298 lines
7.9 KiB
TypeScript
298 lines
7.9 KiB
TypeScript
/**
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* Conversion Utilities
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*
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*/
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import { BigNumber } from './bignumber';
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import { Arrayish, Signature } from './types';
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export { Arrayish, Signature };
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import errors = require('./errors');
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export const AddressZero = '0x0000000000000000000000000000000000000000';
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export const HashZero = '0x0000000000000000000000000000000000000000000000000000000000000000';
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function isBigNumber(value: any): value is BigNumber {
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return !!value._bn;
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}
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function addSlice(array: Uint8Array): Uint8Array {
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if (array.slice) { return array; }
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array.slice = function() {
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var args = Array.prototype.slice.call(arguments);
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return new Uint8Array(Array.prototype.slice.apply(array, args));
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}
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return array;
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}
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export function isArrayish(value: any): boolean {
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if (!value || parseInt(String(value.length)) != value.length || typeof(value) === 'string') {
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return false;
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}
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for (var i = 0; i < value.length; i++) {
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var v = value[i];
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if (v < 0 || v >= 256 || parseInt(String(v)) != v) {
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return false;
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}
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}
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return true;
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}
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export function arrayify(value: Arrayish | BigNumber): Uint8Array {
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if (value == null) {
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errors.throwError('cannot convert null value to array', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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if (isBigNumber(value)) {
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value = value.toHexString();
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}
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if (typeof(value) === 'string') {
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let match = value.match(/^(0x)?[0-9a-fA-F]*$/);
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if (!match) {
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errors.throwError('invalid hexidecimal string', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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if (match[1] !== '0x') {
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errors.throwError('hex string must have 0x prefix', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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value = value.substring(2);
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if (value.length % 2) { value = '0' + value; }
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var result = [];
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for (var i = 0; i < value.length; i += 2) {
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result.push(parseInt(value.substr(i, 2), 16));
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}
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return addSlice(new Uint8Array(result));
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} else if (typeof(value) === 'string') {
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}
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if (isArrayish(value)) {
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return addSlice(new Uint8Array(value));
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}
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errors.throwError('invalid arrayify value', null, { arg: 'value', value: value, type: typeof(value) });
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return null;
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}
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export function concat(objects: Array<Arrayish>): Uint8Array {
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var arrays = [];
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var length = 0;
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for (var i = 0; i < objects.length; i++) {
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var object = arrayify(objects[i])
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arrays.push(object);
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length += object.length;
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}
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var result = new Uint8Array(length);
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var offset = 0;
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for (var i = 0; i < arrays.length; i++) {
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result.set(arrays[i], offset);
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offset += arrays[i].length;
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}
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return addSlice(result);
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}
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export function stripZeros(value: Arrayish): Uint8Array {
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let result: Uint8Array = arrayify(value);
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if (result.length === 0) { return result; }
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// Find the first non-zero entry
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var start = 0;
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while (result[start] === 0) { start++ }
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// If we started with zeros, strip them
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if (start) {
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result = result.slice(start);
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}
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return result;
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}
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export function padZeros(value: Arrayish, length: number): Uint8Array {
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value = arrayify(value);
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if (length < value.length) { throw new Error('cannot pad'); }
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var result = new Uint8Array(length);
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result.set(value, length - value.length);
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return addSlice(result);
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}
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export function isHexString(value: any, length?: number): boolean {
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if (typeof(value) !== 'string' || !value.match(/^0x[0-9A-Fa-f]*$/)) {
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return false
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}
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if (length && value.length !== 2 + 2 * length) { return false; }
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return true;
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}
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const HexCharacters: string = '0123456789abcdef';
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export function hexlify(value: Arrayish | BigNumber | number): string {
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if (isBigNumber(value)) {
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return value.toHexString();
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}
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if (typeof(value) === 'number') {
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if (value < 0) {
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errors.throwError('cannot hexlify negative value', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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var hex = '';
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while (value) {
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hex = HexCharacters[value & 0x0f] + hex;
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value = Math.floor(value / 16);
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}
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if (hex.length) {
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if (hex.length % 2) { hex = '0' + hex; }
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return '0x' + hex;
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}
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return '0x00';
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}
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if (typeof(value) === 'string') {
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let match = value.match(/^(0x)?[0-9a-fA-F]*$/);
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if (!match) {
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errors.throwError('invalid hexidecimal string', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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if (match[1] !== '0x') {
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errors.throwError('hex string must have 0x prefix', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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if (value.length % 2) {
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value = '0x0' + value.substring(2);
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}
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return value;
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}
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if (isArrayish(value)) {
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var result = [];
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for (var i = 0; i < value.length; i++) {
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var v = value[i];
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result.push(HexCharacters[(v & 0xf0) >> 4] + HexCharacters[v & 0x0f]);
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}
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return '0x' + result.join('');
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}
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errors.throwError('invalid hexlify value', null, { arg: 'value', value: value });
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return 'never';
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}
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export function hexDataLength(data: string) {
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if (!isHexString(data) || (data.length % 2) !== 0) {
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return null;
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}
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return (data.length - 2) / 2;
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}
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export function hexDataSlice(data: string, offset: number, length?: number): string {
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if (!isHexString(data)) {
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errors.throwError('invalid hex data', errors.INVALID_ARGUMENT, { arg: 'value', value: data });
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}
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if ((data.length % 2) !== 0) {
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errors.throwError('hex data length must be even', errors.INVALID_ARGUMENT, { arg: 'value', value: data });
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}
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offset = 2 + 2 * offset;
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if (length != null) {
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return '0x' + data.substring(offset, offset + 2 * length);
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}
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return '0x' + data.substring(offset);
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}
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export function hexStripZeros(value: string): string {
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if (!isHexString(value)) {
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errors.throwError('invalid hex string', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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while (value.length > 3 && value.substring(0, 3) === '0x0') {
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value = '0x' + value.substring(3);
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}
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return value;
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}
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export function hexZeroPad(value: string, length: number): string {
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if (!isHexString(value)) {
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errors.throwError('invalid hex string', errors.INVALID_ARGUMENT, { arg: 'value', value: value });
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}
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while (value.length < 2 * length + 2) {
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value = '0x0' + value.substring(2);
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}
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return value;
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}
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function isSignature(value: any): value is Signature {
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return (value && value.r != null && value.s != null);
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}
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export function splitSignature(signature: Arrayish | Signature): Signature {
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let v = 0;
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let r = '0x', s = '0x';
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if (isSignature(signature)) {
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r = hexZeroPad(signature.r, 32);
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s = hexZeroPad(signature.s, 32);
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v = signature.v;
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if (typeof(v) === 'string') { v = parseInt(v, 16); }
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let recoveryParam = signature.recoveryParam;
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if (recoveryParam == null && signature.v != null) {
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recoveryParam = 1 - (v % 2);
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}
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v = 27 + recoveryParam;
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} else {
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let bytes: Uint8Array = arrayify(signature);
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if (bytes.length !== 65) {
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throw new Error('invalid signature');
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}
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r = hexlify(bytes.slice(0, 32));
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s = hexlify(bytes.slice(32, 64));
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v = bytes[64];
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if (v !== 27 && v !== 28) {
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v = 27 + (v % 2);
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}
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}
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return {
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r: r,
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s: s,
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recoveryParam: (v - 27),
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v: v
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}
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}
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export function joinSignature(signature: Signature): string {
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signature = splitSignature(signature);
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return hexlify(concat([
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signature.r,
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signature.s,
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(signature.recoveryParam ? '0x1c': '0x1b')
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]));
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}
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