bench_worker.py 2.7 KB

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  1. import os
  2. import sys
  3. import time
  4. import anyjson
  5. JSONIMP = os.environ.get("JSONIMP")
  6. if JSONIMP:
  7. anyjson.force_implementation(JSONIMP)
  8. print("anyjson implementation: %r" % (anyjson.implementation.name, ))
  9. from celery import Celery
  10. DEFAULT_ITS = 20000
  11. celery = Celery(__name__)
  12. celery.conf.update(BROKER_TRANSPORT="librabbitmq",
  13. BROKER_POOL_LIMIT=10,
  14. CELERYD_POOL="solo",
  15. CELERY_PREFETCH_MULTIPLIER=0,
  16. CELERY_DISABLE_RATE_LIMITS=True,
  17. #CELERY_DEFAULT_DELIVERY_MODE="transient",
  18. CELERY_QUEUES = {
  19. "bench.worker": {
  20. "exchange": "bench.worker",
  21. "routing_key": "bench.worker",
  22. "no_ack": True,
  23. }
  24. },
  25. CELERY_TASK_SERIALIZER="json",
  26. CELERY_DEFAULT_QUEUE="bench.worker",
  27. CELERY_BACKEND=None)
  28. def tdiff(then):
  29. return time.time() - then
  30. @celery.task(cur=0, time_start=None, queue="bench.worker")
  31. def it(_, n):
  32. i = it.cur # use internal counter, as ordering can be skewed
  33. # by previous runs, or the broker.
  34. if i and not i % 5000:
  35. print >> sys.stderr, "(%s so far: %ss)" % (i, tdiff(it.subt))
  36. it.subt = time.time()
  37. if not i:
  38. it.subt = it.time_start = time.time()
  39. elif i == n - 1:
  40. total = tdiff(it.time_start)
  41. print("-- process %s tasks: %ss total, %s tasks/s} " % (
  42. n, total, n / (total + .0)))
  43. sys.exit()
  44. it.cur += 1
  45. def bench_apply(n=DEFAULT_ITS):
  46. time_start = time.time()
  47. celery.TaskSet(it.subtask((i, n)) for i in xrange(n)).apply_async()
  48. print("-- apply %s tasks: %ss" % (n, time.time() - time_start, ))
  49. def bench_work(n=DEFAULT_ITS, loglevel=None):
  50. if loglevel:
  51. celery.log.setup_logging_subsystem(loglevel=loglevel)
  52. worker = celery.WorkController(concurrency=15,
  53. queues=["bench.worker"])
  54. try:
  55. print("STARTING WORKER")
  56. worker.start()
  57. except SystemExit:
  58. assert sum(worker.state.total_count.values()) == n + 1
  59. def bench_both(n=DEFAULT_ITS):
  60. bench_apply(n)
  61. bench_work(n)
  62. def main(argv=sys.argv):
  63. n = DEFAULT_ITS
  64. if len(argv) < 2:
  65. print("Usage: %s [apply|work|both] [n=20k]" % (
  66. os.path.basename(argv[0]), ))
  67. return sys.exit(1)
  68. try:
  69. try:
  70. n = int(argv[2])
  71. except IndexError:
  72. pass
  73. return {"apply": bench_apply,
  74. "work": bench_work,
  75. "both": bench_both}[argv[1]](n=n)
  76. except KeyboardInterrupt:
  77. pass
  78. if __name__ == "__main__":
  79. main()