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* update network requirements docs for keras weights download * fix manual PTZ relative moves permanently stopping object detection * document available camera set features and link profiles docs to the API * fix stale stream name field when switching cameras The live streams and known plates fields rendered the map key as an uncontrolled input, so switching cameras left the previous camera's stream name on screen and would rename the wrong key if that stale text was committed. Both now use a shared MapKeyInput that resyncs with the form data and commits per keystroke, except while the typed name belongs to another entry, so the section is marked modified without waiting for blur.
1106 lines
44 KiB
Python
1106 lines
44 KiB
Python
"""Configure and control camera via onvif."""
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import asyncio
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import logging
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import threading
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import time
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from enum import Enum
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from importlib.util import find_spec
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from pathlib import Path
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from typing import Any
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import numpy
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from onvif import ONVIFCamera, ONVIFError, ONVIFService
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from zeep.exceptions import Fault, TransportError
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from frigate.camera import PTZMetrics
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from frigate.config import FrigateConfig, ZoomingModeEnum
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from frigate.config.camera.updater import (
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CameraConfigUpdateEnum,
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CameraConfigUpdateSubscriber,
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)
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from frigate.util.builtin import find_by_key
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logger = logging.getLogger(__name__)
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class OnvifCommandEnum(str, Enum):
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"""Holds all possible move commands"""
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init = "init"
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move_down = "move_down"
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move_left = "move_left"
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move_relative = "move_relative"
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move_right = "move_right"
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move_up = "move_up"
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preset = "preset"
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stop = "stop"
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zoom_in = "zoom_in"
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zoom_out = "zoom_out"
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focus_in = "focus_in"
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focus_out = "focus_out"
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class OnvifController:
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ptz_metrics: dict[str, PTZMetrics]
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def __init__(
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self, config: FrigateConfig, ptz_metrics: dict[str, PTZMetrics]
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) -> None:
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self.cams: dict[str, dict] = {}
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self.failed_cams: dict[str, dict] = {}
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self.max_retries = 5
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self.reset_timeout = 900 # 15 minutes
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self.config = config
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self.ptz_metrics = ptz_metrics
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self.status_locks: dict[str, asyncio.Lock] = {}
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# Create a dedicated event loop and run it in a separate thread
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self.loop = asyncio.new_event_loop()
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self.loop_thread = threading.Thread(target=self._run_event_loop, daemon=True)
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self.loop_thread.start()
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self.camera_configs = {}
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for cam_name, cam in config.cameras.items():
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if not cam.enabled:
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continue
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if cam.onvif.host:
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self.camera_configs[cam_name] = cam
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self.status_locks[cam_name] = asyncio.Lock()
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self.config_subscriber = CameraConfigUpdateSubscriber(
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self.config,
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self.config.cameras,
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[CameraConfigUpdateEnum.onvif],
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)
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asyncio.run_coroutine_threadsafe(self._init_cameras(), self.loop)
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asyncio.run_coroutine_threadsafe(self._poll_config_updates(), self.loop)
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def _run_event_loop(self) -> None:
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"""Run the event loop in a separate thread."""
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asyncio.set_event_loop(self.loop)
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try:
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self.loop.run_forever()
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except Exception as e:
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logger.error(f"Onvif event loop terminated unexpectedly: {e}")
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async def _init_cameras(self) -> None:
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"""Initialize all configured cameras."""
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for cam_name in self.camera_configs:
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await self._init_single_camera(cam_name)
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async def _poll_config_updates(self) -> None:
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"""Poll for ONVIF config updates and re-initialize cameras as needed."""
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while True:
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await asyncio.sleep(1)
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try:
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updates = self.config_subscriber.check_for_updates()
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for update_type, cameras in updates.items():
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if update_type == CameraConfigUpdateEnum.onvif.name:
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for cam_name in cameras:
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await self._reinit_camera(cam_name)
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except Exception:
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logger.error("Error checking for ONVIF config updates")
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async def _close_camera(self, cam_name: str) -> None:
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"""Close the ONVIF client session for a camera."""
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cam_state = self.cams.get(cam_name)
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if cam_state and "onvif" in cam_state:
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try:
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await cam_state["onvif"].close()
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except Exception:
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logger.debug(f"Error closing ONVIF session for {cam_name}")
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async def _reinit_camera(self, cam_name: str) -> None:
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"""Re-initialize a camera after config change."""
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logger.info(f"Re-initializing ONVIF for {cam_name} due to config change")
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# close existing session before re-init
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await self._close_camera(cam_name)
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cam = self.config.cameras.get(cam_name)
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if not cam or not cam.onvif.host:
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# ONVIF removed from config, clean up
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self.cams.pop(cam_name, None)
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self.camera_configs.pop(cam_name, None)
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self.failed_cams.pop(cam_name, None)
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return
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# update stored config and reset state
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self.camera_configs[cam_name] = cam
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if cam_name not in self.status_locks:
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self.status_locks[cam_name] = asyncio.Lock()
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self.cams.pop(cam_name, None)
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self.failed_cams.pop(cam_name, None)
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await self._init_single_camera(cam_name)
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async def _init_single_camera(self, cam_name: str) -> bool:
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"""Initialize a single camera by name.
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Args:
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cam_name: The name of the camera to initialize
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Returns:
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bool: True if initialization succeeded, False otherwise
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"""
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if cam_name not in self.camera_configs:
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logger.error(f"No configuration found for camera {cam_name}")
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return False
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cam = self.camera_configs[cam_name]
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try:
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self.cams[cam_name] = {
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"onvif": ONVIFCamera(
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cam.onvif.host,
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cam.onvif.port,
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cam.onvif.user,
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cam.onvif.password,
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wsdl_dir=str(Path(find_spec("onvif").origin).parent / "wsdl"),
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adjust_time=cam.onvif.ignore_time_mismatch,
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encrypt=not cam.onvif.tls_insecure,
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),
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"init": False,
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"active": False,
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"features": [],
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"presets": {},
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"profiles": [],
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}
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return True
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.error(f"Failed to create ONVIF camera instance for {cam_name}: {e}")
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# track initial failures
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self.failed_cams[cam_name] = {
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"retry_attempts": 0,
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"last_error": str(e),
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"last_attempt": time.time(),
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}
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return False
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async def _init_onvif(self, camera_name: str) -> bool:
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onvif: ONVIFCamera = self.cams[camera_name]["onvif"]
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try:
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await onvif.update_xaddrs()
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except Exception as e:
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logger.error(f"Onvif connection failed for {camera_name}: {e}")
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return False
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# create init services
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media: ONVIFService = await onvif.create_media_service()
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logger.debug(f"Onvif media xaddr for {camera_name}: {media.xaddr}")
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try:
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# this will fire an exception if camera is not a ptz
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capabilities = onvif.get_definition("ptz")
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logger.debug(f"Onvif capabilities for {camera_name}: {capabilities}")
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.error(
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f"Unable to get Onvif capabilities for camera: {camera_name}: {e}"
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)
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return False
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try:
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profiles = await media.GetProfiles()
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logger.debug(f"Onvif profiles for {camera_name}: {profiles}")
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.error(
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f"Unable to get Onvif media profiles for camera: {camera_name}: {e}"
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)
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return False
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# build list of valid PTZ profiles
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valid_profiles = [
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p
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for p in profiles
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if p.VideoEncoderConfiguration
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and p.PTZConfiguration
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and (
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p.PTZConfiguration.DefaultContinuousPanTiltVelocitySpace is not None
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or p.PTZConfiguration.DefaultContinuousZoomVelocitySpace is not None
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)
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]
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# store available profiles for API response and log for debugging
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self.cams[camera_name]["profiles"] = [
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{"name": getattr(p, "Name", None) or p.token, "token": p.token}
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for p in valid_profiles
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]
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for p in valid_profiles:
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logger.debug(
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"Onvif profile for %s: name='%s', token='%s'",
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camera_name,
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getattr(p, "Name", None),
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p.token,
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)
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configured_profile = self.config.cameras[camera_name].onvif.profile
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profile = None
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if configured_profile is not None:
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# match by exact token first, then by name
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for p in valid_profiles:
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if p.token == configured_profile:
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profile = p
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break
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if profile is None:
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for p in valid_profiles:
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if getattr(p, "Name", None) == configured_profile:
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profile = p
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break
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if profile is None:
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available = [
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f"name='{getattr(p, 'Name', None)}', token='{p.token}'"
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for p in valid_profiles
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]
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logger.error(
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"Onvif profile '%s' not found for camera %s. Available profiles: %s",
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configured_profile,
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camera_name,
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available,
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)
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return False
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else:
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# use the first profile that has a valid ptz configuration
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profile = valid_profiles[0] if valid_profiles else None
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if profile is None:
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logger.error(
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f"No appropriate Onvif profiles found for camera: {camera_name}."
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)
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return False
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logger.debug(f"Selected Onvif profile for {camera_name}: {profile}")
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# get the PTZ config for the profile
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try:
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configs = profile.PTZConfiguration
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logger.debug(
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f"Onvif ptz config for media profile in {camera_name}: {configs}"
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)
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except Exception as e:
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logger.error(
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f"Invalid Onvif PTZ configuration for camera: {camera_name}: {e}"
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)
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return False
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ptz: ONVIFService = await onvif.create_ptz_service()
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self.cams[camera_name]["ptz"] = ptz
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try:
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imaging: ONVIFService = await onvif.create_imaging_service()
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.debug(f"Imaging service not supported for {camera_name}: {e}")
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imaging = None
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self.cams[camera_name]["imaging"] = imaging
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try:
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video_sources = await media.GetVideoSources()
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if video_sources and len(video_sources) > 0:
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self.cams[camera_name]["video_source_token"] = video_sources[0].token
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.debug(f"Unable to get video sources for {camera_name}: {e}")
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self.cams[camera_name]["video_source_token"] = None
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# setup continuous moving request
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move_request = ptz.create_type("ContinuousMove")
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move_request.ProfileToken = profile.token
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self.cams[camera_name]["move_request"] = move_request
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# get PTZ configuration options for feature detection and relative movement
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ptz_config = None
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fov_space_id = None
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try:
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request = ptz.create_type("GetConfigurationOptions")
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request.ConfigurationToken = profile.PTZConfiguration.token
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ptz_config = await ptz.GetConfigurationOptions(request)
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logger.debug(
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f"Onvif PTZ configuration options for {camera_name}: {ptz_config}"
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)
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.debug(
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f"Unable to get PTZ configuration options for {camera_name}: {e}"
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)
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# detect FOV translation space for relative movement
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if ptz_config is not None:
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try:
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fov_space_id = next(
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(
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i
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for i, space in enumerate(
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ptz_config.Spaces.RelativePanTiltTranslationSpace
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)
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if "TranslationSpaceFov" in space["URI"]
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),
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None,
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)
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except (AttributeError, TypeError):
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fov_space_id = None
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autotracking_config = self.config.cameras[camera_name].onvif.autotracking
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autotracking_enabled = (
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autotracking_config.enabled_in_config and autotracking_config.enabled
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)
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# these are local and cost nothing to build, and autotracking can be enabled
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# after a camera is initialized, so always create them rather than baking the
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# current config value into init state
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status_request = ptz.create_type("GetStatus")
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status_request.ProfileToken = profile.token
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self.cams[camera_name]["status_request"] = status_request
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service_capabilities_request = ptz.create_type("GetServiceCapabilities")
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self.cams[camera_name]["service_capabilities_request"] = (
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service_capabilities_request
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)
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# setup relative move request when FOV relative movement is supported
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if (
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fov_space_id is not None
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and configs.DefaultRelativePanTiltTranslationSpace is not None
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):
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# one-off GetStatus to seed Translation field
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status = None
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try:
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one_off_status_request = ptz.create_type("GetStatus")
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one_off_status_request.ProfileToken = profile.token
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status = await ptz.GetStatus(one_off_status_request)
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logger.debug(f"Onvif status for {camera_name}: {status}")
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except Exception as e:
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logger.warning(f"Unable to get status from camera {camera_name}: {e}")
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rel_move_request = ptz.create_type("RelativeMove")
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rel_move_request.ProfileToken = profile.token
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logger.debug(f"{camera_name}: Relative move request: {rel_move_request}")
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fov_uri = ptz_config["Spaces"]["RelativePanTiltTranslationSpace"][
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fov_space_id
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]["URI"]
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if rel_move_request.Translation is None:
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if status is not None:
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# seed from current position
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rel_move_request.Translation = status.Position
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rel_move_request.Translation.PanTilt.space = fov_uri
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else:
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# fallback: construct Translation explicitly
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rel_move_request.Translation = {
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"PanTilt": {"x": 0, "y": 0, "space": fov_uri}
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}
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# configure zoom on relative move request
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if (
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autotracking_enabled
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and autotracking_config.zooming != ZoomingModeEnum.disabled
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):
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zoom_space_id = next(
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(
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i
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for i, space in enumerate(
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ptz_config.Spaces.RelativeZoomTranslationSpace
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)
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if "TranslationGenericSpace" in space["URI"]
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),
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None,
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)
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try:
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if zoom_space_id is not None:
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rel_move_request.Translation.Zoom.space = ptz_config["Spaces"][
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"RelativeZoomTranslationSpace"
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][zoom_space_id]["URI"]
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except Exception as e:
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autotracking_config.zooming = ZoomingModeEnum.disabled
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logger.warning(
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f"Disabling autotracking zooming for {camera_name}: Relative zoom not supported. Exception: {e}"
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)
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else:
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# remove zoom fields from relative move request
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if (
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rel_move_request["Translation"] is not None
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and "Zoom" in rel_move_request["Translation"]
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):
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del rel_move_request["Translation"]["Zoom"]
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if (
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rel_move_request["Speed"] is not None
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and "Zoom" in rel_move_request["Speed"]
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):
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del rel_move_request["Speed"]["Zoom"]
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logger.debug(
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f"{camera_name}: Relative move request after deleting zoom: {rel_move_request}"
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)
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|
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if rel_move_request.Speed is None:
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rel_move_request.Speed = configs.DefaultPTZSpeed if configs else None
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logger.debug(
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f"{camera_name}: Relative move request after setup: {rel_move_request}"
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)
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self.cams[camera_name]["relative_move_request"] = rel_move_request
|
|
|
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# setup absolute move request
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abs_move_request = ptz.create_type("AbsoluteMove")
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abs_move_request.ProfileToken = profile.token
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self.cams[camera_name]["absolute_move_request"] = abs_move_request
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|
|
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# setup existing presets
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try:
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presets: list[dict] = await ptz.GetPresets({"ProfileToken": profile.token})
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except (Fault, ONVIFError, TransportError, Exception) as e:
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logger.warning(f"Unable to get presets from camera: {camera_name}: {e}")
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presets = []
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for preset in presets:
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preset_name = getattr(preset, "Name") or f"preset {preset['token']}"
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# Some cameras (e.g. Reolink) return UTF-8 bytes that zeep decodes
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# as latin-1, producing mojibake. Detect that and repair it by
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|
# round-tripping through latin-1 -> utf-8.
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|
try:
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preset_name = preset_name.encode("latin-1").decode("utf-8")
|
|
except (UnicodeEncodeError, UnicodeDecodeError):
|
|
pass
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self.cams[camera_name]["presets"][preset_name.lower()] = preset["token"]
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|
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# get list of supported features
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|
supported_features = []
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|
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if configs.DefaultContinuousPanTiltVelocitySpace:
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supported_features.append("pt")
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|
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if configs.DefaultContinuousZoomVelocitySpace:
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supported_features.append("zoom")
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|
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if configs.DefaultRelativePanTiltTranslationSpace:
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supported_features.append("pt-r")
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|
|
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if configs.DefaultRelativeZoomTranslationSpace:
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supported_features.append("zoom-r")
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if ptz_config is not None:
|
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try:
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|
self.cams[camera_name]["relative_zoom_range"] = (
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|
ptz_config.Spaces.RelativeZoomTranslationSpace[0]
|
|
)
|
|
except Exception as e:
|
|
if autotracking_config.zooming == ZoomingModeEnum.relative:
|
|
autotracking_config.zooming = ZoomingModeEnum.disabled
|
|
logger.warning(
|
|
f"Disabling autotracking zooming for {camera_name}: Relative zoom not supported. Exception: {e}"
|
|
)
|
|
|
|
if configs.DefaultAbsoluteZoomPositionSpace:
|
|
supported_features.append("zoom-a")
|
|
if ptz_config is not None:
|
|
try:
|
|
self.cams[camera_name]["absolute_zoom_range"] = (
|
|
ptz_config.Spaces.AbsoluteZoomPositionSpace[0]
|
|
)
|
|
self.cams[camera_name]["zoom_limits"] = configs.ZoomLimits
|
|
except Exception as e:
|
|
if autotracking_config.zooming != ZoomingModeEnum.disabled:
|
|
autotracking_config.zooming = ZoomingModeEnum.disabled
|
|
logger.warning(
|
|
f"Disabling autotracking zooming for {camera_name}: Absolute zoom not supported. Exception: {e}"
|
|
)
|
|
|
|
# disable autotracking zoom if required ranges are unavailable
|
|
if autotracking_config.zooming != ZoomingModeEnum.disabled:
|
|
if autotracking_config.zooming == ZoomingModeEnum.relative:
|
|
if "relative_zoom_range" not in self.cams[camera_name]:
|
|
autotracking_config.zooming = ZoomingModeEnum.disabled
|
|
logger.warning(
|
|
f"Disabling autotracking zooming for {camera_name}: Relative zoom range unavailable"
|
|
)
|
|
if autotracking_config.zooming == ZoomingModeEnum.absolute:
|
|
if "absolute_zoom_range" not in self.cams[camera_name]:
|
|
autotracking_config.zooming = ZoomingModeEnum.disabled
|
|
logger.warning(
|
|
f"Disabling autotracking zooming for {camera_name}: Absolute zoom range unavailable"
|
|
)
|
|
|
|
if (
|
|
self.cams[camera_name]["video_source_token"] is not None
|
|
and imaging is not None
|
|
):
|
|
try:
|
|
imaging_capabilities = await imaging.GetImagingSettings(
|
|
{"VideoSourceToken": self.cams[camera_name]["video_source_token"]}
|
|
)
|
|
if (
|
|
hasattr(imaging_capabilities, "Focus")
|
|
and imaging_capabilities.Focus
|
|
):
|
|
supported_features.append("focus")
|
|
except (Fault, ONVIFError, TransportError, Exception) as e:
|
|
logger.debug(f"Focus not supported for {camera_name}: {e}")
|
|
|
|
# detect FOV relative movement support
|
|
if (
|
|
fov_space_id is not None
|
|
and configs.DefaultRelativePanTiltTranslationSpace is not None
|
|
):
|
|
supported_features.append("pt-r-fov")
|
|
self.cams[camera_name]["relative_fov_range"] = (
|
|
ptz_config.Spaces.RelativePanTiltTranslationSpace[fov_space_id]
|
|
)
|
|
|
|
self.cams[camera_name]["features"] = supported_features
|
|
self.cams[camera_name]["init"] = True
|
|
return True
|
|
|
|
async def _stop(self, camera_name: str) -> None:
|
|
move_request = self.cams[camera_name]["move_request"]
|
|
await self.cams[camera_name]["ptz"].Stop(
|
|
{
|
|
"ProfileToken": move_request.ProfileToken,
|
|
"PanTilt": True,
|
|
"Zoom": True,
|
|
}
|
|
)
|
|
if (
|
|
"focus" in self.cams[camera_name]["features"]
|
|
and self.cams[camera_name]["video_source_token"]
|
|
and self.cams[camera_name]["imaging"] is not None
|
|
):
|
|
try:
|
|
stop_request = self.cams[camera_name]["imaging"].create_type("Stop")
|
|
stop_request.VideoSourceToken = self.cams[camera_name][
|
|
"video_source_token"
|
|
]
|
|
await self.cams[camera_name]["imaging"].Stop(stop_request)
|
|
except (Fault, ONVIFError, TransportError, Exception) as e:
|
|
logger.warning(f"Failed to stop focus for {camera_name}: {e}")
|
|
self.cams[camera_name]["active"] = False
|
|
|
|
async def _move(self, camera_name: str, command: OnvifCommandEnum) -> None:
|
|
if self.cams[camera_name]["active"]:
|
|
logger.warning(
|
|
f"{camera_name} is already performing an action, stopping..."
|
|
)
|
|
await self._stop(camera_name)
|
|
|
|
if "pt" not in self.cams[camera_name]["features"]:
|
|
logger.error(f"{camera_name} does not support ONVIF pan/tilt movement.")
|
|
return
|
|
|
|
self.cams[camera_name]["active"] = True
|
|
move_request = self.cams[camera_name]["move_request"]
|
|
|
|
if command == OnvifCommandEnum.move_left:
|
|
move_request.Velocity = {"PanTilt": {"x": -0.5, "y": 0}}
|
|
elif command == OnvifCommandEnum.move_right:
|
|
move_request.Velocity = {"PanTilt": {"x": 0.5, "y": 0}}
|
|
elif command == OnvifCommandEnum.move_up:
|
|
move_request.Velocity = {
|
|
"PanTilt": {
|
|
"x": 0,
|
|
"y": 0.5,
|
|
}
|
|
}
|
|
elif command == OnvifCommandEnum.move_down:
|
|
move_request.Velocity = {
|
|
"PanTilt": {
|
|
"x": 0,
|
|
"y": -0.5,
|
|
}
|
|
}
|
|
|
|
try:
|
|
await self.cams[camera_name]["ptz"].ContinuousMove(move_request)
|
|
except (Fault, ONVIFError, TransportError, Exception) as e:
|
|
logger.warning(f"Onvif sending move request to {camera_name} failed: {e}")
|
|
|
|
async def _move_relative(self, camera_name: str, pan, tilt, zoom, speed) -> None:
|
|
if "pt-r-fov" not in self.cams[camera_name]["features"]:
|
|
logger.error(f"{camera_name} does not support ONVIF RelativeMove (FOV).")
|
|
return
|
|
|
|
logger.debug(
|
|
f"{camera_name} called RelativeMove: pan: {pan} tilt: {tilt} zoom: {zoom}"
|
|
)
|
|
|
|
if self.cams[camera_name]["active"]:
|
|
logger.warning(
|
|
f"{camera_name} is already performing an action, not moving..."
|
|
)
|
|
return
|
|
|
|
self.cams[camera_name]["active"] = True
|
|
|
|
# only track start_time for autotracking
|
|
if self.ptz_metrics[camera_name].autotracker_enabled.value:
|
|
self.ptz_metrics[camera_name].motor_stopped.clear()
|
|
logger.debug(
|
|
f"{camera_name}: PTZ start time: {self.ptz_metrics[camera_name].frame_time.value}"
|
|
)
|
|
self.ptz_metrics[camera_name].start_time.value = self.ptz_metrics[
|
|
camera_name
|
|
].frame_time.value
|
|
self.ptz_metrics[camera_name].stop_time.value = 0
|
|
|
|
move_request = self.cams[camera_name]["relative_move_request"]
|
|
|
|
# function takes in -1 to 1 for pan and tilt, interpolate to the values of the camera.
|
|
# The onvif spec says this can report as +INF and -INF, so this may need to be modified
|
|
pan = numpy.interp(
|
|
pan,
|
|
[-1, 1],
|
|
[
|
|
self.cams[camera_name]["relative_fov_range"]["XRange"]["Min"],
|
|
self.cams[camera_name]["relative_fov_range"]["XRange"]["Max"],
|
|
],
|
|
)
|
|
tilt = numpy.interp(
|
|
tilt,
|
|
[-1, 1],
|
|
[
|
|
self.cams[camera_name]["relative_fov_range"]["YRange"]["Min"],
|
|
self.cams[camera_name]["relative_fov_range"]["YRange"]["Max"],
|
|
],
|
|
)
|
|
|
|
move_request.Speed = {
|
|
"PanTilt": {
|
|
"x": speed,
|
|
"y": speed,
|
|
},
|
|
}
|
|
|
|
move_request.Translation.PanTilt.x = pan
|
|
move_request.Translation.PanTilt.y = tilt
|
|
|
|
# include zoom if requested and camera supports relative zoom
|
|
if zoom != 0 and "zoom-r" in self.cams[camera_name]["features"]:
|
|
move_request.Speed = {
|
|
"PanTilt": {
|
|
"x": speed,
|
|
"y": speed,
|
|
},
|
|
"Zoom": {"x": speed},
|
|
}
|
|
move_request["Translation"]["Zoom"] = {"x": zoom}
|
|
|
|
await self.cams[camera_name]["ptz"].RelativeMove(move_request)
|
|
|
|
# reset after the move request
|
|
move_request.Translation.PanTilt.x = 0
|
|
move_request.Translation.PanTilt.y = 0
|
|
|
|
if zoom != 0 and "zoom-r" in self.cams[camera_name]["features"]:
|
|
del move_request["Translation"]["Zoom"]
|
|
|
|
self.cams[camera_name]["active"] = False
|
|
|
|
async def _move_to_preset(self, camera_name: str, preset: str) -> None:
|
|
preset = preset.lower()
|
|
|
|
if preset not in self.cams[camera_name]["presets"]:
|
|
logger.error(f"{preset} is not a valid preset for {camera_name}")
|
|
return
|
|
|
|
self.cams[camera_name]["active"] = True
|
|
self.ptz_metrics[camera_name].start_time.value = 0
|
|
self.ptz_metrics[camera_name].stop_time.value = 0
|
|
move_request = self.cams[camera_name]["move_request"]
|
|
preset_token = self.cams[camera_name]["presets"][preset]
|
|
|
|
await self.cams[camera_name]["ptz"].GotoPreset(
|
|
{
|
|
"ProfileToken": move_request.ProfileToken,
|
|
"PresetToken": preset_token,
|
|
}
|
|
)
|
|
|
|
self.cams[camera_name]["active"] = False
|
|
|
|
async def _zoom(self, camera_name: str, command: OnvifCommandEnum) -> None:
|
|
if self.cams[camera_name]["active"]:
|
|
logger.warning(
|
|
f"{camera_name} is already performing an action, stopping..."
|
|
)
|
|
await self._stop(camera_name)
|
|
|
|
if "zoom" not in self.cams[camera_name]["features"]:
|
|
logger.error(f"{camera_name} does not support ONVIF zooming.")
|
|
return
|
|
|
|
self.cams[camera_name]["active"] = True
|
|
move_request = self.cams[camera_name]["move_request"]
|
|
|
|
if command == OnvifCommandEnum.zoom_in:
|
|
move_request.Velocity = {"Zoom": {"x": 0.5}}
|
|
elif command == OnvifCommandEnum.zoom_out:
|
|
move_request.Velocity = {"Zoom": {"x": -0.5}}
|
|
|
|
await self.cams[camera_name]["ptz"].ContinuousMove(move_request)
|
|
|
|
async def _zoom_absolute(self, camera_name: str, zoom, speed) -> None:
|
|
if "zoom-a" not in self.cams[camera_name]["features"]:
|
|
logger.error(f"{camera_name} does not support ONVIF AbsoluteMove zooming.")
|
|
return
|
|
|
|
logger.debug(f"{camera_name} called AbsoluteMove: zoom: {zoom}")
|
|
|
|
if self.cams[camera_name]["active"]:
|
|
logger.warning(
|
|
f"{camera_name} is already performing an action, not moving..."
|
|
)
|
|
return
|
|
|
|
self.cams[camera_name]["active"] = True
|
|
self.ptz_metrics[camera_name].motor_stopped.clear()
|
|
logger.debug(
|
|
f"{camera_name}: PTZ start time: {self.ptz_metrics[camera_name].frame_time.value}"
|
|
)
|
|
self.ptz_metrics[camera_name].start_time.value = self.ptz_metrics[
|
|
camera_name
|
|
].frame_time.value
|
|
self.ptz_metrics[camera_name].stop_time.value = 0
|
|
move_request = self.cams[camera_name]["absolute_move_request"]
|
|
|
|
# function takes in 0 to 1 for zoom, interpolate to the values of the camera.
|
|
zoom = numpy.interp(
|
|
zoom,
|
|
[0, 1],
|
|
[
|
|
self.cams[camera_name]["absolute_zoom_range"]["XRange"]["Min"],
|
|
self.cams[camera_name]["absolute_zoom_range"]["XRange"]["Max"],
|
|
],
|
|
)
|
|
|
|
move_request.Speed = {"Zoom": speed}
|
|
move_request.Position = {"Zoom": zoom}
|
|
|
|
logger.debug(f"{camera_name}: Absolute zoom: {zoom}")
|
|
|
|
await self.cams[camera_name]["ptz"].AbsoluteMove(move_request)
|
|
|
|
self.cams[camera_name]["active"] = False
|
|
|
|
async def _focus(self, camera_name: str, command: OnvifCommandEnum) -> None:
|
|
if self.cams[camera_name]["active"]:
|
|
logger.warning(
|
|
f"{camera_name} is already performing an action, not moving..."
|
|
)
|
|
await self._stop(camera_name)
|
|
|
|
if (
|
|
"focus" not in self.cams[camera_name]["features"]
|
|
or not self.cams[camera_name]["video_source_token"]
|
|
or self.cams[camera_name]["imaging"] is None
|
|
):
|
|
logger.error(f"{camera_name} does not support ONVIF continuous focus.")
|
|
return
|
|
|
|
self.cams[camera_name]["active"] = True
|
|
move_request = self.cams[camera_name]["imaging"].create_type("Move")
|
|
move_request.VideoSourceToken = self.cams[camera_name]["video_source_token"]
|
|
move_request.Focus = {
|
|
"Continuous": {
|
|
"Speed": 0.5 if command == OnvifCommandEnum.focus_in else -0.5
|
|
}
|
|
}
|
|
|
|
try:
|
|
await self.cams[camera_name]["imaging"].Move(move_request)
|
|
except (Fault, ONVIFError, TransportError, Exception) as e:
|
|
logger.warning(f"Onvif sending focus request to {camera_name} failed: {e}")
|
|
self.cams[camera_name]["active"] = False
|
|
|
|
async def handle_command_async(
|
|
self, camera_name: str, command: OnvifCommandEnum, param: str = ""
|
|
) -> None:
|
|
"""Handle ONVIF commands asynchronously"""
|
|
if camera_name not in self.cams.keys():
|
|
logger.error(f"ONVIF is not configured for {camera_name}")
|
|
return
|
|
|
|
if not self.cams[camera_name]["init"]:
|
|
if not await self._init_onvif(camera_name):
|
|
return
|
|
|
|
try:
|
|
if command == OnvifCommandEnum.init:
|
|
# already init
|
|
return
|
|
elif command == OnvifCommandEnum.stop:
|
|
await self._stop(camera_name)
|
|
elif command == OnvifCommandEnum.preset:
|
|
await self._move_to_preset(camera_name, param)
|
|
elif command == OnvifCommandEnum.move_relative:
|
|
parts = param.split("_")
|
|
if len(parts) == 3:
|
|
_, pan, tilt = parts
|
|
zoom = 0.0
|
|
elif len(parts) == 4:
|
|
_, pan, tilt, zoom = parts
|
|
else:
|
|
logger.error(f"Invalid move_relative params: {param}")
|
|
return
|
|
await self._move_relative(
|
|
camera_name, float(pan), float(tilt), float(zoom), 1
|
|
)
|
|
elif command in (OnvifCommandEnum.zoom_in, OnvifCommandEnum.zoom_out):
|
|
await self._zoom(camera_name, command)
|
|
elif command in (OnvifCommandEnum.focus_in, OnvifCommandEnum.focus_out):
|
|
await self._focus(camera_name, command)
|
|
else:
|
|
await self._move(camera_name, command)
|
|
except (Fault, ONVIFError, TransportError, Exception) as e:
|
|
logger.error(f"Unable to handle onvif command: {e}")
|
|
|
|
def handle_command(
|
|
self, camera_name: str, command: OnvifCommandEnum, param: str = ""
|
|
) -> None:
|
|
"""
|
|
Handle ONVIF commands by scheduling them in the event loop.
|
|
"""
|
|
future = asyncio.run_coroutine_threadsafe(
|
|
self.handle_command_async(camera_name, command, param), self.loop
|
|
)
|
|
|
|
try:
|
|
# Wait with a timeout to prevent blocking indefinitely
|
|
future.result(timeout=10)
|
|
except TimeoutError:
|
|
logger.error(f"Command {command} timed out for camera {camera_name}")
|
|
except Exception as e:
|
|
logger.error(
|
|
f"Error executing command {command} for camera {camera_name}: {e}"
|
|
)
|
|
|
|
async def get_camera_info(self, camera_name: str) -> dict[str, Any]:
|
|
"""
|
|
Get ptz capabilities and presets, attempting to reconnect if ONVIF is configured
|
|
but not initialized.
|
|
|
|
Returns camera details including features and presets if available.
|
|
"""
|
|
if not self.config.cameras[camera_name].enabled:
|
|
logger.debug(
|
|
f"Camera {camera_name} disabled, won't try to initialize ONVIF"
|
|
)
|
|
return {}
|
|
|
|
if camera_name not in self.cams.keys() and (
|
|
camera_name not in self.config.cameras
|
|
or not self.config.cameras[camera_name].onvif.host
|
|
):
|
|
logger.debug(f"ONVIF is not configured for {camera_name}")
|
|
return {}
|
|
|
|
if camera_name in self.cams.keys() and self.cams[camera_name]["init"]:
|
|
return {
|
|
"name": camera_name,
|
|
"features": self.cams[camera_name]["features"],
|
|
"presets": list(self.cams[camera_name]["presets"].keys()),
|
|
"profiles": self.cams[camera_name].get("profiles", []),
|
|
}
|
|
|
|
if camera_name not in self.cams.keys() and camera_name in self.config.cameras:
|
|
success = await self._init_single_camera(camera_name)
|
|
if not success:
|
|
return {}
|
|
|
|
# Reset retry count after timeout
|
|
attempts = self.failed_cams.get(camera_name, {}).get("retry_attempts", 0)
|
|
last_attempt = self.failed_cams.get(camera_name, {}).get("last_attempt", 0)
|
|
|
|
if last_attempt and (time.time() - last_attempt) > self.reset_timeout:
|
|
logger.debug(f"Resetting retry count for {camera_name} after timeout")
|
|
attempts = 0
|
|
self.failed_cams[camera_name]["retry_attempts"] = 0
|
|
|
|
# Attempt initialization/reconnection
|
|
if attempts < self.max_retries:
|
|
logger.info(
|
|
f"Attempting ONVIF initialization for {camera_name} (retry {attempts + 1}/{self.max_retries})"
|
|
)
|
|
try:
|
|
if await self._init_onvif(camera_name):
|
|
if camera_name in self.failed_cams:
|
|
del self.failed_cams[camera_name]
|
|
return {
|
|
"name": camera_name,
|
|
"features": self.cams[camera_name]["features"],
|
|
"presets": list(self.cams[camera_name]["presets"].keys()),
|
|
}
|
|
else:
|
|
logger.warning(f"ONVIF initialization failed for {camera_name}")
|
|
except Exception as e:
|
|
logger.error(
|
|
f"Error during ONVIF initialization for {camera_name}: {e}"
|
|
)
|
|
if camera_name not in self.failed_cams:
|
|
self.failed_cams[camera_name] = {"retry_attempts": 0}
|
|
self.failed_cams[camera_name].update(
|
|
{
|
|
"retry_attempts": attempts + 1,
|
|
"last_error": str(e),
|
|
"last_attempt": time.time(),
|
|
}
|
|
)
|
|
|
|
if attempts >= self.max_retries:
|
|
remaining_time = max(
|
|
0, int((self.reset_timeout - (time.time() - last_attempt)) / 60)
|
|
)
|
|
logger.error(
|
|
f"Too many ONVIF initialization attempts for {camera_name}, retry in {remaining_time} minute{'s' if remaining_time != 1 else ''}"
|
|
)
|
|
|
|
logger.debug(f"Could not initialize ONVIF for {camera_name}")
|
|
return {}
|
|
|
|
async def get_service_capabilities(self, camera_name: str) -> None:
|
|
if camera_name not in self.cams.keys():
|
|
logger.error(f"ONVIF is not configured for {camera_name}")
|
|
return {}
|
|
|
|
if not self.cams[camera_name]["init"]:
|
|
await self._init_onvif(camera_name)
|
|
|
|
service_capabilities_request = self.cams[camera_name][
|
|
"service_capabilities_request"
|
|
]
|
|
try:
|
|
service_capabilities = await self.cams[camera_name][
|
|
"ptz"
|
|
].GetServiceCapabilities(service_capabilities_request)
|
|
|
|
logger.debug(
|
|
f"Onvif service capabilities for {camera_name}: {service_capabilities}"
|
|
)
|
|
|
|
# MoveStatus is required for autotracking - should return "true" if supported
|
|
return find_by_key(vars(service_capabilities), "MoveStatus")
|
|
except Exception as e:
|
|
logger.warning(
|
|
f"Camera {camera_name} does not support the ONVIF GetServiceCapabilities method. Autotracking will not function correctly and must be disabled in your config. Exception: {e}"
|
|
)
|
|
return False
|
|
|
|
async def get_camera_status(self, camera_name: str) -> None:
|
|
async with self.status_locks[camera_name]:
|
|
if camera_name not in self.cams.keys():
|
|
logger.error(f"ONVIF is not configured for {camera_name}")
|
|
return
|
|
|
|
if not self.cams[camera_name]["init"]:
|
|
if not await self._init_onvif(camera_name):
|
|
return
|
|
|
|
status_request = self.cams[camera_name]["status_request"]
|
|
try:
|
|
status = await self.cams[camera_name]["ptz"].GetStatus(status_request)
|
|
except Exception:
|
|
pass # We're unsupported, that'll be reported in the next check.
|
|
|
|
try:
|
|
pan_tilt_status = getattr(status.MoveStatus, "PanTilt", None)
|
|
zoom_status = getattr(status.MoveStatus, "Zoom", None)
|
|
|
|
# if it's not an attribute, see if MoveStatus even exists in the status result
|
|
if pan_tilt_status is None:
|
|
pan_tilt_status = getattr(status, "MoveStatus", None)
|
|
|
|
# we're unsupported
|
|
if pan_tilt_status is None or pan_tilt_status not in [
|
|
"IDLE",
|
|
"MOVING",
|
|
]:
|
|
raise Exception
|
|
except Exception:
|
|
logger.warning(
|
|
f"Camera {camera_name} does not support the ONVIF GetStatus method. Autotracking will not function correctly and must be disabled in your config."
|
|
)
|
|
return
|
|
|
|
logger.debug(
|
|
f"{camera_name}: Pan/tilt status: {pan_tilt_status}, Zoom status: {zoom_status}"
|
|
)
|
|
|
|
if pan_tilt_status == "IDLE" and (
|
|
zoom_status is None or zoom_status == "IDLE"
|
|
):
|
|
self.cams[camera_name]["active"] = False
|
|
if not self.ptz_metrics[camera_name].motor_stopped.is_set():
|
|
self.ptz_metrics[camera_name].motor_stopped.set()
|
|
|
|
logger.debug(
|
|
f"{camera_name}: PTZ stop time: {self.ptz_metrics[camera_name].frame_time.value}"
|
|
)
|
|
|
|
self.ptz_metrics[camera_name].stop_time.value = self.ptz_metrics[
|
|
camera_name
|
|
].frame_time.value
|
|
else:
|
|
self.cams[camera_name]["active"] = True
|
|
if self.ptz_metrics[camera_name].motor_stopped.is_set():
|
|
self.ptz_metrics[camera_name].motor_stopped.clear()
|
|
|
|
logger.debug(
|
|
f"{camera_name}: PTZ start time: {self.ptz_metrics[camera_name].frame_time.value}"
|
|
)
|
|
|
|
self.ptz_metrics[camera_name].start_time.value = self.ptz_metrics[
|
|
camera_name
|
|
].frame_time.value
|
|
self.ptz_metrics[camera_name].stop_time.value = 0
|
|
|
|
if (
|
|
self.config.cameras[camera_name].onvif.autotracking.zooming
|
|
!= ZoomingModeEnum.disabled
|
|
):
|
|
# store absolute zoom level as 0 to 1 interpolated from the values of the camera
|
|
self.ptz_metrics[camera_name].zoom_level.value = numpy.interp(
|
|
round(status.Position.Zoom.x, 2),
|
|
[
|
|
self.cams[camera_name]["absolute_zoom_range"]["XRange"]["Min"],
|
|
self.cams[camera_name]["absolute_zoom_range"]["XRange"]["Max"],
|
|
],
|
|
[0, 1],
|
|
)
|
|
logger.debug(
|
|
f"{camera_name}: Camera zoom level: {self.ptz_metrics[camera_name].zoom_level.value}"
|
|
)
|
|
|
|
# some hikvision cams won't update MoveStatus, so warn if it hasn't changed
|
|
if (
|
|
not self.ptz_metrics[camera_name].motor_stopped.is_set()
|
|
and not self.ptz_metrics[camera_name].reset.is_set()
|
|
and self.ptz_metrics[camera_name].start_time.value != 0
|
|
and self.ptz_metrics[camera_name].frame_time.value
|
|
> (self.ptz_metrics[camera_name].start_time.value + 10)
|
|
and self.ptz_metrics[camera_name].stop_time.value == 0
|
|
):
|
|
logger.debug(
|
|
f"Start time: {self.ptz_metrics[camera_name].start_time.value}, Stop time: {self.ptz_metrics[camera_name].stop_time.value}, Frame time: {self.ptz_metrics[camera_name].frame_time.value}"
|
|
)
|
|
# set the stop time so we don't come back into this again and spam the logs
|
|
self.ptz_metrics[camera_name].stop_time.value = self.ptz_metrics[
|
|
camera_name
|
|
].frame_time.value
|
|
logger.warning(
|
|
f"Camera {camera_name} is still in ONVIF 'MOVING' status."
|
|
)
|
|
|
|
def close(self) -> None:
|
|
"""Gracefully shut down the ONVIF controller."""
|
|
if not hasattr(self, "loop") or self.loop.is_closed():
|
|
logger.debug("ONVIF controller already closed")
|
|
return
|
|
|
|
logger.info("Exiting ONVIF controller...")
|
|
self.config_subscriber.stop()
|
|
|
|
def stop_and_cleanup():
|
|
try:
|
|
self.loop.stop()
|
|
except Exception as e:
|
|
logger.error(f"Error during loop cleanup: {e}")
|
|
|
|
# Schedule stop and cleanup in the loop thread
|
|
self.loop.call_soon_threadsafe(stop_and_cleanup)
|
|
|
|
self.loop_thread.join()
|