Development Artifact Cleanup: ✅ BROTHER_NODE REORGANIZATION: Moved development test node to appropriate location - dev/test-nodes/brother_node/: Moved from root directory for better organization - Contains development configuration, test logs, and test chain data - No impact on production systems - purely development/testing artifact ✅ DEVELOPMENT ARTIFACTS IDENTIFIED: - Chain ID: aitbc-brother-chain (test/development chain) - Ports: 8010 (P2P) and 8011 (RPC) - different from production - Environment: .env file with test configuration - Logs: rpc.log and node.log from development testing session (March 15, 2026) ✅ ROOT DIRECTORY CLEANUP: Removed development clutter from production directory - brother_node/ moved to dev/test-nodes/brother_node/ - Root directory now contains only production-ready components - Development artifacts properly organized in dev/ subdirectory DIRECTORY STRUCTURE IMPROVEMENT: 📁 dev/test-nodes/: Development and testing node configurations 🏗️ Root Directory: Clean production structure with only essential components 🧪 Development Isolation: Test environments separated from production BENEFITS: ✅ Clean Production Directory: No development artifacts in root ✅ Better Organization: Development nodes grouped in dev/ subdirectory ✅ Clear Separation: Production vs development environments clearly distinguished ✅ Maintainability: Easier to identify and manage development components RESULT: Successfully moved brother_node development artifact to dev/test-nodes/ subdirectory, cleaning up the root directory while preserving development testing environment for future use.
200 lines
7.4 KiB
JavaScript
Executable File
200 lines
7.4 KiB
JavaScript
Executable File
"use strict";
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Object.defineProperty(exports, "__esModule", { value: true });
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exports.formatters = exports.gweiDecimal = exports.ethDecimal = exports.weigwei = exports.weieth = exports.createDecimal = exports.ethHexNoLeadingZero = exports.ethHex = exports.amounts = exports.isBytes = void 0;
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exports.add0x = add0x;
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exports.strip0x = strip0x;
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exports.numberTo0xHex = numberTo0xHex;
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exports.hexToNumber = hexToNumber;
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exports.isObject = isObject;
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exports.astr = astr;
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exports.sign = sign;
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exports.verify = verify;
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exports.initSig = initSig;
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exports.cloneDeep = cloneDeep;
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exports.omit = omit;
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exports.zip = zip;
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const secp256k1_1 = require("@noble/curves/secp256k1");
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const utils_1 = require("@noble/hashes/utils");
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const micro_packed_1 = require("micro-packed");
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exports.isBytes = utils_1.isBytes;
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const ETH_PRECISION = 18;
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const GWEI_PRECISION = 9;
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const GWEI = BigInt(10) ** BigInt(GWEI_PRECISION);
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const ETHER = BigInt(10) ** BigInt(ETH_PRECISION);
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exports.amounts = (() => ({
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GWEI_PRECISION,
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ETH_PRECISION,
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GWEI,
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ETHER,
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// Disabled with "strict=false"
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maxAmount: BigInt(1000000) * ETHER, // 1M ether for testnets
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minGasLimit: BigInt(21000), // 21K wei is used at minimum. Possibly smaller gas limit in 4844 txs?
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maxGasLimit: BigInt(30000000), // 30M wei. A block limit in 2024 is 30M
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maxGasPrice: BigInt(10000) * GWEI, // 10K gwei. Arbitrage HFT bots can use more
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maxNonce: BigInt(131072), // 2**17, but in spec it's actually 2**64-1
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maxDataSize: 1000000, // Size of .data field. TODO: research
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maxInitDataSize: 49152, // EIP-3860
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maxChainId: BigInt(2 ** 32 - 1),
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maxUint64: BigInt(2) ** BigInt(64) - BigInt(1),
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maxUint256: BigInt(2) ** BigInt(256) - BigInt(1),
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}))();
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// For usage with other packed utils via apply
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// This format is pretty much arbitrary:
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// - '0x' vs '0x0' for empty
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// - strip leading zero/don't
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// - geth (https://geth.ethereum.org/docs/interacting-with-geth/rpc/ns-eth):
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// 0x0,
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// - etherscan (https://docs.etherscan.io/api-endpoints/logs):
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// even 'data' can be '0x'
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//
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// 0x data = Uint8Array([])
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// 0x num = BigInt(0)
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const leadingZerosRe = /^0+/;
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const genEthHex = (keepLeadingZero = true) => ({
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decode: (data) => {
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if (typeof data !== 'string')
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throw new Error('hex data must be a string');
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let hex = strip0x(data);
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hex = hex.length & 1 ? `0${hex}` : hex;
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return (0, utils_1.hexToBytes)(hex);
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},
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encode: (data) => {
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let hex = (0, utils_1.bytesToHex)(data);
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if (!keepLeadingZero)
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hex = hex.replace(leadingZerosRe, '');
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return add0x(hex);
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},
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});
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exports.ethHex = genEthHex(true);
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exports.ethHexNoLeadingZero = genEthHex(false);
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const ethHexStartRe = /^0[xX]/;
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function add0x(hex) {
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return ethHexStartRe.test(hex) ? hex : `0x${hex}`;
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}
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function strip0x(hex) {
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return hex.replace(ethHexStartRe, '');
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}
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function numberTo0xHex(num) {
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const hex = num.toString(16);
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const x2 = hex.length & 1 ? `0${hex}` : hex;
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return add0x(x2);
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}
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function hexToNumber(hex) {
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if (typeof hex !== 'string')
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throw new TypeError('expected hex string, got ' + typeof hex);
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return hex ? BigInt(add0x(hex)) : BigInt(0);
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}
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function isObject(item) {
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return item != null && typeof item === 'object';
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}
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function astr(str) {
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if (typeof str !== 'string')
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throw new Error('string expected');
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}
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function sign(hash, privKey, extraEntropy = true) {
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const sig = secp256k1_1.secp256k1.sign(hash, privKey, { extraEntropy: extraEntropy });
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// yellow paper page 26 bans recovery 2 or 3
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// https://ethereum.github.io/yellowpaper/paper.pdf
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if ([2, 3].includes(sig.recovery))
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throw new Error('invalid signature rec=2 or 3');
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return sig;
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}
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function validateRaw(obj) {
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if ((0, exports.isBytes)(obj))
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return true;
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if (typeof obj === 'object' && obj && typeof obj.r === 'bigint' && typeof obj.s === 'bigint')
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return true;
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throw new Error('expected valid signature');
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}
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function verify(sig, hash, publicKey) {
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validateRaw(sig);
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return secp256k1_1.secp256k1.verify(sig, hash, publicKey);
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}
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function initSig(sig, bit) {
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validateRaw(sig);
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const s = (0, exports.isBytes)(sig)
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? secp256k1_1.secp256k1.Signature.fromCompact(sig)
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: new secp256k1_1.secp256k1.Signature(sig.r, sig.s);
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return s.addRecoveryBit(bit);
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}
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function cloneDeep(obj) {
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if ((0, exports.isBytes)(obj)) {
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return Uint8Array.from(obj);
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}
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else if (Array.isArray(obj)) {
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return obj.map(cloneDeep);
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}
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else if (typeof obj === 'bigint') {
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return BigInt(obj);
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}
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else if (typeof obj === 'object') {
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// should be last, so it won't catch other types
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let res = {};
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// TODO: hasOwnProperty?
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for (let key in obj)
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res[key] = cloneDeep(obj[key]);
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return res;
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}
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else
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return obj;
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}
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function omit(obj, ...keys) {
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let res = Object.assign({}, obj);
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for (let key of keys)
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delete res[key];
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return res;
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}
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function zip(a, b) {
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let res = [];
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for (let i = 0; i < Math.max(a.length, b.length); i++)
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res.push([a[i], b[i]]);
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return res;
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}
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exports.createDecimal = micro_packed_1.coders.decimal;
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exports.weieth = (0, exports.createDecimal)(ETH_PRECISION);
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exports.weigwei = (0, exports.createDecimal)(GWEI_PRECISION);
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// legacy. TODO: remove
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exports.ethDecimal = exports.weieth;
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exports.gweiDecimal = exports.weigwei;
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exports.formatters = {
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// returns decimal that costs exactly $0.01 in given precision (using price)
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// formatDecimal(perCentDecimal(prec, price), prec) * price == '0.01'
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perCentDecimal(precision, price) {
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const fiatPrec = exports.weieth;
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//x * price = 0.01
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//x = 0.01/price = 1/100 / price = 1/(100*price)
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// float does not have enough precision
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const totalPrice = fiatPrec.decode('' + price);
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const centPrice = fiatPrec.decode('0.01') * BigInt(10) ** BigInt(precision);
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return centPrice / totalPrice;
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},
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// TODO: what difference between decimal and this?!
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// Used by 'fromWei' only
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formatBigint(amount, base, precision, fixed = false) {
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const baseLength = base.toString().length;
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const whole = (amount / base).toString();
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let fraction = (amount % base).toString();
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const zeros = '0'.repeat(Math.max(0, baseLength - fraction.length - 1));
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fraction = `${zeros}${fraction}`;
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const fractionWithoutTrailingZeros = fraction.replace(/0+$/, '');
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const fractionAfterPrecision = (fixed ? fraction : fractionWithoutTrailingZeros).slice(0, precision);
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if (!fixed && (fractionAfterPrecision === '' || parseInt(fractionAfterPrecision, 10) === 0)) {
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return whole;
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}
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// is same fraction?
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const fr = (str) => str.replace(/0+$/, '');
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const prefix = BigInt(`1${fr(fractionAfterPrecision)}`) === BigInt(`1${fr(fraction)}`) ? '' : '~';
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return `${prefix}${whole}.${fractionAfterPrecision}`;
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},
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fromWei(wei) {
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const GWEI = 10 ** 9;
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const ETHER = BigInt(10) ** BigInt(ETH_PRECISION);
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wei = BigInt(wei);
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if (wei < BigInt(GWEI) / BigInt(10))
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return wei + 'wei';
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if (wei >= BigInt(GWEI) && wei < ETHER / BigInt(1000))
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return exports.formatters.formatBigint(wei, BigInt(GWEI), 9, false) + 'μeth';
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return exports.formatters.formatBigint(wei, ETHER, ETH_PRECISION, false) + 'eth';
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},
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};
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//# sourceMappingURL=utils.js.map
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