Compare commits
8 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| d20c7e210b | |||
| 58fa9487e3 | |||
| d9b08592da | |||
| 4a80bf1c0e | |||
| 05c962d46f | |||
| cf3fef6936 | |||
| 8c878b3718 | |||
| 389f00e85c |
@@ -14,7 +14,7 @@ crate-type = ["staticlib", "cdylib", "rlib"]
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tauri-build = { version = "2", features = [] }
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[dependencies]
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tauri = { version = "2", features = [] }
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tauri = { version = "2", features = ["devtools"] }
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tauri-plugin-notification = "2"
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tauri-plugin-sql = { version = "2", features = ["sqlite"] }
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tauri-plugin-stronghold = "2"
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@@ -15,6 +15,14 @@
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"updater:allow-check",
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"updater:allow-download",
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"updater:allow-install",
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"updater:allow-download-and-install"
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"updater:allow-download-and-install",
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"stronghold:default",
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"stronghold:allow-initialize",
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"stronghold:allow-load-client",
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"stronghold:allow-create-client",
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"stronghold:allow-save",
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"stronghold:allow-get-store-record",
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"stronghold:allow-save-store-record",
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"stronghold:allow-remove-store-record"
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]
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}
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@@ -1,7 +1,7 @@
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{
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"$schema": "https://schema.tauri.app/config/2",
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"productName": "ChatApp",
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"version": "0.3.0",
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"version": "0.3.8",
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"identifier": "com.meinname.chatapp",
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"build": {
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"beforeDevCommand": "pnpm vite:dev",
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@@ -61,7 +61,7 @@ export function AuthProvider({ children }: { children: ReactNode }) {
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const status = (error as { status?: number }).status;
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if (status === 401 || status === 403) {
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// Token genuinely invalid — wipe.
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await supabase.auth.signOut().catch(() => {
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await supabase.auth.signOut({ scope: 'local' }).catch(() => {
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/* ignore */
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});
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setSession(null);
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@@ -5,16 +5,24 @@ import { pgHexToBytes } from '@chat-app/shared/supabase';
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import { devLocalSecretStore } from './secretStore';
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import { supabase } from './supabase';
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// Watches the `devices` table for INSERTs and, whenever a peer registers a
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// new device that's in any of our conversations, wraps the active
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// conversation key for the freshly-arrived device. This makes Sender-Key
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// onboarding "just work" — the new device picks up the bundle from
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// `conversation_keys` and can decrypt the entire history once at least one
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// of our existing devices was online to do the wrapping.
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// Watches the `devices` table for new entries AND, on mount, scans every
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// conversation we participate in for missing key bundles. Fills gaps by
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// re-wrapping our active conv-key for the missing recipient devices.
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//
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// At-least-once delivery: if no existing device of any participant is online
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// at the moment the new device joins, the new device stays unable to decrypt
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// until SOMEONE comes online and runs this loop. Standard Signal trade-off.
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// This fixes the "cannot decrypt" cliff for devices that registered while
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// no other participant device was online to share the key with them.
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interface SyncCtx {
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myUserId: string;
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myDeviceId: string;
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priv: Uint8Array;
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}
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// db-types is stale for `conversation_keys`/`active_key_version`; bypass.
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function rawFrom(table: string) {
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// eslint-disable-next-line @typescript-eslint/no-explicit-any
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return (supabase as unknown as { from: (t: string) => any }).from(table);
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}
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export function startConversationKeySync(
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ownUserId: string,
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@@ -23,8 +31,13 @@ export function startConversationKeySync(
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let cancelled = false;
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let priv: Uint8Array | null = null;
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void loadDevicePrivateKey(devLocalSecretStore, ownUserId, ownDeviceId).then((pk) => {
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void loadDevicePrivateKey(devLocalSecretStore, ownUserId, ownDeviceId).then(async (pk) => {
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if (cancelled) return;
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priv = pk;
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if (!priv) return;
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// Run a full backfill once we have the private key — covers devices that
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// registered while we were offline.
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await syncAllExistingGaps({ myUserId: ownUserId, myDeviceId: ownDeviceId, priv });
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});
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const channel = supabase
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@@ -36,73 +49,164 @@ export function startConversationKeySync(
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if (cancelled) return;
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const row = payload.new;
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if (!row?.id || !row.user_id || !row.public_key) return;
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// Skip our own devices — we don't need to send keys to ourselves
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// (each install bootstraps its own keys via getOrCreateConvKey).
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if (row.user_id === ownUserId && row.id === ownDeviceId) return;
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void wrapKeysForNewDevice(ownUserId, ownDeviceId, row.id, row.user_id, row.public_key);
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if (!priv) return; // backfill on mount will catch it later
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void wrapForOneDevice(
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{ myUserId: ownUserId, myDeviceId: ownDeviceId, priv },
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row.id,
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row.user_id,
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row.public_key,
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);
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},
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)
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.subscribe();
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async function wrapKeysForNewDevice(
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myUserId: string,
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myDeviceId: string,
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newDeviceId: string,
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newDeviceUserId: string,
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newDevicePubKeyHex: string,
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) {
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if (!priv) {
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priv = await loadDevicePrivateKey(devLocalSecretStore, myUserId, myDeviceId);
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if (!priv) return;
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}
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const newPub = pgHexToBytes(newDevicePubKeyHex);
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const ownCtx: OwnDeviceCtx = {
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userId: myUserId,
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deviceId: myDeviceId,
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privateKey: priv,
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};
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// Find conversations I'm in that the new device's user is also in.
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const { data: shared, error: sErr } = await supabase
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.from('conversation_members')
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.select('conversation_id')
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.eq('user_id', newDeviceUserId);
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if (sErr) {
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console.warn('keySync member lookup failed', sErr);
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return;
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}
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const peerConvs = new Set((shared ?? []).map((r) => r.conversation_id as string));
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if (peerConvs.size === 0) return;
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const { data: mine, error: mErr } = await supabase
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.from('conversation_members')
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.select('conversation_id')
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.eq('user_id', myUserId)
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.eq('accepted', true);
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if (mErr) {
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console.warn('keySync own-member lookup failed', mErr);
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return;
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}
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const targets: string[] = [];
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for (const row of mine ?? []) {
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const id = row.conversation_id as string;
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if (peerConvs.has(id)) targets.push(id);
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}
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for (const convId of targets) {
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try {
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await shareConvKeyToDevice(supabase, convId, newDeviceId, newPub, ownCtx);
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} catch (err: unknown) {
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// Common: this device has no key for that conv yet (was offline at
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// bootstrap). Other online devices will handle it.
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console.warn('shareConvKeyToDevice failed', { convId, err });
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}
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}
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}
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return () => {
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cancelled = true;
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void supabase.removeChannel(channel);
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};
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}
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async function listMyConversationIds(myUserId: string): Promise<string[]> {
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const { data, error } = await supabase
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.from('conversation_members')
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.select('conversation_id')
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.eq('user_id', myUserId)
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.eq('accepted', true);
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if (error) {
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console.warn('keySync: own-member lookup failed', error);
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return [];
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}
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return (data ?? []).map((r) => r.conversation_id as string);
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}
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async function listConversationDevices(
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conversationId: string,
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): Promise<{ id: string; user_id: string; public_key: string }[]> {
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const { data: members, error: mErr } = await supabase
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.from('conversation_members')
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.select('user_id')
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.eq('conversation_id', conversationId)
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.eq('accepted', true);
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if (mErr) {
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console.warn('keySync: members lookup failed', mErr);
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return [];
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}
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const userIds = (members ?? []).map((m) => m.user_id as string);
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if (userIds.length === 0) return [];
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const { data: devices, error: dErr } = await supabase
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.from('devices')
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.select('id, user_id, public_key')
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.in('user_id', userIds);
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if (dErr) {
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console.warn('keySync: devices lookup failed', dErr);
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return [];
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}
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return (devices ?? []) as { id: string; user_id: string; public_key: string }[];
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}
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async function listExistingKeyRecipients(
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conversationId: string,
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keyVersion: number,
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): Promise<Set<string>> {
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const { data, error } = await rawFrom('conversation_keys')
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.select('recipient_device_id')
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.eq('conversation_id', conversationId)
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.eq('key_version', keyVersion);
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if (error) {
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console.warn('keySync: existing keys lookup failed', error);
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return new Set();
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}
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return new Set((data ?? []).map((r: { recipient_device_id: string }) => r.recipient_device_id));
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}
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async function getActiveKeyVersion(conversationId: string): Promise<number> {
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const { data, error } = await rawFrom('conversations')
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.select('active_key_version')
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.eq('id', conversationId)
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.single();
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if (error) {
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console.warn('keySync: active key version lookup failed', error);
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return 1;
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}
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return (data as { active_key_version: number }).active_key_version;
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}
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async function syncAllExistingGaps(ctx: SyncCtx): Promise<void> {
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const convs = await listMyConversationIds(ctx.myUserId);
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for (const convId of convs) {
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try {
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await syncOneConversationGaps(ctx, convId);
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} catch (err: unknown) {
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console.warn('keySync: conv gap sync failed', { convId, err });
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}
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}
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}
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async function syncOneConversationGaps(ctx: SyncCtx, convId: string): Promise<void> {
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const version = await getActiveKeyVersion(convId);
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const devices = await listConversationDevices(convId);
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if (devices.length === 0) return;
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const recipients = await listExistingKeyRecipients(convId, version);
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const ownCtx: OwnDeviceCtx = {
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userId: ctx.myUserId,
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deviceId: ctx.myDeviceId,
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privateKey: ctx.priv,
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};
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for (const dev of devices) {
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if (recipients.has(dev.id)) continue;
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// Skip our own device — we already have the bundle if we're capable of
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// sharing (or don't need it if we ourselves haven't been wrapped yet).
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if (dev.id === ctx.myDeviceId) continue;
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try {
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await shareConvKeyToDevice(supabase, convId, dev.id, pgHexToBytes(dev.public_key), ownCtx);
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} catch (err: unknown) {
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// Most common: this device hasn't been wrapped for us yet either, so
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// tryGetConvKey couldn't unwrap. Another peer with the key will fill
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// the gap when they hit syncAllExistingGaps.
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console.warn('keySync: shareConvKeyToDevice gap-fill failed', {
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convId,
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recipient: dev.id,
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err,
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});
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}
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}
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}
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async function wrapForOneDevice(
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ctx: SyncCtx,
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newDeviceId: string,
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newDeviceUserId: string,
|
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newDevicePubHex: string,
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): Promise<void> {
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const myConvs = new Set(await listMyConversationIds(ctx.myUserId));
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const { data: peerMember, error: pErr } = await supabase
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.from('conversation_members')
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.select('conversation_id')
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.eq('user_id', newDeviceUserId);
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if (pErr) {
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console.warn('keySync: peer-member lookup failed', pErr);
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return;
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}
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const sharedConvs = (peerMember ?? [])
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.map((r) => r.conversation_id as string)
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.filter((id) => myConvs.has(id));
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if (sharedConvs.length === 0) return;
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|
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const newPub = pgHexToBytes(newDevicePubHex);
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const ownCtx: OwnDeviceCtx = {
|
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userId: ctx.myUserId,
|
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deviceId: ctx.myDeviceId,
|
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privateKey: ctx.priv,
|
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};
|
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for (const convId of sharedConvs) {
|
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try {
|
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await shareConvKeyToDevice(supabase, convId, newDeviceId, newPub, ownCtx);
|
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} catch (err: unknown) {
|
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console.warn('keySync: shareConvKeyToDevice failed', { convId, err });
|
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}
|
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}
|
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}
|
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|
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@@ -39,11 +39,21 @@ export async function setSecretStoreUser(userId: string | null): Promise<void> {
|
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|
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if (userId && isTauriRuntime()) {
|
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const stronghold = makeStrongholdStore(userId);
|
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activeBackend = stronghold;
|
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try {
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await migrateLocalStorageToStronghold(userId, PREFIX);
|
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// Force a tiny round-trip to verify Stronghold can actually open the
|
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// vault on this machine. If not (broken vault file, bundled rust crate
|
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// mismatch, etc.) we fall back to localStorage so the rest of the app
|
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// remains usable instead of bricking device registration.
|
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await stronghold.getSecret('__probe');
|
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activeBackend = stronghold;
|
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try {
|
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await migrateLocalStorageToStronghold(userId, PREFIX);
|
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} catch (err: unknown) {
|
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console.warn('stronghold migration failed', err);
|
||||
}
|
||||
} catch (err: unknown) {
|
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console.warn('stronghold migration failed', err);
|
||||
console.warn('stronghold init failed — falling back to localStorage', err);
|
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activeBackend = localStore;
|
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}
|
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} else {
|
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activeBackend = localStore;
|
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|
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@@ -10,7 +10,7 @@ import {
|
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type MessageWithCipher,
|
||||
sendEncryptedMessage,
|
||||
} from '@chat-app/shared/chat';
|
||||
import { bytesToPgHex, pgHexToBytes } from '@chat-app/shared/supabase';
|
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import { bytesToPgHex, pgBytesToBytes } from '@chat-app/shared/supabase';
|
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import { useCallback, useEffect, useMemo, useRef, useState } from 'react';
|
||||
|
||||
import { devLocalSecretStore } from './secretStore';
|
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@@ -44,8 +44,8 @@ function rowToMessage(row: Record<string, unknown>): MessageWithCipher {
|
||||
editedAt: row.edited_at ? String(row.edited_at) : null,
|
||||
deletedAt: row.deleted_at ? String(row.deleted_at) : null,
|
||||
createdAt: String(row.created_at),
|
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ciphertext: pgHexToBytes(String(row.ciphertext ?? '\\x')),
|
||||
nonce: pgHexToBytes(String(row.nonce ?? '\\x')),
|
||||
ciphertext: pgBytesToBytes(String(row.ciphertext ?? '\\x')),
|
||||
nonce: pgBytesToBytes(String(row.nonce ?? '\\x')),
|
||||
keyVersion: typeof row.key_version === 'number' ? row.key_version : 1,
|
||||
};
|
||||
}
|
||||
@@ -98,26 +98,81 @@ export function useConversationMessages({ conversationId, userId, deviceId }: Ar
|
||||
}
|
||||
}, [conversationId, decryptBatch]);
|
||||
|
||||
// Realtime INSERT handler — decrypt + append (with retry for envelope race).
|
||||
// Realtime INSERT handler — refetches the row via REST so we get the
|
||||
// canonical bytea encoding (postgres_changes payloads serialize bytea
|
||||
// differently and decoding them inline is brittle). Then decrypt + append.
|
||||
// Skips if the message is already in state (e.g. optimistic insert from our
|
||||
// own send), so the sender's cached copy isn't overwritten with a flicker.
|
||||
const handleInsert = useCallback(
|
||||
async (row: Record<string, unknown>) => {
|
||||
if (!deviceId) return;
|
||||
const msg = rowToMessage(row);
|
||||
let decrypted: DecryptedMessage = { ...msg, plaintext: null };
|
||||
if (!conversationId || !deviceId) return;
|
||||
const id = String(row.id);
|
||||
|
||||
let alreadyHave = false;
|
||||
setState((prev) => {
|
||||
if (prev.messages.some((m) => m.id === id)) alreadyHave = true;
|
||||
return prev;
|
||||
});
|
||||
if (alreadyHave) return;
|
||||
|
||||
let decrypted: DecryptedMessage | null = null;
|
||||
for (let attempt = 0; attempt < 6; attempt++) {
|
||||
const { data, error } = await supabase
|
||||
.from('messages')
|
||||
.select(
|
||||
'id, conversation_id, sender_id, sender_device_id, reply_to_id, edited_at, deleted_at, created_at, ciphertext, nonce, key_version',
|
||||
)
|
||||
.eq('id', id)
|
||||
.maybeSingle();
|
||||
if (error) {
|
||||
console.warn('handleInsert refetch failed', error);
|
||||
return;
|
||||
}
|
||||
if (!data) {
|
||||
await new Promise((r) => window.setTimeout(r, 120 * (attempt + 1)));
|
||||
continue;
|
||||
}
|
||||
// db-types snapshot predates the sender-key columns; cast to bypass.
|
||||
const r = data as unknown as {
|
||||
id: string;
|
||||
conversation_id: string;
|
||||
sender_id: string;
|
||||
sender_device_id: string | null;
|
||||
reply_to_id: string | null;
|
||||
edited_at: string | null;
|
||||
deleted_at: string | null;
|
||||
created_at: string;
|
||||
ciphertext: string;
|
||||
nonce: string;
|
||||
key_version: number;
|
||||
};
|
||||
const msg: MessageWithCipher = {
|
||||
id: r.id,
|
||||
conversationId: r.conversation_id,
|
||||
senderId: r.sender_id,
|
||||
senderDeviceId: r.sender_device_id,
|
||||
replyToId: r.reply_to_id,
|
||||
editedAt: r.edited_at,
|
||||
deletedAt: r.deleted_at,
|
||||
createdAt: r.created_at,
|
||||
ciphertext: pgBytesToBytes(String(r.ciphertext)),
|
||||
nonce: pgBytesToBytes(String(r.nonce)),
|
||||
keyVersion: r.key_version,
|
||||
};
|
||||
const [d] = await decryptBatch([msg]);
|
||||
if (d) {
|
||||
decrypted = d;
|
||||
if (d.plaintext !== null) break;
|
||||
}
|
||||
await new Promise((r) => window.setTimeout(r, 120 * (attempt + 1)));
|
||||
await new Promise((r) => window.setTimeout(r, 200 * (attempt + 1)));
|
||||
}
|
||||
if (!decrypted) return;
|
||||
setState((prev) => {
|
||||
if (prev.messages.some((m) => m.id === decrypted.id)) return prev;
|
||||
return { ...prev, messages: [...prev.messages, decrypted] };
|
||||
if (prev.messages.some((m) => m.id === decrypted!.id)) return prev;
|
||||
return { ...prev, messages: [...prev.messages, decrypted!] };
|
||||
});
|
||||
},
|
||||
[deviceId, decryptBatch],
|
||||
[conversationId, deviceId, decryptBatch],
|
||||
);
|
||||
|
||||
const handleUpdate = useCallback(
|
||||
@@ -183,6 +238,22 @@ export function useConversationMessages({ conversationId, userId, deviceId }: Ar
|
||||
}
|
||||
},
|
||||
)
|
||||
// When a peer device wraps the conversation-key for us (e.g. we just
|
||||
// registered a fresh device), re-decrypt the visible messages.
|
||||
.on(
|
||||
'postgres_changes',
|
||||
{
|
||||
event: 'INSERT',
|
||||
schema: 'public',
|
||||
table: 'conversation_keys',
|
||||
filter: 'conversation_id=eq.' + conversationId,
|
||||
},
|
||||
(payload: { new: { recipient_device_id?: string } }) => {
|
||||
if (payload.new?.recipient_device_id === deviceId) {
|
||||
void refresh();
|
||||
}
|
||||
},
|
||||
)
|
||||
.subscribe();
|
||||
|
||||
return () => {
|
||||
@@ -219,7 +290,7 @@ export function useConversationMessages({ conversationId, userId, deviceId }: Ar
|
||||
blobNonceHexByHandleId.set(res.handle.id, bytesToPgHex(res.nonce));
|
||||
}
|
||||
|
||||
// 2. Send message (inserts messages + envelopes in one helper).
|
||||
// 2. Send message (inserts messages + per-conversation key bundles).
|
||||
const msg = await sendEncryptedMessage({
|
||||
client: supabase,
|
||||
conversationId,
|
||||
@@ -230,7 +301,28 @@ export function useConversationMessages({ conversationId, userId, deviceId }: Ar
|
||||
...(handles.length > 0 ? { attachmentHandles: handles } : {}),
|
||||
});
|
||||
|
||||
// 3. Insert public attachment metadata rows pointing at the new message.
|
||||
// 3. Optimistic insert — we already have the plaintext in hand and the
|
||||
// server returned the row id, so add the message to local state
|
||||
// immediately. Realtime will then no-op (handleInsert dedupes by id).
|
||||
const attachmentsPayload =
|
||||
handles.length === 0
|
||||
? trimmed
|
||||
: JSON.stringify({ v: 1, text: trimmed, attachments: handles });
|
||||
setState((prev) => {
|
||||
if (prev.messages.some((m) => m.id === msg.id)) return prev;
|
||||
return {
|
||||
...prev,
|
||||
messages: [
|
||||
...prev.messages,
|
||||
{
|
||||
...msg,
|
||||
plaintext: attachmentsPayload,
|
||||
} as DecryptedMessage,
|
||||
],
|
||||
};
|
||||
});
|
||||
|
||||
// 4. Insert public attachment metadata rows pointing at the new message.
|
||||
for (const h of handles) {
|
||||
const blobNonce = blobNonceHexByHandleId.get(h.id) ?? '\\x';
|
||||
await insertAttachmentRow(supabase, msg.id, h, blobNonce);
|
||||
|
||||
@@ -86,7 +86,11 @@ export async function completeSessionFromUrl(
|
||||
}
|
||||
|
||||
export async function signOut(client: AppSupabaseClient): Promise<void> {
|
||||
const { error } = await client.auth.signOut();
|
||||
// `scope: 'local'` only ends the session in THIS client. Without it Supabase
|
||||
// defaults to 'global', which invalidates the user's refresh tokens
|
||||
// everywhere — meaning a logout in the browser would also kick the desktop
|
||||
// app (and vice versa) the next time it tries to refresh its token.
|
||||
const { error } = await client.auth.signOut({ scope: 'local' });
|
||||
if (error) throw error;
|
||||
}
|
||||
|
||||
|
||||
@@ -23,3 +23,20 @@ export function pgHexToBytes(hex: string): Uint8Array {
|
||||
}
|
||||
return out;
|
||||
}
|
||||
|
||||
// Accepts either:
|
||||
// - PostgREST/REST `\x<hex>` strings (what the .from('table').select() path
|
||||
// returns for bytea), or
|
||||
// - Realtime `postgres_changes` payloads, which encode bytea as plain
|
||||
// base64 (no `\x` prefix).
|
||||
// Useful when the same row can arrive through both paths in the same UI.
|
||||
export function pgBytesToBytes(value: string): Uint8Array {
|
||||
if (value.startsWith('\\x')) {
|
||||
return pgHexToBytes(value);
|
||||
}
|
||||
// Assume base64 (the realtime serializer's default for bytea).
|
||||
const bin = atob(value);
|
||||
const out = new Uint8Array(bin.length);
|
||||
for (let i = 0; i < bin.length; i++) out[i] = bin.charCodeAt(i);
|
||||
return out;
|
||||
}
|
||||
|
||||
@@ -5,6 +5,20 @@ import type { Database, SupabaseConfig } from './types.js';
|
||||
// Typed client alias used throughout the app.
|
||||
export type AppSupabaseClient = SupabaseClient<Database>;
|
||||
|
||||
// Inline serial lock — replaces Supabase's default `navigator.locks` based
|
||||
// lock that occasionally throws "Lock was stolen by another request" when
|
||||
// the same origin opens multiple tabs / Tauri windows / HMR-reloaded
|
||||
// modules. We only have one client instance per process so a simple promise
|
||||
// chain serialises token-refresh fine without cross-tab coordination.
|
||||
const acquireLock = (() => {
|
||||
let chain: Promise<unknown> = Promise.resolve();
|
||||
return async <R>(_name: string, _acquireTimeout: number, fn: () => Promise<R>): Promise<R> => {
|
||||
const next = chain.then(() => fn(), () => fn());
|
||||
chain = next.catch(() => undefined);
|
||||
return next;
|
||||
};
|
||||
})();
|
||||
|
||||
export function createClient(config: SupabaseConfig): AppSupabaseClient {
|
||||
return createSupabaseClient<Database>(config.url, config.anonKey, {
|
||||
auth: {
|
||||
@@ -12,6 +26,7 @@ export function createClient(config: SupabaseConfig): AppSupabaseClient {
|
||||
autoRefreshToken: true,
|
||||
persistSession: true,
|
||||
detectSessionInUrl: config.detectSessionInUrl ?? false,
|
||||
lock: acquireLock,
|
||||
},
|
||||
});
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user