example_test.py 3.0 KB

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  1. # This example code is in the Public Domain (or CC0 licensed, at your option.)
  2. # Unless required by applicable law or agreed to in writing, this
  3. # software is distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR
  4. # CONDITIONS OF ANY KIND, either express or implied.
  5. # -*- coding: utf-8 -*-
  6. from __future__ import print_function
  7. from __future__ import unicode_literals
  8. import os
  9. import sys
  10. import re
  11. import socket
  12. import ttfw_idf
  13. # ----------- Config ----------
  14. PORT = 3333
  15. INTERFACE = 'eth0'
  16. # -------------------------------
  17. def udp_client(address, payload):
  18. for res in socket.getaddrinfo(address, PORT, socket.AF_UNSPEC,
  19. socket.SOCK_DGRAM, 0, socket.AI_PASSIVE):
  20. family_addr, socktype, proto, canonname, addr = res
  21. try:
  22. sock = socket.socket(family_addr, socket.SOCK_DGRAM)
  23. except socket.error as msg:
  24. print('Could not create socket: ' + str(msg[0]) + ': ' + msg[1])
  25. raise
  26. try:
  27. sock.sendto(payload.encode(), addr)
  28. reply, addr = sock.recvfrom(128)
  29. if not reply:
  30. return
  31. print('Reply[' + addr[0] + ':' + str(addr[1]) + '] - ' + str(reply))
  32. except socket.error as msg:
  33. print('Error Code : ' + str(msg[0]) + ' Message: ' + msg[1])
  34. sock.close()
  35. raise
  36. return reply.decode()
  37. @ttfw_idf.idf_example_test(env_tag="Example_WIFI")
  38. def test_examples_protocol_socket(env, extra_data):
  39. MESSAGE = "Data to ESP"
  40. """
  41. steps:
  42. 1. join AP
  43. 2. have the board connect to the server
  44. 3. send and receive data
  45. """
  46. dut1 = env.get_dut("udp_server", "examples/protocols/sockets/udp_server", dut_class=ttfw_idf.ESP32DUT)
  47. # check and log bin size
  48. binary_file = os.path.join(dut1.app.binary_path, "udp_server.bin")
  49. bin_size = os.path.getsize(binary_file)
  50. ttfw_idf.log_performance("udp_server_bin_size", "{}KB".format(bin_size // 1024))
  51. ttfw_idf.check_performance("udp_server_bin_size", bin_size // 1024, dut1.TARGET)
  52. # start test
  53. dut1.start_app()
  54. ipv4 = dut1.expect(re.compile(r" IPv4 address: ([0-9]+\.[0-9]+\.[0-9]+\.[0-9]+)"), timeout=30)[0]
  55. ipv6_r = r':'.join((r'[0-9a-fA-F]{4}',) * 8) # expect all 8 octets from IPv6 (assumes it's printed in the long form)
  56. ipv6 = dut1.expect(re.compile(r' IPv6 address: ({})'.format(ipv6_r)), timeout=30)[0]
  57. print("Connected with IPv4={} and IPv6={}".format(ipv4, ipv6))
  58. # test IPv4
  59. received = udp_client(ipv4, MESSAGE)
  60. if not received == MESSAGE:
  61. raise
  62. dut1.expect(MESSAGE)
  63. # test IPv6
  64. received = udp_client("{}%{}".format(ipv6, INTERFACE), MESSAGE)
  65. if not received == MESSAGE:
  66. raise
  67. dut1.expect(MESSAGE)
  68. if __name__ == '__main__':
  69. if sys.argv[2:]: # if two arguments provided:
  70. # Usage: example_test.py <server_address> <message_to_send_to_server>
  71. udp_client(sys.argv[1], sys.argv[2])
  72. else: # otherwise run standard example test as in the CI
  73. test_examples_protocol_socket()