fix(gateway): require announced MAC before LAN injection
The relay already enforces client source MAC identity before forwarding, but this gateway bridge could still write any safety-clean relayed frame to AF_PACKET. That left the final physical-LAN boundary depending entirely on the relay forwarding path. Keep a lifecycle-seeded remote client table in the gateway bridge and reject relay frames whose datagram peer id is unknown or whose Ethernet source MAC does not match the announced client MAC. CAM refresh now uses the same announced table instead of learning source MACs from relay traffic. This is conservative: if data arrives before the lifecycle event, the gateway drops that frame with UnauthorizedSourceMac. Later packets proceed after the control event is processed. Test Plan: - cargo test -p lanparty-gateway connects_to_relay_control_stream_as_gateway - cargo test -p lanparty-gateway - cargo test --workspace - cargo clippy --workspace --all-targets -- -D warnings - cargo fmt --check - git diff --check Refs: PLAN.md safety filters; TESTING.md MVP acceptance guide
This commit is contained in:
@@ -184,7 +184,8 @@ never fragments Ethernet frames; LAN frames with invalid source MACs, L2
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control-plane traffic, jumbo frames, or encoded datagrams exceeding the
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control-plane traffic, jumbo frames, or encoded datagrams exceeding the
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negotiated QUIC budget are counted, dropped, and logged locally instead of
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negotiated QUIC budget are counted, dropped, and logged locally instead of
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stopping the bridge or consuming relay bandwidth. Remote frames received from
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stopping the bridge or consuming relay bandwidth. Remote frames received from
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the relay are safety-checked again before LAN injection, so invalid-source,
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the relay are safety-checked again before LAN injection and must use the
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announced virtual MAC for their source peer, so invalid-source, forged-source,
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L2 control-plane, remote VLAN, DHCP-server, IPv6 Router Advertisement, IPv6
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L2 control-plane, remote VLAN, DHCP-server, IPv6 Router Advertisement, IPv6
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fragment, and jumbo frames cannot cross the gateway's final physical-LAN
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fragment, and jumbo frames cannot cross the gateway's final physical-LAN
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boundary even if they reached the gateway over QUIC.
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boundary even if they reached the gateway over QUIC.
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@@ -192,9 +193,9 @@ boundary even if they reached the gateway over QUIC.
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The gateway rejects Linux interfaces that sysfs identifies as Wi-Fi, and rejects
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The gateway rejects Linux interfaces that sysfs identifies as Wi-Fi, and rejects
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wired interfaces whose sysfs carrier state reports no link; managed wireless
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wired interfaces whose sysfs carrier state reports no link; managed wireless
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NICs are not supported for the physical LAN bridge.
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NICs are not supported for the physical LAN bridge.
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It tracks remote-client source MACs seen from relay traffic and periodically
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It tracks remote-client MACs from relay lifecycle events and periodically emits
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emits small CAM refresh frames so the physical switch keeps those MACs
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small CAM refresh frames so the physical switch keeps those MACs associated
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associated with the gateway port. Gateway
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with the gateway port. Gateway
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frame logs include direction, peer id when present, MACs, ethertype/length,
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frame logs include direction, peer id when present, MACs, ethertype/length,
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frame length, action, and drop reason. The gateway also tracks frame/datagram
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frame length, action, and drop reason. The gateway also tracks frame/datagram
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counters and periodically sends stats snapshots to the relay. Malformed or runt
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counters and periodically sends stats snapshots to the relay. Malformed or runt
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@@ -220,6 +220,10 @@ drop_reason=Ipv6RouterAdvertisement
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drop_reason=Ipv6Fragment
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drop_reason=Ipv6Fragment
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```
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```
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On gateway `RemoteToLan` logs, `UnauthorizedSourceMac` means the relayed peer id
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did not match the client MAC announced by lifecycle events. If it repeats,
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check relay lifecycle logs and duplicate-MAC rejection first.
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## Troubleshooting
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## Troubleshooting
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If the client says `Waiting for LAN gateway`, check that the gateway uses the
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If the client says `Waiting for LAN gateway`, check that the gateway uses the
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@@ -291,7 +291,7 @@ impl GatewayConnection {
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#[cfg(target_os = "linux")]
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#[cfg(target_os = "linux")]
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pub async fn bridge_until_shutdown(self, packet_socket: PacketSocket) -> Result<()> {
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pub async fn bridge_until_shutdown(self, packet_socket: PacketSocket) -> Result<()> {
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let mut cam_refresh = CamRefresh::new(packet_socket.interface_mac());
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let mut remote_clients = RemoteClientTable::new(packet_socket.interface_mac());
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let mut cam_refresh_tick = tokio::time::interval_at(
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let mut cam_refresh_tick = tokio::time::interval_at(
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tokio::time::Instant::now() + CAM_REFRESH_INTERVAL,
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tokio::time::Instant::now() + CAM_REFRESH_INTERVAL,
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CAM_REFRESH_INTERVAL,
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CAM_REFRESH_INTERVAL,
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@@ -375,8 +375,24 @@ impl GatewayConnection {
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relay_frame = recv_gateway_ethernet_outcome(&connection, &welcome, &stats) => {
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relay_frame = recv_gateway_ethernet_outcome(&connection, &welcome, &stats) => {
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match relay_frame? {
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match relay_frame? {
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GatewayReceiveOutcome::Accepted(relay_frame) => {
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GatewayReceiveOutcome::Accepted(relay_frame) => {
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cam_refresh
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if let Some(drop_reason) = remote_clients.relay_frame_drop_reason(
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.observe_remote_frame(relay_frame.source_peer_id(), relay_frame.payload())?;
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relay_frame.source_peer_id(),
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relay_frame.payload(),
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)? {
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stats.record_dropped_frame();
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println!(
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"{}",
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gateway_frame_log_line(
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packet_socket.get_ref().interface(),
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FrameDirection::RemoteToLan,
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Some(relay_frame.source_peer_id()),
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relay_frame.payload(),
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FrameAction::Filtered,
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Some(drop_reason),
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)
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);
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continue;
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}
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write_lan_ethernet(&packet_socket, relay_frame.payload()).await?;
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write_lan_ethernet(&packet_socket, relay_frame.payload()).await?;
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println!(
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println!(
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"{}",
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"{}",
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@@ -406,7 +422,7 @@ impl GatewayConnection {
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}
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}
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}
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}
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_ = cam_refresh_tick.tick() => {
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_ = cam_refresh_tick.tick() => {
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for frame in cam_refresh.refresh_frames() {
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for frame in remote_clients.refresh_frames() {
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write_lan_ethernet(&packet_socket, &frame).await?;
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write_lan_ethernet(&packet_socket, &frame).await?;
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}
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}
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}
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}
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@@ -419,7 +435,7 @@ impl GatewayConnection {
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let control_stream = control_stream
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let control_stream = control_stream
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.context("failed to accept gateway control event stream")?;
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.context("failed to accept gateway control event stream")?;
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let control_event = read_gateway_control_event(control_stream).await?;
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let control_event = read_gateway_control_event(control_stream).await?;
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cam_refresh.observe_control_event(&control_event);
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remote_clients.observe_control_event(&control_event);
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println!("{}", format_gateway_control_event(&control_event));
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println!("{}", format_gateway_control_event(&control_event));
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}
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}
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}
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}
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@@ -782,13 +798,13 @@ async fn write_lan_ethernet(packet_socket: &AsyncFd<PacketSocket>, frame: &[u8])
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#[cfg(target_os = "linux")]
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#[cfg(target_os = "linux")]
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#[derive(Debug, Clone)]
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#[derive(Debug, Clone)]
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struct CamRefresh {
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struct RemoteClientTable {
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gateway_mac: MacAddr,
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gateway_mac: MacAddr,
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remote_clients: BTreeMap<u32, MacAddr>,
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remote_clients: BTreeMap<u32, MacAddr>,
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}
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}
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#[cfg(target_os = "linux")]
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#[cfg(target_os = "linux")]
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impl CamRefresh {
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impl RemoteClientTable {
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fn new(gateway_mac: MacAddr) -> Self {
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fn new(gateway_mac: MacAddr) -> Self {
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Self {
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Self {
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gateway_mac,
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gateway_mac,
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@@ -796,14 +812,16 @@ impl CamRefresh {
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}
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}
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}
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}
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fn observe_remote_frame(&mut self, peer_id: u32, frame: &[u8]) -> Result<()> {
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fn relay_frame_drop_reason(&self, peer_id: u32, frame: &[u8]) -> Result<Option<DropReason>> {
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let frame = EthernetFrame::parse(frame).context("relay Ethernet frame is malformed")?;
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let frame = EthernetFrame::parse(frame).context("relay Ethernet frame is malformed")?;
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let source = frame.source();
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let Some(expected_source) = self.remote_clients.get(&peer_id) else {
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if source.is_valid_client_identity() {
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return Ok(Some(DropReason::UnauthorizedSourceMac));
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self.remote_clients.insert(peer_id, source);
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};
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if frame.source() != *expected_source {
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return Ok(Some(DropReason::UnauthorizedSourceMac));
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}
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}
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Ok(())
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Ok(None)
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}
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}
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fn observe_control_event(&mut self, event: &ControlMessage) {
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fn observe_control_event(&mut self, event: &ControlMessage) {
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@@ -817,6 +835,7 @@ impl CamRefresh {
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fn observe_peer_joined(&mut self, peer: &PeerInfo) {
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fn observe_peer_joined(&mut self, peer: &PeerInfo) {
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if peer.role() == Role::Client
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if peer.role() == Role::Client
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&& let Some(mac) = peer.mac()
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&& let Some(mac) = peer.mac()
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&& mac.is_valid_client_identity()
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{
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{
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self.remote_clients.insert(peer.peer_id(), mac);
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self.remote_clients.insert(peer.peer_id(), mac);
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}
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}
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@@ -1012,6 +1031,8 @@ mod tests {
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let endpoint = Endpoint::server(server_config, "127.0.0.1:0".parse().unwrap()).unwrap();
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let endpoint = Endpoint::server(server_config, "127.0.0.1:0".parse().unwrap()).unwrap();
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let server_addr = endpoint.local_addr().unwrap();
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let server_addr = endpoint.local_addr().unwrap();
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let (stats_received_tx, stats_received_rx) = tokio::sync::oneshot::channel();
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let (stats_received_tx, stats_received_rx) = tokio::sync::oneshot::channel();
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let remote_client_mac = MacAddr::new([0x02, 0, 0, 0, 0, 9]);
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let server_remote_client_mac = remote_client_mac;
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let server_task = tokio::spawn(async move {
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let server_task = tokio::spawn(async move {
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let incoming = endpoint.accept().await.unwrap();
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let incoming = endpoint.accept().await.unwrap();
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let connection = incoming.await.unwrap();
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let connection = incoming.await.unwrap();
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@@ -1033,7 +1054,7 @@ mod tests {
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send.finish().unwrap();
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send.finish().unwrap();
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let joined = encode_control_message(&ControlMessage::PeerJoined(
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let joined = encode_control_message(&ControlMessage::PeerJoined(
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PeerInfo::new(99, Role::Client, Some(MacAddr::new([0x02, 0, 0, 0, 0, 9]))).unwrap(),
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PeerInfo::new(99, Role::Client, Some(server_remote_client_mac)).unwrap(),
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))
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))
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.unwrap();
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.unwrap();
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let mut event_send = connection.open_uni().await.unwrap();
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let mut event_send = connection.open_uni().await.unwrap();
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@@ -1065,7 +1086,7 @@ mod tests {
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7,
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7,
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99,
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99,
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0,
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0,
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ðernet_frame(b"from relay"),
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ðernet_frame_from(server_remote_client_mac, b"from relay"),
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)
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)
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.unwrap();
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.unwrap();
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connection.send_datagram(Bytes::from(response)).unwrap();
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connection.send_datagram(Bytes::from(response)).unwrap();
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@@ -1121,7 +1142,7 @@ mod tests {
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};
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};
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assert_eq!(peer.peer_id(), 99);
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assert_eq!(peer.peer_id(), 99);
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assert_eq!(peer.role(), Role::Client);
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assert_eq!(peer.role(), Role::Client);
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assert_eq!(peer.mac(), Some(MacAddr::new([0x02, 0, 0, 0, 0, 9])));
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assert_eq!(peer.mac(), Some(remote_client_mac));
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assert!(
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assert!(
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gateway
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gateway
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@@ -1139,7 +1160,10 @@ mod tests {
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.unwrap()
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.unwrap()
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.unwrap();
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.unwrap();
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assert_eq!(received.source_peer_id(), 99);
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assert_eq!(received.source_peer_id(), 99);
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assert_eq!(received.payload(), ethernet_frame(b"from relay").as_slice());
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assert_eq!(
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received.payload(),
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ethernet_frame_from(remote_client_mac, b"from relay").as_slice()
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);
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assert!(gateway.send_ethernet(&[0; 4]).is_err());
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assert!(gateway.send_ethernet(&[0; 4]).is_err());
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let oversized_payload = vec![0; usize::from(gateway.quic_max_datagram_size())];
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let oversized_payload = vec![0; usize::from(gateway.quic_max_datagram_size())];
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@@ -1206,26 +1230,41 @@ mod tests {
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#[cfg(target_os = "linux")]
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#[cfg(target_os = "linux")]
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#[test]
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#[test]
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fn tracks_valid_remote_macs_for_cam_refresh() {
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fn validates_relay_frame_sources_against_announced_client_macs() {
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let gateway_mac = MacAddr::new([0x0a, 0, 0, 0, 0, 1]);
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let gateway_mac = MacAddr::new([0x0a, 0, 0, 0, 0, 1]);
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let remote_mac = MacAddr::new([0x02, 0, 0, 0, 0, 2]);
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let remote_mac = MacAddr::new([0x02, 0, 0, 0, 0, 2]);
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let invalid_remote_mac = MacAddr::BROADCAST;
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let wrong_remote_mac = MacAddr::new([0x02, 0, 0, 0, 0, 3]);
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let mut refresh = CamRefresh::new(gateway_mac);
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let mut remote_clients = RemoteClientTable::new(gateway_mac);
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refresh
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assert_eq!(
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.observe_remote_frame(7, ðernet_frame_from(remote_mac, b"remote"))
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remote_clients
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.unwrap();
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.relay_frame_drop_reason(7, ðernet_frame_from(remote_mac, b"unknown peer"))
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refresh
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.unwrap(),
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.observe_remote_frame(8, ðernet_frame_from(invalid_remote_mac, b"ignored"))
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Some(DropReason::UnauthorizedSourceMac)
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.unwrap();
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);
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let frames = refresh.refresh_frames();
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remote_clients.observe_control_event(&ControlMessage::PeerJoined(
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let refresh_frame = EthernetFrame::parse(&frames[0]).unwrap();
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PeerInfo::new(7, Role::Client, Some(remote_mac)).unwrap(),
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));
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assert_eq!(refresh.remote_mac_count(), 1);
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assert_eq!(
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assert_eq!(frames.len(), 1);
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remote_clients
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assert_eq!(refresh_frame.source(), remote_mac);
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.relay_frame_drop_reason(7, ðernet_frame_from(remote_mac, b"valid"))
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assert_eq!(refresh_frame.destination(), gateway_mac);
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.unwrap(),
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None
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);
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assert_eq!(
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remote_clients
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.relay_frame_drop_reason(7, ðernet_frame_from(wrong_remote_mac, b"forged"))
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.unwrap(),
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Some(DropReason::UnauthorizedSourceMac)
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);
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assert_eq!(
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remote_clients
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.relay_frame_drop_reason(8, ðernet_frame_from(remote_mac, b"wrong peer"))
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.unwrap(),
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Some(DropReason::UnauthorizedSourceMac)
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);
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}
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}
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#[cfg(target_os = "linux")]
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#[cfg(target_os = "linux")]
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@@ -1233,7 +1272,7 @@ mod tests {
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fn updates_cam_refresh_from_lifecycle_events() {
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fn updates_cam_refresh_from_lifecycle_events() {
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let gateway_mac = MacAddr::new([0x0a, 0, 0, 0, 0, 1]);
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let gateway_mac = MacAddr::new([0x0a, 0, 0, 0, 0, 1]);
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let remote_mac = MacAddr::new([0x02, 0, 0, 0, 0, 2]);
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let remote_mac = MacAddr::new([0x02, 0, 0, 0, 0, 2]);
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let mut refresh = CamRefresh::new(gateway_mac);
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let mut refresh = RemoteClientTable::new(gateway_mac);
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refresh.observe_control_event(&ControlMessage::PeerJoined(
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refresh.observe_control_event(&ControlMessage::PeerJoined(
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PeerInfo::new(7, Role::Client, Some(remote_mac)).unwrap(),
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PeerInfo::new(7, Role::Client, Some(remote_mac)).unwrap(),
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Reference in New Issue
Block a user