mirror of https://github.com/commaai/openpilot.git
472 lines
19 KiB
Python
Executable File
472 lines
19 KiB
Python
Executable File
#!/usr/bin/env python3
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import os
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import json
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import queue
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import threading
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import time
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from collections import OrderedDict, namedtuple
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from pathlib import Path
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import psutil
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import cereal.messaging as messaging
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from cereal import log
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from cereal.services import SERVICE_LIST
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from openpilot.common.dict_helpers import strip_deprecated_keys
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from openpilot.common.filter_simple import FirstOrderFilter
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from openpilot.common.params import Params
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from openpilot.common.realtime import DT_HW
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from openpilot.selfdrive.selfdrived.alertmanager import set_offroad_alert
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from openpilot.system.hardware import HARDWARE, TICI, AGNOS
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from openpilot.system.loggerd.config import get_available_percent
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from openpilot.system.statsd import statlog
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from openpilot.common.swaglog import cloudlog
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from openpilot.system.hardware.power_monitoring import PowerMonitoring
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from openpilot.system.hardware.fan_controller import TiciFanController
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from openpilot.system.version import terms_version, training_version
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ThermalStatus = log.DeviceState.ThermalStatus
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NetworkType = log.DeviceState.NetworkType
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NetworkStrength = log.DeviceState.NetworkStrength
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CURRENT_TAU = 15. # 15s time constant
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TEMP_TAU = 5. # 5s time constant
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DISCONNECT_TIMEOUT = 5. # wait 5 seconds before going offroad after disconnect so you get an alert
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PANDA_STATES_TIMEOUT = round(1000 / SERVICE_LIST['pandaStates'].frequency * 1.5) # 1.5x the expected pandaState frequency
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ThermalBand = namedtuple("ThermalBand", ['min_temp', 'max_temp'])
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HardwareState = namedtuple("HardwareState", ['network_type', 'network_info', 'network_strength', 'network_stats',
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'network_metered', 'nvme_temps', 'modem_temps'])
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# List of thermal bands. We will stay within this region as long as we are within the bounds.
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# When exiting the bounds, we'll jump to the lower or higher band. Bands are ordered in the dict.
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THERMAL_BANDS = OrderedDict({
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ThermalStatus.green: ThermalBand(None, 80.0),
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ThermalStatus.yellow: ThermalBand(75.0, 96.0),
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ThermalStatus.red: ThermalBand(88.0, 107.),
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ThermalStatus.danger: ThermalBand(94.0, None),
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})
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# Override to highest thermal band when offroad and above this temp
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OFFROAD_DANGER_TEMP = 75
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prev_offroad_states: dict[str, tuple[bool, str | None]] = {}
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tz_by_type: dict[str, int] | None = None
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def populate_tz_by_type():
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global tz_by_type
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tz_by_type = {}
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for n in os.listdir("/sys/devices/virtual/thermal"):
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if not n.startswith("thermal_zone"):
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continue
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with open(os.path.join("/sys/devices/virtual/thermal", n, "type")) as f:
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tz_by_type[f.read().strip()] = int(n.removeprefix("thermal_zone"))
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def read_tz(x):
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if x is None:
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return 0
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if isinstance(x, str):
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if tz_by_type is None:
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populate_tz_by_type()
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x = tz_by_type[x]
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try:
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with open(f"/sys/devices/virtual/thermal/thermal_zone{x}/temp") as f:
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return int(f.read())
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except FileNotFoundError:
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return 0
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def read_thermal(thermal_config):
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dat = messaging.new_message('deviceState', valid=True)
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dat.deviceState.cpuTempC = [read_tz(z) / thermal_config.cpu[1] for z in thermal_config.cpu[0]]
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dat.deviceState.gpuTempC = [read_tz(z) / thermal_config.gpu[1] for z in thermal_config.gpu[0]]
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dat.deviceState.memoryTempC = read_tz(thermal_config.mem[0]) / thermal_config.mem[1]
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dat.deviceState.pmicTempC = [read_tz(z) / thermal_config.pmic[1] for z in thermal_config.pmic[0]]
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return dat
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def set_offroad_alert_if_changed(offroad_alert: str, show_alert: bool, extra_text: str | None=None):
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if prev_offroad_states.get(offroad_alert, None) == (show_alert, extra_text):
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return
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prev_offroad_states[offroad_alert] = (show_alert, extra_text)
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set_offroad_alert(offroad_alert, show_alert, extra_text)
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def hw_state_thread(end_event, hw_queue):
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"""Handles non critical hardware state, and sends over queue"""
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count = 0
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prev_hw_state = None
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modem_version = None
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modem_configured = False
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modem_restarted = False
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modem_missing_count = 0
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while not end_event.is_set():
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# these are expensive calls. update every 10s
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if (count % int(10. / DT_HW)) == 0:
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try:
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network_type = HARDWARE.get_network_type()
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modem_temps = HARDWARE.get_modem_temperatures()
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if len(modem_temps) == 0 and prev_hw_state is not None:
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modem_temps = prev_hw_state.modem_temps
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# Log modem version once
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if AGNOS and (modem_version is None):
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modem_version = HARDWARE.get_modem_version()
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if modem_version is not None:
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cloudlog.event("modem version", version=modem_version)
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else:
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if not modem_restarted:
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# TODO: we may be able to remove this with a MM update
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# ModemManager's probing on startup can fail
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# rarely, restart the service to probe again.
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modem_missing_count += 1
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if modem_missing_count > 3:
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modem_restarted = True
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cloudlog.event("restarting ModemManager")
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os.system("sudo systemctl restart --no-block ModemManager")
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tx, rx = HARDWARE.get_modem_data_usage()
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hw_state = HardwareState(
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network_type=network_type,
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network_info=HARDWARE.get_network_info(),
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network_strength=HARDWARE.get_network_strength(network_type),
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network_stats={'wwanTx': tx, 'wwanRx': rx},
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network_metered=HARDWARE.get_network_metered(network_type),
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nvme_temps=HARDWARE.get_nvme_temperatures(),
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modem_temps=modem_temps,
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)
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try:
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hw_queue.put_nowait(hw_state)
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except queue.Full:
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pass
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if not modem_configured and HARDWARE.get_modem_version() is not None:
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cloudlog.warning("configuring modem")
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HARDWARE.configure_modem()
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modem_configured = True
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prev_hw_state = hw_state
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except Exception:
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cloudlog.exception("Error getting hardware state")
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count += 1
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time.sleep(DT_HW)
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def hardware_thread(end_event, hw_queue) -> None:
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pm = messaging.PubMaster(['deviceState'])
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sm = messaging.SubMaster(["peripheralState", "gpsLocationExternal", "selfdriveState", "pandaStates"], poll="pandaStates")
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count = 0
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onroad_conditions: dict[str, bool] = {
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"ignition": False,
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}
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startup_conditions: dict[str, bool] = {}
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startup_conditions_prev: dict[str, bool] = {}
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off_ts: float | None = None
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started_ts: float | None = None
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started_seen = False
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startup_blocked_ts: float | None = None
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thermal_status = ThermalStatus.yellow
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last_hw_state = HardwareState(
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network_type=NetworkType.none,
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network_info=None,
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network_metered=False,
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network_strength=NetworkStrength.unknown,
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network_stats={'wwanTx': -1, 'wwanRx': -1},
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nvme_temps=[],
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modem_temps=[],
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)
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all_temp_filter = FirstOrderFilter(0., TEMP_TAU, DT_HW, initialized=False)
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offroad_temp_filter = FirstOrderFilter(0., TEMP_TAU, DT_HW, initialized=False)
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should_start_prev = False
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in_car = False
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engaged_prev = False
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params = Params()
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power_monitor = PowerMonitoring()
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HARDWARE.initialize_hardware()
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thermal_config = HARDWARE.get_thermal_config()
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fan_controller = None
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while not end_event.is_set():
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sm.update(PANDA_STATES_TIMEOUT)
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pandaStates = sm['pandaStates']
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peripheralState = sm['peripheralState']
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peripheral_panda_present = peripheralState.pandaType != log.PandaState.PandaType.unknown
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if sm.updated['pandaStates'] and len(pandaStates) > 0:
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# Set ignition based on any panda connected
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onroad_conditions["ignition"] = any(ps.ignitionLine or ps.ignitionCan for ps in pandaStates if ps.pandaType != log.PandaState.PandaType.unknown)
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pandaState = pandaStates[0]
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in_car = pandaState.harnessStatus != log.PandaState.HarnessStatus.notConnected
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# Setup fan handler on first connect to panda
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if fan_controller is None and peripheral_panda_present:
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if TICI:
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fan_controller = TiciFanController()
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elif (time.monotonic() - sm.recv_time['pandaStates']) > DISCONNECT_TIMEOUT:
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if onroad_conditions["ignition"]:
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onroad_conditions["ignition"] = False
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cloudlog.error("panda timed out onroad")
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# Run at 2Hz, plus either edge of ignition
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ign_edge = (started_ts is not None) != onroad_conditions["ignition"]
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if (sm.frame % round(SERVICE_LIST['pandaStates'].frequency * DT_HW) != 0) and not ign_edge:
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continue
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msg = read_thermal(thermal_config)
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msg.deviceState.deviceType = HARDWARE.get_device_type()
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try:
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last_hw_state = hw_queue.get_nowait()
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except queue.Empty:
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pass
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msg.deviceState.freeSpacePercent = get_available_percent(default=100.0)
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msg.deviceState.memoryUsagePercent = int(round(psutil.virtual_memory().percent))
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msg.deviceState.gpuUsagePercent = int(round(HARDWARE.get_gpu_usage_percent()))
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online_cpu_usage = [int(round(n)) for n in psutil.cpu_percent(percpu=True)]
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offline_cpu_usage = [0., ] * (len(msg.deviceState.cpuTempC) - len(online_cpu_usage))
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msg.deviceState.cpuUsagePercent = online_cpu_usage + offline_cpu_usage
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msg.deviceState.networkType = last_hw_state.network_type
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msg.deviceState.networkMetered = last_hw_state.network_metered
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msg.deviceState.networkStrength = last_hw_state.network_strength
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msg.deviceState.networkStats = last_hw_state.network_stats
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if last_hw_state.network_info is not None:
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msg.deviceState.networkInfo = last_hw_state.network_info
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msg.deviceState.nvmeTempC = last_hw_state.nvme_temps
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msg.deviceState.modemTempC = last_hw_state.modem_temps
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msg.deviceState.screenBrightnessPercent = HARDWARE.get_screen_brightness()
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# this subset is only used for offroad
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temp_sources = [
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msg.deviceState.memoryTempC,
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max(msg.deviceState.cpuTempC),
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max(msg.deviceState.gpuTempC),
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]
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offroad_comp_temp = offroad_temp_filter.update(max(temp_sources))
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# this drives the thermal status while onroad
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temp_sources.append(max(msg.deviceState.pmicTempC))
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all_comp_temp = all_temp_filter.update(max(temp_sources))
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msg.deviceState.maxTempC = all_comp_temp
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if fan_controller is not None:
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msg.deviceState.fanSpeedPercentDesired = fan_controller.update(all_comp_temp, onroad_conditions["ignition"])
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is_offroad_for_5_min = (started_ts is None) and ((not started_seen) or (off_ts is None) or (time.monotonic() - off_ts > 60 * 5))
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if is_offroad_for_5_min and offroad_comp_temp > OFFROAD_DANGER_TEMP:
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# if device is offroad and already hot without the extra onroad load,
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# we want to cool down first before increasing load
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thermal_status = ThermalStatus.danger
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else:
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current_band = THERMAL_BANDS[thermal_status]
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band_idx = list(THERMAL_BANDS.keys()).index(thermal_status)
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if current_band.min_temp is not None and all_comp_temp < current_band.min_temp:
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thermal_status = list(THERMAL_BANDS.keys())[band_idx - 1]
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elif current_band.max_temp is not None and all_comp_temp > current_band.max_temp:
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thermal_status = list(THERMAL_BANDS.keys())[band_idx + 1]
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# **** starting logic ****
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startup_conditions["up_to_date"] = params.get("Offroad_ConnectivityNeeded") is None or params.get_bool("DisableUpdates") or params.get_bool("SnoozeUpdate")
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startup_conditions["not_uninstalling"] = not params.get_bool("DoUninstall")
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startup_conditions["accepted_terms"] = params.get("HasAcceptedTerms") == terms_version
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# with 2% left, we killall, otherwise the phone will take a long time to boot
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startup_conditions["free_space"] = msg.deviceState.freeSpacePercent > 2
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startup_conditions["completed_training"] = params.get("CompletedTrainingVersion") == training_version
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startup_conditions["not_driver_view"] = not params.get_bool("IsDriverViewEnabled")
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startup_conditions["not_taking_snapshot"] = not params.get_bool("IsTakingSnapshot")
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# must be at an engageable thermal band to go onroad
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startup_conditions["device_temp_engageable"] = thermal_status < ThermalStatus.red
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# ensure device is fully booted
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startup_conditions["device_booted"] = startup_conditions.get("device_booted", False) or HARDWARE.booted()
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# if the temperature enters the danger zone, go offroad to cool down
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onroad_conditions["device_temp_good"] = thermal_status < ThermalStatus.danger
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extra_text = f"{offroad_comp_temp:.1f}C"
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show_alert = (not onroad_conditions["device_temp_good"] or not startup_conditions["device_temp_engageable"]) and onroad_conditions["ignition"]
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set_offroad_alert_if_changed("Offroad_TemperatureTooHigh", show_alert, extra_text=extra_text)
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# TODO: this should move to TICI.initialize_hardware, but we currently can't import params there
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if TICI and HARDWARE.get_device_type() == "tici":
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if not os.path.isfile("/persist/comma/living-in-the-moment"):
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if not Path("/data/media").is_mount():
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set_offroad_alert_if_changed("Offroad_StorageMissing", True)
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else:
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# check for bad NVMe
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try:
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with open("/sys/block/nvme0n1/device/model") as f:
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model = f.read().strip()
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if not model.startswith("Samsung SSD 980") and params.get("Offroad_BadNvme") is None:
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set_offroad_alert_if_changed("Offroad_BadNvme", True)
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cloudlog.event("Unsupported NVMe", model=model, error=True)
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except Exception:
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pass
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# Handle offroad/onroad transition
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should_start = all(onroad_conditions.values())
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if started_ts is None:
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should_start = should_start and all(startup_conditions.values())
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if should_start != should_start_prev or (count == 0):
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params.put_bool("IsEngaged", False)
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engaged_prev = False
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HARDWARE.set_power_save(not should_start)
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if sm.updated['selfdriveState']:
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engaged = sm['selfdriveState'].enabled
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if engaged != engaged_prev:
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params.put_bool("IsEngaged", engaged)
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engaged_prev = engaged
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try:
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with open('/dev/kmsg', 'w') as kmsg:
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kmsg.write(f"<3>[hardware] engaged: {engaged}\n")
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except Exception:
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pass
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if should_start:
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off_ts = None
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if started_ts is None:
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started_ts = time.monotonic()
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started_seen = True
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if startup_blocked_ts is not None:
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cloudlog.event("Startup after block", block_duration=(time.monotonic() - startup_blocked_ts),
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startup_conditions=startup_conditions, onroad_conditions=onroad_conditions,
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startup_conditions_prev=startup_conditions_prev, error=True)
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startup_blocked_ts = None
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else:
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if onroad_conditions["ignition"] and (startup_conditions != startup_conditions_prev):
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cloudlog.event("Startup blocked", startup_conditions=startup_conditions, onroad_conditions=onroad_conditions, error=True)
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startup_conditions_prev = startup_conditions.copy()
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startup_blocked_ts = time.monotonic()
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started_ts = None
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if off_ts is None:
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off_ts = time.monotonic()
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# Offroad power monitoring
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voltage = None if peripheralState.pandaType == log.PandaState.PandaType.unknown else peripheralState.voltage
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power_monitor.calculate(voltage, onroad_conditions["ignition"])
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msg.deviceState.offroadPowerUsageUwh = power_monitor.get_power_used()
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msg.deviceState.carBatteryCapacityUwh = max(0, power_monitor.get_car_battery_capacity())
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current_power_draw = HARDWARE.get_current_power_draw()
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statlog.sample("power_draw", current_power_draw)
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msg.deviceState.powerDrawW = current_power_draw
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som_power_draw = HARDWARE.get_som_power_draw()
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statlog.sample("som_power_draw", som_power_draw)
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msg.deviceState.somPowerDrawW = som_power_draw
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# Check if we need to shut down
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if power_monitor.should_shutdown(onroad_conditions["ignition"], in_car, off_ts, started_seen):
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cloudlog.warning(f"shutting device down, offroad since {off_ts}")
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params.put_bool("DoShutdown", True)
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msg.deviceState.started = started_ts is not None
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msg.deviceState.startedMonoTime = int(1e9*(started_ts or 0))
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last_ping = params.get("LastAthenaPingTime")
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if last_ping is not None:
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msg.deviceState.lastAthenaPingTime = int(last_ping)
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msg.deviceState.thermalStatus = thermal_status
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pm.send("deviceState", msg)
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# Log to statsd
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statlog.gauge("free_space_percent", msg.deviceState.freeSpacePercent)
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statlog.gauge("gpu_usage_percent", msg.deviceState.gpuUsagePercent)
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statlog.gauge("memory_usage_percent", msg.deviceState.memoryUsagePercent)
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for i, usage in enumerate(msg.deviceState.cpuUsagePercent):
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statlog.gauge(f"cpu{i}_usage_percent", usage)
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for i, temp in enumerate(msg.deviceState.cpuTempC):
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statlog.gauge(f"cpu{i}_temperature", temp)
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for i, temp in enumerate(msg.deviceState.gpuTempC):
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statlog.gauge(f"gpu{i}_temperature", temp)
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statlog.gauge("memory_temperature", msg.deviceState.memoryTempC)
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for i, temp in enumerate(msg.deviceState.pmicTempC):
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statlog.gauge(f"pmic{i}_temperature", temp)
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for i, temp in enumerate(last_hw_state.nvme_temps):
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statlog.gauge(f"nvme_temperature{i}", temp)
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for i, temp in enumerate(last_hw_state.modem_temps):
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statlog.gauge(f"modem_temperature{i}", temp)
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statlog.gauge("fan_speed_percent_desired", msg.deviceState.fanSpeedPercentDesired)
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statlog.gauge("screen_brightness_percent", msg.deviceState.screenBrightnessPercent)
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# report to server once every 10 minutes
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rising_edge_started = should_start and not should_start_prev
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if rising_edge_started or (count % int(600. / DT_HW)) == 0:
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dat = {
|
|
'count': count,
|
|
'pandaStates': [strip_deprecated_keys(p.to_dict()) for p in pandaStates],
|
|
'peripheralState': strip_deprecated_keys(peripheralState.to_dict()),
|
|
'location': (strip_deprecated_keys(sm["gpsLocationExternal"].to_dict()) if sm.alive["gpsLocationExternal"] else None),
|
|
'deviceState': strip_deprecated_keys(msg.to_dict())
|
|
}
|
|
cloudlog.event("STATUS_PACKET", **dat)
|
|
|
|
# save last one before going onroad
|
|
if rising_edge_started:
|
|
try:
|
|
params.put("LastOffroadStatusPacket", json.dumps(dat))
|
|
except Exception:
|
|
cloudlog.exception("failed to save offroad status")
|
|
|
|
params.put_bool_nonblocking("NetworkMetered", msg.deviceState.networkMetered)
|
|
|
|
count += 1
|
|
should_start_prev = should_start
|
|
|
|
|
|
def main():
|
|
hw_queue = queue.Queue(maxsize=1)
|
|
end_event = threading.Event()
|
|
|
|
threads = [
|
|
threading.Thread(target=hw_state_thread, args=(end_event, hw_queue)),
|
|
threading.Thread(target=hardware_thread, args=(end_event, hw_queue)),
|
|
]
|
|
|
|
for t in threads:
|
|
t.start()
|
|
|
|
try:
|
|
while True:
|
|
time.sleep(1)
|
|
if not all(t.is_alive() for t in threads):
|
|
break
|
|
finally:
|
|
end_event.set()
|
|
|
|
for t in threads:
|
|
t.join()
|
|
|
|
|
|
if __name__ == "__main__":
|
|
main()
|