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540 lines
15 KiB
540 lines
15 KiB
function bufferFromBase64(base64) {
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const binaryString = atob(base64);
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const length = binaryString.length;
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const bytes = new Uint8Array(length);
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for (let i = 0; i < length; i++) {
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bytes[i] = binaryString.charCodeAt(i);
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}
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return bytes;
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}
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function fromString(str, encoding = "utf8") {
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if (encoding === "utf8") {
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return new TextEncoder().encode(str);
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} else if (encoding === "base16") {
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if (str.length % 2 !== 0) {
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throw new Error("Invalid hex string length.");
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}
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let bytes = new Uint8Array(str.length / 2);
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for (let i = 0; i < str.length; i += 2) {
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bytes[i / 2] = parseInt(str.substring(i, i + 2), 16);
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}
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return bytes;
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} else if (encoding === "base64url") {
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str = str.replace(/-/g, "+").replace(/_/g, "/");
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while (str.length % 4) {
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str += "=";
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}
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return new Uint8Array(bufferFromBase64(str));
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} else {
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throw new Error(`Unsupported encoding "${encoding}"`);
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}
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}
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/**
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* Convert a Uint8Array to a string with the given encoding.
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*
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* @param {Uint8Array} byteArray - The Uint8Array to convert.
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* @param {string} [encoding='utf8'] - The desired encoding ('utf8', 'base16', 'base64url').
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* @returns {string} - The encoded string.
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* @throws {Error} - Throws an error if the encoding is unsupported.
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*/
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function toString(byteArray, encoding = "utf8") {
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switch (encoding) {
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case "utf8":
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return decodeUTF8(byteArray);
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case "base16":
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return toBase16(byteArray);
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case "base64url":
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return toBase64Url(byteArray);
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default:
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throw new Error(`Unsupported encoding "${encoding}"`);
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}
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}
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/**
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* Decode a Uint8Array as a UTF-8 string.
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*
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* @param {Uint8Array} byteArray
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* @returns {string}
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*/
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function decodeUTF8(byteArray) {
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return new TextDecoder().decode(byteArray);
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}
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/**
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* Convert a Uint8Array to a base16 (hex) encoded string.
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*
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* @param {Uint8Array} byteArray
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* @returns {string}
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*/
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function toBase16(byteArray) {
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return Array.from(byteArray)
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.map((byte) => byte.toString(16).padStart(2, "0"))
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.join("");
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}
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/**
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* Convert a Uint8Array to a base64url encoded string.
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*
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* @param {Uint8Array} byteArray
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* @returns {string}
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*/
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function toBase64Url(byteArray) {
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let uint8Array = new Uint8Array(byteArray);
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let binaryString = "";
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for (let i = 0; i < uint8Array.length; i++) {
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binaryString += String.fromCharCode(uint8Array[i]);
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}
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// Encode to base64
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let base64 = btoa(binaryString);
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return base64.replace(/\+/g, "-").replace(/\//g, "_").replace(/=+$/, "");
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}
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const u8a = { toString, fromString };
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function sha256(payload) {
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const data = typeof payload === "string" ? u8a.fromString(payload) : payload;
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return nobleHashes.sha256(data);
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}
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async function accessToken(identifier) {
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const did = identifier["did"];
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const privateKeyHex = identifier["keys"][0]["privateKeyHex"];
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const signer = await SimpleSigner(privateKeyHex);
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const nowEpoch = Math.floor(Date.now() / 1000);
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const endEpoch = nowEpoch + 60; // add one minute
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const tokenPayload = { exp: endEpoch, iat: nowEpoch, iss: did };
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const alg = undefined; // defaults to 'ES256K', more standardized but harder to verify vs ES256K-R
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const jwt = await createJWT(tokenPayload, {
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alg,
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issuer: did,
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signer,
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});
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return jwt;
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}
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async function createJWT(payload, options, header = {}) {
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const { issuer, signer, alg, expiresIn, canonicalize } = options;
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if (!signer)
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throw new Error(
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"missing_signer: No Signer functionality has been configured",
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);
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if (!issuer)
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throw new Error("missing_issuer: No issuing DID has been configured");
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if (!header.typ) header.typ = "JWT";
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if (!header.alg) header.alg = alg;
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const timestamps = {
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iat: Math.floor(Date.now() / 1000),
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exp: undefined,
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};
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if (expiresIn) {
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if (typeof expiresIn === "number") {
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timestamps.exp = (payload.nbf || timestamps.iat) + Math.floor(expiresIn);
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} else {
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throw new Error("invalid_argument: JWT expiresIn is not a number");
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}
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}
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const fullPayload = { ...timestamps, ...payload, iss: issuer };
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return createJWS(fullPayload, signer, header, { canonicalize });
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}
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const defaultAlg = "ES256K";
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async function createJWS(payload, signer, header = {}, options = {}) {
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if (!header.alg) header.alg = defaultAlg;
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const encodedPayload =
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typeof payload === "string"
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? payload
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: encodeSection(payload, options.canonicalize);
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const signingInput = [
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encodeSection(header, options.canonicalize),
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encodedPayload,
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].join(".");
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const jwtSigner = ES256KSignerAlg(false);
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const signature = await jwtSigner(signingInput, signer);
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// JWS Compact Serialization
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// https://www.rfc-editor.org/rfc/rfc7515#section-7.1
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return [signingInput, signature].join(".");
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}
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function canonicalizeData(object) {
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if (typeof object === "number" && isNaN(object)) {
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throw new Error("NaN is not allowed");
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}
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if (typeof object === "number" && !isFinite(object)) {
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throw new Error("Infinity is not allowed");
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}
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if (object === null || typeof object !== "object") {
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return JSON.stringify(object);
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}
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if (object.toJSON instanceof Function) {
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return serialize(object.toJSON());
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}
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if (Array.isArray(object)) {
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const values = object.reduce((t, cv, ci) => {
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const comma = ci === 0 ? "" : ",";
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const value = cv === undefined || typeof cv === "symbol" ? null : cv;
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return `${t}${comma}${serialize(value)}`;
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}, "");
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return `[${values}]`;
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}
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const values = Object.keys(object)
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.sort()
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.reduce((t, cv) => {
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if (object[cv] === undefined || typeof object[cv] === "symbol") {
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return t;
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}
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const comma = t.length === 0 ? "" : ",";
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return `${t}${comma}${serialize(cv)}:${serialize(object[cv])}`;
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}, "");
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return `{${values}}`;
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}
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function encodeSection(data, shouldCanonicalize = false) {
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if (shouldCanonicalize) {
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return encodeBase64url(canonicalizeData(data));
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} else {
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return encodeBase64url(JSON.stringify(data));
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}
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}
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function encodeBase64url(s) {
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return bytesToBase64url(u8a.fromString(s));
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}
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function instanceOfEcdsaSignature(object) {
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return typeof object === "object" && "r" in object && "s" in object;
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}
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function ES256KSignerAlg(recoverable) {
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return async function sign(payload, signer) {
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const signature = await signer(payload);
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if (instanceOfEcdsaSignature(signature)) {
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return toJose(signature, recoverable);
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} else {
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if (
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recoverable &&
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typeof fromJose(signature).recoveryParam === "undefined"
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) {
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throw new Error(
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`not_supported: ES256K-R not supported when signer doesn't provide a recovery param`,
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);
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}
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return signature;
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}
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};
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}
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function leftpad(data, size = 64) {
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if (data.length === size) return data;
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return "0".repeat(size - data.length) + data;
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}
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async function SimpleSigner(hexPrivateKey) {
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const signer = await ES256KSigner(hexToBytes(hexPrivateKey), true);
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return async (data) => {
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const signature = await signer(data);
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return fromJose(signature);
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};
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}
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function hexToBytes(s, minLength) {
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let input = s.startsWith("0x") ? s.substring(2) : s;
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if (input.length % 2 !== 0) {
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input = `0${input}`;
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}
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if (minLength) {
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const paddedLength = Math.max(input.length, minLength * 2);
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input = input.padStart(paddedLength, "00");
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}
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return u8a.fromString(input.toLowerCase(), "base16");
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}
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function ES256KSigner(privateKey, recoverable = false) {
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const privateKeyBytes = privateKey;
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if (privateKeyBytes.length !== 32) {
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throw new Error(
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`bad_key: Invalid private key format. Expecting 32 bytes, but got ${privateKeyBytes.length}`,
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);
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}
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return async function (data) {
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const signature = nobleCurves.secp256k1.sign(sha256(data), privateKeyBytes);
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return toJose(
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{
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r: leftpad(signature.r.toString(16)),
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s: leftpad(signature.s.toString(16)),
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recoveryParam: signature.recovery,
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},
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recoverable,
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);
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};
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}
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function toJose(signature, recoverable) {
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const { r, s, recoveryParam } = signature;
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const jose = new Uint8Array(recoverable ? 65 : 64);
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jose.set(u8a.fromString(r, "base16"), 0);
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jose.set(u8a.fromString(s, "base16"), 32);
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if (recoverable) {
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if (typeof recoveryParam === "undefined") {
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throw new Error("Signer did not return a recoveryParam");
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}
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jose[64] = recoveryParam;
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}
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return bytesToBase64url(jose);
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}
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function bytesToBase64url(b) {
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return u8a.toString(b, "base64url");
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}
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function base64ToBytes(s) {
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const inputBase64Url = s
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.replace(/\+/g, "-")
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.replace(/\//g, "_")
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.replace(/=/g, "");
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return u8a.fromString(inputBase64Url, "base64url");
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}
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function bytesToHex(b) {
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return u8a.toString(b, "base16");
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}
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function fromJose(signature) {
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const signatureBytes = base64ToBytes(signature);
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if (signatureBytes.length < 64 || signatureBytes.length > 65) {
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throw new TypeError(
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`Wrong size for signature. Expected 64 or 65 bytes, but got ${signatureBytes.length}`,
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);
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}
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const r = bytesToHex(signatureBytes.slice(0, 32));
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const s = bytesToHex(signatureBytes.slice(32, 64));
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const recoveryParam =
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signatureBytes.length === 65 ? signatureBytes[64] : undefined;
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return { r, s, recoveryParam };
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}
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function validateBase64(s) {
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if (
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!/^(?:[A-Za-z0-9+\/]{2}[A-Za-z0-9+\/]{2})*(?:[A-Za-z0-9+\/]{2}==|[A-Za-z0-9+\/]{3}=)?$/.test(
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s,
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)
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) {
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throw new TypeError("invalid encoding");
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}
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}
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function decodeBase64(s) {
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validateBase64(s);
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var i,
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d = atob(s),
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b = new Uint8Array(d.length);
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for (i = 0; i < d.length; i++) b[i] = d.charCodeAt(i);
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return b;
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}
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async function getSettingById(id) {
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return new Promise((resolve, reject) => {
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let openRequest = indexedDB.open("TimeSafari");
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openRequest.onupgradeneeded = (event) => {
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// Handle database setup if necessary
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let db = event.target.result;
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if (!db.objectStoreNames.contains("settings")) {
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db.createObjectStore("settings", { keyPath: "id" });
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}
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};
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openRequest.onsuccess = (event) => {
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let db = event.target.result;
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let transaction = db.transaction("settings", "readonly");
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let objectStore = transaction.objectStore("settings");
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let getRequest = objectStore.get(id);
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getRequest.onsuccess = () => resolve(getRequest.result);
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getRequest.onerror = () => reject(getRequest.error);
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};
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openRequest.onerror = () => reject(openRequest.error);
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});
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}
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async function setMostRecentNotified(id) {
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try {
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const db = await openIndexedDB("TimeSafari");
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const transaction = db.transaction("settings", "readwrite");
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const store = transaction.objectStore("settings");
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const data = await getRecord(store, 1);
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if (data) {
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data["lastNotifiedClaimId"] = id;
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await updateRecord(store, data);
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} else {
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console.error("Record not found");
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}
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transaction.oncomplete = () => db.close();
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} catch (error) {
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console.error("Database error: " + error.message);
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}
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}
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function openIndexedDB(dbName) {
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return new Promise((resolve, reject) => {
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const request = indexedDB.open(dbName);
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request.onerror = () => reject(request.error);
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request.onsuccess = () => resolve(request.result);
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request.onupgradeneeded = (event) => {
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const db = event.target.result;
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if (!db.objectStoreNames.contains("settings")) {
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db.createObjectStore("settings");
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}
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};
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});
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}
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function getRecord(store, key) {
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return new Promise((resolve, reject) => {
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const request = store.get(key);
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request.onsuccess = () => resolve(request.result);
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request.onerror = () => reject(request.error);
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});
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}
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function updateRecord(store, data) {
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return new Promise((resolve, reject) => {
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const request = store.put(data);
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request.onsuccess = () => resolve(request.result);
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request.onerror = () => reject(request.error);
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});
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}
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async function fetchAllAccounts() {
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return new Promise((resolve, reject) => {
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let openRequest = indexedDB.open("TimeSafariAccounts");
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openRequest.onupgradeneeded = function (event) {
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let db = event.target.result;
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if (!db.objectStoreNames.contains("accounts")) {
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db.createObjectStore("accounts", { keyPath: "id" });
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}
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};
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openRequest.onsuccess = function (event) {
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let db = event.target.result;
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let transaction = db.transaction("accounts", "readonly");
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let objectStore = transaction.objectStore("accounts");
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let getAllRequest = objectStore.getAll();
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getAllRequest.onsuccess = function () {
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resolve(getAllRequest.result);
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};
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getAllRequest.onerror = function () {
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reject(getAllRequest.error);
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};
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};
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openRequest.onerror = function () {
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reject(openRequest.error);
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};
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});
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}
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async function getNotificationCount() {
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let secret = null;
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let accounts = [];
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let result = null;
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if ("secret" in self) {
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secret = self.secret;
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const secretUint8Array = self.decodeBase64(secret);
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const settings = await getSettingById(1);
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let lastNotifiedClaimId = null;
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if ("lastNotifiedClaimId" in settings) {
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lastNotifiedClaimId = settings["lastNotifiedClaimId"];
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}
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const activeDid = settings["activeDid"];
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accounts = await fetchAllAccounts();
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let did = null;
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for (var i = 0; i < accounts.length; i++) {
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let account = accounts[i];
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let did = account["did"];
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if (did == activeDid) {
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let publicKeyHex = account["publicKeyHex"];
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let identity = account["identity"];
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const messageWithNonceAsUint8Array = self.decodeBase64(identity);
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const nonce = messageWithNonceAsUint8Array.slice(0, 24);
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const message = messageWithNonceAsUint8Array.slice(24, identity.length);
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const decoder = new TextDecoder("utf-8");
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const decrypted = self.secretbox.open(message, nonce, secretUint8Array);
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const msg = decoder.decode(decrypted);
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const identifier = JSON.parse(JSON.parse(msg));
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const headers = {
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"Content-Type": "application/json",
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};
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headers["Authorization"] = "Bearer " + (await accessToken(identifier));
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|
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let response = await fetch(
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"https://test-api.endorser.ch/api/v2/report/claims",
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{
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method: "GET",
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|
headers: headers,
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|
},
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|
);
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|
if (response.status == 200) {
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|
let json = await response.json();
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let claims = json["data"];
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|
let newClaims = 0;
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for (var i = 0; i < claims.length; i++) {
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let claim = claims[i];
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if (claim["id"] === lastNotifiedClaimId) {
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break;
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}
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newClaims++;
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}
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if (newClaims === 0) {
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result = "You have no new claims today.";
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} else {
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result = `${newClaims} have been shared with you`;
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}
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const most_recent_notified = claims[0]["id"];
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await setMostRecentNotified(most_recent_notified);
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return "TEST";
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|
} else {
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console.error(response.status);
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|
}
|
|
}
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}
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}
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return result;
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}
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self.getNotificationCount = getNotificationCount;
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self.decodeBase64 = decodeBase64;
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