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>
MailboxTester required a usable SECRETS_KEY unconditionally, refusing an
unauthenticated relay's test-send on a fresh install with no key yet, even
though real sending never touches the cipher for that mailbox. Gated the
check on authenticates, same as the password-presence check beside it.
Comparison pass across MailboxTester and MailboxTransport turned up two more
of the same shape. MailboxTransport's delegate-cache fingerprint decrypted
$box->password unconditionally, even when unauthenticated and never going to
use it — a mailbox that once authenticated, stored a password, and later had
authenticates unchecked would crash real sending the moment SECRETS_KEY
became unusable. And MailboxTester had no guard against a stored port <1;
Symfony silently reinterprets that as port 25 rather than refusing it, so the
test button could reach whatever happens to listen there and report success
for a configuration MailboxTransport refuses outright.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
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.
isUsable() checked only "is SECRETS_KEY nonempty", so a set-but-malformed
key (wrong length, garbage base64) read back as usable even though
encrypter() rejects it two lines below. EditMailbox::save() and
MailboxTester::run() both gate on isUsable() specifically to avoid an
uncaught RuntimeException reaching the operator; a lying isUsable() meant
that guard did not fire in exactly the configuration it exists for.
Both methods now read resolveKey() — the base64: prefix, the raw-base64
path, the 32-byte check — so they cannot disagree about a value either
one is given. SecretVault::isUsable() and the secrets console page's
"no key" banner both delegate down to this and are covered here too, not
assumed to inherit the fix correctly.
EsmtpTransport's autoTls (default true) and requireTls (default false)
are independent of the implicit-TLS constructor argument: 'tls' left
these at their defaults, so a server that omitted STARTTLS sent
mailbox credentials in the clear while reporting success, and 'none'
would silently upgrade the moment a server offered STARTTLS. Both
MailboxTransport and MailboxTester already duplicated the "ssl, or
port 465 ⇒ implicit" half of this decision independently; MailTlsPolicy
is now the one place both read, for both dimensions.
MailboxTester still builds through Mail::build() rather than a hand-built
transport: MailManager::createSmtpTransport() forwards the whole config
array to EsmtpTransportFactory as DSN options, which already reads
auto_tls/require_tls itself, so the same policy reaches this path
through keys the config array already supports.
Mail::to($x)->queue($mail) resolves the DEFAULT mailer, and
Illuminate\Mail\Mailer::queue() (vendor Mailer.php:482) does
`$view->mailer($this->name)->queue($this->queue)` — overwriting
MaintenanceAnnouncementMail/MaintenanceCancelledMail's own 'cp_maintenance'
with the default mailer's name ('array' in tests, 'log'/whatever
MAIL_MAILER is in prod) before the job is even built. Both mails kept
sending through the old .env account instead of MailboxTransport. CloudReady
was never affected — MailChannel.php:66 preserves a notification's own
mailer.
Fix: name the mailer before queueing — Mail::mailer($mail->mailer)->to(...).
$this->name on the resolved Mailer is then already $mail->mailer, so the
vendor overwrite becomes a no-op instead of a silent downgrade. Confirmed by
reading the vendor source, not assumed.
SenderAddressTest's "names the purpose mailer..." test asserted
$mail->mailer on a bare, never-queued mailable, which proves nothing about
what survives queueing — the constructor sets it right regardless of what
MaintenanceNotifier does with it. Replaced it with one that drives
MaintenanceNotifier::deliver() under Queue::fake() and inspects the pushed
SendQueuedMailable's mailable. Verified it fails against the pre-fix code
first (the pushed job carried mailer = 'array'), then verified the fix
makes it pass, then mutated the fix away and watched it fail again.
The seed migration also guards against SECRETS_KEY being unset at migrate
time (encrypting the .env password would otherwise throw and take the
whole migration down, on a fresh install as much as in the test suite),
and the four tests/Feature/Mail files written before this migration reset
the mailbox table in their beforeEach so they keep testing what they did
before mailboxes.key collided with the seeded rows.
Review of Task 4: MailboxResolver::for() only fell back on a missing
mapping or a missing row. Deactivating a mailbox — the operator's
explicit "do not use this" — left it resolvable anyway, so
MailboxTransport reached it, found isConfigured() false, and threw
instead of quietly using the next candidate the way every other
"this mailbox is unusable" case does. Worse, __toString() still
reported the deactivated address as though it were healthy.
named() now runs through a new active() filter at BOTH lookup sites —
the purpose's own mapping and the system fallback — so an inactive
system mailbox is refused exactly like a missing one, not handed out
as the last resort. A missing password stays deliberately unfiltered
here: that is a MailboxTransport concern (loud failure naming the
mailbox), not a resolver fallback trigger — silently rerouting mail
because a password hasn't been typed yet would hide the gap instead
of surfacing it.
Added two tests and mutated active() to a no-op filter to confirm they
catch it: both failed (one expected the system mailbox, got null; the
other expected null, got the inactive mailbox's full attribute dump).
Reverted, reran, both pass again.
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 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>
Three things the owner asked for, and one the review found underneath them.
The console leaves /admin. It has its own route file now, registered before
routes/web.php because once it has a hostname to itself it sits at the ROOT of
that host — where `/` and `/settings` also exist for the portal, and the first
matching route wins. Where it mounts is one decision in one place: `/` on the
console hostname where it has one to itself, `/admin` on any host otherwise.
Names stay admin.* in both modes, so nothing that builds a URL has to know.
Exclusivity is its own switch, not a consequence of having a hostname. The
first attempt made "this host is the console" follow from ADMIN_HOSTS, and a
development machine lists its own IP there so the console works without DNS —
which took the public site and the portal off that machine entirely. The
switch also registers the console on every listed hostname, canonical last, so
the alternates that exist as recovery paths keep working.
The status page moves out of /legal, where it sat beside the imprint and the
terms. Nothing about the current health of the platform is a legal document. It
is a real page now: portal, instances, provisioning and backups, each derived
from records, aggregate only, and a component with no signal reports "unknown"
rather than "operational".
That last rule is what exposed the real bug. monitoring_targets.status was
written once — 'up', at provisioning — and nothing ever updated it. Both the
console's notices and the new public page read it, so an outage would have been
published as healthy indefinitely. There is a sync job now, on a five-minute
schedule, and a checked_at column so a verdict can go stale instead of standing
forever.
The monitoring contract had to grow a third state for that to be honest.
isHealthy() answers true when no monitoring is configured and false when the
monitor is unreachable; recording that boolean would have published either a
fleet-wide all-clear nobody measured or a fleet-wide outage that was really one
broken monitor. health() returns null for both, the recorder leaves the old
verdict to go stale, and isHealthy() keeps its forgiving semantics for the one
caller that wants them — the provisioning acceptance check, which must not fail
a delivery because monitoring is not set up.
Backups are counted from the instances that need protecting rather than from
the backup rows that exist, so an instance with no schedule at all cannot be
missing from the arithmetic that declares the estate protected.
Also: the update panel polls itself, offers the button only when there is
something to install, and opens the log while a run is in progress.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The panel had no way to update the installation, and could not have one on its
own: it runs as www-data inside a container, and the update restarts that
container. A button that shelled out would kill its own web server
mid-response, and would need the application to hold host-level credentials —
a far worse thing to own than an out-of-date checkout.
So the button is a mailbox. The panel writes a request into the checkout; a
systemd timer on the host, running as the service account, consumes it, runs
deploy/update.sh and writes back what happened. The same timer answers the
question the panel cannot answer alone — is there anything to update — which
needs a git fetch, and therefore credentials the application does not have.
The parts that were wrong before review, all of which would have shipped as a
button that looks fine and does nothing:
- The agent was only installed by install.sh, which the installed base never
runs again. Every existing server would have shown the button permanently
disabled. It has its own root entry point now, install.sh delegates to it,
and update.sh says so when the unit is missing.
- On a release-pinned server the checkout is detached, so it followed
"origin/HEAD" and then ran an update that deliberately stays on the pinned
tag: updates advertised, nothing applied. It now compares TAGS in release
mode and passes the target release through.
- On a branch other than main it advertised that branch's commits and then
deployed main's, because update.sh defaults to main.
- A request written while the agent was down was executed whenever the agent
next started, days later.
- A single status file meant the routine five-minute check overwrote a failed
update with "idle" before anyone saw it.
- An agent that had been stopped left the button enabled forever, because a
status file written once counted as an agent.
- The agent's error messages were German strings rendered into an English
interface; it reports codes now and the panel translates them.
Also: the add-address button in the console-access panel was as tall as the
field plus its hint, because the hint was a sibling inside the flex row.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
VERSION at the repository root is the release number and the only place it is
written down — a file rather than `git describe`, because a source archive, a
shallow CI checkout and a container built without .git have no tags to
describe. Cutting a release is editing that file and merging it; CI creates the
annotated v<VERSION> tag once green, only on the commit that raised the number,
and never moves it. Servers are pinned to these.
Two modes, and the difference is the point. RELEASE=v1.0.0 pins a server to an
immutable tag, checked out detached: it moves when someone decides it moves.
BRANCH=main follows the edge, where CI tags a commit only after it is pushed.
The mode is remembered, so re-running the updater on a pinned box does not
quietly walk it back onto main.
Going backwards is refused, by commit ancestry rather than by comparing version
strings — a tag can be cut from anywhere, and only ancestry says whether history
is going back. The schema has already moved forward by then, and the migrations
needed to reverse it are not in the older checkout at all.
What the console reports comes from a manifest written atomically after every
step succeeded, never from live git: git says what the files are, not whether
the deployment came up. So a failed update keeps reporting the version that is
actually serving — including its version number, not the newer one the checkout
has already moved to. A deployment pinned to the tag reads "1.0.0 (abc1234)";
anything else reads "1.0.0-dev (abc1234) · main", because every commit after the
tag still carries VERSION=1.0.0 and is not that release. Reporting it as one is
how a bug gets filed against the wrong code.
Codex reviewed the design before it was written and the result six times after.
Its findings, all real: the version had to come from the manifest too, not just
the commit; branch names need JSON escaping or the manifest silently vanishes; a
`case` glob does not anchor and accepted 1x.2y.3garbage; pinning to the commit a
server already sits on skipped recording the mode, and then skipped detaching;
a manifest that failed to write would never be repaired; an unparseable
timestamp would 500 every admin page; and an empty tag list read as a
connectivity failure.
466 tests green.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
A Product per plan family and a Price per priced row of a published version,
plus the four subscribed webhook events that were arriving and being ignored.
`stripe:sync-catalogue` mirrors the catalogue. Idempotent twice over: a stored
id is skipped, and each call carries an idempotency key derived from our own
row, so a crash between Stripe creating a Price and us recording its id gives
back the same object rather than a second one. That matters more here than
usual — a Stripe Price cannot be edited or deleted, so a duplicate is
permanent. Drafts are not synced at all: a version that has promised nothing
has no business in a price list. --dry-run shows what would be created.
The webhook now handles invoice.paid, invoice.payment_failed,
customer.subscription.updated and customer.subscription.deleted. It never
re-derives an amount: the invoice is the authority for what was charged, and
recomputing it from our catalogue would produce a second, disagreeing answer.
A failed payment is recorded and nothing else — Stripe runs the dunning
schedule, and cutting a customer off on the first failure would punish an
expired card as though it were a refusal to pay.
Only a cycle renewal moves the term on. Stripe also sends paid invoices for
prorations and manual charges, and the checkout's own invoice — which is
already in the register as the purchase, and would otherwise double every
customer's first payment.
Stripe does not guarantee delivery order, which is the source of most of the
care here:
- state changes are judged and written in one transaction with the row held,
so two deliveries cannot both pass a check made on a stale copy;
- an older event never overwrites a newer one, with a rank breaking ties
between events sharing a second — their timestamps have one-second
resolution, and a failed attempt and its successful retry routinely do;
- a term is never shortened, and an ended contract is never revived;
- an event for a contract that does not exist yet is HELD and replayed the
moment it appears, rather than acknowledged and forgotten. A cancellation
dropped that way would leave us serving someone who had already left. Held
rows that never match are pruned after a week.
Register entries are keyed by what they are about — the invoice, the attempt,
the subscription — with a unique index doing the work, because a check two
concurrent deliveries can both pass is not idempotency.
PlanChange is now documented as the preview shown before someone confirms, not
the invoice: Stripe's proration accounts for tax, existing credit and the exact
second the change lands, and ours cannot.
Not run against the live account — `stripe:sync-catalogue` creates objects that
cannot be deleted, so that is the owner's call. The dry run lists 12.
457 tests green. Codex review clean after seven rounds.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Two things the contract could not answer on its own: what happened, and what
the customer's whole bill is.
`subscription_records` is append-only, one row per commercial event. Flat
columns for everything searched or relied on as evidence — event, customer,
subscription, plan family and version, term, net/tax/gross, currency, tax rate,
reverse charge, Stripe ids — PLUS a versioned JSON copy of the whole snapshot.
Not JSON alone: you cannot query it, and "the amount is in there somewhere" is
poor evidence. Copied, not joined, so a row still answers after the customer,
the plan or the version have gone.
The flat columns describe the TRANSACTION. Gross is what was actually taken;
net and tax are that gross split by the rate that applied on the day. A
discount lowers the taxable amount rather than creating negative VAT, and a
free checkout is recorded as free instead of as paid in full. What was agreed
sits beside it in the snapshot, so a charge that differs from the catalogue is
preserved as a question rather than reconciled away.
The register refuses to be rewritten, in bulk as well as one row at a time —
model events do not fire for `query()->update()`, which is exactly the shape a
careless data fix takes.
`subscription_addons` carries the owner's rule: a customer's total is their
subscription plus their modules, and all of it is frozen at what was agreed.
Price protection covering only the plan would let a module quietly double for
someone who booked it two years ago. A module they have NOT booked is a sale
still to be made, at today's price — so the catalogue is consulted only for
what is not in this table. Several bookings of one module are summed rather
than reduced to one arbitrary row, or the page and the bill would disagree.
Concurrency: one order books one module, enforced by a unique index rather than
a lookup two retries can both pass; cancellation is an atomic claim; and each
booking commits with its own register entry, so a failure cannot leave a sale
without evidence and a retry that finds the booking cannot skip the event.
Verified in the browser: with the module raised from 29,00 € to 59,00 € in the
catalogue, the customer who booked it still sees 29,00 € and a total of
208,00 €, while a new customer is quoted 59,00 €.
436 tests green. Codex review clean after seven rounds.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The owner can now do from the console what only a config edit could do before:
create a plan line, draft a version, price it, publish it into a window, and
pull a plan out of the shop.
Two pages and one modal, because the catalogue has exactly two levels. The
plan list is a name, a rank and a kill switch. Everything that can be got
wrong — capabilities, prices, windows — lives on the versions, where the page
is built around the one rule that matters: a draft is freely editable, a
published version is not touchable at all. So drafting and publishing are
separate acts, and publishing says plainly that it is final.
The console refuses everything the catalogue refuses, on the form rather than
as a stack trace: an overlapping window, a window that ends before it starts,
a version with no price for a term we sell on, and — new here — a version with
no VM template, which would be bought and then fail provisioning every time.
Numbers are bounded on both sides, because a mistyped price otherwise
overflows the column and answers with a 500 instead of saying which field was
wrong. Performance class and features are picked from the keys we have labels
for; free text would be frozen at publication and shown to customers as a raw
translation key forever.
Concurrency, since two admins share one catalogue: draft numbers are allocated
under a lock on the family, publication is an atomic conditional claim, and
discarding a draft is one statement conditional on it still being a draft —
otherwise a draft published in the meantime could be deleted out from under
the customers now contracted to it.
`plans.manage` (Owner and Admin) guards the pages themselves, not only the
buttons, and the modal authorises itself — prices, drafts and unreleased plans
are not something to leave readable to anyone who types the URL.
Also fixes the shared checkbox, which ticked in the browser's own blue on
every page that used one: a native checkbox ignores text colour and needs
accent-color.
Verified in the browser: withdrawing a plan in the console removes it from the
customer's billing page immediately, and restoring it brings it back. The
public landing page carries no catalogue-driven plan list, so there is nothing
there to hide.
421 tests green. Codex review clean after six rounds.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Plans lived in config/provisioning.php, where the owner cannot reach them and
where a plan has no history. They now live in plan_families / plan_versions /
plan_prices — a name that never moves, what the plan WAS at a point in time,
and a price per version and term with its own Stripe Price id.
- Availability is computed on every read (available_from <= now < until,
half-open, UTC) plus a per-family sales kill switch. Nothing schedules a plan
into or out of sale: a job that fails to run is a plan that silently
misbehaves.
- Overlaps crash rather than resolve. currentVersion() uses sole(), and
scheduling takes a lock on the family and rejects an overlapping window —
two versions on sale at once would decide a customer's price by row order.
- A version is frozen from publication, not from first sale, and so is its
price: a checkout is not instant, and an amount edited between the session
opening and the webhook landing would contract someone at a price they were
never quoted. Repricing publishes a new version, as Stripe requires anyway.
- Neither a published version, its price, nor a family with customers can be
deleted, and a family key cannot be renamed. All of those would null the
provenance off existing contracts.
- Subscriptions and orders record plan_version_id. A historical reference
resolved by plan NAME hands back today's terms, which is the split-brain one
level up. A checkout that carried its version is honoured even after the
window closes — they paid for what they were shown.
Switched atomically and failing closed: config('provisioning.plans') and
plan_features are gone, and nothing falls back to them. A fallback would
resurrect a plan the owner had just switched off. The seed lives in the
migration, and PlanCatalogueTest pins what the config catalogue sold as the
shadow comparison. `php artisan plans:check` reports overlaps, gaps and
missing prices before a customer finds them.
Contract-backed displays, which were reading the live catalogue:
seat limits, the cloud card, the plan card, and admin MRR — the last three now
divide a yearly contract down via Subscription::monthlyPriceCents(), since all
three label the figure per month.
Two recovery gaps closed along the way: the order now commits before the
contract is opened (so a contract failure can never erase the record of a
payment), a Stripe retry repairs a missing contract and restarts a run stranded
with no_subscription, and TickProvisioning sweeps runs left pending by a crash
rather than only running/waiting ones.
402 tests green. Codex review clean after thirteen rounds. Verified in the
browser: portal, billing and console render unchanged off the new catalogue.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
The pipeline re-resolved config('provisioning.plans') by order.plan, so the
subscription snapshot protected a customer's price but not their machine:
shrinking a plan resized an existing customer's VM on its next run. Nothing
created a subscription either, so closing this meant opening the contract at
purchase and pointing provisioning at it.
- OpenSubscription freezes the catalogue onto a subscription when a checkout
is paid; StartCustomerProvisioning calls it inside the order transaction.
- CustomerStep::plan() reads the frozen snapshot. ValidateOrder and
ReserveResources fail closed with no_subscription rather than falling back
to the catalogue, which is the bug itself.
- template_vmid joins the snapshot so a re-clone cannot pick up a blueprint
published after the sale. Deliberately outside FROZEN: it is how we build
the machine, not a term the customer is owed, and a dead template must be
replaceable without cancelling a contract.
- TrafficMeter reads the allowance off the contract too — cutting a plan's
traffic was otherwise enough to start throttling someone who bought more.
- The migration backfills contracts for orders that already bought something,
reconstructed from what was actually delivered where an instance exists,
and adopts an existing order-less contract instead of opening a second.
Orders paid in a currency the catalogue cannot price get none, matching the
checkout path.
price_cents stays the catalogue's NET price, which is what PlanChange
prorates against — not Order::amount_cents, which holds Stripe's GROSS total.
Reconciling the two belongs to the proof register and Stripe (phases 4/5).
Also pins STRIPE_WEBHOOK_SECRET blank in phpunit.xml: the operator's real
secret was reaching the suite from .env and rejecting every unsigned test
payload, which is why 7 webhook tests failed before any of this.
Verified in the browser: with team traffic cut from 3000 to 500 GB in the
catalogue, the customer's portal still shows 3 TB.
373 tests green. Codex review clean after three rounds.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
A cancelled subscription still reported an upgrade as allowed and priced it, so
a caller trusting that would have provisioned and billed a customer who had
already left. And any term string other than the two we support was silently
priced monthly while keeping the unknown value — a subscription whose price and
billing period disagree. Both are refused now.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Flooring the remaining time made an upgrade with under a day left cost nothing,
and an upgrade requested after the period had ended cost nothing while being
applied immediately — the bigger plan for free. Remaining time now rounds up
while any service is left, and an expired period defers the change to the next
term instead of pricing it at zero.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Once the term is over, the downgrade has to be allowed — otherwise the job that
is supposed to carry it out never can, and the change waits forever for a date
that has already passed.
And a grandfathered plan can be cheaper than the smaller plan costs today, which
made the goodwill credit negative: an invoice for the privilege of downgrading.
Clamped to zero.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
With grandfathered prices the comparison inverts: a business plan bought when
it cost less than today's team plan would have treated a move to team as an
upgrade — charged immediately, while the customer loses resources. The plan's
rank is frozen with the rest of the snapshot and decides the direction; prices
only decide the amount.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The plan catalogue describes what we sell today; a customer who signed up last
year bought last year's terms. Every commercially relevant condition — price,
quotas, seats, the hardware behind the plan — is now frozen onto a subscription
at signup, and the model refuses to let any of it be rewritten afterwards. A
price rise applies to new subscriptions and cannot reach back into an existing
contract.
PlanChange holds the two rules, computed against the frozen price rather than
today's catalogue:
- Upgrading is immediate and pro rata: the new plan for the days left in the
paid term, minus what the old plan was worth over those same days. On the
last day of a month that is one day's difference, not a month's.
- Downgrading waits for the end of the term. A yearly customer bought a year
and can move down when it is up; a month is a month. A mid-term downgrade is
a goodwill decision, not a self-service button, and its credit covers only
the unused part of the difference.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
A timestamp alone said "some number was checked once": editing the field left
it intact, so a customer could swap a verified foreign VAT ID for any
plausible-looking one and keep zero-VAT pricing. The verified value is stored
and compared, which makes the rule self-enforcing — no writer has to remember
to clear a flag, and there are several writers.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Any non-empty string starting with two characters other than AT switched the
customer to reverse charge — typing "XX123" was a 20 % discount. Reverse charge
now requires a VAT ID that is verified, belongs to an EU member state other than
ours, and looks like a VAT number at all. Unverified is the normal state and
means the domestic rate: over-collecting is correctable, under-collecting is a
tax liability.
Changing the number clears its verification. Verification itself (VIES) is not
built yet, so reverse charge stays off until someone confirms a number — which
is the safe direction to be wrong in.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Codex was right that this could misstate real charges: an EU business with a
VAT ID registered in another country is billed under reverse charge, and we
were adding 20 % Austrian VAT to their total anyway. TaxTreatment resolves it
from the customer's VAT ID, and the whole page — cart, plan cards, add-on
cards — now states one treatment instead of contradicting itself.
Explicitly NOT handled: cross-border sales to private individuals, which are
taxed at the buyer's national rate under OSS. That needs a maintained rate
table and a tax adviser, not a guess, so those fall back to the domestic rate —
over-collecting rather than under-collecting.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Impersonation borrows the customer's portal session; this is access to their
installation, which is a different thing and now a different button.
Nextcloud has no passwordless admin jump, so this does the only honest thing it
offers: it resets OUR managed admin account inside that installation and hands
the credentials over once. The customer's own accounts are untouched, and the
next request sets a new password again.
- New capability instances.adminlogin, Owner and Admin only — stronger than
impersonation, because it hands over control rather than a session.
- The operator's own password is required every time, rate-limited: taking over
a customer's installation is not something an unattended browser should manage
on its own.
- The reset runs on the provisioning worker (it owns the tunnel and the Proxmox
credentials); the console polls a handoff token, so the credentials never
enter a Livewire snapshot.
- A silent instance is reported as such instead of appearing to succeed.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
A lost response, or a retry after a later step failed, made every further
attempt a 404 — and the host impossible to purge.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Swallowing it and carrying on deleted the row that held the only reference to
that record, publishing the machine's management address for good. The purge now
fails instead — and is retried, since it re-reads the host and its other steps
are idempotent — so a broken DNS provider becomes a visible failed job rather
than a silent leak.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
fsn-01.node.clupilot.com, numbered per datacenter and never reused — removing a
host must not renumber its neighbours onto its name, so the number is stored
rather than derived.
The record points at the host's WireGuard address, not its public IP: the name
exists so an operator can reach a host by name over the VPN, and publishing a
Proxmox host's public address would hand every scanner a target, which is the
one thing this network design avoids.
DNS is convenience, not a prerequisite: a failure logs an event and lets the
onboarding finish rather than stranding a host that is otherwise ready.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Customers can now see what they have used and what is left, and the service
slows down rather than stopping when the allowance is gone — a slow Nextcloud
gets a top-up, a dead one gets a cancellation.
- instance_traffic keeps one row per instance per month. Proxmox counters are
cumulative since the VM last started, so usage is the difference between two
samples, and a counter that went backwards means a restart, not a refund.
- Outbound is what counts: inbound is free at our providers and egress is what
Hetzner's 20 TB per server applies to.
- CollectInstanceTraffic samples every 15 minutes, warns once per threshold
(80/95 %) rather than on every run, and at 100 % limits the VM's NIC via
Proxmox — released again as soon as the customer tops up or the month rolls
over.
- The dashboard gets a full-width band (it throttles the service, so it is not
a tile among tiles) with the top-up offer right next to the warning.
- Bytes are formatted in SI units now: allowances are computed in SI, so
dividing by 1024 made a 1000 GB plan read as "931 GB".
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Two modules is below the minimum, and against a bordered card some readers fail
to locate the symbol at all.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Reworked after a design consultation with Codex, which pushed back on my first
proposal in three useful ways.
Ownership and rights:
- vpn.manage split into vpn.view.all and vpn.manage.all. Seeing an access is
not managing it, and neither is holding its private key.
- Record-level rules live in VpnPeerPolicy, not in permissions: an access
belongs to a person, and ownership is what grants sight of it. Every operator
reaches the page, but sees only their own unless they may see all.
- Issuing an access is not self-service — it reaches the management network, so
it needs vpn.manage.all even for oneself.
- New Developer role: sees everything, manages nothing. Writing code does not
imply authority over other people's access.
- kind (staff|host|system) replaces a null user_id that had to mean two
different things at once.
Config storage, opt-in per access:
- Downloading is owner-only — explicitly NOT for view.all or manage.all. An
admin who needs access revokes this one and issues their own, which keeps the
record of who holds what honest.
- The password is asked on EVERY retrieval, rate-limited. Laravel's
password.confirm keeps a 15-minute session stamp, which would authorise
unlimited later downloads from an unattended browser.
- Stored under VPN_CONFIG_KEY, not APP_KEY: a leaked application key must not
also hand over the management network. Purged on revocation and when a staff
member is revoked — console taken away, tunnel left open was the worst case.
- The plaintext never enters a Livewire snapshot (the page polls every five
seconds); the component carries an opaque handle instead.
Also: copy button works without HTTPS again (navigator.clipboard only exists in
a secure context, so over http it silently did nothing), plus config download
as a file and a QR code for the mobile apps.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Two lifecycle holes Codex found in the new VPN management:
1. Delete removed the row before the hub knew. If the removal job was delayed
or failed, SyncVpnPeers saw a peer it did not recognise and adopted it back
as a live access — silently restoring what an operator had just revoked, and
with no row left to revoke it again. Deletion is now a soft-delete
tombstone: the row survives until the hub confirms the peer is gone, the
sync retries the removal instead of adopting, and the tombstone is purged
only once the peer is really absent. It also keeps the key and the tunnel
address reserved meanwhile, so neither is handed out twice.
2. ApplyVpnPeer applied the state captured at dispatch. A retried block job
could therefore undo a later unblock, and nothing would repair it — the sync
only observes state, it never re-applies intent. The job now resolves the
current desired state from the row and treats its payload as a fallback for
the case where the row is already gone.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The console can now create, block and remove VPN accesses, and shows who is
actually connected — traffic counters, source endpoint and last handshake.
Design notes:
- The web container has no wg0, so the page never talks to WireGuard. Live
state is copied in by SyncVpnPeers on the provisioning queue (the only worker
whose container owns the interface); the page polls the database and merely
nudges that job, throttled so many open tabs cannot flood the queue.
- enabled (operator intent) and present (observed on the hub) are stored
separately, so a sync can never quietly undo a block and drift stays visible
as "wird angewendet".
- The sync adopts peers the host pipeline registered, naming them after their
host — otherwise "who is on the VPN" would have blind spots.
- Keypairs are generated in PHP via libsodium rather than shelling out to
wg genkey (no interface in this container, and it keeps generation testable).
The private key is shown once and never stored.
- allocateIp() now also considers vpn_peers, which would otherwise be handed a
tunnel address a host already holds.
- vpn.manage is a new capability held by Owner/Admin only, and it hides the nav
entry too — a VPN access reaches the management network.
Verified end to end against the real hub, not just mocks: created an access in
the browser, connected with the generated config, watched the console flip to
"Verbunden" with real counters, then blocked it and confirmed the peer was
gone from wg0 and the client could no longer handshake.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Kuma has no write REST API (monitor CRUD is Socket.IO only), so docker/kuma-bridge
translates the exact generic REST contract HttpMonitoringClient already speaks —
no PHP client change needed. Opt-in compose profile 'monitoring'.
Verified end-to-end against a real Uptime Kuma 1.x:
create -> id, create again -> same id (idempotent), list, status, delete
and PHP MonitoringClient -> bridge -> Kuma round-trip.
The e2e run caught a real bug: add_monitor takes 'maxretries', not 'retries'.
Monitoring is now observability, not a delivery gate:
- RegisterMonitoring retries MONITORING_ATTEMPTS times on an outage, then
continues degraded with a visible 'info' event
- RunAcceptanceChecks no longer fails when monitoring isn't green (a fresh Kuma
monitor legitimately reports 'pending' — confirmed in the e2e run); it records
the gap instead. MONITORING_REQUIRED=true restores strict gating.
- docs/monitoring-uptime-kuma.md documents setup, failure behaviour, alternatives
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
- Clone recovery: once the lock clears but the task ref is lost, destroy the
possibly-incomplete VM and re-clone instead of advancing onto it.
- applyFirewall clears existing rules before adding, so retries don't accumulate
duplicate Proxmox firewall entries.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
- Nextcloud: parse occ status JSON (installed + not in maintenance).
- Admin: query occ user:info for the account.
- Monitoring: MonitoringClient::isHealthy checks the provider, not the local row.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
TraefikWriter now targets the host that serves the traffic (DNS points at it):
SshTraefikWriter SSHes in and writes the file-provider YAML there. Interface
takes the traffic host + guest backend.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>