ec27228a8e
Em dashes (—) and en dashes (–) had spread across comments, docs, tests, and a few UI strings, reading as AI-generated boilerplate rather than house style. Replaced each with punctuation matching its context: colon for explanatory clauses, comma for asides, plain hyphen for numeric/legal ranges (e.g. "21-23§"), "to"/"till" for date ranges, parentheses for paired-dash asides. messages/en.json and messages/sv.json were fixed by hand together to keep sv/en in sync. Left untouched where the dash is the functional subject rather than decorative punctuation: date-range-parser.ts's separator regex, charset-repair.ts's CP1252 byte-mapping table (and its test), the SIE encoding mojibake docs, generic-csv.ts's minus-sign normalizer, the agent system-prompt files that already instruct against em dashes, and a golden iXBRL test fixture compared byte-for-byte. Also fixes two bugs surfaced along the way: an off-by-one in ApiKeysPanel's scope-label split (a leftover from an earlier partial pass), and a charset-repair test that had lost the literal en-dash it exists to verify. Regenerated the agent atom seed migration (skills:generate) since 27 SKILL.md files changed. Added a CLAUDE.md rule against em/en dashes, with an explicit carve-out for the functional-dash cases above. Co-authored-by: Claude Sonnet 5 <noreply@anthropic.com>
78 lines
2.3 KiB
TypeScript
78 lines
2.3 KiB
TypeScript
import crypto from 'crypto'
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/**
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* AES-256-GCM encryption for long-lived refresh tokens stored in
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* extension_data. Key is derived from SUPABASE_SERVICE_ROLE_KEY (same
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* trust boundary as the database itself: anyone who can exfiltrate the
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* key can already read the data).
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*/
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const ALGORITHM = 'aes-256-gcm'
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function getKey(): Buffer {
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const secret = process.env.SUPABASE_SERVICE_ROLE_KEY
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if (!secret) throw new Error('SUPABASE_SERVICE_ROLE_KEY is required')
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// Scope the key with a purpose string so this can't be confused with
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// oauth-codes.ts's derivation if both are ever compromised together.
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return crypto
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.createHash('sha256')
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.update('cloud-backup:v1:' + secret)
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.digest()
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}
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export function encryptToken(plaintext: string): string {
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const key = getKey()
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const iv = crypto.randomBytes(12)
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const cipher = crypto.createCipheriv(ALGORITHM, key, iv)
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const encrypted = Buffer.concat([cipher.update(plaintext, 'utf8'), cipher.final()])
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const tag = cipher.getAuthTag()
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return Buffer.concat([iv, tag, encrypted]).toString('base64url')
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}
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export function decryptToken(ciphertext: string): string {
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const key = getKey()
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const combined = Buffer.from(ciphertext, 'base64url')
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const iv = combined.subarray(0, 12)
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const tag = combined.subarray(12, 28)
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const encrypted = combined.subarray(28)
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const decipher = crypto.createDecipheriv(ALGORITHM, key, iv)
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decipher.setAuthTag(tag)
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const decrypted = Buffer.concat([decipher.update(encrypted), decipher.final()])
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return decrypted.toString('utf8')
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}
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/**
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* Short-lived signed state parameter for OAuth CSRF protection.
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*
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* The state encodes `{userId, companyId, exp}` and is verified on the
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* callback. Stateless (no DB round-trip) and self-expiring.
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*/
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const STATE_TTL_MS = 10 * 60 * 1000
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interface StatePayload {
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u: string
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c: string
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e: number
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}
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export function createOAuthState(userId: string, companyId: string): string {
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const payload: StatePayload = {
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u: userId,
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c: companyId,
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e: Date.now() + STATE_TTL_MS,
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}
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return encryptToken(JSON.stringify(payload))
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}
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export function verifyOAuthState(
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state: string
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): { userId: string; companyId: string } | null {
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try {
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const payload = JSON.parse(decryptToken(state)) as StatePayload
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if (Date.now() > payload.e) return null
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return { userId: payload.u, companyId: payload.c }
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} catch {
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return null
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}
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}
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