Files
telemt/src/web/http/request.rs
T
2026-08-26 20:33:33 +03:00

545 lines
19 KiB
Rust

use std::sync::Arc;
use base64::Engine as _;
use hyper::Request;
use hyper::header;
use sha2::{Digest, Sha256};
use subtle::ConstantTimeEq;
use crate::config::{WebRuntimeProfile, WebRuntimeVhost};
use crate::web::manager::{
CarrierCapabilities, CarrierClientClass, CarrierFailure, CarrierRequest, TokenHash,
};
const USER_AGENT_CONTEXT: &[u8] = b"telemt-web-carrier-user-agent-v1\0";
// Canonical host and forwarded-address provenance remain isolated from credentials.
mod identity;
pub(super) use identity::{
canonical_request_host, carrier_ip_learning_eligible, client_ip,
};
/// Decodes an exact canonical bridge query without allocating credential strings.
pub(super) fn bridge_candidate(query: Option<&str>) -> ([u8; 32], bool) {
let mut candidate = [0u8; 32];
let Some(value) = query.and_then(|query| query.strip_prefix("bridge=")) else {
return (candidate, false);
};
if value.len() != 43 {
return (candidate, false);
}
let mut decoded = [0u8; 32];
let Ok(decoded_len) =
base64::engine::general_purpose::URL_SAFE_NO_PAD.decode_slice(value, &mut decoded)
else {
return (candidate, false);
};
let mut canonical = [0u8; 43];
let Ok(encoded_len) =
base64::engine::general_purpose::URL_SAFE_NO_PAD.encode_slice(decoded, &mut canonical)
else {
return (candidate, false);
};
if decoded_len != decoded.len()
|| encoded_len != canonical.len()
|| !bool::from(canonical.ct_eq(value.as_bytes()))
{
return (candidate, false);
}
candidate = decoded;
(candidate, true)
}
/// Matches a capability in constant time across every profile of one virtual host.
pub(super) fn match_profile(
vhost: &WebRuntimeVhost,
candidate: &[u8; 32],
) -> Option<Arc<WebRuntimeProfile>> {
let mut matched = None;
for profile in &vhost.profiles {
if bool::from(profile.capability.ct_eq(candidate)) {
matched = Some(Arc::clone(profile));
}
}
matched
}
/// Validates and hashes one canonical bearer credential for map lookup.
pub(super) fn bearer_token_hash<B>(request: &Request<B>) -> Option<TokenHash> {
let values = request.headers().get_all(header::AUTHORIZATION);
let mut values = values.iter();
let value = values.next()?.to_str().ok()?;
if values.next().is_some() || !value.starts_with("Bearer ") || value.matches(' ').count() != 1 {
return None;
}
let token = value.strip_prefix("Bearer ")?;
if token.len() != 43 {
return None;
}
let mut decoded = [0u8; 32];
let decoded_len = base64::engine::general_purpose::URL_SAFE_NO_PAD
.decode_slice(token, &mut decoded)
.ok()?;
let mut canonical = [0u8; 43];
let encoded_len = base64::engine::general_purpose::URL_SAFE_NO_PAD
.encode_slice(decoded, &mut canonical)
.ok()?;
(decoded_len == decoded.len()
&& encoded_len == canonical.len()
&& bool::from(canonical.ct_eq(token.as_bytes())))
.then(|| Sha256::digest(decoded).into())
}
/// Checks the exact carrier media type without accepting duplicate headers.
pub(super) fn binary_content_type<B>(request: &Request<B>) -> bool {
let values = request.headers().get_all(header::CONTENT_TYPE);
let mut values = values.iter();
let value = values.next().and_then(|value| value.to_str().ok());
values.next().is_none()
&& value.is_some_and(|value| value.eq_ignore_ascii_case("application/octet-stream"))
}
/// Accepts no Cookie or the one empty value emitted by restricted Windows WebView2.
pub(super) fn compatible_cookie_header<B>(request: &Request<B>) -> bool {
let values = request.headers().get_all(header::COOKIE);
let mut values = values.iter();
match values.next() {
None => true,
Some(value) => value.as_bytes().is_empty() && values.next().is_none(),
}
}
/// Parses one canonical unsigned decimal carrier sequence header.
pub(super) fn canonical_u64_header<B>(request: &Request<B>, name: &'static str) -> Option<u64> {
let values = request.headers().get_all(name);
let mut values = values.iter();
let value = values.next()?.to_str().ok()?;
if values.next().is_some()
|| value.is_empty()
|| value.starts_with('+')
|| (value.len() > 1 && value.starts_with('0'))
{
return None;
}
let parsed = value.parse::<u64>().ok()?;
(parsed.to_string() == value).then_some(parsed)
}
/// Parses strict bridge negotiation metadata without trusting it for authentication.
pub(super) fn carrier_request<B>(request: &Request<B>, host: &str) -> Option<CarrierRequest> {
let user_agent_hash = normalized_user_agent_hash(request)?;
let capabilities = single_header(request, "x-carrier-capabilities");
let attempt = optional_canonical_u8_header(request, "x-carrier-attempt")?;
let failure = optional_failure_header(request)?;
let native_ios = native_ios_user_agent(request);
match (capabilities, attempt) {
(None, None) if failure.is_none() => {
if native_ios {
Some(CarrierRequest::ios(user_agent_hash))
} else {
Some(CarrierRequest::legacy(user_agent_hash))
}
}
(Some(capabilities), Some(attempt)) => {
let capabilities = parse_capabilities(capabilities)?;
if (attempt == 1) != failure.is_none() {
return None;
}
Some(CarrierRequest::automatic(
if native_ios {
CarrierClientClass::Ios
} else {
CarrierClientClass::Bridge
},
if native_ios {
CarrierCapabilities::ios()
} else {
capabilities
},
attempt,
failure,
user_agent_hash,
))
}
(None, Some(attempt)) if strict_browser_hint(request, host) => {
if (attempt == 1) != failure.is_none() {
return None;
}
Some(CarrierRequest::automatic(
if native_ios {
CarrierClientClass::Ios
} else {
CarrierClientClass::BrowserHint
},
if native_ios {
CarrierCapabilities::ios()
} else {
CarrierCapabilities::all()
},
attempt,
failure,
user_agent_hash,
))
}
_ => None,
}
}
fn native_ios_user_agent<B>(request: &Request<B>) -> bool {
single_header(request, header::USER_AGENT).is_some_and(|value| {
let value = value.to_ascii_lowercase();
value.contains("cfnetwork/") && value.contains("darwin/")
})
}
fn parse_capabilities(value: &str) -> Option<CarrierCapabilities> {
let mut bits = 0u8;
let mut previous = None;
for token in value.split(',') {
let index = match token {
"https" => 0,
"https-lanes" => 1,
"websocket" => 2,
"websocket-lanes" => 3,
_ => return None,
};
if previous.is_some_and(|previous| index <= previous) {
return None;
}
previous = Some(index);
bits |= 1 << index;
}
CarrierCapabilities::from_bits(bits)
}
fn strict_browser_hint<B>(request: &Request<B>, host: &str) -> bool {
single_header(request, header::ORIGIN)
.is_some_and(|value| value == format!("https://{host}"))
&& single_header(request, "sec-fetch-site") == Some("same-origin")
&& single_header(request, "sec-fetch-mode") == Some("cors")
&& single_header(request, "sec-fetch-dest") == Some("empty")
}
fn optional_canonical_u8_header<B>(
request: &Request<B>,
name: &'static str,
) -> Option<Option<u8>> {
if !request.headers().contains_key(name) {
return Some(None);
}
canonical_u64_header(request, name)
.and_then(|value| u8::try_from(value).ok())
.filter(|value| (1..=4).contains(value))
.map(Some)
}
fn optional_failure_header<B>(request: &Request<B>) -> Option<Option<CarrierFailure>> {
if !request.headers().contains_key("x-carrier-failure") {
return Some(None);
}
single_header(request, "x-carrier-failure")
.and_then(CarrierFailure::parse)
.map(Some)
}
fn normalized_user_agent_hash<B>(request: &Request<B>) -> Option<[u8; 32]> {
let user_agent = match single_header(request, header::USER_AGENT) {
Some(value) => value.as_bytes(),
None if !request.headers().contains_key(header::USER_AGENT) => &[],
None => return None,
};
let mut digest = Sha256::new();
digest.update(USER_AGENT_CONTEXT);
let mut emitted = false;
let mut pending_whitespace = false;
for &byte in user_agent {
if byte.is_ascii_whitespace() {
pending_whitespace = emitted;
} else {
if pending_whitespace {
digest.update([b' ']);
}
digest.update([byte.to_ascii_lowercase()]);
emitted = true;
pending_whitespace = false;
}
}
Some(digest.finalize().into())
}
fn single_header<B>(request: &Request<B>, name: impl header::AsHeaderName) -> Option<&str> {
let mut values = request.headers().get_all(name).iter();
let value = values.next()?.to_str().ok()?;
values.next().is_none().then_some(value)
}
#[cfg(test)]
mod tests {
use super::*;
use ipnetwork::IpNetwork;
use crate::config::{WebCarrier, WebClientIpSource};
#[test]
fn canonical_bridge_query_rejects_aliases() {
let token = base64::engine::general_purpose::URL_SAFE_NO_PAD.encode([7u8; 32]);
assert!(bridge_candidate(Some(&format!("bridge={token}"))).1);
assert!(!bridge_candidate(Some(&format!("x=1&bridge={token}"))).1);
assert!(!bridge_candidate(Some(&format!("bridge={token}="))).1);
}
#[test]
fn host_is_canonical_and_forwarded_identity_is_single_parseable_ip() {
let request = Request::builder()
.header(header::HOST, "proxy.example.com:443")
.header("x-forwarded-for", "192.0.2.10")
.body(())
.unwrap();
assert_eq!(canonical_request_host(&request), Some("proxy.example.com"));
let trusted: [IpNetwork; 1] = ["127.0.0.1/32".parse().unwrap()];
assert_eq!(
client_ip(
&request,
"127.0.0.1:40000".parse().unwrap(),
WebClientIpSource::XForwardedFor,
&trusted,
),
Some("192.0.2.10".parse().unwrap())
);
let expanded_ipv6 = Request::builder()
.header("x-forwarded-for", "2001:0db8:0:0:0:0:0:10")
.body(())
.unwrap();
assert_eq!(
client_ip(
&expanded_ipv6,
"127.0.0.1:40000".parse().unwrap(),
WebClientIpSource::XForwardedFor,
&trusted,
),
Some("2001:db8::10".parse().unwrap())
);
let without_forwarded_address = Request::builder().body(()).unwrap();
assert_eq!(
client_ip(
&without_forwarded_address,
"127.0.0.1:40000".parse().unwrap(),
WebClientIpSource::XForwardedFor,
&trusted,
),
Some("127.0.0.1".parse().unwrap())
);
let empty_forwarded_address = Request::builder()
.header("x-forwarded-for", "")
.body(())
.unwrap();
assert_eq!(
client_ip(
&empty_forwarded_address,
"127.0.0.1:40000".parse().unwrap(),
WebClientIpSource::XForwardedFor,
&trusted,
),
Some("127.0.0.1".parse().unwrap())
);
let uppercase = Request::builder()
.header(header::HOST, "Proxy.Example.com")
.body(())
.unwrap();
assert!(canonical_request_host(&uppercase).is_none());
let appended = Request::builder()
.header("x-forwarded-for", "192.0.2.10, 198.51.100.4")
.body(())
.unwrap();
assert!(
client_ip(
&appended,
"127.0.0.1:40000".parse().unwrap(),
WebClientIpSource::XForwardedFor,
&trusted,
)
.is_none()
);
}
#[test]
fn bearer_and_sequence_headers_reject_noncanonical_aliases() {
let token = base64::engine::general_purpose::URL_SAFE_NO_PAD.encode([1u8; 32]);
let request = Request::builder()
.header(header::AUTHORIZATION, format!("Bearer {token}"))
.header("x-up-seq", "17")
.body(())
.unwrap();
assert_eq!(
bearer_token_hash(&request),
Some(Sha256::digest([1u8; 32]).into())
);
assert_eq!(canonical_u64_header(&request, "x-up-seq"), Some(17));
let leading_zero = Request::builder()
.header("x-up-seq", "017")
.body(())
.unwrap();
assert!(canonical_u64_header(&leading_zero, "x-up-seq").is_none());
}
#[test]
fn cookie_header_accepts_only_absent_or_one_empty_value() {
let absent = Request::new(());
assert!(compatible_cookie_header(&absent));
let empty = Request::builder()
.header(header::COOKIE, "")
.body(())
.unwrap();
assert!(compatible_cookie_header(&empty));
let nonempty = Request::builder()
.header(header::COOKIE, "state=unexpected")
.body(())
.unwrap();
assert!(!compatible_cookie_header(&nonempty));
let whitespace = Request::builder()
.header(header::COOKIE, " ")
.body(())
.unwrap();
assert!(!compatible_cookie_header(&whitespace));
let mut duplicate_empty = Request::new(());
duplicate_empty
.headers_mut()
.append(header::COOKIE, "".parse().unwrap());
duplicate_empty
.headers_mut()
.append(header::COOKIE, "".parse().unwrap());
assert!(!compatible_cookie_header(&duplicate_empty));
let mut duplicate_mixed = Request::new(());
duplicate_mixed
.headers_mut()
.append(header::COOKIE, "".parse().unwrap());
duplicate_mixed
.headers_mut()
.append(header::COOKIE, "state=unexpected".parse().unwrap());
assert!(!compatible_cookie_header(&duplicate_mixed));
}
#[test]
fn carrier_metadata_is_canonical_and_legacy_safe() {
let automatic = Request::builder()
.header(
"x-carrier-capabilities",
"https,https-lanes,websocket,websocket-lanes",
)
.header("x-carrier-attempt", "2")
.header("x-carrier-failure", "timeout")
.header(header::USER_AGENT, "Example Browser")
.body(())
.unwrap();
let parsed = carrier_request(&automatic, "proxy.example.com").unwrap();
assert!(parsed.is_automatic());
assert_eq!(parsed.attempt(), Some(2));
assert_eq!(parsed.failure(), Some(CarrierFailure::Timeout));
let missing_failure = Request::builder()
.header(
"x-carrier-capabilities",
"https,https-lanes,websocket,websocket-lanes",
)
.header("x-carrier-attempt", "2")
.body(())
.unwrap();
assert!(carrier_request(&missing_failure, "proxy.example.com").is_none());
let legacy = Request::builder()
.header(header::USER_AGENT, "Native")
.body(())
.unwrap();
assert!(!carrier_request(&legacy, "proxy.example.com")
.unwrap()
.is_automatic());
let reordered = Request::builder()
.header("x-carrier-capabilities", "websocket,https")
.header("x-carrier-attempt", "1")
.body(())
.unwrap();
assert!(carrier_request(&reordered, "proxy.example.com").is_none());
}
#[test]
fn native_ios_capability_claims_cannot_enable_parallel_carriers() {
let request = Request::builder()
.header(
"x-carrier-capabilities",
"https,https-lanes,websocket,websocket-lanes",
)
.header("x-carrier-attempt", "1")
.header(
header::USER_AGENT,
"Telemt/1 CFNetwork/1498.700.2 Darwin/23.6.0",
)
.body(())
.unwrap();
let parsed = carrier_request(&request, "proxy.example.com").unwrap();
assert_eq!(parsed.class(), CarrierClientClass::Ios);
assert!(parsed.supports(WebCarrier::Https));
assert!(!parsed.supports(WebCarrier::HttpsLanes));
assert!(!parsed.supports(WebCarrier::Websocket));
assert!(!parsed.supports(WebCarrier::WebsocketLanes));
}
#[test]
fn mapped_private_addresses_are_not_learning_evidence() {
for address in ["::ffff:127.0.0.1", "::ffff:10.0.0.1"] {
let effective_ip = address.parse().unwrap();
let request = Request::builder()
.header("x-forwarded-for", address)
.body(())
.unwrap();
assert!(!carrier_ip_learning_eligible(&request, effective_ip));
}
let effective_ip = "::ffff:8.8.8.8".parse().unwrap();
let request = Request::builder()
.header("x-forwarded-for", "::ffff:8.8.8.8")
.body(())
.unwrap();
assert!(carrier_ip_learning_eligible(&request, effective_ip));
}
#[test]
fn strict_browser_metadata_recovers_a_stripped_capability_marker() {
let request = Request::builder()
.header("x-carrier-attempt", "1")
.header(header::ORIGIN, "https://proxy.example.com")
.header("sec-fetch-site", "same-origin")
.header("sec-fetch-mode", "cors")
.header("sec-fetch-dest", "empty")
.body(())
.unwrap();
let parsed = carrier_request(&request, "proxy.example.com").unwrap();
assert_eq!(parsed.class(), CarrierClientClass::BrowserHint);
}
#[test]
fn user_agent_learning_key_is_case_and_whitespace_normalized() {
let first = Request::builder()
.header(header::USER_AGENT, " Example\t Browser ")
.body(())
.unwrap();
let second = Request::builder()
.header(header::USER_AGENT, "example browser")
.body(())
.unwrap();
assert_eq!(
normalized_user_agent_hash(&first),
normalized_user_agent_hash(&second)
);
}
}