286 lines
8.5 KiB
Python
286 lines
8.5 KiB
Python
# Copyright 2022 DeepMind Technologies Limited
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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# ==============================================================================
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"""Wrap the pybind11 bound Simulate class to provide type conversions"""
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import mujoco
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from mujoco import _simulate
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import glfw
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from glfw import _glfw
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_simulate.setglfwdlhandle(_glfw._handle)
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import numpy as np
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import ctypes
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import math
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import threading
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import time
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class Simulate(_simulate.Simulate):
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def __init__(self):
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super().__init__()
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# logarithmically spaced realtime slow-down coefficients (percent)
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self.percentrealtime = [
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100, 80, 66, 50, 40, 33, 25, 20, 16, 13,
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10, 8, 6.6, 5.0, 4, 3.3, 2.5, 2, 1.6, 1.3,
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1, .8, .66, .5, .4, .33, .25, .2, .16, .13,
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.1
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]
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def _get_refreshRate(self):
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return self.getrefreshRate()
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refreshRate = property(
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fget=_get_refreshRate)
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def _get_drop_file_name(self):
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return self.getdropfilename()
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dropfilename = property(
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fget=_get_drop_file_name,
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doc="char* from Simulate"
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)
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def _get_file_name(self):
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return self.getfilename()
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filename = property(
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fget=_get_file_name,
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doc="char* from Simulate"
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)
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def _set_loadError(self, loadError):
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self.setloadError(loadError)
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loadError = property(
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fset=_set_loadError,
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doc="set string to Simulate"
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)
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def _get_exit_request(self):
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return self.getexitrequest()
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def _set_exit_request(self, exitrequest):
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self.setexitrequest(exitrequest)
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exitrequest = property(
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fget=_get_exit_request,
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fset=_set_exit_request,
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doc="atomic bool from Simulate")
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def _get_ui_load_request(self):
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return self.getuiloadrequest()
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def _set_ui_load_request(self, uiloadrequest):
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self.setuiloadrequest(uiloadrequest)
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uiloadrequest = property(
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fget=_get_ui_load_request,
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fset=_set_ui_load_request,
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doc="atomic int from Simulate")
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def _get_drop_load_request(self):
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return self.getdroploadrequest()
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def _set_drop_load_request(self, droploadrequest):
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self.setdroploadrequest(droploadrequest)
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droploadrequest = property(
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fget=_get_drop_load_request,
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fset=_set_drop_load_request,
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doc="atomic bool from Simulate")
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def load_and_step_model(m, d, simulate, filename, preload_callback=None, load_callback=None):
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if preload_callback is not None:
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preload_callback(m, d) # Call with old model/data so user can do cleanup
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try:
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mnew = mujoco.MjModel.from_xml_path(filename)
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loadError = None
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except Exception as e:
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print('Error loading using from_xml_path')
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print(e)
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mnew = None
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loadError = str(e)
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if mnew is not None:
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dnew = mujoco.MjData(mnew)
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simulate.load(filename, mnew, dnew)
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mujoco.mj_forward(mnew, dnew)
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else:
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mnew = None
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dnew = None
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if load_callback is not None:
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load_callback(mnew, dnew)
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return mnew, dnew, loadError
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def run_physics_loop(simulate, preload_callback=None, load_callback=None, file=None):
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# request loadmodel if file given (otherwise drag-and-drop)
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if file is not None:
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m, d, loadError = load_and_step_model(None, None, simulate, file, preload_callback, load_callback)
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ctrlnoise = np.zeros((m.nu,))
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if loadError is not None:
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simulate.loadError = loadError
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else:
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m = None
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d = None
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ctrlnoise = None
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# constants
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syncmisalign = 0.1 # maximum time mis-alignment before re-sync
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simrefreshfraction = 0.7 # fraction of refresh available for simulation
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# cpu-sim synchronization point
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synccpu = 0.0
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syncsim = 0.0
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# run until asked to exit
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while not simulate.exitrequest:
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if simulate.droploadrequest:
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simulate.droploadrequest = 0
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m_, d_, loadError = load_and_step_model(m, d, simulate, simulate.dropfilename,
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preload_callback, load_callback)
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if m_ is not None:
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m = m_
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d = d_
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ctrlnoise = np.zeros((m.nu,))
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else:
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simulate.loadError = loadError
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if simulate.uiloadrequest:
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simulate.uiloadrequest_fetch_sub(1)
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m_, d_, loadError = load_and_step_model(m, d, simulate, simulate.filename,
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preload_callback, load_callback)
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if m_ is not None:
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m = m_
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d = d_
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ctrlnoise = np.zeros((m.nu,))
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else:
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simulate.loadError = loadError
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# sleep for 1 ms or yield, to let main thread run
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# yield results in busy wait - which has better timing but kills battery life
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if simulate.run != 0 and simulate.busywait != 0:
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time.sleep(0)
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else:
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time.sleep(0.001)
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# Start exclusive access
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simulate.lock()
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# run only if model is present
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if m is not None:
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# running
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if simulate.run != 0:
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# record cpu time at start of iteration
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startcpu = glfw.get_time()
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elapsedcpu = startcpu - synccpu
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elapsedsim = d.time - syncsim
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# inject noise
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if simulate.ctrlnoisestd != 0.0:
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# convert rate and scale to discrete time (Ornstein–Uhlenbeck)
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rate = math.exp(-m.opt.timestep / simulate.ctrlnoiserate)
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scale = simulate.ctrlnoisestd * math.sqrt(1-rate*rate)
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for i in range(m.nu):
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# update noise
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ctrlnoise[i] = rate * ctrlnoise[i] + scale * mujoco.mju_standardNormal(None)
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# apply noise
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d.ctrl[i] = ctrlnoise[i]
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# requested slow-down factor
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slowdown = 100 / simulate.percentrealtime[simulate.realtimeindex]
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# misalignment condition: distance from target sim time is bigger than syncmisalign
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misaligned = abs(elapsedcpu/slowdown - elapsedsim) > syncmisalign
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# out-of-sync (for any reason): reset sync times, step
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if elapsedsim < 0 or elapsedcpu < 0 or synccpu == 0 or misaligned or simulate.speedchanged:
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# re-sync
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synccpu = startcpu
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syncsim = d.time
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simulate.speedchanged = False
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# clear old perturbations, apply new
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d.xfrc_applied[:, :] = 0
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simulate.applyposepertubations(0) # move mocap bodies only
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simulate.applyforceperturbations()
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# run single step, let next iteration deal with timing
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mujoco.mj_step(m, d)
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# in-sync: step until ahead of cpu
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else:
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measured = False
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prevsim = d.time
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refreshtime = simrefreshfraction/simulate.refreshrate;
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# step while sim lags behind cpu and within refreshtime
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while (((d.time - syncsim)*slowdown < (glfw.get_time() - synccpu))
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and ((glfw.get_time() - startcpu) < refreshtime)):
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# measure slowdown before first step
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if not measured and elapsedsim:
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simulate.measuredslowdown = elapsedcpu / elapsedsim
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measured = True
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# clear old perturbations, apply new
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d.xfrc_applied[:, :] = 0
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simulate.applyposepertubations(0) # move mocap bodies only
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simulate.applyforceperturbations()
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# call mj_step
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mujoco.mj_step(m, d)
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# break if reset
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if d.time < prevsim:
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break
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# paused
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else:
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# apply pose perturbation
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simulate.applyposepertubations(1) # move mocap and dynamic bodies
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# run mj_forward, to update rendering and joint sliders
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mujoco.mj_forward(m, d)
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# end exclusive access
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simulate.unlock()
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def run_simulate_and_physics(file=None, preload_callback=None, load_callback=None, init=True, terminate=True):
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# simulate object encapsulates the UI
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simulate = Simulate()
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# init GLFW
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if init:
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if not glfw.init():
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raise mujoco.FatalError('could not initialize GLFW')
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# if m is not None:
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physics_thread = threading.Thread(target=lambda: run_physics_loop(simulate, preload_callback=preload_callback, load_callback=load_callback, file=file))
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physics_thread.start()
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# start simulation thread (this creates the UI)
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simulate.renderloop()
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physics_thread.join()
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if terminate:
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glfw.terminate()
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