33 KiB
FAILURES.md
Append-only record of every failure encountered building the Mechanical Compiler environment.
| Scope | All instances. Staging entries are marked srv-b. |
| Updated | 2026-08-18, after repository seeding and container standardisation |
| Method | PROCESS.md section 7 |
| Rule | Append only. Never edit an entry except to add a Resolution line. |
| Numbering | Sequential, never reused. See §0 on the renumbering. |
0. Why this file exists separately
This is the primary input to provisioning automation.
Every entry below is something a script written from ENVIRONMENT.md alone
would have got wrong. F-003 and F-004 in particular would have produced a
container that booted, reported success, and was quietly broken. The
specification cannot anticipate them; only contact with a host reveals them.
When the production automation is written, it should be read before
ENVIRONMENT.md, not after.
Renumbering note, 2026-08-15
The staging checkpoint and the reconciliation checkpoint were written
independently and both allocated F-008 and F-009. The reconciliation
entries have been renumbered to F-015 and F-016. Original phase-1 numbering
is preserved because it is cited elsewhere.
Entry format
### F-nnn — one-line summary
Host / container. Phase.
**Observed:** what was seen, verbatim where possible.
**Cause:** proven cause, or explicitly "unproven".
**Correction:** the smallest change that fixed it.
**Consequence:** what the specification or automation must do differently.
A failure with no Consequence line is either not yet understood or not worth
recording.
Phase 1 — initial container build
F-001 — arping absent on the Proxmox host
srv-b.
Observed: command -v arping → not installed.
Cause: Not part of the base PVE install.
Correction: apt install iputils-arping.
Consequence: Automation must install iputils-arping before duplicate
address detection, or the DAD check silently does not happen.
F-002 — invalid Proxmox inspection command
srv-b.
Observed: pvesm config local-lvm returned CLI usage text.
Cause: Operator command error. Not a host fault.
Correction: Read /etc/pve/storage.cfg directly.
Consequence: Read storage configuration from the file, not from a
subcommand that does not exist.
F-003 — CT 101 booted with degraded systemd
CT 101.
Observed:
status=226/NAMESPACE
Failed to set up mount namespacing: Permission denied
systemd-logind.service failed
systemd-networkd.service failed
systemd-timedated.service failed
systemd-networkd.socket failed
Cause: Debian 12 systemd requires mount namespacing that an unprivileged
LXC denies without nesting.
Correction: features: nesting=1. Deliberately tested alone rather than
copying nesting=1,keyctl=1 from CT 100 — keyctl=1 proved unnecessary.
Consequence: Every Debian 12 unprivileged container needs
nesting=1, including ones running nothing but nginx. keyctl=1 is needed
only where Docker runs. Promoted into the specification.
This is the clearest example of why the manual build was correct: the container started, appeared healthy at a glance, and was broken in four services.
F-004 — locale configured but never generated
CT 100, CT 101.
Observed: LANG=en_US.UTF-8 set, but locale -a listed only C,
C.utf8, POSIX. locale emitted Cannot set LC_* warnings.
Cause: Setting LANG does not generate a locale. The container template
ships none.
Correction: install locales, enable en_US.UTF-8 UTF-8, locale-gen,
update-locale.
Consequence: Specification must state the generation step, not just the
value. Silent until something depends on collation or encoding.
F-005 — locale repair exposed a pending upgrade backlog
CT 100, CT 101.
Observed: Installing locales pulled glibc-related packages and revealed
52 further pending upgrades.
Cause: Template was not current.
Correction: Full upgrade of each container, one at a time. Both reached
Debian 12.15, zero pending, no reboot required.
Consequence: Automation must apt full-upgrade immediately after first
boot, before anything else is installed.
F-006 — transient curl / git command-not-found
CT 100.
Observed: An egress test returned curl: command not found and
git: command not found. Immediately afterward both packages were installed
and current, PATH normal, both executables present and working.
Cause: Unproven. Hypothesis only: the test ran during the F-005
upgrade, while dpkg had the binaries briefly unlinked mid-transaction.
Adjacent in time, consistent with the symptom, not demonstrated.
Correction: None required. Repeat tests with absolute paths passed.
Consequence: Do not close. If it recurs, capture dpkg lock state at the
moment of failure.
F-007 — recursive chown failed on ext4 lost+found
CT 100.
Observed: chown: cannot read directory '/var/lib/mechcomp/lost+found': Permission denied. That directory is nobody:nogroup, mode 0700.
Cause: /var/lib/mechcomp is a real filesystem root, not a directory.
lost+found is created by mkfs and is not ours to manage.
Correction: Own explicit application paths only. Leave lost+found alone.
Consequence: Never chown -R a mount point root. Enumerate the
directories the application actually uses. Promoted into the specification.
F-008 — Git "dubious ownership"
CT 100.
Observed: fatal: detected dubious ownership in repository at '/var/www/mechcomp' when verification ran as root.
Cause: Repository cloned as mechcomp, inspected as root.
Correction: Re-ran verification as the owning user. No root
safe.directory exception was added — the correct fix, since the exception
would have masked every future instance of the same mistake.
Consequence: All repository operations run as the service user.
F-009 — dependency manifests absent from the application repository
CT 100.
Observed: requirements-base.txt and requirements-cad.txt do not exist;
the repository is LICENSE and README.md at commit e85c4f4e.
Cause: Application implementation has not started. Not a provisioning
failure.
Correction: None. Do not invent pins.
Consequence: Infrastructure and application acceptance are separately
gated. Infrastructure may complete without the application existing.
Phase 2 — architect corrections
F-010 — placeholder PID file rewrite failed to substitute
CT 100.
Observed: An automated rewrite left the literal $! in the PID file.
Cause: Quoting error in the rewriting command.
Correction: Identified the real PID by inspection.
Consequence: Superseded by F-019 — the placeholder should be a systemd
unit and have no PID file at all.
F-011 — root could not overwrite a mechcomp-owned file in /tmp
CT 100.
Observed: Permission denied writing a file owned by mechcomp:mechcomp
in /tmp, as root.
Cause: fs.protected_regular = 2 with /tmp mode 1777. Expected kernel
behaviour, not a fault.
Correction: Rewrote the file as the owning user.
Consequence: Do not use /tmp for state shared across users. Moot once
services run under systemd with PrivateTmp=true.
F-012 — first request after nginx reload returned the Debian welcome page
CT 101.
Observed: nginx -t passed; the immediately following request returned the
615-byte Debian default page. All subsequent requests proxied correctly.
Cause: Unproven. The obvious candidate — Debian's default site still
enabled and acting as default_server — was tested and ruled out:
sites-enabled contains only the project vhost. Remaining hypothesis is a
graceful worker transition. Not demonstrated.
Correction: None required.
Consequence: Do not close. Independently, declare default_server
explicitly on the project vhost so that adding a second server block cannot
make catch-all behaviour depend on file ordering.
F-013 — TLS test validated against an IP literal
CT 101.
Observed: SSL: no alternative certificate subject name matches target host name '10.0.0.21'.
Cause: Test used an address; the certificate SAN contains a DNS name.
Correct behaviour by both curl and OpenSSL.
Correction: Test by hostname.
Consequence: Acceptance checks must use the service FQDN. An IP-literal
TLS test is always wrong unless the certificate carries an IP SAN.
F-014 — CT 101 had no mechcomp group
CT 101.
Observed: Adding sandor to mechcomp failed; the group did not exist.
Cause: Specification said the admin joins the mechcomp group in both
containers, but the group is created as a side effect of creating the service
user, which exists only in CT 100.
Correction: Created the system group and added sandor.
Consequence: Specification defect. Either create the group explicitly where
it is required, or scope the group membership to CT 100. GID 996 now matches
across both containers, which is harmless and mildly useful.
F-015 — CT 101 verification lacked curl
CT 101. (Renumbered from a duplicate F-008.)
Observed: curl: command not found.
Cause: Not in the base template; CT 101's package list did not include it.
Correction: Installed curl and ca-certificates.
Consequence: The proxy container needs its own minimal toolset. Do not
assume packages installed in CT 100 exist in CT 101.
F-016 — placeholder PID capture stored a literal $!
CT 100. (Renumbered from a duplicate F-009.)
Observed: PID file contained $! rather than a number. The listener itself
was healthy.
Cause: Quoting error.
Correction: Identified PID 12102 by inspection.
Consequence: Superseded by F-019.
Phase 3 — network isolation
F-017 — containers were provisioned on the home LAN
srv-b, CT 100, CT 101.
Observed: Both containers had net0 on vmbr0 at 10.0.0.20/24 and
10.0.0.21/24, gateway 10.0.0.1 — the ISP router's network. Anything on the
home LAN could reach them.
Cause: Specification defect in ENVIRONMENT.md revision 4. The
document placed containers on both bridges, giving each a management address on
the LAN, on the unstated assumption that a LAN workstation would browse
staging. That assumption was never confirmed and was wrong.
Correction: Both containers moved to vmbr1 only, gateway 10.20.0.1.
net1 deleted. Host NAT extended for 10.20.0.0/24.
Consequence: Containers are on the portless service bridge only. srv-b is
router and bastion; access arrives via WireGuard. Promoted into the
specification.
F-018 — removing the LAN interface did not remove LAN reachability
CT 100, CT 101.
Observed: After F-017, both containers still reached 10.0.0.1
successfully.
Cause: Removing an interface removes an address, not a route.
ip_forward=1 plus the new MASQUERADE -s 10.20.0.0/24 -o vmbr0 — added to
give the containers internet access — also gave them the LAN, translated to the
host's address.
Correction: A RETURN in nat POSTROUTING ahead of both masquerades, and
a DROP in FORWARD, both scoped -s 10.20.0.0/24 -d 10.0.0.0/24, plus an
explicit ACCEPT for container-to-container traffic.
Consequence: Interface removal is not isolation. Automation must assert
the negative — that the LAN is unreachable — not merely that the interface is
gone. Note that the containers still reach srv-b itself at 10.0.0.12,
because a container addressing its gateway takes the INPUT path and never
enters FORWARD. That is required, not a leak.
F-019 — placeholder backend did not survive reboot
CT 100.
Observed: After the F-017 reboot, nothing listened on 10.20.0.10:8770.
Cause: The placeholder was a bare foreground process with a PID file. No
supervision.
Correction: Recreated as mechcomp-placeholder.service.
Consequence: Anything a proof depends on must be supervised, or the proof
expires silently at the next reboot and the following session diagnoses a
proxy fault that does not exist. Applies to temporary scaffolding as much as to
real services.
Resolution (2026-08-16): Installed /usr/local/libexec/mechcomp-placeholder.py
and /etc/systemd/system/mechcomp-placeholder.service, enabled at
multi-user.target, running as mechcomp:mechcomp, reading
/etc/mechcomp/mechcomp.env, binding 10.20.0.10:8770, with Restart=on-failure
and the standard hardening set. CT 100 was rebooted: the unit restarted
automatically, the listener returned on the service address only, nginx proxied
successfully, X-Forwarded-Proto: https was re-observed at the backend, and the
container settled to running with zero failed units.
F-020 — service FQDN mapping changed twice
srv-b, CT 100, CT 101.
Observed: mechanical-compiler.dev.infra was mapped to 10.20.0.10, then
corrected to 10.0.0.21, then corrected again to 10.20.0.11.
Cause: Three different states, each correct for its moment. 10.20.0.10
was wrong — it pointed at the application rather than the proxy. 10.0.0.21
was right while CT 101 had a LAN address and workstation access was assumed.
10.20.0.11 became right once F-017 removed the LAN interface and access moved
to WireGuard through srv-b.
Correction: 10.20.0.11 on all three hosts.
Consequence: Not an error in either direction — a value that tracked a
topology decision. Recorded because the reasoning matters more than the value:
the service FQDN names the proxy, and the proxy has exactly one address.
F-021 — deleting the Proxmox interface left a stale guest eth1
CT 100, CT 101. Network isolation.
Observed: After the F-017 topology change and reboot, both containers
reported systemctl is-system-running → degraded, with
networking.service and ifupdown-wait-online.service failed. Both guests'
/etc/network/interfaces still carried an auto eth1 / static iface eth1
stanza although neither had an eth1 link. The boot journal on both:
Cannot find device "eth1"
ifup: failed to bring up eth1
Cause: Proven. pct set --delete net1 removes the LXC interface but
does not remove the stanza already written into the guest. ifup -a therefore
exited non-zero at boot even though eth0 came up correctly.
ifupdown-wait-online failed as a consequence, not independently.
systemd-networkd was investigated and explicitly ruled out — its units were
disabled on both containers.
Correction: Preserved a pre-correction copy, removed only the stale eth1
stanza on each guest, restarted the affected units. Both containers then
rebooted: the stanza did not return, both units succeeded, both settled to
running with zero failed units.
Consequence: Removing a container interface is not proof that the guest
converged. After any topology mutation, automation must inspect the guest
interface file and assert systemctl is-system-running = running with zero
failed units after a reboot. Connectivity alone is insufficient — the
surviving interface works fine while boot remains degraded, which is precisely
how this went unnoticed through an entire verification pass.
F-022 — transient DNS resolution timeout in CT 101
CT 101. Formal acceptance.
Observed: During the first acceptance pass, two unrelated public HTTPS tests both failed at name resolution:
deb.debian.org: curl: (28) Resolving timed out after 5000 ms
gitea.barternetwork.us: curl: (28) Resolving timed out after 5000 ms
IP routing to 10.110.0.1, 10.0.0.12 and CT 100 remained working throughout.
Cause: Unproven. Diagnostics showed resolver configuration identical to
CT 100 and the host (nameserver 75.75.75.75, hosts: files dns),
systemd-resolved absent, 75.75.75.75 reachable, and getent ahostsv4
resolving both names immediately afterward. Repeat HTTPS tests returned 200.
Worth noting as context, not as cause: since F-017, container DNS traverses the
host's masquerade to an external resolver. That dependency is new.
Correction: None. No configuration was changed.
Consequence: Do not convert a one-shot resolver timeout into a
configuration change without evidence. On recurrence, capture resolver state
and DNS traffic at the moment of failure before touching anything. A candidate
mitigation — a second nameserver line, so a single hiccup retries rather than
fails — is recorded but deliberately not applied on one unexplained event.
F-023 — relay accepted the mail; final delivery failed
srv-b. Alerting.
Observed: The relay was discovered at 10.110.0.1:25 over wg0, banner
wg-pk.diagnostics.kane-il.us, offering STARTTLS with a self-signed
CN = wg-pk. It accepted unauthenticated SMTP from 10.110.0.12 through
RCPT TO, before and after STARTTLS. Ports 465 and 587 were unavailable, and
the public address 198.58.111.109 did not expose SMTP on this path.
With relayhost = [10.110.0.1]:25 and root: sandor@kane-il.us, srv-b
recorded successful handoff:
relay=10.110.0.1[10.110.0.1]:25 dsn=2.0.0
status=sent (250 2.0.0 Ok: queued as 87E446243A)
The local queue emptied. The operator then received a delivery-failure
message at sandor@kane-il.us.
Cause: Unproven, downstream of the demonstrated handoff. The bounce
notice itself arriving at sandor@kane-il.us establishes that the relay can
deliver to that address, which narrows the problem to the failing message
rather than the destination. Leading hypothesis, untested: the envelope sender
is root@srv-b.dev.infra, and dev.infra does not resolve publicly, so a
downstream MTA rejects on sender-domain verification. Candidate remedies are
myorigin or smtp_generic_maps.
Correction: None. Mail alerting was deferred by operator decision.
Consequence: SMTP 250 from the relay and an empty local queue prove
handoff, not delivery. Alerting acceptance requires demonstrated end-to-end
receipt. Until then mail, smartd alerting, and any mail-dependent backup
alerting are unaccepted. Note separately that postfix check reports
divergence between /var/spool/postfix copies and their host originals,
including /etc/hosts and NSS libraries — a known cause of resolution failure
inside the chroot, and adjacent enough to this failure to be checked first.
Resolution (2026-08-17): Cause proven, three hops downstream of the origin.
mx1 runs permit_mynetworks, permit_auth_destination, reject on both relay
and recipient restrictions. wg-pk connected from public addresses absent from
mx1's mynetworks, and kane-il.us is not an authorised destination there,
so RCPT TO <sandor@kane-il.us> was rejected 554 5.7.1 Access denied over
both IPv4 and IPv6. Added only 198.58.111.109/32 and
[2600:3c00::f03c:92ff:fe42:43d7]/128 to mx1's mynetworks and reloaded.
Four hypotheses were tested and ruled out with evidence before any change: the
srv-b alias (postalias -q root resolved correctly and the journal showed
orig_to=<root> forwarded), sender-domain rejection (wg-pk rewrites the
sender to postmaster@diagnostics.kane-il.us and MAIL FROM was accepted),
address-family asymmetry (both families failed identically), and routing on
wg-pk (it connected and received the rejection).
Method worth reusing: RCPT-only probes before and after the change, over both
address families, with no message body. 554 before, 250 after. That
proves the change caused the fix rather than coinciding with it — the standard
F-012 was written to enforce. Two messages then delivered end to end with full
headers captured, empty queue, no deferred entries. Closed.
F-024 — work order specified a log file that does not exist
srv-b. Work order 002.
Observed: WORK ORDER 002 instructed grep /var/log/mail.log. The file does
not exist on srv-b.
Cause: Proven. Proxmox VE ships without rsyslog. Postfix logs to
journald only.
Correction: The operator used journalctl -u postfix@- and completed the
diagnosis. No configuration was changed; installing rsyslog to satisfy a
document would have been the wrong direction.
Consequence: Specification defect. All log inspection on a Proxmox host
uses journalctl, not files under /var/log. Corrected in ENVIRONMENT.md
revision 5. Automation that greps a logfile path will silently find nothing,
which is worse than failing.
F-025 — the F-023 correction granted wider relay than required
mx1, wg-pk. Estate scope.
Observed: Adding wg-pk's two public addresses to mx1's mynetworks
authorises them under permit_mynetworks, which appears in both
smtpd_relay_restrictions and smtpd_recipient_restrictions. That grants relay
to any destination, not only to kane-il.us.
wg-pk in turn carries mynetworks = 10.110.0.0/22 with
permit_mynetworks permit_sasl_authenticated defer_unauth_destination. The
resulting chain:
any peer on 10.110.0.0/22 (including CT 100 and CT 101, which arrive
as 10.110.0.12 through the srv-b masquerade)
-> wg-pk permit_mynetworks
-> mx1 permit_mynetworks
-> any destination on the internet, as kane-il.us infrastructure
Before the correction mx1 rejected at the final hop, so the path was closed by
accident rather than by policy.
Cause: Proven. permit_mynetworks is destination-agnostic by design.
Correction: Pending — operator decision. Two independent parts:
- Ours: block SMTP egress from the container network at
srv-b. The containers have no reason to originate mail; if they ever should, that is a deliberate decision rather than something inherited from a masquerade. Local, precise, touches no estate policy. - Estate: whether
wg-pk'smynetworksshould be explicit/32entries for the hosts that legitimately originate mail rather than the whole tunnel range.
Constraint: wg-pk must continue to relay to arbitrary external
destinations — that is its purpose, since Hubzilla registration and notification
mail depends on it and the ISP blocks port 25. Restricting it by recipient
would break that. The question is which clients may ask, not where it may send.
Consequence: A correction that fixes the observed failure may widen an adjacent boundary. Record what a trust change grants, not only what it repairs.
Project-local correction (2026-08-17, WO-003): Complete. A persistent
srv-b FORWARD rule drops TCP 25, 465 and 587 from 10.20.0.0/24 to
10.110.0.0/22. Reachability was proven before the change, both containers
are blocked after it, ordinary internet egress is intact, host-originated mail
still delivers end to end, and the rule survived a host reboot.
Estate half: still open. Whether wg-pk should narrow mynetworks from
10.110.0.0/22 to the explicit hosts that legitimately originate mail is a
CIVICVS decision. No change was made to wg-pk, mx1 or kane-il.us.
F-025 is therefore partially corrected, not closed. The two halves are kept in one entry rather than split, because the exposure is a single chain and splitting it would let one half be closed while the other is forgotten.
F-026 — containers were not configured to start with the host
srv-b, CT 100, CT 101. Work order 003.
Observed: After the WO-003 persistence reboot — the first true host reboot since the containers were built — both were stopped:
pct status 100 -> status: stopped
pct status 101 -> status: stopped
Cause: Proven. Neither container configuration contained onboot: 1, so
Proxmox had no instruction to start either guest. pve-guests.service was
enabled, active, and its startall task completed successfully — proving the
startup machinery worked and simply had nothing to do.
Correction: pct set 100 -onboot 1 and pct set 101 -onboot 1. The
containers were deliberately left stopped so the correction could be proven by
reboot rather than masked by a manual start. After a second host reboot both
returned automatically and host plus both guests reported running.
Consequence: Specification defect. ENVIRONMENT.md never required
onboot: 1, and every earlier reboot in this project was pct reboot — which
restarts a guest without ever exercising host-boot autostart. A container that
survives pct reboot is not thereby proven to survive a host reboot. Gate 1
must assert guest state after a host reboot specifically.
F-027 — a verification test conflated tool failure with the tested condition
srv-b. Work order 003.
Observed: WO-003 B3 and B4 used this pattern to test SMTP reachability from a container:
pct exec $c -- timeout 5 bash -c '...' \
&& echo "REACHABLE — WRONG" || echo "blocked — correct"
With the containers stopped (F-026) it produced:
-- CT 100: container '100' not running!
blocked — correct
Cause: Proven. The shell || branch catches any non-zero exit from
pct exec, including failures of pct exec itself. The test could not
distinguish "the firewall blocked the connection" from "the command never ran."
Correction: Assert guest state before interpreting any network result:
if [ "$(pct status "$c" | awk '{print $2}')" != "running" ]; then
echo "CT $c NOT RUNNING — TEST INVALID"
elif pct exec "$c" -- timeout 5 bash -c '...'; then
echo "REACHABLE — WRONG"
else
echo "blocked — correct"
fi
Consequence: A test whose failure mode is indistinguishable from success is worse than no test, because it manufactures confidence. This one printed a pass while the thing under test did not exist. Only a separate health assertion caught it, and that was ordering luck rather than design. Every negative assertion — "X is unreachable", "Y is absent", "Z is refused" — must first establish that the test could have observed the positive case.
Applies retroactively: the isolation proofs in F-018 used the same shape. They happened to be run against containers that were up, and the result was independently corroborated, but the pattern was unsafe there too.
F-028 — three command defects in work order 003
srv-b. Work order 003. Minor, grouped.
Observed and corrected in place by the operator:
| Defect | Cause | Correction |
|---|---|---|
| Serial numbers absent from A1 output | grep -E "Serial Number" is case-sensitive; SCSI output says Serial number: |
grep -iE with a case-insensitive alternation on product, model, serial and SMART support |
journalctl -u smartd -b returned -- No entries -- |
smartd.service is an alias; the real unit is smartmontools.service and owns the journal |
Query smartmontools |
A3 sed would have produced a malformed directive |
Prefix substitution left the trailing -M exec ... in place and duplicated -m root |
Replace the whole DEFAULT line, in both A3 and A4 |
Consequence: Match on the canonical unit name, not a convenience alias. Prefer whole-line replacement over prefix patching in configuration edits. Use case-insensitive matching when parsing tool output whose field names vary by device class.
F-029 — pip cache written into the repository working tree
CT 100. Repository seeding.
Observed: git add -A staged 465 files where 28 were expected. The extra
437 were .cache/ — pip's download cache.
Cause: Proven. The service user's home is the install directory, so
$HOME/.cache is /var/www/mechcomp/.cache. make deps wrote there.
Correction: .cache/, .local/, .ssh/, .gitconfig and .lesshst
added to .gitignore; the cache unstaged before committing.
Consequence: Setting the service user's home to install_dir is correct
and matches YunoHost convention, but it means any tool writing to $HOME
writes into the working tree. .gitignore must anticipate that from the
first commit.
Method note: reading the staged list by eye showed nothing wrong. Counting it and grouping by top-level directory found the problem immediately. Verify by counting, not by scanning — a long correct-looking list is exactly where an extra 437 files hide.
F-030 — a network command in a work order could hang indefinitely
srv-b. Repository seeding.
Observed: An SSH authentication test was issued with neither
ConnectTimeout nor BatchMode. Gitea's SSH is on port 42022, so the attempt
on 22 hung and the operator had to interrupt it.
Cause: Proven. Missing timeout options, and an incorrect assumption
about the port.
Correction: Re-issued with -o ConnectTimeout=10 -o BatchMode=yes -p 42022,
after a timeout-wrapped reachability probe that could not hang.
Consequence: Every network command in a work order carries an explicit
timeout. A command that can hang strands the session, and the operator cannot
tell a hang from slow progress. Reachability is probed with timeout before any
client is invoked.
Also recorded, having been got wrong twice: Gitea deploy tokens are
account-level under user Settings, not repository settings. Repository-scoped
credentials are deploy keys. SSH here is on 42022, so remotes need
ssh://git@host:42022/owner/repo.git — the git@host:path shorthand cannot
carry a port.
F-031 — a standard was asserted from a check that never examined the thing
CT 100, CT 101, CT 102. Container standardisation.
Observed: The architect stated that CT 100 and CT 101 had no mail agent, and
standardised CT 102 by purging Postfix to match. The first run of
ct-baseline.sh reported a mail agent installed on both CT 100 and CT 101.
CT 102 — the container just "corrected" — was the only one conforming.
Cause: Proven. The earlier assertion came from inspecting Postfix
configuration and /etc/aliases on srv-b, during work order 002. That
established what the host does. It said nothing about the containers, and the
containers were never examined.
Correction: Postfix purged from CT 100 and CT 101. Queues were checked first and both were empty, so nothing was lost. Re-run: 62 passed, 0 failed.
Consequence: A standard asserted from a proxy observation is not a standard. The check must examine the thing being standardised. This is the same class as F-027 — a result that cannot distinguish the case it claims to test — but reached through inference rather than through shell semantics.
It is also the justification for ct-baseline.sh existing. Divergence had been
discovered by asking, one property at a time, whenever something behaved oddly.
That does not terminate: every check finds a new difference because nothing
states what "the same" means. The script is that statement, and it disagreed
with the architect on its first run.
F-032 — the same host defects were discovered independently by two projects
srv-b. Cross-project.
Observed: Kane Fabric's INFRASTRUCTURE_BASELINE.md, written independently,
records nesting=1,keyctl=1 against 226/NAMESPACE systemd failures, and that
minimal Debian CTs lack a generated en_US.UTF-8. These are F-003 and F-004,
found again on the same host, in different words, at a different time.
Cause: Proven. Both are properties of the Proxmox/Debian 12 host, not of
either application. Neither project's documentation was visible to the other.
Correction: None required — both projects reached the correct conclusion.
Consequence: Host-level requirements belong to the host, not to whichever
project discovered them first. ct-baseline.sh encodes them once and checks
every container on srv-b regardless of owner, so the third project does not
have to discover them a third time.
Note that keyctl=1 is required only where Docker runs. CT 101 was proven
to work with nesting=1 alone (F-003). Kane Fabric's baseline currently
specifies both; if CT 102 runs no containers, keyctl can be dropped.
Open, not closed
| # | Status |
|---|---|
| F-006 | Open — cause unproven. Recurrence should capture dpkg lock state. |
| F-012 | Open — cause unproven. Leading candidate ruled out by inspection. default_server was added as independent hardening and does not close this. |
| F-019 | Corrected 2026-08-16. Reboot persistence proven. |
| F-021 | Corrected 2026-08-16. Reboot persistence proven. |
| F-022 | Open — cause unproven, no correction applied. |
| F-023 | Closed 2026-08-17. Cause proven at mx1; delivery proven twice. |
| F-024 | Closed 2026-08-17. Specification corrected. |
| F-025 | Partially corrected 2026-08-17. Project-local half closed and reboot-proven; estate half open, awaiting a CIVICVS decision on wg-pk. |
| F-026 | Corrected 2026-08-17. Reboot persistence proven. |
| F-027 | Corrected 2026-08-17. Applies retroactively to F-018's proofs. |
| F-028 | Corrected 2026-08-17. |
| F-029 | Corrected 2026-08-18. |
| F-030 | Corrected 2026-08-18. |
| F-031 | Corrected 2026-08-18. Root cause of ct-baseline.sh. |
| F-032 | Closed 2026-08-18. No correction required; encoded in ct-baseline.sh. |
Everything else is closed with a proven cause and a proven correction.