mirror of
https://github.com/alexhopeoconnor/WiFiManager.git
synced 2026-10-04 02:48:13 +10:00
891 lines
34 KiB
Bash
Executable File
891 lines
34 KiB
Bash
Executable File
#!/usr/bin/env bash
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set -euo pipefail
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root="$(cd "$(dirname "${BASH_SOURCE[0]}")/.." && pwd)"
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# shellcheck source=tools/lib/platformio.sh
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source "$root/tools/lib/platformio.sh"
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# shellcheck source=tools/lib/portal-hardware-session.sh
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source "$root/tools/lib/portal-hardware-session.sh"
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# shellcheck source=tools/lib/ota-fixture-identity.sh
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source "$root/tools/lib/ota-fixture-identity.sh"
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# Portal tests exclusively own their portal network, selected Wi-Fi adapter,
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# and named serial port. Avoid consuming every host core unless the developer
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# explicitly opts in.
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export PLATFORMIO_RUN_JOBS="${PLATFORMIO_RUN_JOBS:-2}"
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usage() {
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cat <<'USAGE' >&2
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Usage:
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./tools/portal-hardware doctor --client-interface IFACE [--take-over-client-adapter]
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./tools/portal-hardware up --platform esp8266|esp32 --port /dev/serial/by-id/... \
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--client-interface IFACE [--take-over-client-adapter] [--output DIRECTORY]
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./tools/portal-hardware run --platform esp8266|esp32 --port /dev/serial/by-id/... \
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--client-interface IFACE [--take-over-client-adapter] [--keep] \
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[--browser auto|skip] [--station-env PATH] [--output DIRECTORY] \
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[--capture-readme-media] [--custom-parameter-stress]
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./tools/portal-hardware ota --platform esp8266|esp32 --port /dev/serial/by-id/... \
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--client-interface IFACE [--take-over-client-adapter] [--keep] \
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[--output DIRECTORY]
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./tools/portal-hardware down
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Only the named client interface may be disconnected or reconfigured. The tool
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refuses the host default-route interface and preserves the created connection
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in a 0600 state file until `down` or normal `run`/`ota` cleanup.
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`ota` is an opt-in physical A/B test. It erases the explicitly selected test
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board's flash, serial-flashes image A, then uses the real portal browser form
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to upload image B. It requires the automatic restart and two independent
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B-marker responses; a manual reset never makes the test pass. On success the
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selected board remains on B in the portal-only fixture.
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USAGE
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exit 2
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}
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command_name="${1:-}"
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[[ -n "$command_name" ]] || usage
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shift || true
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platform=""
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port=""
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client_interface=""
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takeover="no"
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keep="no"
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browser="auto"
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station_env=""
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output_dir=""
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capture_readme_media="no"
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custom_parameter_stress="no"
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ota_environment_name=""
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ota_firmware_a=""
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ota_firmware_b=""
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ota_browser_prebuilt="no"
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ota_serial_capture_pid=""
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ota_serial_capture_log=""
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ota_serial_capture_ready=""
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ota_serial_capture_status=""
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station_handoff_env_file=""
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station_handoff_fixture_restore_needed="no"
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# `wm_create_portal_connection` sets these before NetworkManager mutates the
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# secondary adapter. Keeping the ownership record in-process means the
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# signal trap can clean up the exact pending or active connection immediately.
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WM_PORTAL_CONNECTION_UUID=""
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WM_PORTAL_CONNECTION_NAME=""
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WM_PORTAL_CONNECTION_OWNED="no"
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while [[ $# -gt 0 ]]; do
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case "$1" in
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--platform) [[ $# -ge 2 ]] || usage; platform="$2"; shift 2 ;;
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--port) [[ $# -ge 2 ]] || usage; port="$2"; shift 2 ;;
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--client-interface) [[ $# -ge 2 ]] || usage; client_interface="$2"; shift 2 ;;
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--take-over-client-adapter) takeover="yes"; shift ;;
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--keep) keep="yes"; shift ;;
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--browser) [[ $# -ge 2 ]] || usage; browser="$2"; shift 2 ;;
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--station-env) [[ $# -ge 2 ]] || usage; station_env="$2"; shift 2 ;;
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--output) [[ $# -ge 2 ]] || usage; output_dir="$2"; shift 2 ;;
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--capture-readme-media) capture_readme_media="yes"; shift ;;
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--custom-parameter-stress) custom_parameter_stress="yes"; shift ;;
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*) usage ;;
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esac
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done
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require_common() {
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wm_require ip
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wm_require nmcli
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wm_pio_available
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wm_require docker
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wm_require curl
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docker compose version >/dev/null
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}
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require_ota_serial_capture() {
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wm_require python3
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python3 -c 'import serial' >/dev/null 2>&1 || {
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echo "Portal OTA serial evidence requires Python pyserial (for example, python3-serial)." >&2
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return 1
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}
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}
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pio_for_portal_environment() {
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local environment="$1"
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shift
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case "$environment" in
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# Keep the maintained Core 3.3.11 graph in the same persistent cache
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# as the ESP32 A/B fixture. It is never cleared by this test harness.
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esp32|esp32_ota)
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;;
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*)
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wm_pio "$@"
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return
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;;
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esac
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local core_dir packages_dir cache_dir
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core_dir="${WIFIMANAGER_PLATFORMIO_CORE_DIR:-${XDG_CACHE_HOME:-$HOME/.cache}/arduino-framework-platformio/core-3.3.11}"
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packages_dir="${WIFIMANAGER_PLATFORMIO_PACKAGES_DIR:-$core_dir/packages}"
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cache_dir="${WIFIMANAGER_PLATFORMIO_CACHE_DIR:-$core_dir/cache}"
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install -d -m 700 "$core_dir" "$packages_dir" "$cache_dir"
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PLATFORMIO_CORE_DIR="$core_dir" PLATFORMIO_PACKAGES_DIR="$packages_dir" \
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PLATFORMIO_CACHE_DIR="$cache_dir" wm_pio "$@"
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}
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prepare_output_dir() {
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if [[ -z "$output_dir" ]]; then
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if [[ "$capture_readme_media" == "yes" ]]; then
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output_dir="$root/artifacts/readme-media/$(date -u +%Y%m%dT%H%M%SZ)-$platform"
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else
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output_dir="$(wm_portal_state_root)/runs/$(date -u +%Y%m%dT%H%M%SZ)-$platform"
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fi
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fi
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install -d -m 700 "$output_dir"
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output_dir="$(cd "$output_dir" && pwd)"
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}
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prepare_ota_identity_input() {
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# The generated A/B marker belongs to this run, never to shared fixture
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# source. Keeping it with the private artifacts prevents cross-run drift.
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export WIFIMANAGER_OTA_IDENTITY_DIR="$output_dir/ota-fixture-input"
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install -d -m 700 "$WIFIMANAGER_OTA_IDENTITY_DIR"
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}
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validate_run_arguments() {
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[[ "$platform" == "esp8266" || "$platform" == "esp32" ]] || usage
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[[ -n "$client_interface" ]] || usage
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[[ -n "$port" && -e "$port" ]] || {
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echo "Serial port not found: $port" >&2
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exit 1
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}
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[[ "$browser" == "auto" || "$browser" == "skip" ]] || usage
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[[ -z "$station_env" || -r "$station_env" ]] || {
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echo "Station environment file is not readable: $station_env" >&2
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exit 1
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}
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if [[ -n "$station_env" ]]; then
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[[ "$command_name" == "run" ]] || {
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echo "--station-env is supported only by the browser-backed run command." >&2
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exit 2
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}
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[[ "$browser" == "auto" ]] || {
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echo "--station-env requires --browser auto so the real hand-off is exercised." >&2
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exit 2
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}
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[[ "$capture_readme_media" == "no" ]] || {
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echo "--station-env cannot be combined with README media capture." >&2
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exit 2
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}
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fi
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if [[ "$capture_readme_media" == "yes" ]]; then
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[[ "$command_name" == "run" && "$platform" == "esp32" ]] || {
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echo "--capture-readme-media is supported only by run --platform esp32" >&2
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exit 2
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}
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[[ "$browser" == "auto" ]] || {
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echo "--capture-readme-media requires --browser auto" >&2
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exit 2
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}
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fi
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if [[ "$custom_parameter_stress" == "yes" ]]; then
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[[ "$command_name" == "run" && "$platform" == "esp8266" ]] || {
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echo "--custom-parameter-stress is supported only by run --platform esp8266" >&2
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exit 2
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}
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[[ "$browser" == "auto" ]] || {
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echo "--custom-parameter-stress requires --browser auto" >&2
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exit 2
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}
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fi
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if [[ "$command_name" == "ota" ]]; then
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[[ "$browser" == "auto" ]] || {
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echo "OTA coverage always uses the browser; --browser skip is not supported." >&2
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exit 2
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}
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[[ -z "$station_env" ]] || {
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echo "OTA coverage is portal-only and does not accept --station-env." >&2
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exit 2
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}
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[[ "$capture_readme_media" == "no" && "$custom_parameter_stress" == "no" ]] || {
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echo "OTA coverage cannot be combined with README media or parameter-stress modes." >&2
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exit 2
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}
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fi
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}
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read_station_handoff_value() {
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local requested_key="$1" line value="" found=no
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while IFS= read -r line || [[ -n "$line" ]]; do
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# Accept the documented KEY=VALUE file format without evaluating it as
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# shell code. A value may contain '=' but not a second declaration of
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# the same key, which would make the generated minimal file ambiguous.
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line="${line%$'\r'}"
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case "$line" in
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"$requested_key"=*)
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[[ "$found" == no ]] || {
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echo "Station environment defines $requested_key more than once." >&2
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return 1
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}
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value="${line#*=}"
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found=yes
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;;
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esac
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done <"$station_env"
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[[ "$found" == yes && -n "$value" ]] || {
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echo "Station environment must define a non-empty $requested_key value." >&2
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return 1
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}
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printf '%s' "$value"
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}
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prepare_station_handoff_env() {
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local ssid password
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ssid="$(read_station_handoff_value WIFI_SSID)" || return 1
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password="$(read_station_handoff_value WIFI_PASSWORD)" || return 1
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station_handoff_env_file="$(mktemp "$output_dir/.portal-station.XXXXXX")" || {
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echo 'Could not create the private station-handoff environment file.' >&2
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return 1
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}
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if ! {
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printf 'WIFI_SSID=%s\n' "$ssid"
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printf 'WIFI_PASSWORD=%s\n' "$password"
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} >"$station_handoff_env_file"; then
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rm -f -- "$station_handoff_env_file"
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station_handoff_env_file=""
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echo 'Could not write the private station-handoff environment file.' >&2
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return 1
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fi
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if ! chmod 600 "$station_handoff_env_file"; then
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rm -f -- "$station_handoff_env_file"
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station_handoff_env_file=""
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echo 'Could not protect the private station-handoff environment file.' >&2
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return 1
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fi
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export PORTAL_STATION_ENV_HOST="$station_handoff_env_file"
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}
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remove_station_handoff_env() {
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[[ -n "$station_handoff_env_file" ]] || return 0
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if ! rm -f -- "$station_handoff_env_file"; then
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echo 'Could not remove the private station-handoff environment file.' >&2
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return 1
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fi
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station_handoff_env_file=""
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unset PORTAL_STATION_ENV_HOST
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}
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restore_station_handoff_fixture() {
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local ssid
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[[ "$station_handoff_fixture_restore_needed" == yes ]] || return 0
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# The optional browser hand-off deliberately persists its supplied station
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# credentials long enough to exercise WiFiManager's real connect path.
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# Reflash the same portal-only fixture afterwards: its setup() calls
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# resetSettings(), so the selected test board returns to a no-station
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# state without retaining a developer's Wi-Fi credentials. This is normal
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# test cleanup, not OTA evidence; the OTA command never accepts a station
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# environment and never calls this function.
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printf 'Restoring the clean portal-only fixture after station hand-off.\n'
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if ! pio_for_portal_environment "$platform" run -d "$root/test/portal-harness" -e "$platform" \
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-t upload --upload-port "$port"; then
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echo 'Could not restore the clean portal-only fixture after station hand-off.' >&2
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return 1
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fi
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# The board deliberately disappears during the cleanup reflash. Require
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# its fixture AP to return and be routed through the owned secondary
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# adapter before declaring the developer-supplied credentials scrubbed.
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ssid="$(wm_portal_ssid "$platform")" || return 1
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if ! wm_wait_for_portal_ssid "$client_interface" "$ssid" || \
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! wm_verify_portal_route "$client_interface" || \
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! wait_for_portal_scan_ready; then
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echo 'The clean portal-only fixture did not return after station hand-off cleanup.' >&2
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return 1
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fi
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station_handoff_fixture_restore_needed="no"
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}
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write_readme_media_manifest() {
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local media_dir="$output_dir/readme-media"
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local required
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for required in portal-tour.gif portal-overview.png portal-wifi-settings.png; do
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[[ -s "$media_dir/$required" ]] || {
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echo "README media output is incomplete: $media_dir/$required" >&2
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return 1
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}
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done
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printf '{"schema":1,"project":"WiFiManager","kind":"readme-media","status":"passed","platform":"esp32","created_at":"%s"}\n' \
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"$(date -u +%Y-%m-%dT%H:%M:%SZ)" > "$media_dir/manifest.json"
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chmod 600 "$media_dir/manifest.json"
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}
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portal_scan_status() {
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curl --interface "$client_interface" --connect-timeout 3 --max-time 5 \
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--silent --show-error --fail http://192.168.4.1/api/wifi/scan-status 2>/dev/null
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}
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wait_for_portal_http_ready() {
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# The AP can be visible before the portal server has completed startup.
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# OTA requires the update UI and its HTTP route; it does not require an
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# unrelated background scan to have succeeded.
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local attempt response
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for attempt in $(seq 1 45); do
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response="$(portal_scan_status || true)"
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if [[ "$response" == *'"state"'* ]]; 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 'Portal HTTP API did not become ready within 45 seconds.' >&2
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return 1
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}
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wait_for_portal_scan_ready() {
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# The normal portal UI suite exercises the automatic scan and still
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# requires a usable result. Keep that coverage separate from HTTP OTA.
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local attempt response
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for attempt in $(seq 1 45); do
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response="$(portal_scan_status || true)"
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if [[ "$response" == *'"state":"complete"'* && "$response" == *'"results_valid":true'* ]]; then
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return 0
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fi
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if [[ "$response" == *'"state":"failed"'* || "$response" == *'"state":"timeout"'* ]]; then
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echo "Portal background scan did not become ready: $response" >&2
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return 1
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fi
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sleep 1
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done
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echo 'Portal did not complete its initial Wi-Fi scan within 45 seconds.' >&2
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return 1
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}
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report_initial_portal_scan_status() {
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local response
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response="$(portal_scan_status || true)"
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if [[ -n "$response" ]]; then
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printf 'Initial portal scan status: %s\n' "$response"
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else
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echo 'Initial portal scan status was unavailable after portal startup.' >&2
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fi
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}
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start_portal_session() {
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local environment="${1:-$platform}" erase_before_upload="${2:-no}" expected_a_artifact="${3:-}" capture_ota_serial="${4:-no}" require_scan="${5:-yes}" ssid reconnect_after_drop="no"
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validate_run_arguments
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require_common
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wm_acquire_hardware_lock
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wm_require_no_active_session
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# Choose the real NetworkManager authorization path before inspecting the
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# secondary adapter. A headless shell must not mistake a denied inspection
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# for an idle adapter and then replace a connection it does not own.
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wm_prepare_networkmanager_authorization
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wm_require_client_adapter "$client_interface" "$takeover"
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wm_harness_lock_serial_port "$port"
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prepare_output_dir
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ssid="$(wm_portal_ssid "$platform")"
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if [[ -n "$expected_a_artifact" ]]; then
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# B was built most recently. Restore the generated A identity before
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# PlatformIO verifies and serial-flashes the immutable A artifact.
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wm_write_ota_fixture_identity A
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pio_for_portal_environment "$environment" run -d "$root/test/portal-harness" -e "$environment"
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ota_assert_a_artifact_matches_build "$expected_a_artifact"
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fi
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if [[ "$erase_before_upload" == "yes" ]]; then
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# OTA selection metadata must not survive from a previous fixture run:
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# otherwise a bootloader could select a stale app slot instead of A.
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pio_for_portal_environment "$environment" run -d "$root/test/portal-harness" -e "$environment" -t erase --upload-port "$port"
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fi
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if [[ -n "$expected_a_artifact" ]]; then
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ota_assert_a_artifact_matches_build "$expected_a_artifact"
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fi
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pio_for_portal_environment "$environment" run -d "$root/test/portal-harness" -e "$environment" -t upload --upload-port "$port"
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if [[ "$capture_ota_serial" == yes ]]; then
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# Attach only after PlatformIO releases the serial port. Capture the
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# complete A boot, including portal start and DHCP, before the adapter
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# is asked to associate with the fixture AP.
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start_ota_serial_capture
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fi
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if [[ -n "$expected_a_artifact" ]]; then
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ota_assert_a_artifact_matches_build "$expected_a_artifact"
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fi
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# OTA and the optional station hand-off both deliberately reboot the test
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# board. Let only those owned disposable profiles reassociate after that
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# outage; ordinary portal work keeps the secondary adapter inert after its
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# current run.
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if [[ "$capture_ota_serial" == yes || -n "$station_env" ]]; then
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reconnect_after_drop=yes
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fi
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if ! wm_create_portal_connection "$client_interface" "$ssid" "default1" "$platform" "$reconnect_after_drop"; then
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return 1
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fi
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if ! wm_verify_portal_route "$client_interface"; then
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wm_cleanup_created_connection
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return 1
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fi
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if [[ "$require_scan" == yes ]]; then
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wait_for_portal_scan_ready || {
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wm_cleanup_created_connection
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return 1
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}
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elif ! wait_for_portal_http_ready; then
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wm_cleanup_created_connection
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return 1
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fi
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[[ "$require_scan" == yes ]] || report_initial_portal_scan_status
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printf 'Portal connected on %s. Artifacts: %s\n' "$client_interface" "$output_dir"
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}
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ota_environment() {
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printf '%s_ota\n' "$platform"
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}
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ota_marker_field() {
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local response="$1" field="$2"
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case "$field" in
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marker|freeSketchSpace)
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# The marker endpoint is deliberately fixture-only JSON. Parse it
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# as JSON instead of maintaining a second, fragile copy of its
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# wire format in a regular expression.
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python3 -c '
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import json
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import sys
|
|
|
|
try:
|
|
value = json.load(sys.stdin)[sys.argv[1]]
|
|
except (json.JSONDecodeError, KeyError, TypeError):
|
|
raise SystemExit(1)
|
|
|
|
if isinstance(value, bool) or not isinstance(value, (str, int)):
|
|
raise SystemExit(1)
|
|
print(value)
|
|
' "$field" <<<"$response" 2>/dev/null || true
|
|
;;
|
|
*)
|
|
echo "Unknown OTA marker field: $field" >&2
|
|
return 2
|
|
;;
|
|
esac
|
|
}
|
|
|
|
ota_fetch_marker() {
|
|
curl --interface "$client_interface" --connect-timeout 1 --max-time 2 \
|
|
--silent --show-error http://192.168.4.1/api/test/firmware-marker 2>/dev/null
|
|
}
|
|
|
|
wait_for_ota_marker() {
|
|
local expected="$1" deadline response marker
|
|
deadline=$((SECONDS + 75))
|
|
while (( SECONDS < deadline )); do
|
|
response="$(ota_fetch_marker || true)"
|
|
marker="$(ota_marker_field "$response" marker)"
|
|
if [[ "$marker" == "$expected" ]]; then
|
|
printf '%s\n' "$response"
|
|
return 0
|
|
fi
|
|
sleep 0.5
|
|
done
|
|
echo "Portal OTA fixture did not report marker '$expected' within 75 seconds." >&2
|
|
return 1
|
|
}
|
|
|
|
ota_esp32_partition_row() {
|
|
local partition="$1" table="$root/test/portal-harness/partitions/esp32_ota_4m_no_fs.csv"
|
|
[[ -r "$table" ]] || {
|
|
echo "ESP32 OTA partition table is unreadable: $table" >&2
|
|
return 1
|
|
}
|
|
awk -F, -v partition="$partition" '
|
|
function trim(value) {
|
|
gsub(/^[[:space:]]+|[[:space:]]+$/, "", value)
|
|
return value
|
|
}
|
|
/^[[:space:]]*#/ || NF < 5 { next }
|
|
trim($1) == partition {
|
|
printf "%s\t%s\t%s\t%s\n", trim($2), trim($3), trim($4), trim($5)
|
|
exit
|
|
}
|
|
' "$table"
|
|
}
|
|
|
|
ota_esp32_require_partition() {
|
|
local name="$1" expected_type="$2" expected_subtype="$3" expected_offset="$4" expected_size="$5"
|
|
local row type subtype offset size
|
|
row="$(ota_esp32_partition_row "$name")"
|
|
IFS=$'\t' read -r type subtype offset size <<<"$row"
|
|
[[ "$type" == "$expected_type" && "$subtype" == "$expected_subtype" && \
|
|
"$offset" == "$expected_offset" && "$size" == "$expected_size" ]] || {
|
|
echo "ESP32 OTA partition '$name' must be $expected_type/$expected_subtype at $expected_offset with size $expected_size; found '${row:-missing}'." >&2
|
|
return 1
|
|
}
|
|
}
|
|
|
|
ota_esp32_slot_size() {
|
|
local table="$root/test/portal-harness/partitions/esp32_ota_4m_no_fs.csv"
|
|
local value_a value_b
|
|
[[ -r "$table" ]] || {
|
|
echo "ESP32 OTA partition table is unreadable: $table" >&2
|
|
return 1
|
|
}
|
|
ota_esp32_require_partition nvs data nvs 0x9000 0x5000
|
|
ota_esp32_require_partition otadata data ota 0xe000 0x2000
|
|
ota_esp32_require_partition app0 app ota_0 0x10000 0x1F0000
|
|
ota_esp32_require_partition app1 app ota_1 0x200000 0x1F0000
|
|
value_a="$(ota_esp32_partition_row app0 | awk -F '\t' '{ print $4 }')"
|
|
value_b="$(ota_esp32_partition_row app1 | awk -F '\t' '{ print $4 }')"
|
|
[[ "$value_a" =~ ^0x[0-9A-Fa-f]+$ && "$value_a" == "$value_b" ]] || {
|
|
echo "ESP32 OTA app slots must have equal hexadecimal capacities: app0=$value_a app1=$value_b" >&2
|
|
return 1
|
|
}
|
|
printf '%d\n' "$((value_b))"
|
|
}
|
|
|
|
ota_assert_firmware_fits() {
|
|
local firmware="$1" capacity="$2" label="$3" image_size
|
|
[[ -n "$firmware" && -s "$firmware" ]] || {
|
|
echo "OTA $label firmware artifact is missing." >&2
|
|
return 1
|
|
}
|
|
[[ "$capacity" =~ ^[0-9]+$ && "$capacity" -gt 0 ]] || {
|
|
echo "OTA capacity is invalid: $capacity" >&2
|
|
return 1
|
|
}
|
|
image_size="$(wc -c < "$firmware")"
|
|
if (( image_size > capacity )); then
|
|
echo "OTA $label image is too large: ${image_size} bytes exceeds ${capacity} bytes." >&2
|
|
return 1
|
|
fi
|
|
printf 'OTA %s image fits the available update space: %s <= %s bytes\n' "$label" "$image_size" "$capacity"
|
|
}
|
|
|
|
build_ota_image() {
|
|
local image="$1" source artifact
|
|
case "$image" in
|
|
A)
|
|
artifact="$output_dir/${platform}-portal-ota-a.bin"
|
|
ota_firmware_a="$artifact"
|
|
;;
|
|
B)
|
|
artifact="$output_dir/${platform}-portal-ota-b.bin"
|
|
ota_firmware_b="$artifact"
|
|
;;
|
|
*)
|
|
echo "Unknown portal OTA fixture image: $image" >&2
|
|
return 2
|
|
;;
|
|
esac
|
|
wm_write_ota_fixture_identity "$image"
|
|
pio_for_portal_environment "$ota_environment_name" run -d "$root/test/portal-harness" -e "$ota_environment_name"
|
|
source="$root/test/portal-harness/.pio/build/$ota_environment_name/firmware.bin"
|
|
[[ -s "$source" ]] || {
|
|
echo "PlatformIO did not produce portal OTA image $image." >&2
|
|
return 1
|
|
}
|
|
install -m 600 "$source" "$artifact"
|
|
}
|
|
|
|
prepare_ota_firmware() {
|
|
local capacity
|
|
ota_environment_name="$(ota_environment)"
|
|
wm_lock_ota_fixture_environment "$ota_environment_name"
|
|
|
|
# Capture immutable A before rebuilding the same environment as B. The
|
|
# generated header is the only changed input, so PlatformIO reuses library
|
|
# objects while the browser still mounts a distinct B artifact read-only.
|
|
build_ota_image A
|
|
build_ota_image B
|
|
if cmp -s "$ota_firmware_a" "$ota_firmware_b"; then
|
|
echo "PlatformIO produced identical OTA A and B images." >&2
|
|
return 1
|
|
fi
|
|
|
|
if [[ "$platform" == "esp32" ]]; then
|
|
"$root/tools/check-ota-partitions.sh"
|
|
capacity="$(ota_esp32_slot_size)"
|
|
ota_assert_firmware_fits "$ota_firmware_a" "$capacity" A
|
|
ota_assert_firmware_fits "$ota_firmware_b" "$capacity" B
|
|
fi
|
|
}
|
|
|
|
ota_assert_a_artifact_matches_build() {
|
|
local expected_artifact="$1" source
|
|
source="$root/test/portal-harness/.pio/build/$ota_environment_name/firmware.bin"
|
|
[[ -s "$expected_artifact" && -s "$source" ]] || {
|
|
echo "Prepared OTA A artifact or PlatformIO build output is missing." >&2
|
|
return 1
|
|
}
|
|
cmp -s "$expected_artifact" "$source" || {
|
|
echo "PlatformIO's A build no longer matches the immutable artifact prepared before serial flashing." >&2
|
|
return 1
|
|
}
|
|
}
|
|
|
|
validate_running_ota_capacity() {
|
|
local marker_response free_sketch_space capacity
|
|
[[ "$platform" == "esp8266" ]] || return 0
|
|
marker_response="$(wait_for_ota_marker A)"
|
|
free_sketch_space="$(ota_marker_field "$marker_response" freeSketchSpace)"
|
|
[[ "$free_sketch_space" =~ ^[0-9]+$ && "$free_sketch_space" -gt 4096 ]] || {
|
|
echo "ESP8266 fixture did not report usable free sketch space." >&2
|
|
return 1
|
|
}
|
|
# Match WiFiManagerHandlers::handleUpdating(): Update.begin receives this
|
|
# aligned value, not the raw ESP.getFreeSketchSpace() number.
|
|
capacity=$(( (free_sketch_space - 0x1000) & 0xFFFFF000 ))
|
|
ota_assert_firmware_fits "$ota_firmware_b" "$capacity" B
|
|
}
|
|
|
|
configure_ota_harness_environment() {
|
|
export PORTAL_ARTIFACT_DIR="$output_dir"
|
|
export LOCAL_UID="$(id -u)"
|
|
export LOCAL_GID="$(id -g)"
|
|
export PORTAL_BROWSER_MODE=auto
|
|
# OTA is its own test harness. Do not inherit a developer's unrelated media,
|
|
# stress, target, or test-selection setting into a physical firmware run.
|
|
export PORTAL_HARNESS_DOCKER_TARGET=portal-harness
|
|
export PORTAL_CAPTURE_README_MEDIA=0
|
|
export PORTAL_CUSTOM_PARAMETER_STRESS=0
|
|
export PORTAL_TEST_FILE=tests/ota.spec.js
|
|
export PORTAL_PLATFORM="$platform"
|
|
export PORTAL_OTA_FIRMWARE_HOST="$ota_firmware_b"
|
|
export PORTAL_OTA_INITIAL_MARKER=A
|
|
export PORTAL_OTA_EXPECTED_MARKER=B
|
|
}
|
|
|
|
ota_compose_files() {
|
|
printf '%s\n' \
|
|
-f "$root/tests/portal-harness/compose.yaml" \
|
|
-f "$root/tests/portal-harness/compose.ota.yaml"
|
|
}
|
|
|
|
prepare_ota_harness_image() {
|
|
local -a compose_files
|
|
configure_ota_harness_environment
|
|
mapfile -t compose_files < <(ota_compose_files)
|
|
# Build before A is flashed. A cold Playwright build can otherwise consume
|
|
# the finite portal window before the browser has connected.
|
|
docker compose "${compose_files[@]}" build portal-harness
|
|
ota_browser_prebuilt=yes
|
|
}
|
|
|
|
run_ota_harness() {
|
|
local -a compose_files
|
|
configure_ota_harness_environment
|
|
mapfile -t compose_files < <(ota_compose_files)
|
|
[[ "$ota_browser_prebuilt" == yes ]] || {
|
|
echo "Portal OTA browser image was not prepared before A was flashed." >&2
|
|
return 1
|
|
}
|
|
docker compose "${compose_files[@]}" run --rm portal-harness
|
|
}
|
|
|
|
start_ota_serial_capture() {
|
|
local attempt
|
|
ota_serial_capture_log="$output_dir/serial-ota.log"
|
|
ota_serial_capture_ready="$output_dir/.serial-ota.ready"
|
|
ota_serial_capture_status="$output_dir/serial-ota-capture.log"
|
|
rm -f -- "$ota_serial_capture_ready"
|
|
install -m 600 /dev/null "$ota_serial_capture_log"
|
|
install -m 600 /dev/null "$ota_serial_capture_status"
|
|
python3 "$root/tools/capture-serial.py" \
|
|
--port "$port" \
|
|
--output "$ota_serial_capture_log" \
|
|
--ready-file "$ota_serial_capture_ready" \
|
|
--deadline-seconds 600 \
|
|
>>"$ota_serial_capture_status" 2>&1 &
|
|
ota_serial_capture_pid=$!
|
|
|
|
for attempt in $(seq 1 50); do
|
|
[[ -f "$ota_serial_capture_ready" ]] && return 0
|
|
if ! kill -0 "$ota_serial_capture_pid" >/dev/null 2>&1; then
|
|
wait "$ota_serial_capture_pid" || true
|
|
ota_serial_capture_pid=""
|
|
echo "Portal OTA serial recorder exited before it became ready: $ota_serial_capture_status" >&2
|
|
return 1
|
|
fi
|
|
sleep 0.1
|
|
done
|
|
echo "Portal OTA serial recorder did not become ready: $ota_serial_capture_status" >&2
|
|
stop_ota_serial_capture || true
|
|
return 1
|
|
}
|
|
|
|
require_ota_serial_capture_running() {
|
|
[[ -n "$ota_serial_capture_pid" ]] && kill -0 "$ota_serial_capture_pid" >/dev/null 2>&1 || {
|
|
echo "Portal OTA serial recorder stopped unexpectedly: $ota_serial_capture_status" >&2
|
|
return 1
|
|
}
|
|
}
|
|
|
|
stop_ota_serial_capture() {
|
|
local status=0
|
|
[[ -n "$ota_serial_capture_pid" ]] || return 0
|
|
if kill -0 "$ota_serial_capture_pid" >/dev/null 2>&1; then
|
|
kill -TERM "$ota_serial_capture_pid" >/dev/null 2>&1 || status=1
|
|
fi
|
|
if ! wait "$ota_serial_capture_pid"; then
|
|
status=1
|
|
fi
|
|
ota_serial_capture_pid=""
|
|
(( status == 0 )) || return "$status"
|
|
}
|
|
|
|
finish_portal_session() {
|
|
# A normal run already owns an in-process record. `down` starts fresh, so
|
|
# load its retained exact record and select the scoped authorization path
|
|
# before attempting deletion.
|
|
if [[ "${WM_PORTAL_CONNECTION_OWNED:-no}" != "yes" ]]; then
|
|
wm_load_state
|
|
wm_prepare_networkmanager_authorization
|
|
WM_PORTAL_CONNECTION_OWNED=yes
|
|
fi
|
|
wm_cleanup_created_connection
|
|
}
|
|
|
|
cleanup_portal_session() {
|
|
local status="${1:-$?}"
|
|
# A signal must never fall through into the rest of the hardware run, and
|
|
# a recursive EXIT trap must not obscure the original status.
|
|
trap - EXIT HUP INT TERM
|
|
stop_ota_serial_capture || true
|
|
wm_remove_ota_fixture_identity
|
|
if ! restore_station_handoff_fixture; then
|
|
(( status != 0 )) || status=1
|
|
fi
|
|
if ! remove_station_handoff_env; then
|
|
(( status != 0 )) || status=1
|
|
fi
|
|
if [[ "${WM_PORTAL_CONNECTION_OWNED:-no}" == "yes" ]] && \
|
|
{ (( status != 0 )) || { [[ "$command_name" != "up" && "$keep" != "yes" ]]; }; }; then
|
|
if ! wm_cleanup_created_connection; then
|
|
# Preserve an existing run failure, but never turn an otherwise
|
|
# successful browser/OTA run into a claimed pass when its owned
|
|
# NetworkManager connection could not be removed.
|
|
(( status != 0 )) || status=1
|
|
fi
|
|
fi
|
|
exit "$status"
|
|
}
|
|
|
|
trap 'cleanup_portal_session "$?"' EXIT
|
|
trap 'cleanup_portal_session 129' HUP
|
|
trap 'cleanup_portal_session 130' INT
|
|
trap 'cleanup_portal_session 143' TERM
|
|
|
|
case "$command_name" in
|
|
doctor)
|
|
[[ -n "$client_interface" ]] || usage
|
|
require_common
|
|
wm_acquire_hardware_lock
|
|
# Doctor is read-only, but it must validate the same authorization
|
|
# path as a real portal command before it calls an adapter safe.
|
|
wm_prepare_networkmanager_authorization
|
|
wm_require_client_adapter "$client_interface" "$takeover"
|
|
wm_report_networkmanager_authorization
|
|
printf 'Portal hardware prerequisites are ready. Main route is untouched; client adapter: %s\n' "$client_interface"
|
|
;;
|
|
up)
|
|
start_portal_session
|
|
;;
|
|
down)
|
|
[[ -z "$platform$port$client_interface$station_env$output_dir" ]] || usage
|
|
wm_acquire_hardware_lock
|
|
if ! finish_portal_session; then
|
|
trap - EXIT HUP INT TERM
|
|
exit 1
|
|
fi
|
|
echo 'Portal client connection removed.'
|
|
;;
|
|
run)
|
|
start_portal_session
|
|
export PORTAL_ARTIFACT_DIR="$output_dir"
|
|
export LOCAL_UID="$(id -u)"
|
|
export LOCAL_GID="$(id -g)"
|
|
export PORTAL_BROWSER_MODE="$browser"
|
|
# A normal run is the full portal suite; do not let a prior OTA shell
|
|
# environment restrict it to one spec.
|
|
export PORTAL_TEST_FILE=''
|
|
export PORTAL_CUSTOM_PARAMETER_STRESS=0
|
|
if [[ "$custom_parameter_stress" == "yes" ]]; then
|
|
export PORTAL_CUSTOM_PARAMETER_STRESS=1
|
|
fi
|
|
export PORTAL_PLATFORM="$platform"
|
|
if [[ "$capture_readme_media" == "yes" ]]; then
|
|
export PORTAL_CAPTURE_README_MEDIA=1
|
|
export PORTAL_HARNESS_DOCKER_TARGET=media
|
|
else
|
|
export PORTAL_CAPTURE_README_MEDIA=0
|
|
export PORTAL_HARNESS_DOCKER_TARGET=portal-harness
|
|
fi
|
|
compose_files=(-f "$root/tests/portal-harness/compose.yaml")
|
|
if [[ -n "$station_env" ]]; then
|
|
prepare_station_handoff_env
|
|
compose_files+=(-f "$root/tests/portal-harness/compose.station.yaml")
|
|
# Once the browser can receive the private station credentials,
|
|
# every exit path must return the board to the fixture's clean
|
|
# portal-only state. The EXIT trap covers a browser failure; the
|
|
# explicit success-path call below keeps a cleanup failure from
|
|
# being announced as a passing test.
|
|
station_handoff_fixture_restore_needed=yes
|
|
fi
|
|
# The test-harness source is copied into the image; rebuild with Docker cache so
|
|
# this invocation always tests the checked-out files, not a stale image.
|
|
docker compose "${compose_files[@]}" build portal-harness
|
|
docker compose "${compose_files[@]}" run --rm portal-harness
|
|
restore_station_handoff_fixture
|
|
remove_station_handoff_env
|
|
if [[ "$capture_readme_media" == "yes" ]]; then
|
|
write_readme_media_manifest
|
|
fi
|
|
if [[ "$keep" != "yes" ]] && ! finish_portal_session; then
|
|
trap - EXIT HUP INT TERM
|
|
exit 1
|
|
fi
|
|
printf 'Portal test harness passed. Artifacts: %s\n' "$output_dir"
|
|
if [[ "$keep" == "yes" ]]; then
|
|
printf 'Portal session remains connected; run ./tools/portal-hardware down when finished.\n'
|
|
fi
|
|
;;
|
|
ota)
|
|
# Acquire the same board/adapter lock before *any* A/B preparation.
|
|
# Otherwise two OTA invocations can collide in .pio or create a
|
|
# same-second artifact directory before either reaches serial flash.
|
|
validate_run_arguments
|
|
require_common
|
|
wm_acquire_hardware_lock
|
|
wm_require_no_active_session
|
|
wm_prepare_networkmanager_authorization
|
|
wm_require_client_adapter "$client_interface" "$takeover"
|
|
require_ota_serial_capture
|
|
prepare_output_dir
|
|
prepare_ota_identity_input
|
|
prepare_ota_firmware
|
|
prepare_ota_harness_image
|
|
start_portal_session "$ota_environment_name" yes "$ota_firmware_a" yes no
|
|
|
|
# A must be visible through the real portal before a B upload can be
|
|
# meaningful. On ESP8266 the marker also reports the actual active
|
|
# sketch-space limit, which is checked before the browser sees B.
|
|
wait_for_ota_marker A >/dev/null
|
|
validate_running_ota_capacity
|
|
run_ota_harness
|
|
|
|
# The browser test harness has already required an outage and two B
|
|
# observations. Repeat the host-side observation after the container
|
|
# exits so the named secondary adapter is also proven to rediscover
|
|
# the returned AP and see B. This is AP routing, not a LAN IP shortcut.
|
|
wm_wait_for_portal_ssid "$client_interface" "$(wm_portal_ssid "$platform")"
|
|
wm_verify_portal_route "$client_interface"
|
|
wait_for_ota_marker B >/dev/null
|
|
require_ota_serial_capture_running
|
|
sleep 1
|
|
wait_for_ota_marker B >/dev/null
|
|
require_ota_serial_capture_running
|
|
stop_ota_serial_capture
|
|
if [[ "$keep" != "yes" ]] && ! finish_portal_session; then
|
|
trap - EXIT HUP INT TERM
|
|
exit 1
|
|
fi
|
|
printf 'Portal HTTP OTA test harness passed. Artifacts: %s\n' "$output_dir"
|
|
if [[ "$keep" == "yes" ]]; then
|
|
printf 'Portal session remains connected; run ./tools/portal-hardware down when finished.\n'
|
|
fi
|
|
;;
|
|
*) usage ;;
|
|
esac
|