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scripts/rsl_rl/play.py.bak
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210
scripts/rsl_rl/play.py.bak
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# Copyright (c) 2022-2026, The Isaac Lab Project Developers (https://github.com/isaac-sim/IsaacLab/blob/main/CONTRIBUTORS.md).
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# All rights reserved.
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#
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# SPDX-License-Identifier: BSD-3-Clause
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"""Script to play a checkpoint if an RL agent from RSL-RL."""
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"""Launch Isaac Sim Simulator first."""
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import argparse
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import sys
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from isaaclab.app import AppLauncher
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# local imports
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import cli_args # isort: skip
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# add argparse arguments
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parser = argparse.ArgumentParser(description="Train an RL agent with RSL-RL.")
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parser.add_argument("--video", action="store_true", default=False, help="Record videos during training.")
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parser.add_argument("--video_length", type=int, default=200, help="Length of the recorded video (in steps).")
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parser.add_argument(
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"--disable_fabric", action="store_true", default=False, help="Disable fabric and use USD I/O operations."
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)
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parser.add_argument("--num_envs", type=int, default=None, help="Number of environments to simulate.")
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parser.add_argument("--task", type=str, default=None, help="Name of the task.")
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parser.add_argument(
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"--agent", type=str, default="rsl_rl_cfg_entry_point", help="Name of the RL agent configuration entry point."
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)
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parser.add_argument("--seed", type=int, default=None, help="Seed used for the environment")
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parser.add_argument(
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"--use_pretrained_checkpoint",
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action="store_true",
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help="Use the pre-trained checkpoint from Nucleus.",
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)
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parser.add_argument("--real-time", action="store_true", default=False, help="Run in real-time, if possible.")
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# append RSL-RL cli arguments
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cli_args.add_rsl_rl_args(parser)
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# append AppLauncher cli args
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AppLauncher.add_app_launcher_args(parser)
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# parse the arguments
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args_cli, hydra_args = parser.parse_known_args()
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# always enable cameras to record video
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if args_cli.video:
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args_cli.enable_cameras = True
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# clear out sys.argv for Hydra
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sys.argv = [sys.argv[0]] + hydra_args
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# launch omniverse app
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app_launcher = AppLauncher(args_cli)
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simulation_app = app_launcher.app
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"""Rest everything follows."""
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import gymnasium as gym
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import os
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import time
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import torch
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from rsl_rl.runners import DistillationRunner, OnPolicyRunner
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from isaaclab.envs import (
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DirectMARLEnv,
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DirectMARLEnvCfg,
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DirectRLEnvCfg,
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ManagerBasedRLEnvCfg,
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multi_agent_to_single_agent,
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)
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from isaaclab.utils.assets import retrieve_file_path
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from isaaclab.utils.dict import print_dict
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from isaaclab_rl.rsl_rl import RslRlBaseRunnerCfg, RslRlVecEnvWrapper, export_policy_as_jit, export_policy_as_onnx
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from isaaclab_rl.utils.pretrained_checkpoint import get_published_pretrained_checkpoint
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import isaaclab_tasks # noqa: F401
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from isaaclab_tasks.utils import get_checkpoint_path
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from isaaclab_tasks.utils.hydra import hydra_task_config
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import mindbot.tasks # noqa: F401
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@hydra_task_config(args_cli.task, args_cli.agent)
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def main(env_cfg: ManagerBasedRLEnvCfg | DirectRLEnvCfg | DirectMARLEnvCfg, agent_cfg: RslRlBaseRunnerCfg):
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"""Play with RSL-RL agent."""
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# grab task name for checkpoint path
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task_name = args_cli.task.split(":")[-1]
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train_task_name = task_name.replace("-Play", "")
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# override configurations with non-hydra CLI arguments
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agent_cfg: RslRlBaseRunnerCfg = cli_args.update_rsl_rl_cfg(agent_cfg, args_cli)
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env_cfg.scene.num_envs = args_cli.num_envs if args_cli.num_envs is not None else env_cfg.scene.num_envs
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# set the environment seed
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# note: certain randomizations occur in the environment initialization so we set the seed here
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env_cfg.seed = agent_cfg.seed
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env_cfg.sim.device = args_cli.device if args_cli.device is not None else env_cfg.sim.device
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# specify directory for logging experiments
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log_root_path = os.path.join("logs", "rsl_rl", agent_cfg.experiment_name)
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log_root_path = os.path.abspath(log_root_path)
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print(f"[INFO] Loading experiment from directory: {log_root_path}")
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if args_cli.use_pretrained_checkpoint:
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resume_path = get_published_pretrained_checkpoint("rsl_rl", train_task_name)
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if not resume_path:
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print("[INFO] Unfortunately a pre-trained checkpoint is currently unavailable for this task.")
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return
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elif args_cli.checkpoint:
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resume_path = retrieve_file_path(args_cli.checkpoint)
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else:
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resume_path = get_checkpoint_path(log_root_path, agent_cfg.load_run, agent_cfg.load_checkpoint)
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log_dir = os.path.dirname(resume_path)
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# set the log directory for the environment (works for all environment types)
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env_cfg.log_dir = log_dir
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# create isaac environment
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env = gym.make(args_cli.task, cfg=env_cfg, render_mode="rgb_array" if args_cli.video else None)
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# convert to single-agent instance if required by the RL algorithm
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if isinstance(env.unwrapped, DirectMARLEnv):
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env = multi_agent_to_single_agent(env)
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# wrap for video recording
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if args_cli.video:
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video_kwargs = {
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"video_folder": os.path.join(log_dir, "videos", "play"),
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"step_trigger": lambda step: step == 0,
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"video_length": args_cli.video_length,
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"disable_logger": True,
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}
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print("[INFO] Recording videos during training.")
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print_dict(video_kwargs, nesting=4)
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env = gym.wrappers.RecordVideo(env, **video_kwargs)
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# wrap around environment for rsl-rl
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env = RslRlVecEnvWrapper(env, clip_actions=agent_cfg.clip_actions)
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print(f"[INFO]: Loading model checkpoint from: {resume_path}")
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# load previously trained model
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if agent_cfg.class_name == "OnPolicyRunner":
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runner = OnPolicyRunner(env, agent_cfg.to_dict(), log_dir=None, device=agent_cfg.device)
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elif agent_cfg.class_name == "DistillationRunner":
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runner = DistillationRunner(env, agent_cfg.to_dict(), log_dir=None, device=agent_cfg.device)
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else:
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raise ValueError(f"Unsupported runner class: {agent_cfg.class_name}")
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runner.load(resume_path)
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# obtain the trained policy for inference
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policy = runner.get_inference_policy(device=env.unwrapped.device)
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# extract the neural network module
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# we do this in a try-except to maintain backwards compatibility.
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try:
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# version 2.3 onwards
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policy_nn = runner.alg.policy
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except AttributeError:
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# version 2.2 and below
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policy_nn = runner.alg.actor_critic
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# extract the normalizer
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if hasattr(policy_nn, "actor_obs_normalizer"):
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normalizer = policy_nn.actor_obs_normalizer
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elif hasattr(policy_nn, "student_obs_normalizer"):
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normalizer = policy_nn.student_obs_normalizer
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else:
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normalizer = None
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# export policy to onnx/jit
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export_model_dir = os.path.join(os.path.dirname(resume_path), "exported")
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export_policy_as_jit(policy_nn, normalizer=normalizer, path=export_model_dir, filename="policy.pt")
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export_policy_as_onnx(policy_nn, normalizer=normalizer, path=export_model_dir, filename="policy.onnx")
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dt = env.unwrapped.step_dt
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# reset environment
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obs = env.get_observations()
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timestep = 0
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# simulate environment
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while simulation_app.is_running():
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start_time = time.time()
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# run everything in inference mode
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with torch.inference_mode():
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# agent stepping
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actions = policy(obs)
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# env stepping
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obs, _, dones, _ = env.step(actions)
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# reset recurrent states for episodes that have terminated
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policy_nn.reset(dones)
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if args_cli.video:
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timestep += 1
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# Exit the play loop after recording one video
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if timestep == args_cli.video_length:
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break
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# time delay for real-time evaluation
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sleep_time = dt - (time.time() - start_time)
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if args_cli.real_time and sleep_time > 0:
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time.sleep(sleep_time)
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# close the simulator
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env.close()
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if __name__ == "__main__":
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# run the main function
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main()
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# close sim app
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simulation_app.close()
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