2020-09-29 20:40:10 +00:00
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#!/usr/bin/python3
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# -*- coding: utf-8 -*-
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# -*- mode: Python -*-
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'''
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trckr
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Work with clmtrackr-dev and www/trckr/trckr.html
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v0.1.0
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LICENCE : CC
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by Sam Neurohack
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To test the examples locally, you need to run a local server.
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One easy way to do this is to install http-server, a small node.js utility:
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npm install -g http-server.
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Then run http-server in the root of clmtrackr and go to
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- read a video :
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http://localhost:8080/examples/trckr.html
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- webcam
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clmtrackr :
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https://github.com/auduno/clmtrackr/tree/dev/examples
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'''
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import sys
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import os
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print()
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ljpath = r'%s' % os.getcwd().replace('\\','/')
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# import from shell
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sys.path.append(ljpath +'/../libs3/')
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#import from LJ
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import log
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print ("")
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log.infog("Trckr Plugin v0.1")
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sys.path.append('../libs3')
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sys.path.append(ljpath +'/../../libs3')
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from OSC3 import OSCServer, OSCClient, OSCMessage
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2023-06-03 12:43:53 +00:00
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import lj
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2020-09-29 20:40:10 +00:00
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import redis
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import math
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import time
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import argparse
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OSCinPort = 8017
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print ("")
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print ("Arguments parsing if needed...")
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argsparser = argparse.ArgumentParser(description="trckr example for LJ")
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argsparser.add_argument("-r","--redisIP",help="IP of the Redis server used by LJ (127.0.0.1 by default) ",type=str)
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argsparser.add_argument("-s","--scene",help="LJ scene number (0 by default)",type=int)
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#argsparser.add_argument("-l","--laser",help="Laser number to be displayed (0 by default)",type=int)
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argsparser.add_argument("-v","--verbose",help="Verbosity level (0 by default)",type=int)
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argsparser.add_argument("-m","--myIP",help="Local IP (127.0.0.1 by default) ",type=str)
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args = argsparser.parse_args()
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if args.scene:
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ljscene = args.scene
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else:
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ljscene = 0
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'''
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if args.laser:
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plnumber = args.laser
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else:
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plnumber = 0
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'''
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# Redis Computer IP
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if args.redisIP != None:
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redisIP = args.redisIP
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else:
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redisIP = '127.0.0.1'
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print("redisIP",redisIP)
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# myIP
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if args.myIP != None:
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myIP = args.myIP
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else:
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myIP = '127.0.0.1'
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print("myIP",myIP)
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if args.verbose:
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debug = args.verbose
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else:
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debug = 0
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# Useful variables init.
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white = lj.rgb2int(255,255,255)
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red = lj.rgb2int(255,0,0)
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blue = lj.rgb2int(0,0,255)
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green = lj.rgb2int(0,255,0)
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# 3D to 2D projection parameters
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fov = 256
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viewer_distance = 2.2
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width = 800
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height = 600
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centerX = width / 2
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centerY = height / 2
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TrckrPts = [[0,0]] * 70
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#
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# LJ inits
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#
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layer = 0
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# Setup LJ library mandatory properties for this layerugin
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lj.Config(redisIP, ljscene, "trckr")
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# Define properties for each drawn "element" : name, intensity, active, xy, color, red, green, blue, layer , closed
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FaceForm = lj.FixedObject('Face', True, 255, [], red, 255, 0, 0, layer , False)
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# 'Destination' for given layer : name, number, active, layer , scene, laser
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Dest0 = lj.DestObject('0', 0, True, 0 , 0, 0) # Dest0 will send layer 0 points to scene 0, laser 0
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#
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# OSC
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#
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oscserver = OSCServer( (myIP, OSCinPort) )
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oscserver.timeout = 0
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# this method of reporting timeouts only works by convention
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# that before calling handle_request() field .timed_out is
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# set to False
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def handle_timeout(self):
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self.timed_out = True
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# funny python's way to add a method to an instance of a class
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import types
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oscserver.handle_timeout = types.MethodType(handle_timeout, oscserver)
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# OSC callbacks
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# /trckr/ljscene
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def OSCljscene(path, tags, args, source):
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print("Got /trckr/ljscene with value", args[0])
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lj.WebStatus("trckr to virtual "+ str(args[0]))
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ljscene = args[0]
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lj.Ljscene(ljscene)
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# /trckr/layer
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def OSClayer(path, tags, args, source):
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print()
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print()
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print("Got /trckr/layer with value", args[0])
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lj.WebStatus("trckr to layer "+ str(args[0]))
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FaceForm.layer = int(args[0])
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Dest0.layer = int(args[0])
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Dest0.laser = int(args[0])
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# /trckr/frame
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def OSCtrckr(path, tags, args, source):
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global TrckrPts
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#print("trckr got frame", args[0])
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if debug != 0:
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print("trckr plugin got frame", args[0])
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print(len(args),"args", args)
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counter =0
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TrckrPts = []
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for dot in range(1,len(args)-1,2):
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TrckrPts.append([float(args[dot]), float(args[dot+1])])
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print(TrckrPts)
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# /trckr/frame layernumber framenumber points
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def OSCTrckrframe(path, tags, args, source):
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global TrckrPts
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if debug != 0:
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print("trckr plugin got frame", args[1], "for layer", args[0], "with path", path)
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print(len(args),"args", args)
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TrckrPts[args[0]] = []
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for dot in range(2,len(args)-1,2):
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TrckrPts[args[0]].append([float(args[dot]), float(args[dot+1])])
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#/trckr/color/0 red ?
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def OSColor():
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global FaceForm
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if debug != 0:
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print("trckr color got ", args[1], "for layer", args[0], "with path", path)
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print(len(args),"args", args)
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FaceForm.color = args[1]
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# default handler
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def OSChandler(path, tags, args, source):
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oscaddress = ''.join(path.split("/"))
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print()
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print("trckr default OSC Handler :", path, "from Client :" + str(source[0]))
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#
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# Face Tracking
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#
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# get absolute face position points
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def getPART(pose_points):
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dots = []
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for dot in pose_points:
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dots.append((TrckrPts[dot][0], TrckrPts[dot][1],0))
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return dots
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# Face keypoints
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def face():
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pose_points = [0,1,2,3,4,5,6,7,8,9,10,11,12,13,14]
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return getPART(pose_points)
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def browL():
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pose_points = [15,16,17,18]
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return getPART(pose_points)
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def browR():
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pose_points = [22,21,20,19]
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return getPART(pose_points)
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def eyeR():
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pose_points = [25,64,24,63,23,66,26,65,25]
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return getPART(pose_points)
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def eyeL():
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pose_points = [28,67,29,68,30,69,31,28]
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return getPART(pose_points)
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def pupR():
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pose_points = [27]
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return getPART(pose_points)
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def pupL():
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pose_points = [32]
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return getPART(pose_points)
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def nose1():
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pose_points = [62,41,33]
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return getPART(pose_points)
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def nose2():
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pose_points = [40,39,38,43,37,42,36,35,34]
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return getPART(pose_points)
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def mouth():
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pose_points = [50,49,48,47,46,45,44,55,54,53,52,51,50]
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return getPART(pose_points)
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def mouthfull():
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pose_points = [50,49,48,47,46,45,44,55,54,53,52,51,50,59,60,61,44,56,57,58,50]
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return getPART(pose_points)
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def Proj(x,y,z,angleX,angleY,angleZ):
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rad = angleX * math.pi / 180
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cosa = math.cos(rad)
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sina = math.sin(rad)
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y2 = y
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y = y2 * cosa - z * sina
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z = y2 * sina + z * cosa
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rad = angleY * math.pi / 180
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cosa = math.cos(rad)
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sina = math.sin(rad)
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z2 = z
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z = z2 * cosa - x * sina
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x = z2 * sina + x * cosa
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rad = angleZ * math.pi / 180
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cosa = math.cos(rad)
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sina = math.sin(rad)
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x2 = x
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x = x2 * cosa - y * sina
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y = x2 * sina + y * cosa
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""" Transforms this 3D point to 2D using a perspective projection. """
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factor = fov / (viewer_distance + z)
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x = x * factor + centerX
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y = - y * factor + centerY
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return (x,y)
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#
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# Main
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#
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def Run():
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Facepts = []
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counter =0
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lj.WebStatus("trckr")
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lj.SendLJ("/trckr/start 1")
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# OSC Server callbacks
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print("Starting OSC server at",myIP," port",OSCinPort,"...")
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oscserver.addMsgHandler( "/trckr/ljscene", OSCljscene)
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oscserver.addMsgHandler( "/trckr/layer", OSClayer)
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oscserver.addMsgHandler( "/trckr/frame", OSCtrckr)
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oscserver.addMsgHandler( "/trckr/color", OSColor)
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# Add OSC generic layerugins commands : 'default", /ping, /quit, /pluginame/obj, /pluginame/var, /pluginame/adddest, /pluginame/deldest
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lj.addOSCdefaults(oscserver)
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oscserver.addMsgHandler( "default", OSChandler )
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try:
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while lj.oscrun:
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lj.OSCframe()
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#print("browL", browL(), "browR", browR(), "nose1", nose1(), "mouth", mouth())
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lj.rPolyLineOneColor(browL(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(eyeL(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(browR(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(eyeR(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(pupL(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(pupR(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(nose1(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(nose2(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.rPolyLineOneColor(mouthfull(), c = FaceForm.color, layer = FaceForm.layer, closed = FaceForm.closed, xpos = -300, ypos = -300, resize = 3.6, rotx = 0, roty = 0, rotz = 0)
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lj.DrawDests()
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time.sleep(0.005)
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counter += 1
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if counter > 360:
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counter = 0
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except KeyboardInterrupt:
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pass
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# Gently stop on CTRL C
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finally:
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lj.ClosePlugin()
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Run()
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'''
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//
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// a template for receiving face tracking osc messages from
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// Kyle McDonald's trckr https://github.com/kylemcdonald/ofxFaceTracker
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//
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// 2012 Dan Wilcox danomatika.com
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// for the IACD Spring 2012 class at the CMU School of Art
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//
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// adapted from from Greg Borenstein's 2011 example
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// http://www.gregborenstein.com/
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// https://gist.github.com/1603230
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//
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//Xavier Apostol
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//Generative Faces: Plotter Project Concept
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import oscP5.*;
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OscP5 oscP5;
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// num faces found
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int found;
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// pose
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float poseScale;
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PVector posePosition = new PVector();
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PVector poseOrientation = new PVector();
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// gesture
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float mouthHeight;
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float mouthWidth;
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float eyeLeft;
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float eyeRight;
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float eyebrowLeft;
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float eyebrowRight;
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float jaw;
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float nostrils;
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float sz = 1;
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float spacing = 100;
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float genSz = spacing/4;
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float fcOff = genSz/2;
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//Initialization of Colors
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float R = random(255);
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float G = random(255);
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float B = random(255);
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//Initialization of Head
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float rotInt = 15;
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float hdX = cos(sz) + random(genSz, 3*genSz);
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float hdY = sin(sz) + random(genSz, 3*genSz);
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float rotAngle = random(-rotInt,rotInt);
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//Initialization of Eyes
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float lEyeX1 = sin(sz*0) + random(genSz);
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float lEyeY1 = cos(sz*0) + random(genSz);
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float rEyeX1 = sin(sz*0) + random(genSz);
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float rEyeY1 = cos(sz*0) + random(genSz);
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float lEyeX2 = sin(sz*1) + random(genSz);
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float lEyeY2 = cos(sz*1) + random(genSz);
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float rEyeX2 = sin(sz*1) + random(genSz);
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float rEyeY2 = cos(sz*1) + random(genSz);
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float ranREye = random(7, 9);
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float ranLEye = random(7, 9);
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//Initialization of Mouth
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float mthX = cos(sz) + random(genSz);
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float mthY = sin(sz) + random(genSz);
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float ranM = random(-0.1, 1.5);
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//Initialization of Spine
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float hdOffset = hdY/1.5;
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float spineSz = random(genSz/2);
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float spXOff1 = random(-8, 8);
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float spYOff1 = hdOffset + random(genSz/3);
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float spXOff2 = random(-8, 8)+spXOff1;
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float spYOff2 = random(genSz/3)+spYOff1;
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float spXOff3 = random(-8, 8)+spXOff2;
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float spYOff3 = random(genSz/3)+spYOff2;
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float spXOff4 = random(-8, 8)+spXOff3;
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float spYOff4 = random(genSz/3)+spYOff3;
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float spXOff5 = random(-8, 8)+spXOff4;
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float spYOff5 = random(genSz/3)+spYOff4;
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void setup() {
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size(800, 600, OPENGL);
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frameRate(30);
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oscP5 = new OscP5(this, 8338);
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oscP5.plug(this, "found", "/found");
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oscP5.plug(this, "poseScale", "/pose/scale");
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oscP5.plug(this, "posePosition", "/pose/position");
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oscP5.plug(this, "poseOrientation", "/pose/orientation");
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oscP5.plug(this, "mouthWidthReceived", "/gesture/mouth/width");
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oscP5.plug(this, "mouthHeightReceived", "/gesture/mouth/height");
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oscP5.plug(this, "eyeLeftReceived", "/gesture/eye/left");
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oscP5.plug(this, "eyeRightReceived", "/gesture/eye/right");
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oscP5.plug(this, "eyebrowLeftReceived", "/gesture/eyebrow/left");
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oscP5.plug(this, "eyebrowRightReceived", "/gesture/eyebrow/right");
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oscP5.plug(this, "jawReceived", "/gesture/jaw");
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oscP5.plug(this, "nostrilsReceived", "/gesture/nostrils");
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}
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void keyPressed() {
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if (key == CODED) {
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if (keyCode == UP) {
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//Create an entirely new character.
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//For Eyes
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lEyeX1 = sin(sz*0) + random(genSz);
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lEyeY1 = cos(sz*0) + random(genSz);
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rEyeX1 = sin(sz*0) + random(genSz);
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rEyeY1 = cos(sz*0) + random(genSz);
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lEyeX2 = sin(sz*1) + random(genSz);
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lEyeY2 = cos(sz*1) + random(genSz);
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rEyeX2 = sin(sz*1) + random(genSz);
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rEyeY2 = cos(sz*1) + random(genSz);
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ranREye = random(7, 9);
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ranLEye = random(7, 9);
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//For Mouth
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mthX = cos(sz) + random(genSz);
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mthY = sin(sz) + random(genSz);
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ranM = random(-0.1, 1.5);
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//For Spine
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spineSz = random(genSz/2);
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spXOff1 = random(-8, 8);
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spYOff1 = hdOffset + random(genSz/3);
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spXOff2 = random(-8, 8) + spXOff1;
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spYOff2 = random(genSz/3) + spYOff1;
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spXOff3 = random(-8, 8) + spXOff2;
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spYOff3 = random(genSz/3) + spYOff2;
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spXOff4 = random(-8, 8) + spXOff3;
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spYOff4 = random(genSz/3) + spYOff3;
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spXOff5 = random(-8, 8) + spXOff4;
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spYOff5 = random(genSz/3) + spYOff4;
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//For Head
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hdX = cos(sz) + random(genSz, 3*genSz);
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hdY = sin(sz) + random(genSz, 3*genSz);
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rotAngle = random(-rotInt,rotInt);
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//For Colors
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R = random(255);
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G = random(255);
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B = random(255);
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draw();
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}
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}
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}
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void draw() {
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background(0);
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strokeWeight(1);
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noFill();
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if(found != 0) {
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pushMatrix();
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translate(posePosition.x, posePosition.y);
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//Scales head and allows for rotations
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scale(poseScale*2);
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rotateY(0 - poseOrientation.y);
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rotateX(0 - poseOrientation.x);
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rotateZ(poseOrientation.z);
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rotate(radians(rotAngle));
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ellipse(0,0, hdX,hdY);
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popMatrix();
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//FACE
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translate(posePosition.x, posePosition.y);
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scale(poseScale);
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noFill();
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//Eyes
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float eyeFac = 1;
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float eyeBL = eyebrowLeft * 2;
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float eyeBR = eyebrowRight * 2;
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ellipse(-20,eyeLeft * -ranLEye, lEyeX1*eyeFac + eyeBL,lEyeY1*eyeFac + eyeBL);
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ellipse(20,eyeRight * -ranREye, rEyeX1*eyeFac + eyeBR,rEyeY1*eyeFac + eyeBR);
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ellipse(-20,eyeLeft * -ranLEye, lEyeX2*eyeFac + eyeBL,lEyeY2*eyeFac + eyeBL);
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ellipse(20,eyeRight * -ranREye, rEyeX2*eyeFac + eyeBR,rEyeY2*eyeFac + eyeBR);
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//Mouth
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ellipse(0, 20*ranM, mouthWidth* mthX/3, mouthHeight * mthY);
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//BODY/BUBBLES
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stroke(R,G,B);
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ellipse(spXOff1,spYOff1, spineSz,spineSz);
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ellipse(spXOff2,spYOff2, spineSz,spineSz);
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ellipse(spXOff3,spYOff3, spineSz,spineSz);
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ellipse(spXOff4,spYOff4, spineSz,spineSz);
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ellipse(spXOff5,spYOff5, spineSz,spineSz);
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}
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}
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// OSC CALLBACK FUNCTIONS
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public void found(int i) {
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println("found: " + i);
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found = i;
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}
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public void poseScale(float s) {
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println("scale: " + s);
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poseScale = s;
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}
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public void posePosition(float x, float y) {
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println("pose position\tX: " + x + " Y: " + y );
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posePosition.set(x, y, 0);
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}
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public void poseOrientation(float x, float y, float z) {
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println("pose orientation\tX: " + x + " Y: " + y + " Z: " + z);
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poseOrientation.set(x, y, z);
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}
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public void mouthWidthReceived(float w) {
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println("mouth Width: " + w);
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mouthWidth = w;
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}
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public void mouthHeightReceived(float h) {
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println("mouth height: " + h);
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mouthHeight = h;
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}
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public void eyeLeftReceived(float f) {
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println("eye left: " + f);
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eyeLeft = f;
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}
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public void eyeRightReceived(float f) {
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println("eye right: " + f);
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eyeRight = f;
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}
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public void eyebrowLeftReceived(float f) {
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println("eyebrow left: " + f);
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eyebrowLeft = f;
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}
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public void eyebrowRightReceived(float f) {
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println("eyebrow right: " + f);
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eyebrowRight = f;
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}
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public void jawReceived(float f) {
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println("jaw: " + f);
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jaw = f;
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}
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public void nostrilsReceived(float f) {
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println("nostrils: " + f);
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nostrils = f;
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}
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// all other OSC messages end up here
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void oscEvent(OscMessage m) {
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if(m.isPlugged() == false) {
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println("UNPLUGGED: " + m);
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}
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}
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'''
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