Files
fips/testing/ci-local.sh
T
Johnathan Corgan 0a84a25db1 Merge master into next (inbound admission cap silent-drop; XX-adapted gate at handle_msg3)
Carries the inbound max_peers admission-cap silent-drop work from
master across the IK→XX structural boundary.

On master (Noise IK), the gate fires at handle_msg1 after the peer's
identity is extracted from the IK msg1 payload, before Msg2 is built
and sent. Wire savings of Msg2 (~104 B) plus the responder crypto
per cap-denied attempt motivate the gate placement.

On next (Noise XX), peer identity is not learned until msg3, by
which point Msg1, Msg2, and Msg3 have all crossed the wire. The IK
gate's wire-savings rationale does not apply on XX. The equivalent
gate is placed in handle_msg3 after the peer's static-key + signature
verification (identity now known) and before promote_connection
(ActivePeer construction, peers_by_index insert, link transition).
The value on XX is local CPU / allocation savings and cleaner peer-
side semantics: no fake-promotion whose subsequent data frames fail
decryption on this side, replaced by a silent drop the peer's
existing auto-reconnect backoff handles cleanly.

Bypass logic is the same as the IK version: known-active peers
(reconnect / cross-connection / restart) and pending-outbound peers
skip the cap so admitting them doesn't grow peers.len(). The late
cap check inside promote_connection is intentionally retained as
defense-in-depth.

Cleanup ordering for the gate's silent-drop path corrects a latent
issue in the adjacent msg3-processing-failure path: our_index is
captured before the connection is removed so the allocator slot is
actually freed (the pre-existing path's get-after-remove returns
None, leaking the index).

The two IK-shaped unit tests at handle_msg1 are marked #[ignore] on
this branch with reason. Their wire-bytes discriminator ("Msg2 must
NOT be sent at cap") is structurally false on XX, and the XX-shaped
equivalents need full three-message-handshake test scaffolding that
isn't authored here. XX-adapted unit + integration test coverage for
the handle_msg3 gate is a follow-up.

CHANGELOG [Unreleased] entry adjusted to describe the handle_msg3
placement on this branch (preserving the master-side framing on the
mainline-merge half of the entry would have been misleading on this
branch).

Three conflicts auto-resolved: the structural handshake.rs span
(~253 lines, IK identity-tied logic discarded on this branch's XX
msg1 path), and three textual ci-local.sh conflicts (admission-cap
suite list / dispatch added alongside the existing mixed-profile
suite list / dispatch).
2026-05-27 17:01:59 +00:00

851 lines
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#!/bin/bash
# Run the CI pipeline locally: build, unit tests, integration tests.
#
# Usage: ./ci-local.sh [options]
#
# Options:
# --build-only Only run build + clippy
# --test-only Only run unit tests (skip build, skip integration)
# --skip-integration Skip integration tests
# --skip-chaos Skip chaos scenarios
# --with-tor Include Tor harnesses (off by default — needs live Tor)
# --only <suite> Run a single integration suite
# -j, --jobs <N> Max parallel chaos scenarios (default: 4)
# --list List available integration suites
# -h, --help Show this help
#
# Integration suites (default coverage):
# static-mesh, static-chain, rekey, rekey-accept-off,
# rekey-outbound-only, mixed-profile, gateway,
# acl-allowlist, firewall, nat-cone, nat-symmetric, nat-lan,
# nostr-publish-consume, stun-faults,
# chaos-smoke-10, chaos-churn-mixed-10, chaos-ethernet-mesh,
# chaos-ethernet-only, chaos-tcp-mesh, chaos-bottleneck-parent,
# chaos-cost-avoidance, chaos-cost-reeval, chaos-cost-stability,
# chaos-depth-vs-cost, chaos-mixed-technology, chaos-congestion-stress,
# chaos-bloom-storm,
# sidecar, dns-resolver, deb-install
#
# Opt-in (require --with-tor; depend on live Tor network):
# tor-socks5, tor-directory
#
# Exit codes:
# 0 — all stages passed
# 1 — one or more stages failed
set -uo pipefail
SCRIPT_DIR="$(cd "$(dirname "$0")" && pwd)"
PROJECT_ROOT="$(cd "$SCRIPT_DIR/.." && pwd)"
if [[ ! -f "$PROJECT_ROOT/Cargo.toml" ]]; then
echo "Error: Cannot find Cargo.toml at $PROJECT_ROOT" >&2
exit 1
fi
cd "$PROJECT_ROOT" || exit 1
# ── Configuration ──────────────────────────────────────────────────────────
PARALLEL_JOBS=4
BUILD_ONLY=false
TEST_ONLY=false
SKIP_INTEGRATION=false
SKIP_CHAOS=false
WITH_TOR=false
ONLY_SUITE=""
# All integration suites matching ci.yml
STATIC_SUITES=(static-mesh static-chain)
REKEY_SUITES=(rekey rekey-accept-off rekey-outbound-only)
ADMISSION_SUITES=(admission-cap)
# Each entry: "display-name scenario [--flag value ...]"
CHAOS_SUITES=(
"smoke-10 smoke-10"
"churn-mixed-10 churn-mixed --nodes 10 --duration 120"
"ethernet-mesh ethernet-mesh"
"ethernet-only ethernet-only"
"tcp-mesh tcp-mesh"
"bottleneck-parent bottleneck-parent"
"cost-avoidance cost-avoidance"
"cost-reeval cost-reeval"
"cost-stability cost-stability"
"depth-vs-cost depth-vs-cost"
"mixed-technology mixed-technology"
"congestion-stress congestion-stress"
"bloom-storm bloom-storm"
)
SIDECAR_SUITES=(sidecar)
GATEWAY_SUITES=(gateway)
ACL_SUITES=(acl-allowlist)
FIREWALL_SUITES=(firewall)
NAT_SUITES=(cone symmetric lan)
NOSTR_RELAY_SUITES=(nostr-publish-consume)
STUN_FAULTS_SUITES=(stun-faults)
DNS_RESOLVER_SUITES=(dns-resolver)
DEB_INSTALL_SUITES=(deb-install)
TOR_SUITES=(tor-socks5 tor-directory)
# ── Colors ─────────────────────────────────────────────────────────────────
RED='\033[0;31m'
GREEN='\033[0;32m'
YELLOW='\033[1;33m'
CYAN='\033[0;36m'
BOLD='\033[1m'
RESET='\033[0m'
# ── Helpers ────────────────────────────────────────────────────────────────
stamp() { date '+%H:%M:%S'; }
info() { echo -e "${CYAN}[$(stamp)]${RESET} $*"; }
pass() { echo -e "${GREEN}[$(stamp)] PASS${RESET} $*"; }
fail() { echo -e "${RED}[$(stamp)] FAIL${RESET} $*"; }
stage() { echo -e "\n${BOLD}${YELLOW}═══ $* ═══${RESET}\n"; }
list_suites() {
echo "Available integration suites:"
echo ""
echo " Static topologies:"
for s in "${STATIC_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Rekey:"
for s in "${REKEY_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Admission cap:"
for s in "${ADMISSION_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Gateway:"
for s in "${GATEWAY_SUITES[@]}"; do echo " $s"; done
echo ""
echo " ACL allowlist:"
for s in "${ACL_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Firewall baseline:"
for s in "${FIREWALL_SUITES[@]}"; do echo " $s"; done
echo ""
echo " NAT scenarios:"
for s in "${NAT_SUITES[@]}"; do echo " nat-$s"; done
echo ""
echo " Nostr publish/consume:"
for s in "${NOSTR_RELAY_SUITES[@]}"; do echo " $s"; done
echo ""
echo " STUN fault-injection:"
for s in "${STUN_FAULTS_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Chaos scenarios:"
for entry in "${CHAOS_SUITES[@]}"; do
read -ra parts <<< "$entry"
echo " chaos-${parts[0]} (${parts[*]:1})"
done
echo ""
echo " Sidecar:"
for s in "${SIDECAR_SUITES[@]}"; do echo " $s"; done
echo ""
echo " DNS resolver:"
for s in "${DNS_RESOLVER_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Deb-install:"
for s in "${DEB_INSTALL_SUITES[@]}"; do echo " $s"; done
echo ""
echo " Tor (opt-in via --with-tor):"
for s in "${TOR_SUITES[@]}"; do echo " $s"; done
exit 0
}
usage() {
sed -n '2,/^$/{ s/^# \?//; p }' "$0"
exit 0
}
# ── Parse arguments ────────────────────────────────────────────────────────
while [[ $# -gt 0 ]]; do
case "$1" in
--build-only) BUILD_ONLY=true; shift ;;
--test-only) TEST_ONLY=true; shift ;;
--skip-integration) SKIP_INTEGRATION=true; shift ;;
--skip-chaos) SKIP_CHAOS=true; shift ;;
--with-tor) WITH_TOR=true; shift ;;
--only) ONLY_SUITE="$2"; shift 2 ;;
-j|--jobs) PARALLEL_JOBS="$2"; shift 2 ;;
--list) list_suites ;;
-h|--help) usage ;;
*) echo "Unknown option: $1"; usage ;;
esac
done
# ── Results tracking ──────────────────────────────────────────────────────
declare -A RESULTS
OVERALL=0
record() {
local name="$1" rc="$2"
RESULTS["$name"]=$rc
if [[ $rc -ne 0 ]]; then
OVERALL=1
fail "$name"
else
pass "$name"
fi
}
# ── Stage 1: Build ─────────────────────────────────────────────────────────
run_build() {
stage "Stage 1: Build"
info "sudo nft -c -f packaging/common/fips.nft (nftables ruleset syntax check)"
if command -v nft &>/dev/null; then
if sudo nft -c -f packaging/common/fips.nft 2>&1; then
record "nft-syntax" 0
else
record "nft-syntax" 1
return 1
fi
else
info "nftables not installed; install with 'apt install nftables' to validate fips.nft"
record "nft-syntax" 1
return 1
fi
info "cargo build --release"
if cargo build --release 2>&1; then
record "build" 0
else
record "build" 1
return 1
fi
info "cargo fmt --check"
if cargo fmt --check 2>&1; then
record "fmt" 0
else
record "fmt" 1
return 1
fi
info "cargo clippy --all-targets --all-features -- -D warnings"
if cargo clippy --all-targets --all-features -- -D warnings 2>&1; then
record "clippy" 0
else
record "clippy" 1
return 1
fi
}
# ── Stage 2: Unit Tests ───────────────────────────────────────────────────
run_tests() {
stage "Stage 2: Unit Tests"
local cmd
if command -v cargo-nextest &>/dev/null; then
cmd="cargo nextest run --all"
info "$cmd"
if $cmd 2>&1; then
record "unit-tests" 0
else
record "unit-tests" 1
fi
else
cmd="cargo test --all"
info "$cmd (nextest not found, using cargo test)"
if $cmd 2>&1; then
record "unit-tests" 0
else
record "unit-tests" 1
fi
fi
}
# ── Stage 3: Integration Tests ─────────────────────────────────────────────
# Copy release binaries into a testing subdirectory
install_binaries() {
local dest="$1"
cp target/release/fips "$dest/fips"
cp target/release/fipsctl "$dest/fipsctl"
[[ -f target/release/fipstop ]] && cp target/release/fipstop "$dest/fipstop" || true
[[ -f target/release/fips-gateway ]] && cp target/release/fips-gateway "$dest/fips-gateway" || true
chmod +x "$dest/fips" "$dest/fipsctl"
[[ -f "$dest/fipstop" ]] && chmod +x "$dest/fipstop" || true
[[ -f "$dest/fips-gateway" ]] && chmod +x "$dest/fips-gateway" || true
}
# Run a static topology test (mesh, chain)
run_static() {
local topology="$1"
local compose="testing/static/docker-compose.yml"
local rc=0
info "[$topology] Generating configs"
bash testing/static/scripts/generate-configs.sh "$topology" || { record "static-$topology" 1; return; }
info "[$topology] Starting containers"
docker compose -f "$compose" --profile "$topology" up -d || { record "static-$topology" 1; return; }
info "[$topology] Running ping test"
if bash testing/static/scripts/ping-test.sh "$topology"; then
rc=0
else
rc=1
info "[$topology] Collecting failure logs"
docker compose -f "$compose" --profile "$topology" logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile "$topology" down --volumes --remove-orphans 2>/dev/null
record "static-$topology" $rc
}
# Run the rekey integration test
run_rekey() {
local compose="testing/static/docker-compose.yml"
local rc=0
info "[rekey] Generating configs"
bash testing/static/scripts/generate-configs.sh rekey || { record "rekey" 1; return; }
bash testing/static/scripts/rekey-test.sh inject-config || { record "rekey" 1; return; }
info "[rekey] Starting containers"
docker compose -f "$compose" --profile rekey up -d || { record "rekey" 1; return; }
info "[rekey] Running rekey test"
if bash testing/static/scripts/rekey-test.sh; then
rc=0
else
rc=1
info "[rekey] Collecting failure logs"
docker compose -f "$compose" --profile rekey logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile rekey down --volumes --remove-orphans 2>/dev/null
record "rekey" $rc
}
# Run the mixed-profile integration test (Full + NonRouting + Leaf)
run_mixed_profile() {
local compose="testing/static/docker-compose.yml"
local rc=0
info "[mixed-profile] Generating configs"
bash testing/static/scripts/generate-configs.sh mixed-profile || { record "mixed-profile" 1; return; }
bash testing/static/scripts/mixed-profile-test.sh inject-config || { record "mixed-profile" 1; return; }
info "[mixed-profile] Starting containers"
docker compose -f "$compose" --profile mixed-profile up -d || { record "mixed-profile" 1; return; }
info "[mixed-profile] Running mixed-profile test"
if bash testing/static/scripts/mixed-profile-test.sh; then
rc=0
else
rc=1
info "[mixed-profile] Collecting failure logs"
docker compose -f "$compose" --profile mixed-profile logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile mixed-profile down --volumes --remove-orphans 2>/dev/null
record "mixed-profile" $rc
}
# Run the admission-cap integration test
# Verifies the inbound max_peers early-gate silent-drops at scale by
# lowering node.max_peers on one mesh node and asserting via tcpdump
# that no Msg2 responses go to the sustained-retrying denied peers.
run_admission_cap() {
local compose="testing/static/docker-compose.yml"
local rc=0
info "[admission-cap] Generating configs"
bash testing/static/scripts/generate-configs.sh mesh || { record "admission-cap" 1; return; }
bash testing/static/scripts/admission-cap-test.sh inject-config || { record "admission-cap" 1; return; }
info "[admission-cap] Starting containers (mesh profile)"
docker compose -f "$compose" --profile mesh up -d || { record "admission-cap" 1; return; }
info "[admission-cap] Running admission-cap test"
if bash testing/static/scripts/admission-cap-test.sh; then
rc=0
else
rc=1
info "[admission-cap] Collecting failure logs"
docker compose -f "$compose" --profile mesh logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile mesh down --volumes --remove-orphans 2>/dev/null
record "admission-cap" $rc
}
# Run a chaos scenario
run_chaos() {
local name="$1"
shift
local rc=0
info "[chaos/$name] Running simulation"
if bash testing/chaos/scripts/chaos.sh "$@" 2>&1; then
rc=0
else
rc=1
fi
record "chaos-$name" $rc
}
# Run gateway integration test
run_gateway() {
local compose="testing/static/docker-compose.yml"
local rc=0
info "[gateway] Generating configs"
bash testing/static/scripts/generate-configs.sh gateway gateway-test || { record "gateway" 1; return; }
bash testing/static/scripts/gateway-test.sh inject-config || { record "gateway" 1; return; }
info "[gateway] Starting containers"
docker compose -f "$compose" --profile gateway up -d || { record "gateway" 1; return; }
info "[gateway] Running gateway test"
if bash testing/static/scripts/gateway-test.sh; then
rc=0
else
rc=1
info "[gateway] Collecting failure logs"
docker compose -f "$compose" --profile gateway logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile gateway down --volumes --remove-orphans 2>/dev/null
record "gateway" $rc
}
# Run sidecar test
run_sidecar() {
local rc=0
info "[sidecar] Running integration test"
if bash testing/sidecar/scripts/test-sidecar.sh --skip-build 2>&1; then
rc=0
else
rc=1
fi
record "sidecar" $rc
}
# Run the rekey-accept-off integration variant. Same harness as run_rekey
# but on a 2-node topology with udp.accept_connections=false on node-b.
run_rekey_accept_off() {
local compose="testing/static/docker-compose.yml"
local rc=0
info "[rekey-accept-off] Generating configs"
bash testing/static/scripts/generate-configs.sh rekey-accept-off || \
{ record "rekey-accept-off" 1; return; }
REKEY_TOPOLOGY=rekey-accept-off REKEY_ACCEPT_OFF_NODES=b \
bash testing/static/scripts/rekey-test.sh inject-config || \
{ record "rekey-accept-off" 1; return; }
info "[rekey-accept-off] Starting containers"
docker compose -f "$compose" --profile rekey-accept-off up -d || \
{ record "rekey-accept-off" 1; return; }
info "[rekey-accept-off] Running rekey test"
if REKEY_TOPOLOGY=rekey-accept-off REKEY_ACCEPT_OFF_NODES=b \
bash testing/static/scripts/rekey-test.sh; then
rc=0
else
rc=1
info "[rekey-accept-off] Collecting failure logs"
docker compose -f "$compose" --profile rekey-accept-off logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile rekey-accept-off down --volumes --remove-orphans 2>/dev/null
record "rekey-accept-off" $rc
}
# Run the rekey-outbound-only integration variant. Same harness as
# run_rekey but with udp.outbound_only=true on node-b plus its peer
# addrs rewritten from numeric docker IPs to docker hostnames so the
# addr_to_link key form mismatches inbound packet source addrs (the
# production trigger for the rekey-msg1 carve-out gap).
run_rekey_outbound_only() {
local compose="testing/static/docker-compose.yml"
local rc=0
info "[rekey-outbound-only] Generating configs"
bash testing/static/scripts/generate-configs.sh rekey-outbound-only || \
{ record "rekey-outbound-only" 1; return; }
REKEY_TOPOLOGY=rekey-outbound-only REKEY_OUTBOUND_ONLY_NODES=b \
bash testing/static/scripts/rekey-test.sh inject-config || \
{ record "rekey-outbound-only" 1; return; }
info "[rekey-outbound-only] Starting containers"
docker compose -f "$compose" --profile rekey-outbound-only up -d || \
{ record "rekey-outbound-only" 1; return; }
info "[rekey-outbound-only] Running rekey test"
if REKEY_TOPOLOGY=rekey-outbound-only REKEY_OUTBOUND_ONLY_NODES=b \
bash testing/static/scripts/rekey-test.sh; then
rc=0
else
rc=1
info "[rekey-outbound-only] Collecting failure logs"
docker compose -f "$compose" --profile rekey-outbound-only logs --no-color 2>&1 | tail -100
fi
docker compose -f "$compose" --profile rekey-outbound-only down --volumes --remove-orphans 2>/dev/null
record "rekey-outbound-only" $rc
}
# Run ACL allowlist integration test
run_acl_allowlist() {
info "[acl-allowlist] Running integration test"
if bash testing/acl-allowlist/test.sh --skip-build 2>&1; then
record "acl-allowlist" 0
else
record "acl-allowlist" 1
fi
}
# Run firewall baseline integration test
run_firewall() {
info "[firewall] Running integration test"
if bash testing/firewall/test.sh --skip-build 2>&1; then
record "firewall" 0
else
record "firewall" 1
fi
}
# Run a NAT scenario (cone, symmetric, lan)
run_nat() {
local scenario="$1"
info "[nat-$scenario] Running NAT lab"
if bash testing/nat/scripts/nat-test.sh "$scenario" 2>&1; then
record "nat-$scenario" 0
else
record "nat-$scenario" 1
fi
}
# Run the Nostr overlay advert publish/consume integration test.
# Two FIPS daemons + the existing strfry relay; exercises Phase 1
# (A→B publish/consume), Phase 2 (B→A reverse), and Phase 3 (malformed
# advert injected directly to the relay; consumer-liveness assertion).
run_nostr_publish_consume() {
info "[nostr-publish-consume] Running Nostr publish/consume test"
if bash testing/nat/scripts/nostr-relay-test.sh 2>&1; then
record "nostr-publish-consume" 0
else
record "nostr-publish-consume" 1
fi
}
# Run the STUN fault-injection integration test.
# One FIPS daemon + a netns-sharing shim that injects tc/iptables faults
# against UDP egress to the STUN service. Three phases: drop, delay,
# kill. Asserts the daemon detects each fault, recovers from delay, and
# never panics.
run_stun_faults() {
info "[stun-faults] Running STUN fault-injection test"
if bash testing/nat/scripts/stun-faults-test.sh 2>&1; then
record "stun-faults" 0
else
record "stun-faults" 1
fi
}
# Run dns-resolver harness (multi-distro + e2e scenarios)
run_dns_resolver() {
info "[dns-resolver] Running multi-distro test (slow — builds per-distro images)"
if bash testing/dns-resolver/test.sh 2>&1; then
record "dns-resolver" 0
else
record "dns-resolver" 1
fi
}
# Run deb-install harness (multi-distro real-package install)
run_deb_install() {
info "[deb-install] Running multi-distro test (slow — builds .deb + per-distro install)"
if bash testing/deb-install/test.sh 2>&1; then
record "deb-install" 0
else
record "deb-install" 1
fi
}
# Run Tor SOCKS5 outbound test (live Tor network)
run_tor_socks5() {
info "[tor-socks5] Running Tor SOCKS5 outbound test (live Tor)"
if bash testing/tor/socks5-outbound/scripts/tor-test.sh 2>&1; then
record "tor-socks5" 0
else
record "tor-socks5" 1
fi
}
# Run Tor directory-mode test (live Tor network)
run_tor_directory() {
info "[tor-directory] Running Tor directory-mode test (live Tor)"
if bash testing/tor/directory-mode/scripts/directory-test.sh 2>&1; then
record "tor-directory" 0
else
record "tor-directory" 1
fi
}
# Determine which suites to run and execute them
run_integration() {
stage "Stage 3: Integration Tests"
# Install binaries to shared docker context
info "Installing release binaries"
install_binaries testing/docker
# Build unified test image once (used by all harnesses)
info "Building fips-test Docker image"
docker build -t fips-test:latest testing/docker --quiet || { record "docker-build" 1; return; }
docker build -t fips-test-app:latest -f testing/docker/Dockerfile.app testing/docker --quiet || { record "docker-build-app" 1; return; }
# Single suite mode
if [[ -n "$ONLY_SUITE" ]]; then
run_suite "$ONLY_SUITE"
return
fi
# Static topologies (sequential — profiles share container names)
for topo in "${STATIC_SUITES[@]}"; do
local topology="${topo#static-}"
run_static "$topology"
done
# Rekey + rekey-accept-off + rekey-outbound-only variants
run_rekey
run_rekey_accept_off
run_rekey_outbound_only
# Mixed-profile (Full + NonRouting + Leaf)
run_mixed_profile
# Admission cap (mesh profile, max_peers=1 on one node)
for _suite in "${ADMISSION_SUITES[@]}"; do
run_admission_cap
done
# Gateway
run_gateway
# ACL allowlist
run_acl_allowlist
# Firewall baseline
run_firewall
# NAT scenarios (sequential — each owns its compose project)
for scenario in "${NAT_SUITES[@]}"; do
run_nat "$scenario"
done
# Nostr publish/consume (sequential — shares the NAT compose project)
for _suite in "${NOSTR_RELAY_SUITES[@]}"; do
run_nostr_publish_consume
done
# STUN fault-injection (sequential — shares the NAT compose project)
for _suite in "${STUN_FAULTS_SUITES[@]}"; do
run_stun_faults
done
# Chaos scenarios (parallel, throttled)
if [[ "$SKIP_CHAOS" != true ]]; then
info "Running ${#CHAOS_SUITES[@]} chaos scenarios (max $PARALLEL_JOBS parallel)"
local pids=()
local suite_names=()
local running=0
for entry in "${CHAOS_SUITES[@]}"; do
# Parse: "display-name scenario [flags...]"
read -ra parts <<< "$entry"
local name="${parts[0]}"
local args=("${parts[@]:1}")
# Throttle: wait for a slot
while [[ $running -ge $PARALLEL_JOBS ]]; do
wait -n -p done_pid 2>/dev/null || true
running=$((running - 1))
done
# Run in background, capture output to temp file
local logfile
logfile=$(mktemp "/tmp/ci-chaos-${name}.XXXXXX")
(
run_chaos "$name" "${args[@]}" >"$logfile" 2>&1
) &
pids+=($!)
suite_names+=("$name:$logfile")
running=$((running + 1))
done
# Wait for all and collect results
for i in "${!pids[@]}"; do
local pid="${pids[$i]}"
local entry="${suite_names[$i]}"
local scenario="${entry%%:*}"
local logfile="${entry#*:}"
if wait "$pid" 2>/dev/null; then
record "chaos-$scenario" 0
else
record "chaos-$scenario" 1
# Show tail of failure log
echo "--- chaos-$scenario output (last 20 lines) ---"
tail -20 "$logfile" 2>/dev/null || true
echo "---"
fi
rm -f "$logfile"
done
fi
# Sidecar
run_sidecar
# DNS resolver multi-distro suite (heavy — per-distro systemd images)
run_dns_resolver
# Deb-install multi-distro suite (heavy — builds .deb + per-distro install)
run_deb_install
# Tor (opt-in via --with-tor; depends on live Tor network)
if [[ "$WITH_TOR" == true ]]; then
run_tor_socks5
run_tor_directory
fi
}
# Run a single named suite
run_suite() {
local suite="$1"
case "$suite" in
static-mesh|static-chain)
run_static "${suite#static-}" ;;
rekey)
run_rekey ;;
rekey-accept-off)
run_rekey_accept_off ;;
rekey-outbound-only)
run_rekey_outbound_only ;;
mixed-profile)
run_mixed_profile ;;
admission-cap)
run_admission_cap ;;
gateway)
run_gateway ;;
acl-allowlist)
run_acl_allowlist ;;
firewall)
run_firewall ;;
nat-cone|nat-symmetric|nat-lan)
run_nat "${suite#nat-}" ;;
nostr-publish-consume)
run_nostr_publish_consume ;;
stun-faults)
run_stun_faults ;;
chaos-*)
local chaos_name="${suite#chaos-}"
local found=false
for entry in "${CHAOS_SUITES[@]}"; do
read -ra parts <<< "$entry"
if [[ "${parts[0]}" == "$chaos_name" ]]; then
run_chaos "$chaos_name" "${parts[@]:1}"
found=true
break
fi
done
if [[ "$found" != true ]]; then
# Fall back to using the name as the scenario directly
run_chaos "$chaos_name" "$chaos_name"
fi
;;
sidecar)
run_sidecar ;;
dns-resolver)
run_dns_resolver ;;
deb-install)
run_deb_install ;;
tor-socks5)
run_tor_socks5 ;;
tor-directory)
run_tor_directory ;;
*)
fail "Unknown suite: $suite"
record "$suite" 1 ;;
esac
}
# ── Summary ────────────────────────────────────────────────────────────────
print_summary() {
stage "Summary"
local passed=0 failed=0 total=0
for name in $(echo "${!RESULTS[@]}" | tr ' ' '\n' | sort); do
local rc="${RESULTS[$name]}"
total=$((total + 1))
if [[ $rc -eq 0 ]]; then
passed=$((passed + 1))
echo -e " ${GREEN}${RESET} $name"
else
failed=$((failed + 1))
echo -e " ${RED}${RESET} $name"
fi
done
echo ""
echo -e " ${BOLD}Total: $total Passed: $passed Failed: $failed${RESET}"
echo ""
if [[ $OVERALL -eq 0 ]]; then
echo -e " ${GREEN}${BOLD}ALL PASSED${RESET}"
else
echo -e " ${RED}${BOLD}FAILED${RESET}"
fi
echo ""
}
# ── Main ───────────────────────────────────────────────────────────────────
main() {
local start_time=$SECONDS
stage "FIPS Local CI"
info "Project root: $PROJECT_ROOT"
if [[ "$TEST_ONLY" == true ]]; then
run_tests
elif [[ "$BUILD_ONLY" == true ]]; then
run_build
else
run_build
if [[ "${RESULTS[build]:-1}" -ne 0 ]]; then
fail "Build failed, skipping remaining stages"
else
run_tests
if [[ "$SKIP_INTEGRATION" != true ]]; then
run_integration
fi
fi
fi
print_summary
local elapsed=$(( SECONDS - start_time ))
local mins=$(( elapsed / 60 ))
local secs=$(( elapsed % 60 ))
info "Total time: ${mins}m ${secs}s"
exit $OVERALL
}
main