agrees to call by that name across machines (the public test mesh ships this way).
- You want the destination's name to resolve in DNS or appear
in
fipsctl show peersdisplay even though it isn't in yourpeers:block — e.g., a mesh node you reach transitively through your direct peers. The hosts-file entry is for name resolution and display only; it does not stand in for the npub a peer-config entry requires.
Pick the peer alias when:
- The shortname is just a label you use locally for a peer
that's already in your
peers:block. - You want the alias to live with the rest of the peer config (one place to look) rather than in a separate file.
The two coexist. If both reference the same shortname,
/etc/fips/hosts wins — the file is treated as the
authoritative shared roster.
What ships in the default /etc/fips/hosts
The installer drops /etc/fips/hosts populated with the
public test mesh roster:
test-us01 npub1qmc3cvfz0yu2hx96nq3gp55zdan2qclealn7xshgr448d3nh6lks7zel98
test-us02 npub10yffd020a4ag8zcy75f9pruq3rnghvvhd5hphl9s62zgp35s560qrksp9u
test-us03 npub136yqae6na688fs75g95ppps3lxe07fvxefj77938zf47uhm6074sxw8ctm
test-us04 npub1gd7ye2qp2lphhzx75fynnjzaxx4dqanddecet0wtt5ss5ek8h9ps62wdkf
test-de01 npub1260n42s06vzc7796w0fh3ny7zcpw6tlk4gq3940gmfrzl5c9pv2s3657q8
test-es01 npub17lpmzulpc98d8ff727k6e98atxn3phzupzsqqwe54ytduym747ws4tw5zm
test-uk01 npub1u0z26dc4qeneu5rvwvmpfhtwh3522ed6rlgxr9jarrfnjrc6ew4qxjysrs
These resolve out of the box — ping6 test-us01.fips works
even before you've added any peer to your config, as long as
the destination is reachable through your mesh links.
If you don't intend to interact with the public test mesh, the entries are safe to comment out or delete. They are plain hosts-file lines, not protocol participants — removing them only changes name resolution on your machine.
Add an entry to /etc/fips/hosts
Append a line to /etc/fips/hosts:
my-laptop npub1abc...xyz
Format rules:
- One hostname and one npub per line, separated by whitespace.
- Hostnames are lowercase letters, digits, and hyphens; max 63 characters.
- Comments start with
#and continue to end of line; blank lines are ignored. - On duplicate hostnames, the last entry wins.
The daemon picks up the change on the next DNS query — no restart required (the file's mtime is checked on each query). Verify:
dig my-laptop.fips AAAA +short
Expect one fd97:... AAAA record.
/etc/fips/hosts is shipped as a dpkg conffile (and the AUR
equivalent), so package upgrades preserve your edits. The
file is 0644 root:root — readable by anyone, writable by
root.
Add a peer alias
In /etc/fips/fips.yaml, set the alias: field on the peer
entry:
peers:
- npub: "npub1abc...xyz"
alias: "my-laptop"
addresses:
- transport: udp
addr: "192.0.2.10:2121"
connect_policy: auto_connect
Restart the daemon for the alias to take effect:
sudo systemctl restart fips
dig my-laptop.fips AAAA +short
The alias also shows up in fipsctl show peers display_name
column, so log entries and CLI output reference the peer by
shortname instead of truncated npub.
Resolution order
When the DNS responder receives a query for <name>.fips:
- Hosts file lookup. If
<name>matches an entry in/etc/fips/hosts, the daemon returns the AAAA record derived from that entry's npub. - Peer alias lookup. If
<name>matches thealiasfield on a configured peer, return that peer's AAAA. - Direct npub resolution. If
<name>is itself a valid bech32 npub (the canonical 63-charnpub1...form), the daemon returns the AAAA derived from that npub directly. - NXDOMAIN. If none of the above match, the query returns no answer.
The order means the hosts file overrides peer aliases on conflict. That's deliberate: the file represents operator-shared naming, the peer alias is a node-local label.
Cross-references and ACLs
Aliases interact with the peer ACL — if you maintain
peers.allow or peers.deny lists keyed on hostnames rather
than npubs, those names go through the same hosts-file
resolution. See
../reference/security.md for the
ACL format and the alias-resolution semantics.
fipsctl connect and fipsctl disconnect accept a shortname
where they expect an npub. Resolution for these commands goes
through /etc/fips/hosts only — peer-config alias: entries
are not loaded by fipsctl, so a shortname that exists only as
a peer alias must still be referenced by full npub on the CLI.
See ../reference/cli-fipsctl.md.
See also
- ../reference/configuration.md § Host Mapping — minimal reference entry for the host-map mechanism.
- ../reference/cli-fipsctl.md
—
fipsctlarguments that accept shortnames. - ../reference/security.md — peer ACL semantics with aliased entries.
- ../design/fips-ipv6-adapter.md — the DNS resolver design and the npub-to-IPv6 derivation.