feat: scope passkey slots to proven owners

This commit is contained in:
2026-08-22 16:54:49 +02:00
parent d9be457221
commit 12e4ec9199
6 changed files with 916 additions and 40 deletions
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// Legacy passkey slots may be adopted only after another unlock path has
// proven and stamped the saved wallet owner. The linking key is checked
// against that marker before markerless slots are changed under the lock.
import {linkingPubKeyHex, savedKeyOwnerId} from './keys'
import {adoptLegacyPasskeySlots, PASSKEY_SLOTS_STORAGE_KEY} from './storage/passkeySlots'
import {withStorageLock} from './storageLock'
export const migrateLegacyPasskeySlots = async (linkingKey: Uint8Array): Promise<number> => {
const ownerId = savedKeyOwnerId()
if (ownerId === null || linkingPubKeyHex(linkingKey) !== ownerId) {
throw new Error('Legacy passkey migration requires a proven owner.')
}
return withStorageLock(PASSKEY_SLOTS_STORAGE_KEY, () => adoptLegacyPasskeySlots(ownerId))
}
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// Passkey engine tests. The WebAuthn ceremony is faked by an injected
// authenticator whose PRF output is HMAC-SHA256(credential secret, salt) -
// the real extension's exact contract: deterministic per credential+salt,
// unguessable without the authenticator. Everything except a real
// authenticator's touch is covered here.
import {beforeEach, describe, expect, it} from 'vitest'
import {hmac} from '@noble/hashes/hmac.js'
import {sha256} from '@noble/hashes/sha2.js'
import {bytesToHex} from '@noble/hashes/utils.js'
import type {CeremonyCredential, PasskeyCredentials} from './passkeys'
import {
derivePasskeyWrapKey,
getPasskeyPrfOutput,
hasPasskeySlots,
migrateLegacyPasskeySlots,
passkeySupported,
readPasskeySlots,
registerPasskey,
removePasskey,
rewrapAllSlots,
unlockWithPasskey,
unwrapLinkingKeyWithPrf,
wrapLinkingKeyWithPrf,
} from './passkeys'
import {
decryptRecord,
decryptSavedLinkingKey,
deriveBearerAesKey,
ensureSavedKeyOwner,
encryptRecord,
linkingPubKeyHex,
savedKeyOwnerId,
saveLinkingKey,
} from './keys'
import {parseJsonObject, parseJsonObjectArray, stubLocalStorage} from './test-utils'
const LINKING_KEY = new Uint8Array(32).fill(7)
const OTHER_LINKING_KEY = new Uint8Array(32).fill(9)
const PRF_OUTPUT = new Uint8Array(32).fill(3)
const OTHER_PRF_OUTPUT = new Uint8Array(32).fill(4)
const toBytes = (source: BufferSource): Uint8Array =>
source instanceof ArrayBuffer
? new Uint8Array(source)
: new Uint8Array(source.buffer, source.byteOffset, source.byteLength)
// Fake platform authenticator: holds credentials (id -> secret), evaluates
// PRF as HMAC-SHA256(secret, salt). Flags emulate the authenticator quirks
// found in the wild: PRF unsupported, results only on get, results never.
class FakeAuthenticator implements PasskeyCredentials {
// id typed Uint8Array<ArrayBuffer>: rawId must satisfy BufferSource
private held = new Map<string, {id: Uint8Array<ArrayBuffer>; secret: Uint8Array}>()
supportsPrf = true
prfResultsOnCreate = true
prfResultsOnGet = true
createCalls = 0
getCalls = 0
create = async (options?: CredentialCreationOptions): Promise<CeremonyCredential | null> => {
this.createCalls += 1
const salt = options?.publicKey?.extensions?.prf?.eval?.first
const id = crypto.getRandomValues(new Uint8Array(16))
const secret = crypto.getRandomValues(new Uint8Array(32))
this.held.set(bytesToHex(id), {id, secret})
return {
type: 'public-key',
rawId: id,
getClientExtensionResults: () => ({
prf:
this.supportsPrf && salt
? {
enabled: true,
...(this.prfResultsOnCreate ? {results: {first: this.prf(secret, salt)}} : {}),
}
: {},
}),
}
}
// answers with the first allowed credential it holds, like a real
// authenticator picking among allowCredentials; null when it holds none
get = async (options?: CredentialRequestOptions): Promise<CeremonyCredential | null> => {
this.getCalls += 1
const pk = options?.publicKey
const allowed = (pk?.allowCredentials ?? []).map((d) => bytesToHex(toBytes(d.id)))
const match = allowed.find((hex) => this.held.has(hex))
const held = match ? this.held.get(match) : undefined
if (!held) return null
const salt = pk?.extensions?.prf?.eval?.first
return {
type: 'public-key',
rawId: held.id,
getClientExtensionResults: () => ({
prf:
salt && this.prfResultsOnGet
? {enabled: true, results: {first: this.prf(held.secret, salt)}}
: {},
}),
}
}
// simulates the passkey's secret changing underneath a slot (credential
// re-created on the authenticator while the slot stayed behind)
rotateSecret = (credentialId: string): void => {
const held = this.held.get(credentialId)
if (held) held.secret = crypto.getRandomValues(new Uint8Array(32))
}
private prf = (secret: Uint8Array, salt: BufferSource): Uint8Array<ArrayBuffer> => {
// set into a fresh array: hmac returns Uint8Array<ArrayBufferLike>,
// which BufferSource rejects
const out = new Uint8Array(32)
out.set(hmac(sha256, secret, toBytes(salt)))
return out
}
}
const readRawSlots = (): Array<Record<string, unknown>> =>
parseJsonObjectArray(localStorage.getItem('sattle_passkey_slots') ?? '[]')
const writeRawSlots = (slots: Array<Record<string, unknown>>): void => {
localStorage.setItem('sattle_passkey_slots', JSON.stringify(slots))
}
const removeSavedOwnerMarker = (): void => {
const stored = parseJsonObject(localStorage.getItem('sattle_linking_key') ?? '{}')
delete stored.ownerId
delete stored.version
localStorage.setItem('sattle_linking_key', JSON.stringify(stored))
}
beforeEach(async () => {
stubLocalStorage()
await saveLinkingKey(LINKING_KEY)
})
describe('slot ownership', () => {
it('binds a new slot to the proven saved wallet owner', async () => {
// Given the saved wallet has a canonical owner marker
const auth = new FakeAuthenticator()
// When its linking key registers a passkey
const slot = await registerPasskey(LINKING_KEY, {credentials: auth})
// Then the slot carries that same canonical owner
expect(slot.ownerId).toBe(linkingPubKeyHex(LINKING_KEY))
expect(readPasskeySlots()).toEqual([slot])
})
it('filters foreign, malformed, and unowned slots from reads and availability', async () => {
// Given one valid current-owner slot plus copies with untrusted owners
const auth = new FakeAuthenticator()
const current = await registerPasskey(LINKING_KEY, {credentials: auth})
const foreign = {
...current,
credentialId: '11'.repeat(16),
ownerId: linkingPubKeyHex(OTHER_LINKING_KEY),
}
const malformed = {
...current,
credentialId: '22'.repeat(16),
ownerId: 'not-an-owner',
}
const unowned = {
credentialId: '33'.repeat(16),
hkdfSalt: current.hkdfSalt,
iv: current.iv,
wrappedKey: current.wrappedKey,
createdAt: current.createdAt,
}
writeRawSlots([foreign, malformed, unowned])
// When the current wallet asks for its slots
const slots = readPasskeySlots()
// Then no foreign or unproven slot is exposed
expect(slots).toEqual([])
expect(hasPasskeySlots()).toBe(false)
})
it('does not offer markerless slots for passkey-first unlock', async () => {
// Given a legacy slot and a saved key with no proven owner marker
const auth = new FakeAuthenticator()
await registerPasskey(LINKING_KEY, {credentials: auth})
const legacy = readRawSlots()
delete legacy[0]?.ownerId
delete legacy[0]?.version
writeRawSlots(legacy)
removeSavedOwnerMarker()
// When passkey unlock is attempted before another proof path
const attempt = unlockWithPasskey({credentials: auth})
// Then it fails before asking the authenticator
await expect(attempt).rejects.toThrow('No passkeys')
expect(auth.getCalls).toBe(0)
expect(hasPasskeySlots()).toBe(false)
})
it('does not auto-adopt legacy slots when a foreign wallet is saved', async () => {
// Given markerless residue from the old wallet
const auth = new FakeAuthenticator()
await registerPasskey(LINKING_KEY, {credentials: auth})
const legacy = readRawSlots()
delete legacy[0]?.ownerId
delete legacy[0]?.version
writeRawSlots(legacy)
// When a different wallet is installed with its canonical owner
await saveLinkingKey(OTHER_LINKING_KEY)
// Then the residue stays unowned and unavailable to the new wallet
expect(readPasskeySlots()).toEqual([])
expect(hasPasskeySlots()).toBe(false)
expect(readRawSlots()).toEqual(legacy)
})
it('adopts legacy slots only after the saved wallet owner is proven', async () => {
// Given a legacy encrypted wallet and its markerless passkey slot
const auth = new FakeAuthenticator()
await registerPasskey(LINKING_KEY, {credentials: auth})
const legacy = readRawSlots()
delete legacy[0]?.ownerId
delete legacy[0]?.version
writeRawSlots(legacy)
await saveLinkingKey(LINKING_KEY, 'correct horse')
removeSavedOwnerMarker()
// When migration is attempted before and then after password proof
await expect(migrateLegacyPasskeySlots(LINKING_KEY)).rejects.toThrow('proven owner')
const provenKey = await decryptSavedLinkingKey('correct horse')
ensureSavedKeyOwner(provenKey)
await migrateLegacyPasskeySlots(provenKey)
// Then the same slot is stamped once for that proven owner and unlocks
expect(savedKeyOwnerId()).toBe(linkingPubKeyHex(LINKING_KEY))
expect(readPasskeySlots()).toHaveLength(1)
expect(readPasskeySlots()[0]?.ownerId).toBe(linkingPubKeyHex(LINKING_KEY))
await expect(unlockWithPasskey({credentials: auth})).resolves.toEqual(LINKING_KEY)
})
})
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// Passkey engine tests. The WebAuthn ceremony is faked by an injected
// authenticator whose PRF output is HMAC-SHA256(credential secret, salt) -
// the real extension's exact contract: deterministic per credential+salt,
// unguessable without the authenticator. Everything except a real
// authenticator's touch is covered here.
import {beforeEach, describe, expect, it} from 'vitest'
import {hmac} from '@noble/hashes/hmac.js'
import {sha256} from '@noble/hashes/sha2.js'
import {bytesToHex} from '@noble/hashes/utils.js'
import type {CeremonyCredential, PasskeyCredentials} from './passkeys'
import {
derivePasskeyWrapKey,
getPasskeyPrfOutput,
hasPasskeySlots,
migrateLegacyPasskeySlots,
passkeySupported,
readPasskeySlots,
registerPasskey,
removePasskey,
rewrapAllSlots,
unlockWithPasskey,
unwrapLinkingKeyWithPrf,
wrapLinkingKeyWithPrf,
} from './passkeys'
import {
decryptRecord,
decryptSavedLinkingKey,
deriveBearerAesKey,
ensureSavedKeyOwner,
encryptRecord,
linkingPubKeyHex,
savedKeyOwnerId,
saveLinkingKey,
} from './keys'
import {parseJsonObject, parseJsonObjectArray, stubLocalStorage} from './test-utils'
const LINKING_KEY = new Uint8Array(32).fill(7)
const OTHER_LINKING_KEY = new Uint8Array(32).fill(9)
const PRF_OUTPUT = new Uint8Array(32).fill(3)
const OTHER_PRF_OUTPUT = new Uint8Array(32).fill(4)
const toBytes = (source: BufferSource): Uint8Array =>
source instanceof ArrayBuffer
? new Uint8Array(source)
: new Uint8Array(source.buffer, source.byteOffset, source.byteLength)
// Fake platform authenticator: holds credentials (id -> secret), evaluates
// PRF as HMAC-SHA256(secret, salt). Flags emulate the authenticator quirks
// found in the wild: PRF unsupported, results only on get, results never.
class FakeAuthenticator implements PasskeyCredentials {
// id typed Uint8Array<ArrayBuffer>: rawId must satisfy BufferSource
private held = new Map<string, {id: Uint8Array<ArrayBuffer>; secret: Uint8Array}>()
supportsPrf = true
prfResultsOnCreate = true
prfResultsOnGet = true
createCalls = 0
getCalls = 0
create = async (options?: CredentialCreationOptions): Promise<CeremonyCredential | null> => {
this.createCalls += 1
const salt = options?.publicKey?.extensions?.prf?.eval?.first
const id = crypto.getRandomValues(new Uint8Array(16))
const secret = crypto.getRandomValues(new Uint8Array(32))
this.held.set(bytesToHex(id), {id, secret})
return {
type: 'public-key',
rawId: id,
getClientExtensionResults: () => ({
prf:
this.supportsPrf && salt
? {
enabled: true,
...(this.prfResultsOnCreate ? {results: {first: this.prf(secret, salt)}} : {}),
}
: {},
}),
}
}
// answers with the first allowed credential it holds, like a real
// authenticator picking among allowCredentials; null when it holds none
get = async (options?: CredentialRequestOptions): Promise<CeremonyCredential | null> => {
this.getCalls += 1
const pk = options?.publicKey
const allowed = (pk?.allowCredentials ?? []).map((d) => bytesToHex(toBytes(d.id)))
const match = allowed.find((hex) => this.held.has(hex))
const held = match ? this.held.get(match) : undefined
if (!held) return null
const salt = pk?.extensions?.prf?.eval?.first
return {
type: 'public-key',
rawId: held.id,
getClientExtensionResults: () => ({
prf:
salt && this.prfResultsOnGet
? {enabled: true, results: {first: this.prf(held.secret, salt)}}
: {},
}),
}
}
// simulates the passkey's secret changing underneath a slot (credential
// re-created on the authenticator while the slot stayed behind)
rotateSecret = (credentialId: string): void => {
const held = this.held.get(credentialId)
if (held) held.secret = crypto.getRandomValues(new Uint8Array(32))
}
private prf = (secret: Uint8Array, salt: BufferSource): Uint8Array<ArrayBuffer> => {
// set into a fresh array: hmac returns Uint8Array<ArrayBufferLike>,
// which BufferSource rejects
const out = new Uint8Array(32)
out.set(hmac(sha256, secret, toBytes(salt)))
return out
}
}
const readRawSlots = (): Array<Record<string, unknown>> =>
parseJsonObjectArray(localStorage.getItem('sattle_passkey_slots') ?? '[]')
const writeRawSlots = (slots: Array<Record<string, unknown>>): void => {
localStorage.setItem('sattle_passkey_slots', JSON.stringify(slots))
}
const removeSavedOwnerMarker = (): void => {
const stored = parseJsonObject(localStorage.getItem('sattle_linking_key') ?? '{}')
delete stored.ownerId
delete stored.version
localStorage.setItem('sattle_linking_key', JSON.stringify(stored))
}
beforeEach(async () => {
stubLocalStorage()
await saveLinkingKey(LINKING_KEY)
})
describe('slot ownership (continued)', () => {
it('rejects an unwrapped key that does not match the saved proven owner', async () => {
// Given a current-owner slot whose authenticated wrap was replaced with
// a valid wrap of another wallet key
const auth = new FakeAuthenticator()
const slot = await registerPasskey(LINKING_KEY, {credentials: auth})
const prfOutput = await getPasskeyPrfOutput(slot.credentialId, {
credentials: auth,
})
const foreignWrap = await wrapLinkingKeyWithPrf(prfOutput, OTHER_LINKING_KEY)
writeRawSlots([{...slot, ...foreignWrap}])
// When the authenticator successfully unwraps that foreign key
const attempt = unlockWithPasskey({credentials: auth})
// Then owner validation rejects it before activation can receive it
await expect(attempt).rejects.toThrow('different wallet')
})
it('rejects a stale unlock when the saved owner changes during the ceremony', async () => {
// Given an authenticator that replaces the saved wallet before returning
const auth = new FakeAuthenticator()
await registerPasskey(LINKING_KEY, {credentials: auth})
const stale: PasskeyCredentials = {
create: auth.create,
get: async (options) => {
const credential = await auth.get(options)
await saveLinkingKey(OTHER_LINKING_KEY)
return credential
},
}
// When the old wallet's ceremony completes after replacement
const attempt = unlockWithPasskey({credentials: stale})
// Then the old linking key is never returned for activation
await expect(attempt).rejects.toThrow('different wallet')
})
it('does not adopt a slot carrying a malformed owner marker', async () => {
// Given an otherwise valid slot whose owner claim is malformed
const auth = new FakeAuthenticator()
const slot = await registerPasskey(LINKING_KEY, {credentials: auth})
const malformed = {...slot, ownerId: 'not-an-owner'}
writeRawSlots([malformed])
// When the current owner performs the legacy migration
await migrateLegacyPasskeySlots(LINKING_KEY)
// Then only truly markerless legacy slots are eligible
expect(readPasskeySlots()).toEqual([])
expect(readRawSlots()).toEqual([malformed])
})
it('cannot remove a foreign-owner slot', async () => {
// Given a slot owned by another wallet remains in shared storage
const auth = new FakeAuthenticator()
const slot = await registerPasskey(LINKING_KEY, {credentials: auth})
const foreign = {...slot, ownerId: linkingPubKeyHex(OTHER_LINKING_KEY)}
writeRawSlots([foreign])
// When the current owner asks to remove that credential id
const removed = await removePasskey(slot.credentialId)
// Then the foreign record is untouched
expect(removed).toBe(false)
expect(readRawSlots()).toEqual([foreign])
})
it('rewraps only current-owner slots and preserves foreign slots', async () => {
// Given current and foreign slots share storage
const auth = new FakeAuthenticator()
const slot = await registerPasskey(LINKING_KEY, {credentials: auth})
const foreign = {
...slot,
credentialId: '44'.repeat(16),
ownerId: linkingPubKeyHex(OTHER_LINKING_KEY),
}
writeRawSlots([slot, foreign])
const prfOutput = await getPasskeyPrfOutput(slot.credentialId, {
credentials: auth,
})
// When the current wallet rewraps its slots
await rewrapAllSlots(LINKING_KEY, new Map([[slot.credentialId, prfOutput]]))
// Then the foreign slot did not require output and remains byte-identical
expect(readRawSlots()).toContainEqual(foreign)
})
})
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// Passkey engine tests. The WebAuthn ceremony is faked by an injected
// authenticator whose PRF output is HMAC-SHA256(credential secret, salt) -
// the real extension's exact contract: deterministic per credential+salt,
// unguessable without the authenticator. Everything except a real
// authenticator's touch is covered here.
import {beforeEach, describe, expect, it} from 'vitest'
import {hmac} from '@noble/hashes/hmac.js'
import {sha256} from '@noble/hashes/sha2.js'
import {bytesToHex} from '@noble/hashes/utils.js'
import type {CeremonyCredential, PasskeyCredentials} from './passkeys'
import {
derivePasskeyWrapKey,
getPasskeyPrfOutput,
hasPasskeySlots,
migrateLegacyPasskeySlots,
passkeySupported,
readPasskeySlots,
registerPasskey,
removePasskey,
rewrapAllSlots,
unlockWithPasskey,
unwrapLinkingKeyWithPrf,
wrapLinkingKeyWithPrf,
} from './passkeys'
import {
decryptRecord,
decryptSavedLinkingKey,
deriveBearerAesKey,
ensureSavedKeyOwner,
encryptRecord,
linkingPubKeyHex,
savedKeyOwnerId,
saveLinkingKey,
} from './keys'
import {parseJsonArray, parseJsonObject, parseJsonObjectArray, stubLocalStorage} from './test-utils'
const LINKING_KEY = new Uint8Array(32).fill(7)
const OTHER_LINKING_KEY = new Uint8Array(32).fill(9)
const PRF_OUTPUT = new Uint8Array(32).fill(3)
const OTHER_PRF_OUTPUT = new Uint8Array(32).fill(4)
const toBytes = (source: BufferSource): Uint8Array =>
source instanceof ArrayBuffer
? new Uint8Array(source)
: new Uint8Array(source.buffer, source.byteOffset, source.byteLength)
// Fake platform authenticator: holds credentials (id -> secret), evaluates
// PRF as HMAC-SHA256(secret, salt). Flags emulate the authenticator quirks
// found in the wild: PRF unsupported, results only on get, results never.
class FakeAuthenticator implements PasskeyCredentials {
// id typed Uint8Array<ArrayBuffer>: rawId must satisfy BufferSource
private held = new Map<string, {id: Uint8Array<ArrayBuffer>; secret: Uint8Array}>()
supportsPrf = true
prfResultsOnCreate = true
prfResultsOnGet = true
createCalls = 0
getCalls = 0
create = async (options?: CredentialCreationOptions): Promise<CeremonyCredential | null> => {
this.createCalls += 1
const salt = options?.publicKey?.extensions?.prf?.eval?.first
const id = crypto.getRandomValues(new Uint8Array(16))
const secret = crypto.getRandomValues(new Uint8Array(32))
this.held.set(bytesToHex(id), {id, secret})
return {
type: 'public-key',
rawId: id,
getClientExtensionResults: () => ({
prf:
this.supportsPrf && salt
? {
enabled: true,
...(this.prfResultsOnCreate ? {results: {first: this.prf(secret, salt)}} : {}),
}
: {},
}),
}
}
// answers with the first allowed credential it holds, like a real
// authenticator picking among allowCredentials; null when it holds none
get = async (options?: CredentialRequestOptions): Promise<CeremonyCredential | null> => {
this.getCalls += 1
const pk = options?.publicKey
const allowed = (pk?.allowCredentials ?? []).map((d) => bytesToHex(toBytes(d.id)))
const match = allowed.find((hex) => this.held.has(hex))
const held = match ? this.held.get(match) : undefined
if (!held) return null
const salt = pk?.extensions?.prf?.eval?.first
return {
type: 'public-key',
rawId: held.id,
getClientExtensionResults: () => ({
prf:
salt && this.prfResultsOnGet
? {enabled: true, results: {first: this.prf(held.secret, salt)}}
: {},
}),
}
}
// simulates the passkey's secret changing underneath a slot (credential
// re-created on the authenticator while the slot stayed behind)
rotateSecret = (credentialId: string): void => {
const held = this.held.get(credentialId)
if (held) held.secret = crypto.getRandomValues(new Uint8Array(32))
}
private prf = (secret: Uint8Array, salt: BufferSource): Uint8Array<ArrayBuffer> => {
// set into a fresh array: hmac returns Uint8Array<ArrayBufferLike>,
// which BufferSource rejects
const out = new Uint8Array(32)
out.set(hmac(sha256, secret, toBytes(salt)))
return out
}
}
const readRawSlots = (): Array<Record<string, unknown>> =>
parseJsonObjectArray(localStorage.getItem('sattle_passkey_slots') ?? '[]')
const writeRawSlots = (slots: Array<Record<string, unknown>>): void => {
localStorage.setItem('sattle_passkey_slots', JSON.stringify(slots))
}
const removeSavedOwnerMarker = (): void => {
const stored = parseJsonObject(localStorage.getItem('sattle_linking_key') ?? '{}')
delete stored.ownerId
delete stored.version
localStorage.setItem('sattle_linking_key', JSON.stringify(stored))
}
beforeEach(async () => {
stubLocalStorage()
await saveLinkingKey(LINKING_KEY)
})
describe('slot storage hygiene', () => {
it('drops malformed entries instead of throwing', async () => {
const auth = new FakeAuthenticator()
const slot = await registerPasskey(LINKING_KEY, {credentials: auth})
const stored = parseJsonArray(localStorage.getItem('sattle_passkey_slots') ?? '[]')
localStorage.setItem(
'sattle_passkey_slots',
JSON.stringify([...stored, {credentialId: 'zz', hkdfSalt: 1}, 'garbage', null]),
)
expect(readPasskeySlots()).toEqual([slot])
})
it('treats unparseable storage as empty', () => {
localStorage.setItem('sattle_passkey_slots', '{not json')
expect(readPasskeySlots()).toEqual([])
expect(hasPasskeySlots()).toBe(false)
})
})
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import {beforeEach, describe, expect, it} from 'vitest'
import {bytesToHex} from '@noble/hashes/utils.js'
import {ensureSavedKeyOwner, getPlainLinkingKey, linkingPubKeyHex, savedKeyOwnerId} from './keys'
import {migrateLegacyPasskeySlots, readPasskeySlots} from './passkeys'
import type {PasskeySlot} from './passkeys'
import {parseJsonObjectArray, stubLocalStorage} from './test-utils'
const LINKING_KEY = new Uint8Array(32).fill(7)
const OTHER_LINKING_KEY = new Uint8Array(32).fill(9)
const KEY_STORAGE = 'sattle_linking_key'
const SLOT_STORAGE = 'sattle_passkey_slots'
const SLOT_BASE = {
credentialId: '11'.repeat(16),
hkdfSalt: '22'.repeat(16),
iv: '33'.repeat(12),
wrappedKey: '44'.repeat(48),
createdAt: 1,
} as const
const writeRawSlots = (slots: readonly Record<string, unknown>[]): void => {
localStorage.setItem(SLOT_STORAGE, JSON.stringify(slots))
}
describe('passkey-slot schema version', () => {
beforeEach(() => {
stubLocalStorage()
})
it('reads a current version 1 slot for the exact saved owner', () => {
// Given a current saved-key marker and passkey record
const ownerId = linkingPubKeyHex(LINKING_KEY)
localStorage.setItem(
KEY_STORAGE,
JSON.stringify({enc: false, value: bytesToHex(LINKING_KEY), ownerId, version: 1}),
)
const slot: PasskeySlot = {...SLOT_BASE, ownerId, version: 1}
writeRawSlots([slot])
// When current-owner slots are read
// Then the recognized version is exposed unchanged
expect(readPasskeySlots()).toEqual([slot])
})
it('upgrades markerless and unversioned same-owner slots only after saved-key proof', async () => {
// Given records written before schema versioning
const ownerId = linkingPubKeyHex(LINKING_KEY)
localStorage.setItem(
KEY_STORAGE,
JSON.stringify({enc: false, value: bytesToHex(LINKING_KEY), ownerId}),
)
writeRawSlots([SLOT_BASE, {...SLOT_BASE, credentialId: '55'.repeat(16), ownerId}])
// When migration is attempted before and after the saved key proves ownership
await expect(migrateLegacyPasskeySlots(LINKING_KEY)).rejects.toThrow('proven owner')
const provenKey = getPlainLinkingKey()
if (provenKey === null) throw new Error('expected the compatible plaintext key')
ensureSavedKeyOwner(provenKey)
await migrateLegacyPasskeySlots(provenKey)
// Then both compatible legacy forms become current records
expect(savedKeyOwnerId()).toBe(ownerId)
expect(parseJsonObjectArray(localStorage.getItem(SLOT_STORAGE) ?? '[]')).toEqual([
{...SLOT_BASE, ownerId, version: 1},
{...SLOT_BASE, credentialId: '55'.repeat(16), ownerId, version: 1},
])
})
it.each([2, '1', null])('hides unsupported or malformed version %j', (version) => {
// Given an otherwise valid slot carrying unrecognized metadata
const ownerId = linkingPubKeyHex(LINKING_KEY)
localStorage.setItem(
KEY_STORAGE,
JSON.stringify({enc: false, value: bytesToHex(LINKING_KEY), ownerId, version: 1}),
)
writeRawSlots([{...SLOT_BASE, ownerId, version}])
// When slots are parsed
// Then future or malformed records are unavailable and not downgraded to legacy
expect(readPasskeySlots()).toEqual([])
})
it('hides a foreign version 1 slot from the current owner', () => {
// Given the saved owner and slot owner differ
const ownerId = linkingPubKeyHex(LINKING_KEY)
localStorage.setItem(
KEY_STORAGE,
JSON.stringify({enc: false, value: bytesToHex(LINKING_KEY), ownerId, version: 1}),
)
writeRawSlots([{...SLOT_BASE, ownerId: linkingPubKeyHex(OTHER_LINKING_KEY), version: 1}])
// When the current wallet reads passkeys
// Then the foreign credential is unavailable
expect(readPasskeySlots()).toEqual([])
})
})
+178 -40
View File
@@ -1,64 +1,202 @@
// Passkey-slot persistence: one localStorage record holding every passkey
// wrap of the linking key (see passkeys.ts). Slots are public metadata plus
// AES-GCM wrapped keys - a wrapped blob is useless without the passkey's
// authenticator, so this sits next to the plaintext registries. Read/write
// are exported bare; callers serialize read-modify-write cycles with
// withStorageLock, same convention as bearers.ts.
// Passkey-slot persistence: every new slot is bound to the canonical owner
// of the saved linking key. localStorage remains hostile input, so owner
// markers are parsed strictly and reads expose only slots belonging to the
// currently proven saved owner. Mutations preserve every other record.
import {savedKeyOwnerId} from '../keys'
import {isJsonObject} from '../jsonParsing'
import {isWalletOwnerId} from './walletOwner'
// the encrypted half of a slot: the linking key under a passkey wrap key
export type PasskeyWrap = {
hkdfSalt: string // hex, 16 bytes - per-slot HKDF salt
iv: string // hex, 12 bytes
wrappedKey: string // hex, AES-GCM ciphertext of the 32-byte linking key
readonly hkdfSalt: string
readonly iv: string
readonly wrappedKey: string
}
export const PASSKEY_SLOT_VERSION = 1 as const
export type PasskeySlot = PasskeyWrap & {
credentialId: string // hex of the raw WebAuthn credential id
createdAt: number
name?: string // optional holder label ('laptop', 'phone', ...)
readonly credentialId: string
readonly createdAt: number
readonly name?: string
readonly ownerId: string
readonly version: typeof PASSKEY_SLOT_VERSION
}
type StoredPasskeySlot = PasskeyWrap & {
readonly credentialId: string
readonly createdAt: number
readonly name?: string
readonly ownerId?: unknown
readonly version?: unknown
}
type ParsedPasskeySlot = {
readonly record: StoredPasskeySlot
readonly claimedOwnerId: string | null
readonly isCurrent: boolean
}
export const PASSKEY_SLOTS_STORAGE_KEY = 'sattle_passkey_slots'
// strict shape check, same spirit as keys.ts's isValidStoredSecret:
// localStorage content is not trustworthy input (hand-edited, restored
// backups), so slots are validated before use
const isValidPasskeySlot = (slot: unknown): slot is PasskeySlot => {
if (typeof slot !== 'object' || slot === null) return false
const s = slot as Record<string, unknown>
return (
typeof s.credentialId === 'string' &&
s.credentialId.length > 0 &&
s.credentialId.length % 2 === 0 &&
/^[0-9a-f]+$/i.test(s.credentialId) &&
typeof s.hkdfSalt === 'string' &&
/^[0-9a-f]{32}$/i.test(s.hkdfSalt) &&
typeof s.iv === 'string' &&
/^[0-9a-f]{24}$/i.test(s.iv) &&
typeof s.wrappedKey === 'string' &&
s.wrappedKey.length > 0 &&
s.wrappedKey.length % 2 === 0 &&
/^[0-9a-f]+$/i.test(s.wrappedKey) &&
typeof s.createdAt === 'number' &&
(s.name === undefined || typeof s.name === 'string')
)
const SLOT_KEYS: readonly string[] = [
'credentialId',
'hkdfSalt',
'iv',
'wrappedKey',
'createdAt',
'name',
'ownerId',
'version',
]
const parseStoredPasskeySlot = (slot: unknown): ParsedPasskeySlot | null => {
if (!isJsonObject(slot)) return null
if (
typeof slot.credentialId === 'string' &&
slot.credentialId.length > 0 &&
slot.credentialId.length % 2 === 0 &&
/^[0-9a-f]+$/i.test(slot.credentialId) &&
typeof slot.hkdfSalt === 'string' &&
/^[0-9a-f]{32}$/i.test(slot.hkdfSalt) &&
typeof slot.iv === 'string' &&
/^[0-9a-f]{24}$/i.test(slot.iv) &&
typeof slot.wrappedKey === 'string' &&
slot.wrappedKey.length > 0 &&
slot.wrappedKey.length % 2 === 0 &&
/^[0-9a-f]+$/i.test(slot.wrappedKey) &&
typeof slot.createdAt === 'number' &&
(slot.name === undefined || typeof slot.name === 'string') &&
Object.keys(slot).every((key) => SLOT_KEYS.includes(key))
) {
const record: StoredPasskeySlot = {
credentialId: slot.credentialId,
hkdfSalt: slot.hkdfSalt,
iv: slot.iv,
wrappedKey: slot.wrappedKey,
createdAt: slot.createdAt,
...(slot.name !== undefined ? {name: slot.name} : {}),
}
const hasOwner = Object.hasOwn(slot, 'ownerId')
const hasVersion = Object.hasOwn(slot, 'version')
if (!hasOwner && !hasVersion) return {record, claimedOwnerId: null, isCurrent: false}
if (!isWalletOwnerId(slot.ownerId)) return null
if (!hasVersion) {
return {
record: {...record, ownerId: slot.ownerId},
claimedOwnerId: slot.ownerId,
isCurrent: false,
}
}
if (slot.version !== PASSKEY_SLOT_VERSION) return null
return {
record: {...record, ownerId: slot.ownerId, version: PASSKEY_SLOT_VERSION},
claimedOwnerId: slot.ownerId,
isCurrent: true,
}
}
return null
}
// malformed entries are dropped, not thrown on - one corrupted slot must
// not take the remaining passkeys down with it
export const readPasskeySlots = (): PasskeySlot[] => {
const readStoredPasskeySlots = (): ParsedPasskeySlot[] => {
const raw = localStorage.getItem(PASSKEY_SLOTS_STORAGE_KEY)
if (!raw) return []
try {
const parsed: unknown = JSON.parse(raw)
return Array.isArray(parsed) ? parsed.filter(isValidPasskeySlot) : []
if (!Array.isArray(parsed)) return []
const slots: ParsedPasskeySlot[] = []
for (const value of parsed) {
const slot = parseStoredPasskeySlot(value)
if (slot !== null) slots.push(slot)
}
return slots
} catch {
return []
}
}
const asOwnedSlot = (stored: ParsedPasskeySlot, ownerId: string): PasskeySlot | null => {
if (!stored.isCurrent || stored.claimedOwnerId !== ownerId) {
return null
}
const record = stored.record
return {
credentialId: record.credentialId,
hkdfSalt: record.hkdfSalt,
iv: record.iv,
wrappedKey: record.wrappedKey,
createdAt: record.createdAt,
...(record.name !== undefined ? {name: record.name} : {}),
ownerId,
version: PASSKEY_SLOT_VERSION,
}
}
export const readPasskeySlots = (): PasskeySlot[] => {
const ownerId = savedKeyOwnerId()
if (ownerId === null) return []
return readStoredPasskeySlots()
.map((slot) => asOwnedSlot(slot, ownerId))
.filter((slot): slot is PasskeySlot => slot !== null)
}
export const hasPasskeySlots = (): boolean => readPasskeySlots().length > 0
export const writePasskeySlots = (slots: PasskeySlot[]): void => {
export const writePasskeySlots = (ownerId: string, slots: PasskeySlot[]): void => {
if (!isWalletOwnerId(ownerId) || savedKeyOwnerId() !== ownerId) {
throw new Error('Passkey slots require the proven saved wallet owner.')
}
if (slots.some((slot) => slot.ownerId !== ownerId || slot.version !== PASSKEY_SLOT_VERSION)) {
throw new Error('Refusing to write a passkey slot for a different wallet.')
}
const preserved = readStoredPasskeySlots()
.filter((slot) => slot.claimedOwnerId !== ownerId)
.map((slot) => slot.record)
localStorage.setItem(PASSKEY_SLOTS_STORAGE_KEY, JSON.stringify([...preserved, ...slots]))
}
export const adoptLegacyPasskeySlots = (ownerId: string): number => {
if (!isWalletOwnerId(ownerId) || savedKeyOwnerId() !== ownerId) {
throw new Error('Legacy passkey migration requires a proven owner.')
}
const stored = readStoredPasskeySlots()
let adopted = 0
const migrated = stored.map((slot) => {
if (slot.isCurrent || (slot.claimedOwnerId !== null && slot.claimedOwnerId !== ownerId)) {
return slot.record
}
adopted += 1
return {...slot.record, ownerId, version: PASSKEY_SLOT_VERSION}
})
if (adopted > 0) {
localStorage.setItem(PASSKEY_SLOTS_STORAGE_KEY, JSON.stringify(migrated))
}
return adopted
}
const persistStoredPasskeySlots = (slots: StoredPasskeySlot[]): void => {
if (slots.length === 0) {
localStorage.removeItem(PASSKEY_SLOTS_STORAGE_KEY)
return
}
localStorage.setItem(PASSKEY_SLOTS_STORAGE_KEY, JSON.stringify(slots))
}
export const clearPasskeySlotsForOwner = (ownerId: string): void => {
if (!isWalletOwnerId(ownerId) || savedKeyOwnerId() !== ownerId) {
throw new Error('Passkey teardown requires the proven saved wallet owner.')
}
persistStoredPasskeySlots(
readStoredPasskeySlots()
.filter((slot) => slot.claimedOwnerId !== ownerId)
.map((slot) => slot.record),
)
}
export const clearUnownedPasskeySlots = (): void => {
persistStoredPasskeySlots(
readStoredPasskeySlots()
.filter((slot) => slot.claimedOwnerId !== null)
.map((slot) => slot.record),
)
}