forked from IQ.Lvbs/IQ.Pilot
90 lines
3.2 KiB
Python
90 lines
3.2 KiB
Python
from iqdbc.car.common.conversions import Conversions as CV
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from iqdbc.car.tesla.values import CANBUS, CarControllerParams, TeslaFlags
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from iqdbc.car import DT_CTRL
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class TeslaCAN:
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def __init__(self, CP, packer):
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self.CP = CP
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self.packer = packer
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self.l_jerk = 0.0
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def create_steering_control(self, angle, enabled, control_type):
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# control_type comes from torque_blend: ANGLE_CONTROL (1) normally, LANE_KEEP_ASSIST (2) when cooperative steering is enabled
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control_type = control_type if enabled else 0
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if self.CP.flags & TeslaFlags.LEGACY_DAS_STEERING:
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control_type <<= 1 # legacy firmware uses a 2-bit field, one bit up from the 3-bit signal
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values = {
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"DAS_steeringAngleRequest": -angle,
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"DAS_steeringHapticRequest": 0,
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"DAS_steeringControlType": control_type,
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}
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return self.packer.make_can_msg("DAS_steeringControl", CANBUS.party, values)
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def create_longitudinal_command(self, acc_state, accel, counter, v_ego, active, cruise_override, set_speed_kph=None):
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from iqdbc.car.interfaces import V_CRUISE_MAX
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set_speed = max(v_ego * CV.MS_TO_KPH, 0)
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self.l_jerk = 0.0
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if active:
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self.l_jerk = 0 if cruise_override else (self.l_jerk + CarControllerParams.JERK_UP * DT_CTRL * 4)
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set_speed = 0 if accel < 0 else V_CRUISE_MAX
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if set_speed_kph is not None and accel >= 0:
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set_speed = max(0.0, min(V_CRUISE_MAX, float(set_speed_kph)))
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values = {
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"DAS_setSpeed": set_speed,
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"DAS_accState": acc_state,
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"DAS_aebEvent": 0,
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"DAS_jerkMin": CarControllerParams.JERK_LIMIT_MIN,
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"DAS_jerkMax": min(self.l_jerk, CarControllerParams.JERK_LIMIT_MAX),
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"DAS_accelMin": accel,
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"DAS_accelMax": max(accel, 0),
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"DAS_controlCounter": counter,
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}
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return self.packer.make_can_msg("DAS_control", CANBUS.party, values)
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def create_steering_allowed(self):
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values = {
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"APS_eacAllow": 1,
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}
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return self.packer.make_can_msg("APS_eacMonitor", CANBUS.party, values)
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def create_body_controls(self, stock_dat, left_blinker, right_blinker, cancel=False):
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# Ride alongside the car's native DAS_bodyControls: copy the raw frame, override only the
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# turn-indicator bits, and stamp counter + 1 so our frame supersedes the stock one.
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dat = bytearray(stock_dat)
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if len(dat) < 8:
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dat.extend(b"\x00" * (8 - len(dat)))
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if left_blinker or right_blinker:
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turn_req = 1 if left_blinker else 2 # DAS_TURN_INDICATOR_LEFT / _RIGHT
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dat[1] = (dat[1] & ~0x07) | (turn_req & 0x07)
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dat[2] = (dat[2] & ~0x3C) | (1 << 2) # DAS_ACTIVE_NAV_LANE_CHANGE
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elif cancel:
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dat[1] = (dat[1] & ~0x07) | 0x03 # DAS_TURN_INDICATOR_CANCEL
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dat[2] = (dat[2] & ~0x3C) | (4 << 2) # DAS_CANCEL_LANE_CHANGE
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counter = (((dat[6] >> 4) + 1) & 0x0F)
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dat[6] = (dat[6] & ~0xF0) | (counter << 4)
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addr = 0x3E9
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checksum = (addr & 0xFF) + ((addr >> 8) & 0xFF)
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for i in range(7):
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checksum += dat[i]
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dat[7] = checksum & 0xFF
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return addr, bytes(dat), CANBUS.vehicle
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def tesla_checksum(address: int, sig, d: bytearray) -> int:
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checksum = (address & 0xFF) + ((address >> 8) & 0xFF)
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checksum_byte = sig.start_bit // 8
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for i in range(len(d)):
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if i != checksum_byte:
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checksum += d[i]
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return checksum & 0xFF
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