Files
JackBot/ml/run_eval.py
T

141 lines
5.4 KiB
Python

"""
ml/run_eval.py - Phase-by-Phase Policy Evaluator for JackBot
Evaluates a trained model across all curriculum phases with fixed command vectors.
"""
import argparse
import json
import time
import sys
from pathlib import Path
import numpy as np
from stable_baselines3 import PPO
# Ensure project root is in sys.path
sys.path.append(str(Path(__file__).resolve().parent.parent))
from ml.env import JackBotEnv, CurriculumPhase
def main():
parser = argparse.ArgumentParser(description="JackBot Phase-by-Phase Policy Evaluator")
parser.add_argument("--model", type=str, required=True, help="Path to trained model checkpoint (.zip)")
parser.add_argument("--episodes-per-phase", type=int, default=1, help="Number of test episodes per phase")
parser.add_argument("--max-steps-per-episode", type=int, default=600, help="Max simulation steps per episode")
parser.add_argument("--gui", action="store_true", help="Enable PyBullet 3D visual GUI rendering")
parser.add_argument("--save-metrics", type=str, default=None, help="Optional JSON path to save evaluation summary")
args = parser.parse_args()
print(f"[Eval] Loading policy model from: {args.model}")
model = PPO.load(args.model, device="cpu")
# Instantiate environment with random_command disabled so our test command stays locked
env = JackBotEnv(
use_gui=args.gui,
random_command=False,
max_episode_steps=args.max_steps_per_episode,
)
# Multi-Phase Configurations Suite
phase_configs = [
(CurriculumPhase.STAND_ONLY, "STAND", np.array([0.0, 0.0, 0.0], dtype=np.float32)),
(CurriculumPhase.FORWARD, "FORWARD GAIT", np.array([1.0, 0.0, 0.0], dtype=np.float32)),
(CurriculumPhase.TURN_AND_DIRECTION, "FORWARD + YAW TURN", np.array([0.5, 0.0, 0.4], dtype=np.float32)),
(CurriculumPhase.OMNI_DIRECTION, "STRIDE LATERAL", np.array([0.5, 0.5, 0.0], dtype=np.float32)),
(CurriculumPhase.FULL_COMMAND, "FULL OMNI COMBINATION", np.array([0.3, 0.2, 0.3], dtype=np.float32)),
]
phase_summary = []
try:
print("\n" + "=" * 75)
print(" STARTING MULTI-PHASE EVALUATION SUITE")
print("=" * 75)
for phase_enum, phase_name, test_cmd in phase_configs:
print(f"\n▶ Testing Phase [{phase_enum.value}]: {phase_enum.name} ({phase_name})")
print(f" Target Command Vector [vx, vy, omega]: {test_cmd.tolist()}")
ep_rewards = []
ep_steps = []
ep_distances = []
for ep in range(args.episodes_per_phase):
obs, _ = env.reset()
# Force environment into active curriculum phase and lock command
env.curriculum_phase = phase_enum
env.command = test_cmd.copy()
obs = env._get_obs()
done = False
total_reward = 0.0
steps = 0
while not done:
# Enforce locked command each step
env.command = test_cmd.copy()
# Predict deterministic action from policy
action, _ = model.predict(obs, deterministic=True)
obs, reward, terminated, truncated, _ = env.step(action)
done = terminated or truncated
total_reward += float(reward)
steps += 1
if args.gui:
time.sleep(1.0 / 60.0)
status_str = "FAILED (Collapsed)" if terminated else "SUCCESS (Completed)"
dist = float(env.max_distance_from_start)
print(
f" └─ Ep {ep + 1}/{args.episodes_per_phase}: {status_str:<19} | "
f"Steps: {steps:<4} | Reward: {total_reward:+.2f} | Max Dist: {dist:.2f}m"
)
ep_rewards.append(total_reward)
ep_steps.append(steps)
ep_distances.append(dist)
phase_summary.append({
"phase_id": phase_enum.value,
"phase_name": phase_enum.name,
"label": phase_name,
"command": test_cmd.tolist(),
"mean_reward": float(np.mean(ep_rewards)),
"mean_steps": float(np.mean(ep_steps)),
"mean_distance": float(np.mean(ep_distances)),
})
finally:
env.close()
# Print Summary Table
print("\n" + "=" * 80)
print(" EVALUATION SUMMARY REPORT")
print("=" * 80)
print(f"{'Phase ID & Name':<25} | {'Label':<22} | {'Reward':<8} | {'Steps':<6} | {'Max Dist':<8}")
print("-" * 80)
for res in phase_summary:
phase_str = f"[{res['phase_id']}] {res['phase_name']}"
print(
f"{phase_str:<25} | "
f"{res['label']:<22} | "
f"{res['mean_reward']:<+8.2f} | "
f"{res['mean_steps']:<6.0f} | "
f"{res['mean_distance']:<8.2f}m"
)
print("=" * 80)
# Save JSON Report if requested
if args.save_metrics:
out_path = Path(args.save_metrics)
out_path.parent.mkdir(parents=True, exist_ok=True)
with open(out_path, "w") as f:
json.dump({"model_path": str(args.model), "summary": phase_summary}, f, indent=4)
print(f"\n[Eval] Saved report to: {out_path.resolve()}")
if __name__ == "__main__":
main()