pattern_manager.py 57 KB

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  1. import os
  2. from zoneinfo import ZoneInfo
  3. import threading
  4. import time
  5. import random
  6. import logging
  7. from datetime import datetime, time as datetime_time
  8. from tqdm import tqdm
  9. from modules.connection import connection_manager
  10. from modules.core.state import state
  11. from math import pi
  12. import asyncio
  13. import json
  14. # Import for legacy support, but we'll use LED interface through state
  15. from modules.led.led_controller import effect_playing, effect_idle
  16. from modules.led.idle_timeout_manager import idle_timeout_manager
  17. import queue
  18. from dataclasses import dataclass
  19. from typing import Optional, Callable
  20. # Configure logging
  21. logger = logging.getLogger(__name__)
  22. # Global state
  23. THETA_RHO_DIR = './patterns'
  24. os.makedirs(THETA_RHO_DIR, exist_ok=True)
  25. # Execution time log file (JSON Lines format - one JSON object per line)
  26. EXECUTION_LOG_FILE = './execution_times.jsonl'
  27. def log_execution_time(pattern_name: str, table_type: str, speed: int, actual_time: float,
  28. total_coordinates: int, was_completed: bool):
  29. """Log pattern execution time to JSON Lines file for analysis.
  30. Args:
  31. pattern_name: Name of the pattern file
  32. table_type: Type of table (e.g., 'dune_weaver', 'dune_weaver_mini')
  33. speed: Speed setting used (0-255)
  34. actual_time: Actual execution time in seconds (excluding pauses)
  35. total_coordinates: Total number of coordinates in the pattern
  36. was_completed: Whether the pattern completed normally (not stopped/skipped)
  37. """
  38. # Format time as HH:MM:SS
  39. hours, remainder = divmod(int(actual_time), 3600)
  40. minutes, seconds = divmod(remainder, 60)
  41. time_formatted = f"{hours:02d}:{minutes:02d}:{seconds:02d}"
  42. log_entry = {
  43. "timestamp": datetime.now().isoformat(),
  44. "pattern_name": pattern_name,
  45. "table_type": table_type or "unknown",
  46. "speed": speed,
  47. "actual_time_seconds": round(actual_time, 2),
  48. "actual_time_formatted": time_formatted,
  49. "total_coordinates": total_coordinates,
  50. "completed": was_completed
  51. }
  52. try:
  53. with open(EXECUTION_LOG_FILE, 'a') as f:
  54. f.write(json.dumps(log_entry) + '\n')
  55. logger.info(f"Execution time logged: {pattern_name} - {time_formatted} (speed: {speed}, table: {table_type})")
  56. except Exception as e:
  57. logger.error(f"Failed to log execution time: {e}")
  58. def get_last_completed_execution_time(pattern_name: str, speed: float) -> Optional[dict]:
  59. """Get the last completed execution time for a pattern at a specific speed.
  60. Args:
  61. pattern_name: Name of the pattern file (e.g., 'circle.thr')
  62. speed: Speed setting to match
  63. Returns:
  64. Dict with execution time info if found, None otherwise.
  65. Format: {"actual_time_seconds": float, "actual_time_formatted": str, "timestamp": str}
  66. """
  67. if not os.path.exists(EXECUTION_LOG_FILE):
  68. return None
  69. try:
  70. matching_entry = None
  71. with open(EXECUTION_LOG_FILE, 'r') as f:
  72. for line in f:
  73. line = line.strip()
  74. if not line:
  75. continue
  76. try:
  77. entry = json.loads(line)
  78. # Only consider fully completed patterns (100% finished)
  79. if (entry.get('completed', False) and
  80. entry.get('pattern_name') == pattern_name and
  81. entry.get('speed') == speed):
  82. # Keep the most recent match (last one in file)
  83. matching_entry = entry
  84. except json.JSONDecodeError:
  85. continue
  86. if matching_entry:
  87. return {
  88. "actual_time_seconds": matching_entry.get('actual_time_seconds'),
  89. "actual_time_formatted": matching_entry.get('actual_time_formatted'),
  90. "timestamp": matching_entry.get('timestamp')
  91. }
  92. return None
  93. except Exception as e:
  94. logger.error(f"Failed to read execution time log: {e}")
  95. return None
  96. # Asyncio primitives - initialized lazily to avoid event loop issues
  97. # These must be created in the context of the running event loop
  98. pause_event: Optional[asyncio.Event] = None
  99. pattern_lock: Optional[asyncio.Lock] = None
  100. progress_update_task = None
  101. def get_pause_event() -> asyncio.Event:
  102. """Get or create the pause event in the current event loop."""
  103. global pause_event
  104. if pause_event is None:
  105. pause_event = asyncio.Event()
  106. pause_event.set() # Initially not paused
  107. return pause_event
  108. def get_pattern_lock() -> asyncio.Lock:
  109. """Get or create the pattern lock in the current event loop."""
  110. global pattern_lock
  111. if pattern_lock is None:
  112. pattern_lock = asyncio.Lock()
  113. return pattern_lock
  114. # Cache timezone at module level - read once per session (cleared when user changes timezone)
  115. _cached_timezone = None
  116. _cached_zoneinfo = None
  117. def _get_timezone():
  118. """Get and cache the timezone for Still Sands. Uses user-selected timezone if set, otherwise system timezone."""
  119. global _cached_timezone, _cached_zoneinfo
  120. if _cached_timezone is not None:
  121. return _cached_zoneinfo
  122. user_tz = 'UTC' # Default fallback
  123. # First, check if user has selected a specific timezone in settings
  124. if state.scheduled_pause_timezone:
  125. user_tz = state.scheduled_pause_timezone
  126. logger.info(f"Still Sands using timezone: {user_tz} (user-selected)")
  127. else:
  128. # Fall back to system timezone detection
  129. try:
  130. if os.path.exists('/etc/host-timezone'):
  131. with open('/etc/host-timezone', 'r') as f:
  132. user_tz = f.read().strip()
  133. logger.info(f"Still Sands using timezone: {user_tz} (from host system)")
  134. # Fallback to /etc/timezone if host-timezone doesn't exist
  135. elif os.path.exists('/etc/timezone'):
  136. with open('/etc/timezone', 'r') as f:
  137. user_tz = f.read().strip()
  138. logger.info(f"Still Sands using timezone: {user_tz} (from container)")
  139. # Fallback to TZ environment variable
  140. elif os.environ.get('TZ'):
  141. user_tz = os.environ.get('TZ')
  142. logger.info(f"Still Sands using timezone: {user_tz} (from environment)")
  143. else:
  144. logger.info("Still Sands using timezone: UTC (system default)")
  145. except Exception as e:
  146. logger.debug(f"Could not read timezone: {e}")
  147. # Cache the timezone
  148. _cached_timezone = user_tz
  149. try:
  150. _cached_zoneinfo = ZoneInfo(user_tz)
  151. except Exception as e:
  152. logger.warning(f"Invalid timezone '{user_tz}', falling back to system time: {e}")
  153. _cached_zoneinfo = None
  154. return _cached_zoneinfo
  155. def is_in_scheduled_pause_period():
  156. """Check if current time falls within any scheduled pause period."""
  157. if not state.scheduled_pause_enabled or not state.scheduled_pause_time_slots:
  158. return False
  159. # Get cached timezone (user-selected or system default)
  160. tz_info = _get_timezone()
  161. try:
  162. # Get current time in user's timezone
  163. if tz_info:
  164. now = datetime.now(tz_info)
  165. else:
  166. now = datetime.now()
  167. except Exception as e:
  168. logger.warning(f"Error getting current time: {e}")
  169. now = datetime.now()
  170. current_time = now.time()
  171. current_weekday = now.strftime("%A").lower() # monday, tuesday, etc.
  172. for slot in state.scheduled_pause_time_slots:
  173. # Parse start and end times
  174. try:
  175. start_time = datetime_time.fromisoformat(slot['start_time'])
  176. end_time = datetime_time.fromisoformat(slot['end_time'])
  177. except (ValueError, KeyError):
  178. logger.warning(f"Invalid time format in scheduled pause slot: {slot}")
  179. continue
  180. # Check if this slot applies to today
  181. slot_applies_today = False
  182. days_setting = slot.get('days', 'daily')
  183. if days_setting == 'daily':
  184. slot_applies_today = True
  185. elif days_setting == 'weekdays':
  186. slot_applies_today = current_weekday in ['monday', 'tuesday', 'wednesday', 'thursday', 'friday']
  187. elif days_setting == 'weekends':
  188. slot_applies_today = current_weekday in ['saturday', 'sunday']
  189. elif days_setting == 'custom':
  190. custom_days = slot.get('custom_days', [])
  191. slot_applies_today = current_weekday in custom_days
  192. if not slot_applies_today:
  193. continue
  194. # Check if current time is within the pause period
  195. if start_time <= end_time:
  196. # Normal case: start and end are on the same day
  197. if start_time <= current_time <= end_time:
  198. return True
  199. else:
  200. # Time spans midnight: start is before midnight, end is after midnight
  201. if current_time >= start_time or current_time <= end_time:
  202. return True
  203. return False
  204. async def check_table_is_idle() -> bool:
  205. """
  206. Check if the table is currently idle by querying actual machine status.
  207. Returns True if idle, False if playing/moving.
  208. This checks the real machine state rather than relying on state variables,
  209. making it more reliable for detecting when table is truly idle.
  210. """
  211. # Use the connection_manager's is_machine_idle() function
  212. # Run it in a thread since it's a synchronous function
  213. return await asyncio.to_thread(connection_manager.is_machine_idle)
  214. def start_idle_led_timeout():
  215. """
  216. Start the idle LED timeout if enabled.
  217. Should be called whenever the idle effect is activated.
  218. """
  219. if not state.dw_led_idle_timeout_enabled:
  220. logger.debug("Idle LED timeout not enabled")
  221. return
  222. timeout_minutes = state.dw_led_idle_timeout_minutes
  223. if timeout_minutes <= 0:
  224. logger.debug("Idle LED timeout not configured (timeout <= 0)")
  225. return
  226. logger.debug(f"Starting idle LED timeout: {timeout_minutes} minutes")
  227. idle_timeout_manager.start_idle_timeout(
  228. timeout_minutes=timeout_minutes,
  229. state=state,
  230. check_idle_callback=check_table_is_idle
  231. )
  232. # Motion Control Thread Infrastructure
  233. @dataclass
  234. class MotionCommand:
  235. """Represents a motion command for the motion control thread."""
  236. command_type: str # 'move', 'stop', 'pause', 'resume', 'shutdown'
  237. theta: Optional[float] = None
  238. rho: Optional[float] = None
  239. speed: Optional[float] = None
  240. callback: Optional[Callable] = None
  241. future: Optional[asyncio.Future] = None
  242. class MotionControlThread:
  243. """Dedicated thread for hardware motion control operations."""
  244. def __init__(self):
  245. self.command_queue = queue.Queue()
  246. self.thread = None
  247. self.running = False
  248. self.paused = False
  249. def start(self):
  250. """Start the motion control thread with elevated priority."""
  251. if self.thread and self.thread.is_alive():
  252. return
  253. self.running = True
  254. self.thread = threading.Thread(target=self._motion_loop, daemon=True)
  255. self.thread.start()
  256. logger.info("Motion control thread started")
  257. def stop(self):
  258. """Stop the motion control thread."""
  259. if not self.running:
  260. return
  261. self.running = False
  262. # Send shutdown command
  263. self.command_queue.put(MotionCommand('shutdown'))
  264. if self.thread and self.thread.is_alive():
  265. self.thread.join(timeout=5.0)
  266. logger.info("Motion control thread stopped")
  267. def _motion_loop(self):
  268. """Main loop for the motion control thread."""
  269. # Setup realtime priority from within thread to avoid native_id race
  270. # Motion uses higher priority (60) than LED (40) for CNC reliability
  271. from modules.core import scheduling
  272. scheduling.setup_realtime_thread(priority=60)
  273. logger.info("Motion control thread loop started")
  274. while self.running:
  275. try:
  276. # Get command with timeout to allow periodic checks
  277. command = self.command_queue.get(timeout=1.0)
  278. if command.command_type == 'shutdown':
  279. break
  280. elif command.command_type == 'move':
  281. self._execute_move(command)
  282. elif command.command_type == 'pause':
  283. self.paused = True
  284. elif command.command_type == 'resume':
  285. self.paused = False
  286. elif command.command_type == 'stop':
  287. # Clear any pending commands
  288. while not self.command_queue.empty():
  289. try:
  290. self.command_queue.get_nowait()
  291. except queue.Empty:
  292. break
  293. self.command_queue.task_done()
  294. except queue.Empty:
  295. # Timeout - continue loop for shutdown check
  296. continue
  297. except Exception as e:
  298. logger.error(f"Error in motion control thread: {e}")
  299. logger.info("Motion control thread loop ended")
  300. def _execute_move(self, command: MotionCommand):
  301. """Execute a move command in the motion thread."""
  302. try:
  303. # Wait if paused
  304. while self.paused and self.running:
  305. time.sleep(0.1)
  306. if not self.running:
  307. return
  308. # Execute the actual motion using sync version
  309. self._move_polar_sync(command.theta, command.rho, command.speed)
  310. # Signal completion if future provided
  311. if command.future and not command.future.done():
  312. command.future.get_loop().call_soon_threadsafe(
  313. command.future.set_result, None
  314. )
  315. except Exception as e:
  316. logger.error(f"Error executing move command: {e}")
  317. if command.future and not command.future.done():
  318. command.future.get_loop().call_soon_threadsafe(
  319. command.future.set_exception, e
  320. )
  321. def _move_polar_sync(self, theta: float, rho: float, speed: Optional[float] = None):
  322. """Synchronous version of move_polar for use in motion thread."""
  323. # This is the original sync logic but running in dedicated thread
  324. if state.table_type == 'dune_weaver_mini':
  325. x_scaling_factor = 2
  326. y_scaling_factor = 3.7
  327. else:
  328. x_scaling_factor = 2
  329. y_scaling_factor = 5
  330. delta_theta = theta - state.current_theta
  331. delta_rho = rho - state.current_rho
  332. x_increment = delta_theta * 100 / (2 * pi * x_scaling_factor)
  333. y_increment = delta_rho * 100 / y_scaling_factor
  334. x_total_steps = state.x_steps_per_mm * (100/x_scaling_factor)
  335. y_total_steps = state.y_steps_per_mm * (100/y_scaling_factor)
  336. offset = x_increment * (x_total_steps * x_scaling_factor / (state.gear_ratio * y_total_steps * y_scaling_factor))
  337. if state.table_type == 'dune_weaver_mini' or state.y_steps_per_mm == 546:
  338. y_increment -= offset
  339. else:
  340. y_increment += offset
  341. new_x_abs = state.machine_x + x_increment
  342. new_y_abs = state.machine_y + y_increment
  343. # Use provided speed or fall back to state.speed
  344. actual_speed = speed if speed is not None else state.speed
  345. # Call sync version of send_grbl_coordinates in this thread
  346. self._send_grbl_coordinates_sync(round(new_x_abs, 3), round(new_y_abs, 3), actual_speed)
  347. # Update state
  348. state.current_theta = theta
  349. state.current_rho = rho
  350. state.machine_x = new_x_abs
  351. state.machine_y = new_y_abs
  352. def _send_grbl_coordinates_sync(self, x: float, y: float, speed: int = 600, timeout: int = 2, home: bool = False):
  353. """Synchronous version of send_grbl_coordinates for motion thread."""
  354. logger.debug(f"Motion thread sending G-code: X{x} Y{y} at F{speed}")
  355. while True:
  356. # Check stop_requested at the start of each iteration
  357. if state.stop_requested:
  358. logger.debug("Motion thread: Stop requested, aborting command")
  359. return
  360. try:
  361. gcode = f"$J=G91 G21 Y{y} F{speed}" if home else f"G1 G53 X{x} Y{y} F{speed}"
  362. state.conn.send(gcode + "\n")
  363. logger.debug(f"Motion thread sent command: {gcode}")
  364. while True:
  365. # Also check stop_requested while waiting for response
  366. if state.stop_requested:
  367. logger.debug("Motion thread: Stop requested while waiting for response")
  368. return
  369. response = state.conn.readline()
  370. logger.debug(f"Motion thread response: {response}")
  371. if response.lower() == "ok":
  372. logger.debug("Motion thread: Command execution confirmed.")
  373. return
  374. except Exception as e:
  375. error_str = str(e)
  376. logger.warning(f"Motion thread error sending command: {error_str}")
  377. # Immediately return for device not configured errors
  378. if "Device not configured" in error_str or "Errno 6" in error_str:
  379. logger.error(f"Motion thread: Device configuration error detected: {error_str}")
  380. state.stop_requested = True
  381. state.conn = None
  382. state.is_connected = False
  383. logger.info("Connection marked as disconnected due to device error")
  384. return False
  385. logger.warning(f"Motion thread: No 'ok' received for X{x} Y{y}, speed {speed}. Retrying...")
  386. time.sleep(0.1)
  387. # Global motion control thread instance
  388. motion_controller = MotionControlThread()
  389. async def cleanup_pattern_manager():
  390. """Clean up pattern manager resources"""
  391. global progress_update_task, pattern_lock, pause_event
  392. try:
  393. # Signal stop to allow any running pattern to exit gracefully
  394. state.stop_requested = True
  395. # Stop motion control thread
  396. motion_controller.stop()
  397. # Cancel progress update task if running
  398. if progress_update_task and not progress_update_task.done():
  399. try:
  400. progress_update_task.cancel()
  401. # Wait for task to actually cancel
  402. try:
  403. await progress_update_task
  404. except asyncio.CancelledError:
  405. pass
  406. except Exception as e:
  407. logger.error(f"Error cancelling progress update task: {e}")
  408. # Clean up pattern lock - wait for it to be released naturally, don't force release
  409. # Force releasing an asyncio.Lock can corrupt internal state if held by another coroutine
  410. current_lock = pattern_lock
  411. if current_lock and current_lock.locked():
  412. logger.info("Pattern lock is held, waiting for release (max 5s)...")
  413. try:
  414. # Wait with timeout for the lock to become available
  415. async with asyncio.timeout(5.0):
  416. async with current_lock:
  417. pass # Lock acquired means previous holder released it
  418. logger.info("Pattern lock released normally")
  419. except asyncio.TimeoutError:
  420. logger.warning("Timed out waiting for pattern lock - creating fresh lock")
  421. except Exception as e:
  422. logger.error(f"Error waiting for pattern lock: {e}")
  423. # Clean up pause event - wake up any waiting tasks, then create fresh event
  424. current_event = pause_event
  425. if current_event:
  426. try:
  427. current_event.set() # Wake up any waiting tasks
  428. except Exception as e:
  429. logger.error(f"Error setting pause event: {e}")
  430. # Clean up pause condition from state
  431. if state.pause_condition:
  432. try:
  433. with state.pause_condition:
  434. state.pause_condition.notify_all()
  435. state.pause_condition = threading.Condition()
  436. except Exception as e:
  437. logger.error(f"Error cleaning up pause condition: {e}")
  438. # Clear all state variables
  439. state.current_playing_file = None
  440. state.execution_progress = 0
  441. state.is_running = False
  442. state.pause_requested = False
  443. state.stop_requested = True
  444. state.is_clearing = False
  445. # Reset machine position
  446. await connection_manager.update_machine_position()
  447. logger.info("Pattern manager resources cleaned up")
  448. except Exception as e:
  449. logger.error(f"Error during pattern manager cleanup: {e}")
  450. finally:
  451. # Reset to fresh instances instead of None to allow continued operation
  452. progress_update_task = None
  453. pattern_lock = asyncio.Lock() # Fresh lock instead of None
  454. pause_event = asyncio.Event() # Fresh event instead of None
  455. pause_event.set() # Initially not paused
  456. def list_theta_rho_files():
  457. files = []
  458. for root, dirs, filenames in os.walk(THETA_RHO_DIR):
  459. # Skip cached_images directories to avoid scanning thousands of WebP files
  460. if 'cached_images' in dirs:
  461. dirs.remove('cached_images')
  462. # Filter .thr files during traversal for better performance
  463. thr_files = [f for f in filenames if f.endswith('.thr')]
  464. for file in thr_files:
  465. relative_path = os.path.relpath(os.path.join(root, file), THETA_RHO_DIR)
  466. # Normalize path separators to always use forward slashes for consistency across platforms
  467. relative_path = relative_path.replace(os.sep, '/')
  468. files.append(relative_path)
  469. logger.debug(f"Found {len(files)} theta-rho files")
  470. return files
  471. def parse_theta_rho_file(file_path):
  472. """Parse a theta-rho file and return a list of (theta, rho) pairs."""
  473. coordinates = []
  474. try:
  475. logger.debug(f"Parsing theta-rho file: {file_path}")
  476. with open(file_path, 'r', encoding='utf-8') as file:
  477. for line in file:
  478. line = line.strip()
  479. if not line or line.startswith("#"):
  480. continue
  481. try:
  482. theta, rho = map(float, line.split())
  483. coordinates.append((theta, rho))
  484. except ValueError:
  485. logger.warning(f"Skipping invalid line: {line}")
  486. continue
  487. except Exception as e:
  488. logger.error(f"Error reading file: {e}")
  489. return coordinates
  490. logger.debug(f"Parsed {len(coordinates)} coordinates from {file_path}")
  491. return coordinates
  492. def get_first_rho_from_cache(file_path, cache_data=None):
  493. """Get the first rho value from cached metadata, falling back to file parsing if needed.
  494. Args:
  495. file_path: Path to the pattern file
  496. cache_data: Optional pre-loaded cache data dict to avoid repeated disk I/O
  497. """
  498. try:
  499. # Import cache_manager locally to avoid circular import
  500. from modules.core import cache_manager
  501. # Try to get from metadata cache first
  502. # Use relative path from THETA_RHO_DIR to match cache keys (which include subdirectories)
  503. file_name = os.path.relpath(file_path, THETA_RHO_DIR)
  504. # Use provided cache_data if available, otherwise load from disk
  505. if cache_data is not None:
  506. # Extract metadata directly from provided cache
  507. data_section = cache_data.get('data', {})
  508. if file_name in data_section:
  509. cached_entry = data_section[file_name]
  510. metadata = cached_entry.get('metadata')
  511. # When cache_data is provided, trust it without checking mtime
  512. # This significantly speeds up bulk operations (playlists with 1000+ patterns)
  513. # by avoiding 1000+ os.path.getmtime() calls on slow storage (e.g., Pi SD cards)
  514. if metadata and 'first_coordinate' in metadata:
  515. return metadata['first_coordinate']['y']
  516. else:
  517. # Fall back to loading cache from disk (original behavior)
  518. metadata = cache_manager.get_pattern_metadata(file_name)
  519. if metadata and 'first_coordinate' in metadata:
  520. # In the cache, 'x' is theta and 'y' is rho
  521. return metadata['first_coordinate']['y']
  522. # Fallback to parsing the file if not in cache
  523. logger.debug(f"Metadata not cached for {file_name}, parsing file")
  524. coordinates = parse_theta_rho_file(file_path)
  525. if coordinates:
  526. return coordinates[0][1] # Return rho value
  527. return None
  528. except Exception as e:
  529. logger.warning(f"Error getting first rho from cache for {file_path}: {str(e)}")
  530. return None
  531. def get_clear_pattern_file(clear_pattern_mode, path=None, cache_data=None):
  532. """Return a .thr file path based on pattern_name and table type.
  533. Args:
  534. clear_pattern_mode: The clear pattern mode to use
  535. path: Optional path to the pattern file for adaptive mode
  536. cache_data: Optional pre-loaded cache data dict to avoid repeated disk I/O
  537. """
  538. if not clear_pattern_mode or clear_pattern_mode == 'none':
  539. return
  540. # Define patterns for each table type
  541. clear_patterns = {
  542. 'dune_weaver': {
  543. 'clear_from_out': './patterns/clear_from_out.thr',
  544. 'clear_from_in': './patterns/clear_from_in.thr',
  545. 'clear_sideway': './patterns/clear_sideway.thr'
  546. },
  547. 'dune_weaver_mini': {
  548. 'clear_from_out': './patterns/clear_from_out_mini.thr',
  549. 'clear_from_in': './patterns/clear_from_in_mini.thr',
  550. 'clear_sideway': './patterns/clear_sideway_mini.thr'
  551. },
  552. 'dune_weaver_mini_pro': {
  553. 'clear_from_out': './patterns/clear_from_out_mini.thr',
  554. 'clear_from_in': './patterns/clear_from_in_mini.thr',
  555. 'clear_sideway': './patterns/clear_sideway_mini.thr'
  556. },
  557. 'dune_weaver_pro': {
  558. 'clear_from_out': './patterns/clear_from_out_pro.thr',
  559. 'clear_from_out_Ultra': './patterns/clear_from_out_Ultra.thr',
  560. 'clear_from_in': './patterns/clear_from_in_pro.thr',
  561. 'clear_from_in_Ultra': './patterns/clear_from_in_Ultra.thr',
  562. 'clear_sideway': './patterns/clear_sideway_pro.thr'
  563. }
  564. }
  565. # Get patterns for current table type, fallback to standard patterns if type not found
  566. table_patterns = clear_patterns.get(state.table_type, clear_patterns['dune_weaver'])
  567. # Check for custom patterns first
  568. if state.custom_clear_from_out and clear_pattern_mode in ['clear_from_out', 'adaptive']:
  569. if clear_pattern_mode == 'adaptive':
  570. # For adaptive mode, use cached metadata to check first rho
  571. if path:
  572. first_rho = get_first_rho_from_cache(path, cache_data)
  573. if first_rho is not None and first_rho < 0.5:
  574. # Use custom clear_from_out if set
  575. custom_path = os.path.join('./patterns', state.custom_clear_from_out)
  576. if os.path.exists(custom_path):
  577. logger.debug(f"Using custom clear_from_out: {custom_path}")
  578. return custom_path
  579. elif clear_pattern_mode == 'clear_from_out':
  580. custom_path = os.path.join('./patterns', state.custom_clear_from_out)
  581. if os.path.exists(custom_path):
  582. logger.debug(f"Using custom clear_from_out: {custom_path}")
  583. return custom_path
  584. if state.custom_clear_from_in and clear_pattern_mode in ['clear_from_in', 'adaptive']:
  585. if clear_pattern_mode == 'adaptive':
  586. # For adaptive mode, use cached metadata to check first rho
  587. if path:
  588. first_rho = get_first_rho_from_cache(path, cache_data)
  589. if first_rho is not None and first_rho >= 0.5:
  590. # Use custom clear_from_in if set
  591. custom_path = os.path.join('./patterns', state.custom_clear_from_in)
  592. if os.path.exists(custom_path):
  593. logger.debug(f"Using custom clear_from_in: {custom_path}")
  594. return custom_path
  595. elif clear_pattern_mode == 'clear_from_in':
  596. custom_path = os.path.join('./patterns', state.custom_clear_from_in)
  597. if os.path.exists(custom_path):
  598. logger.debug(f"Using custom clear_from_in: {custom_path}")
  599. return custom_path
  600. logger.debug(f"Clear pattern mode: {clear_pattern_mode} for table type: {state.table_type}")
  601. if clear_pattern_mode == "random":
  602. return random.choice(list(table_patterns.values()))
  603. if clear_pattern_mode == 'adaptive':
  604. if not path:
  605. logger.warning("No path provided for adaptive clear pattern")
  606. return random.choice(list(table_patterns.values()))
  607. # Use cached metadata to get first rho value
  608. first_rho = get_first_rho_from_cache(path, cache_data)
  609. if first_rho is None:
  610. logger.warning("Could not determine first rho value for adaptive clear pattern")
  611. return random.choice(list(table_patterns.values()))
  612. if first_rho < 0.5:
  613. return table_patterns['clear_from_out']
  614. else:
  615. return table_patterns['clear_from_in']
  616. else:
  617. if clear_pattern_mode not in table_patterns:
  618. return False
  619. return table_patterns[clear_pattern_mode]
  620. def is_clear_pattern(file_path):
  621. """Check if a file path is a clear pattern file."""
  622. # Get all possible clear pattern files for all table types
  623. clear_patterns = []
  624. for table_type in ['dune_weaver', 'dune_weaver_mini', 'dune_weaver_pro']:
  625. clear_patterns.extend([
  626. f'./patterns/clear_from_out{("_" + table_type.split("_")[-1]) if table_type != "dune_weaver" else ""}.thr',
  627. f'./patterns/clear_from_in{("_" + table_type.split("_")[-1]) if table_type != "dune_weaver" else ""}.thr',
  628. f'./patterns/clear_sideway{("_" + table_type.split("_")[-1]) if table_type != "dune_weaver" else ""}.thr'
  629. ])
  630. # Normalize paths for comparison
  631. normalized_path = os.path.normpath(file_path)
  632. normalized_clear_patterns = [os.path.normpath(p) for p in clear_patterns]
  633. # Check if the file path matches any clear pattern path
  634. return normalized_path in normalized_clear_patterns
  635. async def _execute_pattern_internal(file_path):
  636. """Internal function to execute a pattern file. Must be called with lock already held.
  637. Args:
  638. file_path: Path to the .thr file to execute
  639. Returns:
  640. True if pattern completed successfully, False if stopped/skipped
  641. """
  642. # Run file parsing in thread to avoid blocking the event loop
  643. coordinates = await asyncio.to_thread(parse_theta_rho_file, file_path)
  644. total_coordinates = len(coordinates)
  645. if total_coordinates < 2:
  646. logger.warning("Not enough coordinates for interpolation")
  647. return False
  648. # Determine if this is a clearing pattern
  649. is_clear_file = is_clear_pattern(file_path)
  650. if is_clear_file:
  651. initial_speed = state.clear_pattern_speed if state.clear_pattern_speed is not None else state.speed
  652. logger.info(f"Running clearing pattern at initial speed {initial_speed}")
  653. else:
  654. logger.info(f"Running normal pattern at initial speed {state.speed}")
  655. state.execution_progress = (0, total_coordinates, None, 0)
  656. # stop actions without resetting the playlist, and don't wait for lock (we already have it)
  657. # Preserve is_clearing flag since stop_actions resets it
  658. was_clearing = state.is_clearing
  659. await stop_actions(clear_playlist=False, wait_for_lock=False)
  660. state.is_clearing = was_clearing
  661. state.current_playing_file = file_path
  662. state.stop_requested = False
  663. # Reset LED idle timeout activity time when pattern starts
  664. import time as time_module
  665. state.dw_led_last_activity_time = time_module.time()
  666. logger.info(f"Starting pattern execution: {file_path}")
  667. logger.info(f"t: {state.current_theta}, r: {state.current_rho}")
  668. await reset_theta()
  669. start_time = time.time()
  670. total_pause_time = 0 # Track total time spent paused (manual + scheduled)
  671. if state.led_controller:
  672. logger.info(f"Setting LED to playing effect: {state.dw_led_playing_effect}")
  673. await state.led_controller.effect_playing_async(state.dw_led_playing_effect)
  674. # Cancel idle timeout when playing starts
  675. idle_timeout_manager.cancel_timeout()
  676. with tqdm(
  677. total=total_coordinates,
  678. unit="coords",
  679. desc=f"Executing Pattern {file_path}",
  680. dynamic_ncols=True,
  681. disable=False,
  682. mininterval=1.0
  683. ) as pbar:
  684. for i, coordinate in enumerate(coordinates):
  685. theta, rho = coordinate
  686. if state.stop_requested:
  687. logger.info("Execution stopped by user")
  688. if state.led_controller:
  689. await state.led_controller.effect_idle_async(state.dw_led_idle_effect)
  690. start_idle_led_timeout()
  691. break
  692. if state.skip_requested:
  693. logger.info("Skipping pattern...")
  694. await connection_manager.check_idle_async()
  695. if state.led_controller:
  696. await state.led_controller.effect_idle_async(state.dw_led_idle_effect)
  697. start_idle_led_timeout()
  698. break
  699. # Wait for resume if paused (manual or scheduled)
  700. manual_pause = state.pause_requested
  701. # Only check scheduled pause during pattern if "finish pattern first" is NOT enabled
  702. scheduled_pause = is_in_scheduled_pause_period() if not state.scheduled_pause_finish_pattern else False
  703. if manual_pause or scheduled_pause:
  704. pause_start = time.time() # Track when pause started
  705. if manual_pause and scheduled_pause:
  706. logger.info("Execution paused (manual + scheduled pause active)...")
  707. elif manual_pause:
  708. logger.info("Execution paused (manual)...")
  709. else:
  710. logger.info("Execution paused (scheduled pause period)...")
  711. # Turn off LED controller if scheduled pause and control_wled is enabled
  712. if state.scheduled_pause_control_wled and state.led_controller:
  713. logger.info("Turning off LED lights during Still Sands period")
  714. await state.led_controller.set_power_async(0)
  715. # Only show idle effect if NOT in scheduled pause with LED control
  716. # (manual pause always shows idle effect)
  717. if state.led_controller and not (scheduled_pause and state.scheduled_pause_control_wled):
  718. await state.led_controller.effect_idle_async(state.dw_led_idle_effect)
  719. start_idle_led_timeout()
  720. # Remember if we turned off LED controller for scheduled pause
  721. wled_was_off_for_scheduled = scheduled_pause and state.scheduled_pause_control_wled and not manual_pause
  722. # Wait until both manual pause is released AND we're outside scheduled pause period
  723. while state.pause_requested or is_in_scheduled_pause_period():
  724. if state.pause_requested:
  725. # For manual pause, wait directly on the event for immediate response
  726. # The while loop re-checks state after wake to handle rapid pause/resume
  727. await get_pause_event().wait()
  728. else:
  729. # For scheduled pause only, check periodically
  730. await asyncio.sleep(1)
  731. total_pause_time += time.time() - pause_start # Add pause duration
  732. logger.info("Execution resumed...")
  733. if state.led_controller:
  734. # Turn LED controller back on if it was turned off for scheduled pause
  735. if wled_was_off_for_scheduled:
  736. logger.info("Turning LED lights back on as Still Sands period ended")
  737. await state.led_controller.set_power_async(1)
  738. # CRITICAL: Give LED controller time to fully power on before sending more commands
  739. # Without this delay, rapid-fire requests can crash controllers on resource-constrained Pis
  740. await asyncio.sleep(0.5)
  741. await state.led_controller.effect_playing_async(state.dw_led_playing_effect)
  742. # Cancel idle timeout when resuming from pause
  743. idle_timeout_manager.cancel_timeout()
  744. # Dynamically determine the speed for each movement
  745. # Use clear_pattern_speed if it's set and this is a clear file, otherwise use state.speed
  746. if is_clear_file and state.clear_pattern_speed is not None:
  747. current_speed = state.clear_pattern_speed
  748. else:
  749. current_speed = state.speed
  750. await move_polar(theta, rho, current_speed)
  751. # Update progress for all coordinates including the first one
  752. pbar.update(1)
  753. elapsed_time = time.time() - start_time
  754. estimated_remaining_time = (total_coordinates - (i + 1)) / pbar.format_dict['rate'] if pbar.format_dict['rate'] and total_coordinates else 0
  755. state.execution_progress = (i + 1, total_coordinates, estimated_remaining_time, elapsed_time)
  756. # Add a small delay to allow other async operations
  757. await asyncio.sleep(0.001)
  758. # Update progress one last time to show 100%
  759. elapsed_time = time.time() - start_time
  760. actual_execution_time = elapsed_time - total_pause_time
  761. state.execution_progress = (total_coordinates, total_coordinates, 0, elapsed_time)
  762. # Give WebSocket a chance to send the final update
  763. await asyncio.sleep(0.1)
  764. # Log execution time (only for completed patterns, not stopped/skipped)
  765. was_completed = not state.stop_requested and not state.skip_requested
  766. pattern_name = os.path.basename(file_path)
  767. effective_speed = state.clear_pattern_speed if (is_clear_file and state.clear_pattern_speed is not None) else state.speed
  768. log_execution_time(
  769. pattern_name=pattern_name,
  770. table_type=state.table_type,
  771. speed=effective_speed,
  772. actual_time=actual_execution_time,
  773. total_coordinates=total_coordinates,
  774. was_completed=was_completed
  775. )
  776. if not state.conn:
  777. logger.error("Device is not connected. Stopping pattern execution.")
  778. return False
  779. await connection_manager.check_idle_async()
  780. # Set LED back to idle when pattern completes normally (not stopped early)
  781. if state.led_controller and not state.stop_requested:
  782. logger.info(f"Setting LED to idle effect: {state.dw_led_idle_effect}")
  783. await state.led_controller.effect_idle_async(state.dw_led_idle_effect)
  784. start_idle_led_timeout()
  785. logger.debug("LED effect set to idle after pattern completion")
  786. return was_completed
  787. async def run_theta_rho_file(file_path, is_playlist=False, clear_pattern=None, cache_data=None):
  788. """Run a theta-rho file with optional pre-execution clear pattern.
  789. Args:
  790. file_path: Path to the main .thr file to execute
  791. is_playlist: True if running as part of a playlist
  792. clear_pattern: Clear pattern mode ('adaptive', 'clear_from_in', 'clear_from_out', 'none', or None)
  793. cache_data: Pre-loaded metadata cache for adaptive clear pattern selection
  794. """
  795. lock = get_pattern_lock()
  796. if lock.locked():
  797. logger.warning("Another pattern is already running. Cannot start a new one.")
  798. return
  799. async with lock: # This ensures only one pattern can run at a time
  800. # Start progress update task only if not part of a playlist
  801. global progress_update_task
  802. if not is_playlist and not progress_update_task:
  803. progress_update_task = asyncio.create_task(broadcast_progress())
  804. # Run clear pattern first if specified
  805. if clear_pattern and clear_pattern != 'none':
  806. clear_file_path = get_clear_pattern_file(clear_pattern, file_path, cache_data)
  807. if clear_file_path:
  808. logger.info(f"Running pre-execution clear pattern: {clear_file_path}")
  809. state.is_clearing = True
  810. await _execute_pattern_internal(clear_file_path)
  811. state.is_clearing = False
  812. # Reset skip flag after clear pattern (if user skipped clear, continue to main)
  813. state.skip_requested = False
  814. # Check if stopped during clear pattern
  815. if state.stop_requested:
  816. logger.info("Execution stopped during clear pattern")
  817. if not is_playlist:
  818. state.current_playing_file = None
  819. state.execution_progress = None
  820. return
  821. # Run the main pattern
  822. completed = await _execute_pattern_internal(file_path)
  823. # Only clear state if not part of a playlist
  824. if not is_playlist:
  825. state.current_playing_file = None
  826. state.execution_progress = None
  827. logger.info("Pattern execution completed and state cleared")
  828. # Only cancel progress update task if not part of a playlist
  829. if progress_update_task:
  830. progress_update_task.cancel()
  831. try:
  832. await progress_update_task
  833. except asyncio.CancelledError:
  834. pass
  835. progress_update_task = None
  836. else:
  837. logger.info("Pattern execution completed, maintaining state for playlist")
  838. async def run_theta_rho_files(file_paths, pause_time=0, clear_pattern=None, run_mode="single", shuffle=False):
  839. """Run multiple .thr files in sequence with options.
  840. The playlist now stores only main patterns. Clear patterns are executed dynamically
  841. before each main pattern based on the clear_pattern option.
  842. """
  843. state.stop_requested = False
  844. # Reset LED idle timeout activity time when playlist starts
  845. import time as time_module
  846. state.dw_led_last_activity_time = time_module.time()
  847. # Set initial playlist state
  848. state.playlist_mode = run_mode
  849. state.current_playlist_index = 0
  850. # Start progress update task for the playlist
  851. global progress_update_task
  852. if not progress_update_task:
  853. progress_update_task = asyncio.create_task(broadcast_progress())
  854. # Shuffle main patterns if requested (before starting)
  855. if shuffle:
  856. random.shuffle(file_paths)
  857. logger.info("Playlist shuffled")
  858. # Store only main patterns in the playlist
  859. state.current_playlist = file_paths
  860. try:
  861. while True:
  862. # Load metadata cache once per playlist iteration (for adaptive clear patterns)
  863. cache_data = None
  864. if clear_pattern and clear_pattern in ['adaptive', 'clear_from_in', 'clear_from_out']:
  865. from modules.core import cache_manager
  866. cache_data = await asyncio.to_thread(cache_manager.load_metadata_cache)
  867. logger.info(f"Loaded metadata cache for {len(cache_data.get('data', {}))} patterns")
  868. # Reset pattern counter at the start of the playlist
  869. state.patterns_since_last_home = 0
  870. # Execute main patterns using index-based access
  871. # This allows the playlist to be reordered during execution
  872. idx = 0
  873. while state.current_playlist and idx < len(state.current_playlist):
  874. state.current_playlist_index = idx
  875. if state.stop_requested or not state.current_playlist:
  876. logger.info("Execution stopped")
  877. return
  878. # Get the pattern at the current index (may have changed due to reordering)
  879. file_path = state.current_playlist[idx]
  880. logger.info(f"Running pattern {idx + 1}/{len(state.current_playlist)}: {file_path}")
  881. # Clear pause state when starting a new pattern (prevents stale "waiting" UI)
  882. state.pause_time_remaining = 0
  883. state.original_pause_time = None
  884. # Execute the pattern with optional clear pattern
  885. await run_theta_rho_file(
  886. file_path,
  887. is_playlist=True,
  888. clear_pattern=clear_pattern,
  889. cache_data=cache_data
  890. )
  891. # Increment pattern counter and check auto-home
  892. state.patterns_since_last_home += 1
  893. logger.debug(f"Patterns since last home: {state.patterns_since_last_home}")
  894. if state.auto_home_enabled and state.patterns_since_last_home >= state.auto_home_after_patterns:
  895. logger.info(f"Auto-homing triggered after {state.patterns_since_last_home} patterns")
  896. try:
  897. success = await asyncio.to_thread(connection_manager.home)
  898. if success:
  899. logger.info("Auto-homing completed successfully")
  900. state.patterns_since_last_home = 0
  901. else:
  902. logger.warning("Auto-homing failed, continuing with playlist")
  903. except Exception as e:
  904. logger.error(f"Error during auto-homing: {e}")
  905. # Check for scheduled pause after pattern completes (when "finish pattern first" is enabled)
  906. if state.scheduled_pause_finish_pattern and is_in_scheduled_pause_period() and not state.stop_requested and not state.skip_requested:
  907. logger.info("Pattern completed. Entering Still Sands period (finish pattern first mode)...")
  908. wled_was_off_for_scheduled = False
  909. if state.scheduled_pause_control_wled and state.led_controller:
  910. logger.info("Turning off LED lights during Still Sands period")
  911. await state.led_controller.set_power_async(0)
  912. wled_was_off_for_scheduled = True
  913. elif state.led_controller:
  914. await state.led_controller.effect_idle_async(state.dw_led_idle_effect)
  915. start_idle_led_timeout()
  916. while is_in_scheduled_pause_period() and not state.stop_requested:
  917. await asyncio.sleep(1)
  918. if not state.stop_requested:
  919. logger.info("Still Sands period ended. Resuming playlist...")
  920. if state.led_controller:
  921. if wled_was_off_for_scheduled:
  922. logger.info("Turning LED lights back on as Still Sands period ended")
  923. await state.led_controller.set_power_async(1)
  924. await asyncio.sleep(0.5)
  925. await state.led_controller.effect_playing_async(state.dw_led_playing_effect)
  926. idle_timeout_manager.cancel_timeout()
  927. # Handle pause between patterns
  928. if state.current_playlist and idx < len(state.current_playlist) - 1 and not state.stop_requested and pause_time > 0 and not state.skip_requested:
  929. logger.info(f"Pausing for {pause_time} seconds")
  930. state.original_pause_time = pause_time
  931. pause_start = time.time()
  932. while time.time() - pause_start < pause_time:
  933. state.pause_time_remaining = pause_start + pause_time - time.time()
  934. if state.skip_requested:
  935. logger.info("Pause interrupted by skip request")
  936. break
  937. await asyncio.sleep(1)
  938. state.pause_time_remaining = 0
  939. state.skip_requested = False
  940. idx += 1
  941. if run_mode == "indefinite":
  942. logger.info("Playlist completed. Restarting as per 'indefinite' run mode")
  943. if pause_time > 0:
  944. pause_start = time.time()
  945. while time.time() - pause_start < pause_time:
  946. state.pause_time_remaining = pause_start + pause_time - time.time()
  947. if state.skip_requested:
  948. logger.info("Pause interrupted by skip request")
  949. break
  950. await asyncio.sleep(1)
  951. state.pause_time_remaining = 0
  952. continue
  953. else:
  954. logger.info("Playlist completed")
  955. break
  956. finally:
  957. if progress_update_task:
  958. progress_update_task.cancel()
  959. try:
  960. await progress_update_task
  961. except asyncio.CancelledError:
  962. pass
  963. progress_update_task = None
  964. state.current_playing_file = None
  965. state.execution_progress = None
  966. state.current_playlist = None
  967. state.current_playlist_index = None
  968. state.playlist_mode = None
  969. state.pause_time_remaining = 0
  970. if state.led_controller:
  971. await state.led_controller.effect_idle_async(state.dw_led_idle_effect)
  972. start_idle_led_timeout()
  973. logger.info("All requested patterns completed (or stopped) and state cleared")
  974. async def stop_actions(clear_playlist = True, wait_for_lock = True):
  975. """Stop all current actions and wait for pattern to fully release.
  976. Args:
  977. clear_playlist: Whether to clear playlist state
  978. wait_for_lock: Whether to wait for pattern_lock to be released. Set to False when
  979. called from within pattern execution to avoid deadlock.
  980. """
  981. try:
  982. with state.pause_condition:
  983. state.pause_requested = False
  984. state.stop_requested = True
  985. state.is_clearing = False
  986. # Always clear pause time between patterns on stop
  987. state.pause_time_remaining = 0
  988. state.original_pause_time = None
  989. if clear_playlist:
  990. # Clear playlist state
  991. state.current_playlist = None
  992. state.current_playlist_index = None
  993. state.playlist_mode = None
  994. # Cancel progress update task if we're clearing the playlist
  995. global progress_update_task
  996. if progress_update_task and not progress_update_task.done():
  997. progress_update_task.cancel()
  998. state.pause_condition.notify_all()
  999. # Also set the pause event to wake up any paused patterns
  1000. get_pause_event().set()
  1001. # Send stop command to motion thread to clear its queue
  1002. if motion_controller.running:
  1003. motion_controller.command_queue.put(MotionCommand('stop'))
  1004. # Wait for the pattern lock to be released before continuing
  1005. # This ensures that when stop_actions completes, the pattern has fully stopped
  1006. # Skip this if called from within pattern execution to avoid deadlock
  1007. lock = get_pattern_lock()
  1008. if wait_for_lock and lock.locked():
  1009. logger.info("Waiting for pattern to fully stop...")
  1010. # Use a timeout to prevent hanging forever
  1011. try:
  1012. async with asyncio.timeout(10.0):
  1013. async with lock:
  1014. logger.info("Pattern lock acquired - pattern has fully stopped")
  1015. except asyncio.TimeoutError:
  1016. logger.warning("Timeout waiting for pattern to stop - forcing cleanup")
  1017. # Force cleanup of state even if pattern didn't release lock gracefully
  1018. state.current_playing_file = None
  1019. state.execution_progress = None
  1020. state.is_running = False
  1021. # Always clear the current playing file after stop
  1022. state.current_playing_file = None
  1023. state.execution_progress = None
  1024. # Call async function directly since we're in async context
  1025. await connection_manager.update_machine_position()
  1026. except Exception as e:
  1027. logger.error(f"Error during stop_actions: {e}")
  1028. # Force cleanup state on error
  1029. state.current_playing_file = None
  1030. state.execution_progress = None
  1031. state.is_running = False
  1032. # Ensure we still update machine position even if there's an error
  1033. try:
  1034. await connection_manager.update_machine_position()
  1035. except Exception as update_err:
  1036. logger.error(f"Error updating machine position on error: {update_err}")
  1037. async def move_polar(theta, rho, speed=None):
  1038. """
  1039. Queue a motion command to be executed in the dedicated motion control thread.
  1040. This makes motion control non-blocking for API endpoints.
  1041. Args:
  1042. theta (float): Target theta coordinate
  1043. rho (float): Target rho coordinate
  1044. speed (int, optional): Speed override. If None, uses state.speed
  1045. """
  1046. # Ensure motion control thread is running
  1047. if not motion_controller.running:
  1048. motion_controller.start()
  1049. # Create future for async/await pattern
  1050. loop = asyncio.get_event_loop()
  1051. future = loop.create_future()
  1052. # Create and queue motion command
  1053. command = MotionCommand(
  1054. command_type='move',
  1055. theta=theta,
  1056. rho=rho,
  1057. speed=speed,
  1058. future=future
  1059. )
  1060. motion_controller.command_queue.put(command)
  1061. logger.debug(f"Queued motion command: theta={theta}, rho={rho}, speed={speed}")
  1062. # Wait for command completion
  1063. await future
  1064. def pause_execution():
  1065. """Pause pattern execution using asyncio Event."""
  1066. logger.info("Pausing pattern execution")
  1067. state.pause_requested = True
  1068. get_pause_event().clear() # Clear the event to pause execution
  1069. return True
  1070. def resume_execution():
  1071. """Resume pattern execution using asyncio Event."""
  1072. logger.info("Resuming pattern execution")
  1073. state.pause_requested = False
  1074. get_pause_event().set() # Set the event to resume execution
  1075. return True
  1076. async def reset_theta():
  1077. logger.info('Resetting Theta')
  1078. state.current_theta = state.current_theta % (2 * pi)
  1079. # Call async function directly since we're in async context
  1080. await connection_manager.update_machine_position()
  1081. def set_speed(new_speed):
  1082. state.speed = new_speed
  1083. logger.info(f'Set new state.speed {new_speed}')
  1084. def get_status():
  1085. """Get the current status of pattern execution."""
  1086. status = {
  1087. "current_file": state.current_playing_file,
  1088. "is_paused": state.pause_requested or is_in_scheduled_pause_period(),
  1089. "manual_pause": state.pause_requested,
  1090. "scheduled_pause": is_in_scheduled_pause_period(),
  1091. "is_running": bool(state.current_playing_file and not state.stop_requested),
  1092. "is_homing": state.is_homing,
  1093. "is_clearing": state.is_clearing,
  1094. "progress": None,
  1095. "playlist": None,
  1096. "speed": state.speed,
  1097. "pause_time_remaining": state.pause_time_remaining,
  1098. "original_pause_time": getattr(state, 'original_pause_time', None),
  1099. "connection_status": state.conn.is_connected() if state.conn else False,
  1100. "current_theta": state.current_theta,
  1101. "current_rho": state.current_rho
  1102. }
  1103. # Add playlist information if available
  1104. if state.current_playlist and state.current_playlist_index is not None:
  1105. # When a clear pattern is running, the "next" pattern is the current main pattern
  1106. # (since the clear pattern runs before the main pattern at current_playlist_index)
  1107. if state.is_clearing:
  1108. next_file = state.current_playlist[state.current_playlist_index]
  1109. else:
  1110. next_index = state.current_playlist_index + 1
  1111. next_file = state.current_playlist[next_index] if next_index < len(state.current_playlist) else None
  1112. status["playlist"] = {
  1113. "current_index": state.current_playlist_index,
  1114. "total_files": len(state.current_playlist),
  1115. "mode": state.playlist_mode,
  1116. "next_file": next_file,
  1117. "files": state.current_playlist,
  1118. "name": state.current_playlist_name
  1119. }
  1120. if state.execution_progress:
  1121. current, total, remaining_time, elapsed_time = state.execution_progress
  1122. status["progress"] = {
  1123. "current": current,
  1124. "total": total,
  1125. "remaining_time": remaining_time,
  1126. "elapsed_time": elapsed_time,
  1127. "percentage": (current / total * 100) if total > 0 else 0
  1128. }
  1129. # Add historical execution time if available for this pattern at current speed
  1130. if state.current_playing_file:
  1131. pattern_name = os.path.basename(state.current_playing_file)
  1132. historical_time = get_last_completed_execution_time(pattern_name, state.speed)
  1133. if historical_time:
  1134. status["progress"]["last_completed_time"] = historical_time
  1135. return status
  1136. async def broadcast_progress():
  1137. """Background task to broadcast progress updates."""
  1138. from main import broadcast_status_update
  1139. while True:
  1140. # Send status updates regardless of pattern_lock state
  1141. status = get_status()
  1142. # Use the existing broadcast function from main.py
  1143. await broadcast_status_update(status)
  1144. # Check if we should stop broadcasting
  1145. if not state.current_playlist:
  1146. # If no playlist, only stop if no pattern is being executed
  1147. if not get_pattern_lock().locked():
  1148. logger.info("No playlist or pattern running, stopping broadcast")
  1149. break
  1150. # Wait before next update
  1151. await asyncio.sleep(1)