1use std::time::{Duration, Instant, SystemTime};
2
3use anyctx::AnyCtx;
4use anyhow::Context;
5
6use arrayref::array_ref;
7use async_native_tls::TlsConnector;
8use ed25519_dalek::VerifyingKey;
9
10use geph5_broker_protocol::{
11 AccountLevel, ExitCategory, ExitDescriptor, GetRoutesArgs, NetStatus, RouteDescriptor,
12};
13use isocountry::CountryCode;
14use itertools::Itertools;
15use ordered_float::OrderedFloat;
16use rand::seq::SliceRandom;
17use serde::{Deserialize, Serialize};
18use sillad::{
19 dialer::{DialerExt, DynDialer, FailingDialer},
20 tcp::TcpDialer,
21};
22use sillad_conntest::ConnTestDialer;
23use sillad_hex::HexDialer;
24use sillad_meeklike::MeeklikeDialer;
25use sillad_sosistab3::{dialer::SosistabDialer, Cookie};
26
27use crate::{
28 auth::get_connect_token,
29 broker::{broker_client, get_net_status},
30 client::{Config, CtxField},
31 device_metadata::get_device_metadata,
32 vpn::smart_vpn_whitelist,
33};
34
35#[derive(Serialize, Deserialize, Clone, Debug)]
36#[serde(rename_all = "snake_case")]
37pub enum ExitConstraint {
38 Auto,
39 Direct(String),
40 Hostname(String),
41 Country(CountryCode),
42 CountryCity(CountryCode, String),
43}
44
45pub async fn get_dialer(
47 ctx: &AnyCtx<Config>,
48) -> anyhow::Result<(VerifyingKey, ExitDescriptor, DynDialer)> {
49 static SEMAPH: CtxField<
50 smol::lock::Mutex<Option<(VerifyingKey, ExitDescriptor, DynDialer, SystemTime)>>,
51 > = |_| smol::lock::Mutex::new(None);
52 let mut cached_value = ctx.get(SEMAPH).lock().await;
53
54 if let Some(inner) = cached_value.clone() {
55 if inner.3.elapsed()? < Duration::from_secs(120) {
56 return Ok((inner.0, inner.1, inner.2));
57 }
58 }
59
60 let res = get_dialer_inner(ctx).await;
61 match res {
62 Ok(val) => {
63 *cached_value = Some((val.0, val.1.clone(), val.2.clone(), SystemTime::now()));
64 Ok((val.0, val.1, val.2))
65 }
66 Err(err) => {
67 tracing::warn!("failed to get dialer: {:?}", err);
68 if let Some(val) = cached_value.clone() {
69 tracing::warn!("returning stale value instead");
70 Ok((val.0, val.1, val.2))
71 } else {
72 Err(err)
73 }
74 }
75 }
76}
77
78async fn get_dialer_inner(
79 ctx: &AnyCtx<Config>,
80) -> anyhow::Result<(VerifyingKey, ExitDescriptor, DynDialer)> {
81 if let ExitConstraint::Direct(dir) = &ctx.init().exit_constraint {
83 let (dir, pubkey_hex) = dir
84 .split_once('/')
85 .context("did not find / in a direct constraint")?;
86 let pubkey = VerifyingKey::from_bytes(
87 hex::decode(pubkey_hex)
88 .context("cannot decode pubkey as hex")?
89 .as_slice()
90 .try_into()
91 .context("pubkey wrong length")?,
92 )?;
93 let dest_addr = *smol::net::resolve(dir)
94 .await?
95 .choose(&mut rand::thread_rng())
96 .context("could not resolve destination for direct exit connection")?;
97 smart_vpn_whitelist(ctx, dest_addr.ip());
98 return Ok((
99 pubkey,
100 ExitDescriptor {
101 c2e_listen: "0.0.0.0:0".parse()?,
102 b2e_listen: "0.0.0.0:0".parse()?,
103 country: CountryCode::ABW,
104 city: "".to_string(),
105 load: 0.0,
106 expiry: 0,
107 },
108 ConnTestDialer {
109 ping_count: 1,
110 inner: TcpDialer { dest_addr },
111 }
112 .dynamic(),
113 ));
114 }
115
116 let (level, conn_token, sig) = get_connect_token(ctx)
118 .await
119 .context("could not get connect token")?;
120
121 let net_status_verified = get_net_status(ctx).await?;
122
123 tracing::debug!(
124 "verified netstatus: {}",
125 serde_json::to_string(
126 &net_status_verified
127 .exits
128 .iter()
129 .map(|s| &s.1 .1)
130 .collect_vec()
131 )?
132 );
133
134 let rendezvous_key = blake3::hash(serde_json::to_string(&ctx.init().credentials)?.as_bytes());
136 let (pubkey, exit) = pick_exit_with_constraint(
137 rendezvous_key,
138 &ctx.init().exit_constraint,
139 level,
140 &net_status_verified,
141 )?;
142
143 tracing::debug!(exit = ?exit, "narrowed down choice of exit");
144 smart_vpn_whitelist(ctx, exit.c2e_listen.ip());
145
146 tracing::debug!(token = %conn_token, "CONN TOKEN");
147
148 let start = Instant::now();
149 let metadata = if let Ok(metadata) = get_device_metadata(ctx).await {
150 tracing::info!(
151 metadata = debug(&metadata),
152 elapsed = debug(start.elapsed()),
153 "DEVICE METADATA OBTAINED"
154 );
155 serde_json::to_value(&metadata)?
156 } else {
157 tracing::warn!("CANNOT GET DEVICE METADATA, PROCEEDING NONETHELESS");
158 serde_json::Value::Null
159 };
160
161 let broker = broker_client(ctx)?;
163 let bridge_routes = broker
164 .get_routes_v2(GetRoutesArgs {
165 token: conn_token,
166 sig,
167 exit_b2e: exit.b2e_listen,
168 client_metadata: metadata,
169 })
170 .await?
171 .map_err(|e| anyhow::anyhow!("broker refused to serve bridge routes: {e}"))?;
172 tracing::debug!(
173 "bridge routes obtained: {}",
174 serde_json::to_string(&bridge_routes)?
175 );
176
177 let bridge_dialer = route_to_dialer(ctx, &bridge_routes);
178
179 Ok((*pubkey, exit.clone(), bridge_dialer))
180}
181
182fn pick_exit_with_constraint<'a>(
185 rendezvous_key: blake3::Hash,
186 constraint: &ExitConstraint,
187 level: AccountLevel,
188 net_status: &'a NetStatus,
189) -> anyhow::Result<(&'a VerifyingKey, &'a ExitDescriptor)> {
190 let all_exits = net_status.exits.values();
191
192 let mut country_constraint = None;
194 let mut city_constraint = None;
195 let mut hostname_constraint = None;
196
197 match constraint {
198 ExitConstraint::Hostname(host) => hostname_constraint = Some(host.clone()),
199 ExitConstraint::Country(country) => country_constraint = Some(*country),
200 ExitConstraint::CountryCity(country, city) => {
201 country_constraint = Some(*country);
202 city_constraint = Some(city.clone());
203 }
204 ExitConstraint::Auto => {}
205 ExitConstraint::Direct(_) => panic!("should not reach here"),
206 }
207
208 let filtered: Vec<_> = all_exits
209 .filter(|(_, exit, meta)| {
210 let mut pass = match country_constraint {
211 Some(c) => exit.country == c,
212 None => true,
213 };
214 pass &= match &city_constraint {
215 Some(city) => exit.city == *city,
216 None => true,
217 };
218 pass &= match &hostname_constraint {
219 Some(hn) => exit.b2e_listen.ip().to_string() == *hn,
220 None => true,
221 };
222 if matches!(constraint, ExitConstraint::Auto) {
223 pass &= meta.category == ExitCategory::Core;
224 }
225 pass &= meta.allowed_levels.contains(&level);
226 pass
227 })
228 .collect();
229
230 if filtered.is_empty() {
231 anyhow::bail!("no exits match the constraints")
232 }
233
234 let first = filtered
236 .iter()
237 .min_by_key(|rh| {
238 let (_, exit, _) = **rh;
239 let hash = blake3::keyed_hash(
240 rendezvous_key.as_bytes(),
241 exit.b2e_listen.ip().to_string().as_bytes(),
242 );
243 let hash = &hash.as_bytes()[..];
244 let hash = u64::from_be_bytes(*array_ref![hash, 0, 8]) as f64 / u64::MAX as f64;
245 let weight = (1.0 - (exit.load as f64)).powi(2);
246 let picker = -hash.ln() / weight;
247 OrderedFloat(picker)
248 })
249 .unwrap();
250 Ok((&first.0, &first.1))
251}
252
253fn route_to_dialer(ctx: &AnyCtx<Config>, route: &RouteDescriptor) -> DynDialer {
254 use sillad_native_tls::TlsDialer;
255
256 match route {
257 RouteDescriptor::Tcp(addr) => {
258 smart_vpn_whitelist(ctx, addr.ip());
259 let addr = *addr;
260 TcpDialer { dest_addr: addr }.dynamic()
261 }
262 RouteDescriptor::Sosistab3 { cookie, lower } => {
263 let inner = route_to_dialer(ctx, lower);
264 SosistabDialer {
265 inner,
266 cookie: Cookie::new(cookie),
267 }
268 .dynamic()
269 }
270 RouteDescriptor::Race(inside) => inside
271 .iter()
272 .map(|s| route_to_dialer(ctx, s))
273 .reduce(|a, b| a.race(b).dynamic())
274 .unwrap_or_else(|| FailingDialer.dynamic()),
275 RouteDescriptor::Fallback(a) => a
276 .iter()
277 .map(|s| route_to_dialer(ctx, s))
278 .reduce(|a, b| a.fallback(b).dynamic())
279 .unwrap_or_else(|| FailingDialer.dynamic()),
280 RouteDescriptor::Timeout {
281 milliseconds,
282 lower,
283 } => route_to_dialer(ctx, lower)
284 .timeout(Duration::from_millis(*milliseconds as _))
285 .dynamic(),
286 RouteDescriptor::Delay {
287 milliseconds,
288 lower,
289 } => route_to_dialer(ctx, lower)
290 .delay(Duration::from_millis((*milliseconds).into()))
291 .dynamic(),
292 RouteDescriptor::ConnTest { ping_count, lower } => {
293 let lower = route_to_dialer(ctx, lower);
294 ConnTestDialer {
295 inner: lower,
296 ping_count: *ping_count as _,
297 }
298 .dynamic()
299 }
300 RouteDescriptor::Hex { lower } => {
301 let lower = route_to_dialer(ctx, lower);
302 HexDialer { inner: lower }.dynamic()
303 }
304 RouteDescriptor::Other(_) => FailingDialer.dynamic(),
305 RouteDescriptor::PlainTls { sni_domain, lower } => {
306 let lower = route_to_dialer(ctx, lower);
307 TlsDialer::new(
308 lower,
309 TlsConnector::new()
310 .use_sni(sni_domain.is_some())
311 .danger_accept_invalid_certs(true)
312 .danger_accept_invalid_hostnames(true)
313 .min_protocol_version(None)
314 .max_protocol_version(None),
315 sni_domain
316 .clone()
317 .unwrap_or_else(|| "example.com".to_string()),
318 )
319 .dynamic()
320 }
321 RouteDescriptor::Meeklike { key, cfg, lower } => {
322 let lower = route_to_dialer(ctx, lower);
323 MeeklikeDialer {
324 inner: lower.into(),
325 cfg: *cfg,
326 key: *blake3::hash(key.as_bytes()).as_bytes(),
327 }
328 .dynamic()
329 }
330 }
331}