Aegis now handles the standard MetaMask try-switch-then-add flow. A dapp
that wants to route through Polygon (or Base, or Arbitrum, or any other
EVM the Silent Mode user hasn't added yet) calls the pair the industry
already wrote for it — Aegis registers the chain, provisions a wallet on
it under the same vault seed, auto-connects the origin, fires
chainChanged, and hands the dapp back a provider pointed at the new
chain. No sidebar detour, no Custom RPC copy-paste. Users still see
every chain in the picker post-add and can revoke sites in Settings.
- lib/chain-eth.js: EthWallet accepts a customNetwork override
({id, label, chainId, defaultRpc, explorerTx, explorerAddr, ticker}).
When present it replaces the NETWORKS lookup so mainnet+Sepolia
ship built-in and every EIP-3085 chain is a runtime override the
addon persists. The ticker flows into snapshot() so the send
approval reads MATIC / BNB / whatever the chain's native currency is,
not a hardcoded ETH.
- index.js customEthChains storage: `{[chainId]: {chainName, rpcUrl,
explorerTx, explorerAddr, ticker, addedAt, addedByOrigin}}`.
Persisted under api.storage.customEthChains, so an added chain
survives Theseus restarts. chainMeta("eth", "custom-<chainId>")
synthesizes the meta from storage so the panel renders custom
chains without needing them in COINS at module-load time.
- eth.addChain handler (EIP-3085): approval overlay shows chain
name, decimal + hex chain id, native ticker, RPC and explorer
URLs (the phishing-signal quartet). On approval, persist config +
create wallet with a custom-<chainId> network + auto-grant the
origin readAddress on this chain. No-op success if the chain is
already added.
- eth.switchChain rewritten to be EIP-3326 correct: look up any
ready ETH wallet whose adapter reports the requested chainId,
make it the selected wallet, fire chainChanged. When no wallet
matches, throw with .code = 4902 (the standard 'chain not
added' code) so wagmi / RainbowKit / any 3326-aware dapp does
the fallback wallet_addEthereumChain call in the same click.
- eth.state handler: cheap {address, chainIdHex, networkVersion}
peek for the origin's currently-connected wallet (no approval,
no key access). The main-world bridge calls it after every
switch/add to emit chainChanged + accountsChanged locally — the
events MetaMask fires and RainbowKit listens for.
- wallet-inject.js: routes wallet_addEthereumChain via
eth.addChain, preserves the 4902 code across the postMessage
boundary on switch failures, calls pullEthStateAndEmit() to fire
the post-switch/add events.
361 lines
15 KiB
JavaScript
361 lines
15 KiB
JavaScript
// Ethereum (EVM) chain adapter — mainnet + Sepolia testnet. One address per
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// wallet, the same "TronLink shape" as chain-tron.js: BIP44 derivation,
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// secp256k1 → keccak256 address, JSON-RPC backend, EIP-1559 send.
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//
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// Kept intentionally minimal:
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// - Native ETH only. ERC-20 token support is a follow-up: it needs a token
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// registry + eth_call for `balanceOf(address)` per token + a dedicated
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// Send flow that builds an ERC-20 `transfer(to, value)` calldata.
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// - No transaction history: without an indexer (Etherscan V2 / Alchemy)
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// the JSON-RPC alone can't answer "which txs touched this address".
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// The panel shows an empty history with a link to Etherscan.
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// - EIP-1559 only (type 0x02). Legacy type 0x00 works too but isn't
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// needed for mainnet or Sepolia in 2026.
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const NETWORKS = {
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mainnet: {
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id: "mainnet", label: "Mainnet", chainId: 1,
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// Cloudflare's public Ethereum gateway — no key required, rate-limited
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// but adequate for a per-user wallet. User can override in settings.
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defaultRpc: "https://cloudflare-eth.com",
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explorerTx: "https://etherscan.io/tx/",
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explorerAddr: "https://etherscan.io/address/",
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faucet: null,
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},
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sepolia: {
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id: "sepolia", label: "Sepolia testnet", chainId: 11155111,
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defaultRpc: "https://ethereum-sepolia-rpc.publicnode.com",
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explorerTx: "https://sepolia.etherscan.io/tx/",
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explorerAddr: "https://sepolia.etherscan.io/address/",
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faucet: "https://sepoliafaucet.com/",
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},
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};
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module.exports = function makeEthAdapter({ HDKey, secp256k1, keccak_256 }) {
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if (!HDKey || !secp256k1 || !keccak_256) throw new Error("chain-eth: missing dep");
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const toHex = (b) => Buffer.from(b).toString("hex");
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const fromHex = (h) => Uint8Array.from(Buffer.from(String(h).replace(/^0x/i, ""), "hex"));
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const stripHex = (h) => String(h).replace(/^0x/i, "");
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const hexToBig = (h) => BigInt("0x" + (stripHex(h) || "0"));
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const bigToHex = (n) => "0x" + BigInt(n).toString(16);
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const zeroBig = 0n;
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// ---- addresses -------------------------------------------------------
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// EIP-55 mixed-case checksum: lowercase hex, then flip case per keccak256
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// of the lowercase hex string (a-f digits get uppercased where the keccak
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// nibble is >= 8). Never needed for wire format (RPCs accept lowercase),
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// but it's what wallets show, so we return it that way.
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function eip55(addressLowerHex) {
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const lower = stripHex(addressLowerHex).toLowerCase();
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const hash = toHex(keccak_256(Buffer.from(lower, "utf8")));
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let out = "0x";
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for (let i = 0; i < lower.length; i++) {
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const c = lower[i];
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out += /[0-9]/.test(c) ? c : (parseInt(hash[i], 16) >= 8 ? c.toUpperCase() : c);
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}
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return out;
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}
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function addressFromPubkey(uncompressed) {
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const inner = uncompressed.slice(1);
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const h = keccak_256(inner);
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const h20 = h.slice(h.length - 20);
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return eip55(toHex(h20));
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}
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function decodeAddress(str) {
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const s = String(str || "").trim();
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const hex = stripHex(s);
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if (!/^[0-9a-fA-F]{40}$/.test(hex)) throw new Error("bad Ethereum address");
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// Reject checksum mismatches on mixed-case inputs (all-lower and all-upper
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// pass unconditionally — that's the EIP-55 rule).
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const lower = hex.toLowerCase(), upper = hex.toUpperCase();
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if (hex !== lower && hex !== upper) {
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const want = stripHex(eip55(lower));
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if (hex !== want) throw new Error("EIP-55 checksum failed");
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}
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return "0x" + lower;
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}
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// ---- RLP encode ------------------------------------------------------
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// Minimal encoder — enough for EIP-1559 tx encoding. Follows the RLP spec
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// (single byte < 0x80 → self; short string ≤ 55 → 0x80 + len + bytes;
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// long string → 0x80 + 55 + lenOfLen + lenBytes + bytes; lists similarly
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// with 0xc0/0xf7).
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function rlpEncodeBytes(bytes) {
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const b = Uint8Array.from(bytes);
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if (b.length === 1 && b[0] < 0x80) return b;
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if (b.length <= 55) return concat(Uint8Array.from([0x80 + b.length]), b);
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const lenBytes = encodeIntBE(b.length);
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return concat(Uint8Array.from([0xb7 + lenBytes.length]), lenBytes, b);
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}
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function rlpEncodeList(items) {
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const encoded = items.map(rlpEncode);
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const body = concat(...encoded);
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if (body.length <= 55) return concat(Uint8Array.from([0xc0 + body.length]), body);
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const lenBytes = encodeIntBE(body.length);
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return concat(Uint8Array.from([0xf7 + lenBytes.length]), lenBytes, body);
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}
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function rlpEncode(item) {
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if (item instanceof Uint8Array) return rlpEncodeBytes(item);
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if (Array.isArray(item)) return rlpEncodeList(item);
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if (typeof item === "bigint") return rlpEncodeBytes(bigToBytes(item));
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if (typeof item === "number") return rlpEncodeBytes(bigToBytes(BigInt(item)));
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if (typeof item === "string") return rlpEncodeBytes(item.startsWith("0x") ? fromHex(item) : Buffer.from(item, "utf8"));
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throw new Error("rlp: unsupported item type " + typeof item);
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}
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function bigToBytes(v) {
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if (v < 0n) throw new Error("negative bigint");
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if (v === 0n) return new Uint8Array(0);
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let hex = v.toString(16);
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if (hex.length % 2) hex = "0" + hex;
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return fromHex(hex);
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}
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function encodeIntBE(n) {
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let hex = n.toString(16);
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if (hex.length % 2) hex = "0" + hex;
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return fromHex(hex);
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}
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function concat(...ps) {
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const n = ps.reduce((a, p) => a + p.length, 0);
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const out = new Uint8Array(n); let k = 0;
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for (const p of ps) { out.set(p, k); k += p.length; }
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return out;
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}
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// ---- signing ---------------------------------------------------------
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// EIP-1559 signed tx: 0x02 || RLP([chainId, nonce, maxPriorityFeePerGas,
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// maxFeePerGas, gasLimit, to, value, data, accessList,
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// yParity, r, s])
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// hash-to-sign: keccak256(0x02 || RLP([...same-without-sig-fields]))
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function signTxEip1559(unsignedFields, privKey) {
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const unsignedRlp = rlpEncodeList(unsignedFields);
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const preimage = concat(Uint8Array.from([0x02]), unsignedRlp);
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const hash = keccak_256(preimage);
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const sig = secp256k1.sign(hash, privKey, { prehash: false, lowS: true, format: "recovered" });
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// noble returns [recid || r(32) || s(32)]; EIP-1559 uses yParity as
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// 0 or 1 (recid directly, no +27 shift).
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const yParity = sig[0];
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const r = sig.subarray(1, 33);
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const s = sig.subarray(33, 65);
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const signedFields = [...unsignedFields, yParity, stripLeadingZeros(r), stripLeadingZeros(s)];
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const signedRlp = rlpEncodeList(signedFields);
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return "0x" + toHex(concat(Uint8Array.from([0x02]), signedRlp));
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}
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function stripLeadingZeros(bytes) {
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let i = 0;
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while (i < bytes.length - 1 && bytes[i] === 0) i++;
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return bytes.subarray(i);
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}
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// ---- JSON-RPC client -------------------------------------------------
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function makeClient(rpcUrl) {
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let seq = 1;
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async function call(method, params = []) {
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const r = await fetch(rpcUrl, {
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method: "POST",
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headers: { "content-type": "application/json" },
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body: JSON.stringify({ jsonrpc: "2.0", id: seq++, method, params }),
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});
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if (!r.ok) throw new Error(`${method}: HTTP ${r.status}`);
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const j = await r.json();
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if (j.error) throw new Error(`${method}: ${j.error.message || JSON.stringify(j.error)}`);
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return j.result;
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}
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return { url: rpcUrl, call };
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}
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function scopedStorage(storage, keyPrefix) {
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const k = (key) => keyPrefix + key;
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return {
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get: (key, fallback = null) => storage.get(k(key), fallback),
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set: (key, value) => storage.set(k(key), value),
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};
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}
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// ---- wallet ----------------------------------------------------------
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class EthWallet {
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constructor(root32, networkId, {
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walletId, storage, log = () => {}, onChange = () => {}, rpcUrl,
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customNetwork, // { id, label, chainId, defaultRpc, explorerTx, explorerAddr, ticker } for EIP-3085 chains
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} = {}) {
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if (!walletId) throw new Error("chain-eth: walletId required");
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const net = customNetwork || NETWORKS[networkId];
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if (!net) throw new Error(`chain-eth: unknown network ${networkId}`);
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this.walletId = walletId;
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this.chain = "eth";
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this.network = net.id;
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this._net = net;
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this._ticker = net.ticker || "ETH";
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this.log = log;
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this.onChange = onChange;
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this.storage = scopedStorage(storage, `wallets/${walletId}/`);
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const master = HDKey.fromMasterSeed(root32);
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// BIP44 for Ethereum: m/44'/60'/0'/0/0 is the canonical first address.
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const node = master.derive("m/44'/60'/0'/0/0");
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this._priv = node.privateKey;
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this._pubUncompressed = secp256k1.getPublicKey(this._priv, false);
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this.address = addressFromPubkey(this._pubUncompressed);
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this._root = new Uint8Array(root32);
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this._client = makeClient(String(rpcUrl || "").trim() || net.defaultRpc);
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this._state = {
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balance: { confirmed: "0", unconfirmed: "0" },
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history: [],
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height: 0,
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scanning: false,
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error: null,
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};
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this._pollTimer = null;
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}
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setRpcUrl(url) {
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const v = String(url || "").trim() || this._net.defaultRpc;
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this._client = makeClient(v);
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this._emit();
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}
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_emit() { try { this.onChange(); } catch {} }
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// Wei is 10^18 native units; the panel formats via decimals=18. The
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// ticker follows the chain's nativeCurrency (ETH on mainnet/Sepolia,
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// MATIC on Polygon, etc.) so the send-approval overlay reads correctly.
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snapshot() {
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return {
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chain: "eth", network: this._net.id, ticker: this._ticker, decimals: 18,
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address: this.address, addressIndex: 0,
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addressPath: "m/44'/60'/0'/0/0",
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balance: this._state.balance,
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height: this._state.height,
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history: this._state.history,
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scanning: this._state.scanning,
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error: this._state.error,
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server: this._client.url,
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rpcUrl: this._client.url,
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explorerTx: this._net.explorerTx,
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explorerAddr: this._net.explorerAddr,
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faucet: this._net.faucet,
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chainId: this._net.chainId,
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};
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}
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async refresh() {
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if (this._state.scanning) return;
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this._state.scanning = true; this._state.error = null; this._emit();
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try {
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const [bal, block] = await Promise.all([
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this._client.call("eth_getBalance", [this.address, "latest"]),
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this._client.call("eth_blockNumber", []),
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]);
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this._state.balance = { confirmed: hexToBig(bal).toString(), unconfirmed: "0" };
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this._state.height = Number(hexToBig(block));
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} catch (e) {
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this._state.error = e?.message || String(e);
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this.log("refresh failed:", this._state.error);
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} finally {
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this._state.scanning = false;
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this._emit();
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}
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}
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schedulePoll(ms = 20_000) {
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clearTimeout(this._pollTimer);
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this._pollTimer = setTimeout(() => this.refresh().finally(() => this.schedulePoll(ms)), ms);
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}
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async plan({ to, amount, sendMax }) {
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const dest = decodeAddress(to);
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const from = this.address.toLowerCase();
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const [nonceHex, priorityHex, gasPriceHex, gasLimitHex] = await Promise.all([
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this._client.call("eth_getTransactionCount", [from, "pending"]),
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this._client.call("eth_maxPriorityFeePerGas", []).catch(() => "0x59682f00"), // fallback: 1.5 gwei
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this._client.call("eth_gasPrice", []),
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Promise.resolve("0x5208"), // 21000 for a plain ETH transfer
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]);
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const nonce = Number(hexToBig(nonceHex));
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const maxPriorityFeePerGas = hexToBig(priorityHex);
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// maxFeePerGas heuristic: 2 * base fee + priority tip. base fee ~=
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// gasPrice - priority tip on EIP-1559 chains; we approximate with the
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// reported gasPrice as an upper bound plus the priority.
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const baseGuess = hexToBig(gasPriceHex);
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const maxFeePerGas = baseGuess * 2n + maxPriorityFeePerGas;
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const gasLimit = hexToBig(gasLimitHex);
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const fee = gasLimit * maxFeePerGas;
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const bal = BigInt(this._state.balance.confirmed || "0");
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let value;
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if (sendMax) {
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if (bal <= fee) throw new Error("balance does not cover the gas fee");
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value = bal - fee;
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} else {
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value = BigInt(Math.round(Number(amount) || 0)); // wei
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if (value <= 0n) throw new Error("amount must be > 0 wei");
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if (value + fee > bal) throw new Error("insufficient funds");
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}
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return {
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_draft: {
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chainId: this._net.chainId, nonce, maxPriorityFeePerGas, maxFeePerGas,
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gasLimit, to: dest, value, data: "0x", accessList: [],
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},
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recipients: [{ to: dest, value: value.toString() }],
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fee: fee.toString(),
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feeRate: maxFeePerGas.toString(),
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inputs: [],
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change: "0",
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total: (value + fee).toString(),
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};
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}
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async signAndBroadcast(plan) {
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const d = plan && plan._draft;
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if (!d) throw new Error("bad plan");
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const unsignedFields = [
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d.chainId, d.nonce, d.maxPriorityFeePerGas, d.maxFeePerGas, d.gasLimit,
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fromHex(d.to.slice(2)), d.value, fromHex(""), [],
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];
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const rawTxHex = signTxEip1559(unsignedFields, this._priv);
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const txid = await this._client.call("eth_sendRawTransaction", [rawTxHex]);
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if (typeof txid !== "string" || !/^0x[0-9a-f]{64}$/i.test(txid)) throw new Error("bad txid from RPC: " + JSON.stringify(txid));
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this.log("broadcast", txid);
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setTimeout(() => this.refresh(), 3000);
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return { txid };
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}
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// EIP-712: sign a pre-computed typed-data digest with r||s||v (v = 27+recid).
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signTypedDataDigest(digest32) {
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const sig = secp256k1.sign(digest32, this._priv, { prehash: false, lowS: true, format: "recovered" });
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const out = new Uint8Array(65);
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out.set(sig.subarray(1), 0);
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out[64] = sig[0] + 27;
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return { address: this.address, signature: "0x" + toHex(out) };
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}
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// Ethereum personal_sign: keccak256("\x19Ethereum Signed Message:\n" + len + msg).
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signMessage(message) {
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const msg = String(message);
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const enc = new TextEncoder();
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const body = enc.encode(msg);
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const prefix = enc.encode("\x19Ethereum Signed Message:\n" + body.length);
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const buf = concat(prefix, body);
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const hash = keccak_256(buf);
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const sig = secp256k1.sign(hash, this._priv, { prehash: false, lowS: true, format: "recovered" });
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// personal_sign format: r || s || v where v = 27 + recid.
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const out = new Uint8Array(65);
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out.set(sig.subarray(1), 0);
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out[64] = sig[0] + 27;
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return { address: this.address, signature: "0x" + toHex(out) };
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}
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recovery() {
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// Ethereum wallets typically expose the raw private key hex; we do too,
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// but only when the caller re-confirms in the approval overlay upstream.
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return {
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accountPath: "m/44'/60'/0'/0/0",
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xpub: "0x" + toHex(this._pubUncompressed),
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xprv: "0x" + toHex(this._priv),
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};
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}
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dispose() {
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clearTimeout(this._pollTimer);
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try { this._priv && this._priv.fill(0); } catch {}
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try { this._root && this._root.fill(0); } catch {}
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}
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}
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return { EthWallet, NETWORKS, addressFromPubkey, decodeAddress, eip55 };
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};
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