344 lines
11 KiB
Rust
344 lines
11 KiB
Rust
use async_trait::async_trait;
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use iota_connection::connection_handler::{PeerRouter, RouteDestination, RouteError, RouteOutcome};
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use iota_connection::federated_relay::FederatedRelayV2;
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use iota_connection::relay_service::{RelayNodeIdentity, RelayService};
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use iota_identity::{
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AuthorityLocator, IdentityError, IdentityResolver, IotaNodeId, LocalNodeIdentity,
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LocalUserDescriptor, LocalUserId, LocalUserStore, PrincipalDescriptor, PrincipalHandle,
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PrincipalHome, PrincipalId, PrincipalStore, PublicKeyBundle, ResolutionContext,
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ResolvedPrincipal, SignedPrincipalDescriptor, UserAddress,
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};
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use iota_storage::identity::SqlitePrincipalStore;
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use iota_storage::util::{chat_files, e2ee_storage};
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use mtp::codec::{CommunicationType, CommunicationValue, DataType, DataValue};
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use mtp::crypto::Keyring;
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use mtp::host::{AuthenticationPolicy, HostConfig};
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use mtp::webserver::{MTPWebServer, WebServerConfig};
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use other_iota::LocalDeliverySink;
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use other_iota::relay_router::{RelayRouterClient, RelayRouterService};
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use std::net::{IpAddr, Ipv4Addr};
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use std::sync::{Arc, Mutex};
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struct StoreResolver;
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#[async_trait]
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impl IdentityResolver for StoreResolver {
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async fn resolve_address(
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&self,
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_: &UserAddress,
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_: &ResolutionContext,
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) -> Result<ResolvedPrincipal, IdentityError> {
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Err(IdentityError::NotFound)
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}
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async fn resolve_principal(
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&self,
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principal: &PrincipalId,
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) -> Result<ResolvedPrincipal, IdentityError> {
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SqlitePrincipalStore
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.get_by_canonical_id(principal)?
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.ok_or(IdentityError::NotFound)
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}
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async fn signing_keys(
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&self,
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principal: &PrincipalId,
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_: &ResolutionContext,
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) -> Result<Vec<PublicKeyBundle>, IdentityError> {
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SqlitePrincipalStore.signing_keys(principal)
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}
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}
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struct HostedRecipient(PrincipalHandle);
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impl LocalUserStore for HostedRecipient {
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fn get_local_user(&self, _: LocalUserId) -> Result<Option<LocalUserDescriptor>, IdentityError> {
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Ok(None)
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}
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fn get_local_user_by_username(
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&self,
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_: &str,
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) -> Result<Option<LocalUserDescriptor>, IdentityError> {
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Ok(None)
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}
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fn is_hosted_here(&self, user: LocalUserId) -> Result<bool, IdentityError> {
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Ok(user == LocalUserId(1))
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}
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fn local_user_for_principal(
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&self,
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principal: PrincipalHandle,
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) -> Result<Option<LocalUserId>, IdentityError> {
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Ok((principal == self.0).then_some(LocalUserId(1)))
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}
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fn principal_for_local_user(
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&self,
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user: LocalUserId,
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) -> Result<Option<PrincipalHandle>, IdentityError> {
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Ok((user == LocalUserId(1)).then_some(self.0))
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}
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}
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struct TestNodeIdentity(LocalNodeIdentity);
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#[async_trait]
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impl RelayNodeIdentity for TestNodeIdentity {
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async fn keyring(&self) -> Option<Arc<Keyring>> {
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Some(self.0.keyring())
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}
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fn node_id(&self) -> Option<IotaNodeId> {
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Some(self.0.node_id().clone())
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}
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}
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struct NoRoute;
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#[async_trait]
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impl PeerRouter for NoRoute {
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async fn route(
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&self,
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destination: &RouteDestination,
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_: CommunicationValue,
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) -> Result<RouteOutcome, RouteError> {
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match destination {
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RouteDestination::Iota(node) => Err(RouteError::NoRoute(node.clone())),
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RouteDestination::LegacyOmegaIota { .. } => Ok(RouteOutcome::Retryable {
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reason: "legacy route is unavailable".into(),
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}),
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}
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}
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}
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#[derive(Default)]
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struct Deliveries(Mutex<Vec<(PrincipalHandle, CommunicationValue)>>);
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#[async_trait]
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impl LocalDeliverySink for Deliveries {
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async fn deliver(&self, recipient: PrincipalHandle, frame: CommunicationValue) {
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self.0.lock().unwrap().push((recipient, frame));
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}
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}
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fn verified_principal(
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authority: &LocalNodeIdentity,
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user: &Keyring,
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) -> iota_identity::VerifiedPrincipalDescriptor {
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let now = iota_storage::util::sync::now_millis();
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SignedPrincipalDescriptor::sign(
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PrincipalDescriptor {
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principal: PrincipalId {
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authority: authority.authority_id().clone(),
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user_id: 1,
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},
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authority_kind: iota_identity::AuthorityKind::Iota,
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username: Some("alice".into()),
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display_name: None,
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public_keys: vec![user.public_key_bundle()],
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home: PrincipalHome::Iota(authority.node_id().clone()),
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revision: 1,
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valid_until: Some(now + 60_000),
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issued_at: now,
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},
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&authority.keyring(),
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)
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.unwrap()
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.verify(
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authority.authority_id(),
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&authority.public_keys(),
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None,
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now,
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)
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.unwrap()
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}
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fn certificate() -> (Vec<u8>, Vec<u8>) {
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let key_pair = rcgen::KeyPair::generate().unwrap();
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let params =
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rcgen::CertificateParams::new(vec!["localhost".into(), "127.0.0.1".into()]).unwrap();
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let certificate = params.self_signed(&key_pair).unwrap();
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(
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certificate.pem().into_bytes(),
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key_pair.serialize_pem().into_bytes(),
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)
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}
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#[tokio::test(flavor = "multi_thread", worker_threads = 4)]
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async fn authenticated_router_forwards_opaque_relay_v2() {
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let storage = tempfile::tempdir().unwrap();
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iota_util::file_util::configure_storage_directory(storage.path().to_owned());
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iota_storage::util::db::initialize_database().unwrap();
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let iota_a = LocalNodeIdentity::from_keyring(Keyring::generate()).unwrap();
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let iota_b = LocalNodeIdentity::from_keyring(Keyring::generate()).unwrap();
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let user_a = Keyring::generate();
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let user_b = Keyring::generate();
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let principal_a = verified_principal(&iota_a, &user_a);
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let principal_b = verified_principal(&iota_b, &user_b);
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let handle_a = SqlitePrincipalStore
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.upsert_remote_descriptor(&principal_a)
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.unwrap();
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let handle_b = SqlitePrincipalStore
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.upsert_remote_descriptor(&principal_b)
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.unwrap();
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let chat_id = e2ee_storage::principal_chat_id(handle_a, handle_b).unwrap();
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e2ee_storage::put_chat_secret(e2ee_storage::StoredChatSecret {
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user_id: "1".into(),
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secret_id: e2ee_storage::principal_secret_id(&chat_id),
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chat_id,
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version: 1,
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encrypted_secret: vec![1],
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kem_ciphertext: vec![2],
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wrapping_scheme: "test".into(),
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created_at: 1,
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updated_at: 1,
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})
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.unwrap();
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let relay = Arc::new(
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RelayService::new(Arc::new(HostedRecipient(handle_b)), Arc::new(NoRoute), None)
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.with_federation(
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Arc::new(StoreResolver),
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Arc::new(TestNodeIdentity(iota_b.clone())),
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),
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);
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let deliveries = Arc::new(Deliveries::default());
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let router = Arc::new(RelayRouterService::default());
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let router_keyring = Keyring::generate();
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let router_public_key = router_keyring.public_key_bundle();
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let key_a = iota_a.public_keys();
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let key_b = iota_b.public_keys();
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let hint_a = iota_a.node_id().mtp_authentication_hint();
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let hint_b = iota_b.node_id().mtp_authentication_hint();
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let (certificate, private_key) = certificate();
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let host = HostConfig::new(
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IpAddr::V4(Ipv4Addr::LOCALHOST),
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0,
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certificate.clone(),
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private_key,
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)
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.with_authentication(
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router_keyring,
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Box::new(move |client_id, _| {
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let key = if client_id == hint_a {
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Some(key_a.clone())
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} else if client_id == hint_b {
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Some(key_b.clone())
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} else {
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None
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};
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Box::pin(async move { key })
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}),
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Box::new(|_, _| Box::pin(async { 0 })),
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)
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.with_authentication_policy(AuthenticationPolicy::ForceAuthentication);
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let mut server = MTPWebServer::new(host, WebServerConfig::new())
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.await
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.unwrap();
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let endpoint = AuthorityLocator::new(server.local_addr().to_string()).unwrap();
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let server_task = {
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let router = router.clone();
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tokio::spawn(async move {
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loop {
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match server.accept().await {
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Ok(Some(connection)) => {
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let router = router.clone();
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tokio::spawn(async move {
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web_server::MtpConnectionHandler::accept(router.as_ref(), connection)
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.await;
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});
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}
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Ok(None) => break,
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Err(_) => continue,
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}
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}
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})
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};
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let iota_a_router = RelayRouterClient::connect(
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iota_a.clone(),
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&endpoint,
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certificate.clone(),
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router_public_key.clone(),
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relay.clone(),
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deliveries.clone(),
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)
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.await
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.unwrap();
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tokio::time::timeout(std::time::Duration::from_secs(5), async {
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while !router.has_connection(iota_a.node_id()) {
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tokio::task::yield_now().await;
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}
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})
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.await
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.unwrap();
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let frame = FederatedRelayV2::sign(
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principal_a.descriptor().principal.clone(),
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principal_b.descriptor().principal.clone(),
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iota_b.node_id().clone(),
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"through-router".into(),
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10,
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CommunicationValue::new(CommunicationType::MessageSend)
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.add_typed_default(DataType::Content, DataValue::Str("opaque".into()))
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.add_typed_default(DataType::SendTime, DataValue::SignedNumber(10))
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.add_typed_default(DataType::VersionNumber, DataValue::SignedNumber(1)),
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&user_a,
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)
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.unwrap()
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.into_frame(7)
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.unwrap();
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assert!(matches!(
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iota_a_router
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.route(
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&RouteDestination::Iota(iota_b.node_id().clone()),
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frame.clone(),
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)
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.await
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.unwrap(),
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RouteOutcome::Retryable { .. }
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));
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let _iota_b_router = RelayRouterClient::connect(
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iota_b.clone(),
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&endpoint,
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certificate,
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router_public_key,
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relay,
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deliveries.clone(),
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)
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.await
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.unwrap();
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tokio::time::timeout(std::time::Duration::from_secs(5), async {
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while !router.has_connection(iota_b.node_id()) {
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tokio::task::yield_now().await;
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}
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})
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.await
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.unwrap();
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let outcome = iota_a_router
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.route(&RouteDestination::Iota(iota_b.node_id().clone()), frame)
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.await
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.unwrap();
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assert!(
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matches!(
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&outcome,
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RouteOutcome::Accepted {
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relay_message_id,
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..
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} if relay_message_id == "through-router"
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),
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"unexpected router outcome: {outcome:?}"
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);
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let messages = chat_files::get_messages_for_principal(1, handle_a, 0, 10).unwrap();
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assert_eq!(messages.len(), 1);
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assert_eq!(messages[0].content, "opaque");
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let delivered = deliveries.0.lock().unwrap();
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assert_eq!(delivered.len(), 1);
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assert_eq!(delivered[0].0, handle_b);
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server_task.abort();
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}
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