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Commits
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90e372d6bd |
feat(admin): move a customer's account to an address they can reach (#337)
The third step of the only recovery route a customer who has lost their mailbox has. The first two are contacting the shop and being verified against order history. The third had no implementation, so the answer was a hand-written database edit that left no record of who did it or why. The thing to say plainly, because everything here follows from it: this operation and an account takeover are the same operation. They differ only in whether the verification was sound, and nothing in the software can check that. What the software can do is make the change recorded, announced, and complete in its effects. Recorded. The endpoint refuses without a written reason, and the reason is stored against the account. That row is the only thing that tells a genuine recovery from a takeover afterwards, which is why a hand edit was never acceptable and why the field is required by the server rather than merely collected by the form. It is never shown to the customer: it is a note about how somebody was verified and can name things the customer should not be handed back. There is no column for who did it. Admin access is one shared gate secret in front of a single operator, so such a column could only ever hold a constant, and a constant dressed up as an identity is worse than an honest absence. Announced, to the address being replaced. If the recovery was sound that reaches nobody and costs nothing. If it was not, it reaches the real owner, who is the only person in the world who can say so, and that is the only reason this endpoint is safe to have at all. Its own template rather than the self-service one, because that copy says to contact us if you did not make this change, and here somebody already did — the sentence would be addressed to the customer who just did the thing it asks for, while the person who needs to act on it did nothing. The new address is marked unverified and sent a confirmation link. Somebody reading an address out over the phone has not demonstrated they can receive mail at it, and that is the commonest way this goes wrong harmlessly. Complete in its effects. The move signs the customer out everywhere, removes every passkey, and cancels reset links already sent. That is the conclusion #42 reached for password reset, and it applies here with more force: somebody the system cannot identify asked for this change, so a session or a credential surviving it is one the new owner cannot see and cannot revoke, and a reset link sitting in the mailbox being taken away would let whoever still reads it take the account straight back. The password is left alone. What the customer lost was the mailbox, so demanding a new one adds a step for no gain. The verification-email helper moved out of the customers route into its own module, for the reason session creation moved out for passkeys: two implementations that agree today are two that can be changed one at a time, and the one that gets forgotten is whichever the manual testing does not exercise. This path runs perhaps once a year, so it is exactly the one that would rot. The admin drawer gains the action next to the address rather than among the account controls, because it is a thing done to that field by someone already looking at it. It leads with the warning instead of burying it. The history of moves sits on the same drawer and renders nothing at all for the overwhelming majority of customers, who have never been moved. Verified: backend tsc clean for src and tests, 526 unit tests pass, lint clean apart from warnings that predate this branch; frontend tsc, lint and build clean. The integration suite needs a database this machine has no Docker for. It also cannot be proven by CI right now — run 917 has been hung since it started and 24 runs are queued behind it, which is the same hang #154 identifies as the source of the leftover Postgres containers. Closes #337 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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6d320fd867 |
feat(passkeys): schema, dependency and per-environment Relying Party (#37)
Groundwork only. Nothing reads any of this yet, and no behaviour changes. The Relying Party ID is derived from PUBLIC_URL rather than written down, because it is the one value in this feature that cannot be corrected afterwards: a credential is bound to it permanently, and a wrong one surfaces only as a customer unable to sign in with a passkey that no longer matches anything. PUBLIC_URL is what every customer-facing link is already built from, so the ID is correct wherever those links are, and wrong only where they were already wrong. hostname rather than host, so a port cannot reach an ID that must not contain one. Local development is the exception the issue's table did not cover. envValidation requires PUBLIC_URL only when SMTP is configured, so a local setup that cannot send mail legitimately has none and falls back to localhost, which browsers treat as a secure context. Two origins there rather than one: the app is served by Vite on 5173 during development and by Express on 3000 once built, and those differ only by port, which is not part of the RP ID. The challenge table is separate from customer_tokens, and the reason is structural rather than preference. customer_tokens.customer_id is NOT NULL, and an authentication challenge is issued before anyone is identified — a discoverable-credential sign-in has no customer to attach to at the moment the challenge exists. Storing it there would mean making that column nullable for every other kind of token. Two of the issue's open decisions are deliberately not made here, because they belong to the ceremony that enforces them rather than to the schema. What to do when the signature counter fails to increase is #39's: many synced passkeys report zero forever, so treating a non-increase as cloning is wrong for them and right for a hardware key, and this only has to hold the value. Whether a disabled account can authenticate is also #39's, and the schema takes the position that it should not cost the customer their devices: credentials survive disabling and are refused at the ceremony, so re-enabling does not mean re-registering everything. Deletion is different and is settled here — credentials cascade with the customer, since one outliving its owner could authenticate as an account that no longer exists. signature_counter is BIGINT because the spec allows a 32-bit unsigned value, which overflows a signed INTEGER at half its range. That is the first bigint column in this schema, so the generated mirror gains the Int8 alias with it. Both tables are added to resetDb's TRUNCATE list and to REQUIRED_TABLES, and the schema mirror is updated by hand to match what kysely-codegen emits — placement and all, so a real regenerate produces no diff. Skipping either is how #56 turned a green local run into a red main; the mirror drift guard exists precisely to catch it, and schemaLoss's count moves from 18 to 20 with them. Verified: tsc clean for src and tests, lint 0 errors with no new warnings, 494 unit tests across 34 suites including nine new ones for the RP derivation, frontend build green, and the migration parses. Not verified: the migration has not been run against a database, and the integration suite needs one this machine cannot provide. Worth knowing before this goes further: #313 changes the domain, and every passkey registered before that cutover stops working at it. This code needs no change — it follows PUBLIC_URL — but the credentials do not survive. That is free while production is not live and nobody holds one, and it stops being free the day the shop opens. Closes #37 Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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813216f971 |
test(integration): say so when the database loses its schema (#154)
When the integration run lost its schema partway through, it presented as 36 assertion errors about categories, price filters and favourite notifications. The real message — `relation "items" does not exist` — was further down the same log, and hours went into chasing the assertions instead. The cause is still open and needs runner-side evidence this cannot reach: whether the Postgres service container is being recreated mid-run, which would come back with an empty data directory. This is the half that can be fixed from here — whatever the cause, the next occurrence reads as "the database lost its schema" on the first line, names which tables are gone, and says that nothing in the suite drops tables so the database was replaced underneath the run. globalSetup asserts once after migrating, which establishes the fact the rest of the run depends on. Without it, a run that never had a schema and one that lost it midway are indistinguishable from the failures they produce. resetDb checks only when its TRUNCATE fails, rather than on every reset. It runs in a beforeEach several hundred times a suite, and an extra round trip each time to guard against a rare event would be paying continuously for it. When the schema is fine, an unrelated failure is passed through untouched rather than dressed up as a schema problem. The diagnostic is tested against a database that has actually lost its schema, not reasoned about. An earlier attempt dropped the schema before the run and proved nothing — globalSetup re-migrates, so it repaired itself and every test passed. The suite drops and rebuilds around each case and restores in afterAll; the full integration suite was then run twice to confirm the restore holds for everything ordered after it. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |