mirror of
https://github.com/ChuckBuilds/LEDMatrix.git
synced 2026-10-04 14:25:08 +00:00
* refactor(web): answer unhandled api_v3 errors from one blueprint handler
Fifty-three api_v3 routes ended in a copy of the same catch-all: log the
traceback, return {status, "An error occurred; see logs for details",
details: describe_exception(e)} with a 500. They are replaced by one
errorhandler on the api_v3 blueprint that returns exactly that body.
It lives on the blueprint rather than falling through to app.py's global
handler because the two answers differ: the global one adds
error_code: UNKNOWN_ERROR, and api_client.js sends a body with an
error_code to the error modal and one without to a plain toast. A
blueprint handler also gives tests that mount api_v3 on a bare Flask app
the same answer the real app gives.
Only handlers that were byte-for-byte that shape were removed (matched on
the AST, and each rewritten function re-parsed and compared). Handlers
with their own message, extra keys, operation-history records or cleanup
stay, as does execute_plugin_action's step-1 handler, which sits inside
an `except subprocess.TimeoutExpired` arm that would otherwise turn a
plugin's timeout into a 408.
HTTPExceptions raised inside a route go back as themselves in the global
handler's 4xx shape. Where a removed catch-all used to swallow one (only
delete_plugin_asset's non-silent get_json() is reachable), a malformed
request now gets its 415/400 instead of a 500.
Most of the diff is re-indentation from unwrapping the try blocks;
`git diff -w` shows the real change.
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
* fix(web): plugin action errors name the real failure, not UnboundLocalError
execute_plugin_action bound a local `logger` in its JSON-parsing arm,
which made `logger` local to the whole function. Every other
`logger.error` in it then raised UnboundLocalError, so a failing OAuth
step-1 script was reported as "UnboundLocalError: cannot access local
variable 'logger'" -- from the step-1 handler, and before the previous
commit from the route's outer catch-all too. Use the module logger.
Found by comparing every api_v3 route's forced-failure response before
and after the catch-all consolidation.
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
* refactor(web): drop the error category and exception-name code guessing
WebInterfaceError derived an ErrorCategory from every error code and put
it in each structured error body as `error_category`. Nothing reads it:
not the web UI (static/ and templates/), not the tests beyond the ones
pinning the mapping itself, and not any plugin in ledmatrix-plugins. The
enum, the inference table and the JSON key go.
from_exception() could also guess an error code from the exception's
class name ("Config" -> CONFIG_LOAD_FAILED, and so on). Every caller
passes a code, so the guess never ran; error_code is now required.
suggested_fixes stays: the error dialog in static/v3/js/utils/
error_handler.js lists them.
The REST reference loses error_category and says what an unanticipated
exception in an /api/v3 route answers.
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
* refactor(web): one call for the from_exception error responses
Nine plugin routes built a structured error by hand:
from src.web_interface.errors import WebInterfaceError
error = WebInterfaceError.from_exception(e, ErrorCode.X)
return error_response(error.error_code, error.message,
details=error.details, context=error.context,
status_code=500)
That is now exception_error_response(e, ErrorCode.X) in api_helpers, so
error_response() is the only structured-error entry point the routes
use. The three operation-history routes never passed the context, and
with_context=False keeps their bodies exactly as they were; a test
compares the helper against the hand-written pair for both forms.
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
* docs(changelog): one api_v3 error-response path
Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 5.5 <noreply@anthropic.com>
447 lines
15 KiB
Python
447 lines
15 KiB
Python
"""Wi-Fi scanning, connection and status routes.
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Routes decorate the shared `api_v3` Blueprint from ._common, so their
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endpoint names are unchanged by living here.
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"""
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import threading
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import time
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from web_interface.blueprints.api_v3 import (
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api_v3, describe_exception, jsonify, logger, request,
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)
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# Joining a network while the setup AP is up has to take the AP down first,
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# and the caller is almost always a phone connected *through* that AP. Run
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# synchronously, the request outlives the link it arrived on: the browser
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# never gets an answer and the Connect button appears to do nothing. So in AP
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# mode the connect runs in the background and the result is kept here, where
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# /wifi/status can report it once the user is back on either network.
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_connect_lock = threading.Lock()
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_last_connect_attempt = None
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# Lets the 202 reach the phone before hostapd stops.
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_AP_HANDOFF_DELAY_SECONDS = 2.0
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def _last_connect_snapshot():
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with _connect_lock:
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return dict(_last_connect_attempt) if _last_connect_attempt else None
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def _spawn(target):
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threading.Thread(target=target, name='wifi-connect', daemon=True).start()
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def _connect_result_payload(ssid, success, message):
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"""Shape a connect_to_network result for the client.
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The manager flags a rejected passphrase by prefixing the message with
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"wrong_password:"; the setup pages key off `error_type` rather than
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parsing nmcli's wording.
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"""
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if success:
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return {'status': 'success', 'message': message}
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payload = {'status': 'error', 'message': message or 'Failed to connect to network'}
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if message and message.startswith('wrong_password:'):
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payload['error_type'] = 'wrong_password'
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payload['message'] = f'Incorrect password for {ssid}'
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return payload
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def _record_connect_result(ssid, payload):
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global _last_connect_attempt
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with _connect_lock:
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_last_connect_attempt = {
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'ssid': ssid,
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'state': 'success' if payload['status'] == 'success' else 'failed',
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'message': payload['message'],
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'error_type': payload.get('error_type'),
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'finished_at': time.time(),
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}
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def _run_background_connect(ssid, password):
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try:
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time.sleep(_AP_HANDOFF_DELAY_SECONDS)
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from src.wifi_manager import WiFiManager
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success, message = WiFiManager().connect_to_network(ssid, password)
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payload = _connect_result_payload(ssid, success, message)
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except Exception as e:
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logger.error("Background WiFi connect failed", exc_info=True)
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payload = {'status': 'error', 'message': describe_exception(e)}
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_record_connect_result(ssid, payload)
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def _parse_bool_ish(value):
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"""Coerce a JSON value that is supposed to be a boolean.
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A JSON boolean arrives as a real Python bool, but these routes are a
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public HTTP contract and not every caller sends one. `bool(value)` gets
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two common cases wrong: `bool("false")` is True (a non-empty string is
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always truthy), and a plain int does not match an `is True` check
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(`1 is True` is False, since `True` is a distinct singleton from the int
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`1`) -- so a caller sending `{"enabled": 1}` was silently treated as
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False. Recognizes a real bool, "true"/"false"/"1"/"0"/"yes"/"no"
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case-insensitively, and int 1/0.
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Returns None for anything else, rather than guessing. A supplied-but-
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unrecognized value (e.g. a typo) used to silently become False here,
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which for `enabled` on the radio route could disconnect Wi-Fi the caller
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never asked to turn off -- callers must treat None as a validation
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error, not a real False.
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"""
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if isinstance(value, bool):
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return value
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if isinstance(value, str):
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lowered = value.strip().lower()
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if lowered in ('true', '1', 'yes'):
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return True
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if lowered in ('false', '0', 'no'):
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return False
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return None
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if isinstance(value, int):
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if value == 1:
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return True
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if value == 0:
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return False
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return None
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return None
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# WiFi Management Endpoints
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@api_v3.route('/wifi/status', methods=['GET'])
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def get_wifi_status():
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"""Get current WiFi connection status"""
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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status = wifi_manager.get_wifi_status()
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# Get auto-enable setting from config
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auto_enable_ap = wifi_manager.config.get("auto_enable_ap_mode", True) # Default: True (safe due to grace period)
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return jsonify({
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'status': 'success',
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'data': {
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'connected': status.connected,
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'ssid': status.ssid,
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'ip_address': status.ip_address,
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'signal': status.signal,
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'ap_mode_active': status.ap_mode_active,
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'auto_enable_ap_mode': auto_enable_ap,
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'last_connect_attempt': _last_connect_snapshot(),
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}
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})
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@api_v3.route('/wifi/scan', methods=['GET'])
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def scan_wifi_networks():
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"""Scan for available WiFi networks
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If AP mode is active, it will be temporarily disabled during scanning
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and automatically re-enabled afterward. Users connected to the AP will
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be briefly disconnected during this process.
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"""
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try:
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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# Check if AP mode is active before scanning (for user notification)
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ap_was_active = wifi_manager._is_ap_mode_active()
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# Perform the scan (this will handle AP mode disabling/enabling internally)
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networks, _was_cached = wifi_manager.scan_networks()
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# Convert to dict format
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networks_data = [
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{
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'ssid': net.ssid,
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'signal': net.signal,
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'security': net.security,
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'frequency': net.frequency
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}
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for net in networks
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]
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response_data = {
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'status': 'success',
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'data': networks_data
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}
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# Inform user if AP mode was temporarily disabled
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if ap_was_active:
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response_data['message'] = (
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f'Found {len(networks_data)} networks. '
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'Note: AP mode was temporarily disabled during scanning and has been re-enabled. '
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'If you were connected to the setup network, you may need to reconnect.'
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)
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return jsonify(response_data)
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except Exception as e:
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logger.error("Error scanning WiFi networks", exc_info=True)
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error_message = 'An error occurred while scanning WiFi networks; see logs for details'
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# Provide more specific error messages for common issues
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error_str = str(e).lower()
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if 'permission' in error_str or 'sudo' in error_str:
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error_message = (
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'Permission error while scanning. '
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'The WiFi scan requires appropriate permissions. '
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'Please ensure the application has necessary privileges.'
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)
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elif 'timeout' in error_str:
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error_message = (
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'WiFi scan timed out. '
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'The scan took too long to complete. '
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'This may happen if the WiFi interface is busy or in use.'
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)
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elif 'no wifi' in error_str or 'not available' in error_str:
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error_message = (
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'WiFi scanning tools are not available. '
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'Please ensure NetworkManager (nmcli) or iwlist is installed.'
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)
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return jsonify({
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'status': 'error',
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'message': error_message
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}), 500
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@api_v3.route('/wifi/connect', methods=['POST'])
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def connect_wifi():
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"""Connect to a WiFi network.
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With the setup AP active this answers 202 at once and connects in the
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background (see _last_connect_attempt); otherwise it waits for the result.
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"""
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global _last_connect_attempt
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from src.wifi_manager import WiFiManager
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data = request.get_json(silent=True)
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if not data:
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return jsonify({
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'status': 'error',
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'message': 'Request body is required'
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}), 400
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if 'ssid' not in data:
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return jsonify({
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'status': 'error',
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'message': 'SSID is required'
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}), 400
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ssid = data['ssid']
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if not ssid or not ssid.strip():
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return jsonify({
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'status': 'error',
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'message': 'SSID cannot be empty'
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}), 400
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ssid = ssid.strip()
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password = data.get('password', '') or ''
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wifi_manager = WiFiManager()
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ap_mode_active = wifi_manager._is_ap_mode_active()
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# One attempt at a time on either path: concurrent connects fight over
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# the radio, and the first to finish would clear the in-progress flag
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# the monitor daemon still needs for the other. The check can't depend
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# on AP state either -- a background attempt takes the AP down long
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# before it finishes.
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with _connect_lock:
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if _last_connect_attempt and _last_connect_attempt['state'] == 'pending':
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return jsonify({
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'status': 'error',
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'message': f"Already connecting to {_last_connect_attempt['ssid']}"
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}), 409
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_last_connect_attempt = {
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'ssid': ssid, 'state': 'pending', 'message': None,
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'error_type': None, 'finished_at': None,
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}
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if ap_mode_active:
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try:
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_spawn(lambda: _run_background_connect(ssid, password))
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except Exception:
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# Nothing will ever finish this attempt; don't leave every
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# later request refused.
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with _connect_lock:
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_last_connect_attempt = None
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raise
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return jsonify({
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'status': 'pending',
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'message': (
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f'Connecting to {ssid}. The LEDMatrix-Setup network will turn off, '
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'so this page will lose its connection.'
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),
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'data': {'ssid': ssid},
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}), 202
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try:
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success, message = wifi_manager.connect_to_network(ssid, password)
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except Exception as e:
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_record_connect_result(ssid, {'status': 'error', 'message': describe_exception(e)})
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raise
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payload = _connect_result_payload(ssid, success, message)
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_record_connect_result(ssid, payload)
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return jsonify(payload), (200 if success else 400)
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@api_v3.route('/wifi/disconnect', methods=['POST'])
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def disconnect_wifi():
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"""Disconnect from the current WiFi network"""
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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success, message = wifi_manager.disconnect_from_network()
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if success:
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return jsonify({
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'status': 'success',
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'message': message
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})
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else:
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return jsonify({
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'status': 'error',
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'message': message or 'Failed to disconnect from network'
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}), 400
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@api_v3.route('/wifi/ap/enable', methods=['POST'])
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def enable_ap_mode():
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"""Enable access point mode"""
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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_force_raw = (request.get_json(silent=True) or {}).get('force', False)
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force = _force_raw is True or (isinstance(_force_raw, str) and _force_raw.lower() in ('true', '1'))
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success, message = wifi_manager.enable_ap_mode(force=force)
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if success:
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return jsonify({
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'status': 'success',
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'message': message
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})
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else:
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return jsonify({
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'status': 'error',
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'message': message
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}), 400
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@api_v3.route('/wifi/ap/disable', methods=['POST'])
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def disable_ap_mode():
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"""Disable access point mode"""
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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success, message = wifi_manager.disable_ap_mode()
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if success:
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return jsonify({
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'status': 'success',
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'message': message
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})
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else:
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return jsonify({
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'status': 'error',
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'message': message
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}), 400
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@api_v3.route('/wifi/ap/auto-enable', methods=['GET'])
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def get_auto_enable_ap_mode():
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"""Get auto-enable AP mode setting"""
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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auto_enable = wifi_manager.config.get("auto_enable_ap_mode", True) # Default: True (safe due to grace period)
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return jsonify({
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'status': 'success',
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'data': {
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'auto_enable_ap_mode': auto_enable
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}
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})
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@api_v3.route('/wifi/ap/auto-enable', methods=['POST'])
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def set_auto_enable_ap_mode():
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"""Set auto-enable AP mode setting"""
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from src.wifi_manager import WiFiManager
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data = request.get_json(silent=True)
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if data is None or 'auto_enable_ap_mode' not in data:
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return jsonify({
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'status': 'error',
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'message': 'auto_enable_ap_mode is required'
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}), 400
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auto_enable = _parse_bool_ish(data['auto_enable_ap_mode'])
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if auto_enable is None:
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return jsonify({
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'status': 'error',
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'message': 'auto_enable_ap_mode must be a boolean'
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}), 400
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wifi_manager = WiFiManager()
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wifi_manager.config["auto_enable_ap_mode"] = auto_enable
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wifi_manager._save_config()
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return jsonify({
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'status': 'success',
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'message': f'Auto-enable AP mode set to {auto_enable}',
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'data': {
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'auto_enable_ap_mode': auto_enable
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}
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})
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@api_v3.route('/wifi/radio', methods=['GET'])
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def get_wifi_radio():
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"""Get current WiFi radio state (enabled/disabled) and wired-fallback status."""
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from src.wifi_manager import WiFiManager
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wifi_manager = WiFiManager()
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state = wifi_manager.get_wifi_radio_state()
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return jsonify({
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'status': 'success',
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'data': state
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})
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@api_v3.route('/wifi/radio', methods=['POST'])
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def set_wifi_radio():
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"""Turn the WiFi radio on or off.
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Body: {"enabled": bool, "force": bool (optional)}. Disabling is refused
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unless Ethernet is connected or force=True, to avoid locking the user out
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of this web interface.
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"""
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from src.wifi_manager import WiFiManager
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data = request.get_json(silent=True) or {}
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if 'enabled' not in data:
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return jsonify({
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'status': 'error',
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'message': 'enabled is required'
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}), 400
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# Parse defensively: bool("false") is True and a plain int never
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# matches `is True`, so `_parse_bool_ish` handles bool, string and
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# int 1/0 — the endpoint is a public contract, not just the shipped
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# UI (which always sends real JSON booleans). An unrecognized value
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# must be rejected, not silently disable the radio: this is the
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# route that can drop the caller's own connection to this interface.
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enabled = _parse_bool_ish(data['enabled'])
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if enabled is None:
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return jsonify({
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'status': 'error',
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'message': 'enabled must be a boolean'
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}), 400
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force = _parse_bool_ish(data.get('force', False))
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if force is None:
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return jsonify({
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'status': 'error',
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'message': 'force must be a boolean'
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}), 400
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wifi_manager = WiFiManager()
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success, message, reason = wifi_manager.set_wifi_radio(enabled, force=force)
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if success:
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return jsonify({
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'status': 'success',
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'message': message,
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'data': wifi_manager.get_wifi_radio_state()
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})
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else:
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return jsonify({
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'status': 'error',
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'message': message,
|
|
'reason': reason
|
|
}), 400
|