1use anyctx::AnyCtx;
2
3use anyhow::Context;
4use bytes::Bytes;
5use futures_util::{
6 future::Shared, task::noop_waker, AsyncReadExt, AsyncWriteExt, FutureExt, TryFutureExt,
7};
8use geph5_broker_protocol::{Credential, UserInfo};
9use geph5_misc_rpc::client_control::{ControlClient, ControlService};
10use nanorpc::DynRpcTransport;
11use sillad::Pipe;
12use smol::future::FutureExt as _;
13use std::{fs::File, net::SocketAddr, path::PathBuf, sync::Arc};
14
15use serde::{Deserialize, Serialize};
16use smolscale::immortal::Immortal;
17
18use crate::{
19 auth::{auth_loop, get_auth_token},
20 broker::{broker_client, BrokerSource},
21 bw_token::bw_token_refresh_loop,
22 client_inner::{client_inner, open_conn},
23 control_prot::{ControlProtocolImpl, DummyControlProtocolTransport},
24 get_dialer::ExitConstraint,
25 http_proxy::http_proxy_serve,
26 pac::pac_serve,
27 socks5::socks5_loop,
28 vpn::{recv_vpn_packet, send_vpn_packet, vpn_loop},
29};
30
31#[derive(Serialize, Deserialize, Clone)]
32pub struct Config {
33 pub socks5_listen: Option<SocketAddr>,
34 pub http_proxy_listen: Option<SocketAddr>,
35 pub pac_listen: Option<SocketAddr>,
36
37 pub control_listen: Option<SocketAddr>,
38 pub exit_constraint: ExitConstraint,
39 #[serde(default)]
40 pub bridge_mode: BridgeMode,
41 pub cache: Option<PathBuf>,
42
43 pub broker: Option<BrokerSource>,
44 pub broker_keys: Option<BrokerKeys>,
45
46 #[serde(default)]
47 pub vpn: bool,
48 #[serde(default)]
49 pub vpn_fd: Option<i32>,
50 #[serde(default)]
51 pub spoof_dns: bool,
52 #[serde(default)]
53 pub passthrough_china: bool,
54 #[serde(default)]
55 pub dry_run: bool,
56 #[serde(default)]
57 pub credentials: Credential,
58
59 #[serde(default)]
60 pub sess_metadata: serde_json::Value,
61 pub task_limit: Option<u32>,
62}
63
64#[derive(Serialize, Deserialize, Clone)]
65pub struct BrokerKeys {
67 pub master: String,
68 pub mizaru_free: String,
69 pub mizaru_plus: String,
70 pub mizaru_bw: String,
71}
72
73impl Config {
74 pub fn inert(&self) -> Self {
76 let mut this = self.clone();
77 this.dry_run = true;
78 this.socks5_listen = None;
79 this.http_proxy_listen = None;
80 this.pac_listen = None;
81 this.control_listen = None;
82 this
83 }
84}
85
86#[derive(Serialize, Deserialize, Clone, Copy, PartialEq, Eq, Debug)]
87pub enum BridgeMode {
88 Auto,
89 ForceBridges,
90}
91
92impl Default for BridgeMode {
93 fn default() -> Self {
94 Self::Auto
95 }
96}
97
98#[derive(Clone)]
99pub struct Client {
100 task: Shared<smol::Task<Result<(), Arc<anyhow::Error>>>>,
101 ctx: AnyCtx<Config>,
102}
103
104impl Client {
105 pub fn start(cfg: Config) -> Self {
107 std::env::remove_var("http_proxy");
108 std::env::remove_var("https_proxy");
109 std::env::remove_var("HTTP_PROXY");
110 std::env::remove_var("HTTPS_PROXY");
111 let ctx = AnyCtx::new(cfg.clone());
112
113 #[cfg(unix)]
114 if let Some(fd) = cfg.vpn_fd {
115 let ctx_clone = ctx.clone();
116 smolscale::spawn(async move {
117 let async_fd: smol::Async<File> =
119 smol::Async::new(unsafe { std::os::fd::FromRawFd::from_raw_fd(fd) })
120 .expect("could not wrap VPN fd in Async");
121
122 let (mut reader, mut writer) = async_fd.split();
124
125 let read_task = async {
127 let mut buf = vec![0u8; 65535]; loop {
129 match reader.read(&mut buf).await {
130 Ok(n) if n > 0 => {
131 send_vpn_packet(
133 &ctx_clone,
134 bytes::Bytes::copy_from_slice(&buf[..n]),
135 )
136 .await;
137 }
138 Ok(0) => {
139 tracing::warn!("VPN fd reached EOF");
141 break;
142 }
143 Err(e) => {
144 tracing::error!("Error reading from VPN fd: {}", e);
145 break;
146 }
147 _ => break,
148 }
149 }
150 anyhow::Ok(())
151 };
152
153 let write_task = async {
155 loop {
156 let packet = recv_vpn_packet(&ctx_clone).await;
158
159 if let Err(e) = writer.write_all(&packet).await {
161 tracing::error!("Error writing to VPN fd: {}", e);
162 break;
163 }
164
165 if let Err(e) = writer.flush().await {
166 tracing::error!("Error flushing VPN fd: {}", e);
167 break;
168 }
169 }
170 anyhow::Ok(())
171 };
172
173 let _ = read_task.race(write_task).await;
175 tracing::warn!("VPN fd handler exited");
176 })
177 .detach();
178 }
179 let task = smolscale::spawn(client_main(ctx.clone()).map_err(Arc::new));
180 Client {
181 task: task.shared(),
182 ctx,
183 }
184 }
185
186 pub async fn open_conn(&self, remote: &str) -> anyhow::Result<Box<dyn Pipe>> {
188 open_conn(&self.ctx, "tcp", remote).await
189 }
190
191 pub async fn wait_until_dead(self) -> anyhow::Result<()> {
193 self.task.await.map_err(|e| anyhow::anyhow!(e))
194 }
195
196 pub fn check_dead(&self) -> anyhow::Result<()> {
198 match self
199 .task
200 .clone()
201 .poll(&mut std::task::Context::from_waker(&noop_waker()))
202 {
203 std::task::Poll::Ready(val) => val.map_err(|e| anyhow::anyhow!(e))?,
204 std::task::Poll::Pending => {}
205 }
206
207 Ok(())
208 }
209
210 pub fn control_client(&self) -> ControlClient {
212 ControlClient(DynRpcTransport::new(DummyControlProtocolTransport(
213 ControlService(ControlProtocolImpl {
214 ctx: self.ctx.clone(),
215 }),
216 )))
217 }
218
219 pub async fn user_info(&self) -> anyhow::Result<UserInfo> {
221 let auth_token = get_auth_token(&self.ctx).await?;
222 let user_info = broker_client(&self.ctx)?
223 .get_user_info(auth_token)
224 .await??
225 .context("no such user")?;
226 Ok(user_info)
227 }
228
229 pub async fn send_vpn_packet(&self, bts: Bytes) -> anyhow::Result<()> {
231 send_vpn_packet(&self.ctx, bts).await;
232 Ok(())
233 }
234
235 pub async fn recv_vpn_packet(&self) -> anyhow::Result<Bytes> {
237 let packet = recv_vpn_packet(&self.ctx).await;
238 Ok(packet)
239 }
240}
241
242pub type CtxField<T> = fn(&AnyCtx<Config>) -> T;
243
244async fn client_main(ctx: AnyCtx<Config>) -> anyhow::Result<()> {
245 let rpc_serve = async {
246 if let Some(control_listen) = ctx.init().control_listen {
247 nanorpc_sillad::rpc_serve(
248 sillad::tcp::TcpListener::bind(control_listen).await?,
249 ControlService(ControlProtocolImpl { ctx: ctx.clone() }),
250 )
251 .await?;
252 anyhow::Ok(())
253 } else {
254 smol::future::pending().await
255 }
256 };
257 if ctx.init().dry_run {
258 rpc_serve.await
259 } else {
260 let vpn_loop = vpn_loop(&ctx);
261
262 let _client_loop = Immortal::spawn(client_inner(ctx.clone()));
263
264 socks5_loop(&ctx)
265 .inspect_err(|e| tracing::error!(err = debug(e), "socks5 loop stopped"))
266 .race(vpn_loop.inspect_err(|e| tracing::error!(err = debug(e), "vpn loop stopped")))
267 .race(
268 http_proxy_serve(&ctx)
269 .inspect_err(|e| tracing::error!(err = debug(e), "http proxy stopped")),
270 )
271 .race(
272 auth_loop(&ctx)
273 .inspect_err(|e| tracing::error!(err = debug(e), "auth loop stopped")),
274 )
275 .race(
276 bw_token_refresh_loop(&ctx)
277 .inspect_err(|e| tracing::error!(err = debug(e), "bw token loop stopped")),
278 )
279 .race(rpc_serve)
280 .race(pac_serve(&ctx))
281 .await
282 }
283}