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| author | Christophe Besson <cbesson@gmail.com> | 2026-09-01 01:03:43 +0200 |
|---|---|---|
| committer | Christophe Besson <cbesson@gmail.com> | 2026-09-01 01:03:43 +0200 |
| commit | fe30860c58e0f1b1efd457ff5eb5146d1e592da0 (patch) | |
| tree | 99a3e96994738c4e96f969a365679475dc4cf5cd /packages/meshbay-hub/src/meshbay_hub/static/keyderive.js | |
| parent | 51d2d734c228f1e46670962480258abfe586d6c4 (diff) | |
| download | meshbay-fe30860c58e0f1b1efd457ff5eb5146d1e592da0.tar.gz | |
feat: passphrase change and account recovery (auth-confirm)
The passphrase derives two independent client-side values: auth_key (the
hub verifier) and bundle_key (AES-GCM key for the per-node identity
bundles, which live on nodes and never on the hub). Changing or
recovering a passphrase is therefore two operations — swap the hub
verifier, and re-wrap every reachable node's identity bundle.
Flow A — change a known passphrase (Profile page)
- POST /v1/users/password re-proves the current passphrase, swaps
pw_hash/salt/version, revokes every refresh token and returns a fresh
pair so the tab that made the change stays signed in.
- MeshBayTransport.rewrapAllNodes: for every group's online node, connect
with the old key, read the identity off the handshake, store it back
under the new key. Returns updated / unreachable / failed so the UI can
point at the operator-unpin fallback for the gaps. Always-shown
confirmation dialog listing reachable and unreachable groups.
Recovery key
- keyderive.js generateRecoveryKey (32 random bytes, grouped Base32) and
deriveRecoveryKey (HKDF-SHA256, domain meshbay:recovery:v1:<username>).
- Every per-node identity gets a second copy wrapped under the recovery
key: keypair_bundles.bundle_enc_recovery (node-only column, added in
_SCHEMA_KEYPAIR and via a PRAGMA-guarded ALTER for existing DBs),
carried on keypair_bundle_store / _resp. MNP 0.13 -> 0.14, additive.
- session.recoveryKey is persisted in IndexedDB (slot rk) and lazy-loaded
on connect, so a group joined in any later session still leaves a
recovery copy.
- Shown once at registration; optionally folded into the verification
e-mail as a pass-through the hub never stores or logs, with an opt-out.
- Profile -> Recovery key re-loads R and backfills every reachable node
via rewrapAllNodes in bundleKey mode (no passphrase re-entry).
Flow B — recover a lost passphrase (#/reset, linked from sign-in)
- POST /v1/users/password/reset-request {username, email}: both must be
the pair on file, checked against the blind email_hash (never
decrypted). A mismatch — wrong e-mail, unknown username, non-active
account — takes the identical no-op path (no code, no mail, same 200),
so it reveals nothing and cannot be used to spray reset mail from a
username alone. 5/min, 1-hour single-use code.
- POST /v1/users/password/reset {username, code, new_auth_key}: same
expiry / attempts / single-use checks as e-mail verification; revokes
every session and deletes every registered device key so a stored one
cannot sign back in past the reset.
- ResetPasswordPage: request code -> code + optional recovery key + new
passphrase -> reset + sign-in -> fan-out. connect() falls back to the
recovery-wrapped copy when the passphrase key cannot open bundle_enc.
Without a recovery key: sign-in is restored and each group needs the
operator-unpin fallback.
Supporting fixes (found in live testing)
- member unpin now also deletes the keypair bundle; connect() mints a
fresh identity when handed a bundle it cannot open (unless _rewrapOnly,
set by rewrapAllNodes), so a rejoin completes instead of dead-ending
before the invite-code prompt.
- A browser with no bundle key gets a passphrase prompt on the group page
instead of a "go back to the browser you registered on" message.
- RegisterPage / LoginPage / ResetPasswordPage trim the username so every
key derivation matches the hub's stored form.
Docs: docs/auth-confirm.md. Locale keys across all ten catalogues.
Tests: test_password_change, test_password_reset, test_recovery_email,
test_recovery_key, test_rewrap_fanout, test_bundle_store_recovery, plus
additions to test_admin_ops_mnp and test_webrtc_transport. Hub suite 492
passed; node suite 741 passed (the lone test_packaging_units failure is a
pre-existing RPM-spec flake, reproducible on main).
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01GGkxJW9br8Y9bhT8ywJ3oc
Diffstat (limited to 'packages/meshbay-hub/src/meshbay_hub/static/keyderive.js')
| -rw-r--r-- | packages/meshbay-hub/src/meshbay_hub/static/keyderive.js | 96 |
1 files changed, 89 insertions, 7 deletions
diff --git a/packages/meshbay-hub/src/meshbay_hub/static/keyderive.js b/packages/meshbay-hub/src/meshbay_hub/static/keyderive.js index ce38d35..0aaa6a5 100644 --- a/packages/meshbay-hub/src/meshbay_hub/static/keyderive.js +++ b/packages/meshbay-hub/src/meshbay_hub/static/keyderive.js @@ -155,6 +155,70 @@ async function deriveEncryptionKey(password, username) { 'raw', out.hash, { name: 'AES-GCM' }, false, ['encrypt', 'decrypt']); } +// ── Account recovery key ───────────────────────────────────────────────────── +// +// docs/auth-confirm.md §4.3. A full-entropy secret the user keeps outside the +// passphrase — in their password manager, or (step 3) e-mailed to them. It +// wraps a *second* copy of every per-node identity bundle, so a forgotten +// passphrase does not strand the account's group identities. +// +// 256 bits of real entropy, so the derivation is HKDF, not Argon2: there is +// nothing to brute-force and no reason to make the legitimate path slow. The +// username domain-separates it, exactly as for the bundle key. + +const _B32 = 'ABCDEFGHIJKLMNOPQRSTUVWXYZ234567'; // RFC 4648, no padding + +/** 32 random bytes, shown to the human as 13 groups of 4 Base32 chars. */ +function generateRecoveryKey() { + const R = crypto.getRandomValues(new Uint8Array(32)); + return { + rawB64: btoa(String.fromCharCode(...R)), + mnemonic: _toMnemonic(R), + }; +} + +function _toMnemonic(bytes) { + let bits = 0, value = 0, out = ''; + for (const b of bytes) { + value = (value << 8) | b; + bits += 8; + while (bits >= 5) { out += _B32[(value >>> (bits - 5)) & 31]; bits -= 5; } + } + if (bits > 0) out += _B32[(value << (5 - bits)) & 31]; + return out.replace(/(.{4})(?=.)/g, '$1 '); +} + +function _fromMnemonic(mnemonic) { + const clean = String(mnemonic).replace(/[^A-Za-z2-7]/g, '').toUpperCase(); + let bits = 0, value = 0; + const out = []; + for (const ch of clean) { + const idx = _B32.indexOf(ch); + if (idx < 0) throw new Error('invalid recovery key'); + value = (value << 5) | idx; + bits += 5; + if (bits >= 8) { out.push((value >>> (bits - 8)) & 0xff); bits -= 8; } + } + if (out.length < 32) throw new Error('recovery key too short'); + return new Uint8Array(out.slice(0, 32)); +} + +/** + * Derive the AES-GCM key that wraps the recovery copy of a bundle. + * `R` is the raw Uint8Array(32) or its Base32 mnemonic string. + */ +async function deriveRecoveryKey(R, username) { + const raw = (typeof R === 'string') ? _fromMnemonic(R) : new Uint8Array(R); + const km = await crypto.subtle.importKey('raw', raw, 'HKDF', false, ['deriveKey']); + return crypto.subtle.deriveKey( + { + name: 'HKDF', hash: 'SHA-256', + salt: new Uint8Array(0), + info: new TextEncoder().encode(`meshbay:recovery:v1:${username}`), + }, + km, { name: 'AES-GCM', length: 256 }, false, ['encrypt', 'decrypt']); +} + // ── Bundle encryption ───────────────────────────────────────────────────────── /** @@ -212,7 +276,7 @@ async function decryptBundle(bundleB64, password, username) { * * Returns the raw private keys for immediate use after registration. */ -async function registerUser(username, email, password) { +async function registerUser(username, email, password, recoveryMnemonic) { // No keypair here any more. Identity keys are per node: one is generated the // first time this account joins a given node, encrypted under the passphrase, // and left with that node. So an operator who cracks what sits on their own @@ -222,10 +286,16 @@ async function registerUser(username, email, password) { // It also means the hub stores no user key to publish, which is what H3 read. const authKey = await deriveAuthKey(password, username); + const payload = { username, email, auth_key: authKey }; + // The recovery mnemonic, when the user opted to have it e-mailed: the hub + // appends it to the verification e-mail and stores it nowhere + // (docs/auth-confirm.md §4.4). Omitted when they chose to save it themselves. + if (recoveryMnemonic) payload.recovery_key = recoveryMnemonic; + const resp = await hubCall('/v1/users/register', { method: 'POST', headers: { 'Content-Type': 'application/json' }, - body: JSON.stringify({ username, email, auth_key: authKey }), + body: JSON.stringify(payload), }); if (!resp.ok) throw new Error(`Registration failed: ${await resp.text()}`); @@ -235,21 +305,27 @@ async function registerUser(username, email, password) { /** * A fresh identity for one node, encrypted under the passphrase-derived key. * - * Returns { skEdB64, skXB64, pkXB64, bundleEnc } — the bundle goes to that node - * and nowhere else, and is what any other browser fetches to become the same - * person there. + * Returns { skEdB64, skXB64, pkXB64, bundleEnc, bundleEncRecovery? } — the + * bundle goes to that node and nowhere else, and is what any other browser + * fetches to become the same person there. When `recoveryKey` is supplied a + * second copy wrapped under it rides along, so a forgotten passphrase does not + * strand this identity (docs/auth-confirm.md §4.3). */ -async function generateNodeIdentity(bundleKey) { +async function generateNodeIdentity(bundleKey, recoveryKey) { const { skEdRaw, pkEdRaw, skXRaw, pkXRaw } = await generateKeypairs(); const b64 = (buf) => btoa(String.fromCharCode(...new Uint8Array(buf))); const pkXCrypto = await crypto.subtle.importKey('spki', pkXRaw, { name: 'X25519' }, true, []); const pkXBytes = new Uint8Array(await crypto.subtle.exportKey('raw', pkXCrypto)); - return { + const out = { skEdB64: b64(skEdRaw), skXB64: b64(skXRaw), pkXB64: b64(pkXBytes), bundleEnc: await encryptBundleWithKey(skEdRaw, skXRaw, bundleKey.v2 || bundleKey), }; + if (recoveryKey) { + out.bundleEncRecovery = await encryptBundleWithKey(skEdRaw, skXRaw, recoveryKey); + } + return out; } /** @@ -324,4 +400,10 @@ async function signBytes(skEdPkcs8B64, message) { window.MeshBayKeys = { registerUser, loginAndRecover, generateNodeIdentity, generateKeypairs, signBytes, deriveAuthKey, decryptBundleWithKey, encryptBundleWithKey, bundleVersion, + // Exposed for the passphrase change (docs/auth-confirm.md §3): re-wrapping a + // node's identity bundle needs the old key (a {v2,v1} pair, since an old + // bundle may be v1) to read it and the new v2 key to write it back. + deriveEncryptionKey, deriveEncryptionKeyV1, + // Account recovery key (docs/auth-confirm.md §4.3). + generateRecoveryKey, deriveRecoveryKey, }; |