mirror of
https://github.com/jmcorgan/fips.git
synced 2026-07-30 19:46:15 +00:00
Access layer for phones and laptops to reach FIPS routers on OpenWrt, stacked on the 802.11s mesh backhaul from #123. Squashed from five commits by Arjen (Origami74); their original messages follow. * feat(openwrt): open !FIPS access SSID — fips-ap-setup helper, default transport binding, how-to Client access layer for phones and laptops: every FIPS router broadcasts the same open SSID ('!FIPS' — the leading '!' sorts it to the top of alphabetically ordered network pickers), forming one standard ESS. Clients save it once and roam between all FIPS routers natively, with FIPS's Noise IK handshake as the only security layer: - fips-ap-setup: opt-in UCI helper that creates the 'fips-ap0' open AP (encryption none — security type must be uniform across routers or clients treat the ESS as different saved networks), an isolated network with a static ULA /64, RA-only odhcpd addressing (stateless SLAAC, no DHCP — the minimum that satisfies Android's provisioning check; no internet by design, so phones keep cellular as default route), and a locked-down fips_ap firewall zone (no path to br-lan or the WAN; only ICMPv6, mDNS, and the FIPS transports reachable). 'remove' subcommand undoes it. Radio setup stays opt-in; a package must not commandeer radios on install. - fips.yaml: ship 'ap0'/'ap1' Ethernet-transport entries commented out (matching the 802.11s mesh backhaul) so a stock install that never creates fips-ap* logs no per-boot "interface missing" bind warning; fips-ap-setup uncomments the matching block when it creates the interface and re-comments it on remove. - Regression test: extend shipped_openwrt_config_parses to assert the ap0/ap1 entries ship commented out and still parse once uncommented, alongside mesh0/mesh1. - Packaging: install the helper in ipk/apk/buildroot (three synced copies), extend CI structural checks and shellcheck targets. - docs/how-to/set-up-open-access-ssid.md: full guide, including the one-time 'no internet, stay connected' acceptance (stored per SSID, covers every FIPS router) and the security-type-uniformity constraint. * docs(openwrt): correct open-SSID/mesh security framing — peering is open by design The fips-ap-setup/fips-mesh-setup comments and both how-tos claimed a stranger "cannot pass the FIPS handshake" / "their frames die at the handshake" / the handshake surface "drops them". That is wrong: FIPS peer admission is open. An inbound handshake from any net-new identity is promoted (node::handlers::handshake::promote_connection), gated only by the daemon's max-peers cap — there is no allowlist, no PSK, and the AuthChallenge path is not wired to admission. The Noise IK handshake provides authentication (no impersonation of another identity, no MITM), not authorization. Restate the model accurately in all five places: a stranger on the open SSID (or the open mesh) can associate AND form a FIPS peer link — that is the point of open access. Containment is the isolated fips_ap zone (no path to br-lan or the WAN) plus the max-peers cap, not the handshake. Clarify that AP client isolation is an L2 control only: a peered stranger is an overlay peer like any other, so the FIPS overlay, not L2, is the trust boundary between clients. * feat(openwrt): serve DHCPv4 on the access SSID from a fixed roamable subnet RA-only addressing satisfied Android's provisioning check but left anything expecting IPv4 with a self-assigned address and a "no IP" complaint. dnsmasq now leases out of 10.21.<N>.0/24 (N = radio index; prefix echoes FIPS port 2121), deliberately identical on every router: a roaming client keeps its lease across the ESS, and dnsmasq's authoritative mode — the OpenWrt default, pinned by the helper — ACKs the renew a foreign router never issued. Lease collisions across routers surface as a NAK on renew and the client re-DHCPs. The dhcp section's 'dhcpv4 server' is read by both dnsmasq (default images) and odhcpd (only with maindhcp), so either arrangement serves. A DHCPv4/udp-67 accept rule joins the fips_ap zone; DHCPv6 stays off, the ULA RA stays as-is, and nothing depends on an upstream. The zone remains isolated — no forwardings, no internet. * feat(openwrt): enable mDNS rendezvous from fips-ap-setup Phone FIPS apps cannot open raw-Ethernet sockets, so DNS-SD is how they find the router's daemon — but node.rendezvous.lan defaults to off. Ship the lan block commented in fips.yaml (consistent with the apN transport entries) and have fips-ap-setup uncomment it when creating the access SSID. The awk match is scoped to node.rendezvous because transports.ethernet carries a 'lan' entry at the same indent. The switch is daemon-wide, so 'remove' deliberately leaves it on rather than guess whether other transports rely on it. * fix(openwrt): bind UDP dual-stack [::]:2121 so access-SSID clients reach it The shipped router config bound the UDP transport "0.0.0.0:2121" (IPv4 wildcard) while the mDNS LAN advert announces every interface address, including the router's IPv6 link-local — which phones on the !FIPS access SSID rightly prefer (their cellular default route swallows v4, and fd00::/8 is captured by the Myco mesh TUN). Result: the client's Noise msg1 arrives on an unbound v6 port and is silently lost; the handshake resends and times out. Symptom chain (observed on-device): mDNS resolve OK, platform push OK, "Sent Noise handshake message 1" to [fe80::…%N]:2121, four resends, no reply, 30 s stale-timeout. OpenWrt is Linux (bindv6only=0), so "[::]" accepts IPv4 via v4-mapped addresses too — nothing is lost. packaging/common is deliberately left on "0.0.0.0" for now: Windows defaults IPV6_V6ONLY=1, where "[::]" would drop v4 instead.
299 lines
12 KiB
Bash
Executable File
299 lines
12 KiB
Bash
Executable File
#!/bin/bash
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# Build a FIPS .apk package for OpenWrt without the OpenWrt SDK.
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#
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# apk-tools (.apk) is the mandatory package manager from OpenWrt 25 onward; it
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# is also available opt-in on 24.10, where opkg (.ipk) remains the default. The
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# .ipk package in ../openwrt-ipk/ still covers OpenWrt 24.x and earlier; this
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# .apk package is what you need on 25+. Unlike the .ipk format (a plain tar.gz
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# of tarballs that we
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# assemble by hand in ../openwrt-ipk/build-ipk.sh), the .apk container is the
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# apk-tools v3 ADB format, which is impractical to hand-roll. Instead we drive
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# the official `apk mkpkg` applet — the same tool OpenWrt's build system calls
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# in include/package-pack.mk — so no SDK is required, only the `apk` binary.
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#
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# Usage:
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# ./packaging/openwrt-apk/build-apk.sh [--arch <name>]
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#
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# Architectures (--arch): aarch64 [default], x86_64, mipsel, mips, arm
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# (the apk CI matrix ships aarch64 + x86_64; the rest are buildable locally).
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#
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# Output: dist/fips_<version>_<openwrt-arch>.apk
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#
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# Prerequisites:
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# cargo install cargo-zigbuild (Rust musl cross-compilation)
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# apk-tools v3 `apk` binary on PATH, or pointed at via APK_BIN=/path/to/apk
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# (build from source — see README.md; CI builds apk-tools 3.0.5).
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# fakeroot (optional but recommended; makes packaged files root-owned).
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#
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# Install on a router (packages are unsigned, like our .ipk):
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# scp -O dist/fips_<version>_<arch>.apk root@192.168.1.1:/tmp/
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# ssh root@192.168.1.1 apk add --allow-untrusted /tmp/fips_<version>_<arch>.apk
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set -euo pipefail
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# ---------------------------------------------------------------------------
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# Arguments
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# ---------------------------------------------------------------------------
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ARCH="aarch64"
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BIN_DIR="" # if set, use prebuilt binaries from here instead of compiling
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while [[ $# -gt 0 ]]; do
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case "$1" in
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--arch) ARCH="$2"; shift 2 ;;
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--arch=*) ARCH="${1#*=}"; shift ;;
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--bin-dir) BIN_DIR="$2"; shift 2 ;;
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--bin-dir=*) BIN_DIR="${1#*=}"; shift ;;
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*) echo "Unknown argument: $1" >&2; exit 1 ;;
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esac
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done
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# ---------------------------------------------------------------------------
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# Architecture mapping
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#
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# RUST_TARGET — passed to cargo --target
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# OPENWRT_ARCH — apk "arch:" field and the package filename
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#
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# Kept in sync with ../openwrt-ipk/build-ipk.sh (same target table).
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# ---------------------------------------------------------------------------
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case "$ARCH" in
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aarch64)
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RUST_TARGET="aarch64-unknown-linux-musl"
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OPENWRT_ARCH="aarch64_cortex-a53"
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;;
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mipsel)
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RUST_TARGET="mipsel-unknown-linux-musl"
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OPENWRT_ARCH="mipsel_24kc"
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;;
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mips)
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RUST_TARGET="mips-unknown-linux-musl"
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OPENWRT_ARCH="mips_24kc"
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;;
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arm)
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RUST_TARGET="arm-unknown-linux-musleabihf"
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OPENWRT_ARCH="arm_cortex-a7"
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;;
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x86_64)
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RUST_TARGET="x86_64-unknown-linux-musl"
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OPENWRT_ARCH="x86_64"
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;;
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*)
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echo "Unknown arch: $ARCH" >&2
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echo "Valid: aarch64, mipsel, mips, arm, x86_64" >&2
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exit 1
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;;
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esac
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# ---------------------------------------------------------------------------
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# Paths
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# ---------------------------------------------------------------------------
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SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd)"
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PROJECT_ROOT="$(cd "$SCRIPT_DIR/../.." && pwd)"
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# The installed-filesystem payload (init scripts, config, sysctl, etc.) is
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# shared with the .ipk package; there is one canonical copy in openwrt-ipk/.
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FILES_DIR="$PROJECT_ROOT/packaging/openwrt-ipk/files"
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DIST_DIR="$PROJECT_ROOT/dist"
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PKG_NAME="fips"
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# Human-readable version for the filename (e.g. v0.4.0 or master.123.abcdef0),
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# mirroring the .ipk artifacts and the CI/NIP-94 plumbing.
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PKG_VERSION="${PKG_VERSION:-$(cd "$PROJECT_ROOT" && git describe --tags --always --dirty 2>/dev/null || echo "0.1.0")}"
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# apk-tools-compatible version embedded inside the package metadata.
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APK_VERSION="${APK_VERSION:-$(cd "$PROJECT_ROOT" && sh "$SCRIPT_DIR/apk-version.sh" auto)}"
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APK_BIN="${APK_BIN:-apk}"
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if ! command -v "$APK_BIN" >/dev/null 2>&1; then
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echo "Error: apk-tools binary not found (looked for '$APK_BIN')." >&2
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echo " Build apk-tools v3 from source or set APK_BIN=/path/to/apk." >&2
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echo " See packaging/openwrt-apk/README.md." >&2
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exit 1
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fi
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echo "==> Building $PKG_NAME $PKG_VERSION (apk version $APK_VERSION) for $OPENWRT_ARCH ($RUST_TARGET)"
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# ---------------------------------------------------------------------------
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# 1. Obtain binaries
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#
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# Either use a directory of prebuilt binaries (--bin-dir; CI cross-compiles
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# once in a shared job and hands them to both the .ipk and .apk packagers), or
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# compile from source here for a self-contained local build.
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# ---------------------------------------------------------------------------
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if [ -n "$BIN_DIR" ]; then
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RELEASE_DIR="$BIN_DIR"
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echo "==> Using prebuilt binaries from $RELEASE_DIR"
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for bin in fips fipsctl fipstop fips-gateway; do
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[ -f "$RELEASE_DIR/$bin" ] || {
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echo "Error: prebuilt binary not found: $RELEASE_DIR/$bin" >&2
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exit 1
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}
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done
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else
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if ! command -v cargo-zigbuild &>/dev/null; then
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echo "Error: cargo-zigbuild not found." >&2
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echo " Install: cargo install cargo-zigbuild" >&2
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exit 1
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fi
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if ! rustup target list --installed | grep -q "^$RUST_TARGET$"; then
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echo "==> Adding Rust target $RUST_TARGET..."
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rustup target add "$RUST_TARGET"
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fi
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echo "==> Compiling..."
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cd "$PROJECT_ROOT"
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cargo zigbuild \
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--release \
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--target "$RUST_TARGET" \
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--bin fips \
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--bin fipsctl \
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--bin fipstop \
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--bin fips-gateway
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RELEASE_DIR="$PROJECT_ROOT/target/$RUST_TARGET/release"
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echo "==> Stripping binaries..."
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STRIP="${LLVM_STRIP:-strip}"
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for bin in fips fipsctl fipstop fips-gateway; do
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"$STRIP" "$RELEASE_DIR/$bin" 2>/dev/null || true
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done
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fi
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SIZE=$(du -sh "$RELEASE_DIR/fips" | cut -f1)
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echo " fips: $SIZE"
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# ---------------------------------------------------------------------------
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# 2. Stage the installed filesystem tree (--files root for apk mkpkg)
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# ---------------------------------------------------------------------------
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# This block is the same payload as ../openwrt-ipk/build-ipk.sh; keep the two
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# in sync. The CI apk structural check asserts every path below is present.
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WORK_DIR="$(mktemp -d)"
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trap 'rm -rf "$WORK_DIR"' EXIT
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STAGE_DIR="$WORK_DIR/root" # becomes the package's filesystem
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SCRIPTS_DIR="$WORK_DIR/scripts" # maintainer scripts (metadata, not payload)
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mkdir -p "$STAGE_DIR" "$SCRIPTS_DIR"
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install -d "$STAGE_DIR/usr/bin"
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install -m 0755 "$RELEASE_DIR/fips" "$STAGE_DIR/usr/bin/fips"
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install -m 0755 "$RELEASE_DIR/fipsctl" "$STAGE_DIR/usr/bin/fipsctl"
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install -m 0755 "$RELEASE_DIR/fipstop" "$STAGE_DIR/usr/bin/fipstop"
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install -m 0755 "$RELEASE_DIR/fips-gateway" "$STAGE_DIR/usr/bin/fips-gateway"
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install -m 0755 "$FILES_DIR/usr/bin/fips-mesh-setup" "$STAGE_DIR/usr/bin/fips-mesh-setup"
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install -m 0755 "$FILES_DIR/usr/bin/fips-ap-setup" "$STAGE_DIR/usr/bin/fips-ap-setup"
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install -d "$STAGE_DIR/etc/init.d"
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install -m 0755 "$FILES_DIR/etc/init.d/fips" "$STAGE_DIR/etc/init.d/fips"
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install -m 0755 "$FILES_DIR/etc/init.d/fips-gateway" "$STAGE_DIR/etc/init.d/fips-gateway"
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install -d "$STAGE_DIR/etc/fips"
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install -m 0600 "$FILES_DIR/etc/fips/fips.yaml" "$STAGE_DIR/etc/fips/fips.yaml"
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install -m 0755 "$FILES_DIR/etc/fips/firewall.sh" "$STAGE_DIR/etc/fips/firewall.sh"
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# The shared fips.yaml ships ethernet.wan.interface: "eth0", the OpenWrt 24
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# default. This .apk package targets OpenWrt 25+ (DSA), where the WAN port is
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# named "wan", so ship "wan" as the default. Patching the staged copy keeps the
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# as-installed config correct for the platform without maintaining a second copy
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# of the file; operators can still edit /etc/fips/fips.yaml for non-standard boards.
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sed -i 's|interface: "eth0"|interface: "wan"|' "$STAGE_DIR/etc/fips/fips.yaml"
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install -d "$STAGE_DIR/etc/dnsmasq.d"
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install -m 0644 "$FILES_DIR/etc/dnsmasq.d/fips.conf" "$STAGE_DIR/etc/dnsmasq.d/fips.conf"
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install -d "$STAGE_DIR/etc/sysctl.d"
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install -m 0644 "$FILES_DIR/etc/sysctl.d/fips-bridge.conf" "$STAGE_DIR/etc/sysctl.d/fips-bridge.conf"
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install -m 0644 "$FILES_DIR/etc/sysctl.d/fips-gateway.conf" "$STAGE_DIR/etc/sysctl.d/fips-gateway.conf"
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install -d "$STAGE_DIR/etc/hotplug.d/net"
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install -m 0755 "$FILES_DIR/etc/hotplug.d/net/99-fips" "$STAGE_DIR/etc/hotplug.d/net/99-fips"
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install -d "$STAGE_DIR/etc/uci-defaults"
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install -m 0755 "$FILES_DIR/etc/uci-defaults/90-fips-setup" "$STAGE_DIR/etc/uci-defaults/90-fips-setup"
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install -d "$STAGE_DIR/lib/upgrade/keep.d"
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install -m 0644 "$FILES_DIR/lib/upgrade/keep.d/fips" "$STAGE_DIR/lib/upgrade/keep.d/fips"
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# ---- conffiles ----
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# apk mkpkg discovers config files from /lib/apk/packages/<name>.conffiles
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# inside the --files tree (same mechanism OpenWrt's package-pack.mk uses).
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# Listing fips.yaml here makes apk preserve user edits across upgrades, the
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# apk equivalent of opkg's conffiles handling.
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install -d "$STAGE_DIR/lib/apk/packages"
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cat > "$STAGE_DIR/lib/apk/packages/${PKG_NAME}.conffiles" <<'EOF'
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/etc/fips/fips.yaml
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EOF
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# ---- maintainer scripts ----
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# Map our opkg maintainer scripts onto apk's lifecycle phases:
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# opkg postinst -> apk post-install (enable + start services)
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# opkg prerm -> apk pre-deinstall (stop + disable services)
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cat > "$SCRIPTS_DIR/post-install" <<'EOF'
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#!/bin/sh
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# Run first-boot UCI setup (the script deletes itself when done).
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if [ -x /etc/uci-defaults/90-fips-setup ]; then
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/etc/uci-defaults/90-fips-setup && rm -f /etc/uci-defaults/90-fips-setup
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fi
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/etc/init.d/fips enable
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/etc/init.d/fips start
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/etc/init.d/fips-gateway enable
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/etc/init.d/fips-gateway start
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exit 0
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EOF
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cat > "$SCRIPTS_DIR/pre-deinstall" <<'EOF'
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#!/bin/sh
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/etc/init.d/fips-gateway stop 2>/dev/null || true
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/etc/init.d/fips-gateway disable 2>/dev/null || true
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/etc/init.d/fips stop 2>/dev/null || true
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/etc/init.d/fips disable 2>/dev/null || true
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exit 0
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EOF
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chmod 0755 "$SCRIPTS_DIR/post-install" "$SCRIPTS_DIR/pre-deinstall"
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# ---------------------------------------------------------------------------
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# 3. Assemble the .apk via apk mkpkg
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# ---------------------------------------------------------------------------
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# fakeroot makes the packaged files root-owned even though CI runs unprivileged.
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DESCRIPTION="FIPS Mesh Network Daemon. Distributed, decentralized mesh networking over UDP, TCP, and raw Ethernet, with a TUN interface (fips0), ULA IPv6 addressing, and a .fips DNS responder."
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DEPENDS="kmod-tun kmod-br-netfilter kmod-nft-nat kmod-nf-conntrack ip-full"
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PKG_FILENAME="${PKG_NAME}_${PKG_VERSION}_${OPENWRT_ARCH}.apk"
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mkdir -p "$DIST_DIR"
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FAKEROOT=""
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if command -v fakeroot >/dev/null 2>&1; then
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FAKEROOT="fakeroot"
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else
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echo "Warning: fakeroot not found — packaged files will be owned by the build user." >&2
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fi
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$FAKEROOT "$APK_BIN" mkpkg \
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--info "name:$PKG_NAME" \
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--info "version:$APK_VERSION" \
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--info "description:$DESCRIPTION" \
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--info "arch:$OPENWRT_ARCH" \
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--info "license:MIT" \
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--info "origin:$PKG_NAME" \
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--info "url:https://github.com/jmcorgan/fips" \
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--info "maintainer:FIPS Network" \
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--info "depends:$DEPENDS" \
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--script "post-install:$SCRIPTS_DIR/post-install" \
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--script "pre-deinstall:$SCRIPTS_DIR/pre-deinstall" \
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--files "$STAGE_DIR" \
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--output "$DIST_DIR/$PKG_FILENAME"
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echo ""
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echo "==> Done: dist/$PKG_FILENAME"
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echo " $(du -sh "$DIST_DIR/$PKG_FILENAME" | cut -f1)"
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echo ""
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echo "Install on router (OpenWrt 25+, or 24.10 with apk enabled):"
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echo " scp -O dist/$PKG_FILENAME root@192.168.1.1:/tmp/"
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echo " ssh root@192.168.1.1 apk add --allow-untrusted /tmp/$PKG_FILENAME"
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