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_worker.js
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_worker.js
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// @ts-nocheck
// <!--GAMFC-->version base on commit 43fad05dcdae3b723c53c226f8181fc5bd47223e, time is 2023-06-22 15:20:02 UTC<!--GAMFC-END-->.
// @ts-ignore
// https://github.com/bia-pain-bache/BPB-Worker-Panel
import { connect } from 'cloudflare:sockets';
// How to generate your own UUID:
// https://www.uuidgenerator.net/
let userID = 'ecd9dc9a-0e13-488e-b7ce-2690a5bae855';
// https://www.nslookup.io/domains/cdn.xn--b6gac.eu.org/dns-records/
// https://www.nslookup.io/domains/cdn-all.xn--b6gac.eu.org/dns-records/
const proxyIPs= ['cdn.xn--b6gac.eu.org', 'cdn-all.xn--b6gac.eu.org', 'edgetunnel.anycast.eu.org'];
const defaultHttpPorts = ['80', '8080', '2052', '2082', '2086', '2095', '8880'];
const defaultHttpsPorts = ['443', '8443', '2053', '2083', '2087', '2096'];
let proxyIP = proxyIPs[Math.floor(Math.random() * proxyIPs.length)];
let dohURL = 'https://cloudflare-dns.com/dns-query';
let panelVersion = '2.4.5';
if (!isValidUUID(userID)) {
throw new Error('uuid is not valid');
}
export default {
/**
* @param {import("@cloudflare/workers-types").Request} request
* @param {{UUID: string, PROXYIP: string, DNS_RESOLVER_URL: string}} env
* @param {import("@cloudflare/workers-types").ExecutionContext} ctx
* @returns {Promise<Response>}
*/
async fetch(request, env, ctx) {
try {
userID = env.UUID || userID;
proxyIP = env.PROXYIP || proxyIP;
dohURL = env.DNS_RESOLVER_URL || dohURL;
const upgradeHeader = request.headers.get('Upgrade');
if (!upgradeHeader || upgradeHeader !== 'websocket') {
const url = new URL(request.url);
const searchParams = new URLSearchParams(url.search);
const host = request.headers.get('Host');
const client = searchParams.get('app');
switch (url.pathname) {
case '/cf':
return new Response(JSON.stringify(request.cf, null, 4), {
status: 200,
headers: {
'Content-Type': 'application/json;charset=utf-8',
},
});
case `/sub/${userID}`:
if (client === 'sfa') {
const BestPingSFA = await getSingboxConfig(env, host);
return new Response(`${JSON.stringify(BestPingSFA, null, 4)}`, { status: 200 });
}
const normalConfigs = await getNormalConfigs(env, host, client);
return new Response(normalConfigs, { status: 200 });
case `/fragsub/${userID}`:
let fragConfigs = await getFragmentConfigs(env, host, 'v2ray');
fragConfigs = fragConfigs.map(config => config.config);
return new Response(`${JSON.stringify(fragConfigs, null, 4)}`, { status: 200 });
case `/warpsub/${userID}`:
const wowConfig = await getWarpConfigs(env, client);
return new Response(`${JSON.stringify(wowConfig, null, 4)}`, { status: 200 });
case '/panel':
if (typeof env.bpb !== 'object') {
const errorPage = renderErrorPage('KV Dataset is not properly set!', null, true);
return new Response(errorPage, { status: 200, headers: {'Content-Type': 'text/html'}});
}
const isAuth = await Authenticate(request, env);
if (request.method === 'POST') {
if (!isAuth) return new Response('Unauthorized', { status: 401 });
const formData = await request.formData();
await updateDataset(env, formData);
return new Response('Success', { status: 200 });
}
if (!isAuth) return Response.redirect(`${url.origin}/login`, 302);
const proxySettings = await env.bpb.get("proxySettings", {type: 'json'});
const isUpdated = panelVersion === proxySettings?.panelVersion;
if (!proxySettings || !isUpdated) await updateDataset(env);
const fragConfs = await getFragmentConfigs(env, host, 'nekoray');
const homePage = await renderHomePage(env, host, fragConfs);
return new Response(homePage, {
status: 200,
headers: {
'Content-Type': 'text/html',
'Access-Control-Allow-Origin': url.origin,
'Access-Control-Allow-Methods': 'GET, POST',
'Access-Control-Allow-Headers': 'Content-Type, Authorization',
'X-Content-Type-Options': 'nosniff',
'X-Frame-Options': 'DENY',
'Referrer-Policy': 'strict-origin-when-cross-origin'
}
});
case '/login':
if (typeof env.bpb !== 'object') {
const errorPage = renderErrorPage('KV Dataset is not properly set!', null, true);
return new Response(errorPage, { status: 200, headers: {'Content-Type': 'text/html'}});
}
const loginAuth = await Authenticate(request, env);
if (loginAuth) return Response.redirect(`${url.origin}/panel`, 302);
let secretKey = await env.bpb.get('secretKey');
const pwd = await env.bpb.get('pwd');
if (!pwd) await env.bpb.put('pwd', 'admin');
if (!secretKey) {
secretKey = generateSecretKey();
await env.bpb.put('secretKey', secretKey);
}
if (request.method === 'POST') {
const password = await request.text();
const savedPass = await env.bpb.get('pwd');
if (password === savedPass) {
const jwtToken = generateJWTToken(secretKey, password);
const cookieHeader = `jwtToken=${jwtToken}; HttpOnly; Secure; Max-Age=${7 * 24 * 60 * 60}; Path=/; SameSite=Strict`;
return new Response('Success', {
status: 200,
headers: {
'Set-Cookie': cookieHeader,
'Content-Type': 'text/plain',
}
});
} else {
return new Response('Method Not Allowed', { status: 405 });
}
}
const loginPage = await renderLoginPage();
return new Response(loginPage, {
status: 200,
headers: {
'Content-Type': 'text/html',
'Access-Control-Allow-Origin': url.origin,
'Access-Control-Allow-Methods': 'GET, POST',
'Access-Control-Allow-Headers': 'Content-Type, Authorization',
'X-Content-Type-Options': 'nosniff',
'X-Frame-Options': 'DENY',
'Referrer-Policy': 'strict-origin-when-cross-origin'
}
});
case '/logout':
return new Response('Success', {
status: 200,
headers: {
'Set-Cookie': 'jwtToken=; Secure; SameSite=None; Expires=Thu, 01 Jan 1970 00:00:00 GMT',
'Content-Type': 'text/plain'
}
});
case '/panel/password':
let passAuth = await Authenticate(request, env);
if (!passAuth) return new Response('Unauthorized!', { status: 401 });
const newPwd = await request.text();
const oldPwd = await env.bpb.get('pwd');
if (newPwd === oldPwd) return new Response('Please enter a new Password!', { status: 400 });
await env.bpb.put('pwd', newPwd);
return new Response('Success', {
status: 200,
headers: {
'Set-Cookie': 'jwtToken=; Path=/; Secure; SameSite=None; Expires=Thu, 01 Jan 1970 00:00:00 GMT',
'Content-Type': 'text/plain',
}
});
default:
// return new Response('Not found', { status: 404 });
url.hostname = 'www.speedtest.net';
url.protocol = 'https:';
request = new Request(url, request);
return await fetch(request);
}
} else {
return await vlessOverWSHandler(request);
}
} catch (err) {
/** @type {Error} */ let e = err;
const errorPage = renderErrorPage('Something went wrong!', e.message.toString(), false);
return new Response(errorPage, { status: 200, headers: {'Content-Type': 'text/html'}});
}
},
};
/**
* Handles VLESS over WebSocket requests by creating a WebSocket pair, accepting the WebSocket connection, and processing the VLESS header.
* @param {import("@cloudflare/workers-types").Request} request The incoming request object.
* @returns {Promise<Response>} A Promise that resolves to a WebSocket response object.
*/
async function vlessOverWSHandler(request) {
const webSocketPair = new WebSocketPair();
const [client, webSocket] = Object.values(webSocketPair);
webSocket.accept();
let address = '';
let portWithRandomLog = '';
let currentDate = new Date();
const log = (/** @type {string} */ info, /** @type {string | undefined} */ event) => {
console.log(`[${currentDate} ${address}:${portWithRandomLog}] ${info}`, event || '');
};
const earlyDataHeader = request.headers.get('sec-websocket-protocol') || '';
const readableWebSocketStream = makeReadableWebSocketStream(webSocket, earlyDataHeader, log);
/** @type {{ value: import("@cloudflare/workers-types").Socket | null}}*/
let remoteSocketWapper = {
value: null,
};
let udpStreamWrite = null;
let isDns = false;
// ws --> remote
readableWebSocketStream.pipeTo(new WritableStream({
async write(chunk, controller) {
if (isDns && udpStreamWrite) {
return udpStreamWrite(chunk);
}
if (remoteSocketWapper.value) {
const writer = remoteSocketWapper.value.writable.getWriter()
await writer.write(chunk);
writer.releaseLock();
return;
}
const {
hasError,
message,
portRemote = 443,
addressRemote = '',
rawDataIndex,
vlessVersion = new Uint8Array([0, 0]),
isUDP,
} = processVlessHeader(chunk, userID);
address = addressRemote;
portWithRandomLog = `${portRemote} ${isUDP ? 'udp' : 'tcp'} `;
if (hasError) {
// controller.error(message);
throw new Error(message); // cf seems has bug, controller.error will not end stream
// webSocket.close(1000, message);
return;
}
// If UDP and not DNS port, close it
if (isUDP && portRemote !== 53) {
throw new Error('UDP proxy only enabled for DNS which is port 53');
// cf seems has bug, controller.error will not end stream
}
if (isUDP && portRemote === 53) {
isDns = true;
}
// ["version", "附加信息长度 N"]
const vlessResponseHeader = new Uint8Array([vlessVersion[0], 0]);
const rawClientData = chunk.slice(rawDataIndex);
// TODO: support udp here when cf runtime has udp support
if (isDns) {
const { write } = await handleUDPOutBound(webSocket, vlessResponseHeader, log);
udpStreamWrite = write;
udpStreamWrite(rawClientData);
return;
}
handleTCPOutBound(request, remoteSocketWapper, addressRemote, portRemote, rawClientData, webSocket, vlessResponseHeader, log);
},
close() {
log(`readableWebSocketStream is close`);
},
abort(reason) {
log(`readableWebSocketStream is abort`, JSON.stringify(reason));
},
})).catch((err) => {
log('readableWebSocketStream pipeTo error', err);
});
return new Response(null, {
status: 101,
webSocket: client,
});
}
/**
* Handles outbound TCP connections.
*
* @param {any} remoteSocket
* @param {string} addressRemote The remote address to connect to.
* @param {number} portRemote The remote port to connect to.
* @param {Uint8Array} rawClientData The raw client data to write.
* @param {import("@cloudflare/workers-types").WebSocket} webSocket The WebSocket to pass the remote socket to.
* @param {Uint8Array} vlessResponseHeader The VLESS response header.
* @param {function} log The logging function.
* @returns {Promise<void>} The remote socket.
*/
async function handleTCPOutBound(request, remoteSocket, addressRemote, portRemote, rawClientData, webSocket, vlessResponseHeader, log,) {
/**
* Connects to a given address and port and writes data to the socket.
* @param {string} address The address to connect to.
* @param {number} port The port to connect to.
* @returns {Promise<import("@cloudflare/workers-types").Socket>} A Promise that resolves to the connected socket.
*/
async function connectAndWrite(address, port) {
/** @type {import("@cloudflare/workers-types").Socket} */
const tcpSocket = connect({
hostname: address,
port: port,
});
remoteSocket.value = tcpSocket;
log(`connected to ${address}:${port}`);
const writer = tcpSocket.writable.getWriter();
await writer.write(rawClientData); // first write, nomal is tls client hello
writer.releaseLock();
return tcpSocket;
}
/**
* Retries connecting to the remote address and port if the Cloudflare socket has no incoming data.
* @returns {Promise<void>} A Promise that resolves when the retry is complete.
*/
async function retry() {
const { pathname } = new URL(request.url);
let panelProxyIP = pathname.split('/')[2];
panelProxyIP = panelProxyIP ? atob(panelProxyIP) : undefined;
const tcpSocket = await connectAndWrite(panelProxyIP || proxyIP || addressRemote, portRemote);
tcpSocket.closed.catch(error => {
console.log('retry tcpSocket closed error', error);
}).finally(() => {
safeCloseWebSocket(webSocket);
})
remoteSocketToWS(tcpSocket, webSocket, vlessResponseHeader, null, log);
}
const tcpSocket = await connectAndWrite(addressRemote, portRemote);
// when remoteSocket is ready, pass to websocket
// remote--> ws
remoteSocketToWS(tcpSocket, webSocket, vlessResponseHeader, retry, log);
}
/**
* Creates a readable stream from a WebSocket server, allowing for data to be read from the WebSocket.
* @param {import("@cloudflare/workers-types").WebSocket} webSocketServer The WebSocket server to create the readable stream from.
* @param {string} earlyDataHeader The header containing early data for WebSocket 0-RTT.
* @param {(info: string)=> void} log The logging function.
* @returns {ReadableStream} A readable stream that can be used to read data from the WebSocket.
*/
function makeReadableWebSocketStream(webSocketServer, earlyDataHeader, log) {
let readableStreamCancel = false;
const stream = new ReadableStream({
start(controller) {
webSocketServer.addEventListener('message', (event) => {
const message = event.data;
controller.enqueue(message);
});
webSocketServer.addEventListener('close', () => {
safeCloseWebSocket(webSocketServer);
controller.close();
});
webSocketServer.addEventListener('error', (err) => {
log('webSocketServer has error');
controller.error(err);
});
const { earlyData, error } = base64ToArrayBuffer(earlyDataHeader);
if (error) {
controller.error(error);
} else if (earlyData) {
controller.enqueue(earlyData);
}
},
pull(controller) {
// if ws can stop read if stream is full, we can implement backpressure
// https://streams.spec.whatwg.org/#example-rs-push-backpressure
},
cancel(reason) {
log(`ReadableStream was canceled, due to ${reason}`)
readableStreamCancel = true;
safeCloseWebSocket(webSocketServer);
}
});
return stream;
}
// https://xtls.github.io/development/protocols/vless.html
// https://github.com/zizifn/excalidraw-backup/blob/main/v2ray-protocol.excalidraw
/**
* Processes the VLESS header buffer and returns an object with the relevant information.
* @param {ArrayBuffer} vlessBuffer The VLESS header buffer to process.
* @param {string} userID The user ID to validate against the UUID in the VLESS header.
* @returns {{
* hasError: boolean,
* message?: string,
* addressRemote?: string,
* addressType?: number,
* portRemote?: number,
* rawDataIndex?: number,
* vlessVersion?: Uint8Array,
* isUDP?: boolean
* }} An object with the relevant information extracted from the VLESS header buffer.
*/
function processVlessHeader(vlessBuffer, userID) {
if (vlessBuffer.byteLength < 24) {
return {
hasError: true,
message: 'invalid data',
};
}
const version = new Uint8Array(vlessBuffer.slice(0, 1));
let isValidUser = false;
let isUDP = false;
const slicedBuffer = new Uint8Array(vlessBuffer.slice(1, 17));
const slicedBufferString = stringify(slicedBuffer);
// check if userID is valid uuid or uuids split by , and contains userID in it otherwise return error message to console
const uuids = userID.includes(',') ? userID.split(",") : [userID];
// uuid_validator(hostName, slicedBufferString);
// isValidUser = uuids.some(userUuid => slicedBufferString === userUuid.trim());
isValidUser = uuids.some(userUuid => slicedBufferString === userUuid.trim()) || uuids.length === 1 && slicedBufferString === uuids[0].trim();
console.log(`userID: ${slicedBufferString}`);
if (!isValidUser) {
return {
hasError: true,
message: 'invalid user',
};
}
const optLength = new Uint8Array(vlessBuffer.slice(17, 18))[0];
//skip opt for now
const command = new Uint8Array(
vlessBuffer.slice(18 + optLength, 18 + optLength + 1)
)[0];
// 0x01 TCP
// 0x02 UDP
// 0x03 MUX
if (command === 1) {
isUDP = false;
} else if (command === 2) {
isUDP = true;
} else {
return {
hasError: true,
message: `command ${command} is not support, command 01-tcp,02-udp,03-mux`,
};
}
const portIndex = 18 + optLength + 1;
const portBuffer = vlessBuffer.slice(portIndex, portIndex + 2);
// port is big-Endian in raw data etc 80 == 0x005d
const portRemote = new DataView(portBuffer).getUint16(0);
let addressIndex = portIndex + 2;
const addressBuffer = new Uint8Array(
vlessBuffer.slice(addressIndex, addressIndex + 1)
);
// 1--> ipv4 addressLength =4
// 2--> domain name addressLength=addressBuffer[1]
// 3--> ipv6 addressLength =16
const addressType = addressBuffer[0];
let addressLength = 0;
let addressValueIndex = addressIndex + 1;
let addressValue = '';
switch (addressType) {
case 1:
addressLength = 4;
addressValue = new Uint8Array(
vlessBuffer.slice(addressValueIndex, addressValueIndex + addressLength)
).join('.');
break;
case 2:
addressLength = new Uint8Array(
vlessBuffer.slice(addressValueIndex, addressValueIndex + 1)
)[0];
addressValueIndex += 1;
addressValue = new TextDecoder().decode(
vlessBuffer.slice(addressValueIndex, addressValueIndex + addressLength)
);
break;
case 3:
addressLength = 16;
const dataView = new DataView(
vlessBuffer.slice(addressValueIndex, addressValueIndex + addressLength)
);
// 2001:0db8:85a3:0000:0000:8a2e:0370:7334
const ipv6 = [];
for (let i = 0; i < 8; i++) {
ipv6.push(dataView.getUint16(i * 2).toString(16));
}
addressValue = ipv6.join(':');
// seems no need add [] for ipv6
break;
default:
return {
hasError: true,
message: `invild addressType is ${addressType}`,
};
}
if (!addressValue) {
return {
hasError: true,
message: `addressValue is empty, addressType is ${addressType}`,
};
}
return {
hasError: false,
addressRemote: addressValue,
addressType,
portRemote,
rawDataIndex: addressValueIndex + addressLength,
vlessVersion: version,
isUDP,
};
}
/**
* Converts a remote socket to a WebSocket connection.
* @param {import("@cloudflare/workers-types").Socket} remoteSocket The remote socket to convert.
* @param {import("@cloudflare/workers-types").WebSocket} webSocket The WebSocket to connect to.
* @param {ArrayBuffer | null} vlessResponseHeader The VLESS response header.
* @param {(() => Promise<void>) | null} retry The function to retry the connection if it fails.
* @param {(info: string) => void} log The logging function.
* @returns {Promise<void>} A Promise that resolves when the conversion is complete.
*/
async function remoteSocketToWS(remoteSocket, webSocket, vlessResponseHeader, retry, log) {
// remote--> ws
let remoteChunkCount = 0;
let chunks = [];
/** @type {ArrayBuffer | null} */
let vlessHeader = vlessResponseHeader;
let hasIncomingData = false; // check if remoteSocket has incoming data
await remoteSocket.readable
.pipeTo(
new WritableStream({
start() {
},
/**
*
* @param {Uint8Array} chunk
* @param {*} controller
*/
async write(chunk, controller) {
hasIncomingData = true;
remoteChunkCount++;
if (webSocket.readyState !== WS_READY_STATE_OPEN) {
controller.error(
'webSocket.readyState is not open, maybe close'
);
}
if (vlessHeader) {
webSocket.send(await new Blob([vlessHeader, chunk]).arrayBuffer());
vlessHeader = null;
} else {
// console.log(`remoteSocketToWS send chunk ${chunk.byteLength}`);
// seems no need rate limit this, CF seems fix this??..
// if (remoteChunkCount > 20000) {
// // cf one package is 4096 byte(4kb), 4096 * 20000 = 80M
// await delay(1);
// }
webSocket.send(chunk);
}
},
close() {
log(`remoteConnection!.readable is close with hasIncomingData is ${hasIncomingData}`);
// safeCloseWebSocket(webSocket); // no need server close websocket frist for some case will casue HTTP ERR_CONTENT_LENGTH_MISMATCH issue, client will send close event anyway.
},
abort(reason) {
console.error(`remoteConnection!.readable abort`, reason);
},
})
)
.catch((error) => {
console.error(
`remoteSocketToWS has exception `,
error.stack || error
);
safeCloseWebSocket(webSocket);
});
// seems is cf connect socket have error,
// 1. Socket.closed will have error
// 2. Socket.readable will be close without any data coming
if (hasIncomingData === false && retry) {
log(`retry`)
retry();
}
}
/**
* Decodes a base64 string into an ArrayBuffer.
* @param {string} base64Str The base64 string to decode.
* @returns {{earlyData: ArrayBuffer|null, error: Error|null}} An object containing the decoded ArrayBuffer or null if there was an error, and any error that occurred during decoding or null if there was no error.
*/
function base64ToArrayBuffer(base64Str) {
if (!base64Str) {
return { earlyData: null, error: null };
}
try {
// go use modified Base64 for URL rfc4648 which js atob not support
base64Str = base64Str.replace(/-/g, '+').replace(/_/g, '/');
const decode = atob(base64Str);
const arryBuffer = Uint8Array.from(decode, (c) => c.charCodeAt(0));
return { earlyData: arryBuffer.buffer, error: null };
} catch (error) {
return { earlyData: null, error };
}
}
/**
* Checks if a given string is a valid UUID.
* Note: This is not a real UUID validation.
* @param {string} uuid The string to validate as a UUID.
* @returns {boolean} True if the string is a valid UUID, false otherwise.
*/
function isValidUUID(uuid) {
const uuidRegex = /^[0-9a-f]{8}-[0-9a-f]{4}-[4][0-9a-f]{3}-[89ab][0-9a-f]{3}-[0-9a-f]{12}$/i;
return uuidRegex.test(uuid);
}
const WS_READY_STATE_OPEN = 1;
const WS_READY_STATE_CLOSING = 2;
/**
* Closes a WebSocket connection safely without throwing exceptions.
* @param {import("@cloudflare/workers-types").WebSocket} socket The WebSocket connection to close.
*/
function safeCloseWebSocket(socket) {
try {
if (socket.readyState === WS_READY_STATE_OPEN || socket.readyState === WS_READY_STATE_CLOSING) {
socket.close();
}
} catch (error) {
console.error('safeCloseWebSocket error', error);
}
}
const byteToHex = [];
for (let i = 0; i < 256; ++i) {
byteToHex.push((i + 256).toString(16).slice(1));
}
function unsafeStringify(arr, offset = 0) {
return (byteToHex[arr[offset + 0]] + byteToHex[arr[offset + 1]] + byteToHex[arr[offset + 2]] + byteToHex[arr[offset + 3]] + "-" + byteToHex[arr[offset + 4]] + byteToHex[arr[offset + 5]] + "-" + byteToHex[arr[offset + 6]] + byteToHex[arr[offset + 7]] + "-" + byteToHex[arr[offset + 8]] + byteToHex[arr[offset + 9]] + "-" + byteToHex[arr[offset + 10]] + byteToHex[arr[offset + 11]] + byteToHex[arr[offset + 12]] + byteToHex[arr[offset + 13]] + byteToHex[arr[offset + 14]] + byteToHex[arr[offset + 15]]).toLowerCase();
}
function stringify(arr, offset = 0) {
const uuid = unsafeStringify(arr, offset);
if (!isValidUUID(uuid)) {
throw TypeError("Stringified UUID is invalid");
}
return uuid;
}
/**
* Handles outbound UDP traffic by transforming the data into DNS queries and sending them over a WebSocket connection.
* @param {import("@cloudflare/workers-types").WebSocket} webSocket The WebSocket connection to send the DNS queries over.
* @param {ArrayBuffer} vlessResponseHeader The VLESS response header.
* @param {(string) => void} log The logging function.
* @returns {{write: (chunk: Uint8Array) => void}} An object with a write method that accepts a Uint8Array chunk to write to the transform stream.
*/
async function handleUDPOutBound(webSocket, vlessResponseHeader, log) {
let isVlessHeaderSent = false;
const transformStream = new TransformStream({
start(controller) {
},
transform(chunk, controller) {
// udp message 2 byte is the the length of udp data
// TODO: this should have bug, beacsue maybe udp chunk can be in two websocket message
for (let index = 0; index < chunk.byteLength;) {
const lengthBuffer = chunk.slice(index, index + 2);
const udpPakcetLength = new DataView(lengthBuffer).getUint16(0);
const udpData = new Uint8Array(
chunk.slice(index + 2, index + 2 + udpPakcetLength)
);
index = index + 2 + udpPakcetLength;
controller.enqueue(udpData);
}
},
flush(controller) {
}
});
// only handle dns udp for now
transformStream.readable.pipeTo(new WritableStream({
async write(chunk) {
const resp = await fetch(dohURL, // dns server url
{
method: 'POST',
headers: {
'content-type': 'application/dns-message',
},
body: chunk,
})
const dnsQueryResult = await resp.arrayBuffer();
const udpSize = dnsQueryResult.byteLength;
// console.log([...new Uint8Array(dnsQueryResult)].map((x) => x.toString(16)));
const udpSizeBuffer = new Uint8Array([(udpSize >> 8) & 0xff, udpSize & 0xff]);
if (webSocket.readyState === WS_READY_STATE_OPEN) {
log(`doh success and dns message length is ${udpSize}`);
if (isVlessHeaderSent) {
webSocket.send(await new Blob([udpSizeBuffer, dnsQueryResult]).arrayBuffer());
} else {
webSocket.send(await new Blob([vlessResponseHeader, udpSizeBuffer, dnsQueryResult]).arrayBuffer());
isVlessHeaderSent = true;
}
}
}
})).catch((error) => {
log('dns udp has error' + error)
});
const writer = transformStream.writable.getWriter();
return {
/**
*
* @param {Uint8Array} chunk
*/
write(chunk) {
writer.write(chunk);
}
};
}
/**
*
* @param {string} userID
* @param {string | null} hostName
* @returns {string}
*/
const getNormalConfigs = async (env, hostName, client) => {
let proxySettings = {};
let vlessWsTls = '';
try {
proxySettings = await env.bpb.get("proxySettings", {type: 'json'});
} catch (error) {
console.log(error);
throw new Error(`An error occurred while getting normal configs - ${error}`);
}
const { cleanIPs, proxyIP, ports } = proxySettings;
const resolved = await resolveDNS(hostName);
const Addresses = [
hostName,
'www.speedtest.net',
...resolved.ipv4,
...resolved.ipv6.map((ip) => `[${ip}]`),
...(cleanIPs ? cleanIPs.split(',') : [])
];
ports.forEach(port => {
Addresses.forEach((addr, index) => {
vlessWsTls += 'vless' + `://${userID}@${addr}:${port}?encryption=none&type=ws&host=${
randomUpperCase(hostName)}${
defaultHttpsPorts.includes(port)
? `&security=tls&sni=${
randomUpperCase(hostName)
}&fp=randomized&alpn=${
client === 'singbox' ? 'http/1.1' : 'h2,http/1.1'
}`
: ''}&path=${`/${getRandomPath(16)}${proxyIP ? `/${encodeURIComponent(btoa(proxyIP))}` : ''}`}${
client === 'singbox'
? '&eh=Sec-WebSocket-Protocol&ed=2560'
: encodeURIComponent('?ed=2560')
}#${encodeURIComponent(generateRemark(index, port))}\n`;
});
});
return btoa(vlessWsTls);
}
const generateRemark = (index, port) => {
let remark = '';
switch (index) {
case 0:
case 1:
remark = `💦 BPB - Domain_${index + 1} : ${port}`;
break;
case 2:
case 3:
remark = `💦 BPB - IPv4_${index - 1} : ${port}`;
break;
case 4:
case 5:
remark = `💦 BPB - IPv6_${index - 3} : ${port}`;
break;
default:
remark = `💦 BPB - Clean IP_${index - 5} : ${port}`;
break;
}
return remark;
}
const extractVlessParams = async (vlessConfig) => {
const url = new URL(vlessConfig.replace('vless', 'http'));
const params = new URLSearchParams(url.search);
let configParams = {
uuid : url.username,
hostName : url.hostname,
port : url.port
};
params.forEach( (value, key) => {
configParams[key] = value;
})
return JSON.stringify(configParams);
}
const buildProxyOutbound = async (proxyParams) => {
const { hostName, port, uuid, flow, security, type, sni, fp, alpn, pbk, sid, spx, headerType, host, path, authority, serviceName, mode } = proxyParams;
let proxyOutbound = structuredClone(xrayOutboundTemp);
proxyOutbound.settings.vnext[0].address = hostName;
proxyOutbound.settings.vnext[0].port = +port;
proxyOutbound.settings.vnext[0].users[0].id = uuid;
proxyOutbound.settings.vnext[0].users[0].flow = flow;
proxyOutbound.streamSettings.security = security;
proxyOutbound.streamSettings.network = type;
proxyOutbound.tag = "out";
proxyOutbound.streamSettings.sockopt.dialerProxy = "proxy";
switch (security) {
case 'tls':
proxyOutbound.streamSettings.tlsSettings.serverName = sni;
proxyOutbound.streamSettings.tlsSettings.fingerprint = fp;
proxyOutbound.streamSettings.tlsSettings.alpn = alpn ? alpn?.split(',') : [];
delete proxyOutbound.streamSettings.realitySettings;
break;
case 'reality':
proxyOutbound.streamSettings.realitySettings.publicKey = pbk;
proxyOutbound.streamSettings.realitySettings.shortId = sid;
proxyOutbound.streamSettings.realitySettings.serverName = sni;
proxyOutbound.streamSettings.realitySettings.fingerprint = fp;
proxyOutbound.streamSettings.realitySettings.spiderX = spx;
delete proxyOutbound.mux;
delete proxyOutbound.streamSettings.tlsSettings;
break;
default:
delete proxyOutbound.streamSettings.tlsSettings;
delete proxyOutbound.streamSettings.realitySettings;
break;
}
switch (type) {
case 'tcp':
delete proxyOutbound.streamSettings.grpcSettings;
delete proxyOutbound.streamSettings.wsSettings;
if (security === 'reality' && (!headerType || headerType === 'none')) {
delete proxyOutbound.streamSettings.tcpSettings;
break;
}
if (headerType === 'http') {
proxyOutbound.streamSettings.tcpSettings.header.request.headers.Host = host?.split(',');
proxyOutbound.streamSettings.tcpSettings.header.request.path = path?.split(',');
}
if (!headerType) {
proxyOutbound.streamSettings.tcpSettings.header.type = 'none';
delete proxyOutbound.streamSettings.tcpSettings.header.request;
delete proxyOutbound.streamSettings.tcpSettings.header.response;
}
break;
case 'ws':
proxyOutbound.streamSettings.wsSettings.headers.Host = host;
proxyOutbound.streamSettings.wsSettings.path = path;
delete proxyOutbound.streamSettings.grpcSettings;
delete proxyOutbound.streamSettings.tcpSettings;
break;
case 'grpc':
proxyOutbound.streamSettings.grpcSettings.authority = authority;
proxyOutbound.streamSettings.grpcSettings.serviceName = serviceName;
proxyOutbound.streamSettings.grpcSettings.multiMode = mode === 'multi';
delete proxyOutbound.mux;
delete proxyOutbound.streamSettings.tcpSettings;
delete proxyOutbound.streamSettings.wsSettings;
break;
default:
break;
}
return proxyOutbound;
}
const buildWorkerLessConfig = async (env, client) => {
let proxySettings = {};
try {
proxySettings = await env.bpb.get("proxySettings", {type: 'json'});
} catch (error) {
console.log(error);
throw new Error(`An error occurred while generating WorkerLess config - ${error}`);
}
const { remoteDNS, localDNS, lengthMin, lengthMax, intervalMin, intervalMax, blockAds, bypassIran, blockPorn, bypassLAN } = proxySettings;
let fakeOutbound = structuredClone(xrayOutboundTemp);
delete fakeOutbound.mux;
fakeOutbound.settings.vnext[0].address = 'google.com';
fakeOutbound.settings.vnext[0].users[0].id = userID;
delete fakeOutbound.streamSettings.sockopt;
fakeOutbound.streamSettings.tlsSettings.serverName = 'google.com';
fakeOutbound.streamSettings.wsSettings.headers.Host = 'google.com';
fakeOutbound.streamSettings.wsSettings.path = '/';
delete fakeOutbound.streamSettings.grpcSettings;
delete fakeOutbound.streamSettings.tcpSettings;
delete fakeOutbound.streamSettings.realitySettings;
fakeOutbound.tag = 'fake-outbound';
let fragConfig = structuredClone(xrayConfigTemp);
fragConfig.remarks = '💦 BPB Frag - WorkerLess ⭐'
fragConfig.dns = await buildDNSObject(remoteDNS, localDNS, blockAds, bypassIran, blockPorn, true);
fragConfig.outbounds[0].settings.domainStrategy = 'UseIP';
fragConfig.outbounds[0].settings.fragment.length = `${lengthMin}-${lengthMax}`;
fragConfig.outbounds[0].settings.fragment.interval = `${intervalMin}-${intervalMax}`;
fragConfig.outbounds = [
{...fragConfig.outbounds[0]},
{...fakeOutbound},
{...fragConfig.outbounds[1]},
{...fragConfig.outbounds[2]},
{...fragConfig.outbounds[3]}
];
fragConfig.routing.rules = buildRoutingRules(localDNS, blockAds, bypassIran, blockPorn, bypassLAN, false, false, true);
delete fragConfig.routing.balancers;
delete fragConfig.observatory;
if (client === 'nekoray') {
fragConfig.inbounds[0].port = 2080;
fragConfig.inbounds[1].port = 2081;
}
return fragConfig;
}
const getFragmentConfigs = async (env, hostName, client) => {
let Configs = [];
let outbounds = [];
let proxySettings = {};
let proxyOutbound;
let proxyIndex = 1;