2018-06-17 23:32:57 +03:00
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"use strict";
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var __importStar = (this && this.__importStar) || function (mod) {
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if (mod && mod.__esModule) return mod;
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var result = {};
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if (mod != null) for (var k in mod) if (Object.hasOwnProperty.call(mod, k)) result[k] = mod[k];
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result["default"] = mod;
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return result;
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};
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Object.defineProperty(exports, "__esModule", { value: true });
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var address_1 = require("./address");
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var bignumber_1 = require("./bignumber");
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2018-06-17 23:47:28 +03:00
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var bytes_1 = require("./bytes");
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2018-06-17 23:32:57 +03:00
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var keccak256_1 = require("./keccak256");
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var RLP = __importStar(require("./rlp"));
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2018-06-26 04:02:20 +03:00
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var errors = __importStar(require("./errors"));
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2018-07-15 00:21:32 +03:00
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/* !!!!!!!!!!!!!!!!!!!!!!!! IMPORTANT !!!!!!!!!!!!!!!!!!!!!!!
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*
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* Due to a weird ordering-issue with browserify, there is an
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* import for secp256k1 at the bottom of the file; it must be
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* required AFTER the parse and serialize exports have been
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* defined.
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*
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*/
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2018-06-17 23:32:57 +03:00
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function handleAddress(value) {
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if (value === '0x') {
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return null;
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}
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return address_1.getAddress(value);
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}
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function handleNumber(value) {
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if (value === '0x') {
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return bignumber_1.ConstantZero;
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}
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return bignumber_1.bigNumberify(value);
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}
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var transactionFields = [
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{ name: 'nonce', maxLength: 32 },
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{ name: 'gasPrice', maxLength: 32 },
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{ name: 'gasLimit', maxLength: 32 },
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{ name: 'to', length: 20 },
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{ name: 'value', maxLength: 32 },
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{ name: 'data' },
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];
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2018-07-12 09:42:46 +03:00
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function serialize(transaction, signature) {
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2018-06-17 23:32:57 +03:00
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var raw = [];
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transactionFields.forEach(function (fieldInfo) {
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var value = transaction[fieldInfo.name] || ([]);
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2018-06-17 23:47:28 +03:00
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value = bytes_1.arrayify(bytes_1.hexlify(value));
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2018-06-17 23:32:57 +03:00
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// Fixed-width field
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if (fieldInfo.length && value.length !== fieldInfo.length && value.length > 0) {
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2018-06-26 04:02:20 +03:00
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errors.throwError('invalid length for ' + fieldInfo.name, errors.INVALID_ARGUMENT, { arg: ('transaction' + fieldInfo.name), value: value });
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2018-06-17 23:32:57 +03:00
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}
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// Variable-width (with a maximum)
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if (fieldInfo.maxLength) {
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2018-06-17 23:47:28 +03:00
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value = bytes_1.stripZeros(value);
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2018-06-17 23:32:57 +03:00
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if (value.length > fieldInfo.maxLength) {
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2018-06-26 04:02:20 +03:00
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errors.throwError('invalid length for ' + fieldInfo.name, errors.INVALID_ARGUMENT, { arg: ('transaction' + fieldInfo.name), value: value });
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2018-06-17 23:32:57 +03:00
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}
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}
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2018-06-17 23:47:28 +03:00
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raw.push(bytes_1.hexlify(value));
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2018-06-17 23:32:57 +03:00
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});
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2018-07-12 09:42:46 +03:00
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if (transaction.chainId != null && transaction.chainId !== 0) {
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2018-06-17 23:47:28 +03:00
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raw.push(bytes_1.hexlify(transaction.chainId));
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2018-06-17 23:32:57 +03:00
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raw.push('0x');
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raw.push('0x');
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}
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2018-07-12 09:42:46 +03:00
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var unsignedTransaction = RLP.encode(raw);
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2018-06-26 04:02:20 +03:00
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// Requesting an unsigned transation
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2018-07-12 09:42:46 +03:00
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if (!signature) {
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return unsignedTransaction;
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2018-06-26 04:02:20 +03:00
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}
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2018-07-12 09:42:46 +03:00
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// The splitSignature will ensure the transaction has a recoveryParam in the
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// case that the signTransaction function only adds a v.
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signature = bytes_1.splitSignature(signature);
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2018-06-26 04:02:20 +03:00
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// We pushed a chainId and null r, s on for hashing only; remove those
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2018-06-17 23:32:57 +03:00
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var v = 27 + signature.recoveryParam;
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2018-06-26 04:02:20 +03:00
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if (raw.length === 9) {
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2018-06-17 23:32:57 +03:00
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raw.pop();
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raw.pop();
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raw.pop();
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v += transaction.chainId * 2 + 8;
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}
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2018-06-17 23:47:28 +03:00
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raw.push(bytes_1.hexlify(v));
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2018-06-18 12:42:41 +03:00
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raw.push(bytes_1.stripZeros(bytes_1.arrayify(signature.r)));
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raw.push(bytes_1.stripZeros(bytes_1.arrayify(signature.s)));
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2018-06-17 23:32:57 +03:00
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return RLP.encode(raw);
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}
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2018-06-26 04:02:20 +03:00
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exports.serialize = serialize;
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2018-06-17 23:32:57 +03:00
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function parse(rawTransaction) {
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2018-06-26 04:02:20 +03:00
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var transaction = RLP.decode(rawTransaction);
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if (transaction.length !== 9 && transaction.length !== 6) {
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errors.throwError('invalid raw transaction', errors.INVALID_ARGUMENT, { arg: 'rawTransactin', value: rawTransaction });
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2018-06-17 23:32:57 +03:00
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}
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var tx = {
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2018-06-26 04:02:20 +03:00
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nonce: handleNumber(transaction[0]).toNumber(),
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gasPrice: handleNumber(transaction[1]),
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gasLimit: handleNumber(transaction[2]),
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to: handleAddress(transaction[3]),
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value: handleNumber(transaction[4]),
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data: transaction[5],
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2018-06-17 23:32:57 +03:00
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chainId: 0
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};
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2018-06-26 04:02:20 +03:00
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// Legacy unsigned transaction
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if (transaction.length === 6) {
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return tx;
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}
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try {
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tx.v = bignumber_1.bigNumberify(transaction[6]).toNumber();
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}
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catch (error) {
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console.log(error);
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return tx;
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}
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tx.r = bytes_1.hexZeroPad(transaction[7], 32);
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tx.s = bytes_1.hexZeroPad(transaction[8], 32);
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if (bignumber_1.bigNumberify(tx.r).isZero() && bignumber_1.bigNumberify(tx.s).isZero()) {
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// EIP-155 unsigned transaction
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tx.chainId = tx.v;
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tx.v = 0;
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}
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else {
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// Signed Tranasaction
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tx.chainId = Math.floor((tx.v - 35) / 2);
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if (tx.chainId < 0) {
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tx.chainId = 0;
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2018-06-17 23:32:57 +03:00
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}
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var recoveryParam = tx.v - 27;
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2018-06-26 04:02:20 +03:00
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var raw = transaction.slice(0, 6);
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if (tx.chainId !== 0) {
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raw.push(bytes_1.hexlify(tx.chainId));
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2018-06-17 23:32:57 +03:00
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raw.push('0x');
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raw.push('0x');
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2018-06-26 04:02:20 +03:00
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recoveryParam -= tx.chainId * 2 + 8;
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2018-06-17 23:32:57 +03:00
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}
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var digest = keccak256_1.keccak256(RLP.encode(raw));
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try {
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2018-06-26 04:02:20 +03:00
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tx.from = secp256k1_1.recoverAddress(digest, { r: bytes_1.hexlify(tx.r), s: bytes_1.hexlify(tx.s), recoveryParam: recoveryParam });
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2018-06-17 23:32:57 +03:00
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}
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catch (error) {
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console.log(error);
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}
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tx.hash = keccak256_1.keccak256(rawTransaction);
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}
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return tx;
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}
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exports.parse = parse;
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2018-07-23 12:37:48 +03:00
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// !!! IMPORTANT !!!
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//
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// This must be be at the end, otherwise Browserify attempts to include upstream
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// dependencies before this module is loaded.
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var secp256k1_1 = require("./secp256k1");
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