Audience line and note were LandingController::COPY, a hardcoded array
keyed on exactly the four plan keys the seed migration created — a plan
made under any other key rendered with no copy at all. They move onto
the family for the same reason the recommendation mark does: they are a
stance about the product line, not a capability that changes with a
price, so they must not be frozen per version.
Backfilled in the migration from the controller's own strings, so the
public page prints exactly what it printed a moment ago. A family with
no copy yet renders without the audience line rather than an empty gap.
Feature labels (managed_updates, daily_backups, ...) stay in the
controller: they name catalogue features, not individual plans, so
there is no per-plan or per-version place to hang an editable
customer-facing label without re-introducing a shared feature table.
That table existed once and was deliberately removed when the plan
catalogue closed its pricing split-brain; bringing it back for wording
alone is a bigger, separate decision.
Recommended lives on the plan family, not a version: it is a stance about
the product line ("which plan we point a visitor towards"), not a
capability that changes with a price, and freezing it per version would
make the mark silently vanish every time a new version publishes.
Setting a plan recommended clears whichever other plan carried the mark,
inside one transaction locking the whole table — two operators
recommending two different plans at once must not both win. The public
price sheet already had the highlighted-card treatment for this (it was
driven by a hardcoded "team" constant); it now reads the family instead.
Two complaints, both correct, both mine.
Dark blue. The panel carried a `prefers-color-scheme: dark` block — the only
one in a product that has no dark mode. On a phone set to dark the update
screen, and nothing else, turned dark blue. A dark mode for one page is not a
dark mode; it is one page that does not match. It is gone.
And even in daylight the panel was not this product's colours: it used
Tailwind's slate ramp (#0f172a, #64748b, #e2e8f0), which is blue-tinted,
against neutrals that are warm. Every value is now a copy of a token from
portal-tokens.css, with the comment saying so, because this file cannot
import them — it renders when the asset build may not exist.
The small window then the big one. The settings card grew its own little
"läuft gerade" block the instant a run started; up to three seconds later the
full-page overlay covered it and said the same thing in a different size. The
card no longer says it at all, and the overlay now opens on the button's own
click — requestUpdate dispatches an event, but only once a run is actually
pending, so a refused second press does not black out the console.
Two more things found while looking:
The panel had `min-height: 100%`, which resolves against the parent's height.
On the 503 page the parent is <body>, whose height is auto — so it computed
to zero, the panel was only as tall as its text, and the bottom two thirds of
the screen stayed the browser's default white. Viewport units now, dvh so a
phone's collapsing address bar leaves no strip either.
And the mark was a plain orange tile again, the same empty-square that was
just fixed on the placeholder. The real logo is inlined.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Asked for after looking at how real ones are built. The shape they all share
is a convention, and a convention is what lets somebody find the answer
without being taught the page: banner, components each with ninety days of
uptime, then the written record underneath. This page had only the banner —
the version that is of no use the morning after, because "Alle Dienste in
Betrieb" is true and says nothing to somebody who was locked out the evening
before.
Three things are new.
The ninety-day bar. It cannot be reconstructed after the fact: the monitoring
table holds the last verdict per instance, not a history. So a sampler
(clupilot:sample-status, every five minutes beside the monitoring sync)
writes counts into one row per component per day, and the page divides them.
A day with no row is drawn as a gap and says "nicht aufgezeichnet" — never
green. Degraded samples count as reachable in the percentage but still colour
the day: folding them into downtime reports a slow morning as an outage,
ignoring them loses the only trace of it.
The incident record. An operator reports a disruption in the console, posts
updates as it develops, and the entry that says "behoben" is the same action
that closes it — two separate steps is how a page ends up with a resolved
note under an incident that still reports as ongoing. There is deliberately
no way to edit an update: it is a statement made at a time, corrections are a
further entry. An open incident may make a component look worse than the
probes found it, never better.
Scheduled maintenance, from the windows the console already keeps rather than
a second list somebody has to remember to fill in.
The measurement moved out of the controller into ServiceHealth, shared with
the sampler, so the banner and the bars cannot disagree about what "healthy"
means.
The page now uses the shared design system and the site's header and footer.
Its self-contained stylesheet was there to survive a broken asset build; it
does not survive one — if the stylesheet cannot be served the application
serving this page is already failing, and mid-deployment every route answers
with the maintenance page. What the exemption bought was a third design
nobody maintained.
Found while building: durationMinutes had its operands the wrong way round,
and diffInMinutes is signed, so the public page printed "Dauer -86 Minuten".
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
GrantPlan is a modal (R20), opened from a "Schenken" button on the customer's
own row in Admin\Customers, gated by customers.grant_plan rather than merely
hidden. It offers a whole package (plan, term, datacenter, an optional quota
bonus baked into the frozen snapshot) or a module on an existing contract,
either free or at a discount the operator sets against today's catalogue
price. Existing grants show on the same modal — who gave what, when, and
until when — with a warning once a dated grant is nearing its end; nothing
lapses on its own, exactly as decided.
The customers list also badges a granted plan in the Paket column.
IssueInvoice now rejects free-grant orders before it will consume an invoice
number for them — a full gift produces no invoice at all, while a discounted
grant still charges something and is invoiced exactly like an ordinary sale.
Keyed on the linked subscription/add-on's own provenance, not on the amount
being zero, so a genuinely fully-discounted Stripe checkout is unaffected.
Revenue excludes granted contracts from MRR/ARR/ARPU and the contracts count
— a gift at 0 must not drag the average down — and shows their number as its
own KPI instead of folding it in, since the owner measures himself on it.
The portal (Cloud, Billing) shows a granted package or module without a
price at all: not "free", not struck through, just the service, so a later
conversion to paid does not read as a negotiation.
Setting a NAS up to collect the invoice archive meant three machines and a
dozen commands: generate a keypair there, carry the public half to the server,
write it into authorized_keys with a restriction, install rsync, and get every
path right on the first try. Every one of those steps was a place to be told
"permission denied" with no clue which of the three was wrong. It was, and
several times over.
One button now. The panel asks, the host does it — because the host is where
all of it lives: the home directory, ssh-keygen, rrsync, and the archive itself.
The panel is www-data in a container and owns none of that, so it uses the
mailbox it already uses for updates. The private half is shown exactly once,
alongside the finished rsync command, and is never written to the database: it
exists to be copied into a NAS, and storing it "for convenience" would put a
working credential in every backup of that database.
rrsync does the restricting, not a pinned rsync option string. That string
differs between rsync versions and fails silently — a refusal with no reason
given, which is the shape of the afternoon this replaces. If rrsync is missing
the agent refuses rather than issuing an unrestricted key while the panel says
it is restricted.
rsync now comes with install-agent.sh, which already runs as root once per
machine. It has to be on the HOST: a NAS connects by ssh and sshd starts
`rsync --server` here, so without it the pull fails with "command not found"
from a NAS whose own setup is perfectly correct.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Two destinations doing two jobs. A handover directory a NAS collects from wants
a folder per day and wants emptying — thirty days is enough to notice a NAS that
stopped collecting, and keeping more only hides it. An archive on the NAS itself
wants a folder per year and wants nothing deleted, ever. So both are per
destination rather than global.
Deleting is safe here in a way it usually is not, and that is worth saying
plainly: the invoice is a frozen document in the database and its PDF is
rendered from that on demand. Nothing is moved anywhere — it is copied, and
anything removed from a directory can be produced again and re-exported. The
directory is a handover point, not the record.
keep_days is null by default and stays null unless somebody sets it: a retention
rule nobody asked for is a deletion nobody expected. The prune only touches
folders whose NAME is one of the two shapes this application writes, and leaves
everything else alone — a prune that deletes what it does not recognise is how
an archive loses something nobody was watching. It also skips a destination
whose path is missing rather than acting on whatever is underneath an absent
mountpoint.
The shape is matched with a pattern before parsing rather than by handing
nonsense to Carbon: under strict mode createFromFormat throws instead of
returning false, so one folder somebody made by hand would have ended the whole
prune instead of being skipped. The test with a foreign folder in it found that.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
A destination is a kind of connection, not a product. The wording said "Hetzner
Storage Box" and the host field suggested one particular provider's hostname
format, which reads as a requirement rather than an example — and the whole
point of the directory kind is that whatever is behind it is nobody's business
here.
Both kinds stay. A directory is how an NFS 4.1 mount is used: the mount is made
on the server, and the application writes into the path it produces. SFTP is for
a destination that is not mounted.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
One path and one exported_at could not say "on the office NAS, not yet on the
off-site box" — which is the only interesting question once there is more than
one destination, and the reason for a second is precisely that any single one
can fail. A row per destination now, and a row per (invoice, destination) pair.
Two kinds, and the difference is where the protocol lives. 'local' is a
directory this machine can already write to: a NAS mounted over NFS 4.1, a bind
mount, a disk. The application knows nothing about the protocol, the target
changes without code changing with it, and the whole thing stays testable
against a temporary directory. 'sftp' is for something reachable with
credentials — a Hetzner Storage Box being the obvious one — and the password
goes into the secret vault with only its key on the row, because a credential
in a settings table is a credential in every database dump. An empty password
field on an existing target means unchanged, not cleared: the field cannot show
what is stored, so blank-means-delete would wipe it on every unrelated edit.
One job per pair rather than one per invoice. A job writing to both would retry
the one that worked every time the other did not, and report one outcome for
two different things.
The ordering fix the tests found: Laravel's local adapter creates its root when
it is CONSTRUCTED, so the "never create the root" guard was checking a
directory the disk had just made for it. It runs before the disk is built now.
That guard is the difference between an archive and a hole in the ground — mkdir
on an absent mountpoint succeeds, writes onto the container's own disk and
reports success, and an archive that silently is not the archive is worse than
none.
The single path from the previous commit is migrated into a destination called
"Archiv" rather than dropped.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The application knows nothing about NFS and should not. It writes to a
directory; whether that is a local disk, a bind mount or a NAS over NFS 4.1
belongs to the mount. No protocol library, the target changes without code
changing with it, and the whole thing is testable against a temp directory.
The finding that shaped it: mkdir -p on a path whose mount is NOT there
succeeds. It creates the empty directory beneath the mountpoint, writes the
invoice onto the container's own disk and reports success — so an unmounted NAS
would quietly collect invoices locally while every check said it worked. An
archive that silently is not the archive is worse than none. The root is
therefore never created, only used: a missing root means a missing mount, and
that is a failure. Only the year subdirectory is created, inside a root already
proven to exist.
Written to a .part and renamed. A rename within one filesystem is atomic, so
whatever watches that folder never sees a truncated PDF and takes it for a
finished invoice. The size is read back afterwards rather than the write being
trusted: over a network mount a short write can report success, and an archive
of truncated files looks exactly like one that worked.
Queued, not done during the request. A network mount can block for its whole
timeout, and an invoice must not fail to be issued because a NAS is rebooting.
Dispatched after the commit, or a worker could look for an invoice that has not
landed yet.
And copy-on-issue is not enough on its own: an invoice issued while the office
connection was down never arrives, the queue eventually gives up, and nobody
opens an archive to check whether last Tuesday is in it. An hourly sweep
re-queues whatever is still missing, the failure is recorded on the invoice
rather than only in a log, and the Finance page says how many are outstanding.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Read-only by design, and the absence is the feature: an issued invoice is
corrected by cancelling it and issuing another, which is the only lawful way to
correct one. There is no edit button here whose absence needs explaining, and a
test asserts there is none.
The PDF is a plain route rather than a Livewire action. A download is a
download, and routing one through a component round-trip only adds a way for it
to fail.
Two findings on the way, and both were mine.
The year filter used YEAR() in raw SQL, which is MySQL's. SQLite has no such
function, so the page worked against the real database and threw against the
test one — a query that only runs on one engine makes the test database a
different product from the one being shipped. The years are derived in PHP now.
And a test put a User on the operator guard, where EnsureAdmin calls isActive()
on it and a 403 becomes a 500. Not a code defect: actingAs() calls
Auth::shouldUse(), so a second actingAs() in the same test with no guard named
lands on whichever guard the FIRST one named. That trap is written up in
CLAUDE.md, I quoted it earlier today, and I walked into it anyway. The tests are
split now and both name their guard.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Everything the console has no field for is still real — MAIL_*, DB_*,
APP_KEY, whichever key nobody has built a form for yet — and without a way to
touch it from here, the operator needs a shell and the console page misses
its own point. EnvFileEditor is the net, not just the warning:
1. Validates before writing. A line that is neither blank, nor a comment, nor
KEY=value is rejected outright, and an empty file (syntactically "valid" by
that rule, but not survivable) is refused too. write() never touches the
file before checking the new content.
2. Backs up before every write that actually happens — a timestamped copy
beside .env, before the new content lands. Never pruned automatically; the
page says so, next to where it says where they land.
3. Names the keys a mistake here can lock an operator out with — APP_KEY,
DB_*, REDIS_*, SESSION_* — rather than a blanket warning nobody reads.
4. Gated by secrets.manage and the same confirmed password the vault entries
use — this is the one place on the page that can reach every credential
the vault otherwise keeps write-only.
5. Says plainly what saving does not do: queue, queue-provisioning, scheduler
and reverb only read .env at their own startup, and names the restart
command plus config:clear.
6. Marks which .env keys SecretVault currently overrides, so editing a line
that a stored vault value already shadows does not look broken.
Two issues surfaced by Codex review and fixed before this commit: the raw
file content stayed in the Livewire component snapshot after the password
confirmation window expired on its own (not only on an explicit re-lock), and
the first save on an installation with no .env yet failed trying to back up a
file that was never there.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Zugangsdaten and Infrastruktur split the same subject by storage mechanism —
SecretVault vs App\Support\Settings — instead of by what each field
configures, which is not a distinction an operator setting up Stripe or DNS
should have to know or care about. One page now, grouped by integration:
Zahlungen (Stripe), DNS (Hetzner), Monitoring, VPN/WireGuard, SSH-Identität. A
secret and a plain setting sit side by side within a section; the difference
stays visible — a vault entry is write-only and shows only an outline, a
setting shows its value in full — as a property of the field, not a reason
for a separate page.
Both storage mechanisms are unchanged underneath: this is a presentation
change, not a data migration. The vault keeps its own gate (secrets.manage +
a recently confirmed password); plain settings keep theirs (hosts.manage
alone). Reachable with either capability, since the two are no longer two
pages a role happens to see one, both, or neither of — every section and
every save action still checks its own capability server-side.
admin.secrets and admin.infrastructure redirect here permanently rather than
404ing a bookmark. The nav entry that replaces both is visible to either
capability — Navigation's capability field now accepts an array meaning "any
of these", not only a single ability.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
SITE_HOST takes a comma-separated list now, the first name canonical. It serves
the site; every other name in the list redirects there permanently, path and
query intact. An apex domain and its www are two names for one thing, and
answering on both without picking one splits search rankings and cookies
between them.
The redirect is a host-bound catch-all rather than middleware. Middleware that
only some routes carry is the same half-measure this file already made once,
and a catch-all registered without a host would swallow every path in the
application — which is what the third test is there to stop.
The test harness needed fixing too, and the fix is the finding. Router::dispatch
on a standalone router does not rebind the container's request, so a route
reading one — through the helper OR through an injected parameter, both of which
resolve from the container — gets the test's request rather than the one being
answered. The redirect silently lost its query string in the test while working
in production. dispatchOn() binds it where the framework would.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Its own tab rather than a section of Settings, as asked. What is set here
appears on a legal document, and burying it beside the site-visibility switch
invites somebody to change one in passing.
Everything the printed invoice needs — registered name, address, Firmenbuch
number and court, VAT ID, bank details, payment terms, logo — with the logo
replaceable, because a company changes its mark. None of it reaches an invoice
that already exists: the values are copied into each document when its number
is assigned, so a corrected address is correct from the next one onwards and
cannot rewrite an old one.
The console refuses to consider itself ready while a name, an address or a VAT
number is missing, and says which. An invoice without them is not a valid
invoice in Austria, and issuing one is worse than refusing to.
The series editor carries the same shape as EditDatacenter and for the same
reason. The prefix is free while the series is empty and frozen once a document
carries it: changing RE to AR renames nothing and leaves a series whose past
says RE and whose future says AR, with no record they belong together. The
counter may be raised — an operator migrating from another system needs exactly
that — but never lowered, because a lower number is one already printed on a
document somebody holds. Both rules are recomputed from the database on save
rather than read back from the properties the browser returns.
CompanyProfile drops keys that are not part of the profile. It is fed from a
form, and a forged key must not be able to write an arbitrary setting into the
same table the site-visibility switch lives in.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The SSH private key CluPilot deploys to every host is now stored through
SecretVault (ssh.private_key), preferred over CLUPILOT_SSH_PRIVATE_KEY(_PATH)
at all three real consumers — SshTraefikWriter and HostStep::keyLogin.
kuma.password/kuma.totp stay in .env: they authenticate a separate Python
container at boot, and nothing in this app reads them, so the vault would
have nothing to wire them to.
A new /admin/infrastructure page, backed by App\Support\ProvisioningSettings,
makes the non-secret deployment settings that used to force a shell —
DNS zone, WireGuard hub endpoint and public key, Traefik's dynamic-config
path, the SSH public key, and the monitoring bridge URL — visible and
editable from the console, each wired to every real consumer. WG subnet/hub
IP and Kuma's own connection details stay in .env: the compose file and a
separate container read those before this application ever does.
Registration opened an account that could sign in immediately on an address
nobody had proved was theirs — and anybody can type a stranger's into a
registration form. Both halves were commented out: the Fortify feature and
MustVerifyEmail on the model.
`verified` sits on the whole portal group rather than on the pages that spend
money. An unconfirmed address is not a billing problem to be caught at
checkout; it is an account that may not belong to the person holding it, and
the servers, the users and the backups behind it are worth as much to whoever
typed the address as to whoever owns it.
The mail is a Mailable in this product's design rather than Laravel's
notification, which would arrive with the framework's logo, button and footer
as the first thing anybody ever receives from CluPilot. It also has to leave
through the SYSTEM mailbox like every other account mail, which the
notification path does not do on its own.
The link is signed and expires, and the address is part of what is signed — so
a link issued to a mistyped address stops working the moment the address is
corrected, rather than confirming an address nobody can read. Tests cover the
tampered link, the expired one, the corrected address, and one account trying
to confirm another.
The waiting page is ours (Fortify has views off) and offers the only two things
that move somebody forward: send it again, or sign out and register with the
address they meant. The resend is throttled, because otherwise it is a button
that makes the server send mail to an arbitrary address as fast as it can be
clicked. Somebody already confirmed is redirected away from it — the `verified`
middleware only guards the other direction.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Completes the device work: the warning mail now has somewhere to send people.
A warning whose only advice is "if this was not you, take action" names a
problem and hands back nothing to do about it.
Both sides get their own component rather than one shared with the guard passed
in. Operators and customers are two guards and two tables (R21) — a component
taking the guard as input is one forged property away from listing and ending
the other side's sessions. Every query in SessionRegistry is scoped by guard as
well as by id for the same reason, and three tests hold that line, because the
unscoped version looks exactly like a working feature while doing it.
TouchLoginSession keeps each row pointing at the session it describes. Both
sign-in paths raise the Login event BEFORE session()->regenerate(), so the row
is written against an id that is dead a moment later — and the once-a-minute
throttle would have held the correction back for the first minute of every
session, hiding the session its reader is sitting in. A changed id is therefore
never throttled.
A session counts as live only if the framework's row exists AND was touched
within the session lifetime. The join alone is not enough: Laravel collects
expired sessions by lottery, so on a quiet installation rows sit there for days
and the list would offer somebody a laptop they shut last month.
Ending the others goes through the product's own modal (R23) and leaves the
asking session alone: signing somebody out of the page they are using to sign
other people out is not what the button says.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The password no longer travels through third-party mail servers or sits
forever in an inbox: it moves onto the instance (encrypted, same as
nc_admin_ref) and shows on the dashboard until the customer clicks
"Notiert", which deletes it for good.
Asked for directly: a commit on main must change nothing on a server, and only
a tag whose version is higher than the installed one may be installed.
The agent asked two different questions before this. A pinned server compared
tags; everything else counted commits on its branch — so a console following
main offered an update for every push, verified or not, and "Jetzt
aktualisieren" meant "take whatever is on the branch right now". Landing on main
and being released are different events, and only the second is a decision
somebody made.
It is one question now, regardless of what the checkout is attached to: is there
a tag whose version is higher than the deployed one? Compared with sort -V
against the version in the deployment manifest — not the VERSION file, which an
update moves before it migrates, so a run that failed in between would leave the
checkout claiming a version it never finished installing. A run always targets
that tag; the branch path is gone. A request that arrives with nothing to
install is answered rather than obeyed, before anything announces a run.
The console follows: the button is disabled with nothing released, says so in a
line rather than leaving a grey button to be guessed at, names the version it
would install rather than a count, and refuses the action server-side as well —
a Livewire action is a public endpoint, and one place a rule may not live is
only in the disabled attribute of a button.
VERSION becomes 1.1.0, to be tagged as the first release this mechanism can see.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Found uncommitted in the working tree at the start of this session and carried
in as its own commit so it can be reverted on its own. Not written here: a
cancel action that clears an unconfirmed secret, the wording for every state of
the page, and a rebuilt setup view. The suite is green with it in place,
including the R18-R23 scan tests.
The code was immutable, which made a typo permanent. It cannot be freely mutable
either, and not only because hosts.datacenter references it: each host's DNS name
was minted from it and registered at the provider, the machine's own hostname was
set from it as it was built, the counter handing out those numbers is keyed by
it, and every past order stores it as plain text with no foreign key to follow.
Renaming a code with hosts in it is not a rename — it is a datacenter called hel
full of machines called fsn-01.
So it is editable exactly while nothing references it, which is the case that
matters: a typo noticed shortly after creating one. Once a host or an order
depends on it the field is disabled and says what is holding it, with the
numbers. The lock is recomputed from the database on every save, never read back
from the property the browser returns.
Alongside it, an optional free-text field for the specific datacenter —
fsn-dc-15. A provider runs several within one location, on separate power and
separate uplinks, and two entries both reading "Falkenstein (fsn)" are not a
choice anybody can make. Nothing keys off it; the code remains the identifier.
Also renames the country loop variables in the edit modal. They were $code and
$name — the component's own properties — and shadowed them for the rest of the
file. Harmless while nothing below the loop read them, which stopped being true
the moment the code became an editable field above it.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Checking for updates was a request written into the same mailbox as a real
update, collected by the same agent on the same systemd timer — so asking what
was new was answered on the next tick, and the console, having nothing else to
show, counted down to it. An operator who asked a question was told an update
would start in 3:44.
A systemd path unit now wakes the agent the moment the request file is written,
for a check and for a run alike. PathChanged, not PathExists: PathExists re-arms
as soon as the service goes inactive, so a request the agent could not consume —
it holds a lock for the length of an update — would restart it in a tight loop.
The timer stays as the fallback, and a drop-in disables systemd's start rate
limit, because two triggers on one oneshot service can otherwise wedge the unit
and leave neither of them able to run.
The countdown is gone from both the settings card and the maintenance overlay.
It could not be made honest: its target was recomputed on every poll, and where
the interval the agent reports is shorter than the timer actually installed on
that host it had already gone by, so the fallback moved it forward again each
time. It ran backwards four seconds and snapped back to a full minute, forever —
reported exactly that way. A queued run says it is starting; a queued check says
nothing beyond its badge, because a check starts nothing.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
A blocked outbound port (587 filtered at a firewall, as on the live
server) left both MailboxTester and MailboxTransport blocking until
PHP's default_socket_timeout (60s) or the reverse proxy cut the
request — a 504 with no error the operator ever saw. Mail::build()
honours a 'timeout' config key by calling SocketStream::setTimeout()
(confirmed by reading MailManager::configureSmtpTransport() and by an
end-to-end run against a genuinely unroutable host), so MailboxTester
now passes 'timeout' => 10 through it. MailboxTransport builds its
EsmtpTransport directly rather than through Mail::build(), so it sets
the same call on the transport's stream, at 30s — a queue worker can
afford to wait longer than an operator watching a browser, and a
timed-out send is retried rather than lost.
The test button also now shows a visible "sending" state while the
request is in flight, matching the wire:loading span pattern already
used on admin/host-create's save button — previously only
wire:loading.attr="disabled" fired, leaving a greyed-out button with
no other sign anything was happening.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
RequireOperatorTwoFactor exempted the whole of admin.settings while
compulsory two-factor was on, on the theory that it was "the page
where two-factor is set up". That component also carries staff
management, site visibility, network restrictions, account changes,
and the two-factor policy switch itself, so an unenrolled operator got
unrestricted access to all of that, not just enrolment.
Enrolment (secret, QR, confirm, recovery codes, regenerate, disable)
moves to its own route and component, admin.two-factor-setup /
Admin\TwoFactorSetup, reachable by every operator regardless of
capability. That is now the only page the middleware exempts besides
logout, and its redirect points there instead. admin.settings goes
back behind the policy like every other console page; only the policy
switch itself stays there, since only someone who already satisfies
it should be the one changing it.
console.require_2fa exempted admin.settings from the redirect it forces on
an unconfirmed operator, but that page only ever configured the global
policy — nobody could enrol behind it. A newly invited operator stayed
permanently redirected to a page with no way to satisfy the requirement,
the opposite of what the switch was for.
Adds enable/confirm/regenerate/disable to Admin\Settings, reusing Fortify's
own actions exactly as the portal's Settings already does — they only ever
touch the model they're handed, no guard or auth() call inside them, so
pointing ConfirmsPassword's guard at 'operator' is the only change needed.
The new card is deliberately not gated behind the site.manage capability
that hides the rest of this page's Owner-only sections: the compulsory
switch applies to every operator, so enrolment has to be reachable by every
operator too. Dropped the account card's stale hint pointing at a "separate
security area" that never existed.
An SMTP relay with a host and a from address but no username or password
- a trusted local or private-network relay - always used to be seeded as
a placeholder, because the takeover required a username to treat an
account as real, and Mailbox::isConfigured() always required a stored
password. Laravel's own SMTP mailer has supported unauthenticated relays
all along.
Add mailboxes.authenticates (default true, so every existing row keeps
its current behaviour) to tell "does not authenticate" apart from
"authenticates, but nobody has typed the password yet" - the same empty
password column used to mean both. The takeover migration now seeds the
real account off the host/address alone and marks it authenticates=false
only when neither a username nor a password resolved; isConfigured(),
MailboxTransport and MailboxTester all read it before requiring or
sending a password; the edit modal gets a checkbox for it with the
password field's hint updated to match, in both languages.
I3: nothing stopped an operator unchecking Aktiv on the mailbox that
mail.purpose.system points at. MailboxResolver::active() filters an
inactive mailbox at BOTH the direct lookup and the system fallback, so
that one checkbox could take mail.purpose.system to null and every
purpose without its own mapping down with it — the existing
system_required guard on savePurposes() reads as if this were covered,
but it only blocks the empty-mapping path, not this one.
EditMailbox::save() now refuses active=false against the mailbox 'system'
currently points at, the same way savePurposes() already refuses to leave
'system' empty.
I4: Admin\Mail::saveServer() writes mail.host — the platform's outbound
relay for every purpose mailbox at once — and CloudReady::toMail() puts a
customer's Nextcloud admin password in cleartext in the message body. So a
signed-in mail.manage session was already a credential-interception
primitive, the same threat Admin\Secrets' second gate exists for. Both
saveServer() and EditMailbox::save() (only when a new password is actually
being typed) now also require passwordRecentlyConfirmed(), following the
ConfirmsPassword pattern Secrets.php and Settings.php's two-factor actions
already use — including their per-action UI shape (an inline confirm form
scoped to the gated action), not a whole-page lock, so address, display
name, username, no-reply, active and the purpose mapping stay reachable
without confirming, per the brief's capability split.
Both gated and ungated paths are covered by tests, and both guards were
mutated away and confirmed to fail before being restored.
Three things reported together.
── Editing belongs in a modal (R20)
The seats table grew its input fields into the row. It worked and it looked
broken: the row grew, the columns beside it jumped, and a table half in edit
mode reads as a rendering fault rather than as a form. The project already had
the answer — EditDatacenter, whose own header comment says it avoids exactly
that row-height jump — and the seats table simply did not use it.
EditSeat is now a ModalComponent. A modal is reachable WITHOUT the page's route
middleware, so it resolves the customer itself and re-reads the record rather
than trusting a hydrated property: a forged addressEditable would otherwise
open the address of an accepted seat, and the address is the person — editing
it hands one employee's access to another with nobody told. Only an invitation
still in flight can have its address corrected, which is the case that actually
comes up.
The actions column is now always drawn. It used to disappear when the only seat
was the owner, on the reasoning that there was nothing to act on. But every
seat can be renamed, and a column that vanishes does not read as "not
applicable here" — it reads as "this product cannot do that", which is how it
was reported, three times. The owner's row says "Geschützt" rather than leaving
an empty cell.
Also caught here: the edit fields carried class-wide #[Validate] attributes, so
an empty edit form made the INVITE button fail on a field the invite form does
not have. Rules for an action belong to the action.
── The update button
"I cannot run an update, it says everything is current." `behind` is a READING
taken by the agent every five minutes, not the state of the world — push a
commit and the console insists it is up to date and refuses to act. The agent
does its own fetch before deciding, so asking against a stale reading costs one
fetch and finds nothing; being locked out costs the deployment. The button is
now offered whenever an agent is alive and no run is in flight, labelled for
what it does rather than for what the last reading said.
── The update never announced that it had finished
Because the thing being watched restarts the thing doing the watching. Mid-run
every wire:poll request fails, and what answers afterwards is a new build being
questioned by the old page's JavaScript — so the card sat on "läuft" until
somebody reloaded by hand. A small Alpine watcher now asks a plain JSON
endpoint (no Livewire, no component state, no assets), treats a failed request
as the restart rather than as a fault worth giving up over, and reloads once
the build it is looking at is no longer the build it started with.
── Support
The page was a decorated placeholder: a button that raised a toast saying the
form was "only hinted at in the prototype", three invented ticket titles living
in the translation file, and no way to see what became of anything. It looked
thin because nothing on it was real.
It now leads with the customer's own requests — what somebody arriving here
wants to know is what they asked and whether anyone answered — with contact
details moved to the side where they belong. The form attaches the plan, the
instance and who is asking automatically: making a customer describe their own
server back to the people who built it is the part of support people hate. FAQ
answers end where the thing can actually be done, and "is it me or is it you"
is answered by a link to the status page.
637 tests. R20 recorded in CLAUDE.md and enforced by EditInModalTest: no page
view may grow an input field inside a <td>.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The console announced an update for "spätestens um 15:21" while the clock on
the wall said 17:21. Not a formatting slip in one string: fourteen views and
four components printed database values straight out, so every absolute time in
the product was two hours out all summer and one hour out all winter.
Two of those views looked as though they had handled it. They called
->timezone(config('app.timezone'))
which reads like "convert to local time" and, app.timezone being the STORAGE
zone that must stay UTC, converts to UTC — a no-op wearing the costume of a
fix, which is worse than no call at all because it stops the next person
looking. That exact string is now banned by test.
Worse than the labels were two FORMS. Maintenance windows and plan versions
filled their datetime-local fields from UTC and parsed what came back as UTC. A
datetime-local field carries no offset — it is the digits a person reads off
their own clock — so an operator typing 21:00 scheduled a window for 23:00
their time, and nothing anywhere said so. App\Support\LocalTime now holds
toField() and fromField() side by side, because getting one end right is not
half a fix, it is a fresh bug.
The mechanism is one Carbon macro, ->local(). It copies before converting:
Illuminate\Support\Carbon is mutable, so without that, rendering a timestamp
would rewrite the model attribute as a side effect and anything comparing or
saving it afterwards would be an hour or two out. Both Carbon classes get the
same body — Carbon keeps macros in one global table, so the second registration
replaces the first for every Carbon class, and two different bodies meant the
immutable version, safe for itself, silently became the mutable one's
implementation too. My own test caught that.
The existing tests had not caught any of this because they built their expected
values with the same wrong call the views used — a test that recomputes the
implementation asserts nothing. They now assert the wall clock, and the queued
update additionally asserts that the UTC time is NOT shown.
Recorded as R19 in CLAUDE.md and enforced by tests/Feature/DisplayTimezoneTest:
no Blade or Livewire component may format an absolute time without ->local(),
the UTC no-op is banned, storage stays UTC, both sides of the DST boundary are
checked, ->local() must not mutate, and a form field must round-trip to the
same instant.
APP_DISPLAY_TIMEZONE, default Europe/Vienna. 615 tests.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The panel had been built by reading the template and believing the result.
Every round of review found the same class of defect, so this round the
template was rendered in a browser and measured with getComputedStyle, and the
implementation measured the same way — two number columns instead of an
opinion.
That immediately settled a disagreement: a review of the template's SOURCE said
the metric grid used a 20px gap. Rendered, it is 14px. The measurement wins.
Brought to the template's figures: label 11.5px (it was 11px in three separate
places, which is how it drifted — it is now one .lbl rule), value tracking
-0.02em, unit weight 450, metric row 6px above and 14px between, page head
centred with a 14px gap, grid gap 14px, columns switching at 1101/561px and the
h1 at 901px to match the template's own breakpoints, ring 62px, bar 5px.
The shared button now takes its height from min-height (40px) rather than
vertical padding, at 14px/600 with 0 18px padding and a 10px radius — a button
keeps its height whatever sits inside it, icon, spinner or bare text.
Also here, from the same round of review:
- The chart's blue border was Tailwind's own `ring` utility colliding with a
component class of the same name. Renamed to `.metric-ring`. This was
dismissed once as a screenshot artefact; it was real.
- Page titles lost the `sm:text-3xl` (40px) an earlier bulk edit had appended
to 23 of them. The template's h1 is 30px.
- The users table has its actions back — edit, suspend, lock and delete — for
every seat that is not the owner, with the owner refused in the action itself
and not merely hidden in the markup.
DemoCustomerSeeder writes one complete customer as real rows: instance,
subscription, six seats across four roles, a backup, current-period traffic and
thirty days of samples with a deliberate wobble and one day at 286/288 checks.
Nothing in the panel is drawn from a fixture any more, so anything missing
shows up as missing. Removing the demo is one deletion.
Verified: 607 tests, and a Codex comparison of the two measurement sets —
"a person would call them the same design", the only difference a 1px gap.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Availability is now counted from our own monitoring answers. Uptime Kuma knows
the figure, but the REST bridge in front of it only answers "healthy, yes or
no", and waiting for the bridge to grow an endpoint would have left the panel
without the number indefinitely. The sync already asks on a schedule; counting
the answers gives a percentage that is ours and explainable.
An unanswered check is not a failed one — the counter only moves when a real
answer arrived, so our monitoring going down does not become the customer's
outage on the one figure they are asked to trust. An instance nobody has ever
checked shows no availability rather than 100 %.
The downgrade path existed nowhere. Going down is not the mirror of going up:
it can ask an instance to hold more than the target plan allows. Smaller plans
are now listed even when they cannot be taken, with the obstacle in the
customer's own numbers — "you have 31 users, this package allows 10" — because
a greyed-out button that does not name what is in the way is the thing people
ring about. Storage is checked against the last real reading rather than the
contractual allowance, or anyone who once bought a large plan could never leave
it. The limit is re-checked in the action: a rule enforced only in markup is
not enforced.
And the smaller corrections from this round:
- The cloud tab carried a hardcoded "B" as the instance's initial, and the PHP
and MariaDB versions, which tell a tenant nothing they can act on.
- "EU — Serverstandort im Angebot festgehalten" under a label already reading
"Serverstandort" was two sentences saying nothing. It is the country.
- Support promised a reply "binnen 4 Std." with nothing behind it. What is true
everywhere else is an answer on the same working day.
- The actions column appeared even when no row in the table had an action.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The panel could not show the storage ring or the transfer trend because nothing
measured them. instance_traffic keeps one row per billing period — right for an
allowance, useless as a series — and storage consumption was never sampled at
all, so the card could only ever state what was sold rather than what is used.
instance_metrics holds one row per instance per day, written by the traffic
collector on the visit it already makes. A second scheduler entry against the
same Proxmox API would have doubled the load and the failure modes for no gain.
Disk usage comes from `df` inside the guest rather than from Proxmox's own disk
figure, which reports the allocated image: that would show every customer a full
500 GB from their first day.
The rule the whole thing is built on: a reading that could not be taken is not a
reading of zero. The disk columns are nullable and left untouched when the guest
agent does not answer, so yesterday's figure stands instead of the ring dropping
to empty — which would tell a customer their data had vanished. Missing days
stay missing in the series rather than being filled with zeroes, which would
draw an outage that never happened. Both are covered by tests.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Card by card against the approved template: label with a chevron, the figure
and its unit on one line, a line of context underneath, a bar across the foot.
The order matches too — storage, seats, transfer, then the fourth slot.
Three of the template's four visuals have no data behind them, and the code now
says so where someone will read it rather than leaving the next person to
wonder why the charts are missing:
- Storage consumption is never sampled. The card states the contractually
agreed allowance instead of drawing a ring at an invented level.
- instance_traffic keeps one row per period, not a daily series, so there is
nothing to draw a sparkline from. The share of the allowance is real, so
that card carries a bar.
- monitoring_targets records a state and a check time but no uptime figure, so
there is no availability percentage to show. That slot carries the last
backup — the thing this product is about and can actually prove.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The dashboard was built to my own idea of the layout rather than to the
template that was signed off: a coloured pill where the template has a stamped
mono line, bare figures where it has a label with a chevron, a unit on its own
line instead of beside the number, and no ring at all. There is no point
agreeing a design and then building something adjacent to it. The metric card
is now a component that draws the template's form, and the pages use it.
Two more places were still showing data that does not exist:
- Support listed three tickets to every customer, complete with reference
numbers and dates. There is no ticket model; it was fixture text. A request
list also belongs in the console, where an operator can see who filed what.
Removed until there is something real behind it.
- The datacentre name reached the customer through the cloud tab's copy as
well. Customer surfaces name the jurisdiction; the building is operator
information.
And the actions column rendered an empty cell for the owner, who can be neither
re-invited nor revoked. An empty cell reads as a missing feature; it now says
so with a dash and a title.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The breadcrumb said Übersicht on every page. The sidebar and the breadcrumb
each built their own copy of the structure, so the layout had no way to know
which entry was current and fell back to the first one. Navigation::portal()
and ::console() are now the single definition, and currentLabel() matches on the
route name — which matters for the console, whose PATH changes between
host-bound and fallback mode while its route names do not.
The datacentre name is out of everything a customer sees, for the third time
and now at the source rather than in a template. Falkenstein is how an
operator places an instance; a customer's processing record names the
jurisdiction, and putting the building in customer copy means editing that copy
every time the estate grows.
Also swept the views onto the new scale: --text-faint is 2.8:1 and a decoration
token, but it was carrying table headers, hints and timestamps — text people
have to read. All of it moved to --muted, which is 5.0:1 and passes AA.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The console was a second product. admin-tokens.css held a complete dark set —
its own surfaces, its own orange, its own status triad — so every shared
component had to work in two worlds, and the two halves of the application
drifted apart in ways nobody could see from inside either one. That file now
carries density and nothing else: smaller type, tighter rows, tighter corners.
Colour comes from one place.
The tokens themselves are rebuilt around what the redesign settled on:
- Radii scaled to object size (9/11/16/22) instead of one value everywhere,
which is what made the interface read as a design-system specification
rather than as a product.
- Warm, broad, low shadows. A neutral grey drop shadow belongs to a different
design language and reads as cold on this ground.
- --accent-press, which several rules already referenced and nothing defined.
An undefined var() does not make a browser skip the declaration; it computes
to , and for background-color that is transparent — the accent button
lost its fill on hover and left white text on white.
- No serif. A serif headline is what made every page read as a document, which
is the impression the whole redesign exists to remove. --font-serif now
points at the sans so nothing breaks while call sites are cleaned up.
The two shells are one shell with two configurations, and both finally have a
mobile navigation: the sidebar used to simply disappear below 900px, leaving no
way to move around the application at all on a phone.
The customer dashboard is bound to real records — instance, seats, traffic,
backups, contract — instead of the fixtures it shipped with. Where something is
not measured, storage consumption, it says what was contractually agreed rather
than inventing a figure. This is the sheet a customer forwards to their auditor.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The console has been unreachable over the VPN, and the cause was the readiness
probe rather than the tunnel. The gateway binds to the WireGuard hub address
alone; the probe asked 127.0.0.1, where nothing has ever listened. It could only
fail, so VPN_READY stayed false, and on that basis the application withheld the
`DNS = 10.66.0.1` line from every client config it issued. A phone then built
the tunnel, asked its normal resolver for the console hostname, got the public
address and had its connection closed — indistinguishable from "this site does
not exist", which is exactly what it looked like.
Probing over TLS on the bare address would not have worked either: the site
matches on the console's hostname, so a request without SNI is offered no
certificate. The gateway now answers a plain-HTTP health port on the hub
address, which removes TLS, SNI and name resolution from the question and
answers only what is being asked — is this gateway listening, in this network
namespace, right now. Caddy refuses to start when the certificate is unreadable,
so a health port that answers still proves the whole file loaded.
Also here, all found while looking:
- Icons pushed their label onto a second line and rendered a size larger than
asked for. Tailwind's preflight makes an svg display:block, and `.size-4` and
`.size-5` have equal specificity, so stylesheet order decided — and it emits
size-4 first. Every icon written as 16px was silently 20px. Recorded as R18.
- Four error pages printed `errors.404.hint` in place of a sentence: the lang
files give those codes a null hint and Laravel returns the key for a null line.
- The Developer role had no label in either language, so the dropdown showed
`admin_settings.role_developer`.
- The secrets area held one key, which is not worth a password gate. It now
carries the credentials that actually stop the business when they expire —
DNS, monitoring, SMTP — and the test button appears only where a checker
exists, instead of reporting on Stripe whatever was being looked at.
- The update button said nothing about when a queued run would start or where a
running one had got to; both are now shown, and a failure names its step.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Changing a key meant a shell, a file edit and a cache rebuild — and the person
who owns the Stripe account is not necessarily the person who owns the server.
Two gates, not one. The capability decides who may open the page; every operator
has console.view, and that must not mean "can read the payment key". The
password decides whether this SESSION may see or change anything, because the
realistic threat is not a stranger but an unlocked machine, and a session is
exactly what that hands over. Both are re-checked server-side on every action —
a Livewire action is reachable by anyone who can post to /livewire/update.
The value is stored encrypted under a key of its own, SECRETS_KEY, and the vault
refuses to work without it rather than falling back to APP_KEY: rotating APP_KEY
is ordinary maintenance and would otherwise destroy every stored credential,
discovered when Stripe stops answering. It is read where it is used, not
overlaid onto config at boot — an overlay adds a query to every request
including the public site, and leaves queue workers holding whatever was true
when they started. It is never shown again, only outlined, and never enters a
Livewire property that would carry it to the browser and back in the snapshot.
A registry, not an env editor: a form that can set any environment variable is a
privilege-escalation primitive, and one bad value bricks the installation with
no way back through that same form.
The test button is the part that matters. It reports which Stripe account the
key belongs to, whether it is LIVE or test — the most expensive mistake here is
pasting one where the other belongs, and both look identical in a form — and
which webhook endpoints exist with the events each subscribes to. A key can be
perfectly valid while the endpoint listens for the wrong five events, and
nothing fails until a payment goes unrecorded.
The webhook signing secret deliberately stays in .env. It is read on every
incoming payment event; in the database, a database problem becomes silently
failing signature checks.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>