uptime-kuma/server/util-server.js

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const tcpp = require("tcp-ping");
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const Ping = require("./ping-lite");
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const { R } = require("redbean-node");
const { log, genSecret } = require("../src/util");
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const passwordHash = require("./password-hash");
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const { Resolver } = require("dns");
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const childProcess = require("child_process");
const iconv = require("iconv-lite");
const chardet = require("chardet");
const fs = require("fs");
const nodeJsUtil = require("util");
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const mqtt = require("mqtt");
// From ping-lite
exports.WIN = /^win/.test(process.platform);
exports.LIN = /^linux/.test(process.platform);
exports.MAC = /^darwin/.test(process.platform);
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exports.FBSD = /^freebsd/.test(process.platform);
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exports.BSD = /bsd$/.test(process.platform);
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/**
* Init or reset JWT secret
* @returns {Promise<Bean>}
*/
exports.initJWTSecret = async () => {
let jwtSecretBean = await R.findOne("setting", " `key` = ? ", [
"jwtSecret",
]);
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if (!jwtSecretBean) {
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jwtSecretBean = R.dispense("setting");
jwtSecretBean.key = "jwtSecret";
}
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jwtSecretBean.value = passwordHash.generate(genSecret());
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await R.store(jwtSecretBean);
return jwtSecretBean;
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};
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exports.tcping = function (hostname, port) {
return new Promise((resolve, reject) => {
tcpp.ping({
address: hostname,
port: port,
attempts: 1,
}, function (err, data) {
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if (err) {
reject(err);
}
if (data.results.length >= 1 && data.results[0].err) {
reject(data.results[0].err);
}
resolve(Math.round(data.max));
});
});
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};
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exports.ping = async (hostname) => {
try {
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return await exports.pingAsync(hostname);
} catch (e) {
// If the host cannot be resolved, try again with ipv6
if (e.message.includes("service not known")) {
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return await exports.pingAsync(hostname, true);
} else {
throw e;
}
}
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};
exports.pingAsync = function (hostname, ipv6 = false) {
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return new Promise((resolve, reject) => {
const ping = new Ping(hostname, {
ipv6
});
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ping.send(function (err, ms, stdout) {
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if (err) {
reject(err);
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} else if (ms === null) {
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reject(new Error(stdout));
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} else {
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resolve(Math.round(ms));
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}
});
});
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};
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exports.mqttAsync = function (hostname, topic, okMessage, options = {}) {
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return new Promise((resolve, reject) => {
const { port, username, password, interval = 20 } = options;
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// Adds MQTT protocol to the hostname if not already present
if (!/^(?:http|mqtt)s?:\/\//.test(hostname)) {
hostname = "mqtt://" + hostname;
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}
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const timeoutID = setTimeout(() => {
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log.debug("mqtt", "MQTT timeout triggered");
client.end();
reject(new Error("Timeout"));
}, interval * 1000 * 0.8);
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log.debug("mqtt", "MQTT connecting");
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let client = mqtt.connect(hostname, {
port,
username,
password
});
client.on("connect", () => {
log.debug("mqtt", "MQTT connected");
try {
log.debug("mqtt", "MQTT subscribe topic");
client.subscribe(topic);
} catch (e) {
client.end();
clearTimeout(timeoutID);
reject(new Error("Cannot subscribe topic"));
}
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});
client.on("error", (error) => {
client.end();
clearTimeout(timeoutID);
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reject(error);
});
client.on("message", (messageTopic, message) => {
if (messageTopic == topic) {
client.end();
clearTimeout(timeoutID);
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if (message.toString() === okMessage) {
resolve(`Topic: ${messageTopic}; Message: ${message.toString()}`);
} else {
reject(new Error(`Error; Topic: ${messageTopic}; Message: ${message.toString()}`));
}
}
});
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});
};
exports.dnsResolve = function (hostname, resolverServer, rrtype) {
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const resolver = new Resolver();
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resolver.setServers([ resolverServer ]);
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return new Promise((resolve, reject) => {
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if (rrtype === "PTR") {
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resolver.reverse(hostname, (err, records) => {
if (err) {
reject(err);
} else {
resolve(records);
}
});
} else {
resolver.resolve(hostname, rrtype, (err, records) => {
if (err) {
reject(err);
} else {
resolve(records);
}
});
}
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});
};
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exports.setting = async function (key) {
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let value = await R.getCell("SELECT `value` FROM setting WHERE `key` = ? ", [
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key,
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]);
try {
const v = JSON.parse(value);
log.debug("util", `Get Setting: ${key}: ${v}`);
return v;
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} catch (e) {
return value;
}
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};
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exports.setSetting = async function (key, value, type = null) {
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let bean = await R.findOne("setting", " `key` = ? ", [
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key,
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]);
if (!bean) {
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bean = R.dispense("setting");
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bean.key = key;
}
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bean.type = type;
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bean.value = JSON.stringify(value);
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await R.store(bean);
};
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exports.getSettings = async function (type) {
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let list = await R.getAll("SELECT `key`, `value` FROM setting WHERE `type` = ? ", [
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type,
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]);
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let result = {};
for (let row of list) {
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try {
result[row.key] = JSON.parse(row.value);
} catch (e) {
result[row.key] = row.value;
}
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}
return result;
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};
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exports.setSettings = async function (type, data) {
let keyList = Object.keys(data);
let promiseList = [];
for (let key of keyList) {
let bean = await R.findOne("setting", " `key` = ? ", [
key
]);
if (bean == null) {
bean = R.dispense("setting");
bean.type = type;
bean.key = key;
}
if (bean.type === type) {
bean.value = JSON.stringify(data[key]);
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promiseList.push(R.store(bean));
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}
}
await Promise.all(promiseList);
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};
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// ssl-checker by @dyaa
// param: res - response object from axios
// return an object containing the certificate information
const getDaysBetween = (validFrom, validTo) =>
Math.round(Math.abs(+validFrom - +validTo) / 8.64e7);
const getDaysRemaining = (validFrom, validTo) => {
const daysRemaining = getDaysBetween(validFrom, validTo);
if (new Date(validTo).getTime() < new Date().getTime()) {
return -daysRemaining;
}
return daysRemaining;
};
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// Fix certificate Info for display
// param: info - the chain obtained from getPeerCertificate()
const parseCertificateInfo = function (info) {
let link = info;
let i = 0;
const existingList = {};
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while (link) {
log.debug("cert", `[${i}] ${link.fingerprint}`);
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if (!link.valid_from || !link.valid_to) {
break;
}
link.validTo = new Date(link.valid_to);
link.validFor = link.subjectaltname?.replace(/DNS:|IP Address:/g, "").split(", ");
link.daysRemaining = getDaysRemaining(new Date(), link.validTo);
existingList[link.fingerprint] = true;
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// Move up the chain until loop is encountered
if (link.issuerCertificate == null) {
break;
} else if (link.issuerCertificate.fingerprint in existingList) {
log.debug("cert", `[Last] ${link.issuerCertificate.fingerprint}`);
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link.issuerCertificate = null;
break;
} else {
link = link.issuerCertificate;
}
// Should be no use, but just in case.
if (i > 500) {
throw new Error("Dead loop occurred in parseCertificateInfo");
}
i++;
}
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return info;
};
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exports.checkCertificate = function (res) {
const info = res.request.res.socket.getPeerCertificate(true);
const valid = res.request.res.socket.authorized || false;
log.debug("cert", "Parsing Certificate Info");
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const parsedInfo = parseCertificateInfo(info);
return {
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valid: valid,
certInfo: parsedInfo
};
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};
// Check if the provided status code is within the accepted ranges
// Param: status - the status code to check
// Param: accepted_codes - an array of accepted status codes
// Return: true if the status code is within the accepted ranges, false otherwise
// Will throw an error if the provided status code is not a valid range string or code string
exports.checkStatusCode = function (status, acceptedCodes) {
if (acceptedCodes == null || acceptedCodes.length === 0) {
return false;
}
for (const codeRange of acceptedCodes) {
const codeRangeSplit = codeRange.split("-").map(string => parseInt(string));
if (codeRangeSplit.length === 1) {
if (status === codeRangeSplit[0]) {
return true;
}
} else if (codeRangeSplit.length === 2) {
if (status >= codeRangeSplit[0] && status <= codeRangeSplit[1]) {
return true;
}
} else {
throw new Error("Invalid status code range");
}
}
return false;
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};
exports.getTotalClientInRoom = (io, roomName) => {
const sockets = io.sockets;
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if (!sockets) {
return 0;
}
const adapter = sockets.adapter;
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if (!adapter) {
return 0;
}
const room = adapter.rooms.get(roomName);
if (room) {
return room.size;
} else {
return 0;
}
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};
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exports.allowDevAllOrigin = (res) => {
if (process.env.NODE_ENV === "development") {
exports.allowAllOrigin(res);
}
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};
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exports.allowAllOrigin = (res) => {
res.header("Access-Control-Allow-Origin", "*");
res.header("Access-Control-Allow-Headers", "Origin, X-Requested-With, Content-Type, Accept");
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};
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exports.checkLogin = (socket) => {
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if (!socket.userID) {
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throw new Error("You are not logged in.");
}
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};
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/**
* For logged-in users, double-check the password
* @param socket
* @param currentPassword
* @returns {Promise<Bean>}
*/
exports.doubleCheckPassword = async (socket, currentPassword) => {
if (typeof currentPassword !== "string") {
throw new Error("Wrong data type?");
}
let user = await R.findOne("user", " id = ? AND active = 1 ", [
socket.userID,
]);
if (!user || !passwordHash.verify(currentPassword, user.password)) {
throw new Error("Incorrect current password");
}
return user;
};
exports.startUnitTest = async () => {
console.log("Starting unit test...");
const npm = /^win/.test(process.platform) ? "npm.cmd" : "npm";
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const child = childProcess.spawn(npm, [ "run", "jest" ]);
child.stdout.on("data", (data) => {
console.log(data.toString());
});
child.stderr.on("data", (data) => {
console.log(data.toString());
});
child.on("close", function (code) {
console.log("Jest exit code: " + code);
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process.exit(code);
});
};
/**
* @param body : Buffer
* @returns {string}
*/
exports.convertToUTF8 = (body) => {
const guessEncoding = chardet.detect(body);
const str = iconv.decode(body, guessEncoding);
return str.toString();
};
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let logFile;
try {
logFile = fs.createWriteStream("./data/error.log", {
flags: "a"
});
} catch (_) { }
exports.errorLog = (error, outputToConsole = true) => {
try {
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if (logFile) {
const dateTime = R.isoDateTime();
logFile.write(`[${dateTime}] ` + nodeJsUtil.format(error) + "\n");
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if (outputToConsole) {
console.error(error);
}
}
} catch (_) { }
};