Add netem.sh for simulating adverse network conditions (delay, loss,
jitter, duplication, reordering, corruption) on Docker test containers
using tc/netem. Includes three presets (lossy, congested, terrible) and
apply/remove/status actions.
Fix iperf-test.sh bug where all tests connected the client to its own
FIPS npub (loopback) instead of the remote server's npub, meaning
previous iperf results measured loopback performance rather than
cross-node throughput.
Document netem.sh in README.md.
The awk pattern used $(NF-2) which picked up the retransmit count (0)
instead of the bandwidth value, because the retransmit field sits
between the bandwidth unit and "sender". Search for the bits/sec field
by content instead of position.
Docker testing infrastructure:
- Add iperf3 bandwidth testing (10s duration, 8 parallel streams)
- Install iperf3 in container, auto-start as daemon alongside FIPS
- Support --live flag for real-time iperf3 output during tests
- Aggregate [SUM] bandwidth reporting with correct units
Configuration templating system:
- Single node.template.yaml replacing per-node hand-written configs
- Topology definitions in configs/topologies/ (mesh.yaml, chain.yaml)
- generate-configs.sh script for automatic config generation
- Integrated into build.sh for regeneration on build
- Generated configs in generated-configs/ (gitignored)
Ping test improvements:
- Reduce to 1 ping per test for faster execution (~10s vs ~30s)
- Show response times (RTT) for each test
- Add Ctrl+C trap for clean exit
- Reduce convergence wait from 5s to 3s
Add dual-approach MTU handling to prevent TCP connections from hanging
when packets exceed the transport MTU after FIPS encapsulation.
ICMPv6 Packet Too Big:
- Generate RFC 4443 PTB messages for oversized packets at TUN outbound
- Inject back via TUN for local delivery to the application
- Per-source rate limiting (100ms interval, 10s entry expiry)
- MTU check in handle_tun_outbound before session encapsulation
TCP MSS Clamping:
- Intercept SYN packets in run_tun_reader() (outbound)
- Intercept SYN-ACK packets in TunWriter (inbound)
- Clamp MSS option to fit within effective MTU (transport - 127 overhead)
- Recalculate TCP checksum after modification
Code organization:
- ICMP, TCP MSS, and rate limiter modules in upper/ alongside existing
protocol-specific packet handling (dns.rs, tun.rs)
- Shared FIPS_OVERHEAD constant (127 bytes) and effective_ipv6_mtu()
function in upper/icmp.rs
- Node::effective_ipv6_mtu() delegates to the shared function
- run_tun_reader() accepts actual transport MTU from config
Example config corrections:
- UDP transport MTU set to 1472 across all configs (correct max UDP
payload for standard Ethernet: 1500 - 20 IPv4 - 8 UDP)
- Startup logging of effective MTU and max MSS values
Replace ASCII art diagram in examples/two-node-udp/README.md with
two-node-udp.svg showing namespaces, veth pair, TUN devices, DNS
responders, and transport/session layers.
Add fd00::/8 route to TUN configure_interface() via rtnetlink - without
this route the kernel had no path to FIPS addresses ("network unreachable").
Update two-node-udp README based on live namespace testing:
- Remove resolvectl steps (doesn't work inside namespaces)
- Remove ICMPv6 Echo Reply mention (kernel handles it natively)
- Add namespace DNS limitation note and kernel ping reply explanation
- Simplify from 8 to 7 steps
Add DNS responder that resolves <npub>.fips queries to FipsAddress IPv6
addresses. Resolution is pure computation (npub → NodeAddr → IPv6) with
identity cache priming as a side effect, enabling subsequent TUN packet
routing to non-peer destinations.
- New dns.rs module: resolve_fips_query(), handle_dns_packet() using
simple-dns crate, run_dns_responder() async UDP server loop
- DnsConfig in config.rs: enabled, bind_addr (127.0.0.1), port (5354)
- Fourth select! arm in RX event loop for DNS identity channel
- DNS task spawn/abort in node lifecycle
- 10 new tests (420 total)
Add examples/two-node-udp/ with standalone walkthrough for testing two
FIPS nodes in Linux network namespaces over a veth pair. Includes
network diagram, config files, DNS routing setup, and troubleshooting.