2022-11-07 17:44:57 -06:00
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export class CryptoUtil {
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static algorithm = 'RSASSA-PKCS1-v1_5';
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static hash = 'SHA-256';
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2022-11-12 16:20:42 -06:00
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static async generateAsymmetricKey() {
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2022-12-31 16:08:42 -06:00
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return window.crypto.subtle.generateKey(
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2022-11-07 17:44:57 -06:00
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{
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name: CryptoUtil.algorithm,
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hash: CryptoUtil.hash,
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modulusLength: 2048,
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publicExponent: new Uint8Array([1, 0, 1]),
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},
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true,
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['sign', 'verify'],
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);
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}
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static async sign(content, privateKey) {
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const encoder = new TextEncoder();
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const encoded = encoder.encode(content);
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const signature = await window.crypto.subtle.sign(CryptoUtil.algorithm, privateKey, encoded);
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// Return base64-encoded signature
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return btoa(String.fromCharCode(...new Uint8Array(signature)));
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}
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static async verify(content, b64publicKey, b64signature) {
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// Convert base64 javascript web key to CryptoKey
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const publicKey = await CryptoUtil.importKey(b64publicKey);
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// Convert base64 signature to an ArrayBuffer
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const signature = Uint8Array.from(atob(b64signature), (c) => c.charCodeAt(0));
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// TODO: make a single TextEncoder instance and reuse it
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const encoder = new TextEncoder();
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const encoded = encoder.encode(content);
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2022-12-31 16:08:42 -06:00
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return window.crypto.subtle.verify(CryptoUtil.algorithm, publicKey, signature, encoded);
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2022-11-07 17:44:57 -06:00
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}
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static async exportKey(publicKey) {
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// Store public key as base64 javascript web key
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const jwk = await window.crypto.subtle.exportKey('jwk', publicKey);
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return btoa(JSON.stringify(jwk));
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}
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static async importKey(b64jwk) {
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// Convert base64 javascript web key to CryptoKey
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const jwk = JSON.parse(atob(b64jwk));
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2022-12-31 16:08:42 -06:00
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return window.crypto.subtle.importKey(
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2022-11-07 17:44:57 -06:00
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'jwk',
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jwk,
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{
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name: CryptoUtil.algorithm,
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hash: CryptoUtil.hash,
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},
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false,
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['verify'],
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);
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}
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2022-11-12 16:20:42 -06:00
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static randomUUID() {
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return window.crypto.randomUUID();
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}
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2022-11-07 17:44:57 -06:00
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}
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