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203 lines
7.4 KiB
203 lines
7.4 KiB
#!/usr/bin/env python3 |
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''' |
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connect to a vicon and send mavlink vision data on UDP |
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Released under GNU GPL v3 or later |
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''' |
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from pyvicon import pyvicon |
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from pymavlink.quaternion import Quaternion |
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# force mavlink2 for yaw in GPS_INPUT |
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import os |
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os.environ['MAVLINK20'] = '1' |
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from pymavlink import mavutil |
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from pymavlink import mavextra |
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import math |
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import time |
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import sys |
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from argparse import ArgumentParser |
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parser = ArgumentParser(description="vicon to mavlink gateway") |
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parser.add_argument("--vicon-host", type=str, |
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help="vicon host name or IP", default="vicon") |
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parser.add_argument("--mavlink-dest", type=str, help="mavlink destination", default="udpout:127.0.0.1:14550") |
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parser.add_argument("--origin", type=str, help="origin in lat,lon,alt,yaw", default="-35.363261,149.165230,584,270") |
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parser.add_argument("--debug", type=int, default=0, help="debug level") |
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parser.add_argument("--target-sysid", type=int, default=1, help="target mavlink sysid") |
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parser.add_argument("--source-sysid", type=int, default=255, help="mavlink source sysid") |
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parser.add_argument("--source-component", type=int, default=mavutil.mavlink.MAV_COMP_ID_VISUAL_INERTIAL_ODOMETRY, help="mavlink source component") |
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parser.add_argument("--rate", type=float, default=None, help="message rate for GLOBAL_VISION_POSITION_ESTIMATE") |
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parser.add_argument("--gps-rate", type=int, default=5, help="message rate for GPS_INPUT") |
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parser.add_argument("--gps-nsats", type=int, default=16, help="GPS satellite count") |
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parser.add_argument("--gps-only", action='store_true', default=False, help="only send GPS data") |
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parser.add_argument("--send-zero", action='store_true', default=False, help="send zero data") |
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args = parser.parse_args() |
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# create a mavlink serial instance |
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mav = mavutil.mavlink_connection(args.mavlink_dest, |
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source_system=args.source_sysid, |
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source_component=args.source_component) |
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# create vicon connection |
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vicon = pyvicon.PyVicon() |
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origin_parts = args.origin.split(',') |
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if len(origin_parts) != 4: |
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print("Origin should be lat,lon,alt,yaw") |
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sys.exit(1) |
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origin = (float(origin_parts[0]), float(origin_parts[1]), float(origin_parts[2])) |
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last_origin_send = 0 |
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def connect_to_vicon(ip): |
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'''connect to a vicon with given ip or hostname''' |
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global vicon |
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print("Opening connection to %s" % ip) |
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vicon.connect(ip) |
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print("Configuring vicon") |
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vicon.set_stream_mode(pyvicon.StreamMode.ClientPull) |
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vicon.enable_marker_data() |
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vicon.enable_segment_data() |
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vicon.enable_unlabeled_marker_data() |
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vicon.enable_device_data() |
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# wait for first subject to appear |
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print("waiting for vehicle...") |
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while True: |
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vicon.get_frame() |
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name = vicon.get_subject_name(0) |
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if name is not None: |
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break |
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print("Connected to subject %s" % name) |
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def get_gps_time(tnow): |
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'''return gps_week and gps_week_ms for current time''' |
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leapseconds = 18 |
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SEC_PER_WEEK = 7 * 86400 |
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MSEC_PER_WEEK = SEC_PER_WEEK * 1000 |
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epoch = 86400*(10*365 + (1980-1969)/4 + 1 + 6 - 2) - leapseconds |
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epoch_seconds = int(tnow - epoch) |
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week = int(epoch_seconds) // SEC_PER_WEEK |
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t_ms = int(tnow * 1000) % 1000 |
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week_ms = (epoch_seconds % SEC_PER_WEEK) * 1000 + ((t_ms//200) * 200) |
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return week, week_ms |
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def main_loop(): |
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'''loop getting vicon data''' |
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global vicon |
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name = vicon.get_subject_name(0) |
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segname = vicon.get_subject_root_segment_name(name) |
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last_msg_time = time.time() |
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last_gps_pos = None |
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now = time.time() |
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last_origin_send = now |
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now_ms = int(now * 1000) |
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last_gps_send_ms = now_ms |
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last_gps_send = now |
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gps_period_ms = 1000 // args.gps_rate |
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while True: |
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if args.send_zero: |
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time.sleep(0.05) |
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else: |
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vicon.get_frame() |
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now = time.time() |
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now_ms = int(now * 1000) |
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if args.rate is not None: |
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dt = now - last_msg_time |
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if dt < 1.0 / args.rate: |
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continue |
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last_msg_time = now |
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# get position as ENU mm |
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if args.send_zero: |
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pos_enu = [0.0, 0.0, 0.0] |
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else: |
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pos_enu = vicon.get_segment_global_translation(name, segname) |
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if pos_enu is None: |
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continue |
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# convert to NED meters |
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pos_ned = [pos_enu[0]*0.001, pos_enu[1]*0.001, -pos_enu[2]*0.001] |
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# get orientation in euler, converting to ArduPilot conventions |
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if args.send_zero: |
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quat = [0.0, 0.0, 0.0, 1.0] |
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else: |
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quat = vicon.get_segment_global_quaternion(name, segname) |
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q = Quaternion([quat[3], quat[0], quat[1], quat[2]]) |
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euler = q.euler |
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roll, pitch, yaw = euler[2], euler[1], euler[0] |
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yaw -= math.pi*0.5 |
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yaw_cd = int(mavextra.wrap_360(math.degrees(yaw)) * 100) |
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if yaw_cd == 0: |
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# the yaw extension to GPS_INPUT uses 0 as no yaw support |
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yaw_cd = 36000 |
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if args.debug > 0: |
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print("Pose: [%.3f, %.3f, %.3f] [%.2f %.2f %.2f]" % ( |
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pos_ned[0], pos_ned[1], pos_ned[2], |
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math.degrees(roll), math.degrees(pitch), math.degrees(yaw))) |
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time_us = int(now * 1.0e6) |
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if now - last_origin_send > 1 and not args.gps_only: |
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# send a heartbeat msg |
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mav.mav.heartbeat_send(mavutil.mavlink.MAV_TYPE_GCS, mavutil.mavlink.MAV_AUTOPILOT_GENERIC, 0, 0, 0) |
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# send origin at 1Hz |
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mav.mav.set_gps_global_origin_send(args.target_sysid, |
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int(origin[0]*1.0e7), int(origin[1]*1.0e7), int(origin[2]*1.0e3), |
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time_us) |
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last_origin_send = now |
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if args.gps_rate > 0 and now_ms - last_gps_send_ms > gps_period_ms: |
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'''send GPS data at the specified rate, trying to align on the given period''' |
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if last_gps_pos is None: |
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last_gps_pos = pos_ned |
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gps_lat, gps_lon = mavextra.gps_offset(origin[0], origin[1], pos_ned[1], pos_ned[0]) |
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gps_alt = origin[2] - pos_ned[2] |
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gps_dt = now - last_gps_send |
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gps_vel = [ (pos_ned[0]-last_gps_pos[0])/gps_dt, |
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(pos_ned[1]-last_gps_pos[1])/gps_dt, |
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(pos_ned[2]-last_gps_pos[2])/gps_dt ] |
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last_gps_pos = pos_ned |
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gps_week, gps_week_ms = get_gps_time(now) |
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if args.gps_nsats >= 6: |
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fix_type = 3 |
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else: |
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fix_type = 1 |
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mav.mav.gps_input_send(time_us, 0, 0, gps_week_ms, gps_week, fix_type, |
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int(gps_lat*1.0e7), int(gps_lon*1.0e7), gps_alt, |
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1.0, 1.0, |
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gps_vel[0], gps_vel[1], gps_vel[2], |
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0.2, 1.0, 1.0, |
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args.gps_nsats, |
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yaw_cd) |
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last_gps_send_ms = (now_ms//gps_period_ms) * gps_period_ms |
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last_gps_send = now |
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# send VISION_POSITION_ESTIMATE |
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if not args.gps_only: |
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# we force mavlink1 to avoid the covariances which seem to make the packets too large |
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# for the mavesp8266 wifi bridge |
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mav.mav.global_vision_position_estimate_send(time_us, |
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pos_ned[0], pos_ned[1], pos_ned[2], |
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roll, pitch, yaw, force_mavlink1=True) |
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connect_to_vicon("vicon") |
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main_loop() |
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