829056f1facb4f3fb31a84296e8653beb25e90a6
15 Commits
| Author | SHA1 | Message | Date | |
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a42e4b205d |
feat(entries): encrypt template at rest, guided tour, import fixes, cleanup
Batched session work sharing app.js / index.html / Entries.pas, so it can't
split cleanly without interactive hunk staging.
- feat: encrypt `template` metadata at rest (template_enc/iv, added to
ENCRYPTED_META_FIELDS). withEncryptedMeta skips an absent template key so
partial re-ships (add-tag, move-to-folder) don't wipe it via LHasTemplate.
Cleartext column kept as migration fallback. +3 unit tests.
- feat: first-run guided tour ("How it works") — spotlight + bubble, no GIFs,
re-launchable from Settings, seen-flag in DPAPI prefs.
- fix(import): preserve original created_at on restore (was stamped to import
time); restore entry icons on overwrite (PUT ignores icon_b64).
- fix(settings): correct clipboard-privacy copy (already excluded from Win+V);
PIN text 4-6 -> 4-12; reorder Set-PIN above unlock-method; move tray/startup
toggles to General; dedicated backup-password button + warning status; tab icons.
- chore: remove dead legacy monolith (app-legacy.js, index-legacy.html,
style-legacy.css) + unused passkeyBtn stub.
- docs: full-source review (CODE_AUDIT 6b), template + favorite/pinned notes.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
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6556ce8dea |
feat(crypto): encrypt site/title/tags at rest too (CODE_AUDIT §1.3)
Extends the username-at-rest scheme to site, title and tags — the last searchable metadata still stored cleartext. Same design: dedicated <f>_enc/<f>_iv columns (AES-GCM under the vault key), decrypted at load into e.<f>, so client-side search/sort/render/favicon/autofill-match are unchanged. Full-strength random-IV AES-GCM (no searchable encryption) because search is client-side. Generalized the helpers over ENCRYPTED_META_FIELDS = [username, site, title, tags]: - withEncryptedUsername → withEncryptedMeta (encrypts all four, blanks cleartext) — wraps every POST/PUT body. - decryptEntryUsernames → decryptEntryMeta (decrypts all four at load). - migrateUsernamesAtRest → migrateMetadataAtRest (sweeps any field still cleartext, live + trash). - doChangeMasterPassword re-encrypts all four under the new key. Server (Entries + Auth + Database): - Columns site_enc/iv, title_enc/iv, tags_enc/iv; GET emits them (new AddNullableField helper); POST/PUT/bulk read+persist (BindNullable helper); rotation UPDATE re-encrypts them. - Removed the server "Site required" validation (site='' when encrypted — the client enforces it) at POST/PUT/bulk. - ?q= server search neutralized (site+username ciphertext → LIKE useless; the frontend never sends ?search=). Tests: merge assertions updated to decrypt site (encrypted on import). 65/65. username was runtime-validated earlier; site/title/tags NOT yet compiled/ runtime-tested (Delphi) — large multi-handler change. Rebuild BuildAssets + PMServer, then create/edit/dup/move/tag/import/rotate and verify the DB shows no cleartext site/title/tags (and the app still renders/searches). Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> |
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69fb2b10dd |
feat(crypto): encrypt username at rest (CODE_AUDIT §1.3)
username is no longer stored cleartext. New columns username_enc/username_iv (AES-GCM under the vault key, same as encrypted_password). Search/sort/render stay client-side, so the field is decrypted at loadEntries into e.username in memory — everything downstream is unchanged. Full-strength random-IV AES-GCM (no searchable/deterministic encryption) precisely because search is client-side. Server (PM.Handler.Entries / .Auth / PM.Database): - Schema: vault_entries.username_enc, username_iv. - GET returns them; POST/PUT/bulk-import read + persist them; master-pw rotation re-encrypts them under the new key (UPDATE + loop). - ?q= server search drops `username LIKE` (ciphertext won't match; frontend searches client-side anyway). Client (app.js / app.import.js): - loadEntries/loadTrash decrypt username_enc → e.username (fallback to cleartext for un-migrated rows). - withEncryptedUsername(obj): write choke point — encrypts obj.username into username_enc/username_iv and blanks the cleartext. Wraps every POST/PUT body: saveEntry, soSave, duplicateEntry, moveEntryToFolder, addTagToEntry, batchMove/AddTag, encryptImportEntry (import + sync-apply). - doChangeMasterPassword re-encrypts username under the new key. - migrateUsernamesAtRest(): one-time sweep at enterApp, PUT-re-ships rows that still carry cleartext username so the DB gets scrubbed (bumps updated_at once; plaintext unchanged so devices converge). site/title/tags stay cleartext (same pattern later — see memory note). +1 merge test (username encrypted on import). 65/65. NOT compiled/tested at runtime (Delphi) — large multi-handler change; rebuild BuildAssets + PMServer and test create/edit/rotate/import/sync + verify the DB shows no cleartext username. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com> |
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5e88ad33d1 |
feat(crypto): adopt Argon2id (argon2id-v2) on register + master-pw change
Phase 2 of CODE_AUDIT §1.2 — live adoption of the Argon2id foundation.
Verified at runtime: a rotated account shows hash_algo=argon2id-v2 with
argon2_m=19456,t=2,p=1 in vault.db.
Server (never runs Argon2 — zero-knowledge, only stores/echoes params):
- DB: users.argon2_m/t/p columns (default 0 = PBKDF2).
- PM.Handler.Auth: HASH_ALGO_ARGON2 + param bounds, ReadArgon2Params /
AppendArgon2Params helpers. /register and /change-master-password accept
hashAlgo='argon2id-v2' + argon2:{m,t,p} and persist them; /login/challenge
echoes them. Verify path (VerifierToStoredHash/CheckVerifier) is
KDF-agnostic — the 64-hex verifier is SHA256-wrapped as for any -v2 scheme.
Client (app.js):
- state.argon2Params, cached from the challenge and persisted to
sessionStorage + the quick-unlock / PIN cold-start blobs (so a cold-started
session can still derive-from-password for reauth/rotation).
- Register + master-pw rotation derive with argon2id-v2 + ARGON2_DEFAULT_PARAMS
(OWASP m=19MiB,t=2,p=1) and send the params. Rotation re-encrypts the whole
vault under the new Argon2 key (natural migration point). Existing accounts
stay PBKDF2 until they rotate.
- Params threaded through every derive-from-password site (login, reauth,
recovery setup, change-pw current verifier). Cold-start verifier-from-raw-key
paths need no params (isDecoupledVerifierAlgo handles the -v2 wrap).
Tests: +2 param-contract tests (register<->login determinism, param
sensitivity). 42/42. Assets rebuilt to embed js/argon2.js.
Docs: CLAUDE.md auth-hash section rewritten (4 markers); CODE_AUDIT §1.2 +
table + plan marked done.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
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3f8ecde571 |
feat(security): decouple the login verifier from the AES vault key
The zero-knowledge verifier sent to /login used to be the raw PBKDF2 output in hex — i.e. the exact bytes of the AES key that encrypts every entry. Intercepting a /login body (loopback, but still) handed over the vault key. This introduces a decoupled scheme where the transmitted verifier is a one-way function of the key. New auth-hash scheme - users.hash_algo 'pbkdf2-sha256-v2': the client sends verifier = SHA256(keyHex + "pmserver/auth-verifier/v2") instead of keyHex. Stored form is still SHA256(verifier) (identical server wrap to 'pbkdf2-sha256'), so only the algo LABEL differs — it tells the client which verifier formula to use. Verification needs no new server branch (VerifierToStoredHash already SHA256-wraps any non-legacy verifier). - The AES key (cryptoKey) stays hex(PBKDF2) for EVERY algo, so entries remain decryptable and switching schemes never re-encrypts data. Adoption: new-registration + master-pw-change only - Register and change-master-password write v2. Existing accounts keep their algo until they rotate — the login/reauth migration signal now fires only for LEGACY 'pbkdf2' (was: anything != CURRENT), so sha256/v2 accounts are never force-migrated (which would have downgraded v2 → sha256 via migrate-kdf). Client (js/app.js): algo-aware everywhere - verifierFromKeyHex(keyHex, algo) central helper; deriveKeyAndVerifier / computeVerifier take an algo arg. state.hashAlgo caches the account scheme, set from /login/challenge, register, change-master, the quick-unlock / PIN cold-start blobs, and the /recovery-key/redeem response. All ~12 verifier sites updated (login, register, reauth ×4, change-master current+new, migrate-kdf, quick-unlock + PIN cold-start, recovery-mode current verifier). Safety invariant: unknown/empty hashAlgo → key hex → byte-identical to the old behaviour, so every pre-decoupling account (and every existing quick-unlock / PIN blob without the new field) keeps working unchanged. Verified: existing account + pre-change quick-unlock still unlocks; a master-pw change now writes 'pbkdf2-sha256-v2' in vault.db. Server: recovery redeem returns hashAlgo; register + change-master store the decoupled algo; login + reauth migration signal narrowed to legacy. Also: BuildAssets.ps1 pipes $null into node --check so the JS syntax gate can't block on stdin in the Delphi pre-build environment. Addresses CODE_AUDIT.md section 1.1. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com> |
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e23a78dda7 |
feat: entry templates + tag autocomplete + slideover push + robustness bundle
- Entry templates: new vault_entries.template column drives a typed
sub-kind ('credit-card', 'ssh-key', 'server', 'recovery-codes'). Card
+ table label off the template, badge reads "credit card" instead of
"note". Templates seed kind=note (no site/password required), use
custom_fields with optional dropdown options (brand, month/year,
protocol). Round-tripped across export/import/duplicate/master-pw
rotation, preserved by partial PUTs via a HasTemplate flag.
- Custom fields: support per-field `options[]` rendering as <select>
(card brand, expiry MM/YYYY, SSH/server protocol).
- Tags: existing-tag autocomplete dropdown under the chip input,
filtered against what's already selected.
- Search history: per-query X for individual delete + 1s debounced
commit (no Enter required).
- Slideover: clicking outside closes again (drag-selection respected
via mousedown origin tracker), Esc closes, X closes. App shell is
pushed left by 420px when the panel is open so the table / pagination
/ sort / search stay visible and interactive.
- Export/import: JSON now round-trips custom_fields, attachments
(decrypted to base64, re-encrypted under current key on restore),
icon_b64, and template. CSV warning lists what's not included.
- Auto-backup: same payload shape as user-driven export.
- Notes: import (JSON + CSV) accepts kind=note with empty site,
preserves title/template/custom_fields. CSV parser detects kind/
template columns.
- Bulk-import response returns `ids[]` parallel to input so the
client can map back to new entry IDs (drives attachment restore).
- Move-to-folder bugs fixed: moveEntryToFolder, batchMoveToFolder,
addTag, batchAddTag were all silently wiping TOTP / custom_fields
/ kind / template via partial PUT. Now re-ship full payload.
- Master-pw rotation: server mints a fresh session token + csrf so
the very next request after rotation no longer ESessionRejects.
Client adopts the new pair. Attachments are re-encrypted client-side
during rotation (GET old → decrypt with old key → encrypt with new
→ PUT). New endpoints: GET /attachments/all, PUT /attachments/:id.
- Duplicate: carries icon_b64 + template + attachments to the copy.
- HandleCreateEntry: accepts icon_b64.
- FireDAC param fix: all blob/icon/custom_fields params use ftMemo +
.Value assignment so SQLite TEXT no longer truncates to 4000 chars
(deepseek's 200+ KB favicon was being wiped on lock/unlock).
- HandleSetEntryIcon cap: 262144 → 524288 chars (base64 of a 256 KB
raw fetch overflows the old cap, fails silently in saveEntryIcon).
- Native save dialog: surfaces server errors instead of swallowing.
- Modals: reauth (export) + backup-password prompt support inline
error display, retry up to 5 attempts, then hard-stop.
- Keyboard cursor (j/k): bootstraps to current page, auto-paginates
when the cursor crosses a page boundary, Enter opens slideover.
- Slideover focuses Title on edit-open so j/k → Enter → type Just
Works.
- TOTP tool: Esc closes the modal.
- App version + launch mode (auto/manual): exposed via bridge,
surfaced in Settings → Account. Autostart launches suppress the
first-time tray balloon.
- Passkey button hidden (Delphi backend stubs WebAuthn at 501).
- TEST_PLAN.md captured for regression coverage.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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63fac5b3b7 |
feat: secure notes + password history + custom fields + quick-win bundle
Big feature trio
- Secure notes (kind='login'|'note') reusing the encrypted_password+iv
pipeline for the body. New sidebar entry, slideover variant (title +
multiline body), distinct card / table-view rendering, badge in name
column, copy-content button replacing the password copy on note rows.
- Password history: entries_password_history table keeps up to 20 prior
ciphertexts per entry. HandleUpdateEntry pushes the pre-update
encrypted_password into history ONLY when it actually differs from
the incoming one (JS reuses originalEncrypted bit-for-bit when the
plaintext is unchanged — avoids spamming history on title/folder edits).
GET /entries/{id}/history endpoint. Slideover modal lists versions
with mask/reveal/copy/revert. Master-pw rotation wipes history (old
ciphertext can't be decrypted with the new key).
- Custom fields: per-entry encrypted JSON array of {label, value,
is_secret}. Same crypto pipeline as the password. Slideover row UI
with label/value inputs, secret toggle (eye), copy, delete. Re-
encryption flows through bulk-import, change-master-password, and
duplicate.
Quick wins
- Cheatsheet overlay (press '?' or topbar button or Ctrl+K). Lists all
hotkeys + global / tray / card actions. SVG icons inline so the
cheatsheet matches the actual app glyphs (no emoji mismatch).
- Open URL button on entry cards: ShellExecute via cmd://app/open-url,
http(s) only, validates entry.site looks like a real hostname.
- Trash auto-purge: setting "Empty trash after N days" (never/7/30/90).
DELETE /entries/trash/old?days=N called at every unlock.
Favicon strategy
- Subdomains (chat.deepseek.com, app.X.com…) now try the SLD first
(deepseek.com.ico) before the full host. DDG often returns a generic
placeholder for subdomains that passes the byte threshold; the SLD-first
switch surfaces the real brand icon.
- Cap bumped 64 KB → 256 KB on all three sides (Delphi fetch, server
endpoint, JS upload). DDG sometimes serves the full-res asset.
UX polish
- Click-outside-slideover: stopPropagation everywhere it bites. Custom
fields buttons (add / delete / secret toggle / copy / eye) all stop
the click bubble so the document-level "close on outside click" handler
doesn't fire when rerender() detaches the target from the DOM.
- Native search-cancel button restyled: cyan accent X via mask-image,
cursor: pointer, breathing room before the Ctrl+K kbd chip.
- Password history modal: scrollable body, multiline wrapped passwords,
hover border highlight.
- Cheatsheet panel widened (560 → 720 px) so the descriptions no longer
ellipsis-clip.
- "+ New" topbar splits into a small dropdown: New login / New note.
- Notes show a "note" badge in table-view name column, italic
"Encrypted note" placeholder in the username column.
Internals
- duplicateEntry copies kind + custom_fields too (one-line forgotten
earlier).
- entries_password_history dropped on master-pw rotation — the old
ciphertexts are unrecoverable with the new key.
- bulk-import re-encryption path includes custom_fields.
CLAUDE.md
- "Entry payload — call sites à toucher ensemble" lists the 6 spots
to update when adding a new (en)crypted field. Notes the historical
miss of kind in duplicateEntry and custom_fields in the rotation +
duplicate.
Repo hygiene
- .gitattributes forces CRLF on Delphi sources (RAD Studio refuses LF).
text=auto for web frontend / docs, binary for .res / .exe / images.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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40b3154a34 |
feat: MFA tools, single-instance, tray polish, prefs persistence
Session highlights:
- feat(prefs): DPAPI-backed key/value store (PM.UserPrefs) — fixes
rememberedUsername being lost across reboots due to the random
ephemeral HTTP port changing the localStorage origin every launch.
Bridge cmd://prefs/{get,set} round-trips through Delphi.
- feat(tray): icon visible from startup (NIM_ADD at constructor, not
at first minimize). Tray context menu themed via uxtheme!135
SetPreferredAppMode so it follows the app's dark/light setting.
- feat(single-instance): named mutex + RegisterWindowMessage broadcast.
Second launch posts WM_PMSHOW to HWND_BROADCAST and exits; the
running bridge restores the window from tray. Mutex lives in Local\
namespace so distinct Windows users can still each run one.
- feat(mfa): Authenticator sidebar view (live TOTP codes for every
entry with a secret) + standalone TOTP generator modal (paste
base32 / otpauth:// URI, or generate a random 20-byte secret).
- feat(sidebar): Folders / Tags / Tools sections collapsible with
chevron toggle. Badge counts stay visible when collapsed. State
persisted in settings_json (synced across devices).
- feat(autofill): hotkey when vault is locked now restores the app
and focuses the master password input instead of no-op'ing
silently. Cleaner UX for the common "I hit Ctrl+Shift+L but the
vault was locked" path.
- feat(quick-unlock): when enabled, skip lockVault on Windows lock /
sleep. Rationale: the DPAPI blob already gates access via the
Windows account, so re-locking on top of the OS lock is redundant.
Idle auto-lock still fires (separate opt-in).
- fix(quick-unlock): re-sync state.quickUnlockEnabled from DPAPI
source-of-truth at boot, instead of trusting (now-volatile)
localStorage.
- docs: CLAUDE.md updated with all new modules, bridge commands,
and the port-ephemeral pitfall.
Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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664db65437 |
fix(db): declare TOTP param DataType so .Clear works on first row
FireDAC raises EFDException -335 "data type unknown" when .Clear is
called on a TFDParam before any typed value has been assigned. Hit
in PM.Handler.Auth.HandleChangeMasterPassword when the first entry
in the migration loop had no TOTP secret — already fixed inline.
Same latent bug existed in every other handler that touches the
optional totp_secret / totp_iv columns:
- HandleCreateEntry (Entries.pas)
- HandleUpdateEntry (Entries.pas)
- HandleBulkImport (Entries.pas)
All three now declare:
LQ.ParamByName('ts').DataType := ftString;
LQ.ParamByName('tiv').DataType := ftString;
right after setting SQL.Text, so the very first .Clear (when an
entry has no TOTP) doesn't fail with "data type unknown" on the
SQLite param binding path.
For HandleBulkImport the declaration is hoisted out of the per-entry
loop since the prepared statement is reused across iterations.
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d13e5bc89f |
feat(zero-knowledge): client computes verifier, master pw never leaves the browser
THE GAP THIS CLOSES
===================
Before this commit, every auth endpoint accepted the master password
in plaintext. The server ran PBKDF2 + SHA-256 server-side to verify.
That means:
- master pw traveled over HTTP (loopback, but still observable by
any process that can intercept localhost)
- master pw sat in the server's process memory (a local string
variable) for the ~500 ms PBKDF2 took to run
- a memory dump of PMServer.exe during /login would expose it
This commit moves the PBKDF2 step to the CLIENT and sends only the
hex result (the "verifier") to the server. The master pw never
leaves the browser — server is now zero-knowledge in the everyday
sense (the stored hash and the hash-format remain the same; SRP-
style proper zero-knowledge would be another refactor).
NEW ENDPOINT
============
POST /login/challenge body { username }
-> { salt, kdfIterations, hashAlgo }
First leg of login: client posts username, server returns the params
needed for the client to compute PBKDF2 locally. Per-IP rate-limited.
Returns 404 for unknown user — client masks this as a generic
"Invalid credentials" toast to preserve user-existence opacity
(consistent with the existing /login timing leak).
UPDATED ENDPOINTS
=================
All auth endpoints now accept EITHER plaintext masterPassword OR a
precomputed verifier. New helpers in PM.Handler.Auth:
function IsValidVerifier(s): 64 hex chars sanity check
function VerifierToStoredHash(v, algo): SHA-256 wrap (CURRENT) or
identity (LEGACY)
function CheckVerifier(v, stored, algo): constant-time compare
Endpoint matrix:
/register :: salt, kdfIterations, verifier (all client-gen)
OR masterPassword (legacy)
/login :: verifier OR masterPassword
/reauth :: verifier OR masterPassword
/migrate-kdf :: oldVerifier + newVerifier OR masterPassword
(oldVerifier = under current iters, newVerifier
= under target iters)
/change-master-pw:: currentVerifier + newVerifier + newSalt
OR currentMasterPassword + newMasterPassword
/recovery-key/setup :: verifier OR masterPassword
(via VerifyMasterPassword helper updated to
accept either input)
When a verifier is present, the server simply applies the SHA-256
wrap (for HASH_ALGO_CURRENT) or compares directly (LEGACY) — no
PBKDF2 work, no plaintext pw in memory.
CLIENT
======
New helpers in app.js:
bytesToHex(arr) : matches the server's PBKDF2_SHA256_Hex output
format (lowercase hex, no separators)
deriveKeyAndVerifier(pwd, saltHex, iters)
: single PBKDF2 → returns BOTH the AES-GCM CryptoKey
AND the hex verifier. No double-PBKDF2 cost.
computeVerifier(pwd, salt, iters)
: verifier-only variant for places that don't need
the CryptoKey (reauth, recovery setup, ...).
state.kdfIterations is now tracked + persisted to sessionStorage so
verifier computation works without a fresh /login/challenge round
trip on every reauth / change-pw / recovery setup.
Flows updated:
doLogin : POST /login/challenge → derive locally → POST
/login with verifier. CryptoKey reused from
the same PBKDF2 run.
doRegister : client-side randomHexSalt + derive → POST with
{salt, kdfIterations, verifier}.
doUnlock : verifier from cached salt+iters → POST /reauth.
runKdfMigration : compute oldVerifier + newVerifier from same
salt at different iters → POST.
doChangeMasterPassword:
: currentVerifier (old salt+iters) + newVerifier
(fresh salt, target iters) + newSalt. New key
ready in memory by the time we POST.
doGenerateRecoveryKey:
: verifier → /recovery-key/setup.
enableQuickUnlock,
doExport : both /reauth callers switched to verifier.
Persistence
===========
The DPAPI quick-unlock blob (when enabled) now includes kdfIterations
so cold-start restores can correctly re-derive verifiers if reauth
is needed later. Recovery redeem similarly stashes kdfIterations
from the server response.
Backward compat
===============
Server endpoints still accept the legacy masterPassword path so
older client builds keep working through the next deploy. Future
cleanup: drop the plaintext branches once everyone has rolled
forward.
What this does NOT achieve
==========================
This is not SRP / OPAQUE. The stored value on the server IS the
final hash, and a stolen vault.db gives the attacker something they
can directly verify candidate guesses against (offline brute force).
Closing that requires asymmetric proofs (client and server holding
different things), which is a much larger refactor. The realistic
win here is "master pw never transits the network or sits in server
memory" — that's a meaningful reduction in attack surface, not a
cryptographic miracle.
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cca8184b81 |
feat(auth): change master password with full vault re-encryption
Adds the canonical PM feature: let the user pick a new master password
and have every entry transparently re-encrypted under the new key,
without ever exposing plaintext to the server.
Backend endpoint: POST /change-master-password
==============================================
Body:
{
currentMasterPassword, verified against current stored hash
newMasterPassword, basis for the new hash + new client key
newSalt, 64-char hex, client-generated
entries: [{ id, encrypted_password, iv,
totp_secret?, totp_iv? }, ...]
}
Flow:
1. Authenticate + RequireCSRF (caller already logged in).
2. RejectIfAccountLocked — pw change is brute-forceable through a
hijacked session, so it respects the same per-account lockout as
/login.
3. Verify currentMasterPassword against the stored hash. Branches on
hash_algo to handle both legacy 'pbkdf2' and current 'pbkdf2-sha256'.
Wrong pw → RecordFailedAccountAttempt + audit + 401.
4. Compute new auth hash = SHA256(PBKDF2(new_pw, new_salt, 600k)),
always using the current scheme (migration baked in).
5. ATOMIC transaction:
UPDATE users SET password_hash, salt, kdf_iterations, hash_algo
UPDATE vault_entries SET encrypted_password, iv, totp_secret, totp_iv
(per entry)
Any failure → rollback, user stays on the old config.
6. DeleteAllUserSessions — every OTHER session is invalidated so a
leaked old token can't keep working past the rotation. The current
caller's session stays valid.
7. ClearAccountLockout + audit_log entry.
8. Returns { message, salt, kdfIterations }.
Client
======
New modal in index.html (#changeMasterModal) with three password
fields (current / new / confirm) + inline error display. Added a
"Change master password" button in the Settings panel → Account
section. Escape-key handler routes through it like the other modals.
doChangeMasterPassword():
1. Local validation: all fields filled, new ≥ 8 chars, new == confirm,
new ≠ current. Fast failure beats a round trip.
2. randomHexSalt() → 32 secure random bytes, hex-encoded.
3. Derive newKey = PBKDF2(new_pw, new_salt, 600k).
4. Walk state.entries: decrypt password + (optional) TOTP under the
current key, re-encrypt under newKey with fresh random IVs.
One decrypt failure aborts the whole change — better than partial
commit.
5. POST to /change-master-password.
6. On success: swap state.salt + state.cryptoKey, persistCryptoKey,
update sessionStorage, refresh cached ciphertexts in state.entries,
close modal, toast.
7. On 401 / 429 / generic error: show inline error in the modal so
the user can fix and retry without re-typing everything.
Threat model notes
==================
- The current session token stays valid because the new server hash
only invalidates OTHER sessions. Self-logout would be needlessly
disruptive (user already proved knowledge of both pws).
- Server still sees the old + new master pws transiently in /change-
master-password. Same trade-off as /login — eliminating it requires
redesigning to send pre-computed verifiers (SRP-style), tracked
separately.
- The salt rotates with the password — best-practice against any
precomputed dictionary attack tied to the previous salt.
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60aa106a30 |
fix(crypto): SHA-256 wrap auth hash so vault.db at rest no longer = AES key
THE PROBLEM
===========
Before this commit, users.password_hash stored on the server contained
PBKDF2(pw, salt, iters) in hex — the exact same 32 bytes the client
uses as the AES-GCM key to encrypt every entry. Anyone who got hold of
vault.db (filesystem access, backup leak, etc.) had the encryption key
in their hand, no brute force needed. The increased PBKDF2 iteration
count from the previous commit helped against the cipher-text path,
but the easier path was right there in the user row.
THE FIX
=======
Wrap the PBKDF2 output in SHA-256 before storing:
password_hash = SHA256(PBKDF2(pw, salt, iters))
SHA-256 is one-way. The stored hash can still be verified at login
(server recomputes PBKDF2 from the posted master pw, then SHA-256s it,
compares to stored), but the AES key can no longer be recovered from
it. At rest, vault.db only contains an irreversible derivative.
The server still sees pw transiently during /login while computing
the comparison — eliminating that requires a redesigned auth
protocol where the client sends a pre-computed verifier (SRP, OPAQUE,
or simply SHA-256(PBKDF2(pw, salt, iters)) sent from the client).
That's a separate, larger refactor. This commit closes the at-rest
hole, which is the realistic attack surface for vault file leaks.
SCHEMA / MARKER
===============
users.hash_algo distinguishes the two schemes:
'pbkdf2' — LEGACY (raw hex, = AES key)
'pbkdf2-sha256' — CURRENT (SHA-256-wrapped, one-way)
A constant HASH_ALGO_CURRENT replaces the string literal everywhere
to avoid silent drift between the writer and the reader sides.
MIGRATION
=========
Folded into the existing /migrate-kdf endpoint introduced for the
100k→600k iteration bump. Login response now signals migration on
EITHER:
- kdf_iterations < PBKDF2_ITERATIONS_TARGET, OR
- hash_algo != 'pbkdf2-sha256'
The endpoint handles both transitions in one atomic transaction:
UPDATE users SET password_hash = SHA256(PBKDF2(pw, salt, 600k)),
kdf_iterations = 600000,
hash_algo = 'pbkdf2-sha256'
UPDATE vault_entries SET encrypted_password, iv (per entry, if KDF changed)
Idempotency tightened: the "already at target" short-circuit now
requires BOTH conditions, not just the iteration count. Without this,
users who migrated KDF before this commit landed would have been
stuck on the legacy hash format.
CLIENT
======
runKdfMigration() branches on whether the KDF actually changed:
- kdfChange (fromIters !== toIters): re-encrypt all entries with the
new key, send them in the entries array, swap state.cryptoKey on
success. Shows "Vault security upgraded" toast.
- !kdfChange (hash format only): skip the entry re-encryption loop
entirely, send entries: []. Silent — the user didn't perceive a
weakness change worth toasting about.
LOGIN / REAUTH
==============
Both now branch on hash_algo to pick the right verifier:
HASH_ALGO_LEGACY → ConstantTimeEquals(stored, PBKDF2(pw, salt, iters))
HASH_ALGO_CURRENT → ConstantTimeEquals(stored, SHA256(PBKDF2(pw, salt, iters)))
Same constant-time comparison helper as before. Same legacy bcrypt
fallback (still 501-not-implemented).
ALL THREE SCENARIOS AFTER THIS COMMIT
=====================================
1. New register: starts at HASH_ALGO_CURRENT + 600k. No migration ever.
2. Legacy 100k + 'pbkdf2': full migration on next login (hash format
+ iter count + entry re-encryption) in one transaction.
3. Mid-state (already-migrated KDF + still-'pbkdf2'): hash format
upgrade only on next login, no entry re-encryption.
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e0e452306e |
feat(crypto): PBKDF2 iterations 100k → 600k with transparent re-encryption
Bumps the PBKDF2-SHA256 iteration count from 100,000 (OWASP 2017) to
600,000 (OWASP 2023). 6x slowdown on every brute-force attempt against
either the server-stored auth hash OR the AES-GCM ciphertext of the
entries — both currently use the same PBKDF2 output (see KNOWN ISSUE
below for why that's another problem to fix later).
Schema
======
users.kdf_iterations INTEGER DEFAULT 100000
Per-user iteration count. Legacy rows predating the column default
to 100k via the DEFAULT clause. New accounts insert 600k explicitly.
Migration flow
==============
Atomic from the user's perspective. No partial state ever persisted.
1. /login (or /reauth):
server reads users.kdf_iterations and verifies the master pw at
that count. Login succeeds at the legacy strength. Response now
includes kdfIterations (current) and optionally kdfMigration =
{ target: 600000 } when an upgrade is recommended.
2. Client:
derives the AES key at the OLD count to decrypt current entries
(state.cryptoKey). enterApp() loads the vault normally.
3. runKdfMigration() (background, after enterApp):
- derives the NEW key at target iterations
- decrypts every entry with the old key
- re-encrypts every entry with the new key + fresh random IVs
- POSTs { masterPassword, entries: [...] } to /migrate-kdf
4. /migrate-kdf (new endpoint):
- verifies the master pw against the OLD hash
- in a single transaction:
UPDATE users SET password_hash = pbkdf2(pw, salt, 600k),
kdf_iterations = 600000
UPDATE vault_entries SET encrypted_password, iv (per entry)
- on any failure: ROLLBACK. User stays at legacy config, retries
at next login. No half-migrated state possible.
5. Client (post-commit):
swaps state.cryptoKey to the new key, persists it, updates the
cached ciphertext in state.entries, shows a "Vault security
upgraded" toast.
Idempotency: server's /migrate-kdf short-circuits with "Already at
target" if users.kdf_iterations >= PBKDF2_ITERATIONS_TARGET.
Race conditions: two concurrent migrations from two tabs both
recompute the SAME new key (deterministic PBKDF2). The losing
transaction's entries get re-encrypted with the winning one's IVs,
but both clients can decrypt because the keys are identical.
KNOWN ISSUE (not fixed by this commit)
======================================
The server's password_hash IS the client's AES key, in hex form —
both sides compute PBKDF2(pw, salt, iters) and store/use the same
32 bytes. This means a stolen vault.db gives the attacker the
encryption key directly, without needing to brute-force anything.
The 100k → 600k bump still helps because the AES-GCM ciphertext
itself is also a brute-force target, but the architectural fix
(server stores SHA256(aes_key) instead of aes_key in hex) is a
separate concern that needs its own migration.
Other changes
=============
- HandleRegister: new accounts insert kdf_iterations=600000.
- HandleReauth: response upgraded to JSON with kdfIterations
+ optional kdfMigration. Unlock path now also triggers migration.
- SendAuthSuccess: extended signature, all callers updated.
- deriveKey(pwd, saltHex, iterations) in app.js: iterations param
required, defaults to 100000 for back-compat with any legacy caller.
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9f6636defc |
feat(auth): per-account brute-force lockout with exponential backoff
Existing protection was per-IP only (login_attempts table). On a loopback
deployment everyone hits 127.0.0.1, so the per-IP counter is mostly
ornamental — the real attacker is on the same machine. Adds a second
defense layer that tracks failures per username with an exponential
backoff schedule.
Schema:
account_lockouts (username TEXT PK, failed_count INT,
locked_until DATETIME, last_attempt_at, last_attempt_ip)
Backoff after threshold (4+ failures):
1, 2, 3 failures → no lockout (grace window for typos)
4th → 60 s
5th → 5 min
6th → 15 min
7th → 1 h
8th → 6 h
9th and beyond → 24 h (capped)
Counter resets to 0 on successful login or reauth. Old non-locked rows
older than 30 days are pruned by CleanupExpired alongside the existing
sessions / audit_log / login_attempts cleanups.
Wiring:
- HandleLogin / HandleReauth both check RejectIfAccountLocked() before
touching the users table. Lockout responses are 429 with JSON body
{ error, retry_after } and a Retry-After header.
- Failed attempts are recorded against the username even when the user
doesn't exist, preventing account enumeration via differential
"is this account locked?" probes.
- PBKDF2 hash comparison was already constant-time (ConstantTimeEquals);
no change there.
Client (js/app.js):
- api() now preserves response status + body on Error so callers can
distinguish 429-lockout from other errors.
- New showLockoutCountdown(seconds) renders a live "Account locked —
try again in Xm Ys" message in #authHint, disables #loginBtn until
the countdown reaches 0, then re-enables it.
- doLogin / doUnlock both branch on err.status === 429 + retry_after
to call showLockoutCountdown instead of a generic error toast.
Known limitation: an attacker can DoS-lock arbitrary usernames by
spamming /login with that name. This is intentional — the alternative
(per-(username,IP) tracking) would let attackers enumerate accounts.
DoS-lock is acceptable; auth bypass is not.
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||
|
|
506aee7e6f |
feat: Delphi backend + JS↔Delphi bridge (clipboard, tray, auto-lock)
Introduces the Delphi 12 FMX backend (PMServer) that hosts the embedded
WebView2 vault on 127.0.0.1, and a native bridge between JS and Delphi
that wires three privacy-focused features:
1. Secure clipboard
Copying a password registers the Win32 "ExcludeClipboardContentFromMonitorProcessing"
format alongside CF_UNICODETEXT, so Win+V clipboard history never sees
the value. Auto-clears after 30s via TTimer. Bridge.copySecure() in
app.js routes all password/username/secret copy paths through the
native layer when running inside the Delphi WebView2 (falls back to
navigator.clipboard for the PHP standalone).
2. Tray icon (X-to-tray when server running)
Closing the dev panel hides both the form HWND and the TFMAppClass
per-process proxy window that owns the FMX taskbar entry — the form's
HWND alone is not the taskbar-visible one in FMX (took some iteration
to discover). Tray menu: Open, Lock vault, Quit. Clipboard is force-
cleared on minimize as extra safety. First-time minimize fires a
balloon notification so the user knows the app is still running.
3. Auto-lock on Windows session lock (Win+L)
wtsapi32.dll!WTSRegisterSessionNotification on a dedicated message-only
window. On WM_WTSSESSION_CHANGE / WTS_SESSION_LOCK, the bridge calls
ExecuteJavaScript('lockVault()'). Same path used by the tray "Lock vault"
menu item.
Bridge architecture:
- JS → Delphi via cmd:// URLs intercepted in OnBeforeNavigate
(pattern lifted from DeskInsight Monaco). Currently exposes
cmd://clipboard/copy?text=...&clear=... and cmd://clipboard/clear.
- Delphi → JS via TTMSFNCWebBrowser.ExecuteJavaScript with guarded
calls (typeof check) so the bridge degrades cleanly if app.js isn't
loaded yet.
Files:
- Source/PM.Bridge.pas (new) — TSecureClipboard + TPMBridge
- UMainForm.pas/.fmx — bridge wiring, FormCloseQuery intercept, tray
callbacks (BridgeTrayRestore / BridgeLockRequest / BridgeQuit)
- js/app.js — Bridge object, 5 navigator.clipboard sites migrated to
Bridge.copySecure with PHP-compatible fallback, Bridge.onTrayRestore
handler that resets the auto-lock timer
.gitignore extended with Delphi build artifacts (*.dcu, Win32/, Win64/,
__history/, __recovery/, *.identcache, *.dsk, *.local, etc.) so source
checkouts stay clean.
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