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hlrc / client / python / tools / dump_relative_gazetargets.py @ master

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#!/usr/bin/env python
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import roslib
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import rospy
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import math
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import tf
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import errno
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from humotion.msg import *
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import array
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"""
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small code snippet to dump humotion relative gaze targets
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combined with the current gaze direction from tf
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"""
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USE_MEKA_TOPICS=True
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#joint targets
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if USE_MEKA_TOPICS:
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    humotion_gaze_topic = "/meka/humotion/gaze/target"
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    tf_topic_base   = "upper"
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    tf_topic_gaze_l = "shell"
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    tf_topic_gaze_r = "shell"
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    from trajectory_msgs.msg import *
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    topic_joint_target = "/meka_roscontrol/head_position_trajectory_controller/command"
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else:
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    humotion_gaze_topic = "/flobi/humotion/gaze/target"
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    tf_topic_base   = "BASE_LINK"
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    tf_topic_gaze_l = "EYES_LEFT_UD_VIRTUAL_LINK"
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    tf_topic_gaze_r = "EYES_RIGHT_UD_VIRTUAL_LINK"
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    from xsc3_server.msg import *
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    topic_joint_target = "/xsc3/custom_joint_state"
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target_neck_pan = 0.0
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target_neck_tilt = 0.0
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target_eyes_tilt = 0.0
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target_eye_l_pan = 0.0
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target_eye_r_pan = 0.0
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def fetch_gaze_from_tf(timestamp):
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    try:
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        #fetch right eye
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        (trans,rot) = listener.lookupTransform(tf_topic_base, tf_topic_gaze_r, timestamp)
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        euler  = tf.transformations.euler_from_quaternion(rot, axes='sxyz')
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        pan_r  = -euler[2]
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        tilt_r = -euler[1]
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        #fetch left eye
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        (trans,rot) = listener.lookupTransform(tf_topic_base, tf_topic_gaze_l, timestamp)
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        euler  = tf.transformations.euler_from_quaternion(rot, axes='sxyz')
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        pan_l  = -euler[2]
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        tilt_l = -euler[1]
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        #combine to overall gaze direction:
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        pan  = (pan_l + pan_r) / 2.0 * 180.0 / math.pi
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        tilt = (tilt_l + tilt_r) / 2.0 * 180.0 / math.pi
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        return (pan, tilt)
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    except (tf.LookupException, tf.ConnectivityException, tf.ExtrapolationException):
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        print("> WARNING: no transformation %s-->%s at %s found" % (tf_topic_base, tf_topic_gaze_l, timestamp))
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        return (0.0, 0.0)
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def incoming_target_position_meka(msg):
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    global target_neck_pan, target_neck_tilt, target_eyes_tilt, target_eye_l_pan, target_eye_r_pan
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    #print("> incoming target")
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    for x in range(len(msg.joint_names)):
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        if (msg.joint_names[x] == "head_j0"):
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            target_neck_tilt = msg.points[0].positions[x]
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        elif (msg.joint_names[x] == "head_j1"):
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            target_neck_pan = msg.points[0].positions[x]
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    target_neck_tilt = 0.0
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    target_eyes_tilt = 0.0 
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    target_eye_l_pan = 0.0
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    target_eye_r_pan = 0.0
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def incoming_target_position_flobi(msg):
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    global target_neck_pan, target_neck_tilt, target_eyes_tilt, target_eye_l_pan, target_eye_r_pan
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    #python 2.x interprets int8_t as string, reconvert this to an array:
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    ids = list(array.array("B", msg.id))
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    id = ids[0]
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    #print("> incoming target for joint %d" % (id))
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    if (id == 0x01):
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        target_neck_pan = - 180.0/math.pi * msg.target_position[0]
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    elif (id == 0x02):
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        target_neck_tilt =  180.0/math.pi *  msg.target_position[0]
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    elif (id == 0x04):
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        target_eyes_tilt =  180.0/math.pi * msg.target_position[0]
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    elif (id == 0x05):
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        target_eye_l_pan =  180.0/math.pi * msg.target_position[0]
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    elif (id == 0x06):
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        target_eye_r_pan =  180.0/math.pi * msg.target_position[0]
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def incoming_humotion_gaze_target(msg):
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    print("> incoming gaze @%f" % (msg.gaze_timestamp.to_sec()))
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    if (msg.gaze_type == gaze.GAZETYPE_RELATIVE):
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        #find out the overall gaze state using TF:
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        (tf_pan, tf_tilt) = fetch_gaze_from_tf(msg.gaze_timestamp)
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        #relative targets
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        rel_pan  = msg.pan
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        rel_tilt = msg.tilt
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        #combined:
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        target_pan  = tf_pan + rel_pan
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        target_tilt = tf_tilt + rel_tilt
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        #current position:
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        now = rospy.get_rostime()
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        (now_pan, now_tilt) = fetch_gaze_from_tf(rospy.Time(0))
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        now_pan
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        print("%f %f %f %f %f %f %f %f %f %f %f %f %f #DUMP" % (
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            now.to_sec(),
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            now_pan,
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            now_tilt,
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            msg.gaze_timestamp.to_sec(),
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            rel_pan,
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            rel_tilt,
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            target_pan,
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            target_tilt,
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            target_neck_pan,
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            target_neck_tilt,
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            target_eyes_tilt,
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            target_eye_l_pan,
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            target_eye_r_pan,
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            ))
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        #print("pan = %f, tilt=%f" % (pan* 180.0 / math.pi,tilt* 180.0 / math.pi))
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    else:
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        print("> NOT dumping absolute targets...")
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if __name__ == '__main__':
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    new_transform = False
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    rospy.init_node('dump_relative_gazetarget')
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    #humotion gaze subscriber
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    print("> setting up subscriber on %s" % (humotion_gaze_topic))
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    rospy.Subscriber(humotion_gaze_topic, gaze, incoming_humotion_gaze_target)
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    #target angles
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    print("> setting up subscriber on %s" % (topic_joint_target))
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    if USE_MEKA_TOPICS:
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        rospy.Subscriber(topic_joint_target,JointTrajectory, incoming_target_position_meka)
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    else:
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        rospy.Subscriber(topic_joint_target, xsc3_server.msg.joint_state, incoming_target_position_flobi)
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    #tf listener
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    listener = tf.TransformListener()
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    print("> waiting for transform...")
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    try:
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        listener.waitForTransform(tf_topic_base, tf_topic_gaze_r, rospy.Time(), rospy.Duration(4.0))
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    except tf.Exception:
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        print("> ERROR: timed out while waiting for transform %s->%s to become available\n" % (tf_topic_base, tf_topic_gaze_r))
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        exit(errno.ETIMEDOUT)
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    print("> first transform arrived, will start now...")
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    rate = rospy.Rate(50.0)
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    while not rospy.is_shutdown():
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        rate.sleep()
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