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more shims, path, crypto, url
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60
shims/crypto/create-hash.js
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60
shims/crypto/create-hash.js
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// Shim for crypto.createHash
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// Obsidian uses createHash('SHA256') for signature verification (main process only)
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// and possibly for content hashing in the renderer.
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// Uses SubtleCrypto where possible.
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export function createHash(algorithm) {
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const alg = algorithm.toUpperCase().replace('-', '');
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const subtleAlg = alg === 'SHA256' ? 'SHA-256' : alg === 'SHA1' ? 'SHA-1' : alg === 'SHA512' ? 'SHA-512' : alg;
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let inputData = new Uint8Array(0);
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return {
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update(data) {
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if (typeof data === 'string') {
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data = new TextEncoder().encode(data);
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}
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// Concatenate
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const merged = new Uint8Array(inputData.length + data.length);
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merged.set(inputData);
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merged.set(data, inputData.length);
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inputData = merged;
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return this;
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},
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// Note: digest is sync in Node but we may need async.
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// For now provide sync hex/base64 via a simple JS implementation.
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// TODO: evaluate if any sync call sites exist; if not, make this async.
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digest(encoding) {
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// Fallback: simple sync hash (for SHA-256 only)
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// This is a placeholder - swap in a proper sync implementation if needed
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console.warn('[shim:crypto] createHash.digest - using placeholder');
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const hash = simpleHash(inputData);
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if (encoding === 'hex') return hash;
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if (encoding === 'base64') return btoa(hash);
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return hash;
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},
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// Async alternative for contexts that can await
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async digestAsync(encoding) {
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const hashBuffer = await crypto.subtle.digest(subtleAlg, inputData);
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const hashArray = new Uint8Array(hashBuffer);
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if (encoding === 'hex') {
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return Array.from(hashArray).map(b => b.toString(16).padStart(2, '0')).join('');
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}
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if (encoding === 'base64') {
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return btoa(String.fromCharCode(...hashArray));
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}
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return hashArray;
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},
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};
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}
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// Very basic placeholder hash - not cryptographic, just for bootstrapping
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function simpleHash(data) {
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let hash = 0;
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for (let i = 0; i < data.length; i++) {
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hash = ((hash << 5) - hash + data[i]) | 0;
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}
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return Math.abs(hash).toString(16).padStart(8, '0');
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}
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12
shims/crypto/index.js
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12
shims/crypto/index.js
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// Crypto shim
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// Obsidian uses: scrypt, randomBytes, createHash
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import { randomBytes } from './random-bytes.js';
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import { createHash } from './create-hash.js';
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import { scrypt } from './scrypt.js';
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export const cryptoShim = {
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randomBytes,
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createHash,
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scrypt,
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};
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20
shims/crypto/random-bytes.js
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20
shims/crypto/random-bytes.js
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// Shim for crypto.randomBytes
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// Uses Web Crypto API under the hood
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export function randomBytes(size) {
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const buf = new Uint8Array(size);
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crypto.getRandomValues(buf);
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// Add Buffer-like convenience methods
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buf.toString = function(encoding) {
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if (encoding === 'hex') {
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return Array.from(this).map(b => b.toString(16).padStart(2, '0')).join('');
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}
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if (encoding === 'base64') {
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return btoa(String.fromCharCode(...this));
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}
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return new TextDecoder().decode(this);
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};
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return buf;
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}
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29
shims/crypto/scrypt.js
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29
shims/crypto/scrypt.js
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// Shim for crypto.scrypt
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// Delegates to window.scrypt which is already loaded by Obsidian's own scrypt.js
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export function scrypt(password, salt, keylen, options, callback) {
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// Node signature: scrypt(password, salt, keylen, options, callback)
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// Obsidian's app.js checks for window.require("crypto") and uses it if available,
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// otherwise falls back to window.scrypt - so this shim just delegates to the latter.
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if (typeof options === 'function') {
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callback = options;
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options = {};
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}
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const N = options?.N || 32768;
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const r = options?.r || 8;
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const p = options?.p || 1;
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if (window.scrypt && window.scrypt.scrypt) {
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// Use the browser scrypt library already loaded by Obsidian
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const pwBytes = typeof password === 'string' ? new TextEncoder().encode(password) : password;
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const saltBytes = typeof salt === 'string' ? new TextEncoder().encode(salt) : salt;
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window.scrypt.scrypt(pwBytes, saltBytes, N, r, p, keylen)
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.then((result) => callback(null, new Uint8Array(result)))
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.catch((err) => callback(err));
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} else {
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callback(new Error('scrypt not available'));
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}
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}
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