eventlet.py 4.0 KB

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  1. # -*- coding: utf-8 -*-
  2. """
  3. celery.concurrency.eventlet
  4. ~~~~~~~~~~~~~~~~~~~~~~~~~~~
  5. Eventlet pool implementation.
  6. """
  7. from __future__ import absolute_import
  8. import sys
  9. from time import time
  10. __all__ = ['TaskPool']
  11. W_RACE = """\
  12. Celery module with %s imported before eventlet patched\
  13. """
  14. RACE_MODS = ('billiard.', 'celery.', 'kombu.')
  15. #: Warn if we couldn't patch early enough,
  16. #: and thread/socket depending celery modules have already been loaded.
  17. for mod in (mod for mod in sys.modules if mod.startswith(RACE_MODS)):
  18. for side in ('thread', 'threading', 'socket'): # pragma: no cover
  19. if getattr(mod, side, None):
  20. import warnings
  21. warnings.warn(RuntimeWarning(W_RACE % side))
  22. from kombu.async import timer as _timer
  23. from celery import signals
  24. from . import base
  25. def apply_target(target, args=(), kwargs={}, callback=None,
  26. accept_callback=None, getpid=None):
  27. return base.apply_target(target, args, kwargs, callback, accept_callback,
  28. pid=getpid())
  29. class Timer(_timer.Timer):
  30. def __init__(self, *args, **kwargs):
  31. from eventlet.greenthread import spawn_after
  32. from greenlet import GreenletExit
  33. super(Timer, self).__init__(*args, **kwargs)
  34. self.GreenletExit = GreenletExit
  35. self._spawn_after = spawn_after
  36. self._queue = set()
  37. def _enter(self, eta, priority, entry):
  38. secs = max(eta - time(), 0)
  39. g = self._spawn_after(secs, entry)
  40. self._queue.add(g)
  41. g.link(self._entry_exit, entry)
  42. g.entry = entry
  43. g.eta = eta
  44. g.priority = priority
  45. g.cancelled = False
  46. return g
  47. def _entry_exit(self, g, entry):
  48. try:
  49. try:
  50. g.wait()
  51. except self.GreenletExit:
  52. entry.cancel()
  53. g.cancelled = True
  54. finally:
  55. self._queue.discard(g)
  56. def clear(self):
  57. queue = self._queue
  58. while queue:
  59. try:
  60. queue.pop().cancel()
  61. except (KeyError, self.GreenletExit):
  62. pass
  63. def cancel(self, tref):
  64. try:
  65. tref.cancel()
  66. except self.GreenletExit:
  67. pass
  68. @property
  69. def queue(self):
  70. return self._queue
  71. class TaskPool(base.BasePool):
  72. Timer = Timer
  73. signal_safe = False
  74. is_green = True
  75. task_join_will_block = False
  76. def __init__(self, *args, **kwargs):
  77. from eventlet import greenthread
  78. from eventlet.greenpool import GreenPool
  79. self.Pool = GreenPool
  80. self.getcurrent = greenthread.getcurrent
  81. self.getpid = lambda: id(greenthread.getcurrent())
  82. self.spawn_n = greenthread.spawn_n
  83. super(TaskPool, self).__init__(*args, **kwargs)
  84. def on_start(self):
  85. self._pool = self.Pool(self.limit)
  86. signals.eventlet_pool_started.send(sender=self)
  87. self._quick_put = self._pool.spawn_n
  88. self._quick_apply_sig = signals.eventlet_pool_apply.send
  89. def on_stop(self):
  90. signals.eventlet_pool_preshutdown.send(sender=self)
  91. if self._pool is not None:
  92. self._pool.waitall()
  93. signals.eventlet_pool_postshutdown.send(sender=self)
  94. def on_apply(self, target, args=None, kwargs=None, callback=None,
  95. accept_callback=None, **_):
  96. self._quick_apply_sig(
  97. sender=self, target=target, args=args, kwargs=kwargs,
  98. )
  99. self._quick_put(apply_target, target, args, kwargs,
  100. callback, accept_callback,
  101. self.getpid)
  102. def grow(self, n=1):
  103. limit = self.limit + n
  104. self._pool.resize(limit)
  105. self.limit = limit
  106. def shrink(self, n=1):
  107. limit = self.limit - n
  108. self._pool.resize(limit)
  109. self.limit = limit
  110. def _get_info(self):
  111. return {
  112. 'max-concurrency': self.limit,
  113. 'free-threads': self._pool.free(),
  114. 'running-threads': self._pool.running(),
  115. }