mirror of
https://github.com/jmcorgan/fips.git
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Two runs on one host destroyed each other's containers, producing mid-test "No such container" failures that look like real defects. The automated builder runs a full local CI on the same box every few minutes, so the machine is contended almost always and this has red-ed both a hand run and an automated gate. Two independent causes are fixed here. Container names were hardcoded, and docker names are global rather than scoped by compose project, so two runs collided on the same name; every name now takes an optional suffix that the harness sets from the run id. And the cleanup sweep matched a label shared by every run, so one run's teardown force-removed another's containers; resources now also carry a per-run label and the sweep can be narrowed to it. A third hazard turned up that was not in the original report: the sidecar suite passes explicit compose project names, which override the run-scoped project and put it outside the shared prefix entirely. Its project names, network, and derived container references are now scoped too. Both are default-off. With the suffix unset, names render exactly as they do today and a bare compose invocation is unchanged, which is what keeps the hosted CI and the documentation correct. A cleanup run with no run id still reaps everything, which is what a manual "clear the box" wants. The literal-name sweep was not sufficient: six scripts build container names dynamically from node labels, and two suites create their own containers outside compose. Those are handled at their construction sites. Verified: syntax check on all modified scripts; compose validation on every modified file with the suffix both set and unset; and a synthetic two-run reproduction that shows the old cleanup destroying a bystander run and the new one leaving it alone. Known gap: subnets are still hardcoded, so two concurrent full runs will still collide on address-pool overlap. That fix reaches into topology configs, chaos scenarios, diagrams and production source, so it is left for its own change rather than half-done here.
894 lines
33 KiB
Bash
Executable File
894 lines
33 KiB
Bash
Executable File
#!/bin/bash
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# Test fips-dns-setup across different Linux resolver backends, plus
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# an end-to-end scenario that verifies a real fips answers .fips
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# queries through the configured backend.
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#
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# Each scenario runs a systemd-based Docker container, creates a dummy
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# fips0 interface (or a real one for the e2e scenario), runs the setup
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# script, verifies the detected backend and generated config, runs
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# teardown, and verifies cleanup.
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#
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# The end-to-end scenario additionally builds fips in a Debian 12
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# builder image (cached between runs) so the binary is glibc-compatible
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# across all target distros. It then starts the daemon, configures DNS
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# via the script, and confirms `dig @127.0.0.53 AAAA <npub>.fips`
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# returns a non-empty AAAA answer.
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#
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# Usage: ./test.sh [scenario ...]
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# No args = run all scenarios.
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# Named args = run only those (e.g., ./test.sh debian12-resolved e2e-debian12)
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#
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# Requirements: Docker with privileged container support. The e2e
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# scenario also needs /dev/net/tun on the host (standard).
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set -uo pipefail
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SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd)"
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REPO_ROOT="$(cd "$SCRIPT_DIR/../.." && pwd)"
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SETUP_SCRIPT="$REPO_ROOT/packaging/common/fips-dns-setup"
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TEARDOWN_SCRIPT="$REPO_ROOT/packaging/common/fips-dns-teardown"
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CACHE_DIR="$SCRIPT_DIR/.cache"
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FIPS_BIN_CACHE="$CACHE_DIR/fips"
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FIPS_GATEWAY_BIN_CACHE="$CACHE_DIR/fips-gateway"
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# Timeout for systemd boot inside container
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BOOT_TIMEOUT=30
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# Timeout for fips to start serving DNS in the e2e scenario
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DAEMON_TIMEOUT=15
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PASS=0
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FAIL=0
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SKIP=0
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# ─────────────────────────────────────────────────────────────────────
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# Helpers
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# ─────────────────────────────────────────────────────────────────────
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log() { echo "=== $*"; }
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pass() { echo " PASS: $*"; PASS=$((PASS + 1)); }
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fail() { echo " FAIL: $*"; FAIL=$((FAIL + 1)); }
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skip() { echo " SKIP: $*"; SKIP=$((SKIP + 1)); }
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cleanup_container() {
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local name="$1"
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docker rm -f "$name" >/dev/null 2>&1 || true
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}
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# Build an image from an inline Dockerfile.
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build_image() {
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local tag="$1"
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shift
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echo "$@" | docker build -t "$tag" -f - "$REPO_ROOT" >/dev/null 2>&1
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}
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# Start a systemd container in the background.
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start_systemd_container() {
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local name="$1" image="$2"
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cleanup_container "$name"
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docker run -d --name "$name" \
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--label com.corganlabs.fips-ci=1 \
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--privileged \
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--cgroupns=host \
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-v /sys/fs/cgroup:/sys/fs/cgroup:rw \
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--tmpfs /run --tmpfs /run/lock \
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"$image" >/dev/null 2>&1
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}
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# Same, but with TUN device for the e2e scenario.
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start_systemd_container_with_tun() {
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local name="$1" image="$2"
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cleanup_container "$name"
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docker run -d --name "$name" \
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--label com.corganlabs.fips-ci=1 \
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--privileged \
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--cgroupns=host \
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--device /dev/net/tun \
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-v /sys/fs/cgroup:/sys/fs/cgroup:rw \
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--tmpfs /run --tmpfs /run/lock \
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"$image" >/dev/null 2>&1
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}
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# Wait for systemd to reach a bootable state inside the container.
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wait_for_systemd() {
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local name="$1"
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for _i in $(seq 1 "$BOOT_TIMEOUT"); do
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if docker exec "$name" systemctl is-system-running --wait 2>/dev/null | grep -qE 'running|degraded'; then
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return 0
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fi
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sleep 1
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done
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echo " WARNING: systemd did not reach running state in ${BOOT_TIMEOUT}s (may still work)"
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return 0
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}
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# Create dummy fips0 interface inside the container.
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create_fips0() {
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local name="$1"
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docker exec "$name" ip link add fips0 type dummy 2>/dev/null
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docker exec "$name" ip link set fips0 up 2>/dev/null
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}
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# Copy scripts into the container and run setup.
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run_setup() {
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local name="$1"
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docker cp "$SETUP_SCRIPT" "$name:/usr/local/bin/fips-dns-setup"
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docker cp "$TEARDOWN_SCRIPT" "$name:/usr/local/bin/fips-dns-teardown"
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docker exec "$name" chmod +x /usr/local/bin/fips-dns-setup /usr/local/bin/fips-dns-teardown
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# Exit code may be non-zero due to service reload failures in containers.
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# We test detection and config generation, not service operation.
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docker exec "$name" /usr/local/bin/fips-dns-setup 2>&1 || true
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}
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run_teardown() {
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local name="$1"
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docker exec "$name" /usr/local/bin/fips-dns-teardown 2>&1 || true
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}
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get_backend() {
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local name="$1"
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docker exec "$name" cat /run/fips/dns-backend 2>/dev/null || echo "(missing)"
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}
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file_exists() {
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local name="$1" path="$2"
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docker exec "$name" test -f "$path" 2>/dev/null
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}
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file_contains() {
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local name="$1" path="$2" needle="$3"
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docker exec "$name" grep -qF "$needle" "$path" 2>/dev/null
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}
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# Get the major systemd version inside a container.
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container_systemd_version() {
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local name="$1"
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docker exec "$name" systemctl --version 2>/dev/null | head -1 \
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| grep -oE '[0-9]+' | head -1
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}
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# Verify the expected systemd-resolved-flavoured backend was picked
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# and that its config file targets the new [::1]:5354 daemon bind.
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# On systemd >= 258 the dns-delegate backend wins; otherwise
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# global-drop-in. Either way the daemon target must be ::1 — that's
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# the regression we're locking in.
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verify_resolved_backend() {
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local name="$1"
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local ver
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ver=$(container_systemd_version "$name")
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local backend
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backend=$(get_backend "$name")
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local expected_backend expected_path
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if [ -n "$ver" ] && [ "$ver" -ge 258 ]; then
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expected_backend="dns-delegate"
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expected_path="/etc/systemd/dns-delegate.d/fips.dns-delegate"
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else
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expected_backend="global-drop-in"
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expected_path="/etc/systemd/resolved.conf.d/fips.conf"
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fi
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if [ "$backend" = "$expected_backend" ]; then
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pass "detected backend: $expected_backend (systemd $ver)"
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else
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fail "expected $expected_backend (systemd $ver), got: $backend"
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fi
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if file_exists "$name" "$expected_path"; then
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pass "config file written at $expected_path"
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else
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fail "config file missing at $expected_path"
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return
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fi
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# All systemd-flavoured backends must target [::1]:5354 to match
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# the daemon's default bind. If they don't, queries silently fail
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# — Linux IPv6 sockets bound to ::1 do not accept v4 traffic.
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if file_contains "$name" "$expected_path" "[::1]:5354"; then
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pass "config DNS target is [::1]:5354 (matches daemon default)"
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else
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fail "config DNS target wrong — must be [::1]:5354"
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echo " contents: $(docker exec "$name" cat "$expected_path")"
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fi
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# Domain forwarding line: dns-delegate uses 'Domains=fips',
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# global-drop-in uses 'Domains=~fips' (wildcard prefix).
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local expected_domain_line
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if [ "$expected_backend" = "dns-delegate" ]; then
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expected_domain_line="Domains=fips"
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else
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expected_domain_line="Domains=~fips"
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fi
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if file_contains "$name" "$expected_path" "$expected_domain_line"; then
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pass "config Domains line correct ($expected_domain_line)"
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else
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fail "config Domains line incorrect — expected $expected_domain_line"
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fi
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run_teardown "$name" >/dev/null 2>&1
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if ! file_exists "$name" "$expected_path"; then
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pass "teardown removed config file"
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else
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fail "config file still exists after teardown"
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fi
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if ! file_exists "$name" /run/fips/dns-backend; then
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pass "teardown cleaned state file"
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else
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fail "state file still exists after teardown"
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fi
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}
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# ─────────────────────────────────────────────────────────────────────
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# Build the fips binary once in a Debian 12 builder image so it's
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# glibc-compatible with every target distro (Debian 12/13, Ubuntu 22/24).
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# Cached at testing/dns-resolver/.cache/fips between runs; rebuild if
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# any source file is newer than the cached binary.
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# ─────────────────────────────────────────────────────────────────────
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build_fips_for_e2e() {
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mkdir -p "$CACHE_DIR"
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if [ -f "$FIPS_BIN_CACHE" ] && [ -f "$FIPS_GATEWAY_BIN_CACHE" ]; then
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local newest_src
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newest_src=$(find "$REPO_ROOT/src" "$REPO_ROOT/Cargo.toml" "$REPO_ROOT/Cargo.lock" \
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-type f -printf '%T@\n' 2>/dev/null | sort -nr | head -1)
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local cached_age
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cached_age=$(stat -c '%Y' "$FIPS_BIN_CACHE" 2>/dev/null || echo 0)
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local cached_gateway_age
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cached_gateway_age=$(stat -c '%Y' "$FIPS_GATEWAY_BIN_CACHE" 2>/dev/null || echo 0)
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local oldest_cached=$((cached_age < cached_gateway_age ? cached_age : cached_gateway_age))
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if awk "BEGIN { exit !($oldest_cached >= $newest_src) }"; then
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log "Using cached fips + fips-gateway binaries at $CACHE_DIR"
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return 0
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fi
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log "Cached binaries are stale, rebuilding"
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else
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log "No cached binaries, building"
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fi
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local builder_tag="fips-dns-test:builder"
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log "Building Debian 12 builder image (this may take a few minutes on first run)"
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docker build -t "$builder_tag" -f - "$REPO_ROOT" <<'DOCKERFILE' >/dev/null
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FROM debian:12
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ENV DEBIAN_FRONTEND=noninteractive
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RUN apt-get update && apt-get install -y --no-install-recommends \
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build-essential pkg-config libdbus-1-dev curl ca-certificates \
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libclang-dev clang && \
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apt-get clean && rm -rf /var/lib/apt/lists/*
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RUN curl --proto '=https' --tlsv1.2 -sSf https://sh.rustup.rs | \
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sh -s -- -y --default-toolchain stable --profile minimal
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ENV PATH="/root/.cargo/bin:${PATH}"
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WORKDIR /src
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COPY Cargo.toml Cargo.lock build.rs ./
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COPY src ./src
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RUN cargo build --release --bin fips --bin fips-gateway
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DOCKERFILE
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if [ ! "$(docker images -q "$builder_tag" 2>/dev/null)" ]; then
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echo " ERROR: builder image build failed"
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return 1
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fi
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log "Extracting fips + fips-gateway binaries from builder image"
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local cid
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cid=$(docker create "$builder_tag")
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docker cp "$cid:/src/target/release/fips" "$FIPS_BIN_CACHE" >/dev/null 2>&1
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docker cp "$cid:/src/target/release/fips-gateway" "$FIPS_GATEWAY_BIN_CACHE" >/dev/null 2>&1
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docker rm "$cid" >/dev/null
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chmod +x "$FIPS_BIN_CACHE" "$FIPS_GATEWAY_BIN_CACHE"
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log "Cached fips ($(stat -c %s "$FIPS_BIN_CACHE") bytes) + fips-gateway ($(stat -c %s "$FIPS_GATEWAY_BIN_CACHE") bytes)"
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}
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# ─────────────────────────────────────────────────────────────────────
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# Scenarios — script-behavior tests across distros (no daemon)
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# ─────────────────────────────────────────────────────────────────────
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test_debian12_resolved() {
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local name="fips-dns-test-deb12-resolved${FIPS_CI_NAME_SUFFIX:-}"
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local image="fips-dns-test:debian12-resolved"
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log "Debian 12 + systemd-resolved (expects global-drop-in)"
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build_image "$image" "$(cat <<'DOCKERFILE'
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FROM debian:12
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ENV DEBIAN_FRONTEND=noninteractive
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RUN apt-get update && apt-get install -y --no-install-recommends \
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systemd systemd-resolved iproute2 dbus && \
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apt-get clean && rm -rf /var/lib/apt/lists/* && \
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systemctl enable systemd-resolved
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CMD ["/lib/systemd/systemd"]
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DOCKERFILE
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)" || { fail "build failed"; return; }
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start_systemd_container "$name" "$image"
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wait_for_systemd "$name"
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create_fips0 "$name"
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local output
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output=$(run_setup "$name" 2>&1)
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echo " output: $output"
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verify_resolved_backend "$name"
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cleanup_container "$name"
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}
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test_debian13_resolved() {
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local name="fips-dns-test-deb13-resolved${FIPS_CI_NAME_SUFFIX:-}"
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local image="fips-dns-test:debian13-resolved"
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log "Debian 13 (trixie) + systemd-resolved (expects global-drop-in)"
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build_image "$image" "$(cat <<'DOCKERFILE'
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FROM debian:trixie
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ENV DEBIAN_FRONTEND=noninteractive
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RUN apt-get update && apt-get install -y --no-install-recommends \
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systemd systemd-resolved iproute2 dbus && \
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apt-get clean && rm -rf /var/lib/apt/lists/* && \
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systemctl enable systemd-resolved
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CMD ["/lib/systemd/systemd"]
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DOCKERFILE
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)" || { fail "build failed"; return; }
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start_systemd_container "$name" "$image"
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wait_for_systemd "$name"
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create_fips0 "$name"
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local output
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output=$(run_setup "$name" 2>&1)
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echo " output: $output"
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verify_resolved_backend "$name"
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cleanup_container "$name"
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}
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test_ubuntu22_resolved() {
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local name="fips-dns-test-u22-resolved${FIPS_CI_NAME_SUFFIX:-}"
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local image="fips-dns-test:ubuntu22-resolved"
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log "Ubuntu 22.04 + systemd-resolved (expects global-drop-in)"
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# On Ubuntu 22.04 systemd-resolved is bundled with systemd (not a
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# separate package). Just enable the service.
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build_image "$image" "$(cat <<'DOCKERFILE'
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FROM ubuntu:22.04
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ENV DEBIAN_FRONTEND=noninteractive
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RUN apt-get update && apt-get install -y --no-install-recommends \
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systemd iproute2 dbus && \
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apt-get clean && rm -rf /var/lib/apt/lists/* && \
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systemctl enable systemd-resolved
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CMD ["/lib/systemd/systemd"]
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DOCKERFILE
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)" || { fail "build failed"; return; }
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start_systemd_container "$name" "$image"
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wait_for_systemd "$name"
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create_fips0 "$name"
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local output
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output=$(run_setup "$name" 2>&1)
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echo " output: $output"
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verify_resolved_backend "$name"
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cleanup_container "$name"
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}
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test_ubuntu24_resolved() {
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local name="fips-dns-test-u24-resolved${FIPS_CI_NAME_SUFFIX:-}"
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local image="fips-dns-test:ubuntu24-resolved"
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log "Ubuntu 24.04 + systemd-resolved (expects global-drop-in)"
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build_image "$image" "$(cat <<'DOCKERFILE'
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FROM ubuntu:24.04
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ENV DEBIAN_FRONTEND=noninteractive
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RUN apt-get update && apt-get install -y --no-install-recommends \
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systemd systemd-resolved iproute2 dbus && \
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apt-get clean && rm -rf /var/lib/apt/lists/* && \
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systemctl enable systemd-resolved
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CMD ["/lib/systemd/systemd"]
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DOCKERFILE
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)" || { fail "build failed"; return; }
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start_systemd_container "$name" "$image"
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wait_for_systemd "$name"
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create_fips0 "$name"
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local output
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output=$(run_setup "$name" 2>&1)
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echo " output: $output"
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verify_resolved_backend "$name"
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cleanup_container "$name"
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}
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test_ubuntu26_resolved() {
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local name="fips-dns-test-u26-resolved${FIPS_CI_NAME_SUFFIX:-}"
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local image="fips-dns-test:ubuntu26-resolved"
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log "Ubuntu 26.04 + systemd-resolved (expects global-drop-in)"
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build_image "$image" "$(cat <<'DOCKERFILE'
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FROM ubuntu:26.04
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ENV DEBIAN_FRONTEND=noninteractive
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RUN apt-get update && apt-get install -y --no-install-recommends \
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systemd systemd-resolved iproute2 dbus && \
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apt-get clean && rm -rf /var/lib/apt/lists/* && \
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systemctl enable systemd-resolved
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CMD ["/lib/systemd/systemd"]
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DOCKERFILE
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)" || { fail "build failed"; return; }
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start_systemd_container "$name" "$image"
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wait_for_systemd "$name"
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create_fips0 "$name"
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local output
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output=$(run_setup "$name" 2>&1)
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echo " output: $output"
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verify_resolved_backend "$name"
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cleanup_container "$name"
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}
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test_dnsmasq() {
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local name="fips-dns-test-dnsmasq${FIPS_CI_NAME_SUFFIX:-}"
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local image="fips-dns-test:dnsmasq"
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log "Debian 12 + dnsmasq standalone"
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build_image "$image" "$(cat <<'DOCKERFILE'
|
|
FROM debian:12
|
|
ENV DEBIAN_FRONTEND=noninteractive
|
|
RUN apt-get update && apt-get install -y --no-install-recommends \
|
|
systemd dnsmasq iproute2 dbus && \
|
|
apt-get clean && rm -rf /var/lib/apt/lists/* && \
|
|
systemctl enable dnsmasq && \
|
|
mkdir -p /etc/dnsmasq.d
|
|
CMD ["/lib/systemd/systemd"]
|
|
DOCKERFILE
|
|
)" || { fail "build failed"; return; }
|
|
|
|
start_systemd_container "$name" "$image"
|
|
wait_for_systemd "$name"
|
|
create_fips0 "$name"
|
|
|
|
local output
|
|
output=$(run_setup "$name" 2>&1)
|
|
echo " output: $output"
|
|
|
|
local backend
|
|
backend=$(get_backend "$name")
|
|
if [ "$backend" = "dnsmasq" ]; then
|
|
pass "detected backend: dnsmasq"
|
|
else
|
|
fail "expected dnsmasq, got: $backend"
|
|
fi
|
|
|
|
# Verify config file was written
|
|
if file_exists "$name" /etc/dnsmasq.d/fips.conf; then
|
|
pass "dnsmasq config written"
|
|
echo " config: $(docker exec "$name" cat /etc/dnsmasq.d/fips.conf)"
|
|
else
|
|
fail "dnsmasq config not found"
|
|
fi
|
|
|
|
# Verify config targets ::1#5354 (the daemon's default IPv6
|
|
# loopback bind). Drift from this constant would silently break
|
|
# resolution on hosts using this backend.
|
|
if file_contains "$name" /etc/dnsmasq.d/fips.conf "server=/fips/::1#5354"; then
|
|
pass "dnsmasq config targets ::1#5354 (matches daemon default)"
|
|
else
|
|
fail "dnsmasq config target wrong — must be server=/fips/::1#5354"
|
|
fi
|
|
|
|
# Teardown
|
|
run_teardown "$name" >/dev/null 2>&1
|
|
if ! file_exists "$name" /etc/dnsmasq.d/fips.conf; then
|
|
pass "teardown removed dnsmasq config"
|
|
else
|
|
fail "dnsmasq config still exists after teardown"
|
|
fi
|
|
if ! file_exists "$name" /run/fips/dns-backend; then
|
|
pass "teardown cleaned state file"
|
|
else
|
|
fail "state file still exists after teardown"
|
|
fi
|
|
|
|
cleanup_container "$name"
|
|
}
|
|
|
|
test_nm_dnsmasq() {
|
|
local name="fips-dns-test-nm-dnsmasq${FIPS_CI_NAME_SUFFIX:-}"
|
|
local image="fips-dns-test:nm-dnsmasq"
|
|
log "Fedora + NetworkManager + dnsmasq plugin"
|
|
|
|
build_image "$image" "$(cat <<'DOCKERFILE'
|
|
FROM fedora:latest
|
|
RUN dnf install -y systemd NetworkManager dnsmasq iproute && \
|
|
dnf clean all && \
|
|
mkdir -p /etc/NetworkManager/conf.d /etc/NetworkManager/dnsmasq.d && \
|
|
printf '[main]\ndns=dnsmasq\n' > /etc/NetworkManager/conf.d/dns.conf && \
|
|
systemctl enable NetworkManager && \
|
|
systemctl disable systemd-resolved && \
|
|
systemctl mask systemd-resolved
|
|
CMD ["/sbin/init"]
|
|
DOCKERFILE
|
|
)" || { fail "build failed"; return; }
|
|
|
|
start_systemd_container "$name" "$image"
|
|
wait_for_systemd "$name"
|
|
create_fips0 "$name"
|
|
|
|
local output
|
|
output=$(run_setup "$name" 2>&1)
|
|
echo " output: $output"
|
|
|
|
local backend
|
|
backend=$(get_backend "$name")
|
|
if [ "$backend" = "nm-dnsmasq" ]; then
|
|
pass "detected backend: nm-dnsmasq"
|
|
else
|
|
fail "expected nm-dnsmasq, got: $backend"
|
|
fi
|
|
|
|
if file_exists "$name" /etc/NetworkManager/dnsmasq.d/fips.conf; then
|
|
pass "NM dnsmasq config written"
|
|
echo " config: $(docker exec "$name" cat /etc/NetworkManager/dnsmasq.d/fips.conf)"
|
|
else
|
|
fail "NM dnsmasq config not found"
|
|
fi
|
|
|
|
if file_contains "$name" /etc/NetworkManager/dnsmasq.d/fips.conf "server=/fips/::1#5354"; then
|
|
pass "NM dnsmasq config targets ::1#5354 (matches daemon default)"
|
|
else
|
|
fail "NM dnsmasq config target wrong — must be server=/fips/::1#5354"
|
|
fi
|
|
|
|
# Teardown
|
|
run_teardown "$name" >/dev/null 2>&1
|
|
if ! file_exists "$name" /etc/NetworkManager/dnsmasq.d/fips.conf; then
|
|
pass "teardown removed NM dnsmasq config"
|
|
else
|
|
fail "NM dnsmasq config still exists after teardown"
|
|
fi
|
|
if ! file_exists "$name" /run/fips/dns-backend; then
|
|
pass "teardown cleaned state file"
|
|
else
|
|
fail "state file still exists after teardown"
|
|
fi
|
|
|
|
cleanup_container "$name"
|
|
}
|
|
|
|
test_no_resolver() {
|
|
local name="fips-dns-test-none${FIPS_CI_NAME_SUFFIX:-}"
|
|
local image="fips-dns-test:none"
|
|
log "Debian 12 bare (no resolver)"
|
|
|
|
build_image "$image" "$(cat <<'DOCKERFILE'
|
|
FROM debian:12
|
|
ENV DEBIAN_FRONTEND=noninteractive
|
|
RUN apt-get update && apt-get install -y --no-install-recommends \
|
|
systemd iproute2 dbus && \
|
|
apt-get clean && rm -rf /var/lib/apt/lists/*
|
|
CMD ["/lib/systemd/systemd"]
|
|
DOCKERFILE
|
|
)" || { fail "build failed"; return; }
|
|
|
|
start_systemd_container "$name" "$image"
|
|
wait_for_systemd "$name"
|
|
create_fips0 "$name"
|
|
|
|
local output
|
|
output=$(run_setup "$name" 2>&1)
|
|
echo " output: $output"
|
|
|
|
local backend
|
|
backend=$(get_backend "$name")
|
|
if [ "$backend" = "none" ]; then
|
|
pass "detected backend: none (correct fallback)"
|
|
else
|
|
fail "expected none, got: $backend"
|
|
fi
|
|
|
|
# Verify it printed the warning
|
|
if echo "$output" | grep -q "No supported DNS resolver"; then
|
|
pass "printed manual instructions warning"
|
|
else
|
|
fail "missing manual instructions warning"
|
|
fi
|
|
|
|
run_teardown "$name" >/dev/null 2>&1
|
|
if ! file_exists "$name" /run/fips/dns-backend; then
|
|
pass "teardown cleaned state file"
|
|
else
|
|
fail "state file still exists after teardown"
|
|
fi
|
|
|
|
cleanup_container "$name"
|
|
}
|
|
|
|
# ─────────────────────────────────────────────────────────────────────
|
|
# End-to-end scenarios — run a real fips + fips-gateway, configure
|
|
# DNS via the script, dig through systemd-resolved.
|
|
#
|
|
# Parameterized across Debian 12/13 and Ubuntu 22/24/26. The fips
|
|
# and fips-gateway binaries are built once in a Debian 12 builder
|
|
# image (lowest glibc target → forward-compatible with all newer
|
|
# distros) and copied into each per-distro runtime image.
|
|
# ─────────────────────────────────────────────────────────────────────
|
|
|
|
# Args: <distro_label> <docker_base_image> <apt_packages>
|
|
# distro_label: short tag for container/image names (e.g. "debian12")
|
|
# docker_base_image: e.g. "debian:12", "ubuntu:26.04"
|
|
# apt_packages: space-separated apt-get install list. Ubuntu 22.04
|
|
# bundles systemd-resolved into systemd, so the package list there
|
|
# is "systemd iproute2 dbus dnsutils libdbus-1-3 procps" (no
|
|
# separate systemd-resolved). Other distros want
|
|
# "systemd systemd-resolved iproute2 dbus dnsutils libdbus-1-3 procps".
|
|
_run_e2e_scenario() {
|
|
local distro_label="$1"
|
|
local base_image="$2"
|
|
local apt_packages="$3"
|
|
|
|
local name="fips-dns-test-e2e-${distro_label}${FIPS_CI_NAME_SUFFIX:-}"
|
|
local image="fips-dns-test:e2e-${distro_label}"
|
|
log "End-to-end: ${base_image} + systemd-resolved + real fips + fips-gateway + dig"
|
|
|
|
build_fips_for_e2e || { fail "fips build failed"; return; }
|
|
|
|
if [ ! -x "$FIPS_BIN_CACHE" ] || [ ! -x "$FIPS_GATEWAY_BIN_CACHE" ]; then
|
|
fail "binaries not available at $CACHE_DIR"
|
|
return
|
|
fi
|
|
|
|
log "Building e2e runtime image (${base_image})"
|
|
cp "$FIPS_BIN_CACHE" "$CACHE_DIR/fips-bin-for-image"
|
|
cp "$FIPS_GATEWAY_BIN_CACHE" "$CACHE_DIR/fips-gateway-bin-for-image"
|
|
build_image "$image" "$(cat <<DOCKERFILE
|
|
FROM ${base_image}
|
|
ENV DEBIAN_FRONTEND=noninteractive
|
|
RUN apt-get update && apt-get install -y --no-install-recommends \\
|
|
${apt_packages} && \\
|
|
apt-get clean && rm -rf /var/lib/apt/lists/* && \\
|
|
systemctl enable systemd-resolved && \\
|
|
mkdir -p /etc/fips
|
|
COPY testing/dns-resolver/.cache/fips-bin-for-image /usr/bin/fips
|
|
COPY testing/dns-resolver/.cache/fips-gateway-bin-for-image /usr/bin/fips-gateway
|
|
RUN chmod +x /usr/bin/fips /usr/bin/fips-gateway
|
|
CMD ["/lib/systemd/systemd"]
|
|
DOCKERFILE
|
|
)" || { fail "runtime build failed"; rm -f "$CACHE_DIR/fips-bin-for-image" "$CACHE_DIR/fips-gateway-bin-for-image"; return; }
|
|
rm -f "$CACHE_DIR/fips-bin-for-image" "$CACHE_DIR/fips-gateway-bin-for-image"
|
|
|
|
start_systemd_container_with_tun "$name" "$image"
|
|
wait_for_systemd "$name"
|
|
|
|
# Write a minimal fips.yaml that exercises the new defaults.
|
|
# tun.enabled: true so the daemon creates fips0 itself; identity
|
|
# persistent so /etc/fips/fips.pub gives us a stable npub to query.
|
|
docker exec "$name" bash -c 'cat > /etc/fips/fips.yaml <<EOF
|
|
node:
|
|
identity:
|
|
persistent: true
|
|
log_level: debug
|
|
tun:
|
|
enabled: true
|
|
name: fips0
|
|
dns:
|
|
enabled: true
|
|
port: 5354
|
|
EOF'
|
|
|
|
# Start fips in the background.
|
|
log "Starting fips in container"
|
|
docker exec -d "$name" bash -c '/usr/bin/fips --config /etc/fips/fips.yaml >/var/log/fips.log 2>&1'
|
|
|
|
# Wait for the DNS responder to bind.
|
|
local ready=0
|
|
for _i in $(seq 1 "$DAEMON_TIMEOUT"); do
|
|
if docker exec "$name" ss -uln 2>/dev/null | grep -q ':5354'; then
|
|
ready=1
|
|
break
|
|
fi
|
|
sleep 1
|
|
done
|
|
if [ "$ready" = "1" ]; then
|
|
pass "fips DNS listener up on port 5354"
|
|
else
|
|
fail "fips DNS listener did not appear within ${DAEMON_TIMEOUT}s"
|
|
echo " --- fips log ---"
|
|
docker exec "$name" tail -30 /var/log/fips.log 2>&1 || true
|
|
echo " --- ss -uln ---"
|
|
docker exec "$name" ss -ulnp 2>&1 || true
|
|
cleanup_container "$name"
|
|
return
|
|
fi
|
|
|
|
# Confirm the daemon picked up the new ::1 default bind. Strip
|
|
# ANSI color codes from the log line before matching since the
|
|
# tracing-subscriber default formatter wraps fields in escape codes.
|
|
local bind_line
|
|
bind_line=$(docker exec "$name" grep -m1 "DNS responder started" /var/log/fips.log 2>/dev/null \
|
|
| sed -r 's/\x1b\[[0-9;]*m//g' || echo "")
|
|
echo " daemon log: $bind_line"
|
|
if echo "$bind_line" | grep -qE "bind=\[?::1\]?:5354"; then
|
|
pass "daemon bound on [::1]:5354 (new default)"
|
|
else
|
|
fail "daemon bind line missing or wrong: $bind_line"
|
|
fi
|
|
|
|
# Run setup.
|
|
local output
|
|
output=$(run_setup "$name" 2>&1)
|
|
echo " setup output: $output"
|
|
|
|
# Pick expected backend based on systemd version: dns-delegate
|
|
# on >= 258, global-drop-in otherwise. Either way the backend
|
|
# must target [::1]:5354 for the daemon to receive queries.
|
|
local ver
|
|
ver=$(container_systemd_version "$name")
|
|
local expected_backend
|
|
if [ -n "$ver" ] && [ "$ver" -ge 258 ]; then
|
|
expected_backend="dns-delegate"
|
|
else
|
|
expected_backend="global-drop-in"
|
|
fi
|
|
local backend
|
|
backend=$(get_backend "$name")
|
|
if [ "$backend" = "$expected_backend" ]; then
|
|
pass "setup picked $expected_backend backend (systemd $ver)"
|
|
else
|
|
fail "expected $expected_backend (systemd $ver), got: $backend"
|
|
fi
|
|
|
|
# Wait briefly for systemd-resolved to apply the new config.
|
|
sleep 2
|
|
|
|
# Pull the daemon's npub from the persistent identity file.
|
|
local npub
|
|
npub=$(docker exec "$name" cat /etc/fips/fips.pub 2>/dev/null | tr -d '[:space:]')
|
|
if [ -z "$npub" ]; then
|
|
fail "no /etc/fips/fips.pub after daemon start"
|
|
echo " --- /etc/fips ---"
|
|
docker exec "$name" ls -la /etc/fips/ 2>&1 || true
|
|
cleanup_container "$name"
|
|
return
|
|
fi
|
|
echo " daemon npub: $npub"
|
|
|
|
# Direct dig to the daemon's loopback bind — must succeed.
|
|
local direct_output
|
|
direct_output=$(docker exec "$name" dig +tries=1 +time=3 @::1 -p 5354 AAAA "${npub}.fips" 2>&1)
|
|
if echo "$direct_output" | grep -qE '^[a-zA-Z0-9].*\sAAAA\s+[0-9a-f:]+'; then
|
|
pass "direct dig @::1#5354 returns AAAA"
|
|
else
|
|
fail "direct dig @::1#5354 did not return AAAA"
|
|
echo " --- dig output ---"
|
|
echo "$direct_output" | tail -15
|
|
fi
|
|
|
|
# End-to-end via systemd-resolved stub.
|
|
local stub_output
|
|
stub_output=$(docker exec "$name" dig +tries=1 +time=3 @127.0.0.53 AAAA "${npub}.fips" 2>&1)
|
|
if echo "$stub_output" | grep -qE '^[a-zA-Z0-9].*\sAAAA\s+[0-9a-f:]+'; then
|
|
pass "end-to-end dig @127.0.0.53 returns AAAA (the bug fix)"
|
|
else
|
|
fail "end-to-end dig @127.0.0.53 did not return AAAA"
|
|
echo " --- dig output ---"
|
|
echo "$stub_output" | tail -15
|
|
echo " --- resolved status ---"
|
|
docker exec "$name" resolvectl status 2>&1 | tail -20 || true
|
|
echo " --- daemon log tail ---"
|
|
docker exec "$name" tail -30 /var/log/fips.log 2>&1 || true
|
|
fi
|
|
|
|
# Verify fips-gateway's DNS upstream reachability check passes
|
|
# against the daemon's new ::1 default. This locks the regression
|
|
# class where the gateway default (was 127.0.0.1:5354) and the
|
|
# daemon default (now [::1]:5354) drift apart on Linux IPv6
|
|
# sockets that don't accept v4-mapped traffic.
|
|
docker exec "$name" bash -c 'cat > /tmp/gateway-test.yaml <<EOF
|
|
node:
|
|
identity:
|
|
persistent: true
|
|
gateway:
|
|
enabled: true
|
|
pool: "fd01::/112"
|
|
lan_interface: "eth0"
|
|
EOF'
|
|
# fips-gateway checks IPv6 forwarding before the DNS upstream
|
|
# reachability check; enable forwarding so we get to the check we
|
|
# actually want to test.
|
|
docker exec "$name" sysctl -w net.ipv6.conf.all.forwarding=1 >/dev/null 2>&1 || true
|
|
docker exec -d "$name" bash -c '/usr/bin/fips-gateway --config /tmp/gateway-test.yaml >/var/log/fips-gateway.log 2>&1 || true'
|
|
|
|
# Wait briefly for the upstream-reachability log line to appear
|
|
# one way or the other.
|
|
local gw_ok=0
|
|
for _i in $(seq 1 5); do
|
|
if docker exec "$name" grep -q "DNS upstream is reachable" /var/log/fips-gateway.log 2>/dev/null; then
|
|
gw_ok=1
|
|
break
|
|
fi
|
|
if docker exec "$name" grep -qE "DNS upstream did not respond|Failed to send DNS probe|DNS upstream recv failed" /var/log/fips-gateway.log 2>/dev/null; then
|
|
break
|
|
fi
|
|
sleep 1
|
|
done
|
|
if [ "$gw_ok" = "1" ]; then
|
|
pass "fips-gateway reaches DNS upstream at [::1]:5354 (gateway/daemon default parity)"
|
|
else
|
|
fail "fips-gateway DNS upstream check failed — defaults drifted?"
|
|
echo " --- fips-gateway log ---"
|
|
docker exec "$name" tail -20 /var/log/fips-gateway.log 2>&1 || true
|
|
fi
|
|
# Stop the gateway (it will likely have failed past the upstream
|
|
# check on something unrelated in this minimal container — we only
|
|
# care that the upstream reachability step succeeded).
|
|
docker exec "$name" pkill -f fips-gateway 2>/dev/null || true
|
|
|
|
# Teardown via the script: backend config file must be removed
|
|
# (path varies by backend selected above).
|
|
local teardown_path
|
|
if [ "$expected_backend" = "dns-delegate" ]; then
|
|
teardown_path="/etc/systemd/dns-delegate.d/fips.dns-delegate"
|
|
else
|
|
teardown_path="/etc/systemd/resolved.conf.d/fips.conf"
|
|
fi
|
|
run_teardown "$name" >/dev/null 2>&1
|
|
if ! file_exists "$name" "$teardown_path"; then
|
|
pass "teardown removed $expected_backend config at $teardown_path"
|
|
else
|
|
fail "$expected_backend config still present after teardown at $teardown_path"
|
|
fi
|
|
|
|
cleanup_container "$name"
|
|
}
|
|
|
|
# Per-distro wrappers
|
|
_pkgs_with_resolved="systemd systemd-resolved iproute2 dbus dnsutils libdbus-1-3 procps"
|
|
_pkgs_ubuntu22="systemd iproute2 dbus dnsutils libdbus-1-3 procps"
|
|
|
|
test_e2e_debian12() { _run_e2e_scenario debian12 debian:12 "$_pkgs_with_resolved"; }
|
|
test_e2e_debian13() { _run_e2e_scenario debian13 debian:trixie "$_pkgs_with_resolved"; }
|
|
test_e2e_ubuntu22() { _run_e2e_scenario ubuntu22 ubuntu:22.04 "$_pkgs_ubuntu22"; }
|
|
test_e2e_ubuntu24() { _run_e2e_scenario ubuntu24 ubuntu:24.04 "$_pkgs_with_resolved"; }
|
|
test_e2e_ubuntu26() { _run_e2e_scenario ubuntu26 ubuntu:26.04 "$_pkgs_with_resolved"; }
|
|
|
|
# ─────────────────────────────────────────────────────────────────────
|
|
# Main
|
|
# ─────────────────────────────────────────────────────────────────────
|
|
|
|
ALL_SCENARIOS="debian12-resolved debian13-resolved ubuntu22-resolved ubuntu24-resolved ubuntu26-resolved dnsmasq nm-dnsmasq no-resolver e2e-debian12 e2e-debian13 e2e-ubuntu22 e2e-ubuntu24 e2e-ubuntu26"
|
|
|
|
if [ $# -eq 0 ]; then
|
|
scenarios="$ALL_SCENARIOS"
|
|
else
|
|
scenarios="$*"
|
|
fi
|
|
|
|
for scenario in $scenarios; do
|
|
case "$scenario" in
|
|
debian12-resolved) test_debian12_resolved ;;
|
|
debian13-resolved) test_debian13_resolved ;;
|
|
ubuntu22-resolved) test_ubuntu22_resolved ;;
|
|
ubuntu24-resolved) test_ubuntu24_resolved ;;
|
|
ubuntu26-resolved) test_ubuntu26_resolved ;;
|
|
dnsmasq) test_dnsmasq ;;
|
|
nm-dnsmasq) test_nm_dnsmasq ;;
|
|
no-resolver) test_no_resolver ;;
|
|
e2e-debian12) test_e2e_debian12 ;;
|
|
e2e-debian13) test_e2e_debian13 ;;
|
|
e2e-ubuntu22) test_e2e_ubuntu22 ;;
|
|
e2e-ubuntu24) test_e2e_ubuntu24 ;;
|
|
e2e-ubuntu26) test_e2e_ubuntu26 ;;
|
|
*)
|
|
echo "Unknown scenario: $scenario"
|
|
echo "Available: $ALL_SCENARIOS"
|
|
exit 1
|
|
;;
|
|
esac
|
|
echo
|
|
done
|
|
|
|
echo "═══════════════════════════════════════"
|
|
echo "Results: $PASS passed, $FAIL failed, $SKIP skipped"
|
|
echo "═══════════════════════════════════════"
|
|
|
|
[ "$FAIL" -eq 0 ]
|