2022-03-12 17:31:53 +01:00
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use api::connection_capnp::bootstrap;
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2022-05-05 15:50:44 +02:00
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pub use api::connection_capnp::bootstrap::Client;
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use std::net::SocketAddr;
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2022-03-12 17:31:53 +01:00
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use crate::authentication::AuthenticationHandle;
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use crate::capnp::authenticationsystem::Authentication;
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use crate::session::SessionManager;
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2022-05-05 15:50:44 +02:00
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use capnp::capability::Promise;
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use capnp_rpc::pry;
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use rsasl::mechname::Mechname;
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2022-03-11 22:13:54 +01:00
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/// Cap'n Proto API Handler
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2022-03-12 17:31:53 +01:00
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pub struct BootCap {
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2022-03-15 19:56:41 +01:00
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peer_addr: SocketAddr,
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2022-03-12 17:31:53 +01:00
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authentication: AuthenticationHandle,
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sessionmanager: SessionManager,
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}
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2022-03-11 22:13:54 +01:00
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impl BootCap {
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2022-05-05 15:50:44 +02:00
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pub fn new(
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peer_addr: SocketAddr,
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authentication: AuthenticationHandle,
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sessionmanager: SessionManager,
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) -> Self {
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2022-03-15 19:56:41 +01:00
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tracing::trace!(%peer_addr, "bootstrapping RPC");
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2022-03-12 17:31:53 +01:00
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Self {
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2022-03-15 19:56:41 +01:00
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peer_addr,
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2022-03-12 17:31:53 +01:00
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authentication,
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sessionmanager,
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}
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2022-03-11 22:13:54 +01:00
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}
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}
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2022-03-12 17:31:53 +01:00
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impl bootstrap::Server for BootCap {
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fn get_a_p_i_version(
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&mut self,
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_: bootstrap::GetAPIVersionParams,
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_: bootstrap::GetAPIVersionResults,
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) -> Promise<(), ::capnp::Error> {
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2022-03-15 19:56:41 +01:00
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let span = tracing::trace_span!("get_api_version", peer_addr=%self.peer_addr);
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let _guard = span.enter();
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2022-03-12 17:31:53 +01:00
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Promise::ok(())
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}
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fn get_server_release(
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&mut self,
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_: bootstrap::GetServerReleaseParams,
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mut result: bootstrap::GetServerReleaseResults,
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) -> Promise<(), ::capnp::Error> {
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2022-03-15 19:56:41 +01:00
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let span = tracing::trace_span!("get_server_release", peer_addr=%self.peer_addr);
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let _guard = span.enter();
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2022-03-12 17:31:53 +01:00
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let mut builder = result.get();
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builder.set_name("bffhd");
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2022-05-14 15:36:32 +02:00
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builder.set_release(crate::env::VERSION);
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2022-03-12 17:31:53 +01:00
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Promise::ok(())
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}
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fn mechanisms(
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&mut self,
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_params: bootstrap::MechanismsParams,
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mut result: bootstrap::MechanismsResults,
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) -> Promise<(), ::capnp::Error> {
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2022-03-15 19:56:41 +01:00
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let span = tracing::trace_span!("mechanisms", peer_addr=%self.peer_addr);
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let _guard = span.enter();
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tracing::trace!("mechanisms");
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2022-03-15 20:00:43 +01:00
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let builder = result.get();
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2022-05-05 15:50:44 +02:00
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let mechs: Vec<_> = self
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.authentication
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.list_available_mechs()
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.into_iter()
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.map(|m| m.as_str())
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.collect();
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let mut mechbuilder = builder.init_mechs(mechs.len() as u32);
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for (i, m) in mechs.iter().enumerate() {
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mechbuilder.set(i as u32, m);
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}
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Promise::ok(())
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}
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fn create_session(
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&mut self,
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params: bootstrap::CreateSessionParams,
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mut result: bootstrap::CreateSessionResults,
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) -> Promise<(), ::capnp::Error> {
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2022-03-15 19:56:41 +01:00
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let span = tracing::trace_span!("create_session", peer_addr=%self.peer_addr);
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let _guard = span.enter();
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2022-03-12 17:31:53 +01:00
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let params = pry!(params.get());
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let mechanism: &str = pry!(params.get_mechanism());
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tracing::trace!(mechanism);
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let mechname = Mechname::new(mechanism.as_bytes());
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let auth = if let Ok(mechname) = mechname {
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if let Ok(session) = self.authentication.start(mechname) {
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Authentication::new(session, self.sessionmanager.clone())
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} else {
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Authentication::invalid_mechanism()
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}
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} else {
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Authentication::invalid_mechanism()
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};
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let mut builder = result.get();
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builder.set_authentication(capnp_rpc::new_client(auth));
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Promise::ok(())
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}
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}
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