2 Commits (feat/mailboxes)
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3699c7cdb9 |
Ask the tunnel gateway where it actually listens
tests / pest (push) Successful in 7m15s
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tests / assets (push) Successful in 20s
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tests / release (push) Successful in 5s
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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> |
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a58faf3f85 |
Manage the Stripe key from the console, behind a password and a test
tests / pest (push) Successful in 8m56s
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tests / assets (push) Successful in 20s
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tests / release (push) Successful in 4s
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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> |