detect_objects.py 19 KB

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  1. import faulthandler; faulthandler.enable()
  2. import os
  3. import signal
  4. import sys
  5. import traceback
  6. import signal
  7. import cv2
  8. import time
  9. import datetime
  10. import queue
  11. import yaml
  12. import threading
  13. import multiprocessing as mp
  14. import subprocess as sp
  15. import numpy as np
  16. import logging
  17. from flask import Flask, Response, make_response, jsonify, request
  18. import paho.mqtt.client as mqtt
  19. from frigate.video import track_camera, get_ffmpeg_input, get_frame_shape, CameraCapture, start_or_restart_ffmpeg
  20. from frigate.object_processing import TrackedObjectProcessor
  21. from frigate.events import EventProcessor
  22. from frigate.util import EventsPerSecond
  23. from frigate.edgetpu import EdgeTPUProcess
  24. FRIGATE_VARS = {k: v for k, v in os.environ.items() if k.startswith('FRIGATE_')}
  25. CONFIG_FILE = os.environ.get('CONFIG_FILE', '/config/config.yml')
  26. with open('/config/config.yml') as f:
  27. CONFIG = yaml.safe_load(f)
  28. MQTT_HOST = CONFIG['mqtt']['host']
  29. MQTT_PORT = CONFIG.get('mqtt', {}).get('port', 1883)
  30. MQTT_TOPIC_PREFIX = CONFIG.get('mqtt', {}).get('topic_prefix', 'frigate')
  31. MQTT_USER = CONFIG.get('mqtt', {}).get('user')
  32. MQTT_PASS = CONFIG.get('mqtt', {}).get('password')
  33. if not MQTT_PASS is None:
  34. MQTT_PASS = MQTT_PASS.format(**FRIGATE_VARS)
  35. MQTT_CLIENT_ID = CONFIG.get('mqtt', {}).get('client_id', 'frigate')
  36. # Set the default FFmpeg config
  37. FFMPEG_CONFIG = CONFIG.get('ffmpeg', {})
  38. FFMPEG_DEFAULT_CONFIG = {
  39. 'global_args': FFMPEG_CONFIG.get('global_args',
  40. ['-hide_banner','-loglevel','panic']),
  41. 'hwaccel_args': FFMPEG_CONFIG.get('hwaccel_args',
  42. []),
  43. 'input_args': FFMPEG_CONFIG.get('input_args',
  44. ['-avoid_negative_ts', 'make_zero',
  45. '-fflags', 'nobuffer',
  46. '-flags', 'low_delay',
  47. '-strict', 'experimental',
  48. '-fflags', '+genpts+discardcorrupt',
  49. '-rtsp_transport', 'tcp',
  50. '-stimeout', '5000000',
  51. '-use_wallclock_as_timestamps', '1']),
  52. 'output_args': FFMPEG_CONFIG.get('output_args',
  53. ['-f', 'rawvideo',
  54. '-pix_fmt', 'yuv420p'])
  55. }
  56. GLOBAL_OBJECT_CONFIG = CONFIG.get('objects', {})
  57. WEB_PORT = CONFIG.get('web_port', 5000)
  58. DETECTORS = CONFIG.get('detectors', {'coral': {'type': 'edgetpu', 'device': 'usb'}})
  59. class CameraWatchdog(threading.Thread):
  60. def __init__(self, camera_processes, config, detectors, detection_queue, tracked_objects_queue, stop_event):
  61. threading.Thread.__init__(self)
  62. self.camera_processes = camera_processes
  63. self.config = config
  64. self.detectors = detectors
  65. self.detection_queue = detection_queue
  66. self.tracked_objects_queue = tracked_objects_queue
  67. self.stop_event = stop_event
  68. def run(self):
  69. time.sleep(10)
  70. while True:
  71. # wait a bit before checking
  72. time.sleep(10)
  73. if self.stop_event.is_set():
  74. print(f"Exiting watchdog...")
  75. break
  76. now = datetime.datetime.now().timestamp()
  77. # check the detection processes
  78. for detector in self.detectors.values():
  79. detection_start = detector.detection_start.value
  80. if (detection_start > 0.0 and
  81. now - detection_start > 10):
  82. print("Detection appears to be stuck. Restarting detection process")
  83. detector.start_or_restart()
  84. elif not detector.detect_process.is_alive():
  85. print("Detection appears to have stopped. Restarting detection process")
  86. detector.start_or_restart()
  87. # check the camera processes
  88. for name, camera_process in self.camera_processes.items():
  89. process = camera_process['process']
  90. if not process.is_alive():
  91. print(f"Track process for {name} is not alive. Starting again...")
  92. camera_process['process_fps'].value = 0.0
  93. camera_process['detection_fps'].value = 0.0
  94. camera_process['read_start'].value = 0.0
  95. process = mp.Process(target=track_camera, args=(name, self.config[name], camera_process['frame_queue'],
  96. camera_process['frame_shape'], self.detection_queue, self.tracked_objects_queue,
  97. camera_process['process_fps'], camera_process['detection_fps'],
  98. camera_process['read_start'], self.stop_event))
  99. process.daemon = True
  100. camera_process['process'] = process
  101. process.start()
  102. print(f"Track process started for {name}: {process.pid}")
  103. if not camera_process['capture_thread'].is_alive():
  104. frame_shape = camera_process['frame_shape']
  105. frame_size = frame_shape[0] * frame_shape[1] * frame_shape[2]
  106. ffmpeg_process = start_or_restart_ffmpeg(camera_process['ffmpeg_cmd'], frame_size)
  107. camera_capture = CameraCapture(name, ffmpeg_process, frame_shape, camera_process['frame_queue'],
  108. camera_process['take_frame'], camera_process['camera_fps'], self.stop_event)
  109. camera_capture.start()
  110. camera_process['ffmpeg_process'] = ffmpeg_process
  111. camera_process['capture_thread'] = camera_capture
  112. elif now - camera_process['capture_thread'].current_frame.value > 5:
  113. print(f"No frames received from {name} in 5 seconds. Exiting ffmpeg...")
  114. ffmpeg_process = camera_process['ffmpeg_process']
  115. ffmpeg_process.terminate()
  116. try:
  117. print("Waiting for ffmpeg to exit gracefully...")
  118. ffmpeg_process.communicate(timeout=30)
  119. except sp.TimeoutExpired:
  120. print("FFmpeg didnt exit. Force killing...")
  121. ffmpeg_process.kill()
  122. ffmpeg_process.communicate()
  123. def main():
  124. stop_event = threading.Event()
  125. # connect to mqtt and setup last will
  126. def on_connect(client, userdata, flags, rc):
  127. print("On connect called")
  128. if rc != 0:
  129. if rc == 3:
  130. print ("MQTT Server unavailable")
  131. elif rc == 4:
  132. print ("MQTT Bad username or password")
  133. elif rc == 5:
  134. print ("MQTT Not authorized")
  135. else:
  136. print ("Unable to connect to MQTT: Connection refused. Error code: " + str(rc))
  137. # publish a message to signal that the service is running
  138. client.publish(MQTT_TOPIC_PREFIX+'/available', 'online', retain=True)
  139. client = mqtt.Client(client_id=MQTT_CLIENT_ID)
  140. client.on_connect = on_connect
  141. client.will_set(MQTT_TOPIC_PREFIX+'/available', payload='offline', qos=1, retain=True)
  142. if not MQTT_USER is None:
  143. client.username_pw_set(MQTT_USER, password=MQTT_PASS)
  144. client.connect(MQTT_HOST, MQTT_PORT, 60)
  145. client.loop_start()
  146. ##
  147. # Setup config defaults for cameras
  148. ##
  149. for name, config in CONFIG['cameras'].items():
  150. config['snapshots'] = {
  151. 'show_timestamp': config.get('snapshots', {}).get('show_timestamp', True),
  152. 'draw_zones': config.get('snapshots', {}).get('draw_zones', False),
  153. 'draw_bounding_boxes': config.get('snapshots', {}).get('draw_bounding_boxes', True)
  154. }
  155. config['zones'] = config.get('zones', {})
  156. # Queue for cameras to push tracked objects to
  157. tracked_objects_queue = mp.Queue()
  158. # Queue for clip processing
  159. event_queue = mp.Queue()
  160. # create the detection pipes and shms
  161. out_events = {}
  162. camera_shms = []
  163. for name in CONFIG['cameras'].keys():
  164. out_events[name] = mp.Event()
  165. shm_in = mp.shared_memory.SharedMemory(name=name, create=True, size=300*300*3)
  166. shm_out = mp.shared_memory.SharedMemory(name=f"out-{name}", create=True, size=20*6*4)
  167. camera_shms.append(shm_in)
  168. camera_shms.append(shm_out)
  169. detection_queue = mp.Queue()
  170. detectors = {}
  171. for name, detector in DETECTORS.items():
  172. if detector['type'] == 'cpu':
  173. detectors[name] = EdgeTPUProcess(detection_queue, out_events=out_events, tf_device='cpu')
  174. if detector['type'] == 'edgetpu':
  175. detectors[name] = EdgeTPUProcess(detection_queue, out_events=out_events, tf_device=detector['device'])
  176. # create the camera processes
  177. camera_processes = {}
  178. for name, config in CONFIG['cameras'].items():
  179. # Merge the ffmpeg config with the global config
  180. ffmpeg = config.get('ffmpeg', {})
  181. ffmpeg_input = get_ffmpeg_input(ffmpeg['input'])
  182. ffmpeg_global_args = ffmpeg.get('global_args', FFMPEG_DEFAULT_CONFIG['global_args'])
  183. ffmpeg_hwaccel_args = ffmpeg.get('hwaccel_args', FFMPEG_DEFAULT_CONFIG['hwaccel_args'])
  184. ffmpeg_input_args = ffmpeg.get('input_args', FFMPEG_DEFAULT_CONFIG['input_args'])
  185. ffmpeg_output_args = ffmpeg.get('output_args', FFMPEG_DEFAULT_CONFIG['output_args'])
  186. if not config.get('fps') is None:
  187. ffmpeg_output_args = ["-r", str(config.get('fps'))] + ffmpeg_output_args
  188. if config.get('save_clips', {}).get('enabled', False):
  189. ffmpeg_output_args = [
  190. "-f",
  191. "segment",
  192. "-segment_time",
  193. "10",
  194. "-segment_format",
  195. "mp4",
  196. "-reset_timestamps",
  197. "1",
  198. "-strftime",
  199. "1",
  200. "-c",
  201. "copy",
  202. "-an",
  203. "-map",
  204. "0",
  205. f"/cache/{name}-%Y%m%d%H%M%S.mp4"
  206. ] + ffmpeg_output_args
  207. ffmpeg_cmd = (['ffmpeg'] +
  208. ffmpeg_global_args +
  209. ffmpeg_hwaccel_args +
  210. ffmpeg_input_args +
  211. ['-i', ffmpeg_input] +
  212. ffmpeg_output_args +
  213. ['pipe:'])
  214. if 'width' in config and 'height' in config:
  215. frame_shape = (config['height'], config['width'], 3)
  216. else:
  217. frame_shape = get_frame_shape(ffmpeg_input)
  218. config['frame_shape'] = frame_shape
  219. frame_size = frame_shape[0] * frame_shape[1] * frame_shape[2]
  220. take_frame = config.get('take_frame', 1)
  221. detection_frame = mp.Value('d', 0.0)
  222. ffmpeg_process = start_or_restart_ffmpeg(ffmpeg_cmd, frame_size)
  223. frame_queue = mp.Queue(maxsize=2)
  224. camera_fps = EventsPerSecond()
  225. camera_fps.start()
  226. camera_capture = CameraCapture(name, ffmpeg_process, frame_shape, frame_queue, take_frame, camera_fps, stop_event)
  227. camera_capture.start()
  228. camera_processes[name] = {
  229. 'camera_fps': camera_fps,
  230. 'take_frame': take_frame,
  231. 'process_fps': mp.Value('d', 0.0),
  232. 'detection_fps': mp.Value('d', 0.0),
  233. 'detection_frame': detection_frame,
  234. 'read_start': mp.Value('d', 0.0),
  235. 'ffmpeg_process': ffmpeg_process,
  236. 'ffmpeg_cmd': ffmpeg_cmd,
  237. 'frame_queue': frame_queue,
  238. 'frame_shape': frame_shape,
  239. 'capture_thread': camera_capture
  240. }
  241. # merge global object config into camera object config
  242. camera_objects_config = config.get('objects', {})
  243. # get objects to track for camera
  244. objects_to_track = camera_objects_config.get('track', GLOBAL_OBJECT_CONFIG.get('track', ['person']))
  245. # get object filters
  246. object_filters = camera_objects_config.get('filters', GLOBAL_OBJECT_CONFIG.get('filters', {}))
  247. config['objects'] = {
  248. 'track': objects_to_track,
  249. 'filters': object_filters
  250. }
  251. camera_process = mp.Process(target=track_camera, args=(name, config, frame_queue, frame_shape,
  252. detection_queue, out_events[name], tracked_objects_queue, camera_processes[name]['process_fps'],
  253. camera_processes[name]['detection_fps'],
  254. camera_processes[name]['read_start'], camera_processes[name]['detection_frame'], stop_event))
  255. camera_process.daemon = True
  256. camera_processes[name]['process'] = camera_process
  257. # start the camera_processes
  258. for name, camera_process in camera_processes.items():
  259. camera_process['process'].start()
  260. print(f"Camera_process started for {name}: {camera_process['process'].pid}")
  261. event_processor = EventProcessor(CONFIG, camera_processes, '/cache', '/clips', event_queue, stop_event)
  262. event_processor.start()
  263. object_processor = TrackedObjectProcessor(CONFIG['cameras'], client, MQTT_TOPIC_PREFIX, tracked_objects_queue, event_queue, stop_event)
  264. object_processor.start()
  265. camera_watchdog = CameraWatchdog(camera_processes, CONFIG['cameras'], detectors, detection_queue, tracked_objects_queue, stop_event)
  266. camera_watchdog.start()
  267. def receiveSignal(signalNumber, frame):
  268. print('Received:', signalNumber)
  269. stop_event.set()
  270. event_processor.join()
  271. object_processor.join()
  272. camera_watchdog.join()
  273. for camera_name, camera_process in camera_processes.items():
  274. camera_process['capture_thread'].join()
  275. # cleanup the frame queue
  276. while not camera_process['frame_queue'].empty():
  277. frame_time = camera_process['frame_queue'].get()
  278. shm = mp.shared_memory.SharedMemory(name=f"{camera_name}{frame_time}")
  279. shm.close()
  280. shm.unlink()
  281. for detector in detectors.values():
  282. detector.stop()
  283. for shm in camera_shms:
  284. shm.close()
  285. shm.unlink()
  286. sys.exit()
  287. signal.signal(signal.SIGTERM, receiveSignal)
  288. signal.signal(signal.SIGINT, receiveSignal)
  289. # create a flask app that encodes frames a mjpeg on demand
  290. app = Flask(__name__)
  291. log = logging.getLogger('werkzeug')
  292. log.setLevel(logging.ERROR)
  293. @app.route('/')
  294. def ishealthy():
  295. # return a healh
  296. return "Frigate is running. Alive and healthy!"
  297. @app.route('/debug/stack')
  298. def processor_stack():
  299. frame = sys._current_frames().get(object_processor.ident, None)
  300. if frame:
  301. return "<br>".join(traceback.format_stack(frame)), 200
  302. else:
  303. return "no frame found", 200
  304. @app.route('/debug/print_stack')
  305. def print_stack():
  306. pid = int(request.args.get('pid', 0))
  307. if pid == 0:
  308. return "missing pid", 200
  309. else:
  310. os.kill(pid, signal.SIGUSR1)
  311. return "check logs", 200
  312. @app.route('/debug/stats')
  313. def stats():
  314. stats = {}
  315. total_detection_fps = 0
  316. for name, camera_stats in camera_processes.items():
  317. total_detection_fps += camera_stats['detection_fps'].value
  318. capture_thread = camera_stats['capture_thread']
  319. stats[name] = {
  320. 'camera_fps': round(capture_thread.fps.eps(), 2),
  321. 'process_fps': round(camera_stats['process_fps'].value, 2),
  322. 'skipped_fps': round(capture_thread.skipped_fps.eps(), 2),
  323. 'detection_fps': round(camera_stats['detection_fps'].value, 2),
  324. 'read_start': camera_stats['read_start'].value,
  325. 'pid': camera_stats['process'].pid,
  326. 'ffmpeg_pid': camera_stats['ffmpeg_process'].pid,
  327. 'frame_info': {
  328. 'read': capture_thread.current_frame.value,
  329. 'detect': camera_stats['detection_frame'].value,
  330. 'process': object_processor.camera_data[name]['current_frame_time']
  331. }
  332. }
  333. stats['detectors'] = {}
  334. for name, detector in detectors.items():
  335. stats['detectors'][name] = {
  336. 'inference_speed': round(detector.avg_inference_speed.value*1000, 2),
  337. 'detection_start': detector.detection_start.value,
  338. 'pid': detector.detect_process.pid
  339. }
  340. stats['detection_fps'] = round(total_detection_fps, 2)
  341. return jsonify(stats)
  342. @app.route('/<camera_name>/<label>/best.jpg')
  343. def best(camera_name, label):
  344. if camera_name in CONFIG['cameras']:
  345. best_object = object_processor.get_best(camera_name, label)
  346. best_frame = best_object.get('frame')
  347. if best_frame is None:
  348. best_frame = np.zeros((720,1280,3), np.uint8)
  349. else:
  350. best_frame = cv2.cvtColor(best_frame, cv2.COLOR_YUV2BGR_I420)
  351. crop = bool(request.args.get('crop', 0, type=int))
  352. if crop:
  353. region = best_object.get('region', [0,0,300,300])
  354. best_frame = best_frame[region[1]:region[3], region[0]:region[2]]
  355. height = int(request.args.get('h', str(best_frame.shape[0])))
  356. width = int(height*best_frame.shape[1]/best_frame.shape[0])
  357. best_frame = cv2.resize(best_frame, dsize=(width, height), interpolation=cv2.INTER_AREA)
  358. ret, jpg = cv2.imencode('.jpg', best_frame)
  359. response = make_response(jpg.tobytes())
  360. response.headers['Content-Type'] = 'image/jpg'
  361. return response
  362. else:
  363. return "Camera named {} not found".format(camera_name), 404
  364. @app.route('/<camera_name>')
  365. def mjpeg_feed(camera_name):
  366. fps = int(request.args.get('fps', '3'))
  367. height = int(request.args.get('h', '360'))
  368. if camera_name in CONFIG['cameras']:
  369. # return a multipart response
  370. return Response(imagestream(camera_name, fps, height),
  371. mimetype='multipart/x-mixed-replace; boundary=frame')
  372. else:
  373. return "Camera named {} not found".format(camera_name), 404
  374. @app.route('/<camera_name>/latest.jpg')
  375. def latest_frame(camera_name):
  376. if camera_name in CONFIG['cameras']:
  377. # max out at specified FPS
  378. frame = object_processor.get_current_frame(camera_name)
  379. if frame is None:
  380. frame = np.zeros((720,1280,3), np.uint8)
  381. height = int(request.args.get('h', str(frame.shape[0])))
  382. width = int(height*frame.shape[1]/frame.shape[0])
  383. frame = cv2.resize(frame, dsize=(width, height), interpolation=cv2.INTER_AREA)
  384. ret, jpg = cv2.imencode('.jpg', frame)
  385. response = make_response(jpg.tobytes())
  386. response.headers['Content-Type'] = 'image/jpg'
  387. return response
  388. else:
  389. return "Camera named {} not found".format(camera_name), 404
  390. def imagestream(camera_name, fps, height):
  391. while True:
  392. # max out at specified FPS
  393. time.sleep(1/fps)
  394. frame = object_processor.get_current_frame(camera_name, draw=True)
  395. if frame is None:
  396. frame = np.zeros((height,int(height*16/9),3), np.uint8)
  397. width = int(height*frame.shape[1]/frame.shape[0])
  398. frame = cv2.resize(frame, dsize=(width, height), interpolation=cv2.INTER_LINEAR)
  399. ret, jpg = cv2.imencode('.jpg', frame)
  400. yield (b'--frame\r\n'
  401. b'Content-Type: image/jpeg\r\n\r\n' + jpg.tobytes() + b'\r\n\r\n')
  402. app.run(host='0.0.0.0', port=WEB_PORT, debug=False)
  403. object_processor.join()
  404. if __name__ == '__main__':
  405. main()