throughput_server.py 4.2 KB

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  1. #!/usr/bin/python3
  2. #
  3. import throughput_protocols
  4. import basic_protocols
  5. import os
  6. import multiprocessing
  7. import threading
  8. import queue
  9. import logging
  10. import argparse
  11. import useful
  12. #
  13. class ThroughputServer:
  14. def __init__(self, bind_endpoint, stop_event=None):
  15. self.bind = bind_endpoint
  16. self.stop_event = stop_event
  17. #
  18. self.server_listener = basic_protocols.ServerListener(bind_endpoint, self._accept_callback)
  19. #
  20. self.processes = []
  21. self.process_counter = 0
  22. #
  23. self.results_queue = multiprocessing.Queue()
  24. self.results = []
  25. self.results_getter = useful.QueueGetter(self.results_queue, self.results.append)
  26. #
  27. if self.stop_event is not None:
  28. self.event_thread = threading.Thread(target=self._wait_for_event, args=(self.stop_event, self._stop))
  29. self.event_thread.start()
  30. else:
  31. self.event_thread = None
  32. #
  33. #
  34. def _accept_callback(self, socket):
  35. conn_id = self.process_counter
  36. self.process_counter += 1
  37. #
  38. p = multiprocessing.Process(target=self._start_server_conn, args=(socket, conn_id))
  39. self.processes.append(p)
  40. p.start()
  41. #
  42. # close this process' copy of the socket
  43. socket.close()
  44. #
  45. def _start_server_conn(self, socket, conn_id):
  46. results_callback = lambda results: self.results_queue.put({'conn_id':conn_id, 'results':results})
  47. protocol = throughput_protocols.ServerProtocol(socket, results_callback=results_callback,
  48. use_acceleration=True)
  49. try:
  50. protocol.run()
  51. finally:
  52. socket.close()
  53. #
  54. #
  55. def _wait_for_event(self, event, callback):
  56. event.wait()
  57. callback()
  58. #
  59. def _stop(self):
  60. self.server_listener.stop()
  61. #
  62. def run(self):
  63. try:
  64. while True:
  65. self.server_listener.accept()
  66. #
  67. except OSError as e:
  68. if e.errno == 22 and self.stop_event is not None and self.stop_event.is_set():
  69. # we closed the socket on purpose
  70. pass
  71. else:
  72. raise
  73. #
  74. finally:
  75. if self.stop_event is not None:
  76. # set the event to stop the thread
  77. self.stop_event.set()
  78. #
  79. if self.event_thread is not None:
  80. # make sure the event thread is stopped
  81. self.event_thread.join()
  82. #
  83. for p in self.processes:
  84. # wait for all processes to finish
  85. p.join()
  86. #
  87. # finish reading from the results queue
  88. self.results_getter.stop()
  89. self.results_getter.join()
  90. #
  91. #
  92. #
  93. if __name__ == '__main__':
  94. logging.basicConfig(level=logging.DEBUG)
  95. #
  96. parser = argparse.ArgumentParser(description='Test the network throughput (optionally through a proxy).')
  97. parser.add_argument('port', type=int, help='listen on port')
  98. parser.add_argument('--localhost', action='store_true', help='bind to 127.0.0.1 instead of 0.0.0.0')
  99. args = parser.parse_args()
  100. #
  101. if args.localhost:
  102. bind_to = ('127.0.0.1', args.port)
  103. else:
  104. bind_to = ('0.0.0.0', args.port)
  105. #
  106. stop_event = multiprocessing.Event()
  107. server = ThroughputServer(bind_to, None)
  108. try:
  109. server.run()
  110. except KeyboardInterrupt:
  111. print('')
  112. logging.debug('Server stopped (KeyboardInterrupt).')
  113. #
  114. #t = threading.Thread(target=server.run)
  115. #t.start()
  116. #try:
  117. # t.join()
  118. #except KeyboardInterrupt:
  119. # print('')
  120. # stop_event.set()
  121. #
  122. #p = multiprocessing.Process(target=server.run)
  123. #p.start()
  124. #try:
  125. # p.join()
  126. #except KeyboardInterrupt:
  127. # print('')
  128. # stop_event.set()
  129. #
  130. results = server.results
  131. #
  132. group_ids = list(set([x['results']['custom_data'] for x in results]))
  133. groups = [(g, [r['results'] for r in results if r['results']['custom_data'] == g]) for g in group_ids]
  134. #
  135. for (group_id, group) in groups:
  136. avg_data_size = sum([x['data_size'] for x in group])/len(group)
  137. avg_transfer_rate = sum([x['transfer_rate'] for x in group])/len(group)
  138. time_of_first_byte = min([x['time_of_first_byte'] for x in group])
  139. time_of_last_byte = max([x['time_of_last_byte'] for x in group])
  140. total_transfer_rate = sum([x['data_size'] for x in group])/(time_of_last_byte-time_of_first_byte)
  141. #
  142. logging.info('Group id: %s', int.from_bytes(group_id, byteorder='big') if len(group_id)!=0 else None)
  143. logging.info(' Group size: %d', len(group))
  144. logging.info(' Avg Transferred (MiB): %.4f', avg_data_size/(1024**2))
  145. logging.info(' Avg Transfer rate (MiB/s): %.4f', avg_transfer_rate/(1024**2))
  146. logging.info(' Total Transfer rate (MiB/s): %.4f', total_transfer_rate/(1024**2))
  147. #
  148. #