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pattern_manager.py 23 KB

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  1. import os
  2. import threading
  3. import time
  4. import random
  5. import logging
  6. from datetime import datetime
  7. from tqdm import tqdm
  8. from modules.connection import connection_manager
  9. from modules.core.state import state
  10. from math import pi
  11. import asyncio
  12. import json
  13. from modules.led.led_controller import effect_playing, effect_idle
  14. # Configure logging
  15. logger = logging.getLogger(__name__)
  16. # Global state
  17. THETA_RHO_DIR = './patterns'
  18. os.makedirs(THETA_RHO_DIR, exist_ok=True)
  19. # Create an asyncio Event for pause/resume
  20. pause_event = asyncio.Event()
  21. pause_event.set() # Initially not paused
  22. # Create an asyncio Lock for pattern execution
  23. pattern_lock = asyncio.Lock()
  24. # Progress update task
  25. progress_update_task = None
  26. async def cleanup_pattern_manager():
  27. """Clean up pattern manager resources"""
  28. global progress_update_task, pattern_lock, pause_event
  29. try:
  30. # Cancel progress update task if running
  31. if progress_update_task and not progress_update_task.done():
  32. try:
  33. progress_update_task.cancel()
  34. # Wait for task to actually cancel
  35. try:
  36. await progress_update_task
  37. except asyncio.CancelledError:
  38. pass
  39. except Exception as e:
  40. logger.error(f"Error cancelling progress update task: {e}")
  41. # Clean up pattern lock
  42. if pattern_lock:
  43. try:
  44. if pattern_lock.locked():
  45. pattern_lock.release()
  46. pattern_lock = None
  47. except Exception as e:
  48. logger.error(f"Error cleaning up pattern lock: {e}")
  49. # Clean up pause event
  50. if pause_event:
  51. try:
  52. pause_event.set() # Wake up any waiting tasks
  53. pause_event = None
  54. except Exception as e:
  55. logger.error(f"Error cleaning up pause event: {e}")
  56. # Clean up pause condition from state
  57. if state.pause_condition:
  58. try:
  59. with state.pause_condition:
  60. state.pause_condition.notify_all()
  61. state.pause_condition = threading.Condition()
  62. except Exception as e:
  63. logger.error(f"Error cleaning up pause condition: {e}")
  64. # Clear all state variables
  65. state.current_playing_file = None
  66. state.execution_progress = 0
  67. state.is_running = False
  68. state.pause_requested = False
  69. state.stop_requested = True
  70. state.is_clearing = False
  71. # Reset machine position
  72. await connection_manager.update_machine_position()
  73. logger.info("Pattern manager resources cleaned up")
  74. except Exception as e:
  75. logger.error(f"Error during pattern manager cleanup: {e}")
  76. finally:
  77. # Ensure we always reset these
  78. progress_update_task = None
  79. pattern_lock = None
  80. pause_event = None
  81. def list_theta_rho_files():
  82. files = []
  83. for root, _, filenames in os.walk(THETA_RHO_DIR):
  84. for file in filenames:
  85. relative_path = os.path.relpath(os.path.join(root, file), THETA_RHO_DIR)
  86. # Normalize path separators to always use forward slashes for consistency across platforms
  87. relative_path = relative_path.replace(os.sep, '/')
  88. files.append(relative_path)
  89. logger.debug(f"Found {len(files)} theta-rho files")
  90. return [file for file in files if file.endswith('.thr')]
  91. def parse_theta_rho_file(file_path):
  92. """Parse a theta-rho file and return a list of (theta, rho) pairs."""
  93. coordinates = []
  94. try:
  95. logger.debug(f"Parsing theta-rho file: {file_path}")
  96. with open(file_path, 'r', encoding='utf-8') as file:
  97. for line in file:
  98. line = line.strip()
  99. if not line or line.startswith("#"):
  100. continue
  101. try:
  102. theta, rho = map(float, line.split())
  103. coordinates.append((theta, rho))
  104. except ValueError:
  105. logger.warning(f"Skipping invalid line: {line}")
  106. continue
  107. except Exception as e:
  108. logger.error(f"Error reading file: {e}")
  109. return coordinates
  110. logger.debug(f"Parsed {len(coordinates)} coordinates from {file_path}")
  111. return coordinates
  112. def get_clear_pattern_file(clear_pattern_mode, path=None):
  113. """Return a .thr file path based on pattern_name and table type."""
  114. if not clear_pattern_mode or clear_pattern_mode == 'none':
  115. return
  116. # Define patterns for each table type
  117. clear_patterns = {
  118. 'dune_weaver': {
  119. 'clear_from_out': './patterns/clear_from_out.thr',
  120. 'clear_from_in': './patterns/clear_from_in.thr',
  121. 'clear_sideway': './patterns/clear_sideway.thr'
  122. },
  123. 'dune_weaver_mini': {
  124. 'clear_from_out': './patterns/clear_from_out_mini.thr',
  125. 'clear_from_in': './patterns/clear_from_in_mini.thr',
  126. 'clear_sideway': './patterns/clear_sideway_mini.thr'
  127. },
  128. 'dune_weaver_pro': {
  129. 'clear_from_out': './patterns/clear_from_out_pro.thr',
  130. 'clear_from_out_Ultra': './patterns/clear_from_out_Ultra.thr',
  131. 'clear_from_in': './patterns/clear_from_in_pro.thr',
  132. 'clear_from_in_Ultra': './patterns/clear_from_in_Ultra.thr',
  133. 'clear_sideway': './patterns/clear_sideway_pro.thr'
  134. }
  135. }
  136. # Get patterns for current table type, fallback to standard patterns if type not found
  137. table_patterns = clear_patterns.get(state.table_type, clear_patterns['dune_weaver'])
  138. logger.debug(f"Clear pattern mode: {clear_pattern_mode} for table type: {state.table_type}")
  139. if clear_pattern_mode == "random":
  140. return random.choice(list(table_patterns.values()))
  141. if clear_pattern_mode == 'adaptive':
  142. if not path:
  143. logger.warning("No path provided for adaptive clear pattern")
  144. return random.choice(list(table_patterns.values()))
  145. coordinates = parse_theta_rho_file(path)
  146. if not coordinates:
  147. logger.warning("No valid coordinates found in file for adaptive clear pattern")
  148. return random.choice(list(table_patterns.values()))
  149. first_rho = coordinates[0][1]
  150. if first_rho < 0.5:
  151. return table_patterns['clear_from_out']
  152. else:
  153. return random.choice([table_patterns['clear_from_in'], table_patterns['clear_sideway']])
  154. else:
  155. if clear_pattern_mode not in table_patterns:
  156. return False
  157. return table_patterns[clear_pattern_mode]
  158. def is_clear_pattern(file_path):
  159. """Check if a file path is a clear pattern file."""
  160. # Get all possible clear pattern files for all table types
  161. clear_patterns = []
  162. for table_type in ['dune_weaver', 'dune_weaver_mini', 'dune_weaver_pro']:
  163. clear_patterns.extend([
  164. f'./patterns/clear_from_out{("_" + table_type.split("_")[-1]) if table_type != "dune_weaver" else ""}.thr',
  165. f'./patterns/clear_from_in{("_" + table_type.split("_")[-1]) if table_type != "dune_weaver" else ""}.thr',
  166. f'./patterns/clear_sideway{("_" + table_type.split("_")[-1]) if table_type != "dune_weaver" else ""}.thr'
  167. ])
  168. # Normalize paths for comparison
  169. normalized_path = os.path.normpath(file_path)
  170. normalized_clear_patterns = [os.path.normpath(p) for p in clear_patterns]
  171. # Check if the file path matches any clear pattern path
  172. return normalized_path in normalized_clear_patterns
  173. async def run_theta_rho_file(file_path, is_playlist=False):
  174. """Run a theta-rho file by sending data in optimized batches with tqdm ETA tracking."""
  175. if pattern_lock.locked():
  176. logger.warning("Another pattern is already running. Cannot start a new one.")
  177. return
  178. async with pattern_lock: # This ensures only one pattern can run at a time
  179. # Start progress update task only if not part of a playlist
  180. global progress_update_task
  181. if not is_playlist and not progress_update_task:
  182. progress_update_task = asyncio.create_task(broadcast_progress())
  183. coordinates = parse_theta_rho_file(file_path)
  184. total_coordinates = len(coordinates)
  185. if total_coordinates < 2:
  186. logger.warning("Not enough coordinates for interpolation")
  187. if not is_playlist:
  188. state.current_playing_file = None
  189. state.execution_progress = None
  190. return
  191. state.execution_progress = (0, total_coordinates, None, 0)
  192. # stop actions without resetting the playlist
  193. stop_actions(clear_playlist=False)
  194. state.current_playing_file = file_path
  195. state.stop_requested = False
  196. logger.info(f"Starting pattern execution: {file_path}")
  197. logger.info(f"t: {state.current_theta}, r: {state.current_rho}")
  198. reset_theta()
  199. start_time = time.time()
  200. if state.led_controller:
  201. effect_playing(state.led_controller)
  202. with tqdm(
  203. total=total_coordinates,
  204. unit="coords",
  205. desc=f"Executing Pattern {file_path}",
  206. dynamic_ncols=True,
  207. disable=False,
  208. mininterval=1.0
  209. ) as pbar:
  210. for i, coordinate in enumerate(coordinates):
  211. theta, rho = coordinate
  212. if state.stop_requested:
  213. logger.info("Execution stopped by user")
  214. if state.led_controller:
  215. effect_idle(state.led_controller)
  216. break
  217. if state.skip_requested:
  218. logger.info("Skipping pattern...")
  219. connection_manager.check_idle()
  220. if state.led_controller:
  221. effect_idle(state.led_controller)
  222. break
  223. # Wait for resume if paused
  224. if state.pause_requested:
  225. logger.info("Execution paused...")
  226. if state.led_controller:
  227. effect_idle(state.led_controller)
  228. await pause_event.wait()
  229. logger.info("Execution resumed...")
  230. if state.led_controller:
  231. effect_playing(state.led_controller)
  232. move_polar(theta, rho)
  233. # Update progress for all coordinates including the first one
  234. pbar.update(1)
  235. elapsed_time = time.time() - start_time
  236. estimated_remaining_time = (total_coordinates - (i + 1)) / pbar.format_dict['rate'] if pbar.format_dict['rate'] and total_coordinates else 0
  237. state.execution_progress = (i + 1, total_coordinates, estimated_remaining_time, elapsed_time)
  238. # Add a small delay to allow other async operations
  239. await asyncio.sleep(0.001)
  240. # Update progress one last time to show 100%
  241. elapsed_time = time.time() - start_time
  242. state.execution_progress = (total_coordinates, total_coordinates, 0, elapsed_time)
  243. # Give WebSocket a chance to send the final update
  244. await asyncio.sleep(0.1)
  245. if not state.conn:
  246. logger.error("Device is not connected. Stopping pattern execution.")
  247. return
  248. connection_manager.check_idle()
  249. # Set LED back to idle when pattern completes normally (not stopped early)
  250. if state.led_controller and not state.stop_requested:
  251. effect_idle(state.led_controller)
  252. logger.debug("LED effect set to idle after pattern completion")
  253. # Only clear state if not part of a playlist
  254. if not is_playlist:
  255. state.current_playing_file = None
  256. state.execution_progress = None
  257. logger.info("Pattern execution completed and state cleared")
  258. else:
  259. logger.info("Pattern execution completed, maintaining state for playlist")
  260. # Only cancel progress update task if not part of a playlist
  261. if not is_playlist and progress_update_task:
  262. progress_update_task.cancel()
  263. try:
  264. await progress_update_task
  265. except asyncio.CancelledError:
  266. pass
  267. progress_update_task = None
  268. async def run_theta_rho_files(file_paths, pause_time=0, clear_pattern=None, run_mode="single", shuffle=False):
  269. """Run multiple .thr files in sequence with options."""
  270. state.stop_requested = False
  271. # Set initial playlist state
  272. state.playlist_mode = run_mode
  273. state.current_playlist_index = 0
  274. # Start progress update task for the playlist
  275. global progress_update_task
  276. if not progress_update_task:
  277. progress_update_task = asyncio.create_task(broadcast_progress())
  278. if shuffle:
  279. random.shuffle(file_paths)
  280. logger.info("Playlist shuffled")
  281. if shuffle:
  282. random.shuffle(file_paths)
  283. logger.info("Playlist shuffled")
  284. try:
  285. while True:
  286. # Construct the complete pattern sequence
  287. pattern_sequence = []
  288. for path in file_paths:
  289. # Add clear pattern if specified
  290. if clear_pattern and clear_pattern != 'none':
  291. clear_file_path = get_clear_pattern_file(clear_pattern, path)
  292. if clear_file_path:
  293. pattern_sequence.append(clear_file_path)
  294. # Add main pattern
  295. pattern_sequence.append(path)
  296. # Shuffle if requested
  297. if shuffle:
  298. # Get pairs of patterns (clear + main) to keep them together
  299. pairs = [pattern_sequence[i:i+2] for i in range(0, len(pattern_sequence), 2)]
  300. random.shuffle(pairs)
  301. # Flatten the pairs back into a single list
  302. pattern_sequence = [pattern for pair in pairs for pattern in pair]
  303. logger.info("Playlist shuffled")
  304. # Set the playlist to the first pattern
  305. state.current_playlist = pattern_sequence
  306. # Execute the pattern sequence
  307. for idx, file_path in enumerate(pattern_sequence):
  308. state.current_playlist_index = idx
  309. if state.stop_requested:
  310. logger.info("Execution stopped")
  311. return
  312. # Update state for main patterns only
  313. logger.info(f"Running pattern {file_path}")
  314. # Execute the pattern
  315. await run_theta_rho_file(file_path, is_playlist=True)
  316. # Handle pause between patterns
  317. if idx < len(pattern_sequence) - 1 and not state.stop_requested and pause_time > 0 and not state.skip_requested:
  318. # Check if current pattern is a clear pattern
  319. if is_clear_pattern(file_path):
  320. logger.info("Skipping pause after clear pattern")
  321. else:
  322. logger.info(f"Pausing for {pause_time} seconds")
  323. state.original_pause_time = pause_time
  324. pause_start = time.time()
  325. while time.time() - pause_start < pause_time:
  326. state.pause_time_remaining = pause_start + pause_time - time.time()
  327. if state.skip_requested:
  328. logger.info("Pause interrupted by stop/skip request")
  329. break
  330. await asyncio.sleep(1)
  331. state.pause_time_remaining = 0
  332. state.skip_requested = False
  333. if run_mode == "indefinite":
  334. logger.info("Playlist completed. Restarting as per 'indefinite' run mode")
  335. if pause_time > 0:
  336. logger.debug(f"Pausing for {pause_time} seconds before restarting")
  337. pause_start = time.time()
  338. while time.time() - pause_start < pause_time:
  339. state.pause_time_remaining = pause_start + pause_time - time.time()
  340. if state.skip_requested:
  341. logger.info("Pause interrupted by stop/skip request")
  342. break
  343. await asyncio.sleep(1)
  344. state.pause_time_remaining = 0
  345. continue
  346. else:
  347. logger.info("Playlist completed")
  348. break
  349. finally:
  350. # Clean up progress update task
  351. if progress_update_task:
  352. progress_update_task.cancel()
  353. try:
  354. await progress_update_task
  355. except asyncio.CancelledError:
  356. pass
  357. progress_update_task = None
  358. # Clear all state variables
  359. state.current_playing_file = None
  360. state.execution_progress = None
  361. state.current_playlist = None
  362. state.current_playlist_index = None
  363. state.playlist_mode = None
  364. if state.led_controller:
  365. effect_idle(state.led_controller)
  366. logger.info("All requested patterns completed (or stopped) and state cleared")
  367. def stop_actions(clear_playlist = True):
  368. """Stop all current actions."""
  369. try:
  370. with state.pause_condition:
  371. state.pause_requested = False
  372. state.stop_requested = True
  373. state.current_playing_file = None
  374. state.execution_progress = None
  375. state.is_clearing = False
  376. if clear_playlist:
  377. # Clear playlist state
  378. state.current_playlist = None
  379. state.current_playlist_index = None
  380. state.playlist_mode = None
  381. # Cancel progress update task if we're clearing the playlist
  382. global progress_update_task
  383. if progress_update_task and not progress_update_task.done():
  384. progress_update_task.cancel()
  385. state.pause_condition.notify_all()
  386. connection_manager.update_machine_position()
  387. except Exception as e:
  388. logger.error(f"Error during stop_actions: {e}")
  389. # Ensure we still update machine position even if there's an error
  390. connection_manager.update_machine_position()
  391. def move_polar(theta, rho):
  392. """
  393. This functions take in a pair of theta rho coordinate, compute the distance to travel based on current theta, rho,
  394. and translate the motion to gcode jog command and sent to grbl.
  395. Since having similar steps_per_mm will make x and y axis moves at around the same speed, we have to scale the
  396. x_steps_per_mm and y_steps_per_mm so that they are roughly the same. Here's the range of motion:
  397. X axis (angular): 50mm = 1 revolution
  398. Y axis (radial): 0 => 20mm = theta 0 (center) => 1 (perimeter)
  399. Args:
  400. theta (_type_): _description_
  401. rho (_type_): _description_
  402. """
  403. # Adding soft limit to reduce hardware sound
  404. # soft_limit_inner = 0.01
  405. # if rho < soft_limit_inner:
  406. # rho = soft_limit_inner
  407. # soft_limit_outter = 0.015
  408. # if rho > (1-soft_limit_outter):
  409. # rho = (1-soft_limit_outter)
  410. if state.table_type == 'dune_weaver_mini':
  411. x_scaling_factor = 2
  412. y_scaling_factor = 3.7
  413. else:
  414. x_scaling_factor = 2
  415. y_scaling_factor = 5
  416. delta_theta = theta - state.current_theta
  417. delta_rho = rho - state.current_rho
  418. x_increment = delta_theta * 100 / (2 * pi * x_scaling_factor) # Added -1 to reverse direction
  419. y_increment = delta_rho * 100 / y_scaling_factor
  420. x_total_steps = state.x_steps_per_mm * (100/x_scaling_factor)
  421. y_total_steps = state.y_steps_per_mm * (100/y_scaling_factor)
  422. offset = x_increment * (x_total_steps * x_scaling_factor / (state.gear_ratio * y_total_steps * y_scaling_factor))
  423. if state.table_type == 'dune_weaver_mini':
  424. y_increment -= offset
  425. else:
  426. y_increment += offset
  427. new_x_abs = state.machine_x + x_increment
  428. new_y_abs = state.machine_y + y_increment
  429. # dynamic_speed = compute_dynamic_speed(rho, max_speed=state.speed)
  430. connection_manager.send_grbl_coordinates(round(new_x_abs, 3), round(new_y_abs,3), state.speed)
  431. state.current_theta = theta
  432. state.current_rho = rho
  433. state.machine_x = new_x_abs
  434. state.machine_y = new_y_abs
  435. def pause_execution():
  436. """Pause pattern execution using asyncio Event."""
  437. logger.info("Pausing pattern execution")
  438. state.pause_requested = True
  439. pause_event.clear() # Clear the event to pause execution
  440. return True
  441. def resume_execution():
  442. """Resume pattern execution using asyncio Event."""
  443. logger.info("Resuming pattern execution")
  444. state.pause_requested = False
  445. pause_event.set() # Set the event to resume execution
  446. return True
  447. def reset_theta():
  448. logger.info('Resetting Theta')
  449. state.current_theta = state.current_theta % (2 * pi)
  450. connection_manager.update_machine_position()
  451. def set_speed(new_speed):
  452. state.speed = new_speed
  453. logger.info(f'Set new state.speed {new_speed}')
  454. def get_status():
  455. """Get the current status of pattern execution."""
  456. status = {
  457. "current_file": state.current_playing_file,
  458. "is_paused": state.pause_requested,
  459. "is_running": bool(state.current_playing_file and not state.stop_requested),
  460. "progress": None,
  461. "playlist": None,
  462. "speed": state.speed,
  463. "pause_time_remaining": state.pause_time_remaining,
  464. "original_pause_time": getattr(state, 'original_pause_time', None),
  465. "connection_status": state.conn.is_connected() if state.conn else False,
  466. "current_theta": state.current_theta,
  467. "current_rho": state.current_rho
  468. }
  469. # Add playlist information if available
  470. if state.current_playlist and state.current_playlist_index is not None:
  471. next_index = state.current_playlist_index + 1
  472. status["playlist"] = {
  473. "current_index": state.current_playlist_index,
  474. "total_files": len(state.current_playlist),
  475. "mode": state.playlist_mode,
  476. "next_file": state.current_playlist[next_index] if next_index < len(state.current_playlist) else None
  477. }
  478. if state.execution_progress:
  479. current, total, remaining_time, elapsed_time = state.execution_progress
  480. status["progress"] = {
  481. "current": current,
  482. "total": total,
  483. "remaining_time": remaining_time,
  484. "elapsed_time": elapsed_time,
  485. "percentage": (current / total * 100) if total > 0 else 0
  486. }
  487. return status
  488. async def broadcast_progress():
  489. """Background task to broadcast progress updates."""
  490. from main import broadcast_status_update
  491. while True:
  492. # Send status updates regardless of pattern_lock state
  493. status = get_status()
  494. # Use the existing broadcast function from main.py
  495. await broadcast_status_update(status)
  496. # Check if we should stop broadcasting
  497. if not state.current_playlist:
  498. # If no playlist, only stop if no pattern is being executed
  499. if not pattern_lock.locked():
  500. logger.info("No playlist or pattern running, stopping broadcast")
  501. break
  502. # Wait before next update
  503. await asyncio.sleep(1)