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thrower_daemon/node_modules/@noble/ciphers/esm/utils.js
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182
thrower_daemon/node_modules/@noble/ciphers/esm/utils.js
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/*! noble-ciphers - MIT License (c) 2023 Paul Miller (paulmillr.com) */
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import { bytes as abytes, isBytes } from './_assert.js';
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// Cast array to different type
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export const u8 = (arr) => new Uint8Array(arr.buffer, arr.byteOffset, arr.byteLength);
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export const u16 = (arr) => new Uint16Array(arr.buffer, arr.byteOffset, Math.floor(arr.byteLength / 2));
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export const u32 = (arr) => new Uint32Array(arr.buffer, arr.byteOffset, Math.floor(arr.byteLength / 4));
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// Cast array to view
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export const createView = (arr) => new DataView(arr.buffer, arr.byteOffset, arr.byteLength);
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// big-endian hardware is rare. Just in case someone still decides to run ciphers:
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// early-throw an error because we don't support BE yet.
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export const isLE = new Uint8Array(new Uint32Array([0x11223344]).buffer)[0] === 0x44;
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if (!isLE)
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throw new Error('Non little-endian hardware is not supported');
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// Array where index 0xf0 (240) is mapped to string 'f0'
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const hexes = /* @__PURE__ */ Array.from({ length: 256 }, (_, i) => i.toString(16).padStart(2, '0'));
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/**
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* @example bytesToHex(Uint8Array.from([0xca, 0xfe, 0x01, 0x23])) // 'cafe0123'
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*/
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export function bytesToHex(bytes) {
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abytes(bytes);
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// pre-caching improves the speed 6x
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let hex = '';
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for (let i = 0; i < bytes.length; i++) {
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hex += hexes[bytes[i]];
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}
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return hex;
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}
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// We use optimized technique to convert hex string to byte array
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const asciis = { _0: 48, _9: 57, _A: 65, _F: 70, _a: 97, _f: 102 };
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function asciiToBase16(char) {
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if (char >= asciis._0 && char <= asciis._9)
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return char - asciis._0;
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if (char >= asciis._A && char <= asciis._F)
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return char - (asciis._A - 10);
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if (char >= asciis._a && char <= asciis._f)
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return char - (asciis._a - 10);
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return;
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}
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/**
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* @example hexToBytes('cafe0123') // Uint8Array.from([0xca, 0xfe, 0x01, 0x23])
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*/
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export function hexToBytes(hex) {
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if (typeof hex !== 'string')
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throw new Error('hex string expected, got ' + typeof hex);
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const hl = hex.length;
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const al = hl / 2;
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if (hl % 2)
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throw new Error('padded hex string expected, got unpadded hex of length ' + hl);
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const array = new Uint8Array(al);
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for (let ai = 0, hi = 0; ai < al; ai++, hi += 2) {
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const n1 = asciiToBase16(hex.charCodeAt(hi));
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const n2 = asciiToBase16(hex.charCodeAt(hi + 1));
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if (n1 === undefined || n2 === undefined) {
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const char = hex[hi] + hex[hi + 1];
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throw new Error('hex string expected, got non-hex character "' + char + '" at index ' + hi);
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}
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array[ai] = n1 * 16 + n2;
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}
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return array;
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}
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export function hexToNumber(hex) {
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if (typeof hex !== 'string')
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throw new Error('hex string expected, got ' + typeof hex);
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// Big Endian
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return BigInt(hex === '' ? '0' : `0x${hex}`);
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}
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// BE: Big Endian, LE: Little Endian
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export function bytesToNumberBE(bytes) {
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return hexToNumber(bytesToHex(bytes));
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}
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export function numberToBytesBE(n, len) {
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return hexToBytes(n.toString(16).padStart(len * 2, '0'));
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}
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// There is no setImmediate in browser and setTimeout is slow.
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// call of async fn will return Promise, which will be fullfiled only on
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// next scheduler queue processing step and this is exactly what we need.
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export const nextTick = async () => { };
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// Returns control to thread each 'tick' ms to avoid blocking
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export async function asyncLoop(iters, tick, cb) {
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let ts = Date.now();
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for (let i = 0; i < iters; i++) {
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cb(i);
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// Date.now() is not monotonic, so in case if clock goes backwards we return return control too
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const diff = Date.now() - ts;
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if (diff >= 0 && diff < tick)
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continue;
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await nextTick();
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ts += diff;
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}
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}
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/**
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* @example utf8ToBytes('abc') // new Uint8Array([97, 98, 99])
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*/
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export function utf8ToBytes(str) {
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if (typeof str !== 'string')
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throw new Error(`string expected, got ${typeof str}`);
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return new Uint8Array(new TextEncoder().encode(str)); // https://bugzil.la/1681809
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}
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/**
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* @example bytesToUtf8(new Uint8Array([97, 98, 99])) // 'abc'
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*/
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export function bytesToUtf8(bytes) {
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return new TextDecoder().decode(bytes);
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}
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/**
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* Normalizes (non-hex) string or Uint8Array to Uint8Array.
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* Warning: when Uint8Array is passed, it would NOT get copied.
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* Keep in mind for future mutable operations.
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*/
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export function toBytes(data) {
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if (typeof data === 'string')
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data = utf8ToBytes(data);
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else if (isBytes(data))
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data = data.slice();
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else
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throw new Error(`Uint8Array expected, got ${typeof data}`);
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return data;
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}
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/**
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* Copies several Uint8Arrays into one.
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*/
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export function concatBytes(...arrays) {
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let sum = 0;
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for (let i = 0; i < arrays.length; i++) {
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const a = arrays[i];
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abytes(a);
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sum += a.length;
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}
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const res = new Uint8Array(sum);
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for (let i = 0, pad = 0; i < arrays.length; i++) {
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const a = arrays[i];
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res.set(a, pad);
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pad += a.length;
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}
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return res;
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}
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export function checkOpts(defaults, opts) {
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if (opts == null || typeof opts !== 'object')
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throw new Error('options must be defined');
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const merged = Object.assign(defaults, opts);
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return merged;
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}
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// Compares 2 u8a-s in kinda constant time
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export function equalBytes(a, b) {
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if (a.length !== b.length)
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return false;
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let diff = 0;
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for (let i = 0; i < a.length; i++)
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diff |= a[i] ^ b[i];
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return diff === 0;
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}
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// For runtime check if class implements interface
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export class Hash {
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}
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/**
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* @__NO_SIDE_EFFECTS__
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*/
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export const wrapCipher = (params, c) => {
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Object.assign(c, params);
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return c;
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};
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// Polyfill for Safari 14
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export function setBigUint64(view, byteOffset, value, isLE) {
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if (typeof view.setBigUint64 === 'function')
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return view.setBigUint64(byteOffset, value, isLE);
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const _32n = BigInt(32);
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const _u32_max = BigInt(0xffffffff);
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const wh = Number((value >> _32n) & _u32_max);
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const wl = Number(value & _u32_max);
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const h = isLE ? 4 : 0;
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const l = isLE ? 0 : 4;
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view.setUint32(byteOffset + h, wh, isLE);
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view.setUint32(byteOffset + l, wl, isLE);
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}
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export function u64Lengths(ciphertext, AAD) {
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const num = new Uint8Array(16);
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const view = createView(num);
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setBigUint64(view, 0, BigInt(AAD ? AAD.length : 0), true);
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setBigUint64(view, 8, BigInt(ciphertext.length), true);
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return num;
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}
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//# sourceMappingURL=utils.js.map
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