Files

2477 lines
88 KiB
JavaScript

import {
createContext,
useState,
useContext,
useMemo,
useEffect,
useRef,
useCallback,
} from 'react';
import {
attachWalletListeners,
claimnSparkStaticDepositAddress,
clearMnemonicCache,
getSingleTxDetails,
getSparkTransactions,
getSparkStaticBitcoinL1AddressQuote,
getUtxosForDepositAddress,
initializeFlashnet,
queryAllStaticDepositAddresses,
selectSparkRuntime,
sparkWallet,
isOptimizationInProgress,
} from '../app/functions/spark';
import {
bulkUpdateSparkTransactions,
insertSparkTransactionPlaceholders,
getAllSparkTransactions,
getAllSparkContactInvoices,
getSparkTransactionBySparkId,
getAllUnpaidSparkLightningInvoices,
SPARK_TX_UPDATE_ENVENT_NAME,
sparkTransactionsEventEmitter,
} from '../app/functions/spark/transactions';
import { useAppStatus } from './appStatus';
import {
checkHodlInvoicePaymentStatuses,
updateSparkTxStatus,
} from '../app/functions/spark/restore';
import { useGlobalContactsInfo } from './globalContacts';
import { initWallet } from '../app/functions/initiateWalletConnection';
// import { useNodeContext } from './nodeContext';
import { AppState, InteractionManager } from 'react-native';
import getDepositAddressTxIds from '../app/functions/spark/getDepositAdressTxIds';
import { useKeysContext } from './keys';
import {
clearSpendAndReplaceCorrelationMemo,
setSpendAndReplaceAuthGetter,
} from '../app/functions/spark/spendAndReplaceCorrelation';
import { navigationRef } from '../navigation/navigationService';
import { transformTxToPaymentObject } from '../app/functions/spark/transformTxToPayment';
import EventEmitter from 'events';
import { getLRC20Transactions } from '../app/functions/lrc20';
import { useActiveCustodyAccount } from './activeAccount';
import sha256Hash from '../app/functions/hash';
import i18n from 'i18next';
import {
INCOMING_SPARK_TX_NAME,
incomingSparkTransaction,
BALANCE_UPDATE_EVENT_NAME,
sparkBalanceUpdateEmitter,
TOKEN_BALANCE_UPDATE_EVENT_NAME,
sparkTokenBalanceUpdateEmitter,
STREAM_STATUS_EVENT_NAME,
sparkStreamStatusEmitter,
OPERATION_TYPES,
sendWebViewRequestGlobal,
useWebView,
} from './webViewContext';
import { useGlobalContextProvider } from './context';
import { useAuthContext } from './authContext';
import {
createRestorePoller,
getBalanceWithTimeout,
getSparkLeavesWithTimeout,
getSparkExitNodesForLeavesWithTimeout,
} from '../app/functions/pollingManager';
import {
replaceAllLeaves,
getGlobalLeafStats,
getPendingExitNodeLeafIds,
saveExitNodesForLeaf,
getExitNodeSyncProgress,
} from '../app/functions/spark/leavesStorage';
import { USDB_TOKEN_ID } from '../app/constants';
import { saveAccountBalanceSnapshot } from '../app/functions/spark/balanceSnapshots';
import { mergeAndCacheTokens } from '../app/functions/lrc20/cachedTokens';
import {
cleanupOptimization,
checkIfOptimizationNeeded,
runLeafOptimization,
runTokenOptimization,
} from '../app/functions/spark/optimization';
import { isFlashnetTransfer } from '../app/functions/spark/handleFlashnetTransferIds';
import { filterDisplayableTransactions } from '../app/functions/spark/filterTransactions';
import { getCachedTokenImages } from '../app/functions/spark/tokenImageCache';
import { useToastActions } from './toastManager';
export const isSendingPayingEventEmiiter = new EventEmitter();
export const SENDING_PAYMENT_EVENT_NAME = 'SENDING_PAYMENT_EVENT';
if (!global.blitzWalletSparkIntervalState) {
global.blitzWalletSparkIntervalState = {
intervalTracker: new Map(),
listenerLock: new Map(),
allIntervalIds: new Set(),
depositIntervalIds: new Set(),
};
}
const { intervalTracker, listenerLock, allIntervalIds, depositIntervalIds } =
global.blitzWalletSparkIntervalState;
const TX_REFRESH_UPDATE_TYPES = new Set([
'transactions',
'txStatusUpdate',
'lrc20Payments',
'contactDetailsUpdate',
'incrementalRestore',
'incomingPayment',
'fullUpdate',
'fullUpdate-waitBalance',
'fullUpdate-tokens',
'paymentWrapperTx',
]);
const BALANCE_INTENT_UPDATE_TYPES = new Set([
'fullUpdate-waitBalance',
'paymentWrapperTx',
'fullUpdate',
'fullUpdate-tokens',
]);
const SKIP_CONFIRM_NAV_UPDATE_TYPES = new Set([
'paymentWrapperTx',
'transactions',
'txStatusUpdate',
'lrc20Payments',
'contactDetailsUpdate',
'incrementalRestore',
]);
// Send screens where an incoming-payment toast would obscure the send UI. Keyed
// by the route names registered in navigation/screens.js.
const BLOCKED_TOAST_ROUTE_NAMES = new Set([
'ConfirmPaymentScreen', // sendPaymentScreen.js
'ConfirmSplitPayment', // confirmSplitPayment.js
'StablecoinSendScreen', // stablecoinSendScreen.js
]);
function isOnSendScreen() {
try {
if (!navigationRef.isReady()) return false;
return BLOCKED_TOAST_ROUTE_NAMES.has(navigationRef.getCurrentRoute()?.name);
} catch {
return false;
}
}
// Initiate context
const SparkWalletManager = createContext(null);
const SparkWalletProvider = ({ children }) => {
const { authResetkey } = useAuthContext();
const { masterInfoObject } = useGlobalContextProvider();
const { changeSparkConnectionState, sendWebViewRequest } = useWebView();
const { accountMnemoinc, contactsPrivateKey, publicKey } = useKeysContext();
const { currentWalletMnemoinc } = useActiveCustodyAccount();
const { showToast } = useToastActions();
const {
didGetToHomepage,
appState,
// lastConnectedTimeRef
} = useAppStatus();
// const { liquidNodeInformation } = useNodeContext();
const { toggleGlobalContactsInformation, globalContactsInformation } =
useGlobalContactsInfo();
const prevAccountMnemoincRef = useRef(null);
const contactsPrivateKeyRef = useRef('');
const contactsPublicKeyRef = useRef(null);
const [sparkConnectionError, setSparkConnectionError] = useState(null);
const isRunningAddListeners = useRef(false);
const [sparkInformation, setSparkInformation] = useState({
balance: 0,
tokens: {},
transactions: [],
identityPubKey: '',
sparkAddress: '',
didConnect: null,
didConnectToFlashnet: null,
// Lightweight summary of the local leaves store (full leaf detail lives in
// SQLite; the Wallet Leaves page reads it directly). Kept small on purpose —
// the full leaf array must never live in context state.
leaves: { count: 0, totalValue: 0, lastSyncedAt: 0 },
});
const [tokensImageCache, setTokensImageCache] = useState({});
const depositAddressIntervalRef = useRef(null);
const sparkDBaddress = useRef(null);
const updatePendingPaymentsIntervalRef = useRef(null);
const isInitialLRC20Run = useRef(true);
const initialBitcoinIntervalRun = useRef(null);
const sparkInfoRef = useRef({
balance: 0,
tokens: {},
identityPubKey: '',
sparkAddress: '',
transactions: [],
didConnect: false,
});
const sessionTimeRef = useRef(Date.now());
const handledTransfers = useRef(new Set());
const prevListenerType = useRef(null);
const prevAppState = useRef(appState);
const prevAccountId = useRef(null);
const isSendingPaymentRef = useRef(false);
const txPollingTimeoutRef = useRef(null);
const txPollingAbortControllerRef = useRef(null);
const isInitialRender = useRef(true);
const authResetKeyRef = useRef(authResetkey);
const balanceVersionRef = useRef(0);
// One-shot latch: has the post-connect authoritative balance reconcile run for
// this session yet? Reset in resetSparkState so an account switch re-arms it.
const hasRunInitBalancePoll = useRef(false);
const foregroundReconcileAppStateRef = useRef(appState);
const txLaneQueueRef = useRef(Promise.resolve());
const uiLaneQueueRef = useRef(Promise.resolve());
const queueDepthRef = useRef(0);
const eventSequenceRef = useRef(0);
const scrollPositionRef = useRef('total');
// Single-flight guard for the balance reconcile read (see reconcileBalance).
// reconcileRunIdRef gives each run ownership so a read that parks across a
// background transition can't clear a newer run's lock when it finally settles.
const isReconcilingBalanceRef = useRef(false);
const reconcileBalanceAgainRef = useRef(false);
const reconcileRunIdRef = useRef(0);
// Single-flight + throttle for the leaves sync. Leaves change far less often
// than balance and syncing them is heavier (map + serialize + bulk insert of a
// potentially large set), so we skip a sync that ran within the throttle window.
const isReconcilingLeavesRef = useRef(false);
const lastLeavesSyncRef = useRef(0);
const hydratedLeavesForRef = useRef(null);
const LEAVES_SYNC_THROTTLE_MS = 30000;
// Single-flight + throttle for the exit-node backfill. Heavier than a leaves
// sync (each pending leaf hits Spark operators for its ancestor chain), so it
// runs on a longer window and piggybacks leaves syncs rather than firing on
// every wallet event.
const isReconcilingExitNodesRef = useRef(false);
const lastExitNodesSyncRef = useRef(0);
// Promise for the exit-node run currently in flight (or null). A forced
// refresh (export) awaits this so it can never be silently dropped by the
// single-flight guard when a background backfill happens to be running.
const exitNodesRunRef = useRef(null);
const EXIT_NODES_SYNC_THROTTLE_MS = 60000;
// How many pending leaves we fetch ancestors for per operator round-trip.
const EXIT_NODES_BATCH_SIZE = 6;
// Tracks whether the Spark event stream has dropped, so a later
// stream:connected is recognized as a *re*connect (which warrants one
// reconcile read) rather than the benign initial connect.
const streamWasDisconnectedRef = useRef(false);
const homepageTxPreferance = masterInfoObject.homepageTxPreferance;
const hideSmallPaymentsHomepage = masterInfoObject.hideSmallPaymentsHomepage;
const showTokensInformation =
masterInfoObject.enabledBTKNTokens === null
? !!Object.keys(sparkInformation.tokens || {}).filter(
token => token !== USDB_TOKEN_ID,
).length
: masterInfoObject.enabledBTKNTokens;
const handledNavigatedTxs = useRef(new Set());
const [didRunNormalConnection, setDidRunNormalConnection] = useState(false);
const [normalConnectionTimeout, setNormalConnectionTimeout] = useState(false);
const shouldRunNormalConnection =
didRunNormalConnection || normalConnectionTimeout;
const currentMnemonicRef = useRef(currentWalletMnemoinc);
// Hash of the active main wallet mnemonic. Push events (balance/token/transfer)
// are tagged with a walletId (mnemonic hash) so derived gift/pool/savings
// wallets sharing the WebView bridge can be told apart from the main wallet.
// We ignore any event whose walletId isn't this one. Cached here so we don't
// re-hash on every event.
const mainWalletHashRef = useRef(
currentWalletMnemoinc ? sha256Hash(currentWalletMnemoinc) : null,
);
const cleanStatusAndLRC20Intervals = () => {
try {
for (const intervalId of allIntervalIds) {
console.log('Clearing stored interval ID:', intervalId);
clearInterval(intervalId);
}
intervalTracker.clear();
allIntervalIds.clear();
} catch (err) {
console.log('Error cleaning lrc20 intervals', err);
}
};
const clearAllDepositIntervals = () => {
console.log(
'Clearing all deposit address intervals. Counts:',
depositIntervalIds.size,
);
for (const intervalId of depositIntervalIds) {
console.log('Clearing deposit interval ID:', intervalId);
clearInterval(intervalId);
}
depositIntervalIds.clear();
console.log('All deposit intervals cleared');
};
useEffect(() => {
authResetKeyRef.current = authResetkey;
}, [authResetkey]);
useEffect(() => {
sparkInfoRef.current = {
...sparkInfoRef.current,
balance: sparkInformation.balance,
tokens: sparkInformation.tokens,
identityPubKey: sparkInformation.identityPubKey,
sparkAddress: sparkInformation.sparkAddress,
didConnect: sparkInformation.didConnect,
};
}, [
sparkInformation.balance,
sparkInformation.tokens,
sparkInformation.identityPubKey,
sparkInformation.sparkAddress,
sparkInformation.didConnect,
]);
useEffect(() => {
currentMnemonicRef.current = currentWalletMnemoinc;
mainWalletHashRef.current = currentWalletMnemoinc
? sha256Hash(currentWalletMnemoinc)
: null;
}, [currentWalletMnemoinc]);
useEffect(() => {
// Fixing race condition with new preloaded txs
sessionTimeRef.current = Date.now() + 5 * 1000;
}, [currentWalletMnemoinc, authResetkey]);
useEffect(() => {
if (!didGetToHomepage) return;
const timer = setTimeout(() => {
setNormalConnectionTimeout(true);
}, 20000);
return () => clearTimeout(timer);
}, [didGetToHomepage]);
useEffect(() => {
async function handleWalletStateChange() {
if (!didGetToHomepage) return;
if (!sparkInfoRef.current.identityPubKey) return;
if (changeSparkConnectionState.state == null) return;
if (!changeSparkConnectionState.state) {
setSparkInformation(prev => ({ ...prev, didConnect: false }));
} else {
let alreadyRanConnection = false;
if (!sparkInfoRef.current.identityPubKey && shouldRunNormalConnection) {
await resetSparkState(true, false);
await connectToSparkWallet();
await initializeFlashnet(currentMnemonicRef.current);
alreadyRanConnection = true;
} else {
setSparkInformation(prev => ({
...prev,
didConnect: !!prev.identityPubKey,
}));
}
const runtime = await selectSparkRuntime(
currentMnemonicRef.current,
false,
undefined,
false,
);
if (runtime === 'native') {
if (!alreadyRanConnection) {
await resetSparkState(true, false);
await connectToSparkWallet();
await initializeFlashnet(currentMnemonicRef.current);
}
}
}
}
handleWalletStateChange();
}, [
changeSparkConnectionState,
didGetToHomepage,
shouldRunNormalConnection,
resetSparkState,
connectToSparkWallet,
]);
useEffect(() => {
if (!sparkInfoRef.current?.tokens) return;
async function updateTokensImageCache() {
const tokenIds = Object.keys(sparkInfoRef.current.tokens);
const newCache = await getCachedTokenImages(tokenIds);
setTokensImageCache(prev => ({ ...prev, ...newCache }));
}
updateTokensImageCache();
}, [Object.keys(sparkInformation.tokens || {}).length]);
// Debounce refs
const debounceTimeoutRef = useRef(null);
const debounceMaxWaitRef = useRef(null);
const latestIncomingBalanceRef = useRef(null);
const pendingTransferIds = useRef(new Set());
// Debounce refs for balance:update — a burst of inbound payments emits one
// balance:update each; we coalesce them into a single state write.
const balanceDebounceTimeoutRef = useRef(null);
const balanceDebounceMaxWaitRef = useRef(null);
const latestBalanceRef = useRef(null);
// Debounce refs for token-balance:update — same coalescing for token events.
const tokenDebounceTimeoutRef = useRef(null);
const tokenDebounceMaxWaitRef = useRef(null);
const latestTokensRef = useRef(null);
const toggleIsSendingPayment = useCallback(isSending => {
console.log('Setting is sending payment', isSending);
if (isSending) {
if (txPollingAbortControllerRef.current) {
txPollingAbortControllerRef.current.abort();
txPollingAbortControllerRef.current = null;
}
}
isSendingPaymentRef.current = isSending;
}, []);
useEffect(() => {
if (
!isSendingPayingEventEmiiter.listenerCount(SENDING_PAYMENT_EVENT_NAME)
) {
isSendingPayingEventEmiiter.addListener(
SENDING_PAYMENT_EVENT_NAME,
toggleIsSendingPayment,
);
}
return () => {
console.log('clearning up toggle send pament');
isSendingPayingEventEmiiter.removeListener(
SENDING_PAYMENT_EVENT_NAME,
toggleIsSendingPayment,
);
};
}, [toggleIsSendingPayment]);
const debouncedHandleIncomingPayment = useCallback(
async balance => {
if (pendingTransferIds.current.size === 0) return;
const transferIdsToProcess = Array.from(pendingTransferIds.current);
pendingTransferIds.current.clear();
console.log(
'Processing debounced incoming payments:',
transferIdsToProcess,
);
// ─── Step 1: Immediately write placeholders so the restore handler
// sees these transfer IDs as already-present in SQLite and skips them.
const placeholders = transferIdsToProcess.map(transferId => ({
id: transferId,
paymentStatus: 'pending',
paymentType: 'unknown',
accountId: sparkInfoRef.current.identityPubKey,
details: {
createdTime: Date.now(),
isPlaceholder: true,
direction: 'INCOMING',
},
}));
try {
await insertSparkTransactionPlaceholders(placeholders);
} catch (error) {
console.error('Error writing placeholder transactions:', error);
}
// ─── Step 2: Fetch tx details in a SINGLE batched call (one WebView
// message) instead of one round-trip per transfer.
let cachedTransfers = [];
try {
const idSet = new Set(transferIdsToProcess);
const { transfers = [] } = await getSparkTransactions(
Math.max(50, transferIdsToProcess.length),
undefined,
currentMnemonicRef.current,
);
cachedTransfers = transfers.filter(transfer => idSet.has(transfer.id));
// Fallback only for ids NOT in the batch window (e.g. an older transfer
// that settled while many newer transfers arrived in the same burst).
// Normal load hits zero of these, so the single-message goal holds; this
// just stops a dropped id from being stuck as a pending placeholder.
const foundIds = new Set(cachedTransfers.map(transfer => transfer.id));
const missingIds = transferIdsToProcess.filter(id => !foundIds.has(id));
for (const transferId of missingIds) {
const transfer = await getSingleTxDetails(
currentMnemonicRef.current,
transferId,
);
if (transfer) cachedTransfers.push(transfer);
}
} catch (error) {
console.error('Error fetching batched incoming payments:', error);
}
const paymentObjects = [];
const [unpaidInvoices, unpaidContactInvoices] = await Promise.all([
getAllUnpaidSparkLightningInvoices(),
getAllSparkContactInvoices(),
]);
for (const transferId of transferIdsToProcess) {
const tx = cachedTransfers.find(t => t.id === transferId);
if (!tx) continue;
// Skip UTXO_SWAP handling here — old logic kept
if (tx.type === 'UTXO_SWAP') continue;
const paymentObj = await transformTxToPaymentObject(
tx,
sparkInfoRef.current.sparkAddress,
undefined,
false,
unpaidInvoices,
sparkInfoRef.current.identityPubKey,
1,
undefined,
unpaidContactInvoices,
currentMnemonicRef.current,
);
if (paymentObj) {
paymentObjects.push(paymentObj);
}
}
if (!paymentObjects.length) {
// Authoritative claim balance; apply upward-only (a claim never reduces
// available) and coerce — the webview path delivers it as a string.
const claimedBalance = Number(balance);
setSparkInformation(prev =>
Number.isFinite(claimedBalance) && claimedBalance > prev.balance
? { ...prev, balance: claimedBalance }
: prev,
);
return;
}
try {
await bulkUpdateSparkTransactions(
paymentObjects,
isSendingPaymentRef.current ? 'transactions' : 'incomingPayment',
0,
balance,
);
} catch (error) {
console.error('bulkUpdateSparkTransactions failed:', error);
}
},
[sendWebViewRequest],
);
const filterAndSetTransactions = useCallback(
freshTxs => {
sparkInfoRef.current.transactions = freshTxs.slice(0, 50);
const filtered = filterDisplayableTransactions({
transactions: freshTxs,
scrollPosition: scrollPositionRef.current,
enabledLRC20: showTokensInformation,
tokens: sparkInfoRef.current.tokens,
limit: homepageTxPreferance,
hideSmallPaymentsHomepage,
});
setSparkInformation(prev => ({ ...prev, transactions: filtered }));
},
[showTokensInformation, homepageTxPreferance, hideSmallPaymentsHomepage],
);
const updateHomepageScrollPosition = useCallback(
async pos => {
scrollPositionRef.current = pos;
const allTxs = await getAllSparkTransactions({
limit: null,
accountId: sparkInfoRef.current.identityPubKey,
});
const filtered = filterDisplayableTransactions({
transactions: allTxs,
scrollPosition: pos,
enabledLRC20: showTokensInformation,
tokens: sparkInfoRef.current.tokens,
limit: homepageTxPreferance,
hideSmallPaymentsHomepage,
});
if (scrollPositionRef.current !== pos) return;
setSparkInformation(prev => ({ ...prev, transactions: filtered }));
},
[showTokensInformation, homepageTxPreferance, hideSmallPaymentsHomepage],
);
const updateHomepageTxPreferance = useCallback(
async (num, smallPaymentOverrides) => {
const allTxs = await getAllSparkTransactions({
limit: null,
accountId: sparkInfoRef.current.identityPubKey,
});
const filtered = filterDisplayableTransactions({
transactions: allTxs,
scrollPosition: scrollPositionRef.current,
enabledLRC20: showTokensInformation,
tokens: sparkInfoRef.current.tokens,
limit: num,
hideSmallPaymentsHomepage:
smallPaymentOverrides ?? hideSmallPaymentsHomepage,
});
setSparkInformation(prev => ({ ...prev, transactions: filtered }));
},
[showTokensInformation, hideSmallPaymentsHomepage],
);
const enqueueTxLane = useCallback((updateType, task) => {
queueDepthRef.current += 1;
console.log(
`[TxLane] +1 (${updateType}) -> depth: ${queueDepthRef.current}`,
);
txLaneQueueRef.current = txLaneQueueRef.current
.then(task)
.catch(err => console.log('[TxLane] task error', updateType, err))
.finally(() => {
queueDepthRef.current -= 1;
console.log(
`[TxLane] -1 (${updateType}) -> depth: ${queueDepthRef.current}`,
);
});
return txLaneQueueRef.current;
}, []);
const enqueueUiLane = useCallback((updateType, task) => {
uiLaneQueueRef.current = uiLaneQueueRef.current
.then(task)
.catch(err => console.log('[UiLane] task error', updateType, err));
return uiLaneQueueRef.current;
}, []);
const maybeHandleConfirmNavigation = useCallback(
async (updateType, txs = null, from) => {
try {
if (SKIP_CONFIRM_NAV_UPDATE_TYPES.has(updateType)) return;
const { identityPubKey } = sparkInfoRef.current;
if (!identityPubKey) return;
let lastAddedTx;
if (txs) {
lastAddedTx = txs[0];
} else {
[lastAddedTx] = getAllSparkTransactions({
accountId: identityPubKey,
limit: 1,
});
}
if (!lastAddedTx) return;
let parsedDetails = {};
try {
parsedDetails = JSON.parse(lastAddedTx.details || '{}');
} catch {
parsedDetails = {};
}
const parsedTx = {
...lastAddedTx,
details: parsedDetails,
};
const details = parsedTx.details || {};
if (parsedTx.paymentStatus === 'pending') {
// Run a tx status check. Will delay toast message
// but will prevent a stale pending stae from making the trasnsaction show pending after toast message
const { updated } = await updateSparkTxStatus(
currentMnemonicRef.current,
sparkInfoRef.current.identityPubKey,
sendWebViewRequest,
true,
contactsPrivateKey,
publicKey,
);
const didUpdateStatus = updated.find(
tx =>
tx.tempId === parsedTx.sparkID &&
tx.paymentStatus === 'completed',
);
if (!didUpdateStatus) {
console.log('Payment is pending, show navigation once confimred');
return;
}
}
if (isFlashnetTransfer(parsedTx.sparkID)) {
console.log('Failed swap refund, do not show tosat here');
return;
}
if (
details.senderIdentityPublicKey === process.env.SPARK_IDENTITY_PUBKEY
) {
console.log('Refund from Spark, do not show tosat here');
return;
}
const txTime = new Date(details.time).getTime();
if (Number.isFinite(txTime) && txTime < sessionTimeRef.current) {
console.log(
'created before session time was set, skipping confirm tx page navigation',
);
return;
}
if (parsedTx?.paymentStatus?.toLowerCase() === 'failed') {
console.log('This payment is of type failed, do not navigate here');
return;
}
if (details.performSwaptoUSD) {
console.log(
'This payment is being used to perform a swap, do not navigate here.',
);
return;
}
if (isSendingPaymentRef.current) {
console.log(
'Is sending payment, skipping confirm tx page navigation',
);
return;
}
if (details.direction === 'OUTGOING') {
console.log(
'Only incoming payments navigate here, skipping confirm tx page navigation',
);
return;
}
if (details.isHoldInvoice && parsedTx.paymentStatus !== 'completed') {
console.log('Blocking unconfirmed hodl invoice from showing');
return;
}
if (handledNavigatedTxs.current.has(parsedTx.sparkID)) {
console.log(
'Already handled transaction, skipping confirm tx page navigation',
);
return;
}
handledNavigatedTxs.current.add(parsedTx.sparkID);
if (isOnSendScreen()) {
console.log('On a send screen — suppressing incoming payment toast');
return;
}
// const isOnReceivePage =
// navigationRef
// .getRootState()
// .routes?.filter(item => item.name === 'ReceiveBTC').length === 1;
// const hasPaymentTime = !!details.createdTime || !!details.time;
// const isNewestPayment = hasPaymentTime
// ? new Date(details.createdTime || details.time).getTime() >
// newestPaymentTimeRef.current
// : false;
// let shouldShowConfirm = false;
// if (
// (lastAddedTx.paymentType?.toLowerCase() === 'lightning' &&
// !details.isLNURL &&
// !details.shouldNavigate &&
// isOnReceivePage &&
// isNewestPayment) ||
// (lastAddedTx.paymentType?.toLowerCase() === 'spark' &&
// !details.isLRC20Payment &&
// isOnReceivePage &&
// isNewestPayment)
// ) {
// if (lastAddedTx.paymentType?.toLowerCase() === 'spark') {
// const unpaidLNInvoices = await getAllUnpaidSparkLightningInvoices();
// const lastMatch = unpaidLNInvoices.findLast(invoice => {
// const savedInvoiceDetails = JSON.parse(invoice.details);
// return (
// !savedInvoiceDetails.sendingUUID &&
// !savedInvoiceDetails.isLNURL &&
// invoice.amount === details.amount
// );
// });
// if (lastMatch && !usedSavedTxIds.current.has(lastMatch.id)) {
// usedSavedTxIds.current.add(lastMatch.id);
// const lastInvoiceDetails = JSON.parse(lastMatch.details);
// if (details.time - lastInvoiceDetails.createdTime < 60 * 1000) {
// shouldShowConfirm = true;
// }
// }
// } else {
// shouldShowConfirm = true;
// }
// }
showToast({
amount: details.amount,
LRC20Token: details.LRC20Token,
isLRC20Payment: !!details.LRC20Token,
duration: 7000,
isSARPayment: !!details.isSARIncoming,
type: 'confirmTx',
});
} catch (err) {
console.log('[UiLane] confirm navigation error', err);
}
},
[showToast],
);
const projectTransactionsForEvent = useCallback(
async event => {
const { identityPubKey } = sparkInfoRef.current;
if (!identityPubKey) {
console.warn(
'Skipping tx projection because identityPubKey is not ready yet',
);
return;
}
const txs = await getAllSparkTransactions({
limit: null,
accountId: identityPubKey,
});
filterAndSetTransactions(txs);
enqueueUiLane(event.updateType, () =>
maybeHandleConfirmNavigation(
event.updateType,
txs,
'project transactions for event',
),
);
},
[enqueueUiLane, maybeHandleConfirmNavigation, filterAndSetTransactions],
);
// Applies the most recent balance:update value immediately, cancelling the
// debounce. Used as the balance:update debounce flush AND to sync the
// displayed balance with the incoming-payment toast: balance:update fires
// before transfer:claimed, so the new value is already staged in
// latestBalanceRef and we flush it in the same pass the toast is shown.
const flushBalanceNow = useCallback(() => {
if (balanceDebounceTimeoutRef.current) {
clearTimeout(balanceDebounceTimeoutRef.current);
balanceDebounceTimeoutRef.current = null;
}
if (balanceDebounceMaxWaitRef.current) {
clearTimeout(balanceDebounceMaxWaitRef.current);
balanceDebounceMaxWaitRef.current = null;
}
const nextBalance = latestBalanceRef.current;
if (!Number.isFinite(nextBalance)) return;
if (nextBalance === sparkInfoRef.current.balance) return;
const commit = value => {
// Ordering guard shared with reconcileBalance so a slow reconcile read
// can't overwrite this newer event value.
const myVersion = ++balanceVersionRef.current;
const { identityPubKey } = sparkInfoRef.current;
saveAccountBalanceSnapshot(
identityPubKey,
value,
sparkInfoRef.current.tokens,
);
reconcileLeaves();
setSparkInformation(prev => {
if (myVersion < balanceVersionRef.current) return prev;
if (prev.balance === value) return prev;
return { ...prev, balance: value };
});
};
// A decrease can be a real spend OR a transient dip while the SDK optimizes
// leaves (available drops below owned mid-swap, then settles back). Don't
// commit an optimization dip — hold the displayed balance; the optimization's
// settle event re-arms a flush at the true value, and the reconcile safety
// net backstops it. Skip the check during a send: that decrease is real and
// must land. Runs at most once per debounce window (not per event), so it
// can't storm the WebView rate limiter.
if (
nextBalance < sparkInfoRef.current.balance &&
!isSendingPaymentRef.current
) {
isOptimizationInProgress({ mnemonic: currentMnemonicRef.current })
.then(res => {
if (res?.isOptimizing) return; // hold — dip is an optimization artifact
// A newer event superseded this value while we awaited; its own flush
// handles it.
if (latestBalanceRef.current !== nextBalance) return;
if (nextBalance === sparkInfoRef.current.balance) return;
commit(nextBalance);
})
// ponytail: on check failure land the decrease rather than strand a real
// spend; the 10s WebView-bridge timeout caps the wait and reconcile
// corrects any rare false drop.
.catch(() => {
if (latestBalanceRef.current === nextBalance) commit(nextBalance);
});
return;
}
commit(nextBalance);
}, [reconcileLeaves]);
// One authoritative balance read, applied directly. The displayed balance is
// driven in real time by balance:update events; this read is a safety net to
// recover a balance whose event was missed (backgrounded / stream drop) and
// to land post-restore deposit claims. Single-flight: a request while a read
// is in flight sets a re-run flag instead of stacking reads. The version
// guard makes a live balance:update win over a slower reconcile read.
const reconcileBalance = useCallback(async () => {
const mnemonic = currentMnemonicRef.current;
if (!mnemonic) return false;
if (isReconcilingBalanceRef.current) {
reconcileBalanceAgainRef.current = true;
return false;
}
isReconcilingBalanceRef.current = true;
const runId = ++reconcileRunIdRef.current;
// Whether this run landed an authoritative (finite) balance read. Returned
// so callers like the post-connect timeout retry know when to stop.
let didApplyFinite = false;
try {
do {
reconcileBalanceAgainRef.current = false;
const myVersion = ++balanceVersionRef.current;
const result = await getBalanceWithTimeout(mnemonic);
// A background transition (or account switch) invalidates this run; the
// foreground effect bumps reconcileRunIdRef so a parked read can't apply
// a stale value or clear a newer run's lock.
if (runId !== reconcileRunIdRef.current) return didApplyFinite;
if (mnemonic !== currentMnemonicRef.current) return didApplyFinite;
if (AppState.currentState !== 'active') return didApplyFinite;
const numericBalance = Number(result?.balance);
if (Number.isFinite(numericBalance)) didApplyFinite = true;
const { identityPubKey } = sparkInfoRef.current;
saveAccountBalanceSnapshot(
identityPubKey,
Number.isFinite(numericBalance)
? numericBalance
: sparkInfoRef.current.balance,
result?.didWork ? result.tokensObj : sparkInfoRef.current.tokens,
);
setSparkInformation(prev => {
if (myVersion < balanceVersionRef.current) return prev;
return {
...prev,
balance: Number.isFinite(numericBalance)
? numericBalance
: prev.balance,
tokens: result?.didWork ? result.tokensObj : prev.tokens,
};
});
} while (
reconcileBalanceAgainRef.current &&
runId === reconcileRunIdRef.current &&
mnemonic === currentMnemonicRef.current
);
} catch (err) {
console.log('[reconcileBalance] error', err);
} finally {
if (runId === reconcileRunIdRef.current) {
isReconcilingBalanceRef.current = false;
}
}
return didApplyFinite;
}, []);
// After a cold connect where the init balance read timed out, the stale
// snapshot is on screen and the connect-time balance:update was missed (the
// listeners attach only after connect). Retry a bounded, backing-off reconcile
// so a payment received while backgrounded still lands, independent of whether
// the restore poller surfaces a tx delta. Stops on the first finite read.
const retryBalanceAfterTimeout = useCallback(async () => {
const mnemonic = currentMnemonicRef.current;
const delays = [0, 3000, 6000];
for (const delay of delays) {
await new Promise(res => setTimeout(res, delay));
if (mnemonic !== currentMnemonicRef.current) return;
if (AppState.currentState !== 'active') return;
// Don't read a balance while leaves are locked for a send — it would read
// the transient 0. The send's own reconcile lands the settled value.
if (isSendingPaymentRef.current) continue;
const didApply = await reconcileBalance();
if (didApply) return;
}
}, [reconcileBalance]);
// Refreshes the local leaves store from a live getLeaves() snapshot, then
// updates the small in-context summary. Single-flight + throttled; the heavy
// map/serialize/insert work is deferred behind InteractionManager so it never
// competes with navigation or gestures. The fetch uses the fast coordinator
// path (isBalanceCheck=true) — the export flow forces a full getLeaves(false).
// Incrementally caches each exit-eligible leaf's ancestor TreeNodes so the
// local export bundle can drive an OFFLINE multi-level unilateral exit. Driven
// purely by DB `pending` flags, so it is automatically resumable: any leaf left
// pending (fetch failed/timed out, app backgrounded, account switched, or leaf
// missing from this snapshot) is retried on a later reconcile. Single-flight +
// throttled (longer window than leaves). Scoped to the captured account, so an
// account switch mid-run can only no-op against the old account.
const reconcileExitNodes = useCallback(async (rawLeaves, force = false) => {
const identityPubKey = sparkInfoRef.current.identityPubKey;
const mnemonic = currentMnemonicRef.current;
if (!identityPubKey || !mnemonic) return;
if (!Array.isArray(rawLeaves)) return;
if (isReconcilingExitNodesRef.current) {
// A run is already in flight. Background calls stay single-flight and are
// dropped. A forced refresh (export) must not be silently skipped: wait
// for the in-flight run to finish, then run our forced pass so the export
// bundle is built from freshly fetched ancestor chains.
if (!force) return;
try {
await exitNodesRunRef.current;
} catch {}
}
if (
!force &&
Date.now() - lastExitNodesSyncRef.current < EXIT_NODES_SYNC_THROTTLE_MS
)
return;
const run = (async () => {
isReconcilingExitNodesRef.current = true;
try {
const leafById = new Map(
rawLeaves.filter(leaf => leaf?.id).map(leaf => [leaf.id, leaf]),
);
let pendingIds;
while (true) {
if (AppState.currentState !== 'active') break;
if (mnemonic !== currentMnemonicRef.current) break;
let batchLeaves;
if (force) {
// Process the provided leaves directly once.
batchLeaves = rawLeaves;
} else {
pendingIds = await getPendingExitNodeLeafIds(
identityPubKey,
EXIT_NODES_BATCH_SIZE,
);
if (!pendingIds.length) break;
batchLeaves = [];
for (const id of pendingIds) {
const leaf = leafById.get(id);
if (leaf) batchLeaves.push(leaf);
}
if (!batchLeaves.length) break;
}
const exitNodesMap = await getSparkExitNodesForLeavesWithTimeout(
mnemonic,
batchLeaves,
);
if (mnemonic !== currentMnemonicRef.current) break;
// Persist every leaf the fetch succeeded on (present in the map).
// Leaves absent from the map stay pending and are retried later.
let markedThisBatch = 0;
for (const leaf of batchLeaves) {
if (!(leaf.id in exitNodesMap)) continue;
const didMark = await saveExitNodesForLeaf(
identityPubKey,
leaf.id,
exitNodesMap[leaf.id],
);
if (didMark) markedThisBatch++;
}
if (force) {
// Only process the supplied leaves once.
break;
}
if (markedThisBatch === 0) break;
// Yield between batches so the operator round-trips never starve frames.
await new Promise(resolve => setTimeout(resolve, 0));
}
if (!force && rawLeaves?.length > 0 && pendingIds?.length)
lastExitNodesSyncRef.current = Date.now();
// Reflect backfill progress into the in-context summary for the UI.
const progress = await getExitNodeSyncProgress(identityPubKey);
if (identityPubKey === sparkInfoRef.current.identityPubKey) {
setSparkInformation(prev => ({
...prev,
leaves: {
...(prev.leaves || {}),
exitNodesPending: progress.pending,
exitNodesComplete: progress.complete,
},
}));
}
} catch (err) {
console.log('[reconcileExitNodes] error', err);
} finally {
isReconcilingExitNodesRef.current = false;
}
})();
exitNodesRunRef.current = run;
return run;
}, []);
const reconcileLeaves = useCallback(
async (force = false) => {
const mnemonic = currentMnemonicRef.current;
if (!mnemonic) return;
const identityPubKey = sparkInfoRef.current.identityPubKey;
if (!identityPubKey) return;
if (isReconcilingLeavesRef.current) return;
if (
!force &&
Date.now() - lastLeavesSyncRef.current < LEAVES_SYNC_THROTTLE_MS
)
return;
isReconcilingLeavesRef.current = true;
try {
const rawLeaves = await getSparkLeavesWithTimeout(mnemonic, true);
// A null result means the read timed out / errored — keep store as-is.
if (!Array.isArray(rawLeaves)) return;
if (mnemonic !== currentMnemonicRef.current) return;
await new Promise((resolve, reject) => {
InteractionManager.runAfterInteractions(async () => {
try {
await replaceAllLeaves(identityPubKey, rawLeaves);
const stats = await getGlobalLeafStats(identityPubKey);
setSparkInformation(prev => ({
...prev,
leaves: {
...(prev.leaves || {}),
count: stats.totalLeaves,
totalValue: stats.totalValue,
lastSyncedAt: stats.lastSyncedAt,
},
}));
resolve();
} catch (err) {
reject(err);
}
});
});
if (rawLeaves?.length) lastLeavesSyncRef.current = Date.now();
// Backfill the exit-node ancestors for this fresh snapshot (background,
// not awaited — it self-throttles and single-flights).
reconcileExitNodes(rawLeaves);
} catch (err) {
console.log('[reconcileLeaves] error', err);
} finally {
isReconcilingLeavesRef.current = false;
}
},
[reconcileExitNodes],
);
const handleUpdate = useCallback(
(...args) => {
const [updateType = 'transactions'] = args;
const event = {
seq: ++eventSequenceRef.current,
updateType,
};
// Balance is driven in real time by balance:update / token-balance:update.
// These update types mark a balance-changing DB action (restore
// completion, deposit claim, send wrapper); we fire one reconcile read as
// a safety net in case the matching event was missed.
if (BALANCE_INTENT_UPDATE_TYPES.has(updateType)) {
reconcileBalance();
// Leaves changed alongside the balance — refresh the local store too
// (throttled, so a burst of intents won't trigger repeated full syncs).
reconcileLeaves();
}
// Apply the displayed balance in the same pass as the incoming toast.
// balance:update fires before transfer:claimed, so the new value is
// already staged in latestBalanceRef — flush it now so the number ticks
// up exactly when the "received" toast appears.
if (updateType === 'incomingPayment') {
// Authoritative post-claim balance from transfer:claimed (args[2]).
// While the SDK optimizes leaves after a claim, balance:update reports a
// suppressed `available`, so flushBalanceNow holds the pre-claim number.
// Apply the claim snapshot in that window so the balance ticks up with
// the toast. Upward-only + optimization-gated: a normal send cancels
// optimization, so its decrease is never masked by a stale higher
// snapshot (no over-send). The balanceVersionRef guard in
// flushBalanceNow lets a newer balance:update win.
const claimedBalance = Number(args[2]);
if (
Number.isFinite(claimedBalance) &&
claimedBalance > sparkInfoRef.current.balance
) {
isOptimizationInProgress({ mnemonic: currentMnemonicRef.current })
.then(res => {
if (
res?.isOptimizing &&
claimedBalance > sparkInfoRef.current.balance
) {
// Stage above any pending balance:update value, then commit
// through the shared version-guarded path.
if (claimedBalance > (latestBalanceRef.current ?? 0)) {
latestBalanceRef.current = claimedBalance;
}
flushBalanceNow();
}
})
.catch(() => {}); // reconcile safety-net backstops a failed check
}
flushBalanceNow();
}
if (!TX_REFRESH_UPDATE_TYPES.has(updateType)) {
return Promise.resolve();
}
return enqueueTxLane(updateType, () =>
projectTransactionsForEvent(event),
);
},
[
enqueueTxLane,
projectTransactionsForEvent,
reconcileBalance,
reconcileLeaves,
flushBalanceNow,
],
);
const transferHandler = useCallback((transferId, balance, walletId) => {
// Ignore events from derived wallets (gift/pool/savings). Undefined walletId
// = pre-tagging bundle → treat as main wallet (backward compatible).
if (walletId && walletId !== mainWalletHashRef.current) return;
if (handledTransfers.current.has(transferId)) return;
handledTransfers.current.add(transferId);
console.log(`Transfer ${transferId} claimed. New balance: ${balance}`);
// Add transferId to pending set
pendingTransferIds.current.add(transferId);
// Always flush with the most recent balance, even when the max-wait timer
// (set on the first event of the burst) fires.
latestIncomingBalanceRef.current = balance;
const flush = () => {
if (debounceTimeoutRef.current) {
clearTimeout(debounceTimeoutRef.current);
debounceTimeoutRef.current = null;
}
if (debounceMaxWaitRef.current) {
clearTimeout(debounceMaxWaitRef.current);
debounceMaxWaitRef.current = null;
}
debouncedHandleIncomingPayment(latestIncomingBalanceRef.current);
};
// Trailing debounce: flush 500ms after the last event…
if (debounceTimeoutRef.current) clearTimeout(debounceTimeoutRef.current);
debounceTimeoutRef.current = setTimeout(flush, 500);
// …but cap the wait at 10s so a sustained burst (events arriving faster
// than every 500ms, which would perpetually reset the trailing timer and
// never flush) still applies the balance periodically.
if (!debounceMaxWaitRef.current) {
debounceMaxWaitRef.current = setTimeout(flush, 10000);
}
}, []);
// Authoritative writer for the displayed sats balance. balance:update fires on
// every balance change (deposits, transfers, swaps, claims) with the real
// current { available, owned, incoming }; we display `available` (parity with
// the SDK's deprecated `balance` field). This is the single fast path that
// makes sends/swaps/deposits reflect immediately — previously only inbound
// claims had a push event and everything else waited on the poller.
const balanceUpdateHandler = useCallback(
(snapshot, walletId) => {
// Ignore events from derived wallets (gift/pool/savings). Undefined
// walletId = pre-tagging bundle → treat as main wallet (backward compatible).
if (walletId && walletId !== mainWalletHashRef.current) return;
const available = Number(snapshot?.available);
console.log('hanlding balance update before send block', available);
// blocking send screen changes to not affect payments
if (isOnSendScreen() && available <= sparkInfoRef.current.balance) return;
if (!Number.isFinite(available)) return;
// Value-gate: ignore no-op events so a burst of inbound transfers (each
// emitting balance:update) can't trigger a render / DB-write storm. When a
// flush is still pending, compare against the last STAGED value
// (latestBalanceRef) rather than the committed balance. sparkInfoRef.balance
// lags committed state by a render/effect cycle and holds the pre-burst
// value mid-debounce, so comparing against it would drop a legitimate
// return-to-baseline event (X→Y→X within the debounce) and leave the stale
// intermediate Y staged to flush — an overstated balance / over-send risk.
const hasPendingFlush =
balanceDebounceTimeoutRef.current !== null ||
balanceDebounceMaxWaitRef.current !== null;
const currentTarget = hasPendingFlush
? latestBalanceRef.current
: sparkInfoRef.current.balance;
if (available === currentTarget) return;
// Always flush with the most recent value, even when the max-wait timer
// (set on the first event of the burst) fires.
latestBalanceRef.current = available;
// Trailing debounce: flush 3s after the last event…
if (balanceDebounceTimeoutRef.current)
clearTimeout(balanceDebounceTimeoutRef.current);
balanceDebounceTimeoutRef.current = setTimeout(flushBalanceNow, 3000);
// …but cap the wait at 10s so a sustained burst (events arriving faster
// than every 3s, which would perpetually reset the trailing timer and
// never flush) still applies the balance periodically.
if (!balanceDebounceMaxWaitRef.current) {
balanceDebounceMaxWaitRef.current = setTimeout(flushBalanceNow, 10000);
}
},
[flushBalanceNow],
);
// token-balance:update fires when a token tx finalizes and carries the full
// current token-balance map (getTokenBalanceMap() in the SDK). We merge that
// payload straight into the cache instead of issuing another getSparkBalance
// round-trip — same result, one fewer WebView read per event. The WebView
// runtime delivers the already-normalized map; the native runtime delivers the
// raw SDK Map and is normalized at registration (see addListeners).
// Token analog of debouncedHandleIncomingPayment / reconcileBalance: builds token
// (LRC20) transaction history. Driven by token-balance:update events, a one-time
// startup fetch, and the reconnect/foreground reconcile — replacing the old 10s poll.
const reconcileTokenTransactions = useCallback((isInitialRun = false) => {
if (isSendingPaymentRef.current) return;
const mnemonic = currentMnemonicRef.current;
if (!mnemonic) return;
getLRC20Transactions({
ownerPublicKeys: [sparkInfoRef.current.identityPubKey],
sparkAddress: sparkInfoRef.current.sparkAddress,
isInitialRun,
mnemonic,
});
}, []);
const tokenBalanceUpdateHandler = useCallback(
(tokensObject, walletId) => {
// Ignore events from derived wallets (gift/pool/savings). Undefined walletId
// = pre-tagging bundle → treat as main wallet (backward compatible).
if (walletId && walletId !== mainWalletHashRef.current) return;
// Each event carries the full current token-balance map, so only the latest
// payload matters during a burst.
latestTokensRef.current = tokensObject ?? {};
const flush = async () => {
if (tokenDebounceTimeoutRef.current) {
clearTimeout(tokenDebounceTimeoutRef.current);
tokenDebounceTimeoutRef.current = null;
}
if (tokenDebounceMaxWaitRef.current) {
clearTimeout(tokenDebounceMaxWaitRef.current);
tokenDebounceMaxWaitRef.current = null;
}
const mnemonic = currentMnemonicRef.current;
if (!mnemonic) return;
const merged = await mergeAndCacheTokens(
latestTokensRef.current,
mnemonic,
);
if (mnemonic !== currentMnemonicRef.current) return;
setSparkInformation(prev => ({ ...prev, tokens: merged }));
// Persist tokens so a token-only change survives a cold start, matching
// flushBalanceNow / reconcileBalance.
saveAccountBalanceSnapshot(
sparkInfoRef.current.identityPubKey,
sparkInfoRef.current.balance,
merged,
);
// A token balance change means a token tx finalized — fetch its history now
reconcileTokenTransactions(false);
};
// Trailing debounce 500ms after the last event, capped at 10s so a
// sustained burst still flushes periodically (see balanceUpdateHandler).
if (tokenDebounceTimeoutRef.current)
clearTimeout(tokenDebounceTimeoutRef.current);
tokenDebounceTimeoutRef.current = setTimeout(flush, 3000);
if (!tokenDebounceMaxWaitRef.current) {
tokenDebounceMaxWaitRef.current = setTimeout(flush, 10000);
}
},
[reconcileTokenTransactions],
);
// Stream lifecycle. A connect after a drop means events may have been missed
// while the stream was down, so fire one reconcile read. The initial connect
// is benign and skipped.
const streamStatusHandler = useCallback(
status => {
if (status === 'disconnected' || status === 'reconnecting') {
streamWasDisconnectedRef.current = true;
return;
}
if (status !== 'connected') return;
if (!streamWasDisconnectedRef.current) return;
streamWasDisconnectedRef.current = false;
if (AppState.currentState !== 'active') return;
if (!sparkInfoRef.current.didConnect) return;
// Skip the balance reconcile while a send is in flight — a mid-send read
// returns the locked 0/partial; the send's paymentWrapperTx reconcile
// lands the settled balance at settlement.
if (!isSendingPaymentRef.current) reconcileBalance();
// Events (including leaf changes) may have been missed while the stream
// was down — refresh the local leaves store too.
reconcileLeaves();
// Recover token txs whose token-balance:update fired while the stream was down.
reconcileTokenTransactions(false);
},
[reconcileBalance, reconcileLeaves, reconcileTokenTransactions],
);
useEffect(() => {
if (!sparkInformation.identityPubKey) {
console.log('Skipping listener setup - no identity pub key yet');
return;
}
console.log('adding web view listeners');
sparkTransactionsEventEmitter.on(SPARK_TX_UPDATE_ENVENT_NAME, handleUpdate);
incomingSparkTransaction.on(INCOMING_SPARK_TX_NAME, transferHandler);
sparkBalanceUpdateEmitter.on(
BALANCE_UPDATE_EVENT_NAME,
balanceUpdateHandler,
);
sparkTokenBalanceUpdateEmitter.on(
TOKEN_BALANCE_UPDATE_EVENT_NAME,
tokenBalanceUpdateHandler,
);
sparkStreamStatusEmitter.on(STREAM_STATUS_EVENT_NAME, streamStatusHandler);
return () => {
console.log('Cleaning up spark event listeners');
sparkTransactionsEventEmitter.removeListener(
SPARK_TX_UPDATE_ENVENT_NAME,
handleUpdate,
);
incomingSparkTransaction.removeListener(
INCOMING_SPARK_TX_NAME,
transferHandler,
);
sparkBalanceUpdateEmitter.removeListener(
BALANCE_UPDATE_EVENT_NAME,
balanceUpdateHandler,
);
sparkTokenBalanceUpdateEmitter.removeListener(
TOKEN_BALANCE_UPDATE_EVENT_NAME,
tokenBalanceUpdateHandler,
);
sparkStreamStatusEmitter.removeListener(
STREAM_STATUS_EVENT_NAME,
streamStatusHandler,
);
};
}, [
sparkInformation.identityPubKey,
handleUpdate,
transferHandler,
balanceUpdateHandler,
tokenBalanceUpdateHandler,
streamStatusHandler,
]);
const addListeners = async mode => {
console.log('Adding Spark listeners...');
if (AppState.currentState !== 'active') return false;
const walletHash = sha256Hash(currentMnemonicRef.current);
if (listenerLock.get(walletHash)) {
console.log('addListeners already running for this wallet, skippingdh');
// Another run owns the attach — don't report it as a failure.
return true;
}
listenerLock.set(walletHash, true);
let attached = false;
try {
const runtime = await selectSparkRuntime(currentMnemonicRef.current);
if (mode === 'full') {
if (runtime === 'native') {
const nativeWallet = sparkWallet[walletHash];
if (nativeWallet) {
// This native wallet is the main wallet — tag its events with
// walletHash so the handlers' walletId guard passes.
if (!nativeWallet.listenerCount('transfer:claimed')) {
nativeWallet.on('transfer:claimed', (transferId, balance) =>
transferHandler(transferId, balance, walletHash),
);
}
if (!nativeWallet.listenerCount('balance:update')) {
nativeWallet.on('balance:update', balance =>
balanceUpdateHandler(balance, walletHash),
);
}
if (!nativeWallet.listenerCount('token-balance:update')) {
// Native delivers the raw SDK event ({ tokenBalances: Map });
// normalize it to the same token map the WebView runtime posts so
// tokenBalanceUpdateHandler can stay runtime-agnostic.
nativeWallet.on('token-balance:update', event => {
const tokensObject = {};
for (const [id, data] of event?.tokenBalances ?? []) {
tokensObject[id] = {
...data,
balance: data.availableToSendBalance,
};
}
tokenBalanceUpdateHandler(tokensObject, walletHash);
});
}
if (!nativeWallet.listenerCount('stream:connected')) {
nativeWallet.on('stream:connected', () =>
streamStatusHandler('connected'),
);
}
if (!nativeWallet.listenerCount('stream:disconnected')) {
nativeWallet.on('stream:disconnected', () =>
streamStatusHandler('disconnected'),
);
}
if (!nativeWallet.listenerCount('stream:reconnecting')) {
nativeWallet.on('stream:reconnecting', () =>
streamStatusHandler('reconnecting'),
);
}
}
attached = !!nativeWallet;
} else {
const mnemonic = currentMnemonicRef.current;
attached = await attachWalletListeners(
mnemonic,
() => mnemonic !== currentMnemonicRef.current,
);
}
// Single restore path for every connect (initial + subsequent). The
// poller writes txs via bulkUpdateSparkTransactions, whose SPARK_TX
// update event drives the UI/balance refresh; isRestoringState guards
// against overlap.
if (txPollingAbortControllerRef.current) {
txPollingAbortControllerRef.current.abort();
}
txPollingAbortControllerRef.current = new AbortController();
const restorePoller = createRestorePoller(
currentMnemonicRef.current,
isSendingPaymentRef.current,
currentMnemonicRef,
txPollingAbortControllerRef.current,
result => {
console.log('RESTORE COMPLETE');
},
sparkInfoRef.current,
sendWebViewRequest,
);
restorePoller.start();
updateSparkTxStatus(
currentMnemonicRef.current,
sparkInfoRef.current.identityPubKey,
sendWebViewRequest,
false,
contactsPrivateKey,
publicKey,
);
// One-time startup token history fetch (token analog of
// restorePoller.start()) — catches token txs received while the app was
// closed. Live updates thereafter come from token-balance:update.
reconcileTokenTransactions(isInitialLRC20Run.current);
if (isInitialLRC20Run.current) isInitialLRC20Run.current = false;
if (updatePendingPaymentsIntervalRef.current) {
console.log('BLOCKING TRYING TO SET INTERVAL AGAIN');
clearInterval(updatePendingPaymentsIntervalRef.current);
updatePendingPaymentsIntervalRef.current = null;
}
const capturedAuthKey = authResetKeyRef.current;
const capturedMnemonic = currentMnemonicRef.current;
const capturedWalletHash = walletHash;
const intervalId = setInterval(async () => {
try {
if (capturedAuthKey !== authResetKeyRef.current) {
console.log('Auth key changed. Aborting interval.');
clearInterval(intervalId);
intervalTracker.delete(capturedWalletHash);
allIntervalIds.delete(intervalId);
return;
}
if (capturedMnemonic !== currentMnemonicRef.current) {
console.log('Mnemonic changed. Aborting interval.');
clearInterval(intervalId);
intervalTracker.delete(capturedWalletHash);
allIntervalIds.delete(intervalId);
return;
}
if (AppState.currentState !== 'active') {
console.log('App not active. Skipping interval.');
return;
}
const response = await updateSparkTxStatus(
currentMnemonicRef.current,
sparkInfoRef.current.identityPubKey,
sendWebViewRequest,
false,
contactsPrivateKey,
publicKey,
);
if (response.shouldCheck) {
// No pending txs listed
const txs = sparkInfoRef.current.transactions;
// if we find a pending tx that means the db and spark state are unaligned
const isStateUnalighed = txs?.find(
tx => tx.paymentStatus === 'pending',
);
if (isStateUnalighed) {
// send message to update the state with the correct txs
sparkTransactionsEventEmitter.emit(
SPARK_TX_UPDATE_ENVENT_NAME,
'transactions',
);
}
}
// await checkHodlInvoicePaymentStatuses(
// currentMnemonicRef.current,
// sparkInfoRef.current.identityPubKey,
// );
} catch (err) {
console.error('Error during periodic restore:', err);
}
}, 10 * 1000);
updatePendingPaymentsIntervalRef.current = intervalId;
intervalTracker.set(walletHash, intervalId);
allIntervalIds.add(intervalId);
}
} catch (error) {
console.error('Error in addListeners:', error);
} finally {
listenerLock.set(walletHash, false);
console.log('Lock released for wallet:', walletHash);
}
return attached;
};
const removeListeners = async (onlyClearIntervals = false) => {
console.log('Removing spark listeners');
cleanStatusAndLRC20Intervals();
if (!onlyClearIntervals) {
const runtime = await selectSparkRuntime(currentMnemonicRef.current);
if (!prevAccountMnemoincRef.current) {
prevAccountMnemoincRef.current = currentMnemonicRef.current;
return;
}
const hashedMnemonic = sha256Hash(prevAccountMnemoincRef.current);
if (runtime === 'native') {
const nativeWallet = sparkWallet[hashedMnemonic];
if (prevAccountMnemoincRef.current && nativeWallet) {
if (nativeWallet.listenerCount('transfer:claimed')) {
nativeWallet.removeAllListeners('transfer:claimed');
}
if (nativeWallet.listenerCount('balance:update')) {
nativeWallet.removeAllListeners('balance:update');
}
if (nativeWallet.listenerCount('token-balance:update')) {
nativeWallet.removeAllListeners('token-balance:update');
}
if (nativeWallet.listenerCount('stream:connected')) {
nativeWallet.removeAllListeners('stream:connected');
}
if (nativeWallet.listenerCount('stream:disconnected')) {
nativeWallet.removeAllListeners('stream:disconnected');
}
if (nativeWallet.listenerCount('stream:reconnecting')) {
nativeWallet.removeAllListeners('stream:reconnecting');
}
}
} else {
const response = await sendWebViewRequestGlobal(
OPERATION_TYPES.removeListeners,
{ mnemonic: prevAccountMnemoincRef.current },
);
// Benign: handlers are walletId-guarded and re-adding is idempotent.
if (!response?.didWork) {
console.log('removeWalletEventListener failed', response?.error);
}
}
prevAccountMnemoincRef.current = currentMnemonicRef.current;
}
// Clear debounce timeout when removing listeners
if (debounceTimeoutRef.current) {
clearTimeout(debounceTimeoutRef.current);
debounceTimeoutRef.current = null;
}
if (debounceMaxWaitRef.current) {
clearTimeout(debounceMaxWaitRef.current);
debounceMaxWaitRef.current = null;
}
if (balanceDebounceTimeoutRef.current) {
clearTimeout(balanceDebounceTimeoutRef.current);
balanceDebounceTimeoutRef.current = null;
}
if (balanceDebounceMaxWaitRef.current) {
clearTimeout(balanceDebounceMaxWaitRef.current);
balanceDebounceMaxWaitRef.current = null;
}
if (tokenDebounceTimeoutRef.current) {
clearTimeout(tokenDebounceTimeoutRef.current);
tokenDebounceTimeoutRef.current = null;
}
if (tokenDebounceMaxWaitRef.current) {
clearTimeout(tokenDebounceMaxWaitRef.current);
tokenDebounceMaxWaitRef.current = null;
}
// Clear pending transfer IDs
pendingTransferIds.current.clear();
// Clear update payment state timer
if (updatePendingPaymentsIntervalRef.current) {
clearInterval(updatePendingPaymentsIntervalRef.current);
updatePendingPaymentsIntervalRef.current = null;
}
if (txPollingTimeoutRef.current) {
clearTimeout(txPollingTimeoutRef.current);
txPollingTimeoutRef.current = null;
}
if (txPollingAbortControllerRef.current) {
txPollingAbortControllerRef.current.abort();
txPollingAbortControllerRef.current = null;
}
};
const resetSparkState = useCallback(
async (internalRefresh = false, shouldClearMnemonicCache = true) => {
// Reset refs to initial values
await removeListeners(true);
if (shouldClearMnemonicCache) {
clearMnemonicCache();
}
prevAccountMnemoincRef.current = null;
isRunningAddListeners.current = false;
if (depositAddressIntervalRef.current) {
clearInterval(depositAddressIntervalRef.current);
}
initialBitcoinIntervalRun.current = null;
depositAddressIntervalRef.current = null;
sparkInfoRef.current = {
balance: 0,
tokens: {},
identityPubKey: '',
sparkAddress: '',
transactions: [],
didConnect: false,
};
handledTransfers.current = new Set();
streamWasDisconnectedRef.current = false;
prevListenerType.current = null;
prevAppState.current = 'active';
prevAccountId.current = null;
isSendingPaymentRef.current = false;
txPollingAbortControllerRef.current = null;
txPollingTimeoutRef.current = null;
balanceVersionRef.current = 0;
hasRunInitBalancePoll.current = false;
txLaneQueueRef.current = Promise.resolve();
uiLaneQueueRef.current = Promise.resolve();
queueDepthRef.current = 0;
eventSequenceRef.current = 0;
// Invalidate any in-flight reconcile read and release the single-flight
// lock so the next session starts clean.
reconcileRunIdRef.current += 1;
isReconcilingBalanceRef.current = false;
reconcileBalanceAgainRef.current = false;
// Reset state variables
setSparkConnectionError(null);
setSparkInformation({
balance: 0,
tokens: {},
transactions: [],
identityPubKey: '',
sparkAddress: '',
didConnect: null,
didConnectToFlashnet: null,
});
contactsPrivateKeyRef.current = '';
contactsPublicKeyRef.current = null;
clearSpendAndReplaceCorrelationMemo();
if (!internalRefresh) {
setDidRunNormalConnection(false);
setNormalConnectionTimeout(false);
}
},
[],
);
useEffect(() => {
if (isInitialRender.current) {
isInitialRender.current = false;
return;
}
resetSparkState();
}, [authResetkey]);
useEffect(() => {
contactsPrivateKeyRef.current = contactsPrivateKey;
contactsPublicKeyRef.current = publicKey;
}, [contactsPrivateKey, publicKey]);
// Register a stable getter so transaction writes can snapshot the centralized
// auth keys without storing key material in module scope or changing every
// bulkUpdateSparkTransactions call site.
useEffect(() => {
setSpendAndReplaceAuthGetter(() => ({
privateKey: contactsPrivateKeyRef.current,
publicKey: contactsPublicKeyRef.current,
}));
return () => setSpendAndReplaceAuthGetter(null);
}, []);
// Add event listeners to listen for bitcoin and lightning or spark transfers when receiving only when screen is active
useEffect(() => {
// Handle immediate background transitions synchronously(background events on android were not running)
if (prevAppState.current !== appState && appState === 'background') {
console.log('App moved to background — clearing listener type');
prevListenerType.current = null;
}
const timeoutId = setTimeout(async () => {
if (!didGetToHomepage) return;
if (!sparkInfoRef.current.identityPubKey) return;
const getListenerType = () => {
if (appState === 'active') return 'full';
return null;
};
const newType = getListenerType();
const prevType = prevListenerType.current;
const prevId = prevAccountId.current;
// Only reconfigure listeners when becoming active
if (
(newType !== prevType ||
prevId !== sparkInfoRef.current.identityPubKey) &&
appState === 'active'
) {
await removeListeners(false);
// Leave prevListenerType null if the attach failed so the next
// foreground/account change re-attempts instead of assuming listeners
// are live.
const attached = newType ? await addListeners(newType) : true;
prevListenerType.current = attached ? newType : null;
prevAccountId.current = sparkInfoRef.current.identityPubKey;
}
prevAppState.current = appState;
}, 500);
return () => clearTimeout(timeoutId);
}, [
appState,
sparkInformation.didConnect,
sparkInformation.identityPubKey,
didGetToHomepage,
// isSendingPayment,
sendWebViewRequest,
]);
useEffect(() => {
if (!didGetToHomepage) return;
if (!sparkInformation.didConnect) return;
if (!sparkInformation.identityPubKey) return;
// Interval to check deposit addresses to see if they were paid
const handleDepositAddressCheck = async () => {
try {
console.log('l1Deposit check running....');
if (AppState.currentState !== 'active') return;
if (isSendingPaymentRef.current) return;
if (!currentMnemonicRef.current) return;
const savedTxCache = new Map();
const getSavedTxByTxid = async txid => {
if (!txid) return null;
if (savedTxCache.has(txid)) return savedTxCache.get(txid);
const savedTx = await getSparkTransactionBySparkId(
txid,
sparkInfoRef.current.identityPubKey,
);
savedTxCache.set(txid, savedTx);
return savedTx;
};
const depositAddresses = await queryAllStaticDepositAddresses(
currentMnemonicRef.current,
);
for (const address of depositAddresses) {
if (!address) continue;
const [exploraData, unclaimedUtxos, allUtxos] = await Promise.all([
getDepositAddressTxIds(address, contactsPrivateKey, publicKey),
getUtxosForDepositAddress({
depositAddress: address,
mnemonic: currentMnemonicRef.current,
excludeClaimed: true,
}),
getUtxosForDepositAddress({
depositAddress: address,
mnemonic: currentMnemonicRef.current,
excludeClaimed: false,
}),
]);
const claimableByTxid = new Set(
unclaimedUtxos.didWork ? unclaimedUtxos.utxos.map(u => u.txid) : [],
);
const allKnownByTxid = new Set(
allUtxos.didWork ? allUtxos.utxos.map(u => u.txid) : [],
);
for (const tx of exploraData) {
if (claimableByTxid.has(tx.txid)) continue; // Spark has it, Phase 2 handles it
if (allKnownByTxid.has(tx.txid)) continue; // Already claimed by Spark
const savedTx = await getSavedTxByTxid(tx.txid);
if (savedTx) continue; // Already in our DB marked as pending
console.log(
'Adding pending deposit tx (not yet claimable):',
tx.txid,
{
isConfirmed: tx.isConfirmed,
},
);
await addPendingTransaction(
{
transactionId: tx.txid,
creditAmountSats: tx.amount,
},
address,
sparkInfoRef.current,
);
savedTxCache.set(tx.txid, {
sparkID: tx.txid,
accountId: sparkInfoRef.current.identityPubKey,
details: JSON.stringify({ amount: tx.amount }),
});
}
if (!unclaimedUtxos.didWork || !unclaimedUtxos.utxos.length) continue;
for (const utxo of unclaimedUtxos.utxos) {
const { txid, vout } = utxo;
const exploraTx = exploraData?.find(t => t.txid === txid);
let savedTx = await getSavedTxByTxid(txid);
const hasAlreadySaved = !!savedTx;
// Get quote for this specific UTXO
const {
didWork: quoteDidWorkResponse,
quote,
error,
} = await getSparkStaticBitcoinL1AddressQuote(
txid,
currentMnemonicRef.current,
);
if (!quoteDidWorkResponse || !quote) {
console.log(error, 'Error getting deposit address quote');
continue;
}
// Attempt to claim the UTXO
const {
didWork,
error: claimError,
response: claimTx,
} = await claimnSparkStaticDepositAddress({
transactionId: quote.transactionId,
creditAmountSats: quote.creditAmountSats,
sspSignature: quote.signature,
outputIndex: vout, // Use the vout from the UTXO
mnemonic: currentMnemonicRef.current,
});
// Add pending transaction if not already saved
if (!hasAlreadySaved) {
const pendingTx = await addPendingTransaction(
quote,
address,
sparkInfoRef.current,
);
savedTx = {
sparkID: pendingTx.id,
accountId: pendingTx.accountId,
details: JSON.stringify(pendingTx.details),
};
savedTxCache.set(txid, savedTx);
}
if (!claimTx || !didWork) {
console.log('Claim static deposit address error', claimError);
continue;
}
// Mark the transfer as handled so transferHandler skips it.
// The SDK fires a transfer event for this claim, and without this guard,
// debouncedHandleIncomingPayment would write a placeholder record that
// races with our own bulkUpdateSparkTransactions call below.
handledTransfers.current.add(claimTx.transferId);
console.log('Claimed deposit address transaction:', claimTx);
// Wait for the transfer to settle
await new Promise(res => setTimeout(res, 2000));
const bitcoinTransfer = await getSingleTxDetails(
currentMnemonicRef.current,
claimTx.transferId,
);
let updatedTx = {};
if (!bitcoinTransfer) {
// Claim succeeded but the transfer has not settled yet (or the
// SDK lookup failed). Keep it pending keyed by the new
// transferId; a later run finalizes it. bitcoinTransfer is
// undefined here, so it must NOT be dereferenced below.
updatedTx = {
useTempId: true,
id: claimTx.transferId,
tempId: quote.transactionId,
paymentStatus: 'pending',
paymentType: 'bitcoin',
accountId: sparkInfoRef.current.identityPubKey,
};
} else {
let fee = 0;
if (exploraTx) {
fee = Math.abs(exploraTx?.amount - bitcoinTransfer.totalValue);
} else {
const savedTxDetails = (() => {
try {
return JSON.parse(savedTx?.details ?? 'null');
} catch {
return null;
}
})();
fee = Math.abs(
savedTxDetails?.amount - bitcoinTransfer.totalValue,
);
}
updatedTx = {
useTempId: true,
tempId: quote.transactionId,
id: bitcoinTransfer.id,
paymentStatus: 'completed',
paymentType: 'bitcoin',
accountId: sparkInfoRef.current.identityPubKey,
details: {
amount: bitcoinTransfer.totalValue,
fee: fee,
totalFee: fee,
supportFee: 0,
dateAddedToDb: Date.now(),
},
};
}
console.log('Updated bitcoin transaction:', updatedTx);
await bulkUpdateSparkTransactions(
[updatedTx],
'fullUpdate-waitBalance',
);
// Navigate to confirm screen if we have details
if (updatedTx.details) {
if (handledNavigatedTxs.current.has(updatedTx.id)) continue;
handledNavigatedTxs.current.add(updatedTx.id);
if (!isOnSendScreen()) {
showToast({
amount: updatedTx.details.amount,
duration: 7000,
type: 'confirmTx',
});
}
}
}
}
} catch (err) {
console.log('Handle deposit address check error', err);
}
};
const addPendingTransaction = async (quote, address, sparkState) => {
const pendingTx = {
id: quote.transactionId,
paymentStatus: 'pending',
paymentType: 'bitcoin',
accountId: sparkState.identityPubKey,
details: {
fee: 0,
amount: quote.creditAmountSats,
address: address,
time: new Date().getTime(),
direction: 'INCOMING',
description: i18n.t('contexts.spark.depositLabel'),
onChainTxid: quote.transactionId,
isRestore: true, // This is a restore payment
},
};
await bulkUpdateSparkTransactions([pendingTx], 'transactions');
return pendingTx;
};
clearAllDepositIntervals();
if (depositAddressIntervalRef.current) {
clearInterval(depositAddressIntervalRef.current);
depositAddressIntervalRef.current = null;
}
if (!initialBitcoinIntervalRun.current) {
setTimeout(handleDepositAddressCheck, 1_000 * 5);
initialBitcoinIntervalRun.current = true;
}
const depositIntervalId = setInterval(
handleDepositAddressCheck,
1_000 * 60,
);
depositAddressIntervalRef.current = depositIntervalId;
depositIntervalIds.add(depositIntervalId);
return () => {
console.log('Cleaning up deposit interval on unmount/dependency change');
if (depositIntervalId) {
clearInterval(depositIntervalId);
depositIntervalIds.delete(depositIntervalId);
}
if (depositAddressIntervalRef.current) {
clearInterval(depositAddressIntervalRef.current);
depositAddressIntervalRef.current = null;
}
};
}, [
sparkInformation.didConnect,
didGetToHomepage,
sparkInformation.identityPubKey,
showToast,
]);
// Balance reconcile lifecycle:
// • On background: a balance read can't settle (the WebView request timeout
// is neutered), so a read issued before backgrounding would park. Bump the
// run id and release the single-flight lock so the parked read can't apply
// a stale value or hold the lock, and the foreground branch can issue a
// fresh read. balanceVersionRef is bumped so the parked read loses the
// ordering guard too.
// • On background→active: fire one authoritative reconcile. This lands
// balance received while backgrounded (whose event was missed) and recovers
// the lane.
useEffect(() => {
const prev = foregroundReconcileAppStateRef.current;
foregroundReconcileAppStateRef.current = appState;
if (appState === 'background') {
reconcileRunIdRef.current += 1;
isReconcilingBalanceRef.current = false;
reconcileBalanceAgainRef.current = false;
balanceVersionRef.current += 1;
return;
}
if (appState !== 'active' || prev === 'active') return;
if (!sparkInformation.didConnect) return;
if (!sparkInformation.identityPubKey) return;
// Skip the balance reconcile while a send is in flight — the leaves are
// locked so this read would return a transient 0/partial. The send's own
// paymentWrapperTx → reconcileBalance lands the settled balance instead.
if (!isSendingPaymentRef.current) {
reconcileBalance();
}
// Refresh the local leaves store on foreground (throttled).
reconcileLeaves();
// Recover token txs whose token-balance:update fired while backgrounded.
reconcileTokenTransactions(false);
}, [
appState,
sparkInformation.didConnect,
sparkInformation.identityPubKey,
reconcileBalance,
reconcileLeaves,
reconcileTokenTransactions,
]);
// On the first successful connect for an account: hydrate the leaves summary
// from the local SQLite store (so the Wallet Leaves page has cached totals
// immediately, even offline), then kick off one forced sync to freshen it.
useEffect(() => {
if (!sparkInformation.didConnect) return;
if (!sparkInformation.identityPubKey) return;
if (hydratedLeavesForRef.current === sparkInformation.identityPubKey)
return;
hydratedLeavesForRef.current = sparkInformation.identityPubKey;
const identityPubKey = sparkInformation.identityPubKey;
(async () => {
try {
const stats = await getGlobalLeafStats(identityPubKey);
setSparkInformation(prev => ({
...prev,
leaves: {
...(prev.leaves || {}),
count: stats.totalLeaves,
totalValue: stats.totalValue,
lastSyncedAt: stats.lastSyncedAt,
},
}));
} catch (err) {
console.log('hydrate leaves summary error', err);
}
reconcileLeaves(true);
})();
}, [
sparkInformation.didConnect,
sparkInformation.identityPubKey,
reconcileLeaves,
]);
// This function connects to the spark node and sets the session up
const connectToSparkWallet = useCallback(
async identityPubKey => {
const { didWork, error, balanceTimedOut } = await initWallet({
setSparkInformation,
filterAndSetTransactions,
// toggleGlobalContactsInformation,
// globalContactsInformation,
mnemonic: accountMnemoinc,
sendWebViewRequest,
// Restore now runs solely via createRestorePoller in addListeners, so
// always load cached txs on connect (the poller's SPARK_TX events layer
// in any newly restored txs afterward).
hasRestoreCompleted: false,
identityPubKey,
});
setDidRunNormalConnection(true);
// lastConnectedTimeRef.current = Date.now();
if (!didWork) {
setSparkInformation(prev => ({ ...prev, didConnect: false }));
setSparkConnectionError(error);
console.log('Error connecting to spark wallet:', error);
return;
}
// The init balance read timed out and painted the stale snapshot — recover
// the real balance out-of-band so it can't stay stale until a foreground
// cycle or manual refresh.
retryBalanceAfterTimeout();
},
[accountMnemoinc, sendWebViewRequest, retryBalanceAfterTimeout],
);
// Function to update db when all reqiured information is loaded
useEffect(() => {
if (!sparkInformation.didConnect) return;
if (!globalContactsInformation?.myProfile) return;
if (!sparkInformation.identityPubKey) return;
if (!sparkInformation.sparkAddress) return;
if (sparkDBaddress.current) return;
sparkDBaddress.current = true;
if (
!globalContactsInformation.myProfile.sparkAddress ||
!globalContactsInformation.myProfile.sparkIdentityPubKey
) {
toggleGlobalContactsInformation(
{
myProfile: {
...globalContactsInformation.myProfile,
sparkAddress: sparkInformation.sparkAddress,
sparkIdentityPubKey: sparkInformation.identityPubKey,
},
},
true,
);
}
}, [
globalContactsInformation.myProfile,
sparkInformation.didConnect,
sparkInformation.identityPubKey,
sparkInformation.sparkAddress,
]);
// Cleanup on unmount
useEffect(() => {
return () => {
if (debounceTimeoutRef.current) {
clearTimeout(debounceTimeoutRef.current);
}
if (balanceDebounceTimeoutRef.current) {
clearTimeout(balanceDebounceTimeoutRef.current);
}
if (balanceDebounceMaxWaitRef.current) {
clearTimeout(balanceDebounceMaxWaitRef.current);
}
if (tokenDebounceTimeoutRef.current) {
clearTimeout(tokenDebounceTimeoutRef.current);
}
if (tokenDebounceMaxWaitRef.current) {
clearTimeout(tokenDebounceMaxWaitRef.current);
}
pendingTransferIds.current.clear();
};
}, []);
const txsHashKey = useMemo(
() =>
sparkInformation.transactions
.filter(tx => tx.paymentStatus === 'completed')
.map(tx => tx.sparkID)
.join(','),
[sparkInformation.transactions],
);
const contextValue = useMemo(
() => ({
sparkInformation,
txsHashKey,
setSparkInformation,
// numberOfCachedTxs,
// setNumberOfCachedTxs,
connectToSparkWallet,
sparkConnectionError,
setSparkConnectionError,
tokensImageCache,
showTokensInformation,
isSendingPaymentRef,
sparkInfoRef,
updateHomepageScrollPosition,
filterAndSetTransactions,
updateHomepageTxPreferance,
reconcileLeaves,
reconcileExitNodes,
}),
[
sparkInformation,
txsHashKey,
setSparkInformation,
// numberOfCachedTxs,
// setNumberOfCachedTxs,
connectToSparkWallet,
sparkConnectionError,
setSparkConnectionError,
tokensImageCache,
showTokensInformation,
isSendingPaymentRef,
sparkInfoRef,
updateHomepageScrollPosition,
filterAndSetTransactions,
updateHomepageTxPreferance,
reconcileLeaves,
reconcileExitNodes,
],
);
return (
<SparkWalletManager.Provider value={contextValue}>
{children}
</SparkWalletManager.Provider>
);
};
function useSparkWallet() {
const context = useContext(SparkWalletManager);
if (!context) {
throw new Error('useSparkWallet must be used within a SparkWalletProvider');
}
return context;
}
export { SparkWalletManager, SparkWalletProvider, useSparkWallet };