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_worker.js
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_worker.js
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// _worker.src.js
import { connect } from "cloudflare:sockets";
let password = '';
let proxyIP = '';
// The user name and password do not contain special characters
// Setting the address will ignore proxyIP
// Example: user:pass@host:port or host:port
let socks5Address = '';
let addresses = [
//当sub为空时启用本地优选域名/优选IP,若不带端口号 TLS默认端口为443,#号后为备注别名
];
let sub = '';
let subconverter = 'SUBAPI.fxxk.dedyn.io';// clash订阅转换后端,目前使用CM的订阅转换功能。自带虚假节点信息防泄露
let subconfig = "https://raw.githubusercontent.com/ACL4SSR/ACL4SSR/master/Clash/config/ACL4SSR_Online_Mini_MultiMode.ini"; //订阅配置文件
let subProtocol = 'https';
let RproxyIP = 'false';
let addressesapi = [];
let addressescsv = [];
let DLS = 8;
let FileName = 'epeius';
let BotToken ='';
let ChatID ='';
let proxyhosts = [];//本地代理域名池
let proxyhostsURL = '';
let go2Socks5s = [
'*ttvnw.net',
'*tapecontent.net',
'*cloudatacdn.com',
'*.loadshare.org',
];
let fakeUserID ;
let fakeHostName ;
let proxyIPs ;
let socks5s;
let sha224Password ;
const expire = 4102329600;//2099-12-31
const regex = /^(\d{1,3}\.\d{1,3}\.\d{1,3}\.\d{1,3}|\[.*\]):?(\d+)?#?(.*)?$/;
let parsedSocks5Address = {};
let enableSocks = false;
let httpsPorts = ["2053","2083","2087","2096","8443"];
/*Obfuscate-cmliu*/
/*
if (!isValidSHA224(sha224Password)) {
throw new Error('sha224Password is not valid');
}
*/
export default {
async fetch(request, env, ctx) {
try {
const UA = request.headers.get('User-Agent') || 'null';
const userAgent = UA.toLowerCase();
password = env.PASSWORD || password;
if (!password) {
return new Response('请设置你的PASSWORD变量,或尝试重试部署,检查变量是否生效?', {
status: 404,
headers: {
"Content-Type": "text/plain;charset=utf-8",
}
});
}
sha224Password = env.SHA224 || env.SHA224PASS || sha224(password);
//console.log(sha224Password);
const currentDate = new Date();
currentDate.setHours(0, 0, 0, 0); // 设置时间为当天
const timestamp = Math.ceil(currentDate.getTime() / 1000);
const fakeUserIDMD5 = await MD5MD5(`${password}${timestamp}`);
fakeUserID = fakeUserIDMD5.slice(0, 8) + "-" + fakeUserIDMD5.slice(8, 12) + "-" + fakeUserIDMD5.slice(12, 16) + "-" + fakeUserIDMD5.slice(16, 20) + "-" + fakeUserIDMD5.slice(20);
fakeHostName = fakeUserIDMD5.slice(6, 9) + "." + fakeUserIDMD5.slice(13, 19);
//console.log(fakeUserID); // 打印fakeID
proxyIP = env.PROXYIP || proxyIP;
proxyIPs = await ADD(proxyIP);
proxyIP = proxyIPs[Math.floor(Math.random() * proxyIPs.length)];
socks5Address = env.SOCKS5 || socks5Address;
socks5s = await ADD(socks5Address);
socks5Address = socks5s[Math.floor(Math.random() * socks5s.length)];
socks5Address = socks5Address.split('//')[1] || socks5Address;
if (env.CFPORTS) httpsPorts = await ADD(env.CFPORTS);
sub = env.SUB || sub;
subconverter = env.SUBAPI || subconverter;
if( subconverter.includes("http://") ){
subconverter = subconverter.split("//")[1];
subProtocol = 'http';
} else {
subconverter = subconverter.split("//")[1] || subconverter;
}
subconfig = env.SUBCONFIG || subconfig;
if (socks5Address) {
try {
parsedSocks5Address = socks5AddressParser(socks5Address);
RproxyIP = env.RPROXYIP || 'false';
enableSocks = true;
} catch (err) {
/** @type {Error} */
let e = err;
console.log(e.toString());
RproxyIP = env.RPROXYIP || !proxyIP ? 'true' : 'false';
enableSocks = false;
}
} else {
RproxyIP = env.RPROXYIP || !proxyIP ? 'true' : 'false';
}
if (env.ADD) addresses = await ADD(env.ADD);
if (env.ADDAPI) addressesapi = await ADD(env.ADDAPI);
if (env.ADDCSV) addressescsv = await ADD(env.ADDCSV);
DLS = env.DLS || DLS;
BotToken = env.TGTOKEN || BotToken;
ChatID = env.TGID || ChatID;
if(env.GO2SOCKS5) go2Socks5s = await ADD(env.GO2SOCKS5);
const upgradeHeader = request.headers.get("Upgrade");
const url = new URL(request.url);
if (url.searchParams.has('sub') && url.searchParams.get('sub') !== '') sub = url.searchParams.get('sub');
FileName = env.SUBNAME || FileName;
if (!upgradeHeader || upgradeHeader !== "websocket") {
//const url = new URL(request.url);
switch (url.pathname) {
case '/':
if (env.URL302) return Response.redirect(env.URL302, 302);
else if (env.URL) return await proxyURL(env.URL, url);
else return new Response(JSON.stringify(request.cf, null, 4), {
status: 200,
headers: {
'content-type': 'application/json',
},
});
case `/${fakeUserID}`:
const fakeConfig = await getTrojanConfig(password, request.headers.get('Host'), sub, 'CF-Workers-SUB', RproxyIP, url);
return new Response(`${fakeConfig}`, { status: 200 });
case `/${password}`:
await sendMessage(`#获取订阅 ${FileName}`, request.headers.get('CF-Connecting-IP'), `UA: ${UA}</tg-spoiler>\n域名: ${url.hostname}\n<tg-spoiler>入口: ${url.pathname + url.search}</tg-spoiler>`);
const trojanConfig = await getTrojanConfig(password, request.headers.get('Host'), sub, UA, RproxyIP, url);
const now = Date.now();
//const timestamp = Math.floor(now / 1000);
const today = new Date(now);
today.setHours(0, 0, 0, 0);
const UD = Math.floor(((now - today.getTime())/86400000) * 24 * 1099511627776 / 2);
let pagesSum = UD;
let workersSum = UD;
let total = 24 * 1099511627776 ;
if (userAgent && (userAgent.includes('mozilla') || userAgent.includes('subconverter'))){
return new Response(`${trojanConfig}`, {
status: 200,
headers: {
"Content-Type": "text/plain;charset=utf-8",
"Profile-Update-Interval": "6",
"Subscription-Userinfo": `upload=${pagesSum}; download=${workersSum}; total=${total}; expire=${expire}`,
}
});
} else {
return new Response(`${trojanConfig}`, {
status: 200,
headers: {
"Content-Disposition": `attachment; filename=${FileName}; filename*=utf-8''${encodeURIComponent(FileName)}`,
"Content-Type": "text/plain;charset=utf-8",
"Profile-Update-Interval": "6",
"Subscription-Userinfo": `upload=${pagesSum}; download=${workersSum}; total=${total}; expire=${expire}`,
}
});
}
default:
if (env.URL302) return Response.redirect(env.URL302, 302);
else if (env.URL) return await proxyURL(env.URL, url);
else return new Response('不用怀疑!你PASSWORD就是错的!!!', { status: 404 });
}
} else {
proxyIP = url.searchParams.get('proxyip') || proxyIP;
if (new RegExp('/proxyip=', 'i').test(url.pathname)) proxyIP = url.pathname.toLowerCase().split('/proxyip=')[1];
else if (new RegExp('/proxyip.', 'i').test(url.pathname)) proxyIP = `proxyip.${url.pathname.toLowerCase().split("/proxyip.")[1]}`;
socks5Address = url.searchParams.get('socks5') || socks5Address;
if (new RegExp('/socks5=', 'i').test(url.pathname)) socks5Address = url.pathname.split('5=')[1];
else if (new RegExp('/socks://', 'i').test(url.pathname) || new RegExp('/socks5://', 'i').test(url.pathname)) {
socks5Address = url.pathname.split('://')[1].split('#')[0];
if (socks5Address.includes('@')){
let userPassword = socks5Address.split('@')[0];
const base64Regex = /^(?:[A-Z0-9+/]{4})*(?:[A-Z0-9+/]{2}==|[A-Z0-9+/]{3}=)?$/i;
if (base64Regex.test(userPassword) && !userPassword.includes(':')) userPassword = atob(userPassword);
socks5Address = `${userPassword}@${socks5Address.split('@')[1]}`;
}
}
if (socks5Address) {
try {
parsedSocks5Address = socks5AddressParser(socks5Address);
enableSocks = true;
} catch (err) {
/** @type {Error} */
let e = err;
console.log(e.toString());
enableSocks = false;
}
} else {
enableSocks = false;
}
return await trojanOverWSHandler(request);
}
} catch (err) {
let e = err;
return new Response(e.toString());
}
}
};
async function trojanOverWSHandler(request) {
const webSocketPair = new WebSocketPair();
const [client, webSocket] = Object.values(webSocketPair);
webSocket.accept();
let address = "";
let portWithRandomLog = "";
const log = (info, event) => {
console.log(`[${address}:${portWithRandomLog}] ${info}`, event || "");
};
const earlyDataHeader = request.headers.get("sec-websocket-protocol") || "";
const readableWebSocketStream = makeReadableWebSocketStream(webSocket, earlyDataHeader, log);
let remoteSocketWapper = {
value: null
};
let udpStreamWrite = null;
readableWebSocketStream.pipeTo(new WritableStream({
async write(chunk, controller) {
if (udpStreamWrite) {
return udpStreamWrite(chunk);
}
if (remoteSocketWapper.value) {
const writer = remoteSocketWapper.value.writable.getWriter();
await writer.write(chunk);
writer.releaseLock();
return;
}
const {
hasError,
message,
portRemote = 443,
addressRemote = "",
rawClientData,
addressType
} = await parseTrojanHeader(chunk);
address = addressRemote;
portWithRandomLog = `${portRemote}--${Math.random()} tcp`;
if (hasError) {
throw new Error(message);
return;
}
handleTCPOutBound(remoteSocketWapper, addressRemote, portRemote, rawClientData, webSocket, log, addressType);
},
close() {
log(`readableWebSocketStream is closed`);
},
abort(reason) {
log(`readableWebSocketStream is aborted`, JSON.stringify(reason));
}
})).catch((err) => {
log("readableWebSocketStream pipeTo error", err);
});
return new Response(null, {
status: 101,
// @ts-ignore
webSocket: client
});
}
async function parseTrojanHeader(buffer) {
if (buffer.byteLength < 56) {
return {
hasError: true,
message: "invalid data"
};
}
let crLfIndex = 56;
if (new Uint8Array(buffer.slice(56, 57))[0] !== 0x0d || new Uint8Array(buffer.slice(57, 58))[0] !== 0x0a) {
return {
hasError: true,
message: "invalid header format (missing CR LF)"
};
}
const password = new TextDecoder().decode(buffer.slice(0, crLfIndex));
if (password !== sha224Password) {
return {
hasError: true,
message: "invalid password"
};
}
const socks5DataBuffer = buffer.slice(crLfIndex + 2);
if (socks5DataBuffer.byteLength < 6) {
return {
hasError: true,
message: "invalid SOCKS5 request data"
};
}
const view = new DataView(socks5DataBuffer);
const cmd = view.getUint8(0);
if (cmd !== 1) {
return {
hasError: true,
message: "unsupported command, only TCP (CONNECT) is allowed"
};
}
const atype = view.getUint8(1);
// 0x01: IPv4 address
// 0x03: Domain name
// 0x04: IPv6 address
let addressLength = 0;
let addressIndex = 2;
let address = "";
switch (atype) {
case 1:
addressLength = 4;
address = new Uint8Array(
socks5DataBuffer.slice(addressIndex, addressIndex + addressLength)
).join(".");
break;
case 3:
addressLength = new Uint8Array(
socks5DataBuffer.slice(addressIndex, addressIndex + 1)
)[0];
addressIndex += 1;
address = new TextDecoder().decode(
socks5DataBuffer.slice(addressIndex, addressIndex + addressLength)
);
break;
case 4:
addressLength = 16;
const dataView = new DataView(socks5DataBuffer.slice(addressIndex, addressIndex + addressLength));
const ipv6 = [];
for (let i = 0; i < 8; i++) {
ipv6.push(dataView.getUint16(i * 2).toString(16));
}
address = ipv6.join(":");
break;
default:
return {
hasError: true,
message: `invalid addressType is ${atype}`
};
}
if (!address) {
return {
hasError: true,
message: `address is empty, addressType is ${atype}`
};
}
const portIndex = addressIndex + addressLength;
const portBuffer = socks5DataBuffer.slice(portIndex, portIndex + 2);
const portRemote = new DataView(portBuffer).getUint16(0);
return {
hasError: false,
addressRemote: address,
portRemote,
rawClientData: socks5DataBuffer.slice(portIndex + 4),
addressType: atype
};
}
async function handleTCPOutBound(remoteSocket, addressRemote, portRemote, rawClientData, webSocket, log, addressType) {
async function useSocks5Pattern(address) {
if ( go2Socks5s.includes(atob('YWxsIGlu')) || go2Socks5s.includes(atob('Kg==')) ) return true;
return go2Socks5s.some(pattern => {
let regexPattern = pattern.replace(/\*/g, '.*');
let regex = new RegExp(`^${regexPattern}$`, 'i');
return regex.test(address);
});
}
async function connectAndWrite(address, port, socks = false) {
log(`connected to ${address}:${port}`);
//if (/^(?:(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?).){3}(?:25[0-5]|2[0-4][0-9]|[01]?[0-9][0-9]?)$/.test(address)) address = `${atob('d3d3Lg==')}${address}${atob('LmlwLjA5MDIyNy54eXo=')}`;
const tcpSocket = socks ? await socks5Connect(addressType, address, port, log)
: connect({
hostname: address,
port
});
remoteSocket.value = tcpSocket;
//log(`connected to ${address}:${port}`);
const writer = tcpSocket.writable.getWriter();
await writer.write(rawClientData);
writer.releaseLock();
return tcpSocket;
}
async function retry() {
if (enableSocks) {
tcpSocket = await connectAndWrite(addressRemote, portRemote, true);
} else {
if (!proxyIP || proxyIP == '') {
proxyIP = atob('UFJPWFlJUC50cDEuZnh4ay5kZWR5bi5pbw==');
} else if (proxyIP.includes(']:')) {
portRemote = proxyIP.split(']:')[1] || portRemote;
proxyIP = proxyIP.split(']:')[0] || proxyIP;
} else if (proxyIP.split(':').length === 2) {
portRemote = proxyIP.split(':')[1] || portRemote;
proxyIP = proxyIP.split(':')[0] || proxyIP;
}
if (proxyIP.includes('.tp')) portRemote = proxyIP.split('.tp')[1].split('.')[0] || portRemote;
tcpSocket = await connectAndWrite(proxyIP || addressRemote, portRemote);
}
tcpSocket.closed.catch((error) => {
console.log("retry tcpSocket closed error", error);
}).finally(() => {
safeCloseWebSocket(webSocket);
});
remoteSocketToWS(tcpSocket, webSocket, null, log);
}
let useSocks = false;
if( go2Socks5s.length > 0 && enableSocks ) useSocks = await useSocks5Pattern(addressRemote);
let tcpSocket = await connectAndWrite(addressRemote, portRemote, useSocks);
remoteSocketToWS(tcpSocket, webSocket, retry, log);
}
function makeReadableWebSocketStream(webSocketServer, earlyDataHeader, log) {
let readableStreamCancel = false;
const stream = new ReadableStream({
start(controller) {
webSocketServer.addEventListener("message", (event) => {
if (readableStreamCancel) {
return;
}
const message = event.data;
controller.enqueue(message);
});
webSocketServer.addEventListener("close", () => {
safeCloseWebSocket(webSocketServer);
if (readableStreamCancel) {
return;
}
controller.close();
});
webSocketServer.addEventListener("error", (err) => {
log("webSocketServer error");
controller.error(err);
});
const { earlyData, error } = base64ToArrayBuffer(earlyDataHeader);
if (error) {
controller.error(error);
} else if (earlyData) {
controller.enqueue(earlyData);
}
},
pull(controller) {},
cancel(reason) {
if (readableStreamCancel) {
return;
}
log(`readableStream was canceled, due to ${reason}`);
readableStreamCancel = true;
safeCloseWebSocket(webSocketServer);
}
});
return stream;
}
async function remoteSocketToWS(remoteSocket, webSocket, retry, log) {
let hasIncomingData = false;
await remoteSocket.readable.pipeTo(
new WritableStream({
start() {},
/**
*
* @param {Uint8Array} chunk
* @param {*} controller
*/
async write(chunk, controller) {
hasIncomingData = true;
if (webSocket.readyState !== WS_READY_STATE_OPEN) {
controller.error(
"webSocket connection is not open"
);
}
webSocket.send(chunk);
},
close() {
log(`remoteSocket.readable is closed, hasIncomingData: ${hasIncomingData}`);
},
abort(reason) {
console.error("remoteSocket.readable abort", reason);
}
})
).catch((error) => {
console.error(
`remoteSocketToWS error:`,
error.stack || error
);
safeCloseWebSocket(webSocket);
});
if (hasIncomingData === false && retry) {
log(`retry`);
retry();
}
}
/*
function isValidSHA224(hash) {
const sha224Regex = /^[0-9a-f]{56}$/i;
return sha224Regex.test(hash);
}
*/
function base64ToArrayBuffer(base64Str) {
if (!base64Str) {
return { error: null };
}
try {
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 { error };
}
}
let WS_READY_STATE_OPEN = 1;
let WS_READY_STATE_CLOSING = 2;
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);
}
}
/*
export {
worker_default as
default
};
//# sourceMappingURL=worker.js.map
*/
function revertFakeInfo(content, userID, hostName, isBase64) {
if (isBase64) content = atob(content);//Base64解码
content = content.replace(new RegExp(fakeUserID, 'g'), userID).replace(new RegExp(fakeHostName, 'g'), hostName);
//console.log(content);
if (isBase64) content = btoa(content);//Base64编码
return content;
}
async function MD5MD5(text) {
const encoder = new TextEncoder();
const firstPass = await crypto.subtle.digest('MD5', encoder.encode(text));
const firstPassArray = Array.from(new Uint8Array(firstPass));
const firstHex = firstPassArray.map(b => b.toString(16).padStart(2, '0')).join('');
const secondPass = await crypto.subtle.digest('MD5', encoder.encode(firstHex.slice(7, 27)));
const secondPassArray = Array.from(new Uint8Array(secondPass));
const secondHex = secondPassArray.map(b => b.toString(16).padStart(2, '0')).join('');
return secondHex.toLowerCase();
}
async function ADD(内容) {
// 将制表符、双引号、单引号和换行符都替换为逗号
// 然后将连续的多个逗号替换为单个逗号
var 替换后的内容 = 内容.replace(/[ |"'\r\n]+/g, ',').replace(/,+/g, ',');
// 删除开头和结尾的逗号(如果有的话)
if (替换后的内容.charAt(0) == ',') 替换后的内容 = 替换后的内容.slice(1);
if (替换后的内容.charAt(替换后的内容.length - 1) == ',') 替换后的内容 = 替换后的内容.slice(0, 替换后的内容.length - 1);
// 使用逗号分割字符串,得到地址数组
const 地址数组 = 替换后的内容.split(',');
return 地址数组;
}
async function proxyURL(proxyURL, url) {
const URLs = await ADD(proxyURL);
const fullURL = URLs[Math.floor(Math.random() * URLs.length)];
// 解析目标 URL
let parsedURL = new URL(fullURL);
console.log(parsedURL);
// 提取并可能修改 URL 组件
let URLProtocol = parsedURL.protocol.slice(0, -1) || 'https';
let URLHostname = parsedURL.hostname;
let URLPathname = parsedURL.pathname;
let URLSearch = parsedURL.search;
// 处理 pathname
if (URLPathname.charAt(URLPathname.length - 1) == '/') {
URLPathname = URLPathname.slice(0, -1);
}
URLPathname += url.pathname;
// 构建新的 URL
let newURL = `${URLProtocol}://${URLHostname}${URLPathname}${URLSearch}`;
// 反向代理请求
let response = await fetch(newURL);
// 创建新的响应
let newResponse = new Response(response.body, {
status: response.status,
statusText: response.statusText,
headers: response.headers
});
// 添加自定义头部,包含 URL 信息
//newResponse.headers.set('X-Proxied-By', 'Cloudflare Worker');
//newResponse.headers.set('X-Original-URL', fullURL);
newResponse.headers.set('X-New-URL', newURL);
return newResponse;
}
function 配置信息(密码, 域名地址) {
const 啥啥啥_写的这是啥啊 = 'dHJvamFu';
const 协议类型 = atob(啥啥啥_写的这是啥啊);
const 别名 = FileName;
let 地址 = 域名地址;
let 端口 = 443;
const 传输层协议 = 'ws';
const 伪装域名 = 域名地址;
const 路径 = '/?ed=2560';
let 传输层安全 = ['tls',true];
const SNI = 域名地址;
const 指纹 = 'randomized';
const v2ray = `${协议类型}://${encodeURIComponent(密码)}@${地址}:${端口}?security=${传输层安全[0]}&sni=${SNI}&alpn=h3&fp=${指纹}&allowInsecure=1&type=${传输层协议}&host=${伪装域名}&path=${encodeURIComponent(路径)}#${encodeURIComponent(别名)}`
const clash = `- {name: ${别名}, server: ${地址}, port: ${端口}, udp: false, client-fingerprint: ${指纹}, type: ${协议类型}, password: ${密码}, sni: ${SNI}, alpn: [h3], skip-cert-verify: true, network: ${传输层协议}, ws-opts: {path: "${路径}", headers: {Host: ${伪装域名}}}}`;
return [v2ray,clash];
}
let subParams = ['sub','base64','b64','clash','singbox','sb','surge'];
async function getTrojanConfig(password, hostName, sub, UA, RproxyIP, _url) {
if (sub) {
const match = sub.match(/^(?:https?:\/\/)?([^\/]+)/);
if (match) {
sub = match[1];
}
} else if ((addresses.length + addressesapi.length + addressescsv.length) == 0){
// 定义 Cloudflare IP 范围的 CIDR 列表
let cfips = [
'103.21.244.0/23',
'104.16.0.0/13',
'104.24.0.0/14',
'172.64.0.0/14',
'103.21.244.0/23',
'104.16.0.0/14',
'104.24.0.0/15',
'141.101.64.0/19',
'172.64.0.0/14',
'188.114.96.0/21',
'190.93.240.0/21',
];
// 生成符合给定 CIDR 范围的随机 IP 地址
function generateRandomIPFromCIDR(cidr) {
const [base, mask] = cidr.split('/');
const baseIP = base.split('.').map(Number);
const subnetMask = 32 - parseInt(mask, 10);
const maxHosts = Math.pow(2, subnetMask) - 1;
const randomHost = Math.floor(Math.random() * maxHosts);
const randomIP = baseIP.map((octet, index) => {
if (index < 2) return octet;
if (index === 2) return (octet & (255 << (subnetMask - 8))) + ((randomHost >> 8) & 255);
return (octet & (255 << subnetMask)) + (randomHost & 255);
});
return randomIP.join('.');
}
addresses = addresses.concat('127.0.0.1:1234#CFnat');
addresses = addresses.concat(cfips.map(cidr => generateRandomIPFromCIDR(cidr) + '#CF随机节点'));
}
const userAgent = UA.toLowerCase();
const Config = 配置信息(password , hostName);
const v2ray = Config[0];
const clash = Config[1];
let proxyhost = "";
if(hostName.includes(".workers.dev")){
if ( proxyhostsURL && (!proxyhosts || proxyhosts.length == 0)) {
try {
const response = await fetch(proxyhostsURL);
if (!response.ok) {
console.error('获取地址时出错:', response.status, response.statusText);
return; // 如果有错误,直接返回
}
const text = await response.text();
const lines = text.split('\n');
// 过滤掉空行或只包含空白字符的行
const nonEmptyLines = lines.filter(line => line.trim() !== '');
proxyhosts = proxyhosts.concat(nonEmptyLines);
} catch (error) {
//console.error('获取地址时出错:', error);
}
}
if (proxyhosts.length != 0) proxyhost = proxyhosts[Math.floor(Math.random() * proxyhosts.length)] + "/";
}
if ( userAgent.includes('mozilla') && !subParams.some(_searchParams => _url.searchParams.has(_searchParams))) {
let surge = `Surge订阅地址:\nhttps://${proxyhost}${hostName}/${password}?surge`;
if (hostName.includes(".workers.dev")) surge = "Surge订阅必须绑定自定义域";
const newSocks5s = socks5s.map(socks5Address => {
if (socks5Address.includes('@')) return socks5Address.split('@')[1];
else if (socks5Address.includes('//')) return socks5Address.split('//')[1];
else return socks5Address;
});
let socks5List = '';
if( go2Socks5s.length > 0 && enableSocks ) {
socks5List = `${decodeURIComponent('SOCKS5%EF%BC%88%E7%99%BD%E5%90%8D%E5%8D%95%EF%BC%89%3A%20')}`;
if ( go2Socks5s.includes(atob('YWxsIGlu')) || go2Socks5s.includes(atob('Kg==')) ) socks5List += `${decodeURIComponent('%E6%89%80%E6%9C%89%E6%B5%81%E9%87%8F')}\n`;
else socks5List += `\n ${go2Socks5s.join('\n ')}\n`;
}
let 订阅器 = '';
if (sub) {
if (enableSocks) 订阅器 += `CFCDN(访问方式): Socks5\n ${newSocks5s.join('\n ')}\n${socks5List}`;
else if (proxyIP && proxyIP != '') 订阅器 += `CFCDN(访问方式): ProxyIP\n ${proxyIPs.join('\n ')}\n`;
else if (RproxyIP == 'true') 订阅器 += `CFCDN(访问方式): 自动获取ProxyIP\n`;
else 订阅器 += `CFCDN(访问方式): 无法访问, 需要您设置 proxyIP/PROXYIP !!!\n`
订阅器 += `\nSUB(优选订阅生成器): ${sub}`;
} else {
if (enableSocks) 订阅器 += `CFCDN(访问方式): Socks5\n ${newSocks5s.join('\n ')}\n${socks5List}`;
else if (proxyIP && proxyIP != '') 订阅器 += `CFCDN(访问方式): ProxyIP\n ${proxyIPs.join('\n ')}\n`;
else 订阅器 += `CFCDN(访问方式): 无法访问, 需要您设置 proxyIP/PROXYIP !!!\n`;
订阅器 += `\n您的订阅内容由 内置 addresses/ADD* 参数变量提供\n`;
if (addresses.length > 0) 订阅器 += `ADD(TLS优选域名&IP): \n ${addresses.join('\n ')}\n`;
if (addressesapi.length > 0) 订阅器 += `ADDAPI(TLS优选域名&IP 的 API): \n ${addressesapi.join('\n ')}\n`;
if (addressescsv.length > 0) 订阅器 += `ADDCSV(IPTest测速csv文件 限速 ${DLS} ): \n ${addressescsv.join('\n ')}\n`;
}
return `
################################################################
Subscribe / sub 订阅地址, 支持 Base64、clash-meta、sing-box 订阅格式
---------------------------------------------------------------
快速自适应订阅地址:
https://${proxyhost}${hostName}/${password}
https://${proxyhost}${hostName}/${password}?sub
Base64订阅地址:
https://${proxyhost}${hostName}/${password}?b64
https://${proxyhost}${hostName}/${password}?base64
clash订阅地址:
https://${proxyhost}${hostName}/${password}?clash
singbox订阅地址:
https://${proxyhost}${hostName}/${password}?sb
https://${proxyhost}${hostName}/${password}?singbox
${surge}
---------------------------------------------------------------
################################################################
${FileName} 配置信息
---------------------------------------------------------------
HOST: ${hostName}
PASSWORD: ${password}
SHA224: ${sha224Password}
FAKEPASS: ${fakeUserID}
UA: ${UA}
${订阅器}
SUBAPI(订阅转换后端): ${subProtocol}://${subconverter}
SUBCONFIG(订阅转换配置文件): ${subconfig}
---------------------------------------------------------------
################################################################
v2ray
---------------------------------------------------------------
${v2ray}
---------------------------------------------------------------
################################################################
clash-meta
---------------------------------------------------------------
${clash}
---------------------------------------------------------------
################################################################
${atob(`dGVsZWdyYW0g5Lqk5rWB576kIOaKgOacr+Wkp+S9rH7lnKjnur/lj5HniYwhCmh0dHBzOi8vdC5tZS9DTUxpdXNzc3MKLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tCmdpdGh1YiDpobnnm67lnLDlnYAgU3RhciFTdGFyIVN0YXIhISEKaHR0cHM6Ly9naXRodWIuY29tL2NtbGl1L2VwZWl1cwotLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0tLS0KIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIyMjIw==`)}
`;
} else {
if (typeof fetch != 'function') {
return 'Error: fetch is not available in this environment.';
}
// 如果是使用默认域名,则改成一个workers的域名,订阅器会加上代理
if (hostName.includes(".workers.dev")){
fakeHostName = `${fakeHostName}.workers.dev`;
} else {
fakeHostName = `${fakeHostName}.xyz`
}
let url = `https://${sub}/sub?host=${fakeHostName}&pw=${fakeUserID}&password=${fakeUserID + atob('JmVwZWl1cz1jbWxpdSZwcm94eWlwPQ==') + RproxyIP}`;
let isBase64 = true;
let newAddressesapi = [];
let newAddressescsv = [];
if (!sub || sub == "") {
if(hostName.includes('workers.dev')) {
if (proxyhostsURL && (!proxyhosts || proxyhosts.length == 0)) {
try {
const response = await fetch(proxyhostsURL);
if (!response.ok) {
console.error('获取地址时出错:', response.status, response.statusText);
return; // 如果有错误,直接返回
}
const text = await response.text();
const lines = text.split('\n');
// 过滤掉空行或只包含空白字符的行
const nonEmptyLines = lines.filter(line => line.trim() !== '');
proxyhosts = proxyhosts.concat(nonEmptyLines);
} catch (error) {
console.error('获取地址时出错:', error);
}
}
// 使用Set对象去重
proxyhosts = [...new Set(proxyhosts)];
}
newAddressesapi = await getAddressesapi(addressesapi);
newAddressescsv = await getAddressescsv('TRUE');
url = `https://${hostName}/${fakeUserID}`;
}
if (!userAgent.includes(('CF-Workers-SUB').toLowerCase())){
if ((userAgent.includes('clash') && !userAgent.includes('nekobox')) || ( _url.searchParams.has('clash'))) {
url = `${subProtocol}://${subconverter}/sub?target=clash&url=${encodeURIComponent(url)}&insert=false&config=${encodeURIComponent(subconfig)}&emoji=true&list=false&tfo=false&scv=true&fdn=false&sort=false&new_name=true`;
isBase64 = false;
} else if (userAgent.includes('sing-box') || userAgent.includes('singbox') || _url.searchParams.has('singbox') || _url.searchParams.has('sb')) {
url = `${subProtocol}://${subconverter}/sub?target=singbox&url=${encodeURIComponent(url)}&insert=false&config=${encodeURIComponent(subconfig)}&emoji=true&list=false&tfo=false&scv=true&fdn=false&sort=false&new_name=true`;
isBase64 = false;
} else if (userAgent.includes('surge') || _url.searchParams.has('surge')) {
url = `${subProtocol}://${subconverter}/sub?target=surge&ver=4&url=${encodeURIComponent(url)}&insert=false&config=${encodeURIComponent(subconfig)}&emoji=true&list=false&xudp=false&udp=false&tfo=false&expand=true&scv=true&fdn=false`;
isBase64 = false;
}
}
try {
let content;
if ((!sub || sub == "") && isBase64 == true) {
content = await subAddresses(fakeHostName,fakeUserID,userAgent,newAddressesapi,newAddressescsv);
} else {
const response = await fetch(url ,{
headers: {
'User-Agent': atob('Q0YtV29ya2Vycy1lcGVpdXMvY21saXU='),
}});
content = await response.text();
}
if (_url.pathname == `/${fakeUserID}`) return content;
content = revertFakeInfo(content, password, hostName, isBase64);
if (userAgent.includes('surge') || _url.searchParams.has('surge')) content = surge(content, `https://${hostName}/${password}?surge`);
return content;
} catch (error) {
console.error('Error fetching content:', error);
return `Error fetching content: ${error.message}`;
}
}
}
async function sendMessage(type, ip, add_data = "") {
if ( BotToken !== '' && ChatID !== ''){
let msg = "";
const response = await fetch(`http://ip-api.com/json/${ip}?lang=zh-CN`);
if (response.status == 200) {
const ipInfo = await response.json();
msg = `${type}\nIP: ${ip}\n国家: ${ipInfo.country}\n<tg-spoiler>城市: ${ipInfo.city}\n组织: ${ipInfo.org}\nASN: ${ipInfo.as}\n${add_data}`;
} else {
msg = `${type}\nIP: ${ip}\n<tg-spoiler>${add_data}`;
}
let url = "https://api.telegram.org/bot"+ BotToken +"/sendMessage?chat_id=" + ChatID + "&parse_mode=HTML&text=" + encodeURIComponent(msg);
return fetch(url, {
method: 'get',
headers: {
'Accept': 'text/html,application/xhtml+xml,application/xml;',
'Accept-Encoding': 'gzip, deflate, br',
'User-Agent': 'Mozilla/5.0 Chrome/90.0.4430.72'
}
});
}
}
/**
*
* @param {number} addressType
* @param {string} addressRemote
* @param {number} portRemote
* @param {function} log The logging function.
*/
async function socks5Connect(addressType, addressRemote, portRemote, log) {
const { username, password, hostname, port } = parsedSocks5Address;
// Connect to the SOCKS server
const socket = connect({
hostname,
port,
});
// Request head format (Worker -> Socks Server):
// +----+----------+----------+
// |VER | NMETHODS | METHODS |
// +----+----------+----------+
// | 1 | 1 | 1 to 255 |
// +----+----------+----------+
// https://en.wikipedia.org/wiki/SOCKS#SOCKS5
// For METHODS:
// 0x00 NO AUTHENTICATION REQUIRED
// 0x02 USERNAME/PASSWORD https://datatracker.ietf.org/doc/html/rfc1929
const socksGreeting = new Uint8Array([5, 2, 0, 2]);
const writer = socket.writable.getWriter();
await writer.write(socksGreeting);
log('sent socks greeting');
const reader = socket.readable.getReader();
const encoder = new TextEncoder();
let res = (await reader.read()).value;
// Response format (Socks Server -> Worker):
// +----+--------+
// |VER | METHOD |
// +----+--------+
// | 1 | 1 |
// +----+--------+
if (res[0] !== 0x05) {
log(`socks server version error: ${res[0]} expected: 5`);
return;
}
if (res[1] === 0xff) {
log("no acceptable methods");
return;
}
// if return 0x0502
if (res[1] === 0x02) {
log("socks server needs auth");
if (!username || !password) {
log("please provide username/password");
return;
}
// +----+------+----------+------+----------+
// |VER | ULEN | UNAME | PLEN | PASSWD |
// +----+------+----------+------+----------+
// | 1 | 1 | 1 to 255 | 1 | 1 to 255 |
// +----+------+----------+------+----------+
const authRequest = new Uint8Array([
1,
username.length,
...encoder.encode(username),
password.length,
...encoder.encode(password)
]);
await writer.write(authRequest);
res = (await reader.read()).value;
// expected 0x0100
if (res[0] !== 0x01 || res[1] !== 0x00) {
log("fail to auth socks server");
return;
}
}
// Request data format (Worker -> Socks Server):
// +----+-----+-------+------+----------+----------+
// |VER | CMD | RSV | ATYP | DST.ADDR | DST.PORT |
// +----+-----+-------+------+----------+----------+
// | 1 | 1 | X'00' | 1 | Variable | 2 |
// +----+-----+-------+------+----------+----------+
// ATYP: address type of following address
// 0x01: IPv4 address
// 0x03: Domain name
// 0x04: IPv6 address
// DST.ADDR: desired destination address
// DST.PORT: desired destination port in network octet order
// addressType
// 0x01: IPv4 address
// 0x03: Domain name
// 0x04: IPv6 address
// 1--> ipv4 addressLength =4
// 2--> domain name
// 3--> ipv6 addressLength =16
let DSTADDR; // DSTADDR = ATYP + DST.ADDR
switch (addressType) {
case 1:
DSTADDR = new Uint8Array(
[1, ...addressRemote.split('.').map(Number)]
);
break;
case 3:
DSTADDR = new Uint8Array(
[3, addressRemote.length, ...encoder.encode(addressRemote)]
);
break;