Files
fips/docs/how-to/tune-udp-buffers.md
T
Johnathan Corgan 5abf9a9325 docs: four-section /docs/ restructure with new-user content, accuracy pass, and gateway feature-set rewrite
Restructures /docs/ by reader purpose (tutorials, how-to,
reference, design), adds the new-user-progression and
operator-recipe content the prior layout lacked, runs an
accuracy pass against current source across the pre-existing
design docs, and rewrites the gateway feature-set documentation
end-to-end around its actual operational profile (a niche
feature designed for systems already serving DHCP/DNS to a
LAN, with two independent halves — outbound LAN→mesh, inbound
mesh→LAN — sharing one nftables table, one binary, and one
control socket). Top-level README and getting-started rewritten
around two equally-weighted deployment modes (overlay on
existing IP networks; ground-up over non-IP transports).

## Additions

- 11 new tutorials in docs/tutorials/: an 8-step new-user
  progression from single-daemon test-mesh peering through
  to a ground-up two-device mesh, an IPv6-adapter side-trip
  walkthrough, an Advanced Tutorials index, and a hand-held
  OpenWrt walk-through for fips-gateway deployment that
  exercises both halves of the feature.
- 12 new how-tos in docs/how-to/: firewall activation,
  Nostr discovery (resolve / advertise / open across five
  scenarios), Tor onion (directory + control_port modes),
  UDP buffer tuning, unprivileged-user setup, persistent
  identity, host aliases, Bluetooth LE peering, MTU
  diagnostics, manual Linux-host gateway deployment (covers
  both halves), gateway troubleshooting (organised by half),
  and a section index.
- 9 new reference docs in docs/reference/: configuration,
  wire formats, control-socket protocol, four CLI references
  (fips, fipsctl, fipstop, fips-gateway), security posture
  matrix, and Nostr events catalog. Configuration and
  wire-formats are renamed-and-extended from prior design/
  versions; the other seven are net-new.
- 6 new design docs: fips-concepts, fips-architecture, and
  fips-prior-work split out of the deleted fips-intro.md;
  consolidated fips-mmp and fips-mtu aggregations; and a
  new generic port-advertisement-and-nat-traversal doc
  (Nostr-signaled port advertisement plus UDP NAT-traversal
  protocol, FIPS as an example implementation, suitable for
  eventual NIP submission).
- Top-level docs/getting-started.md walking through the
  binary-installer-only Install story.
- packaging/common/hosts pre-populated with the eight public
  test-mesh nodes so shortnames resolve out of the box on
  every fresh install.

## Changes

- 23 wire-format diagrams relocated to reference/diagrams/
  alongside the wire-formats move.
- 4 design diagrams corrected against source code
  (fips-protocol-stack, fips-identity-derivation,
  fips-coordinate-discovery, fips-routing-decision).
- 10 pre-existing design docs reconciled with current
  source. Numeric corrections: stale link-MMP report bounds
  (now [1s, 5s] with 200 ms cold-start floor); UDP default
  MTU (now 1280, IPv6 minimum); node_addr formula
  (SHA-256(pubkey)[..16]); Noise patterns (IK at link, XK
  at session); peer-ACL semantics (strict allowlist requires
  ALL in peers.deny); daemon DNS upstream ([::1]:5354);
  on-the-wire bloom-filter size (1,071 bytes); obsolete
  Cargo-feature references (PR #79 dropped them) removed.
- Transport framing tightened across the docs: TCP is for
  UDP-filtered networks (not NAT traversal); Tor is a
  deployment mode (not failover); WebSocket dropped (not a
  shipped FIPS transport); WiFi promoted to Implemented via
  Ethernet in infrastructure mode; classic-Bluetooth row
  removed (BLE is the only Bluetooth-mode transport).
- docs/design/fips-gateway.md rewritten end-to-end to lead
  with the niche-feature framing and the two-halves
  structure. Title moved from "FIPS Outbound LAN Gateway"
  to "FIPS Gateway"; architecture section describes the
  common machinery (the fips-gateway service, the nftables
  table, the control socket) before splitting into separate
  "Outbound Half" and "Inbound Half" sections of equal
  weight; security considerations split per-half; no Future
  Work section (speculative directions live in the project
  tracker, not in protocol design docs). Inbound port
  forwarding is a first-class half rather than a buried
  "Implemented Extensions" subsection.
- Gateway terminology unified across all gateway docs as a
  separate Linux service running alongside the fips daemon
  (its own systemd unit / OpenWrt init script). Container-
  pattern terms (sidecar) are reserved for the
  Docker/Kubernetes sidecar deployment examples — the
  testing/sidecar/ tree, examples/k8s-sidecar/,
  examples/sidecar-nostr-relay/,
  examples/wireguard-sidecar-macos/, and the related
  CHANGELOG / top-level README entries — where the term
  carries its standard container meaning.
- Net-new design body content: rekey section in
  fips-mesh-layer (Noise IK msg1/msg2 over the established
  link, K-bit cutover, drain window, smaller-NodeAddr-wins
  tie-breaker on dual-init); Mesh Size Estimation and
  Antipoison FPR Cap sections in fips-bloom-filters;
  Mesh-Interface Query Filter subsection in
  fips-ipv6-adapter; failure-suppression knobs and clock-
  skew tolerance in fips-nostr-discovery; loop-rejection
  and mid-chain ancestor swap added to spanning-tree
  propagation / stability rules; Priority Chain in
  fips-mesh-operation renumbered to match the
  routing-decision diagram.
- Top-level README: dropped the stale nostr-discovery
  cargo-feature parenthetical. docs/README.md and the four
  section READMEs (tutorials, how-to, reference, design)
  refreshed for the new structure; index rows reflect both
  halves of the gateway feature and the new fips-gateway
  CLI reference.
- Cargo.toml [package.metadata.deb] assets path updated for
  the fips-security.md move; .gitignore /reference/ rule
  anchored to repo root so docs/reference/ is trackable.
- packaging/openwrt-ipk/files/etc/fips/fips.yaml
  configuration-doc URL updated to the new
  docs/reference/configuration.md location.

## Deletions

- docs/design/fips-intro.md (split into the three new intro
  design docs).
- docs/design/document-relationships.svg (orphan, no longer
  referenced).
- docs/proposals/ tree removed; the only proposal it
  contained (the Nostr UDP hole-punch protocol) was
  rewritten as the new generic
  design/port-advertisement-and-nat-traversal.md.
2026-05-08 03:02:12 +00:00

4.1 KiB

Tune Host UDP Socket Buffers for FIPS

The FIPS UDP transport requests larger send and receive socket buffers (default 2 MB each, doubled by the kernel to 4 MB actual) than the Linux defaults provide. The kernel silently clamps the request to net.core.rmem_max and net.core.wmem_max if those sysctls are smaller than the requested size — which causes silent packet drops under high throughput. For the design context (why FIPS requests larger buffers and how SO_RXQ_OVFL feeds ECN congestion detection), see ../design/fips-transport-layer.md.

This guide covers the host-side sysctl setup needed before deploying a high-throughput FIPS node.

Why this matters

The default Linux UDP receive buffer (net.core.rmem_default, typically 212 KB) fills in roughly 2.5 ms at ~85 MB/s. Any stall in the FIPS receive loop (decryption, routing, forwarding) causes the kernel to drop incoming datagrams without notification — they don't appear in recv errors, they don't trigger any application-visible event. The drops show up only in SO_RXQ_OVFL on subsequent packets, where FIPS surfaces them as congestion-detection events.

Setting rmem_max and wmem_max to at least the requested buffer size prevents the kernel clamp and the silent drop loss it causes.

Step 1: Check current limits

sysctl net.core.rmem_max net.core.wmem_max

Typical defaults on stock Linux distributions are 212992 bytes (212 KB). FIPS requests 2 MB by default, which the kernel doubles internally to 4 MB; for the request to succeed without clamping, both sysctls must be at least 4194304 (4 MB).

Step 2: Set the limits temporarily

sudo sysctl -w net.core.rmem_max=4194304
sudo sysctl -w net.core.wmem_max=4194304

Verify:

sysctl net.core.rmem_max net.core.wmem_max

These changes take effect immediately for new socket binds but do not survive a reboot.

Step 3: Make the limits persistent

Drop a file under /etc/sysctl.d/:

sudo tee /etc/sysctl.d/60-fips.conf <<'EOF'
# FIPS UDP transport requests 2 MB socket buffers, kernel doubles to 4 MB.
# Avoid silent receive-buffer drops under load.
net.core.rmem_max = 4194304
net.core.wmem_max = 4194304
EOF

Apply:

sudo sysctl --system

The drop-in is loaded automatically on every boot.

Step 4: Restart FIPS and verify the actual buffer size

After raising the host limits, restart the FIPS daemon so the next socket bind picks up the new ceiling:

sudo systemctl restart fips

The daemon logs the actual buffer sizes at startup:

UDP transport started local_addr=0.0.0.0:2121 recv_buf=4194304 send_buf=4194304

If recv_buf or send_buf shows a smaller number than expected, the host sysctl is still clamping. Recheck sysctl net.core.rmem_max net.core.wmem_max and confirm the drop-in file is being loaded (sudo sysctl --system prints the loaded files).

Docker and other container hosts

Containers share the host kernel, so sysctls apply to the host, not the container. If you run FIPS inside Docker, set net.core.rmem_max / net.core.wmem_max on the Docker host, not inside the container. Container privileges (cap_sys_admin) and --sysctl flags do not let you raise these particular limits from inside a container — they are global to the host network namespace.

For Kubernetes deployments, the host-level sysctl tuning is the same; node-level configuration (DaemonSet with privileged: true, or a node-init script) is the typical mechanism.

Tuning higher

The 4 MB ceiling is a conservative starting point. For very high throughput (multi-gigabit per second), raise both sysctls and the corresponding transports.udp.recv_buf_size / transports.udp.send_buf_size config values together. Setting a config value larger than the host ceiling silently clamps to the ceiling, so both must move in lockstep.

See also